mirror of
https://github.com/Ylianst/MeshCentral.git
synced 2024-12-25 22:55:52 -05:00
More work on AMT TLS ACM activation.
This commit is contained in:
parent
423daaf19d
commit
dc11a44a19
@ -24,22 +24,18 @@ function amt_heci() {
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this._ObjectID = "pthi";
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this._rq = new Q();
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this._setupPTHI = function _setupPTHI()
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{
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this._setupPTHI = function _setupPTHI() {
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this._amt = heci.create();
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this._amt.descriptorMetadata = "amt-pthi";
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this._amt.BiosVersionLen = 65;
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this._amt.UnicodeStringLen = 20;
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this._amt.Parent = this;
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this._amt.on('error', function _amtOnError(e)
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{
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if(this.Parent._rq.isEmpty())
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{
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this._amt.on('error', function _amtOnError(e) {
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if (this.Parent._rq.isEmpty()) {
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this.Parent.emit('error', e); // No pending requests, so propagate the error up
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}
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else
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{
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else {
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// There is a pending request, so fail the pending request
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var user = this.Parent._rq.deQueue();
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var params = user.optional;
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@ -47,17 +43,14 @@ function amt_heci() {
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params.unshift({ Status: -1 }); // Relay an error
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callback.apply(this.Parent, params);
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if(!this.Parent._rq.isEmpty())
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{
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if (!this.Parent._rq.isEmpty()) {
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// There are still more pending requests, so try to re-helpconnect MEI
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this.connect(heci.GUIDS.AMT, { noPipeline: 1 });
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}
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}
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});
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this._amt.on('connect', function _amtOnConnect()
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{
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this.on('data', function _amtOnData(chunk)
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{
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this._amt.on('connect', function _amtOnConnect() {
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this.on('data', function _amtOnData(chunk) {
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//console.log("Received: " + chunk.length + " bytes");
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var header = this.Parent.getCommand(chunk);
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//console.log("CMD = " + header.Command + " (Status: " + header.Status + ") Response = " + header.IsResponse);
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@ -69,14 +62,12 @@ function amt_heci() {
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params.unshift(header);
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callback.apply(this.Parent, params);
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if(this.Parent._rq.isEmpty())
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{
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if (this.Parent._rq.isEmpty()) {
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// No More Requests, we can close PTHI
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this.Parent._amt.disconnect();
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this.Parent._amt = null;
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}
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else
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{
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else {
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// Send the next request
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this.write(this.Parent._rq.peekQueue().send);
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}
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@ -93,8 +84,7 @@ function amt_heci() {
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return (ret);
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};
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this.sendCommand = function sendCommand()
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{
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this.sendCommand = function sendCommand() {
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if (arguments.length < 3 || typeof (arguments[0]) != 'number' || typeof (arguments[1]) != 'object' || typeof (arguments[2]) != 'function') { throw ('invalid parameters'); }
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var args = [];
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for (var i = 3; i < arguments.length; ++i) { args.push(arguments[i]); }
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@ -102,10 +92,9 @@ function amt_heci() {
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var header = Buffer.from('010100000000000000000000', 'hex');
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header.writeUInt32LE(arguments[0] | 0x04000000, 4);
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header.writeUInt32LE(arguments[1] == null ? 0 : arguments[1].length, 8);
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this._rq.enQueue({ cmd: arguments[0], func: arguments[2], optional: args , send: (arguments[1] == null ? header : Buffer.concat([header, arguments[1]]))});
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this._rq.enQueue({ cmd: arguments[0], func: arguments[2], optional: args, send: (arguments[1] == null ? header : Buffer.concat([header, arguments[1]])) });
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if(!this._amt)
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{
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if (!this._amt) {
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this._setupPTHI();
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this._amt.connect(heci.GUIDS.AMT, { noPipeline: 1 });
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}
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@ -117,7 +106,7 @@ function amt_heci() {
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this.sendCommand(26, null, function (header, fn, opt) {
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if (header.Status == 0) {
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var i, CodeVersion = header.Data, val = { BiosVersion: CodeVersion.slice(0, this._amt.BiosVersionLen).toString(), Versions: [] }, v = CodeVersion.slice(this._amt.BiosVersionLen + 4);
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for (i = 0; i < CodeVersion.readUInt32LE(this._amt.BiosVersionLen) ; ++i) {
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for (i = 0; i < CodeVersion.readUInt32LE(this._amt.BiosVersionLen); ++i) {
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val.Versions[i] = { Description: v.slice(2, v.readUInt16LE(0) + 2).toString(), Version: v.slice(4 + this._amt.UnicodeStringLen, 4 + this._amt.UnicodeStringLen + v.readUInt16LE(2 + this._amt.UnicodeStringLen)).toString() };
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v = v.slice(4 + (2 * this._amt.UnicodeStringLen));
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}
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@ -302,34 +291,27 @@ function amt_heci() {
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this.getLocalSystemAccount = function getLocalSystemAccount(callback) {
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var optional = [];
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for (var i = 1; i < arguments.length; ++i) { optional.push(arguments[i]); }
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this.sendCommand(103, Buffer.alloc(40), function (header, fn, opt)
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{
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if (header.Status == 0 && header.Data.length == 68)
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{
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this.sendCommand(103, Buffer.alloc(40), function (header, fn, opt) {
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if (header.Status == 0 && header.Data.length == 68) {
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opt.unshift({ user: trim(header.Data.slice(0, 33).toString()), pass: trim(header.Data.slice(33, 67).toString()), raw: header.Data });
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}
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else
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{
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else {
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opt.unshift(null);
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}
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fn.apply(this, opt);
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}, callback, optional);
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}
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this.getLanInterfaceSettings = function getLanInterfaceSettings(index, callback)
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{
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this.getLanInterfaceSettings = function getLanInterfaceSettings(index, callback) {
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var optional = [];
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for (var i = 2; i < arguments.length; ++i) { optional.push(arguments[i]); }
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var ifx = Buffer.alloc(4);
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ifx.writeUInt32LE(index);
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this.sendCommand(0x48, ifx, function onGetLanInterfaceSettings(header, fn, opt)
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{
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if(header.Status == 0)
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{
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this.sendCommand(0x48, ifx, function onGetLanInterfaceSettings(header, fn, opt) {
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if (header.Status == 0) {
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var info = {};
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info.enabled = header.Data.readUInt32LE(0);
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info.dhcpEnabled = header.Data.readUInt32LE(8);
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switch(header.Data[12])
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{
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switch (header.Data[12]) {
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case 1:
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info.dhcpMode = 'ACTIVE'
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break;
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@ -347,8 +329,7 @@ function amt_heci() {
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opt.unshift(info);
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fn.apply(this, opt);
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}
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else
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{
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else {
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opt.unshift(null);
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fn.apply(this, opt);
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}
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@ -398,21 +379,18 @@ function amt_heci() {
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fn.apply(this, opt);
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}, callback, optional);
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}
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this.getProtocolVersion = function getProtocolVersion(callback)
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{
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this.getProtocolVersion = function getProtocolVersion(callback) {
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var optional = [];
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for (var i = 1; i < arguments.length; ++i) { opt.push(arguments[i]); }
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if (!this._tmpSession) { this._tmpSession = heci.create(); this._tmpSession.parent = this;}
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this._tmpSession.doIoctl(heci.IOCTL.HECI_VERSION, Buffer.alloc(5), Buffer.alloc(5), function (status, buffer, self, fn, opt)
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{
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if (!this._tmpSession) { this._tmpSession = heci.create(); this._tmpSession.parent = this; }
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this._tmpSession.doIoctl(heci.IOCTL.HECI_VERSION, Buffer.alloc(5), Buffer.alloc(5), function (status, buffer, self, fn, opt) {
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if (status == 0) {
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var result = buffer.readUInt8(0).toString() + '.' + buffer.readUInt8(1).toString() + '.' + buffer.readUInt8(2).toString() + '.' + buffer.readUInt16BE(3).toString();
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opt.unshift(result);
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fn.apply(self, opt);
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}
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else
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{
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else {
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opt.unshift(null);
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fn.apply(self, opt);
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}
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@ -421,7 +399,19 @@ function amt_heci() {
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}
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this.startConfigurationHBased = function startConfigurationHBased(certHash, hostVpn, dnsSuffixList, func) {
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if ((certHash == null) || ((certHash.length != 32) && (certHash.length != 48))) { func({ status: -101 }); }
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this.stopConfiguration(function (status) {
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if (status == 0) {
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// We stopped the configuration, wait 20 seconds before starting up again.
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var f = function tf() { delete tf.parent.xtimeout; tf.parent.startConfigurationHBasedEx(certHash, hostVpn, dnsSuffixList, func); }
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f.parent = this;
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this.xtimeout = setTimeout(f, 20000);
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} else {
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// We are not in the connect mode, this is good, start configuration right away.
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this.startConfigurationHBasedEx(certHash, hostVpn, dnsSuffixList, func);
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}
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})
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}
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this.startConfigurationHBasedEx = function startConfigurationHBased(certHash, hostVpn, dnsSuffixList, func) {
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var optional = [];
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for (var i = 4; i < arguments.length; ++i) { optional.push(arguments[i]); }
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@ -442,7 +432,7 @@ function amt_heci() {
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var amtHash = null;
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if (header.Data[0] == 2) { amtHash = header.Data.slice(1, 33); } // SHA256
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if (header.Data[0] == 3) { amtHash = header.Data.slice(1, 49); } // SHA384
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opt.unshift({ status: header.Status, hash: amtHash });
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opt.unshift({ status: header.Status, hash: amtHash.toString('hex') });
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} else {
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opt.unshift({ status: header.Status });
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}
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@ -24,22 +24,18 @@ function amt_heci() {
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this._ObjectID = "pthi";
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this._rq = new Q();
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this._setupPTHI = function _setupPTHI()
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{
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this._setupPTHI = function _setupPTHI() {
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this._amt = heci.create();
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this._amt.descriptorMetadata = "amt-pthi";
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this._amt.BiosVersionLen = 65;
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this._amt.UnicodeStringLen = 20;
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this._amt.Parent = this;
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this._amt.on('error', function _amtOnError(e)
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{
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if(this.Parent._rq.isEmpty())
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{
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this._amt.on('error', function _amtOnError(e) {
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if (this.Parent._rq.isEmpty()) {
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this.Parent.emit('error', e); // No pending requests, so propagate the error up
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}
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else
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{
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else {
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// There is a pending request, so fail the pending request
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var user = this.Parent._rq.deQueue();
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var params = user.optional;
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@ -47,17 +43,14 @@ function amt_heci() {
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params.unshift({ Status: -1 }); // Relay an error
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callback.apply(this.Parent, params);
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if(!this.Parent._rq.isEmpty())
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{
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if (!this.Parent._rq.isEmpty()) {
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// There are still more pending requests, so try to re-helpconnect MEI
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this.connect(heci.GUIDS.AMT, { noPipeline: 1 });
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}
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}
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});
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this._amt.on('connect', function _amtOnConnect()
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{
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this.on('data', function _amtOnData(chunk)
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{
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this._amt.on('connect', function _amtOnConnect() {
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this.on('data', function _amtOnData(chunk) {
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//console.log("Received: " + chunk.length + " bytes");
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var header = this.Parent.getCommand(chunk);
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//console.log("CMD = " + header.Command + " (Status: " + header.Status + ") Response = " + header.IsResponse);
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@ -69,14 +62,12 @@ function amt_heci() {
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params.unshift(header);
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callback.apply(this.Parent, params);
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if(this.Parent._rq.isEmpty())
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{
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if (this.Parent._rq.isEmpty()) {
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// No More Requests, we can close PTHI
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this.Parent._amt.disconnect();
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this.Parent._amt = null;
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}
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else
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{
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else {
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// Send the next request
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this.write(this.Parent._rq.peekQueue().send);
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}
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@ -93,8 +84,7 @@ function amt_heci() {
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return (ret);
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};
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this.sendCommand = function sendCommand()
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{
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this.sendCommand = function sendCommand() {
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if (arguments.length < 3 || typeof (arguments[0]) != 'number' || typeof (arguments[1]) != 'object' || typeof (arguments[2]) != 'function') { throw ('invalid parameters'); }
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var args = [];
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for (var i = 3; i < arguments.length; ++i) { args.push(arguments[i]); }
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@ -102,10 +92,9 @@ function amt_heci() {
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var header = Buffer.from('010100000000000000000000', 'hex');
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header.writeUInt32LE(arguments[0] | 0x04000000, 4);
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header.writeUInt32LE(arguments[1] == null ? 0 : arguments[1].length, 8);
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this._rq.enQueue({ cmd: arguments[0], func: arguments[2], optional: args , send: (arguments[1] == null ? header : Buffer.concat([header, arguments[1]]))});
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this._rq.enQueue({ cmd: arguments[0], func: arguments[2], optional: args, send: (arguments[1] == null ? header : Buffer.concat([header, arguments[1]])) });
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if(!this._amt)
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{
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if (!this._amt) {
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this._setupPTHI();
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this._amt.connect(heci.GUIDS.AMT, { noPipeline: 1 });
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}
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@ -117,7 +106,7 @@ function amt_heci() {
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this.sendCommand(26, null, function (header, fn, opt) {
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if (header.Status == 0) {
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var i, CodeVersion = header.Data, val = { BiosVersion: CodeVersion.slice(0, this._amt.BiosVersionLen).toString(), Versions: [] }, v = CodeVersion.slice(this._amt.BiosVersionLen + 4);
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for (i = 0; i < CodeVersion.readUInt32LE(this._amt.BiosVersionLen) ; ++i) {
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for (i = 0; i < CodeVersion.readUInt32LE(this._amt.BiosVersionLen); ++i) {
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val.Versions[i] = { Description: v.slice(2, v.readUInt16LE(0) + 2).toString(), Version: v.slice(4 + this._amt.UnicodeStringLen, 4 + this._amt.UnicodeStringLen + v.readUInt16LE(2 + this._amt.UnicodeStringLen)).toString() };
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v = v.slice(4 + (2 * this._amt.UnicodeStringLen));
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}
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@ -302,34 +291,27 @@ function amt_heci() {
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this.getLocalSystemAccount = function getLocalSystemAccount(callback) {
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var optional = [];
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for (var i = 1; i < arguments.length; ++i) { optional.push(arguments[i]); }
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this.sendCommand(103, Buffer.alloc(40), function (header, fn, opt)
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{
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if (header.Status == 0 && header.Data.length == 68)
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{
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this.sendCommand(103, Buffer.alloc(40), function (header, fn, opt) {
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if (header.Status == 0 && header.Data.length == 68) {
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opt.unshift({ user: trim(header.Data.slice(0, 33).toString()), pass: trim(header.Data.slice(33, 67).toString()), raw: header.Data });
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}
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else
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{
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else {
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opt.unshift(null);
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}
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fn.apply(this, opt);
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}, callback, optional);
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}
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this.getLanInterfaceSettings = function getLanInterfaceSettings(index, callback)
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{
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this.getLanInterfaceSettings = function getLanInterfaceSettings(index, callback) {
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var optional = [];
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for (var i = 2; i < arguments.length; ++i) { optional.push(arguments[i]); }
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var ifx = Buffer.alloc(4);
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ifx.writeUInt32LE(index);
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this.sendCommand(0x48, ifx, function onGetLanInterfaceSettings(header, fn, opt)
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{
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if(header.Status == 0)
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{
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this.sendCommand(0x48, ifx, function onGetLanInterfaceSettings(header, fn, opt) {
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if (header.Status == 0) {
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var info = {};
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info.enabled = header.Data.readUInt32LE(0);
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info.dhcpEnabled = header.Data.readUInt32LE(8);
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switch(header.Data[12])
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{
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switch (header.Data[12]) {
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case 1:
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info.dhcpMode = 'ACTIVE'
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break;
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@ -347,8 +329,7 @@ function amt_heci() {
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opt.unshift(info);
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fn.apply(this, opt);
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}
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else
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{
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else {
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opt.unshift(null);
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fn.apply(this, opt);
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}
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@ -398,21 +379,18 @@ function amt_heci() {
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fn.apply(this, opt);
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}, callback, optional);
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}
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this.getProtocolVersion = function getProtocolVersion(callback)
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{
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this.getProtocolVersion = function getProtocolVersion(callback) {
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var optional = [];
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for (var i = 1; i < arguments.length; ++i) { opt.push(arguments[i]); }
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if (!this._tmpSession) { this._tmpSession = heci.create(); this._tmpSession.parent = this;}
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this._tmpSession.doIoctl(heci.IOCTL.HECI_VERSION, Buffer.alloc(5), Buffer.alloc(5), function (status, buffer, self, fn, opt)
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{
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if (!this._tmpSession) { this._tmpSession = heci.create(); this._tmpSession.parent = this; }
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this._tmpSession.doIoctl(heci.IOCTL.HECI_VERSION, Buffer.alloc(5), Buffer.alloc(5), function (status, buffer, self, fn, opt) {
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if (status == 0) {
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var result = buffer.readUInt8(0).toString() + '.' + buffer.readUInt8(1).toString() + '.' + buffer.readUInt8(2).toString() + '.' + buffer.readUInt16BE(3).toString();
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opt.unshift(result);
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fn.apply(self, opt);
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}
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else
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{
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else {
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opt.unshift(null);
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fn.apply(self, opt);
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}
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@ -421,7 +399,19 @@ function amt_heci() {
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}
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this.startConfigurationHBased = function startConfigurationHBased(certHash, hostVpn, dnsSuffixList, func) {
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if ((certHash == null) || ((certHash.length != 32) && (certHash.length != 48))) { func({ status: -101 }); }
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this.stopConfiguration(function (status) {
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if (status == 0) {
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// We stopped the configuration, wait 20 seconds before starting up again.
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var f = function tf() { delete tf.parent.xtimeout; tf.parent.startConfigurationHBasedEx(certHash, hostVpn, dnsSuffixList, func); }
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f.parent = this;
|
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this.xtimeout = setTimeout(f, 20000);
|
||||
} else {
|
||||
// We are not in the connect mode, this is good, start configuration right away.
|
||||
this.startConfigurationHBasedEx(certHash, hostVpn, dnsSuffixList, func);
|
||||
}
|
||||
})
|
||||
}
|
||||
this.startConfigurationHBasedEx = function startConfigurationHBased(certHash, hostVpn, dnsSuffixList, func) {
|
||||
var optional = [];
|
||||
for (var i = 4; i < arguments.length; ++i) { optional.push(arguments[i]); }
|
||||
|
||||
@ -442,7 +432,7 @@ function amt_heci() {
|
||||
var amtHash = null;
|
||||
if (header.Data[0] == 2) { amtHash = header.Data.slice(1, 33); } // SHA256
|
||||
if (header.Data[0] == 3) { amtHash = header.Data.slice(1, 49); } // SHA384
|
||||
opt.unshift({ status: header.Status, hash: amtHash });
|
||||
opt.unshift({ status: header.Status, hash: amtHash.toString('hex') });
|
||||
} else {
|
||||
opt.unshift({ status: header.Status });
|
||||
}
|
||||
|
@ -242,9 +242,9 @@ var CreateWsmanComm = function (host, port, user, pass, tls, tlsoptions, mpsConn
|
||||
var options = { socket: ser, ciphers: 'RSA+AES:!aNULL:!MD5:!DSS', secureOptions: obj.constants.SSL_OP_NO_SSLv2 | obj.constants.SSL_OP_NO_SSLv3 | obj.constants.SSL_OP_NO_COMPRESSION | obj.constants.SSL_OP_CIPHER_SERVER_PREFERENCE, rejectUnauthorized: false };
|
||||
if (obj.xtlsMethod == 1) { options.secureProtocol = 'TLSv1_method'; }
|
||||
if (obj.xtlsoptions) {
|
||||
if (obj.xtlsoptions.ca) options.ca = obj.xtlsoptions.ca;
|
||||
if (obj.xtlsoptions.cert) options.cert = obj.xtlsoptions.cert;
|
||||
if (obj.xtlsoptions.key) options.key = obj.xtlsoptions.key;
|
||||
if (obj.xtlsoptions.ca) { options.ca = obj.xtlsoptions.ca; }
|
||||
if (obj.xtlsoptions.cert) { options.cert = obj.xtlsoptions.cert; }
|
||||
if (obj.xtlsoptions.key) { options.key = obj.xtlsoptions.key; }
|
||||
}
|
||||
|
||||
obj.socket = obj.tls.connect(obj.port, obj.host, options, obj.xxOnSocketConnected);
|
||||
|
@ -248,7 +248,11 @@ module.exports.CreateAmtManager = function (parent) {
|
||||
break;
|
||||
case 'startTlsHostConfig':
|
||||
if (dev.acmTlsInfo == null) break;
|
||||
console.log(jsondata); // TODO: Start TLS activation.
|
||||
if ((typeof jsondata.value != 'object') || (typeof jsondata.value.status != 'number') || (jsondata.value.status != 0)) {
|
||||
removeAmtDevice(dev); // Failed to start TLS configuration
|
||||
} else {
|
||||
activateIntelAmtTlsAcmEx(dev, jsondata.value); // Start TLS activation.
|
||||
}
|
||||
break;
|
||||
}
|
||||
}
|
||||
@ -1678,13 +1682,13 @@ module.exports.CreateAmtManager = function (parent) {
|
||||
// We are not activated now, go to ACM directly.
|
||||
// If this is Intel AMT 14 or better, we are going to attempt a host-based end-to-end TLS activation.
|
||||
if (typeof dev.intelamt.ver == 'string') { var verSplit = dev.intelamt.ver.split('.'); if (verSplit.length >= 3) { dev.aquired.majorver = parseInt(verSplit[0]); dev.aquired.minorver = parseInt(verSplit[1]); } }
|
||||
if (dev.aquired.majorver >= 14) {
|
||||
//if (dev.aquired.majorver >= 14) {
|
||||
// Perform host-based TLS ACM activation
|
||||
activateIntelAmtTlsAcm(dev, mesh.amt.password, acminfo);
|
||||
} else {
|
||||
//activateIntelAmtTlsAcm(dev, mesh.amt.password, acminfo);
|
||||
//} else {
|
||||
// Perform host-based ACM activation
|
||||
activateIntelAmtAcm(dev, mesh.amt.password, acminfo);
|
||||
}
|
||||
//}
|
||||
}
|
||||
}
|
||||
}
|
||||
@ -1803,6 +1807,27 @@ module.exports.CreateAmtManager = function (parent) {
|
||||
dev.controlMsg({ action: 'startTlsHostConfig', hash: acmTlsInfo.hash, hostVpn: false, dnsSuffixList: null });
|
||||
}
|
||||
|
||||
// Attempt Intel AMT TLS ACM activation after startConfiguration() is called on remote device
|
||||
function activateIntelAmtTlsAcmEx(dev, startConfigData) {
|
||||
console.log('activateIntelAmtTlsAcmEx');
|
||||
// Setup the WSMAN stack, no TLS
|
||||
var comm = CreateWsmanComm(dev.nodeid, 16993, 'admin', '', 1, { cert: dev.acmTlsInfo.certs, key: dev.acmTlsInfo.signkey }, dev.mpsConnection); // TLS with client certificate chain and key.
|
||||
// TODO: Intel AMT leaf TLS cert need to SHA256 hash to "startConfigData.hash"
|
||||
var wsstack = WsmanStackCreateService(comm);
|
||||
dev.amtstack = AmtStackCreateService(wsstack);
|
||||
dev.amtstack.dev = dev;
|
||||
dev.amtstack.BatchEnum(null, ['*AMT_GeneralSettings', '*IPS_HostBasedSetupService'], activateIntelAmtTlsAcmEx1);
|
||||
}
|
||||
|
||||
function activateIntelAmtTlsAcmEx1(stack, name, responses, status) {
|
||||
console.log('activateIntelAmtTlsAcmEx1', status, responses);
|
||||
const dev = stack.dev;
|
||||
if (isAmtDeviceValid(dev) == false) return; // Device no longer exists, ignore this request.
|
||||
if (status != 200) { dev.consoleMsg("Failed to get Intel AMT state."); removeAmtDevice(dev); return; }
|
||||
|
||||
// TODO!!!
|
||||
}
|
||||
|
||||
// Attempt Intel AMT ACM activation
|
||||
function activateIntelAmtAcm(dev, password, acminfo) {
|
||||
// Generate a random Intel AMT password if needed
|
||||
|
@ -51,7 +51,8 @@ module.exports.CertificateOperations = function (parent) {
|
||||
var leafcert = obj.IssueWebServerCertificate(rootcert, false, fqdn, 'mc', 'Intel(R) Client Setup Certificate', { serverAuth: true, '2.16.840.1.113741.1.2.3': true }, false);
|
||||
|
||||
// Setup the certificate chain and key
|
||||
certChain = [obj.pki.certificateToPem(leafcert.cert), obj.pki.certificateToPem(domain.amtacmactivation.certs[certIndex].rootcert)];
|
||||
//certChain = [ obj.pki.certificateToPem(leafcert.cert), obj.pki.certificateToPem(domain.amtacmactivation.certs[certIndex].rootcert) ];
|
||||
certChain = [ obj.pki.certificateToPem(domain.amtacmactivation.certs[certIndex].rootcert), obj.pki.certificateToPem(leafcert.cert) ];
|
||||
signkey = obj.pki.privateKeyToPem(leafcert.key);
|
||||
} else {
|
||||
// Make sure the cert chain is in PEM format
|
||||
@ -61,7 +62,7 @@ module.exports.CertificateOperations = function (parent) {
|
||||
}
|
||||
|
||||
// Hash the leaf certificate and return the certificate chain and signing key
|
||||
return { action: 'acmactivate', certs: certChain, signkey: signkey, hash: obj.getCertHash(certChain[0]) };
|
||||
return { action: 'acmactivate', certs: certChain, signkey: signkey, hash: obj.getCertHash(certChain[certChain.length - 1]) };
|
||||
}
|
||||
|
||||
// Sign a Intel AMT ACM activation request
|
||||
|
Loading…
Reference in New Issue
Block a user