@@ -299,47 +299,134 namespace Implab.Test { | |||||
299 | Assert.AreEqual(i, res); |
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299 | Assert.AreEqual(i, res); | |
300 | } |
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300 | } | |
301 |
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301 | |||
302 |
int |
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302 | const int count = 10000000; | |
303 | int readers = 0; |
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|||
304 | var stop = new ManualResetEvent(false); |
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|||
305 | int total = 0; |
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|||
306 |
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303 | |||
307 |
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304 | int res1 = 0, res2 = 0; | |
308 | const int writersCount = 10; |
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305 | var t1 = Environment.TickCount; | |
309 |
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306 | |||
310 | for (int i = 0; i < writersCount; i++) { |
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307 | AsyncPool.RunThread( | |
311 | Interlocked.Increment(ref writers); |
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308 | () => { | |
312 | AsyncPool |
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309 | for (var i = 0; i < count; i++) | |
313 | .InvokeNewThread(() => { |
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|||
314 | for (int ii = 0; ii < itemsPerWriter; ii++) { |
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315 |
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310 | queue.Enqueue(1); | |
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311 | Console.WriteLine("done writer #1: {0} ms", Environment.TickCount - t1); | |||
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312 | }, | |||
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313 | () => { | |||
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314 | for (var i = 0; i < count; i++) | |||
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315 | queue.Enqueue(2); | |||
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316 | Console.WriteLine("done writer #2: {0} ms", Environment.TickCount - t1); | |||
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317 | }, | |||
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318 | () => { | |||
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319 | int temp; | |||
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320 | int i = 0; | |||
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321 | while (i < count) | |||
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322 | if (queue.TryDequeue(out temp)) { | |||
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323 | i++; | |||
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324 | res1 += temp; | |||
316 | } |
|
325 | } | |
317 | return 1; |
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326 | Console.WriteLine("done reader #1: {0} ms", Environment.TickCount - t1); | |
318 |
|
|
327 | }, | |
319 | .On(() => Interlocked.Decrement(ref writers), PromiseEventType.All); |
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328 | () => { | |
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329 | int temp; | |||
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330 | int i = 0; | |||
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331 | while (i < count) | |||
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332 | if (queue.TryDequeue(out temp)) { | |||
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333 | i++; | |||
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334 | res2 += temp; | |||
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335 | } | |||
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336 | Console.WriteLine("done reader #2: {0} ms", Environment.TickCount - t1); | |||
|
337 | } | |||
|
338 | ) | |||
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339 | .Combine() | |||
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340 | .Join(); | |||
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341 | ||||
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342 | Assert.AreEqual(count * 3, res1 + res2); | |||
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343 | ||||
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344 | Console.WriteLine( | |||
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345 | "done: {0} ms, summ#1: {1}, summ#2: {2}, total: {3}, count: {4}", | |||
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346 | Environment.TickCount - t1, | |||
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347 | res1, | |||
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348 | res2, | |||
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349 | res1 + res2, | |||
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350 | count | |||
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351 | ); | |||
320 |
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|
352 | } | |
321 |
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353 | |||
322 | for (int i = 0; i < 10; i++) { |
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354 | [TestMethod] | |
323 | Interlocked.Increment(ref readers); |
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355 | public void AsyncQueueBatchTest() { | |
324 | AsyncPool |
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356 | var queue = new AsyncQueue<int>(); | |
325 | .InvokeNewThread(() => { |
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357 | ||
326 | int t; |
|
358 | const int wBatch = 29; | |
327 | do { |
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359 | const int wCount = 400000; | |
328 | while (queue.TryDequeue(out t)) |
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360 | const int total = wBatch * wCount * 2; | |
329 | Interlocked.Add(ref total, t); |
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361 | const int summ = wBatch * wCount * 3; | |
330 | } while (writers > 0); |
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362 | ||
331 | return 1; |
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363 | int r1 = 0, r2 = 0; | |
332 | }) |
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364 | const int rBatch = 111; | |
333 | .On(() => { |
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365 | int read = 0; | |
334 | Interlocked.Decrement(ref readers); |
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366 | ||
335 | if (readers == 0) |
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367 | var t1 = Environment.TickCount; | |
336 | stop.Set(); |
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368 | ||
337 | }, PromiseEventType.All); |
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369 | AsyncPool.RunThread( | |
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370 | () => { | |||
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371 | var buffer = new int[wBatch]; | |||
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372 | for(int i = 0; i<wBatch; i++) | |||
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373 | buffer[i] = 1; | |||
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374 | ||||
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375 | for(int i =0; i < wCount; i++) | |||
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376 | queue.EnqueueRange(buffer,0,wBatch); | |||
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377 | Console.WriteLine("done writer #1: {0} ms", Environment.TickCount - t1); | |||
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378 | }, | |||
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379 | () => { | |||
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380 | var buffer = new int[wBatch]; | |||
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381 | for(int i = 0; i<wBatch; i++) | |||
|
382 | buffer[i] = 2; | |||
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383 | ||||
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384 | for(int i =0; i < wCount; i++) | |||
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385 | queue.EnqueueRange(buffer,0,wBatch); | |||
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386 | Console.WriteLine("done writer #2: {0} ms", Environment.TickCount - t1); | |||
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387 | }, | |||
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388 | () => { | |||
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389 | var buffer = new int[rBatch]; | |||
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390 | ||||
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391 | while(read < total) { | |||
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392 | int actual; | |||
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393 | if (queue.TryDequeueRange(buffer,0,rBatch,out actual)) { | |||
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394 | for(int i=0; i< actual; i++) | |||
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395 | r1 += buffer[i]; | |||
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396 | Interlocked.Add(ref read, actual); | |||
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397 | } | |||
338 | } |
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398 | } | |
339 |
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399 | |||
340 | stop.WaitOne(); |
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400 | Console.WriteLine("done reader #1: {0} ms", Environment.TickCount - t1); | |
|
401 | }, | |||
|
402 | () => { | |||
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403 | var buffer = new int[rBatch]; | |||
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404 | ||||
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405 | while(read < total) { | |||
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406 | int actual; | |||
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407 | if (queue.TryDequeueRange(buffer,0,rBatch,out actual)) { | |||
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408 | for(int i=0; i< actual; i++) | |||
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409 | r2 += buffer[i]; | |||
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410 | Interlocked.Add(ref read, actual); | |||
|
411 | } | |||
|
412 | } | |||
341 |
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413 | |||
342 | Assert.AreEqual(itemsPerWriter * writersCount, total); |
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414 | Console.WriteLine("done reader #2: {0} ms", Environment.TickCount - t1); | |
|
415 | } | |||
|
416 | ) | |||
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417 | .Combine() | |||
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418 | .Join(); | |||
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419 | ||||
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420 | Assert.AreEqual(summ , r1 + r2); | |||
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421 | ||||
|
422 | Console.WriteLine( | |||
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423 | "done: {0} ms, summ#1: {1}, summ#2: {2}, total: {3}, count: {4}", | |||
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424 | Environment.TickCount - t1, | |||
|
425 | r1, | |||
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426 | r2, | |||
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427 | r1 + r2, | |||
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428 | total | |||
|
429 | ); | |||
343 | } |
|
430 | } | |
344 |
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431 | |||
345 | [TestMethod] |
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432 | [TestMethod] |
@@ -75,11 +75,11 namespace Implab.Parallels { | |||||
75 | return p; |
|
75 | return p; | |
76 | } |
|
76 | } | |
77 |
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77 | |||
78 |
public static IPromise[] Thread |
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78 | public static IPromise[] RunThread(params Action[] func) { | |
79 | return func.Select(f => InvokeNewThread(f)).ToArray(); |
|
79 | return func.Select(f => InvokeNewThread(f)).ToArray(); | |
80 | } |
|
80 | } | |
81 |
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81 | |||
82 |
public static IPromise<T>[] Thread |
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82 | public static IPromise<T>[] RunThread<T>(params Func<T>[] func) { | |
83 | return func.Select(f => InvokeNewThread(f)).ToArray(); |
|
83 | return func.Select(f => InvokeNewThread(f)).ToArray(); | |
84 | } |
|
84 | } | |
85 | } |
|
85 | } |
@@ -27,6 +27,14 namespace Implab.Parallels { | |||||
27 | m_data[0] = value; |
|
27 | m_data[0] = value; | |
28 | } |
|
28 | } | |
29 |
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29 | |||
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30 | public Chunk(int size, T[] data, int offset, int length, int alloc) { | |||
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31 | m_size = size; | |||
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32 | m_hi = length; | |||
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33 | m_alloc = alloc; | |||
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34 | m_data = new T[size]; | |||
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35 | Array.Copy(data, offset, m_data, 0, length); | |||
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36 | } | |||
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37 | ||||
30 | public int Low { |
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38 | public int Low { | |
31 | get { return m_low; } |
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39 | get { return m_low; } | |
32 | } |
|
40 | } | |
@@ -73,27 +81,35 namespace Implab.Parallels { | |||||
73 | int alloc; |
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81 | int alloc; | |
74 | int allocSize; |
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82 | int allocSize; | |
75 |
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83 | |||
|
84 | // in case the batch size is larger than a free space in chunk | |||
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85 | // tailGap is used to over allocate the space in the chunk to | |||
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86 | // get exclusive permission on creation of the next one. | |||
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87 | int tailGap = 0; | |||
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88 | ||||
76 | do { |
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89 | do { | |
77 | alloc = m_alloc; |
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90 | alloc = m_alloc; | |
78 |
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91 | |||
79 | if (alloc > m_size) { |
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92 | if (alloc > m_size) { | |
80 | enqueued = 0; |
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93 | // the chunk is full and someone already | |
81 |
|
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94 | // creating the new one | |
82 |
|
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95 | enqueued = 0; // nothing was added | |
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96 | extend = false; // the caller shouldn't try to extend the queue | |||
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97 | return false; // nothing was added | |||
83 | } |
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98 | } | |
84 |
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99 | |||
85 |
allocSize = Math.Min(m_size - |
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100 | allocSize = Math.Min(m_size - alloc, length); | |
86 | } while(alloc != Interlocked.CompareExchange(ref m_alloc, alloc + allocSize, alloc)); |
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101 | if (allocSize < length) // the chunk doesn't have enough space to hold the whole batch | |
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102 | tailGap = 1; // overallocate space to get exclusive permission to extend queue | |||
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103 | } while(alloc != Interlocked.CompareExchange(ref m_alloc, alloc + allocSize + tailGap, alloc)); | |||
87 |
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104 | |||
88 | if (alloc == m_size) { |
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105 | extend = tailGap != 0; | |
89 |
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106 | enqueued = allocSize; | |
90 | extend = true; |
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107 | ||
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108 | // if the chunk was already full then length > 0, allocSize = 0, tailGap = 1 | |||
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109 | if (alloc == m_size) | |||
91 | return false; |
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110 | return false; | |
92 | } |
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|||
93 |
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111 | |||
94 | Array.Copy(batch, offset, m_data, alloc, allocSize); |
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112 | Array.Copy(batch, offset, m_data, alloc, allocSize); | |
95 | enqueued = allocSize; |
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96 | extend = false; |
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|||
97 |
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113 | |||
98 | while (alloc != Interlocked.CompareExchange(ref m_hi, alloc + allocSize, alloc)) { |
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114 | while (alloc != Interlocked.CompareExchange(ref m_hi, alloc + allocSize, alloc)) { | |
99 | // spin wait for commit |
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115 | // spin wait for commit | |
@@ -101,12 +117,35 namespace Implab.Parallels { | |||||
101 | return true; |
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117 | return true; | |
102 | } |
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118 | } | |
103 |
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119 | |||
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120 | public bool TryDequeueBatch(T[] buffer, int offset, int length,out int dequeued, out bool recycle) { | |||
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121 | int low, hi, batchSize; | |||
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122 | ||||
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123 | do { | |||
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124 | low = m_low; | |||
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125 | hi = m_hi; | |||
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126 | if (low >= hi) { | |||
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127 | dequeued = 0; | |||
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128 | recycle = (low == m_size); // recycling could be restarted and we need to signal again | |||
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129 | return false; | |||
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130 | } | |||
|
131 | batchSize = Math.Min(hi - low, length); | |||
|
132 | } while(low != Interlocked.CompareExchange(ref m_low, low + batchSize, low)); | |||
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133 | ||||
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134 | recycle = (low == m_size - batchSize); | |||
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135 | dequeued = batchSize; | |||
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136 | ||||
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137 | Array.Copy(m_data, low, buffer, offset, batchSize); | |||
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138 | ||||
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139 | return true; | |||
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140 | } | |||
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141 | ||||
104 | public T GetAt(int pos) { |
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142 | public T GetAt(int pos) { | |
105 | return m_data[pos]; |
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143 | return m_data[pos]; | |
106 | } |
|
144 | } | |
107 | } |
|
145 | } | |
108 |
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146 | |||
109 | public const int DEFAULT_CHUNK_SIZE = 32; |
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147 | public const int DEFAULT_CHUNK_SIZE = 32; | |
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148 | public const int MAX_CHUNK_SIZE = 262144; | |||
110 |
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149 | |||
111 | readonly int m_chunkSize = DEFAULT_CHUNK_SIZE; |
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150 | readonly int m_chunkSize = DEFAULT_CHUNK_SIZE; | |
112 |
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151 | |||
@@ -117,6 +156,10 namespace Implab.Parallels { | |||||
117 | m_last = m_first = new Chunk(m_chunkSize); |
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156 | m_last = m_first = new Chunk(m_chunkSize); | |
118 | } |
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157 | } | |
119 |
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158 | |||
|
159 | /// <summary> | |||
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160 | /// Adds the specified value to the queue. | |||
|
161 | /// </summary> | |||
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162 | /// <param name="value">Tha value which will be added to the queue.</param> | |||
120 | public void Enqueue(T value) { |
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163 | public void Enqueue(T value) { | |
121 | var last = m_last; |
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164 | var last = m_last; | |
122 | // spin wait to the new chunk |
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165 | // spin wait to the new chunk | |
@@ -129,14 +172,88 namespace Implab.Parallels { | |||||
129 | break; |
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172 | break; | |
130 | last = m_last; |
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173 | last = m_last; | |
131 | } else { |
|
174 | } else { | |
132 |
while (last |
|
175 | while (last == m_last) { | |
133 | Thread.MemoryBarrier(); |
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176 | Thread.MemoryBarrier(); | |
|
177 | } | |||
134 |
|
|
178 | last = m_last; | |
135 |
|
|
179 | } | |
136 |
|
|
180 | } | |
137 |
|
|
181 | } | |
|
182 | ||||
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183 | /// <summary> | |||
|
184 | /// Adds the specified data to the queue. | |||
|
185 | /// </summary> | |||
|
186 | /// <param name="data">The buffer which contains the data to be enqueued.</param> | |||
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187 | /// <param name="offset">The offset of the data in the buffer.</param> | |||
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188 | /// <param name="length">The size of the data to read from the buffer.</param> | |||
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189 | public void EnqueueRange(T[] data, int offset, int length) { | |||
|
190 | if (data == null) | |||
|
191 | throw new ArgumentNullException("data"); | |||
|
192 | if (offset < 0) | |||
|
193 | throw new ArgumentOutOfRangeException("offset"); | |||
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194 | if (length < 1 || offset + length > data.Length) | |||
|
195 | throw new ArgumentOutOfRangeException("length"); | |||
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196 | ||||
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197 | var last = m_last; | |||
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198 | ||||
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199 | bool extend; | |||
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200 | int enqueued; | |||
|
201 | ||||
|
202 | while (length > 0) { | |||
|
203 | extend = true; | |||
|
204 | if (last != null && last.TryEnqueueBatch(data, offset, length, out enqueued, out extend)) { | |||
|
205 | length -= enqueued; | |||
|
206 | offset += enqueued; | |||
138 | } |
|
207 | } | |
139 |
|
208 | |||
|
209 | if (extend) { | |||
|
210 | // there was no enough space in the chunk | |||
|
211 | // or there was no chunks in the queue | |||
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212 | ||||
|
213 | while (length > 0) { | |||
|
214 | ||||
|
215 | var size = Math.Min(length, MAX_CHUNK_SIZE); | |||
|
216 | ||||
|
217 | var chunk = new Chunk( | |||
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218 | Math.Max(size, m_chunkSize), | |||
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219 | data, | |||
|
220 | offset, | |||
|
221 | size, | |||
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222 | length // length >= size | |||
|
223 | ); | |||
|
224 | ||||
|
225 | if (!EnqueueChunk(last, chunk)) { | |||
|
226 | // looks like the queue has been updated then proceed from the beginning | |||
|
227 | last = m_last; | |||
|
228 | break; | |||
|
229 | } | |||
|
230 | ||||
|
231 | // we have successfully added the new chunk | |||
|
232 | last = chunk; | |||
|
233 | length -= size; | |||
|
234 | offset += size; | |||
|
235 | } | |||
|
236 | } else { | |||
|
237 | // we don't need to extend the queue, if we successfully enqueued data | |||
|
238 | if (length == 0) | |||
|
239 | break; | |||
|
240 | ||||
|
241 | // if we need to wait while someone is extending the queue | |||
|
242 | // spinwait | |||
|
243 | while (last == m_last) { | |||
|
244 | Thread.MemoryBarrier(); | |||
|
245 | } | |||
|
246 | ||||
|
247 | last = m_last; | |||
|
248 | } | |||
|
249 | } | |||
|
250 | } | |||
|
251 | ||||
|
252 | /// <summary> | |||
|
253 | /// Tries to retrieve the first element from the queue. | |||
|
254 | /// </summary> | |||
|
255 | /// <returns><c>true</c>, if element is dequeued, <c>false</c> otherwise.</returns> | |||
|
256 | /// <param name="value">The value of the dequeued element.</param> | |||
140 | public bool TryDequeue(out T value) { |
|
257 | public bool TryDequeue(out T value) { | |
141 | var chunk = m_first; |
|
258 | var chunk = m_first; | |
142 | bool recycle; |
|
259 | bool recycle; | |
@@ -161,6 +278,92 namespace Implab.Parallels { | |||||
161 | return false; |
|
278 | return false; | |
162 | } |
|
279 | } | |
163 |
|
280 | |||
|
281 | /// <summary> | |||
|
282 | /// Tries to dequeue the specified amount of data from the queue. | |||
|
283 | /// </summary> | |||
|
284 | /// <returns><c>true</c>, if data was deuqueued, <c>false</c> otherwise.</returns> | |||
|
285 | /// <param name="buffer">The buffer to which the data will be written.</param> | |||
|
286 | /// <param name="offset">The offset in the buffer at which the data will be written.</param> | |||
|
287 | /// <param name="length">The maximum amount of data to be retrieved.</param> | |||
|
288 | /// <param name="dequeued">The actual amout of the retrieved data.</param> | |||
|
289 | public bool TryDequeueRange(T[] buffer, int offset, int length, out int dequeued) { | |||
|
290 | if (buffer == null) | |||
|
291 | throw new ArgumentNullException("buffer"); | |||
|
292 | if (offset < 0) | |||
|
293 | throw new ArgumentOutOfRangeException("offset"); | |||
|
294 | if (length < 1 || offset + length > buffer.Length) | |||
|
295 | throw new ArgumentOutOfRangeException("length"); | |||
|
296 | ||||
|
297 | var chunk = m_first; | |||
|
298 | bool recycle; | |||
|
299 | dequeued = 0; | |||
|
300 | while (chunk != null) { | |||
|
301 | ||||
|
302 | int actual; | |||
|
303 | if (chunk.TryDequeueBatch(buffer, offset, length, out actual, out recycle)) { | |||
|
304 | offset += actual; | |||
|
305 | length -= actual; | |||
|
306 | dequeued += actual; | |||
|
307 | } | |||
|
308 | ||||
|
309 | if (recycle) // this chunk is waste | |||
|
310 | RecycleFirstChunk(chunk); | |||
|
311 | else if (actual == 0) | |||
|
312 | break; // the chunk is usable, but doesn't contain any data (it's the last chunk in the queue) | |||
|
313 | ||||
|
314 | if (length == 0) | |||
|
315 | return true; | |||
|
316 | ||||
|
317 | // we still may dequeue something | |||
|
318 | // try again | |||
|
319 | chunk = m_first; | |||
|
320 | } | |||
|
321 | ||||
|
322 | return dequeued != 0; | |||
|
323 | } | |||
|
324 | ||||
|
325 | /// <summary> | |||
|
326 | /// Tries to dequeue all remaining data in the first chunk. | |||
|
327 | /// </summary> | |||
|
328 | /// <returns><c>true</c>, if data was dequeued, <c>false</c> otherwise.</returns> | |||
|
329 | /// <param name="buffer">The buffer to which data will be written.</param> | |||
|
330 | /// <param name="offset">The offset in the buffer at which the data will be written.</param> | |||
|
331 | /// <param name="length">Tha maximum amount of the data to be dequeued.</param> | |||
|
332 | /// <param name="dequeued">The actual amount of the dequeued data.</param> | |||
|
333 | public bool TryDequeueChunk(T[] buffer, int offset, int length, out int dequeued) { | |||
|
334 | if (buffer == null) | |||
|
335 | throw new ArgumentNullException("buffer"); | |||
|
336 | if (offset < 0) | |||
|
337 | throw new ArgumentOutOfRangeException("offset"); | |||
|
338 | if (length < 1 || offset + length > buffer.Length) | |||
|
339 | throw new ArgumentOutOfRangeException("length"); | |||
|
340 | ||||
|
341 | var chunk = m_first; | |||
|
342 | bool recycle; | |||
|
343 | dequeued = 0; | |||
|
344 | ||||
|
345 | while (chunk != null) { | |||
|
346 | ||||
|
347 | int actual; | |||
|
348 | if (chunk.TryDequeueBatch(buffer, offset, length, out actual, out recycle)) { | |||
|
349 | dequeued = actual; | |||
|
350 | } | |||
|
351 | ||||
|
352 | if (recycle) // this chunk is waste | |||
|
353 | RecycleFirstChunk(chunk); | |||
|
354 | ||||
|
355 | // if we have dequeued any data, then return | |||
|
356 | if (dequeued != 0) | |||
|
357 | return true; | |||
|
358 | ||||
|
359 | // we still may dequeue something | |||
|
360 | // try again | |||
|
361 | chunk = m_first; | |||
|
362 | } | |||
|
363 | ||||
|
364 | return false; | |||
|
365 | } | |||
|
366 | ||||
164 | bool EnqueueChunk(Chunk last, Chunk chunk) { |
|
367 | bool EnqueueChunk(Chunk last, Chunk chunk) { | |
165 | if (Interlocked.CompareExchange(ref m_last, chunk, last) != last) |
|
368 | if (Interlocked.CompareExchange(ref m_last, chunk, last) != last) | |
166 | return false; |
|
369 | return false; |
@@ -9,31 +9,31 namespace Implab | |||||
9 | { |
|
9 | { | |
10 | public static class Safe |
|
10 | public static class Safe | |
11 | { |
|
11 | { | |
12 |
public static void ArgumentMatch(string |
|
12 | public static void ArgumentMatch(string value, string paramName, Regex rx) { | |
13 | if (rx == null) |
|
13 | if (rx == null) | |
14 | throw new ArgumentNullException("rx"); |
|
14 | throw new ArgumentNullException("rx"); | |
15 |
if (!rx.IsMatch( |
|
15 | if (!rx.IsMatch(value)) | |
16 |
throw new ArgumentException(String.Format("The prameter value must match {0}", rx), |
|
16 | throw new ArgumentException(String.Format("The prameter value must match {0}", rx), paramName); | |
17 | } |
|
17 | } | |
18 |
|
18 | |||
19 |
public static void ArgumentNotEmpty(string |
|
19 | public static void ArgumentNotEmpty(string value, string paramName) { | |
20 |
if (String.IsNullOrEmpty( |
|
20 | if (String.IsNullOrEmpty(value)) | |
21 |
throw new ArgumentException("The parameter can't be empty", |
|
21 | throw new ArgumentException("The parameter can't be empty", paramName); | |
22 | } |
|
22 | } | |
23 |
|
23 | |||
24 |
public static void ArgumentNotEmpty<T>(T[] |
|
24 | public static void ArgumentNotEmpty<T>(T[] value, string paramName) { | |
25 |
if ( |
|
25 | if (value == null || value.Length == 0) | |
26 |
throw new ArgumentException("The array must be not emty", |
|
26 | throw new ArgumentException("The array must be not emty", paramName); | |
27 | } |
|
27 | } | |
28 |
|
28 | |||
29 |
public static void ArgumentNotNull(object |
|
29 | public static void ArgumentNotNull(object value, string paramName) { | |
30 |
if ( |
|
30 | if (value == null) | |
31 |
throw new ArgumentNullException( |
|
31 | throw new ArgumentNullException(paramName); | |
32 | } |
|
32 | } | |
33 |
|
33 | |||
34 |
public static void ArgumentInRange(int |
|
34 | public static void ArgumentInRange(int value, int min, int max, string paramName) { | |
35 |
if ( |
|
35 | if (value < min || value > max) | |
36 |
throw new ArgumentOutOfRangeException( |
|
36 | throw new ArgumentOutOfRangeException(paramName); | |
37 | } |
|
37 | } | |
38 |
|
38 | |||
39 | public static void Dispose<T>(T obj) where T : class |
|
39 | public static void Dispose<T>(T obj) where T : class |
@@ -16,36 +16,46 namespace MonoPlay { | |||||
16 |
|
16 | |||
17 | const int count = 10000000; |
|
17 | const int count = 10000000; | |
18 |
|
18 | |||
19 |
|
19 | int res1 = 0, res2 = 0; | ||
20 | var t1 = Environment.TickCount; |
|
20 | var t1 = Environment.TickCount; | |
21 |
|
21 | |||
22 |
AsyncPool.Thread |
|
22 | AsyncPool.RunThread( | |
23 | () => { |
|
23 | () => { | |
24 | for (var i = 0; i < count; i++) |
|
24 | for (var i = 0; i < count; i++) | |
25 |
q1.Enqueue( |
|
25 | q1.Enqueue(1); | |
|
26 | Console.WriteLine("done writer #1: {0} ms", Environment.TickCount - t1); | |||
26 | }, |
|
27 | }, | |
27 | () => { |
|
28 | () => { | |
28 | for (var i = 0; i < count; i++) |
|
29 | for (var i = 0; i < count; i++) | |
29 |
q1.Enqueue( |
|
30 | q1.Enqueue(2); | |
|
31 | Console.WriteLine("done writer #2: {0} ms", Environment.TickCount - t1); | |||
30 | }, |
|
32 | }, | |
31 | () => { |
|
33 | () => { | |
32 | int temp = 0; |
|
34 | int temp = 0; | |
33 | int i = 0; |
|
35 | int i = 0; | |
34 | while (i < count) |
|
36 | while (i < count) | |
35 | if (q1.TryDequeue(out temp)) |
|
37 | if (q1.TryDequeue(out temp)) { | |
36 | i++; |
|
38 | i++; | |
|
39 | res1 += temp; | |||
|
40 | } | |||
|
41 | Console.WriteLine("done reader #1: {0} ms", Environment.TickCount - t1); | |||
37 | }, |
|
42 | }, | |
38 | () => { |
|
43 | () => { | |
39 | int temp = 0; |
|
44 | int temp = 0; | |
40 | int i = 0; |
|
45 | int i = 0; | |
41 | while (i < count) |
|
46 | while (i < count) | |
42 | if (q1.TryDequeue(out temp)) |
|
47 | if (q1.TryDequeue(out temp)) { | |
43 | i++; |
|
48 | i++; | |
|
49 | res2 += temp; | |||
|
50 | } | |||
|
51 | Console.WriteLine("done reader #2: {0} ms", Environment.TickCount - t1); | |||
44 | } |
|
52 | } | |
45 | ) |
|
53 | ) | |
46 | .Combine() |
|
54 | .Combine() | |
47 | .Join(); |
|
55 | .Join(); | |
48 |
|
56 | |||
|
57 | Console.WriteLine("done: {0} ms, summ#1: {1}, summ#2: {2}, total: {3}", Environment.TickCount - t1, res1, res2, res1 + res2); | |||
|
58 | ||||
49 | var t2 = Environment.TickCount; |
|
59 | var t2 = Environment.TickCount; | |
50 | Console.WriteLine("MTQueue: {0} ms", t2 - t1); |
|
60 | Console.WriteLine("MTQueue: {0} ms", t2 - t1); | |
51 |
|
61 | |||
@@ -65,7 +75,7 namespace MonoPlay { | |||||
65 | t1 = Environment.TickCount; |
|
75 | t1 = Environment.TickCount; | |
66 |
|
76 | |||
67 |
|
77 | |||
68 |
AsyncPool.Thread |
|
78 | AsyncPool.RunThread( | |
69 | () => { |
|
79 | () => { | |
70 | for (var i = 0; i < count; i++) |
|
80 | for (var i = 0; i < count; i++) | |
71 | lock (q2) |
|
81 | lock (q2) |
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