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/***************************************************************************
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 *   Copyright (C) December 10, 2008 by Mattias Runge                             *
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 *   mattias@runge.se                                                      *
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 *   virtualmachine.cpp                                            *
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 *                                                                         *
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 *   This program is free software; you can redistribute it and/or modify  *
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 *   it under the terms of the GNU General Public License as published by  *
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 *   the Free Software Foundation; either version 2 of the License, or     *
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 *   (at your option) any later version.                                   *
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 *                                                                         *
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 *   This program is distributed in the hope that it will be useful,       *
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 *   but WITHOUT ANY WARRANTY; without even the implied warranty of        *
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 *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the         *
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 *   GNU General Public License for more details.                          *
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 *                                                                         *
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 *   You should have received a copy of the GNU General Public License     *
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 *   along with this program; if not, write to the                         *
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 *   Free Software Foundation, Inc.,                                       *
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 *   59 Temple Place - Suite 330, Boston, MA  02111-1307, USA.             *
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 ***************************************************************************/
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#include <map>
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#include "virtualmachine.h"
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VirtualMachine* VirtualMachine::myInstance = NULL;
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VirtualMachine& VirtualMachine::getInstance()
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{
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	if (myInstance == NULL)
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	{
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		myInstance = new VirtualMachine();
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	}
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	return *myInstance;
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}
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void VirtualMachine::deleteInstance()
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{
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	if (myInstance != NULL)
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	{
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		delete myInstance;
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		myInstance = NULL;
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	}
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}
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VirtualMachine::VirtualMachine()
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{
50
 
51
}
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VirtualMachine::~VirtualMachine()
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{
55
 
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}
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void VirtualMachine::run()
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{
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	SyslogStream &slog = SyslogStream::getInstance();
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	string basePath = Settings::get("BasePath") + "/Services/System/";
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	string scriptName = "Base.js";
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	string scriptFileName = basePath + scriptName;
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	if (!file_exists(scriptFileName))
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	{
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		slog << "Failed to load :" << scriptFileName << "\n";
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	}
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	string scriptSource = file_get_contents(scriptFileName);
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	Handle<String> source =  String::New(scriptSource.c_str(), scriptSource.length());
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	//each script name must be unique , for this demo I just run one embedded script, so the name can be fixed
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	Handle<String> name = String::New(scriptName.c_str(), scriptName.length());
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	// Create a template for the global object.
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	myGlobal = ObjectTemplate::New();
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80
	//associates "print" on script to the Print function
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	myGlobal->Set(String::New("log"), FunctionTemplate::New(VirtualMachine_log));
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	myGlobal->Set(String::New("sendCanMessage"), FunctionTemplate::New(VirtualMachine_sendCanMessage));
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	myGlobal->Set(String::New("loadScript"), FunctionTemplate::New(VirtualMachine_loadScript));
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	myGlobal->Set(String::New("setTimeout"), FunctionTemplate::New(VirtualMachine_setTimeout));
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	myGlobal->Set(String::New("setInterval"), FunctionTemplate::New(VirtualMachine_setInterval));
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	myGlobal->Set(String::New("clearTimeout"), FunctionTemplate::New(VirtualMachine_clearInterval));
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	myGlobal->Set(String::New("clearInterval"), FunctionTemplate::New(VirtualMachine_clearInterval));
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89
	//create context for the script
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	myContext = Context::New(NULL, myGlobal);
91
 
92
 
93
	//access global context within this scope
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	Context::Scope context_scope(myContext);
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	//exception handler
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	TryCatch try_catch;
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	//compile script to binary code - JIT
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	Handle<Script> script = Script::Compile(source, name);
99
 
100
	//check if we got problems on compilation
101
	if (script.IsEmpty())
102
	{
103
 
104
		// Print errors that happened during compilation.
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		String::AsciiValue error(try_catch.Exception());
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		slog << "Failed to compile script: " << *error << "\n";
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	}
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	else
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	{
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		//no errors , let's continue
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		Handle<Value> result = script->Run();
112
 
113
		//check if execution ended with errors
114
		if (result.IsEmpty())
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		{
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			// Print errors that happened during execution.
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			String::AsciiValue error(try_catch.Exception());
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			slog << "Constructor: Failed to run script: " << *error << "\n";
119
		}
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		else
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		{
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			loadScript("System/Service.js");
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			loadScript("System/ServiceManager.js");
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			loadScript("System/CanMessage.js");
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			loadScript("System/CanManager.js");
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			loadScript("System/CanService.js");
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			loadScript("System/Startup.js");
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			loadScript("Autostart.js");
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130
			myFunctionHandleHeartbeat = Handle<Function>::Cast(myContext->Global()->Get(String::New("handleHeartbeat")));
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			myFunctionOfflineCheck = Handle<Function>::Cast(myContext->Global()->Get(String::New("offlineCheck")));
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			myFunctionHandleMessage = Handle<Function>::Cast(myContext->Global()->Get(String::New("handleMessage")));
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			myFunctionStartup = Handle<Function>::Cast(myContext->Global()->Get(String::New("startup")));
134
		}
135
	}
136
 
137
	const int argc = 0;
138
	Handle<Value> argv[argc] = { };
139
 
140
	Handle<Value> result = myFunctionStartup->Call(myFunctionStartup, argc, argv); // argc and argv are your standard arguments to a function
141
 
142
	mySemaphore.lock();
143
 
144
	while (1)
145
	{
146
		string expression;
147
 
148
		while (myExpressions.size() > 0)
149
		{
150
			expression = myExpressions.pop();
151
 
152
			runExpression(expression);
153
		}
154
 
155
		CanMessage canMessage;
156
 
157
		while (myCanMessages.size() > 0)
158
		{
159
			canMessage = myCanMessages.pop();
160
 
161
			if (canMessage.isHeartbeat())
162
			{
163
				callHandleHeartbeat(stoi(canMessage.getData()["HardwareId"].getValue()));
164
			}
165
			else
166
			{
167
				callHandleMessage(canMessage);
168
			}
169
		}
170
 
171
		mySemaphore.wait();
172
	}
173
 
174
	mySemaphore.unlock();
175
}
176
 
177
void VirtualMachine::queueCanMessage(CanMessage canMessage)
178
{
179
	myCanMessages.push(canMessage);
180
	mySemaphore.broadcast();
181
}
182
 
183
void VirtualMachine::queueExpression(string expression)
184
{
185
	myExpressions.push(expression);
186
	mySemaphore.broadcast();
187
}
188
 
189
bool VirtualMachine::loadScript(string scriptName)
190
{
191
	SyslogStream &slog = SyslogStream::getInstance();
192
 
193
	string basePath = Settings::get("BasePath") + "/Services/";
194
	string scriptFileName = basePath + scriptName;
195
 
196
	if (!file_exists(scriptFileName))
197
	{
198
		slog << "Failed to load :" << scriptFileName << "\n";
199
		return false;
200
	}
201
 
202
	string scriptSource = file_get_contents(scriptFileName);
203
 
204
	Handle<String> source =  String::New(scriptSource.c_str(), scriptSource.length());
205
	//each script name must be unique , for this demo I just run one embedded script, so the name can be fixed
206
	Handle<String> name = String::New(scriptName.c_str(), scriptName.length());
207
 
208
	//access global context within this scope
209
	Context::Scope context_scope(myContext);
210
	//exception handler
211
	TryCatch try_catch;
212
	//compile script to binary code - JIT
213
	Handle<Script> script = Script::Compile(source, name);
214
 
215
	//check if we got problems on compilation
216
	if (script.IsEmpty())
217
	{
218
		// Print errors that happened during compilation.
219
		String::AsciiValue error(try_catch.Exception());
220
		slog << "Failed to compile script: " << *error << "\n";
221
		return false;
222
	}
223
	else
224
	{
225
		//no errors , let's continue
226
		Handle<Value> result = script->Run();
227
 
228
		//check if execution ended with errors
229
		if (result.IsEmpty())
230
		{
231
			// Print errors that happened during execution.
232
			String::AsciiValue error(try_catch.Exception());
233
			slog << "loadScript: Failed to run script: " << *error << "\n";
234
			return false;
235
		}
236
	}
237
 
238
	return true;
239
}
240
 
241
void VirtualMachine::callHandleHeartbeat(int hardwareId)
242
{
243
	const int argc = 1;
244
	Handle<Value> argv[argc] = { Integer::New(hardwareId) };
245
 
246
	Handle<Value> result = myFunctionHandleHeartbeat->Call(myFunctionHandleHeartbeat, argc, argv); // argc and argv are your standard arguments to a function
247
}
248
 
249
void VirtualMachine::callHandleMessage(CanMessage canMessage)
250
{
251
	const int argc = 6;
252
	Handle<Value> argv[argc] = {String::New(canMessage.getClassName().c_str()),
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								String::New(canMessage.getDirectionFlag().c_str()),
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								String::New(canMessage.getModuleName().c_str()),
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								Integer::New(canMessage.getModuleId()),
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								String::New(canMessage.getCommandName().c_str()),
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								String::New(canMessage.getJSONData().c_str()) };
258
 
259
	Handle<Value> result = myFunctionHandleMessage->Call(myFunctionHandleMessage, argc, argv); // argc and argv are your standard arguments to a function
260
}
261
 
262
int VirtualMachine::setInterval(string expression, int interval, bool single)
263
{
264
	IntervalThread intervalThread(expression, interval, single);
265
	intervalThread.start();
266
 
267
	int timeoutId = myTimers.size();
268
	myTimers[timeoutId] = intervalThread;
269
	myTimers[timeoutId].start();
270
 
271
	return timeoutId;
272
}
273
 
274
bool VirtualMachine::clearInterval(int timeoutId)
275
{
276
	if (myTimers.find(timeoutId) != myTimers.end())
277
	{
278
		myTimers.erase(timeoutId);
279
		return true;
280
	}
281
 
282
	return false;
283
}
284
 
285
bool VirtualMachine::runExpression(string expression)
286
{
287
	SyslogStream &slog = SyslogStream::getInstance();
288
 
289
	string scriptName = "runExpression";
290
 
291
	Handle<String> source =  String::New(expression.c_str(), expression.length());
292
	//each script name must be unique , for this demo I just run one embedded script, so the name can be fixed
293
	Handle<String> name = String::New(scriptName.c_str(), scriptName.length());
294
 
295
	//access global context within this scope
296
	Context::Scope context_scope(myContext);
297
	//exception handler
298
	TryCatch try_catch;
299
	//compile script to binary code - JIT
300
	Handle<Script> script = Script::Compile(source, name);
301
 
302
	//check if we got problems on compilation
303
	if (script.IsEmpty())
304
	{
305
		// Print errors that happened during compilation.
306
		String::AsciiValue error(try_catch.Exception());
307
		slog << "Failed to compile script: " << *error << "\n";
308
 
309
		return false;
310
	}
311
	else
312
	{
313
		//no errors , let's continue
314
		Handle<Value> result = script->Run();
315
 
316
		//check if execution ended with errors
317
		if (result.IsEmpty())
318
		{
319
			// Print errors that happened during execution.
320
			String::AsciiValue error(try_catch.Exception());
321
			slog << "runExpression: Failed to run script: " << *error << "\n";
322
			return false;
323
		}
324
	}
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326
	return true;
327
}
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Handle<Value> VirtualMachine_log(const Arguments& args)
330
{
331
	SyslogStream &slog = SyslogStream::getInstance();
332
 
333
	String::AsciiValue str(args[0]);
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335
	slog << *str;
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337
	return Undefined();
338
}
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340
Handle<Value> VirtualMachine_sendCanMessage(const Arguments& args)
341
{
342
	SyslogStream &slog = SyslogStream::getInstance();
343
	CanNetManager &canMan = CanNetManager::getInstance();
344
 
345
	CanMessage canMessage;
346
 
347
	String::AsciiValue className(args[0]);
348
	canMessage.setClassName(*className);
349
	String::AsciiValue directionFlag(args[1]);
350
	canMessage.setDirectionFlag(*directionFlag);
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	String::AsciiValue moduleName(args[2]);
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	canMessage.setModuleName(*moduleName);
353
	canMessage.setModuleId(args[3]->Uint32Value());
354
	String::AsciiValue commandName(args[4]);
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	canMessage.setCommandName(*commandName);
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357
	String::AsciiValue dataString(args[5]);
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359
	vector<string> parts = explode(",", trim(*dataString, ','));
360
	map<string, CanVariable> data;
361
 
362
	for (int n = 0; n < parts.size(); n++)
363
	{
364
		vector<string> keyAndValue = explode(":", parts[n]);
365
 
366
		//string key = trim(keyAndValue[0], ' ');
367
		//string value = trim(keyAndValue[1], ' ');
368
		data[keyAndValue[0]] = CanVariable(keyAndValue[0], keyAndValue[1]);
369
	}
370
 
371
	canMessage.setData(data);
372
 
373
	canMan.sendMessage(canMessage);
374
 
375
	return Undefined();
376
}
377
 
378
Handle<Value> VirtualMachine_loadScript(const Arguments& args)
379
{
380
	VirtualMachine &vm = VirtualMachine::getInstance();
381
 
382
	String::AsciiValue str(args[0]);
383
 
384
	return Boolean::New(vm.loadScript(*str));
385
}
386
 
387
Handle<Value> VirtualMachine_setInterval(const Arguments& args)
388
{
389
	VirtualMachine &vm = VirtualMachine::getInstance();
390
 
391
	String::AsciiValue expression(args[0]);
392
	unsigned int interval = args[1]->Uint32Value();
393
 
394
	return Integer::New(vm.setInterval(*expression, interval, false));
395
}
396
 
397
Handle<Value> VirtualMachine_setTimeout(const Arguments& args)
398
{
399
	VirtualMachine &vm = VirtualMachine::getInstance();
400
 
401
	String::AsciiValue expression(args[0]);
402
	unsigned int interval = args[1]->Uint32Value();
403
 
404
	return Integer::New(vm.setInterval(*expression, interval, true));
405
}
406
 
407
Handle<Value> VirtualMachine_clearInterval(const Arguments& args)
408
{
409
	VirtualMachine &vm = VirtualMachine::getInstance();
410
 
411
	return Boolean::New(vm.clearInterval(args[0]->Uint32Value()));
412
}