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root/jsr166/jsr166/src/test/loops/OfferPollLoops.java
Revision: 1.9
Committed: Mon Aug 10 03:13:33 2015 UTC (8 years, 8 months ago) by jsr166
Branch: MAIN
Changes since 1.8: +0 -1 lines
Log Message:
delete unwanted blank lines

File Contents

# Content
1 /*
2 * Written by Doug Lea with assistance from members of JCP JSR-166
3 * Expert Group and released to the public domain, as explained at
4 * http://creativecommons.org/publicdomain/zero/1.0/
5 */
6
7 import java.util.*;
8 import java.util.concurrent.*;
9 //import jsr166y.*;
10
11 public class OfferPollLoops {
12 static final int NCPUS = Runtime.getRuntime().availableProcessors();
13 static final Random rng = new Random();
14 static final ExecutorService pool = Executors.newCachedThreadPool();
15 static boolean print = false;
16 static int producerSum;
17 static int consumerSum;
18 static synchronized void addProducerSum(int x) {
19 producerSum += x;
20 }
21
22 static synchronized void addConsumerSum(int x) {
23 consumerSum += x;
24 }
25
26 static synchronized void checkSum() {
27 if (producerSum != consumerSum)
28 throw new Error("CheckSum mismatch");
29 }
30
31 // Number of elements passed around -- must be power of two
32 // Elements are reused from pool to minimize alloc impact
33 static final int POOL_SIZE = 1 << 8;
34 static final int POOL_MASK = POOL_SIZE-1;
35 static final Integer[] intPool = new Integer[POOL_SIZE];
36 static {
37 for (int i = 0; i < POOL_SIZE; ++i)
38 intPool[i] = Integer.valueOf(i);
39 }
40
41 // Number of puts by producers or takes by consumers
42 static final int ITERS = 1 << 20;
43
44 // max lag between a producer and consumer to avoid
45 // this becoming a GC test rather than queue test.
46 // Used only per-pair to lessen impact on queue sync
47 static final int LAG_MASK = (1 << 12) - 1;
48
49 public static void main(String[] args) throws Exception {
50 int maxN = NCPUS * 3 / 2;
51
52 if (args.length > 0)
53 maxN = Integer.parseInt(args[0]);
54
55 warmup();
56 print = true;
57 for (int k = 1, i = 1; i <= maxN;) {
58 System.out.println("Pairs:" + i);
59 oneTest(i, ITERS);
60 if (i == k) {
61 k = i << 1;
62 i = i + (i >>> 1);
63 }
64 else
65 i = k;
66 }
67 pool.shutdown();
68 }
69
70 static void warmup() throws Exception {
71 print = false;
72 System.out.print("Warmup ");
73 int it = 2000;
74 for (int j = 5; j > 0; --j) {
75 oneTest(j, it);
76 System.out.print(".");
77 it += 1000;
78 }
79 System.gc();
80 it = 20000;
81 for (int j = 5; j > 0; --j) {
82 oneTest(j, it);
83 System.out.print(".");
84 it += 10000;
85 }
86 System.gc();
87 System.out.println();
88 }
89
90 static void oneTest(int n, int iters) throws Exception {
91 int fairIters = iters/16;
92
93 Thread.sleep(100); // System.gc();
94 if (print)
95 System.out.print("LinkedTransferQueue ");
96 oneRun(new LinkedTransferQueue<Integer>(), n, iters);
97
98 Thread.sleep(100); // System.gc();
99 if (print)
100 System.out.print("ConcurrentLinkedQueue ");
101 oneRun(new ConcurrentLinkedQueue<Integer>(), n, iters);
102
103 Thread.sleep(100); // System.gc();
104 if (print)
105 System.out.print("ConcurrentLinkedDeque ");
106 oneRun(new ConcurrentLinkedDeque<Integer>(), n, iters);
107
108 Thread.sleep(100); // System.gc();
109 if (print)
110 System.out.print("LinkedBlockingQueue ");
111 oneRun(new LinkedBlockingQueue<Integer>(), n, iters);
112
113 Thread.sleep(100); // System.gc();
114 if (print)
115 System.out.print("LinkedBlockingQueue(cap)");
116 oneRun(new LinkedBlockingQueue<Integer>(POOL_SIZE), n, iters);
117
118 Thread.sleep(100); // System.gc();
119 if (print)
120 System.out.print("LinkedBlockingDeque ");
121 oneRun(new LinkedBlockingDeque<Integer>(), n, iters);
122
123 Thread.sleep(100); // System.gc();
124 if (print)
125 System.out.print("ArrayBlockingQueue ");
126 oneRun(new ArrayBlockingQueue<Integer>(POOL_SIZE), n, iters);
127
128 Thread.sleep(100); // System.gc();
129 if (print)
130 System.out.print("PriorityBlockingQueue ");
131 oneRun(new PriorityBlockingQueue<Integer>(), n, fairIters);
132
133 Thread.sleep(100); // System.gc();
134 if (print)
135 System.out.print("ArrayBlockingQueue(fair)");
136 oneRun(new ArrayBlockingQueue<Integer>(POOL_SIZE, true), n, fairIters);
137 }
138
139 abstract static class Stage implements Runnable {
140 final int iters;
141 final Queue<Integer> queue;
142 final CyclicBarrier barrier;
143 final Phaser lagPhaser;
144 Stage(Queue<Integer> q, CyclicBarrier b, Phaser s, int iters) {
145 queue = q;
146 barrier = b;
147 lagPhaser = s;
148 this.iters = iters;
149 }
150 }
151
152 static class Producer extends Stage {
153 Producer(Queue<Integer> q, CyclicBarrier b, Phaser s,
154 int iters) {
155 super(q, b, s, iters);
156 }
157
158 public void run() {
159 try {
160 barrier.await();
161 int ps = 0;
162 int r = hashCode();
163 int i = 0;
164 for (;;) {
165 r = LoopHelpers.compute7(r);
166 Integer v = intPool[r & POOL_MASK];
167 int k = v.intValue();
168 if (queue.offer(v)) {
169 ps += k;
170 ++i;
171 if (i >= iters)
172 break;
173 if ((i & LAG_MASK) == LAG_MASK)
174 lagPhaser.arriveAndAwaitAdvance();
175 }
176 }
177 addProducerSum(ps);
178 barrier.await();
179 }
180 catch (Exception ie) {
181 ie.printStackTrace();
182 return;
183 }
184 }
185 }
186
187 static class Consumer extends Stage {
188 Consumer(Queue<Integer> q, CyclicBarrier b, Phaser s,
189 int iters) {
190 super(q, b, s, iters);
191 }
192
193 public void run() {
194 try {
195 barrier.await();
196 int cs = 0;
197 int i = 0;
198 for (;;) {
199 Integer v = queue.poll();
200 if (v != null) {
201 int k = v.intValue();
202 cs += k;
203 ++i;
204 if (i >= iters)
205 break;
206 if ((i & LAG_MASK) == LAG_MASK)
207 lagPhaser.arriveAndAwaitAdvance();
208 }
209 }
210 addConsumerSum(cs);
211 barrier.await();
212 }
213 catch (Exception ie) {
214 ie.printStackTrace();
215 return;
216 }
217 }
218
219 }
220
221 static void oneRun(Queue<Integer> q, int n, int iters) throws Exception {
222 LoopHelpers.BarrierTimer timer = new LoopHelpers.BarrierTimer();
223 CyclicBarrier barrier = new CyclicBarrier(n * 2 + 1, timer);
224 for (int i = 0; i < n; ++i) {
225 Phaser s = new Phaser(2);
226 pool.execute(new Producer(q, barrier, s, iters));
227 pool.execute(new Consumer(q, barrier, s, iters));
228 }
229 barrier.await();
230 barrier.await();
231 long time = timer.getTime();
232 checkSum();
233 if (print)
234 System.out.println("\t: " + LoopHelpers.rightJustify(time / (iters * n)) + " ns per transfer");
235 }
236
237 }