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410 lines
13 KiB
JavaScript
410 lines
13 KiB
JavaScript
(function () {
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var factory = function (Util, Nacl) {
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// we will send messages with a unique id for each RPC
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// that id is returned with each response, indicating which call it was in response to
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var uid = Util.uid;
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// safely parse json messages, because they might cause parse errors
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var tryParse = Util.tryParse;
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// we will sign various message with our edPrivate keys
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// this handles that in a generic way
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var signMsg = function (data, signKey) {
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var buffer = Nacl.util.decodeUTF8(JSON.stringify(data));
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return Nacl.util.encodeBase64(Nacl.sign.detached(buffer, signKey));
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};
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// sendMsg takes a pre-formed message, does a little validation
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// adds a transaction id to the message and stores its callback
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// and finally sends it off to the historyKeeper, which delegates its
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// processing to the RPC submodule
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var sendMsg = function (ctx, data, cb) {
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if (typeof(cb) !== 'function') { throw new Error('expected callback'); }
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var network = ctx.network;
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var hkn = network.historyKeeper;
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if (typeof(hkn) !== 'string') { return void cb("NO_HISTORY_KEEPER"); }
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var txid = uid();
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var pending = ctx.pending[txid] = function (err, response) {
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cb(err, response);
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};
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pending.data = data;
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pending.called = 0;
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return network.sendto(hkn, JSON.stringify([txid, data]));
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};
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var matchesAnon = function (ctx, txid) {
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if (!ctx.anon) { return false; }
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if (typeof(ctx.anon.pending[txid]) !== 'function') { return false; }
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return true;
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};
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var handleAnon = function (ctx /* anon_ctx */, txid, body /* parsed messages without txid */) {
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// if anon is handling it we know there's a pending callback
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var pending = ctx.pending[txid];
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if (body[0] === 'ERROR') { pending(body[1]); }
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else { pending(void 0, body.slice(1)); }
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delete ctx.pending[txid];
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};
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var onMsg = function (ctx /* network context */, msg /* string message */) {
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if (typeof(msg) !== 'string') {
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console.error("received non-string message [%s]", msg);
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}
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var parsed = tryParse(msg);
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if (!parsed) {
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return void console.error(new Error('could not parse message: %s', msg));
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}
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// RPC messages are always arrays.
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if (!Array.isArray(parsed)) { return; }
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// ignore FULL_HISTORY messages
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if (/(FULL_HISTORY|HISTORY_RANGE)/.test(parsed[0])) { return; }
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var txid = parsed[0];
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// txid must be a string, or this message is not meant for us
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if (typeof(txid) !== 'string') { return; }
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if (matchesAnon(ctx, txid)) {
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return void handleAnon(ctx.anon, txid, parsed.slice(1));
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}
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// iterate over authenticated rpc contexts and check if they are expecting
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// a message with this txid
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if (ctx.authenticated.some(function (rpc_ctx) {
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var pending = rpc_ctx.pending[txid];
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// not meant for you
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if (typeof(pending) !== 'function') { return false; }
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// if you're here, the message is for you...
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if (parsed[1] !== 'ERROR') {
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// if the server sent you a new cookie, replace the old one
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if (/\|/.test(parsed[1]) && rpc_ctx.cookie !== parsed[1]) {
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rpc_ctx.cookie = parsed[1];
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}
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pending(void 0, parsed.slice(2));
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// if successful, delete the callback...
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delete rpc_ctx.pending[txid];
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// prevent further iteration
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return true;
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}
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// NO_COOKIE errors mean you failed to authenticate.
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// request a new cookie and resend the query
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if (parsed[2] === 'NO_COOKIE') {
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return void rpc_ctx.send('COOKIE', "", function (e) {
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if (e) {
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console.error(e);
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return void pending(e);
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}
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// resend the same command again
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// give up if you've already tried resending
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if (rpc_ctx.resend(txid)) { delete rpc_ctx.pending[txid]; }
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});
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}
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// if you're here then your RPC passed authentication but had some other error
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// call back with the error message
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pending(parsed[2]);
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// and delete the pending callback
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delete rpc_ctx.pending[txid];
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// prevent further iteration
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return true;
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})) {
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// the message was handled, so stop here
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return;
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}
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console.error("UNHANDLED RPC MESSAGE");
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};
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var networks = [];
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var contexts = [];
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var initNetworkContext = function (network) {
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var ctx = {
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network: network,
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connected: true,
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anon: undefined,
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authenticated: [],
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};
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networks.push(network);
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contexts.push(ctx);
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// add listeners...
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network.on('message', function (msg, sender) {
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if (sender !== network.historyKeeper) { return; }
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onMsg(ctx, msg);
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});
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network.on('disconnect', function () {
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ctx.connected = false;
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if (ctx.anon) { ctx.anon.connected = false; }
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ctx.authenticated.forEach(function (ctx) {
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ctx.connected = false;
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});
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});
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network.on('reconnect', function () {
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if (ctx.anon) { ctx.anon.connected = true; }
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ctx.authenticated.forEach(function (ctx) {
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ctx.connected = true;
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});
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});
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return ctx;
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};
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var getNetworkContext = function (network) {
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var i;
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networks.some(function (current, j) {
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if (network !== current) { return false; }
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i = j;
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return true;
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});
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if (contexts[i]) { return contexts[i]; }
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return initNetworkContext(network);
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};
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var initAuthenticatedRpc = function (networkContext, keys) {
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var ctx = {
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network: networkContext.network,
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publicKey: keys.publicKeyString,
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timeouts: {},
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pending: {},
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cookie: null,
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connected: true,
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};
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var send = ctx.send = function (type, msg, _cb) {
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var cb = Util.mkAsync(_cb);
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if (!ctx.connected && type !== 'COOKIE') {
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return void cb("DISCONNECTED");
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}
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// construct a signed message...
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var data = [type, msg];
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if (ctx.cookie && ctx.cookie.join) {
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data.unshift(ctx.cookie.join('|'));
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} else {
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data.unshift(ctx.cookie);
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}
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var sig = signMsg(data, keys.signKey);
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data.unshift(keys.publicKeyString);
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data.unshift(sig);
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// [sig, edPublicKey, cookie, type, msg]
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return sendMsg(ctx, data, cb);
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};
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ctx.resend = function (txid) {
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var pending = ctx.pending[txid];
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if (pending.called) {
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console.error("[%s] called too many times", txid);
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return true;
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}
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pending.called++;
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// update the cookie and signature...
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pending.data[2] = ctx.cookie;
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pending.data[0] = signMsg(pending.data.slice(2), keys.signKey);
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try {
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return ctx.network.sendto(ctx.network.historyKeeper,
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JSON.stringify([txid, pending.data]));
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} catch (e) {
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console.log("failed to resend");
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console.error(e);
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}
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};
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send.unauthenticated = function (type, msg, _cb) {
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var cb = Util.mkAsync(_cb);
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if (!ctx.connected) { return void cb('DISCONNECTED'); }
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// construct an unsigned message
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var data = [null, keys.publicKeyString, null, type, msg];
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if (ctx.cookie && ctx.cookie.join) {
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data[2] = ctx.cookie.join('|');
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} else {
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data[2] = ctx.cookie;
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}
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return sendMsg(ctx, data, cb);
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};
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ctx.destroy = function () {
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// clear all pending timeouts
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Object.keys(ctx.timeouts).forEach(function (to) {
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clearTimeout(to);
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});
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// remove the ctx from the network's stack
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var idx = networkContext.authenticated.indexOf(ctx);
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if (idx === -1) { return; }
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networkContext.authenticated.splice(idx, 1);
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};
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networkContext.authenticated.push(ctx);
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return ctx;
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};
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var getAuthenticatedContext = function (networkContext, keys) {
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if (!networkContext) { throw new Error('expected network context'); }
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var publicKey = keys.publicKeyString;
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var i;
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networkContext.authenticated.some(function (ctx, j) {
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if (ctx.publicKey !== publicKey) { return false; }
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i = j;
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return true;
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});
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if (networkContext.authenticated[i]) { return networkContext.authenticated[i]; }
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return initAuthenticatedRpc(networkContext, keys);
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};
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var create = function (network, edPrivateKey, edPublicKey, _cb) {
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if (typeof(_cb) !== 'function') { throw new Error("expected callback"); }
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var cb = Util.mkAsync(_cb);
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var signKey;
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try {
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signKey = Nacl.util.decodeBase64(edPrivateKey);
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if (signKey.length !== 64) {
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throw new Error('private key did not match expected length of 64');
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}
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} catch (err) {
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return void cb(err);
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}
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try {
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if (Nacl.util.decodeBase64(edPublicKey).length !== 32) {
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return void cb('expected public key to be 32 uint');
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}
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} catch (err) { return void cb(err); }
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if (!network) { return void cb('NO_NETWORK'); }
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// get or create a context for the provided network
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var net_ctx = getNetworkContext(network);
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var rpc_ctx = getAuthenticatedContext(net_ctx, {
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publicKeyString: edPublicKey,
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signKey: signKey,
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});
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rpc_ctx.send('COOKIE', "", function (e) {
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if (e) { return void cb(e); }
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// callback to provide 'send' method to whatever needs it
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cb(void 0, {
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send: rpc_ctx.send,
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destroy: rpc_ctx.destroy,
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});
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});
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};
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var initAnonRpc = function (networkContext) {
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var ctx = {
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network: networkContext.network,
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timeouts: {},
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pending: {},
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connected: true,
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};
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// any particular network will only ever need one anonymous rpc
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networkContext.anon = ctx;
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ctx.send = function (type, msg, _cb) {
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var cb = Util.mkAsync(_cb);
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if (!ctx.connected) { return void cb('DISCONNECTED'); }
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// construct an unsigned message...
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var data = [type, msg];
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// [type, msg]
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return sendMsg(ctx, data, cb);
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};
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ctx.resend = function (txid) {
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var pending = ctx.pending[txid];
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if (pending.called) {
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console.error("[%s] called too many times", txid);
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return true;
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}
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pending.called++;
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try {
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return ctx.network.sendto(ctx.network.historyKeeper,
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JSON.stringify([txid, pending.data]));
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} catch (e) {
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console.log("failed to resend");
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console.error(e);
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}
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};
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ctx.destroy = function () {
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// clear all pending timeouts
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Object.keys(ctx.timeouts).forEach(function (to) {
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clearTimeout(to);
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});
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networkContext.anon = undefined;
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};
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return ctx;
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};
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var getAnonContext = function (networkContext) {
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return networkContext.anon || initAnonRpc(networkContext);
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};
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var createAnonymous = function (network, _cb) {
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// enforce asynchrony
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var cb = Util.mkAsync(_cb);
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if (typeof(cb) !== 'function') { throw new Error("expected callback"); }
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if (!network) { return void cb('NO_NETWORK'); }
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// get or create a context for the provided network
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var ctx = getAnonContext(getNetworkContext(network));
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cb(void 0, {
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send: ctx.send,
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destroy: ctx.destroy,
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});
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};
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return { create: create, createAnonymous: createAnonymous };
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};
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if (typeof(module) !== 'undefined' && module.exports) {
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module.exports = factory(require("./common-util"), require("tweetnacl"));
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} else if ((typeof(define) !== 'undefined' && define !== null) && (define.amd !== null)) {
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define([
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'/common/common-util.js',
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'/bower_components/tweetnacl/nacl-fast.min.js',
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], function (Util) {
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return factory(Util, window.nacl);
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});
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} else {
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// I'm not gonna bother supporting any other kind of instanciation
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}
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}());
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