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root/jsr166/jsr166/src/main/java/util/concurrent/CompletableFuture.java
Revision: 1.218
Committed: Mon Sep 24 00:20:46 2018 UTC (5 years, 8 months ago) by jsr166
Branch: MAIN
Changes since 1.217: +21 -12 lines
Log Message:
sadly revert (for consistency with thenCompose): optimize uniComposeExceptionallyStage

File Contents

# User Rev Content
1 dl 1.1 /*
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     package java.util.concurrent;
8 jsr166 1.136
9 dl 1.192 import java.lang.invoke.MethodHandles;
10     import java.lang.invoke.VarHandle;
11 jsr166 1.136 import java.util.concurrent.locks.LockSupport;
12     import java.util.function.BiConsumer;
13     import java.util.function.BiFunction;
14 dl 1.34 import java.util.function.Consumer;
15 dl 1.1 import java.util.function.Function;
16 jsr166 1.136 import java.util.function.Supplier;
17 dl 1.1
18     /**
19     * A {@link Future} that may be explicitly completed (setting its
20 dl 1.88 * value and status), and may be used as a {@link CompletionStage},
21     * supporting dependent functions and actions that trigger upon its
22     * completion.
23 dl 1.1 *
24 jsr166 1.50 * <p>When two or more threads attempt to
25     * {@link #complete complete},
26 jsr166 1.52 * {@link #completeExceptionally completeExceptionally}, or
27 jsr166 1.50 * {@link #cancel cancel}
28     * a CompletableFuture, only one of them succeeds.
29 dl 1.19 *
30 dl 1.91 * <p>In addition to these and related methods for directly
31     * manipulating status and results, CompletableFuture implements
32     * interface {@link CompletionStage} with the following policies: <ul>
33 dl 1.35 *
34 dl 1.88 * <li>Actions supplied for dependent completions of
35     * <em>non-async</em> methods may be performed by the thread that
36     * completes the current CompletableFuture, or by any other caller of
37 jsr166 1.169 * a completion method.
38 jsr166 1.65 *
39 dl 1.88 * <li>All <em>async</em> methods without an explicit Executor
40 dl 1.96 * argument are performed using the {@link ForkJoinPool#commonPool()}
41     * (unless it does not support a parallelism level of at least two, in
42 dl 1.143 * which case, a new Thread is created to run each task). This may be
43     * overridden for non-static methods in subclasses by defining method
44     * {@link #defaultExecutor()}. To simplify monitoring, debugging,
45     * and tracking, all generated asynchronous tasks are instances of the
46     * marker interface {@link AsynchronousCompletionTask}. Operations
47 jsr166 1.160 * with time-delays can use adapter methods defined in this class, for
48 dl 1.143 * example: {@code supplyAsync(supplier, delayedExecutor(timeout,
49     * timeUnit))}. To support methods with delays and timeouts, this
50     * class maintains at most one daemon thread for triggering and
51 jsr166 1.169 * cancelling actions, not for running them.
52 dl 1.35 *
53 dl 1.88 * <li>All CompletionStage methods are implemented independently of
54     * other public methods, so the behavior of one method is not impacted
55 jsr166 1.169 * by overrides of others in subclasses.
56 dl 1.143 *
57     * <li>All CompletionStage methods return CompletableFutures. To
58     * restrict usages to only those methods defined in interface
59 dl 1.146 * CompletionStage, use method {@link #minimalCompletionStage}. Or to
60     * ensure only that clients do not themselves modify a future, use
61 jsr166 1.169 * method {@link #copy}.
62     * </ul>
63 dl 1.88 *
64 dl 1.91 * <p>CompletableFuture also implements {@link Future} with the following
65 dl 1.88 * policies: <ul>
66     *
67     * <li>Since (unlike {@link FutureTask}) this class has no direct
68 jsr166 1.55 * control over the computation that causes it to be completed,
69 dl 1.88 * cancellation is treated as just another form of exceptional
70     * completion. Method {@link #cancel cancel} has the same effect as
71     * {@code completeExceptionally(new CancellationException())}. Method
72     * {@link #isCompletedExceptionally} can be used to determine if a
73 jsr166 1.169 * CompletableFuture completed in any exceptional fashion.
74 jsr166 1.55 *
75 dl 1.88 * <li>In case of exceptional completion with a CompletionException,
76 jsr166 1.55 * methods {@link #get()} and {@link #get(long, TimeUnit)} throw an
77     * {@link ExecutionException} with the same cause as held in the
78 dl 1.88 * corresponding CompletionException. To simplify usage in most
79     * contexts, this class also defines methods {@link #join()} and
80     * {@link #getNow} that instead throw the CompletionException directly
81 jsr166 1.169 * in these cases.
82     * </ul>
83 jsr166 1.80 *
84 dl 1.164 * <p>Arguments used to pass a completion result (that is, for
85     * parameters of type {@code T}) for methods accepting them may be
86     * null, but passing a null value for any other parameter will result
87     * in a {@link NullPointerException} being thrown.
88     *
89 dl 1.143 * <p>Subclasses of this class should normally override the "virtual
90     * constructor" method {@link #newIncompleteFuture}, which establishes
91     * the concrete type returned by CompletionStage methods. For example,
92     * here is a class that substitutes a different default Executor and
93     * disables the {@code obtrude} methods:
94     *
95     * <pre> {@code
96     * class MyCompletableFuture<T> extends CompletableFuture<T> {
97     * static final Executor myExecutor = ...;
98     * public MyCompletableFuture() { }
99     * public <U> CompletableFuture<U> newIncompleteFuture() {
100     * return new MyCompletableFuture<U>(); }
101     * public Executor defaultExecutor() {
102     * return myExecutor; }
103     * public void obtrudeValue(T value) {
104     * throw new UnsupportedOperationException(); }
105 dl 1.150 * public void obtrudeException(Throwable ex) {
106 dl 1.143 * throw new UnsupportedOperationException(); }
107     * }}</pre>
108     *
109 dl 1.1 * @author Doug Lea
110 jsr166 1.156 * @param <T> The result type returned by this future's {@code join}
111     * and {@code get} methods
112 jsr166 1.208 * @since 1.8
113 dl 1.1 */
114 dl 1.88 public class CompletableFuture<T> implements Future<T>, CompletionStage<T> {
115 dl 1.28
116 dl 1.1 /*
117 dl 1.20 * Overview:
118 dl 1.1 *
119 dl 1.104 * A CompletableFuture may have dependent completion actions,
120     * collected in a linked stack. It atomically completes by CASing
121     * a result field, and then pops off and runs those actions. This
122     * applies across normal vs exceptional outcomes, sync vs async
123     * actions, binary triggers, and various forms of completions.
124     *
125 jsr166 1.202 * Non-nullness of volatile field "result" indicates done. It may
126     * be set directly if known to be thread-confined, else via CAS.
127     * An AltResult is used to box null as a result, as well as to
128     * hold exceptions. Using a single field makes completion simple
129     * to detect and trigger. Result encoding and decoding is
130     * straightforward but tedious and adds to the sprawl of trapping
131     * and associating exceptions with targets. Minor simplifications
132     * rely on (static) NIL (to box null results) being the only
133     * AltResult with a null exception field, so we don't usually need
134     * explicit comparisons. Even though some of the generics casts
135     * are unchecked (see SuppressWarnings annotations), they are
136     * placed to be appropriate even if checked.
137 dl 1.104 *
138     * Dependent actions are represented by Completion objects linked
139 dl 1.113 * as Treiber stacks headed by field "stack". There are Completion
140 jsr166 1.202 * classes for each kind of action, grouped into:
141     * - single-input (UniCompletion),
142     * - two-input (BiCompletion),
143     * - projected (BiCompletions using exactly one of two inputs),
144     * - shared (CoCompletion, used by the second of two sources),
145     * - zero-input source actions,
146     * - Signallers that unblock waiters.
147     * Class Completion extends ForkJoinTask to enable async execution
148 dl 1.113 * (adding no space overhead because we exploit its "tag" methods
149     * to maintain claims). It is also declared as Runnable to allow
150     * usage with arbitrary executors.
151     *
152     * Support for each kind of CompletionStage relies on a separate
153     * class, along with two CompletableFuture methods:
154     *
155     * * A Completion class with name X corresponding to function,
156     * prefaced with "Uni", "Bi", or "Or". Each class contains
157     * fields for source(s), actions, and dependent. They are
158     * boringly similar, differing from others only with respect to
159     * underlying functional forms. We do this so that users don't
160 jsr166 1.160 * encounter layers of adapters in common usages.
161 dl 1.113 *
162     * * Boolean CompletableFuture method x(...) (for example
163 jsr166 1.202 * biApply) takes all of the arguments needed to check that an
164 dl 1.113 * action is triggerable, and then either runs the action or
165     * arranges its async execution by executing its Completion
166     * argument, if present. The method returns true if known to be
167     * complete.
168     *
169     * * Completion method tryFire(int mode) invokes the associated x
170     * method with its held arguments, and on success cleans up.
171 jsr166 1.130 * The mode argument allows tryFire to be called twice (SYNC,
172     * then ASYNC); the first to screen and trap exceptions while
173 jsr166 1.199 * arranging to execute, and the second when called from a task.
174     * (A few classes are not used async so take slightly different
175     * forms.) The claim() callback suppresses function invocation
176     * if already claimed by another thread.
177 dl 1.113 *
178 jsr166 1.202 * * Some classes (for example UniApply) have separate handling
179     * code for when known to be thread-confined ("now" methods) and
180     * for when shared (in tryFire), for efficiency.
181     *
182 dl 1.113 * * CompletableFuture method xStage(...) is called from a public
183 jsr166 1.202 * stage method of CompletableFuture f. It screens user
184 dl 1.113 * arguments and invokes and/or creates the stage object. If
185 jsr166 1.202 * not async and already triggerable, the action is run
186     * immediately. Otherwise a Completion c is created, and
187     * submitted to the executor if triggerable, or pushed onto f's
188     * stack if not. Completion actions are started via c.tryFire.
189     * We recheck after pushing to a source future's stack to cover
190     * possible races if the source completes while pushing.
191     * Classes with two inputs (for example BiApply) deal with races
192     * across both while pushing actions. The second completion is
193     * a CoCompletion pointing to the first, shared so that at most
194     * one performs the action. The multiple-arity methods allOf
195 jsr166 1.207 * does this pairwise to form trees of completions. Method
196     * anyOf is handled differently from allOf because completion of
197     * any source should trigger a cleanStack of other sources.
198     * Each AnyOf completion can reach others via a shared array.
199 dl 1.113 *
200     * Note that the generic type parameters of methods vary according
201     * to whether "this" is a source, dependent, or completion.
202     *
203     * Method postComplete is called upon completion unless the target
204     * is guaranteed not to be observable (i.e., not yet returned or
205     * linked). Multiple threads can call postComplete, which
206     * atomically pops each dependent action, and tries to trigger it
207 jsr166 1.130 * via method tryFire, in NESTED mode. Triggering can propagate
208     * recursively, so NESTED mode returns its completed dependent (if
209     * one exists) for further processing by its caller (see method
210     * postFire).
211 dl 1.104 *
212     * Blocking methods get() and join() rely on Signaller Completions
213     * that wake up waiting threads. The mechanics are similar to
214     * Treiber stack wait-nodes used in FutureTask, Phaser, and
215     * SynchronousQueue. See their internal documentation for
216     * algorithmic details.
217     *
218     * Without precautions, CompletableFutures would be prone to
219 dl 1.113 * garbage accumulation as chains of Completions build up, each
220     * pointing back to its sources. So we null out fields as soon as
221 jsr166 1.181 * possible. The screening checks needed anyway harmlessly ignore
222     * null arguments that may have been obtained during races with
223 dl 1.185 * threads nulling out fields. We also try to unlink non-isLive
224     * (fired or cancelled) Completions from stacks that might
225     * otherwise never be popped: Method cleanStack always unlinks non
226     * isLive completions from the head of stack; others may
227     * occasionally remain if racing with other cancellations or
228     * removals.
229     *
230     * Completion fields need not be declared as final or volatile
231     * because they are only visible to other threads upon safe
232     * publication.
233 dl 1.104 */
234    
235 dl 1.113 volatile Object result; // Either the result or boxed AltResult
236     volatile Completion stack; // Top of Treiber stack of dependent actions
237 dl 1.104
238     final boolean internalComplete(Object r) { // CAS from null to r
239 jsr166 1.194 return RESULT.compareAndSet(this, null, r);
240 dl 1.104 }
241    
242 jsr166 1.129 /** Returns true if successfully pushed c onto stack. */
243     final boolean tryPushStack(Completion c) {
244     Completion h = stack;
245 jsr166 1.196 NEXT.set(c, h); // CAS piggyback
246 dl 1.192 return STACK.compareAndSet(this, h, c);
247 jsr166 1.129 }
248    
249     /** Unconditionally pushes c onto stack, retrying if necessary. */
250     final void pushStack(Completion c) {
251     do {} while (!tryPushStack(c));
252     }
253    
254 dl 1.104 /* ------------- Encoding and decoding outcomes -------------- */
255    
256     static final class AltResult { // See above
257     final Throwable ex; // null only for NIL
258     AltResult(Throwable x) { this.ex = x; }
259 dl 1.1 }
260    
261 jsr166 1.128 /** The encoding of the null value. */
262 dl 1.1 static final AltResult NIL = new AltResult(null);
263    
264 jsr166 1.128 /** Completes with the null value, unless already completed. */
265     final boolean completeNull() {
266 jsr166 1.194 return RESULT.compareAndSet(this, null, NIL);
267 jsr166 1.128 }
268    
269     /** Returns the encoding of the given non-exceptional value. */
270     final Object encodeValue(T t) {
271     return (t == null) ? NIL : t;
272     }
273    
274     /** Completes with a non-exceptional result, unless already completed. */
275     final boolean completeValue(T t) {
276 jsr166 1.194 return RESULT.compareAndSet(this, null, (t == null) ? NIL : t);
277 jsr166 1.128 }
278    
279 dl 1.20 /**
280 dl 1.104 * Returns the encoding of the given (non-null) exception as a
281     * wrapped CompletionException unless it is one already.
282 dl 1.99 */
283 dl 1.113 static AltResult encodeThrowable(Throwable x) {
284 dl 1.104 return new AltResult((x instanceof CompletionException) ? x :
285     new CompletionException(x));
286 dl 1.99 }
287    
288 jsr166 1.128 /** Completes with an exceptional result, unless already completed. */
289     final boolean completeThrowable(Throwable x) {
290 jsr166 1.194 return RESULT.compareAndSet(this, null, encodeThrowable(x));
291 jsr166 1.128 }
292    
293     /**
294     * Returns the encoding of the given (non-null) exception as a
295     * wrapped CompletionException unless it is one already. May
296     * return the given Object r (which must have been the result of a
297     * source future) if it is equivalent, i.e. if this is a simple
298     * relay of an existing CompletionException.
299     */
300     static Object encodeThrowable(Throwable x, Object r) {
301     if (!(x instanceof CompletionException))
302     x = new CompletionException(x);
303     else if (r instanceof AltResult && x == ((AltResult)r).ex)
304     return r;
305     return new AltResult(x);
306     }
307    
308     /**
309     * Completes with the given (non-null) exceptional result as a
310     * wrapped CompletionException unless it is one already, unless
311     * already completed. May complete with the given Object r
312     * (which must have been the result of a source future) if it is
313     * equivalent, i.e. if this is a simple propagation of an
314     * existing CompletionException.
315     */
316     final boolean completeThrowable(Throwable x, Object r) {
317 jsr166 1.194 return RESULT.compareAndSet(this, null, encodeThrowable(x, r));
318 jsr166 1.128 }
319    
320 dl 1.99 /**
321 dl 1.104 * Returns the encoding of the given arguments: if the exception
322 dl 1.113 * is non-null, encodes as AltResult. Otherwise uses the given
323 dl 1.104 * value, boxed as NIL if null.
324 dl 1.99 */
325 jsr166 1.127 Object encodeOutcome(T t, Throwable x) {
326     return (x == null) ? (t == null) ? NIL : t : encodeThrowable(x);
327 dl 1.20 }
328    
329 dl 1.1 /**
330 jsr166 1.115 * Returns the encoding of a copied outcome; if exceptional,
331 dl 1.113 * rewraps as a CompletionException, else returns argument.
332 dl 1.1 */
333 dl 1.113 static Object encodeRelay(Object r) {
334     Throwable x;
335 jsr166 1.191 if (r instanceof AltResult
336     && (x = ((AltResult)r).ex) != null
337     && !(x instanceof CompletionException))
338     r = new AltResult(new CompletionException(x));
339     return r;
340 dl 1.1 }
341    
342     /**
343 jsr166 1.128 * Completes with r or a copy of r, unless already completed.
344     * If exceptional, r is first coerced to a CompletionException.
345     */
346     final boolean completeRelay(Object r) {
347 jsr166 1.194 return RESULT.compareAndSet(this, null, encodeRelay(r));
348 jsr166 1.128 }
349    
350     /**
351 jsr166 1.108 * Reports result using Future.get conventions.
352 dl 1.1 */
353 jsr166 1.190 private static Object reportGet(Object r)
354 dl 1.104 throws InterruptedException, ExecutionException {
355     if (r == null) // by convention below, null means interrupted
356     throw new InterruptedException();
357     if (r instanceof AltResult) {
358     Throwable x, cause;
359     if ((x = ((AltResult)r).ex) == null)
360 dl 1.28 return null;
361 dl 1.104 if (x instanceof CancellationException)
362     throw (CancellationException)x;
363     if ((x instanceof CompletionException) &&
364     (cause = x.getCause()) != null)
365     x = cause;
366     throw new ExecutionException(x);
367 dl 1.28 }
368 jsr166 1.190 return r;
369 dl 1.1 }
370    
371 dl 1.113 /**
372     * Decodes outcome to return result or throw unchecked exception.
373     */
374 jsr166 1.190 private static Object reportJoin(Object r) {
375 dl 1.113 if (r instanceof AltResult) {
376     Throwable x;
377     if ((x = ((AltResult)r).ex) == null)
378     return null;
379     if (x instanceof CancellationException)
380     throw (CancellationException)x;
381     if (x instanceof CompletionException)
382     throw (CompletionException)x;
383     throw new CompletionException(x);
384     }
385 jsr166 1.190 return r;
386 dl 1.113 }
387    
388 jsr166 1.123 /* ------------- Async task preliminaries -------------- */
389 dl 1.104
390 dl 1.1 /**
391 jsr166 1.56 * A marker interface identifying asynchronous tasks produced by
392 dl 1.28 * {@code async} methods. This may be useful for monitoring,
393     * debugging, and tracking asynchronous activities.
394 jsr166 1.57 *
395     * @since 1.8
396 dl 1.1 */
397 dl 1.28 public static interface AsynchronousCompletionTask {
398 dl 1.1 }
399    
400 jsr166 1.171 private static final boolean USE_COMMON_POOL =
401 jsr166 1.127 (ForkJoinPool.getCommonPoolParallelism() > 1);
402    
403 dl 1.104 /**
404 dl 1.109 * Default executor -- ForkJoinPool.commonPool() unless it cannot
405     * support parallelism.
406     */
407 jsr166 1.171 private static final Executor ASYNC_POOL = USE_COMMON_POOL ?
408 dl 1.109 ForkJoinPool.commonPool() : new ThreadPerTaskExecutor();
409    
410     /** Fallback if ForkJoinPool.commonPool() cannot support parallelism */
411     static final class ThreadPerTaskExecutor implements Executor {
412     public void execute(Runnable r) { new Thread(r).start(); }
413     }
414    
415     /**
416     * Null-checks user executor argument, and translates uses of
417 jsr166 1.171 * commonPool to ASYNC_POOL in case parallelism disabled.
418 dl 1.109 */
419     static Executor screenExecutor(Executor e) {
420 jsr166 1.171 if (!USE_COMMON_POOL && e == ForkJoinPool.commonPool())
421     return ASYNC_POOL;
422 dl 1.109 if (e == null) throw new NullPointerException();
423 jsr166 1.127 return e;
424 dl 1.109 }
425    
426 jsr166 1.130 // Modes for Completion.tryFire. Signedness matters.
427 dl 1.113 static final int SYNC = 0;
428     static final int ASYNC = 1;
429     static final int NESTED = -1;
430 dl 1.104
431 dl 1.113 /* ------------- Base Completion classes and operations -------------- */
432    
433     @SuppressWarnings("serial")
434     abstract static class Completion extends ForkJoinTask<Void>
435     implements Runnable, AsynchronousCompletionTask {
436 dl 1.110 volatile Completion next; // Treiber stack link
437 dl 1.104
438     /**
439 dl 1.113 * Performs completion action if triggered, returning a
440     * dependent that may need propagation, if one exists.
441     *
442     * @param mode SYNC, ASYNC, or NESTED
443 dl 1.104 */
444 dl 1.113 abstract CompletableFuture<?> tryFire(int mode);
445    
446 jsr166 1.116 /** Returns true if possibly still triggerable. Used by cleanStack. */
447 dl 1.113 abstract boolean isLive();
448    
449     public final void run() { tryFire(ASYNC); }
450 dl 1.158 public final boolean exec() { tryFire(ASYNC); return false; }
451 dl 1.113 public final Void getRawResult() { return null; }
452     public final void setRawResult(Void v) {}
453 jsr166 1.134 }
454 jsr166 1.129
455 dl 1.104 /**
456 dl 1.113 * Pops and tries to trigger all reachable dependents. Call only
457     * when known to be done.
458 dl 1.104 */
459     final void postComplete() {
460     /*
461 dl 1.113 * On each step, variable f holds current dependents to pop
462 dl 1.104 * and run. It is extended along only one path at a time,
463 dl 1.113 * pushing others to avoid unbounded recursion.
464 dl 1.104 */
465 dl 1.110 CompletableFuture<?> f = this; Completion h;
466 dl 1.113 while ((h = f.stack) != null ||
467     (f != this && (h = (f = this).stack) != null)) {
468 dl 1.110 CompletableFuture<?> d; Completion t;
469 dl 1.192 if (STACK.compareAndSet(f, h, t = h.next)) {
470 dl 1.104 if (t != null) {
471 jsr166 1.129 if (f != this) {
472     pushStack(h);
473 dl 1.104 continue;
474     }
475 jsr166 1.195 NEXT.compareAndSet(h, t, null); // try to detach
476 dl 1.28 }
477 dl 1.113 f = (d = h.tryFire(NESTED)) == null ? this : d;
478 dl 1.19 }
479     }
480     }
481    
482 dl 1.185 /** Traverses stack and unlinks one or more dead Completions, if found. */
483 dl 1.113 final void cleanStack() {
484 jsr166 1.205 Completion p = stack;
485     // ensure head of stack live
486     for (boolean unlinked = false;;) {
487     if (p == null)
488     return;
489     else if (p.isLive()) {
490     if (unlinked)
491     return;
492     else
493 dl 1.185 break;
494 dl 1.113 }
495 jsr166 1.209 else if (STACK.weakCompareAndSet(this, p, (p = p.next)))
496 jsr166 1.205 unlinked = true;
497     else
498     p = stack;
499     }
500     // try to unlink first non-live
501     for (Completion q = p.next; q != null;) {
502     Completion s = q.next;
503     if (q.isLive()) {
504     p = q;
505     q = s;
506 jsr166 1.209 } else if (NEXT.weakCompareAndSet(p, q, s))
507 jsr166 1.205 break;
508     else
509     q = p.next;
510 dl 1.113 }
511     }
512    
513     /* ------------- One-input Completions -------------- */
514 dl 1.104
515 dl 1.113 /** A Completion with a source, dependent, and executor. */
516     @SuppressWarnings("serial")
517 jsr166 1.124 abstract static class UniCompletion<T,V> extends Completion {
518 dl 1.113 Executor executor; // executor to use (null if none)
519 jsr166 1.124 CompletableFuture<V> dep; // the dependent to complete
520     CompletableFuture<T> src; // source for action
521 dl 1.104
522 jsr166 1.124 UniCompletion(Executor executor, CompletableFuture<V> dep,
523     CompletableFuture<T> src) {
524 dl 1.113 this.executor = executor; this.dep = dep; this.src = src;
525 dl 1.104 }
526    
527 dl 1.113 /**
528     * Returns true if action can be run. Call only when known to
529     * be triggerable. Uses FJ tag bit to ensure that only one
530     * thread claims ownership. If async, starts as task -- a
531     * later call to tryFire will run action.
532     */
533     final boolean claim() {
534     Executor e = executor;
535     if (compareAndSetForkJoinTaskTag((short)0, (short)1)) {
536     if (e == null)
537     return true;
538     executor = null; // disable
539     e.execute(this);
540     }
541     return false;
542 dl 1.104 }
543    
544 dl 1.113 final boolean isLive() { return dep != null; }
545 dl 1.1 }
546    
547 jsr166 1.188 /**
548     * Pushes the given completion unless it completes while trying.
549 jsr166 1.198 * Caller should first check that result is null.
550 jsr166 1.188 */
551 jsr166 1.198 final void unipush(Completion c) {
552 dl 1.104 if (c != null) {
553 jsr166 1.188 while (!tryPushStack(c)) {
554     if (result != null) {
555 jsr166 1.196 NEXT.set(c, null);
556 jsr166 1.188 break;
557     }
558     }
559     if (result != null)
560     c.tryFire(SYNC);
561 dl 1.104 }
562     }
563    
564 dl 1.113 /**
565 jsr166 1.206 * Post-processing by dependent after successful UniCompletion tryFire.
566     * Tries to clean stack of source a, and then either runs postComplete
567     * or returns this to caller, depending on mode.
568 dl 1.113 */
569     final CompletableFuture<T> postFire(CompletableFuture<?> a, int mode) {
570     if (a != null && a.stack != null) {
571 dl 1.185 Object r;
572     if ((r = a.result) == null)
573 dl 1.113 a.cleanStack();
574 dl 1.185 if (mode >= 0 && (r != null || a.result != null))
575 dl 1.113 a.postComplete();
576 dl 1.1 }
577 dl 1.113 if (result != null && stack != null) {
578     if (mode < 0)
579     return this;
580     else
581     postComplete();
582 dl 1.1 }
583 dl 1.113 return null;
584 dl 1.1 }
585    
586 dl 1.113 @SuppressWarnings("serial")
587 jsr166 1.124 static final class UniApply<T,V> extends UniCompletion<T,V> {
588     Function<? super T,? extends V> fn;
589     UniApply(Executor executor, CompletableFuture<V> dep,
590     CompletableFuture<T> src,
591     Function<? super T,? extends V> fn) {
592 dl 1.113 super(executor, dep, src); this.fn = fn;
593     }
594 jsr166 1.124 final CompletableFuture<V> tryFire(int mode) {
595     CompletableFuture<V> d; CompletableFuture<T> a;
596 jsr166 1.200 Object r; Throwable x; Function<? super T,? extends V> f;
597 jsr166 1.201 if ((d = dep) == null || (f = fn) == null
598     || (a = src) == null || (r = a.result) == null)
599 dl 1.113 return null;
600 jsr166 1.200 tryComplete: if (d.result == null) {
601     if (r instanceof AltResult) {
602     if ((x = ((AltResult)r).ex) != null) {
603     d.completeThrowable(x, r);
604     break tryComplete;
605     }
606     r = null;
607     }
608     try {
609     if (mode <= 0 && !claim())
610     return null;
611     else {
612     @SuppressWarnings("unchecked") T t = (T) r;
613     d.completeValue(f.apply(t));
614     }
615     } catch (Throwable ex) {
616     d.completeThrowable(ex);
617     }
618     }
619 dl 1.113 dep = null; src = null; fn = null;
620     return d.postFire(a, mode);
621 dl 1.7 }
622     }
623    
624 jsr166 1.124 private <V> CompletableFuture<V> uniApplyStage(
625     Executor e, Function<? super T,? extends V> f) {
626 dl 1.113 if (f == null) throw new NullPointerException();
627 jsr166 1.200 Object r;
628     if ((r = result) != null)
629     return uniApplyNow(r, e, f);
630 dl 1.143 CompletableFuture<V> d = newIncompleteFuture();
631 jsr166 1.200 unipush(new UniApply<T,V>(e, d, this, f));
632     return d;
633     }
634    
635     private <V> CompletableFuture<V> uniApplyNow(
636     Object r, Executor e, Function<? super T,? extends V> f) {
637     Throwable x;
638     CompletableFuture<V> d = newIncompleteFuture();
639     if (r instanceof AltResult) {
640     if ((x = ((AltResult)r).ex) != null) {
641 jsr166 1.201 d.result = encodeThrowable(x, r);
642 jsr166 1.200 return d;
643 dl 1.184 }
644 jsr166 1.200 r = null;
645     }
646     try {
647     if (e != null) {
648     e.execute(new UniApply<T,V>(null, d, this, f));
649     } else {
650     @SuppressWarnings("unchecked") T t = (T) r;
651 jsr166 1.201 d.result = d.encodeValue(f.apply(t));
652 dl 1.184 }
653 jsr166 1.200 } catch (Throwable ex) {
654 jsr166 1.201 d.result = encodeThrowable(ex);
655 dl 1.37 }
656 dl 1.113 return d;
657 dl 1.37 }
658    
659 dl 1.113 @SuppressWarnings("serial")
660 jsr166 1.124 static final class UniAccept<T> extends UniCompletion<T,Void> {
661 dl 1.104 Consumer<? super T> fn;
662 dl 1.113 UniAccept(Executor executor, CompletableFuture<Void> dep,
663 jsr166 1.124 CompletableFuture<T> src, Consumer<? super T> fn) {
664 dl 1.113 super(executor, dep, src); this.fn = fn;
665     }
666 jsr166 1.124 final CompletableFuture<Void> tryFire(int mode) {
667     CompletableFuture<Void> d; CompletableFuture<T> a;
668 jsr166 1.200 Object r; Throwable x; Consumer<? super T> f;
669 jsr166 1.201 if ((d = dep) == null || (f = fn) == null
670     || (a = src) == null || (r = a.result) == null)
671 dl 1.113 return null;
672 jsr166 1.200 tryComplete: if (d.result == null) {
673     if (r instanceof AltResult) {
674     if ((x = ((AltResult)r).ex) != null) {
675     d.completeThrowable(x, r);
676     break tryComplete;
677     }
678     r = null;
679     }
680     try {
681     if (mode <= 0 && !claim())
682     return null;
683     else {
684     @SuppressWarnings("unchecked") T t = (T) r;
685     f.accept(t);
686     d.completeNull();
687     }
688     } catch (Throwable ex) {
689     d.completeThrowable(ex);
690     }
691     }
692 dl 1.113 dep = null; src = null; fn = null;
693     return d.postFire(a, mode);
694 dl 1.91 }
695     }
696    
697 dl 1.113 private CompletableFuture<Void> uniAcceptStage(Executor e,
698     Consumer<? super T> f) {
699     if (f == null) throw new NullPointerException();
700 jsr166 1.200 Object r;
701     if ((r = result) != null)
702     return uniAcceptNow(r, e, f);
703 dl 1.143 CompletableFuture<Void> d = newIncompleteFuture();
704 jsr166 1.200 unipush(new UniAccept<T>(e, d, this, f));
705     return d;
706     }
707    
708     private CompletableFuture<Void> uniAcceptNow(
709     Object r, Executor e, Consumer<? super T> f) {
710     Throwable x;
711     CompletableFuture<Void> d = newIncompleteFuture();
712     if (r instanceof AltResult) {
713     if ((x = ((AltResult)r).ex) != null) {
714 jsr166 1.201 d.result = encodeThrowable(x, r);
715 jsr166 1.200 return d;
716 dl 1.184 }
717 jsr166 1.200 r = null;
718     }
719     try {
720     if (e != null) {
721     e.execute(new UniAccept<T>(null, d, this, f));
722     } else {
723     @SuppressWarnings("unchecked") T t = (T) r;
724     f.accept(t);
725 jsr166 1.201 d.result = NIL;
726 dl 1.184 }
727 jsr166 1.200 } catch (Throwable ex) {
728 jsr166 1.201 d.result = encodeThrowable(ex);
729 dl 1.7 }
730 dl 1.113 return d;
731 dl 1.7 }
732    
733 dl 1.113 @SuppressWarnings("serial")
734 jsr166 1.124 static final class UniRun<T> extends UniCompletion<T,Void> {
735 jsr166 1.105 Runnable fn;
736 dl 1.113 UniRun(Executor executor, CompletableFuture<Void> dep,
737 jsr166 1.124 CompletableFuture<T> src, Runnable fn) {
738 dl 1.113 super(executor, dep, src); this.fn = fn;
739     }
740 jsr166 1.124 final CompletableFuture<Void> tryFire(int mode) {
741     CompletableFuture<Void> d; CompletableFuture<T> a;
742 jsr166 1.200 Object r; Throwable x; Runnable f;
743 jsr166 1.201 if ((d = dep) == null || (f = fn) == null
744     || (a = src) == null || (r = a.result) == null)
745 dl 1.113 return null;
746 jsr166 1.200 if (d.result == null) {
747     if (r instanceof AltResult && (x = ((AltResult)r).ex) != null)
748     d.completeThrowable(x, r);
749     else
750     try {
751     if (mode <= 0 && !claim())
752     return null;
753     else {
754     f.run();
755     d.completeNull();
756     }
757     } catch (Throwable ex) {
758     d.completeThrowable(ex);
759     }
760     }
761 dl 1.113 dep = null; src = null; fn = null;
762     return d.postFire(a, mode);
763 dl 1.1 }
764     }
765    
766 jsr166 1.200 private CompletableFuture<Void> uniRunStage(Executor e, Runnable f) {
767     if (f == null) throw new NullPointerException();
768     Object r;
769     if ((r = result) != null)
770     return uniRunNow(r, e, f);
771     CompletableFuture<Void> d = newIncompleteFuture();
772     unipush(new UniRun<T>(e, d, this, f));
773     return d;
774 dl 1.1 }
775    
776 jsr166 1.200 private CompletableFuture<Void> uniRunNow(Object r, Executor e, Runnable f) {
777     Throwable x;
778 dl 1.143 CompletableFuture<Void> d = newIncompleteFuture();
779 jsr166 1.200 if (r instanceof AltResult && (x = ((AltResult)r).ex) != null)
780 jsr166 1.201 d.result = encodeThrowable(x, r);
781 jsr166 1.200 else
782     try {
783     if (e != null) {
784     e.execute(new UniRun<T>(null, d, this, f));
785     } else {
786     f.run();
787 jsr166 1.201 d.result = NIL;
788 dl 1.184 }
789 jsr166 1.200 } catch (Throwable ex) {
790 jsr166 1.201 d.result = encodeThrowable(ex);
791 dl 1.184 }
792 dl 1.113 return d;
793 dl 1.7 }
794    
795 dl 1.113 @SuppressWarnings("serial")
796 jsr166 1.124 static final class UniWhenComplete<T> extends UniCompletion<T,T> {
797 dl 1.113 BiConsumer<? super T, ? super Throwable> fn;
798     UniWhenComplete(Executor executor, CompletableFuture<T> dep,
799 jsr166 1.124 CompletableFuture<T> src,
800 dl 1.113 BiConsumer<? super T, ? super Throwable> fn) {
801     super(executor, dep, src); this.fn = fn;
802     }
803 jsr166 1.124 final CompletableFuture<T> tryFire(int mode) {
804     CompletableFuture<T> d; CompletableFuture<T> a;
805 jsr166 1.201 Object r; BiConsumer<? super T, ? super Throwable> f;
806     if ((d = dep) == null || (f = fn) == null
807     || (a = src) == null || (r = a.result) == null
808     || !d.uniWhenComplete(r, f, mode > 0 ? null : this))
809 dl 1.113 return null;
810     dep = null; src = null; fn = null;
811     return d.postFire(a, mode);
812     }
813     }
814 dl 1.104
815 jsr166 1.201 final boolean uniWhenComplete(Object r,
816 dl 1.113 BiConsumer<? super T,? super Throwable> f,
817     UniWhenComplete<T> c) {
818 jsr166 1.201 T t; Throwable x = null;
819 dl 1.113 if (result == null) {
820 dl 1.104 try {
821 jsr166 1.127 if (c != null && !c.claim())
822     return false;
823 dl 1.113 if (r instanceof AltResult) {
824     x = ((AltResult)r).ex;
825 jsr166 1.127 t = null;
826     } else {
827     @SuppressWarnings("unchecked") T tr = (T) r;
828     t = tr;
829 dl 1.113 }
830 jsr166 1.127 f.accept(t, x);
831     if (x == null) {
832     internalComplete(r);
833     return true;
834 jsr166 1.2 }
835 dl 1.104 } catch (Throwable ex) {
836 jsr166 1.127 if (x == null)
837     x = ex;
838 jsr166 1.180 else if (x != ex)
839     x.addSuppressed(ex);
840 jsr166 1.2 }
841 jsr166 1.128 completeThrowable(x, r);
842 jsr166 1.2 }
843 dl 1.113 return true;
844 dl 1.1 }
845    
846 dl 1.113 private CompletableFuture<T> uniWhenCompleteStage(
847     Executor e, BiConsumer<? super T, ? super Throwable> f) {
848     if (f == null) throw new NullPointerException();
849 dl 1.143 CompletableFuture<T> d = newIncompleteFuture();
850 jsr166 1.201 Object r;
851     if ((r = result) == null)
852     unipush(new UniWhenComplete<T>(e, d, this, f));
853     else if (e == null)
854     d.uniWhenComplete(r, f, null);
855     else {
856     try {
857     e.execute(new UniWhenComplete<T>(null, d, this, f));
858     } catch (Throwable ex) {
859     d.result = encodeThrowable(ex);
860 dl 1.184 }
861 dl 1.35 }
862 dl 1.113 return d;
863 dl 1.35 }
864    
865 dl 1.113 @SuppressWarnings("serial")
866 jsr166 1.124 static final class UniHandle<T,V> extends UniCompletion<T,V> {
867     BiFunction<? super T, Throwable, ? extends V> fn;
868     UniHandle(Executor executor, CompletableFuture<V> dep,
869     CompletableFuture<T> src,
870     BiFunction<? super T, Throwable, ? extends V> fn) {
871 dl 1.113 super(executor, dep, src); this.fn = fn;
872     }
873 jsr166 1.124 final CompletableFuture<V> tryFire(int mode) {
874     CompletableFuture<V> d; CompletableFuture<T> a;
875 jsr166 1.201 Object r; BiFunction<? super T, Throwable, ? extends V> f;
876     if ((d = dep) == null || (f = fn) == null
877     || (a = src) == null || (r = a.result) == null
878     || !d.uniHandle(r, f, mode > 0 ? null : this))
879 dl 1.113 return null;
880     dep = null; src = null; fn = null;
881     return d.postFire(a, mode);
882 jsr166 1.2 }
883 dl 1.1 }
884    
885 jsr166 1.201 final <S> boolean uniHandle(Object r,
886 dl 1.113 BiFunction<? super S, Throwable, ? extends T> f,
887     UniHandle<S,T> c) {
888 jsr166 1.201 S s; Throwable x;
889 dl 1.113 if (result == null) {
890 dl 1.104 try {
891 jsr166 1.127 if (c != null && !c.claim())
892     return false;
893 dl 1.113 if (r instanceof AltResult) {
894     x = ((AltResult)r).ex;
895 jsr166 1.127 s = null;
896     } else {
897 dl 1.113 x = null;
898 jsr166 1.127 @SuppressWarnings("unchecked") S ss = (S) r;
899     s = ss;
900 dl 1.1 }
901 jsr166 1.127 completeValue(f.apply(s, x));
902 dl 1.104 } catch (Throwable ex) {
903 jsr166 1.127 completeThrowable(ex);
904 jsr166 1.2 }
905     }
906 dl 1.113 return true;
907 dl 1.1 }
908    
909 jsr166 1.124 private <V> CompletableFuture<V> uniHandleStage(
910     Executor e, BiFunction<? super T, Throwable, ? extends V> f) {
911 dl 1.113 if (f == null) throw new NullPointerException();
912 dl 1.143 CompletableFuture<V> d = newIncompleteFuture();
913 jsr166 1.201 Object r;
914     if ((r = result) == null)
915     unipush(new UniHandle<T,V>(e, d, this, f));
916     else if (e == null)
917     d.uniHandle(r, f, null);
918     else {
919     try {
920     e.execute(new UniHandle<T,V>(null, d, this, f));
921     } catch (Throwable ex) {
922     d.result = encodeThrowable(ex);
923 dl 1.184 }
924 dl 1.35 }
925 dl 1.104 return d;
926 dl 1.1 }
927    
928 dl 1.113 @SuppressWarnings("serial")
929 jsr166 1.124 static final class UniExceptionally<T> extends UniCompletion<T,T> {
930 dl 1.104 Function<? super Throwable, ? extends T> fn;
931 dl 1.213 UniExceptionally(Executor executor,
932     CompletableFuture<T> dep, CompletableFuture<T> src,
933 dl 1.113 Function<? super Throwable, ? extends T> fn) {
934 dl 1.213 super(executor, dep, src); this.fn = fn;
935 dl 1.104 }
936 dl 1.213 final CompletableFuture<T> tryFire(int mode) {
937 jsr166 1.124 CompletableFuture<T> d; CompletableFuture<T> a;
938 jsr166 1.201 Object r; Function<? super Throwable, ? extends T> f;
939     if ((d = dep) == null || (f = fn) == null
940     || (a = src) == null || (r = a.result) == null
941 dl 1.213 || !d.uniExceptionally(r, f, mode > 0 ? null : this))
942 dl 1.113 return null;
943     dep = null; src = null; fn = null;
944     return d.postFire(a, mode);
945 dl 1.17 }
946     }
947    
948 jsr166 1.201 final boolean uniExceptionally(Object r,
949 dl 1.113 Function<? super Throwable, ? extends T> f,
950     UniExceptionally<T> c) {
951 jsr166 1.201 Throwable x;
952 dl 1.113 if (result == null) {
953     try {
954 dl 1.213 if (c != null && !c.claim())
955     return false;
956     if (r instanceof AltResult && (x = ((AltResult)r).ex) != null)
957 jsr166 1.127 completeValue(f.apply(x));
958 dl 1.213 else
959 jsr166 1.127 internalComplete(r);
960 dl 1.113 } catch (Throwable ex) {
961 jsr166 1.127 completeThrowable(ex);
962 dl 1.113 }
963     }
964     return true;
965 dl 1.75 }
966    
967 dl 1.113 private CompletableFuture<T> uniExceptionallyStage(
968 dl 1.213 Executor e, Function<Throwable, ? extends T> f) {
969 dl 1.113 if (f == null) throw new NullPointerException();
970 dl 1.143 CompletableFuture<T> d = newIncompleteFuture();
971 jsr166 1.201 Object r;
972     if ((r = result) == null)
973 dl 1.213 unipush(new UniExceptionally<T>(e, d, this, f));
974     else if (e == null)
975     d.uniExceptionally(r, f, null);
976     else {
977     try {
978     e.execute(new UniExceptionally<T>(null, d, this, f));
979     } catch (Throwable ex) {
980     d.result = encodeThrowable(ex);
981     }
982 jsr166 1.214 }
983 dl 1.213 return d;
984     }
985    
986     @SuppressWarnings("serial")
987     static final class UniComposeExceptionally<T> extends UniCompletion<T,T> {
988     Function<Throwable, ? extends CompletionStage<T>> fn;
989     UniComposeExceptionally(Executor executor, CompletableFuture<T> dep,
990     CompletableFuture<T> src,
991     Function<Throwable, ? extends CompletionStage<T>> fn) {
992     super(executor, dep, src); this.fn = fn;
993     }
994     final CompletableFuture<T> tryFire(int mode) {
995     CompletableFuture<T> d; CompletableFuture<T> a;
996 jsr166 1.214 Function<Throwable, ? extends CompletionStage<T>> f;
997 dl 1.213 Object r; Throwable x;
998     if ((d = dep) == null || (f = fn) == null
999     || (a = src) == null || (r = a.result) == null)
1000     return null;
1001     if (d.result == null) {
1002     if ((r instanceof AltResult) &&
1003     (x = ((AltResult)r).ex) != null) {
1004     try {
1005     if (mode <= 0 && !claim())
1006     return null;
1007     CompletableFuture<T> g = f.apply(x).toCompletableFuture();
1008     if ((r = g.result) != null)
1009     d.completeRelay(r);
1010     else {
1011     g.unipush(new UniRelay<T,T>(d, g));
1012     if (d.result == null)
1013     return null;
1014     }
1015     } catch (Throwable ex) {
1016     d.completeThrowable(ex);
1017     }
1018     }
1019     else
1020     d.internalComplete(r);
1021     }
1022     dep = null; src = null; fn = null;
1023     return d.postFire(a, mode);
1024     }
1025     }
1026    
1027     private CompletableFuture<T> uniComposeExceptionallyStage(
1028     Executor e, Function<Throwable, ? extends CompletionStage<T>> f) {
1029     if (f == null) throw new NullPointerException();
1030 jsr166 1.218 CompletableFuture<T> d = newIncompleteFuture();
1031     Object r, s; Throwable x;
1032 dl 1.213 if ((r = result) == null)
1033 jsr166 1.218 unipush(new UniComposeExceptionally<T>(e, d, this, f));
1034     else if (e == null) {
1035     if ((r instanceof AltResult) && (x = ((AltResult)r).ex) != null) {
1036     try {
1037     CompletableFuture<T> g = f.apply(x).toCompletableFuture();
1038     if ((s = g.result) != null)
1039     d.result = encodeRelay(s);
1040     else {
1041     g.unipush(new UniRelay<T,T>(d, g));
1042     }
1043     } catch (Throwable ex) {
1044     d.result = encodeThrowable(ex);
1045     }
1046     }
1047     else
1048     d.internalComplete(r);
1049     }
1050 jsr166 1.201 else
1051 dl 1.213 try {
1052 jsr166 1.218 e.execute(new UniComposeExceptionally<T>(null, d, this, f));
1053 dl 1.213 } catch (Throwable ex) {
1054 jsr166 1.218 d.result = encodeThrowable(ex);
1055 dl 1.213 }
1056 dl 1.113 return d;
1057 dl 1.17 }
1058    
1059 dl 1.113 @SuppressWarnings("serial")
1060 jsr166 1.207 static final class UniRelay<U, T extends U> extends UniCompletion<T,U> {
1061     UniRelay(CompletableFuture<U> dep, CompletableFuture<T> src) {
1062 dl 1.104 super(null, dep, src);
1063     }
1064 jsr166 1.207 final CompletableFuture<U> tryFire(int mode) {
1065     CompletableFuture<U> d; CompletableFuture<T> a; Object r;
1066 jsr166 1.201 if ((d = dep) == null
1067     || (a = src) == null || (r = a.result) == null)
1068 dl 1.113 return null;
1069 jsr166 1.201 if (d.result == null)
1070     d.completeRelay(r);
1071 dl 1.113 src = null; dep = null;
1072     return d.postFire(a, mode);
1073 dl 1.28 }
1074     }
1075    
1076 jsr166 1.207 private static <U, T extends U> CompletableFuture<U> uniCopyStage(
1077     CompletableFuture<T> src) {
1078 dl 1.143 Object r;
1079 jsr166 1.207 CompletableFuture<U> d = src.newIncompleteFuture();
1080     if ((r = src.result) != null)
1081 jsr166 1.201 d.result = encodeRelay(r);
1082     else
1083 jsr166 1.207 src.unipush(new UniRelay<U,T>(d, src));
1084 dl 1.143 return d;
1085     }
1086    
1087     private MinimalStage<T> uniAsMinimalStage() {
1088     Object r;
1089     if ((r = result) != null)
1090     return new MinimalStage<T>(encodeRelay(r));
1091     MinimalStage<T> d = new MinimalStage<T>();
1092 jsr166 1.207 unipush(new UniRelay<T,T>(d, this));
1093 dl 1.143 return d;
1094     }
1095    
1096 dl 1.113 @SuppressWarnings("serial")
1097 jsr166 1.124 static final class UniCompose<T,V> extends UniCompletion<T,V> {
1098     Function<? super T, ? extends CompletionStage<V>> fn;
1099     UniCompose(Executor executor, CompletableFuture<V> dep,
1100     CompletableFuture<T> src,
1101     Function<? super T, ? extends CompletionStage<V>> fn) {
1102 dl 1.113 super(executor, dep, src); this.fn = fn;
1103     }
1104 jsr166 1.124 final CompletableFuture<V> tryFire(int mode) {
1105     CompletableFuture<V> d; CompletableFuture<T> a;
1106 jsr166 1.201 Function<? super T, ? extends CompletionStage<V>> f;
1107     Object r; Throwable x;
1108     if ((d = dep) == null || (f = fn) == null
1109     || (a = src) == null || (r = a.result) == null)
1110 dl 1.113 return null;
1111 jsr166 1.201 tryComplete: if (d.result == null) {
1112     if (r instanceof AltResult) {
1113     if ((x = ((AltResult)r).ex) != null) {
1114     d.completeThrowable(x, r);
1115     break tryComplete;
1116     }
1117     r = null;
1118 jsr166 1.128 }
1119 jsr166 1.201 try {
1120     if (mode <= 0 && !claim())
1121     return null;
1122     @SuppressWarnings("unchecked") T t = (T) r;
1123     CompletableFuture<V> g = f.apply(t).toCompletableFuture();
1124     if ((r = g.result) != null)
1125     d.completeRelay(r);
1126     else {
1127 jsr166 1.207 g.unipush(new UniRelay<V,V>(d, g));
1128 jsr166 1.201 if (d.result == null)
1129     return null;
1130     }
1131     } catch (Throwable ex) {
1132     d.completeThrowable(ex);
1133 dl 1.88 }
1134     }
1135 jsr166 1.201 dep = null; src = null; fn = null;
1136     return d.postFire(a, mode);
1137 dl 1.88 }
1138 dl 1.28 }
1139    
1140 jsr166 1.124 private <V> CompletableFuture<V> uniComposeStage(
1141     Executor e, Function<? super T, ? extends CompletionStage<V>> f) {
1142 dl 1.113 if (f == null) throw new NullPointerException();
1143 jsr166 1.201 CompletableFuture<V> d = newIncompleteFuture();
1144 dl 1.143 Object r, s; Throwable x;
1145 jsr166 1.201 if ((r = result) == null)
1146     unipush(new UniCompose<T,V>(e, d, this, f));
1147     else if (e == null) {
1148 jsr166 1.128 if (r instanceof AltResult) {
1149     if ((x = ((AltResult)r).ex) != null) {
1150 dl 1.143 d.result = encodeThrowable(x, r);
1151     return d;
1152 jsr166 1.128 }
1153     r = null;
1154     }
1155     try {
1156 jsr166 1.127 @SuppressWarnings("unchecked") T t = (T) r;
1157 dl 1.140 CompletableFuture<V> g = f.apply(t).toCompletableFuture();
1158 dl 1.143 if ((s = g.result) != null)
1159 jsr166 1.201 d.result = encodeRelay(s);
1160 dl 1.143 else {
1161 jsr166 1.207 g.unipush(new UniRelay<V,V>(d, g));
1162 dl 1.143 }
1163 dl 1.113 } catch (Throwable ex) {
1164 dl 1.143 d.result = encodeThrowable(ex);
1165 dl 1.104 }
1166     }
1167 jsr166 1.201 else
1168 dl 1.184 try {
1169     e.execute(new UniCompose<T,V>(null, d, this, f));
1170     } catch (Throwable ex) {
1171 jsr166 1.201 d.result = encodeThrowable(ex);
1172 dl 1.184 }
1173 dl 1.113 return d;
1174 dl 1.28 }
1175    
1176 dl 1.113 /* ------------- Two-input Completions -------------- */
1177 dl 1.104
1178 dl 1.113 /** A Completion for an action with two sources */
1179     @SuppressWarnings("serial")
1180 jsr166 1.124 abstract static class BiCompletion<T,U,V> extends UniCompletion<T,V> {
1181     CompletableFuture<U> snd; // second source for action
1182     BiCompletion(Executor executor, CompletableFuture<V> dep,
1183     CompletableFuture<T> src, CompletableFuture<U> snd) {
1184 dl 1.113 super(executor, dep, src); this.snd = snd;
1185 dl 1.104 }
1186     }
1187    
1188 dl 1.113 /** A Completion delegating to a BiCompletion */
1189     @SuppressWarnings("serial")
1190 dl 1.110 static final class CoCompletion extends Completion {
1191 jsr166 1.124 BiCompletion<?,?,?> base;
1192     CoCompletion(BiCompletion<?,?,?> base) { this.base = base; }
1193 dl 1.113 final CompletableFuture<?> tryFire(int mode) {
1194 jsr166 1.124 BiCompletion<?,?,?> c; CompletableFuture<?> d;
1195 dl 1.113 if ((c = base) == null || (d = c.tryFire(mode)) == null)
1196 dl 1.110 return null;
1197 dl 1.113 base = null; // detach
1198 dl 1.110 return d;
1199 dl 1.88 }
1200 dl 1.113 final boolean isLive() {
1201 jsr166 1.124 BiCompletion<?,?,?> c;
1202 jsr166 1.197 return (c = base) != null
1203     // && c.isLive()
1204     && c.dep != null;
1205 dl 1.113 }
1206 dl 1.88 }
1207    
1208 jsr166 1.198 /**
1209     * Pushes completion to this and b unless both done.
1210     * Caller should first check that either result or b.result is null.
1211     */
1212 jsr166 1.124 final void bipush(CompletableFuture<?> b, BiCompletion<?,?,?> c) {
1213 dl 1.113 if (c != null) {
1214 jsr166 1.198 while (result == null) {
1215     if (tryPushStack(c)) {
1216     if (b.result == null)
1217     b.unipush(new CoCompletion(c));
1218     else if (result != null)
1219     c.tryFire(SYNC);
1220     return;
1221     }
1222 dl 1.88 }
1223 jsr166 1.198 b.unipush(c);
1224 dl 1.88 }
1225 dl 1.104 }
1226    
1227 dl 1.113 /** Post-processing after successful BiCompletion tryFire. */
1228     final CompletableFuture<T> postFire(CompletableFuture<?> a,
1229     CompletableFuture<?> b, int mode) {
1230     if (b != null && b.stack != null) { // clean second source
1231 dl 1.185 Object r;
1232     if ((r = b.result) == null)
1233 dl 1.113 b.cleanStack();
1234 dl 1.185 if (mode >= 0 && (r != null || b.result != null))
1235 dl 1.113 b.postComplete();
1236 dl 1.88 }
1237 dl 1.113 return postFire(a, mode);
1238 dl 1.88 }
1239    
1240 dl 1.113 @SuppressWarnings("serial")
1241 jsr166 1.124 static final class BiApply<T,U,V> extends BiCompletion<T,U,V> {
1242 dl 1.113 BiFunction<? super T,? super U,? extends V> fn;
1243     BiApply(Executor executor, CompletableFuture<V> dep,
1244 jsr166 1.124 CompletableFuture<T> src, CompletableFuture<U> snd,
1245 dl 1.113 BiFunction<? super T,? super U,? extends V> fn) {
1246     super(executor, dep, src, snd); this.fn = fn;
1247     }
1248 jsr166 1.124 final CompletableFuture<V> tryFire(int mode) {
1249     CompletableFuture<V> d;
1250     CompletableFuture<T> a;
1251     CompletableFuture<U> b;
1252 jsr166 1.201 Object r, s; BiFunction<? super T,? super U,? extends V> f;
1253     if ((d = dep) == null || (f = fn) == null
1254     || (a = src) == null || (r = a.result) == null
1255     || (b = snd) == null || (s = b.result) == null
1256     || !d.biApply(r, s, f, mode > 0 ? null : this))
1257 dl 1.113 return null;
1258 jsr166 1.124 dep = null; src = null; snd = null; fn = null;
1259 dl 1.113 return d.postFire(a, b, mode);
1260 dl 1.104 }
1261     }
1262    
1263 jsr166 1.201 final <R,S> boolean biApply(Object r, Object s,
1264 dl 1.113 BiFunction<? super R,? super S,? extends T> f,
1265     BiApply<R,S,T> c) {
1266 jsr166 1.201 Throwable x;
1267 jsr166 1.128 tryComplete: if (result == null) {
1268     if (r instanceof AltResult) {
1269     if ((x = ((AltResult)r).ex) != null) {
1270     completeThrowable(x, r);
1271     break tryComplete;
1272     }
1273     r = null;
1274     }
1275     if (s instanceof AltResult) {
1276     if ((x = ((AltResult)s).ex) != null) {
1277     completeThrowable(x, s);
1278     break tryComplete;
1279     }
1280     s = null;
1281     }
1282     try {
1283 jsr166 1.127 if (c != null && !c.claim())
1284 dl 1.113 return false;
1285 jsr166 1.127 @SuppressWarnings("unchecked") R rr = (R) r;
1286     @SuppressWarnings("unchecked") S ss = (S) s;
1287     completeValue(f.apply(rr, ss));
1288 dl 1.113 } catch (Throwable ex) {
1289 jsr166 1.128 completeThrowable(ex);
1290 dl 1.88 }
1291     }
1292 dl 1.113 return true;
1293 dl 1.104 }
1294    
1295 dl 1.113 private <U,V> CompletableFuture<V> biApplyStage(
1296 jsr166 1.124 Executor e, CompletionStage<U> o,
1297 dl 1.113 BiFunction<? super T,? super U,? extends V> f) {
1298 jsr166 1.201 CompletableFuture<U> b; Object r, s;
1299 dl 1.113 if (f == null || (b = o.toCompletableFuture()) == null)
1300     throw new NullPointerException();
1301 dl 1.143 CompletableFuture<V> d = newIncompleteFuture();
1302 jsr166 1.201 if ((r = result) == null || (s = b.result) == null)
1303     bipush(b, new BiApply<T,U,V>(e, d, this, b, f));
1304     else if (e == null)
1305     d.biApply(r, s, f, null);
1306     else
1307     try {
1308     e.execute(new BiApply<T,U,V>(null, d, this, b, f));
1309     } catch (Throwable ex) {
1310     d.result = encodeThrowable(ex);
1311 dl 1.184 }
1312 dl 1.104 return d;
1313     }
1314    
1315 dl 1.113 @SuppressWarnings("serial")
1316 jsr166 1.124 static final class BiAccept<T,U> extends BiCompletion<T,U,Void> {
1317 dl 1.113 BiConsumer<? super T,? super U> fn;
1318     BiAccept(Executor executor, CompletableFuture<Void> dep,
1319 jsr166 1.124 CompletableFuture<T> src, CompletableFuture<U> snd,
1320 dl 1.113 BiConsumer<? super T,? super U> fn) {
1321     super(executor, dep, src, snd); this.fn = fn;
1322     }
1323 jsr166 1.124 final CompletableFuture<Void> tryFire(int mode) {
1324     CompletableFuture<Void> d;
1325     CompletableFuture<T> a;
1326     CompletableFuture<U> b;
1327 jsr166 1.201 Object r, s; BiConsumer<? super T,? super U> f;
1328     if ((d = dep) == null || (f = fn) == null
1329     || (a = src) == null || (r = a.result) == null
1330     || (b = snd) == null || (s = b.result) == null
1331     || !d.biAccept(r, s, f, mode > 0 ? null : this))
1332 dl 1.113 return null;
1333 jsr166 1.124 dep = null; src = null; snd = null; fn = null;
1334 dl 1.113 return d.postFire(a, b, mode);
1335     }
1336     }
1337 dl 1.104
1338 jsr166 1.201 final <R,S> boolean biAccept(Object r, Object s,
1339 dl 1.113 BiConsumer<? super R,? super S> f,
1340     BiAccept<R,S> c) {
1341 jsr166 1.201 Throwable x;
1342 jsr166 1.128 tryComplete: if (result == null) {
1343     if (r instanceof AltResult) {
1344     if ((x = ((AltResult)r).ex) != null) {
1345     completeThrowable(x, r);
1346     break tryComplete;
1347     }
1348     r = null;
1349     }
1350     if (s instanceof AltResult) {
1351     if ((x = ((AltResult)s).ex) != null) {
1352     completeThrowable(x, s);
1353     break tryComplete;
1354     }
1355     s = null;
1356     }
1357     try {
1358 jsr166 1.127 if (c != null && !c.claim())
1359     return false;
1360     @SuppressWarnings("unchecked") R rr = (R) r;
1361     @SuppressWarnings("unchecked") S ss = (S) s;
1362     f.accept(rr, ss);
1363 jsr166 1.128 completeNull();
1364 dl 1.113 } catch (Throwable ex) {
1365 jsr166 1.128 completeThrowable(ex);
1366 dl 1.88 }
1367 dl 1.104 }
1368 dl 1.113 return true;
1369 dl 1.104 }
1370    
1371 dl 1.113 private <U> CompletableFuture<Void> biAcceptStage(
1372 jsr166 1.124 Executor e, CompletionStage<U> o,
1373 dl 1.113 BiConsumer<? super T,? super U> f) {
1374 jsr166 1.201 CompletableFuture<U> b; Object r, s;
1375 dl 1.113 if (f == null || (b = o.toCompletableFuture()) == null)
1376     throw new NullPointerException();
1377 dl 1.143 CompletableFuture<Void> d = newIncompleteFuture();
1378 jsr166 1.201 if ((r = result) == null || (s = b.result) == null)
1379     bipush(b, new BiAccept<T,U>(e, d, this, b, f));
1380     else if (e == null)
1381     d.biAccept(r, s, f, null);
1382     else
1383     try {
1384     e.execute(new BiAccept<T,U>(null, d, this, b, f));
1385     } catch (Throwable ex) {
1386     d.result = encodeThrowable(ex);
1387 dl 1.184 }
1388 dl 1.113 return d;
1389 dl 1.104 }
1390    
1391 dl 1.113 @SuppressWarnings("serial")
1392 jsr166 1.124 static final class BiRun<T,U> extends BiCompletion<T,U,Void> {
1393 dl 1.113 Runnable fn;
1394     BiRun(Executor executor, CompletableFuture<Void> dep,
1395 jsr166 1.203 CompletableFuture<T> src, CompletableFuture<U> snd,
1396 dl 1.113 Runnable fn) {
1397     super(executor, dep, src, snd); this.fn = fn;
1398     }
1399 jsr166 1.124 final CompletableFuture<Void> tryFire(int mode) {
1400     CompletableFuture<Void> d;
1401     CompletableFuture<T> a;
1402     CompletableFuture<U> b;
1403 jsr166 1.201 Object r, s; Runnable f;
1404     if ((d = dep) == null || (f = fn) == null
1405     || (a = src) == null || (r = a.result) == null
1406     || (b = snd) == null || (s = b.result) == null
1407     || !d.biRun(r, s, f, mode > 0 ? null : this))
1408 dl 1.113 return null;
1409 jsr166 1.124 dep = null; src = null; snd = null; fn = null;
1410 dl 1.113 return d.postFire(a, b, mode);
1411 dl 1.88 }
1412     }
1413    
1414 jsr166 1.201 final boolean biRun(Object r, Object s, Runnable f, BiRun<?,?> c) {
1415     Throwable x; Object z;
1416 dl 1.113 if (result == null) {
1417 jsr166 1.201 if ((r instanceof AltResult
1418     && (x = ((AltResult)(z = r)).ex) != null) ||
1419     (s instanceof AltResult
1420     && (x = ((AltResult)(z = s)).ex) != null))
1421     completeThrowable(x, z);
1422 jsr166 1.128 else
1423     try {
1424     if (c != null && !c.claim())
1425     return false;
1426     f.run();
1427     completeNull();
1428     } catch (Throwable ex) {
1429     completeThrowable(ex);
1430     }
1431 dl 1.88 }
1432 dl 1.113 return true;
1433 dl 1.104 }
1434    
1435 dl 1.113 private CompletableFuture<Void> biRunStage(Executor e, CompletionStage<?> o,
1436     Runnable f) {
1437 jsr166 1.201 CompletableFuture<?> b; Object r, s;
1438 dl 1.113 if (f == null || (b = o.toCompletableFuture()) == null)
1439     throw new NullPointerException();
1440 dl 1.143 CompletableFuture<Void> d = newIncompleteFuture();
1441 jsr166 1.201 if ((r = result) == null || (s = b.result) == null)
1442     bipush(b, new BiRun<>(e, d, this, b, f));
1443     else if (e == null)
1444     d.biRun(r, s, f, null);
1445     else
1446     try {
1447     e.execute(new BiRun<>(null, d, this, b, f));
1448     } catch (Throwable ex) {
1449     d.result = encodeThrowable(ex);
1450 dl 1.184 }
1451 dl 1.104 return d;
1452     }
1453    
1454 dl 1.113 @SuppressWarnings("serial")
1455 jsr166 1.124 static final class BiRelay<T,U> extends BiCompletion<T,U,Void> { // for And
1456     BiRelay(CompletableFuture<Void> dep,
1457 jsr166 1.203 CompletableFuture<T> src, CompletableFuture<U> snd) {
1458 dl 1.113 super(null, dep, src, snd);
1459     }
1460 jsr166 1.124 final CompletableFuture<Void> tryFire(int mode) {
1461     CompletableFuture<Void> d;
1462     CompletableFuture<T> a;
1463     CompletableFuture<U> b;
1464 jsr166 1.201 Object r, s, z; Throwable x;
1465     if ((d = dep) == null
1466     || (a = src) == null || (r = a.result) == null
1467     || (b = snd) == null || (s = b.result) == null)
1468 dl 1.113 return null;
1469 jsr166 1.201 if (d.result == null) {
1470     if ((r instanceof AltResult
1471     && (x = ((AltResult)(z = r)).ex) != null) ||
1472     (s instanceof AltResult
1473     && (x = ((AltResult)(z = s)).ex) != null))
1474     d.completeThrowable(x, z);
1475     else
1476     d.completeNull();
1477     }
1478 jsr166 1.124 src = null; snd = null; dep = null;
1479 dl 1.113 return d.postFire(a, b, mode);
1480     }
1481     }
1482 dl 1.104
1483 jsr166 1.117 /** Recursively constructs a tree of completions. */
1484 dl 1.113 static CompletableFuture<Void> andTree(CompletableFuture<?>[] cfs,
1485     int lo, int hi) {
1486 dl 1.104 CompletableFuture<Void> d = new CompletableFuture<Void>();
1487     if (lo > hi) // empty
1488     d.result = NIL;
1489 dl 1.101 else {
1490 jsr166 1.201 CompletableFuture<?> a, b; Object r, s, z; Throwable x;
1491 dl 1.104 int mid = (lo + hi) >>> 1;
1492 dl 1.113 if ((a = (lo == mid ? cfs[lo] :
1493 jsr166 1.122 andTree(cfs, lo, mid))) == null ||
1494 dl 1.113 (b = (lo == hi ? a : (hi == mid+1) ? cfs[hi] :
1495 jsr166 1.172 andTree(cfs, mid+1, hi))) == null)
1496 dl 1.113 throw new NullPointerException();
1497 jsr166 1.201 if ((r = a.result) == null || (s = b.result) == null)
1498 jsr166 1.198 a.bipush(b, new BiRelay<>(d, a, b));
1499 jsr166 1.201 else if ((r instanceof AltResult
1500     && (x = ((AltResult)(z = r)).ex) != null) ||
1501     (s instanceof AltResult
1502     && (x = ((AltResult)(z = s)).ex) != null))
1503     d.result = encodeThrowable(x, z);
1504     else
1505     d.result = NIL;
1506 dl 1.88 }
1507 dl 1.104 return d;
1508 dl 1.88 }
1509    
1510 dl 1.113 /* ------------- Projected (Ored) BiCompletions -------------- */
1511 dl 1.104
1512 jsr166 1.198 /**
1513     * Pushes completion to this and b unless either done.
1514     * Caller should first check that result and b.result are both null.
1515     */
1516 jsr166 1.124 final void orpush(CompletableFuture<?> b, BiCompletion<?,?,?> c) {
1517 dl 1.113 if (c != null) {
1518 jsr166 1.198 while (!tryPushStack(c)) {
1519     if (result != null) {
1520     NEXT.set(c, null);
1521 dl 1.104 break;
1522 dl 1.88 }
1523     }
1524 jsr166 1.198 if (result != null)
1525     c.tryFire(SYNC);
1526     else
1527     b.unipush(new CoCompletion(c));
1528 dl 1.88 }
1529 dl 1.104 }
1530    
1531 dl 1.113 @SuppressWarnings("serial")
1532 jsr166 1.124 static final class OrApply<T,U extends T,V> extends BiCompletion<T,U,V> {
1533     Function<? super T,? extends V> fn;
1534     OrApply(Executor executor, CompletableFuture<V> dep,
1535 jsr166 1.203 CompletableFuture<T> src, CompletableFuture<U> snd,
1536 jsr166 1.124 Function<? super T,? extends V> fn) {
1537 dl 1.113 super(executor, dep, src, snd); this.fn = fn;
1538     }
1539 jsr166 1.124 final CompletableFuture<V> tryFire(int mode) {
1540     CompletableFuture<V> d;
1541     CompletableFuture<T> a;
1542     CompletableFuture<U> b;
1543 jsr166 1.200 Object r; Throwable x; Function<? super T,? extends V> f;
1544 jsr166 1.201 if ((d = dep) == null || (f = fn) == null
1545     || (a = src) == null || (b = snd) == null
1546     || ((r = a.result) == null && (r = b.result) == null))
1547 dl 1.113 return null;
1548 jsr166 1.200 tryComplete: if (d.result == null) {
1549     try {
1550     if (mode <= 0 && !claim())
1551     return null;
1552     if (r instanceof AltResult) {
1553     if ((x = ((AltResult)r).ex) != null) {
1554     d.completeThrowable(x, r);
1555     break tryComplete;
1556     }
1557     r = null;
1558 jsr166 1.128 }
1559 jsr166 1.200 @SuppressWarnings("unchecked") T t = (T) r;
1560     d.completeValue(f.apply(t));
1561     } catch (Throwable ex) {
1562     d.completeThrowable(ex);
1563 jsr166 1.128 }
1564 dl 1.88 }
1565 jsr166 1.200 dep = null; src = null; snd = null; fn = null;
1566     return d.postFire(a, b, mode);
1567 dl 1.88 }
1568     }
1569    
1570 jsr166 1.124 private <U extends T,V> CompletableFuture<V> orApplyStage(
1571 jsr166 1.200 Executor e, CompletionStage<U> o, Function<? super T, ? extends V> f) {
1572 jsr166 1.124 CompletableFuture<U> b;
1573 dl 1.113 if (f == null || (b = o.toCompletableFuture()) == null)
1574     throw new NullPointerException();
1575 jsr166 1.200
1576     Object r; CompletableFuture<? extends T> z;
1577     if ((r = (z = this).result) != null ||
1578     (r = (z = b).result) != null)
1579     return z.uniApplyNow(r, e, f);
1580    
1581 dl 1.143 CompletableFuture<V> d = newIncompleteFuture();
1582 jsr166 1.200 orpush(b, new OrApply<T,U,V>(e, d, this, b, f));
1583 dl 1.113 return d;
1584     }
1585    
1586     @SuppressWarnings("serial")
1587 jsr166 1.124 static final class OrAccept<T,U extends T> extends BiCompletion<T,U,Void> {
1588 dl 1.113 Consumer<? super T> fn;
1589     OrAccept(Executor executor, CompletableFuture<Void> dep,
1590 jsr166 1.203 CompletableFuture<T> src, CompletableFuture<U> snd,
1591 dl 1.113 Consumer<? super T> fn) {
1592     super(executor, dep, src, snd); this.fn = fn;
1593     }
1594 jsr166 1.124 final CompletableFuture<Void> tryFire(int mode) {
1595     CompletableFuture<Void> d;
1596     CompletableFuture<T> a;
1597     CompletableFuture<U> b;
1598 jsr166 1.200 Object r; Throwable x; Consumer<? super T> f;
1599 jsr166 1.201 if ((d = dep) == null || (f = fn) == null
1600     || (a = src) == null || (b = snd) == null
1601     || ((r = a.result) == null && (r = b.result) == null))
1602 dl 1.113 return null;
1603 jsr166 1.200 tryComplete: if (d.result == null) {
1604     try {
1605     if (mode <= 0 && !claim())
1606     return null;
1607     if (r instanceof AltResult) {
1608     if ((x = ((AltResult)r).ex) != null) {
1609     d.completeThrowable(x, r);
1610     break tryComplete;
1611     }
1612     r = null;
1613 jsr166 1.128 }
1614 jsr166 1.200 @SuppressWarnings("unchecked") T t = (T) r;
1615     f.accept(t);
1616     d.completeNull();
1617     } catch (Throwable ex) {
1618     d.completeThrowable(ex);
1619 jsr166 1.128 }
1620 dl 1.113 }
1621 jsr166 1.200 dep = null; src = null; snd = null; fn = null;
1622     return d.postFire(a, b, mode);
1623 dl 1.113 }
1624     }
1625    
1626 jsr166 1.124 private <U extends T> CompletableFuture<Void> orAcceptStage(
1627     Executor e, CompletionStage<U> o, Consumer<? super T> f) {
1628     CompletableFuture<U> b;
1629 dl 1.113 if (f == null || (b = o.toCompletableFuture()) == null)
1630     throw new NullPointerException();
1631 jsr166 1.200
1632     Object r; CompletableFuture<? extends T> z;
1633     if ((r = (z = this).result) != null ||
1634     (r = (z = b).result) != null)
1635     return z.uniAcceptNow(r, e, f);
1636    
1637 dl 1.143 CompletableFuture<Void> d = newIncompleteFuture();
1638 jsr166 1.200 orpush(b, new OrAccept<T,U>(e, d, this, b, f));
1639 dl 1.104 return d;
1640     }
1641    
1642 dl 1.113 @SuppressWarnings("serial")
1643 jsr166 1.124 static final class OrRun<T,U> extends BiCompletion<T,U,Void> {
1644 dl 1.113 Runnable fn;
1645     OrRun(Executor executor, CompletableFuture<Void> dep,
1646 jsr166 1.203 CompletableFuture<T> src, CompletableFuture<U> snd,
1647 jsr166 1.124 Runnable fn) {
1648 dl 1.113 super(executor, dep, src, snd); this.fn = fn;
1649     }
1650 jsr166 1.124 final CompletableFuture<Void> tryFire(int mode) {
1651     CompletableFuture<Void> d;
1652     CompletableFuture<T> a;
1653     CompletableFuture<U> b;
1654 jsr166 1.200 Object r; Throwable x; Runnable f;
1655 jsr166 1.201 if ((d = dep) == null || (f = fn) == null
1656     || (a = src) == null || (b = snd) == null
1657     || ((r = a.result) == null && (r = b.result) == null))
1658 dl 1.113 return null;
1659 jsr166 1.200 if (d.result == null) {
1660     try {
1661     if (mode <= 0 && !claim())
1662     return null;
1663     else if (r instanceof AltResult
1664     && (x = ((AltResult)r).ex) != null)
1665     d.completeThrowable(x, r);
1666     else {
1667     f.run();
1668     d.completeNull();
1669     }
1670     } catch (Throwable ex) {
1671     d.completeThrowable(ex);
1672     }
1673     }
1674 jsr166 1.124 dep = null; src = null; snd = null; fn = null;
1675 dl 1.113 return d.postFire(a, b, mode);
1676     }
1677     }
1678 dl 1.104
1679 dl 1.113 private CompletableFuture<Void> orRunStage(Executor e, CompletionStage<?> o,
1680     Runnable f) {
1681     CompletableFuture<?> b;
1682     if (f == null || (b = o.toCompletableFuture()) == null)
1683     throw new NullPointerException();
1684 jsr166 1.200
1685     Object r; CompletableFuture<?> z;
1686     if ((r = (z = this).result) != null ||
1687     (r = (z = b).result) != null)
1688     return z.uniRunNow(r, e, f);
1689    
1690 dl 1.143 CompletableFuture<Void> d = newIncompleteFuture();
1691 jsr166 1.200 orpush(b, new OrRun<>(e, d, this, b, f));
1692 dl 1.113 return d;
1693     }
1694    
1695 jsr166 1.207 /** Completion for an anyOf input future. */
1696 dl 1.113 @SuppressWarnings("serial")
1697 jsr166 1.207 static class AnyOf extends Completion {
1698     CompletableFuture<Object> dep; CompletableFuture<?> src;
1699     CompletableFuture<?>[] srcs;
1700     AnyOf(CompletableFuture<Object> dep, CompletableFuture<?> src,
1701     CompletableFuture<?>[] srcs) {
1702     this.dep = dep; this.src = src; this.srcs = srcs;
1703 dl 1.113 }
1704 jsr166 1.124 final CompletableFuture<Object> tryFire(int mode) {
1705 jsr166 1.207 // assert mode != ASYNC;
1706     CompletableFuture<Object> d; CompletableFuture<?> a;
1707     CompletableFuture<?>[] as;
1708 jsr166 1.201 Object r;
1709     if ((d = dep) == null
1710 jsr166 1.207 || (a = src) == null || (r = a.result) == null
1711     || (as = srcs) == null)
1712 dl 1.113 return null;
1713 jsr166 1.207 dep = null; src = null; srcs = null;
1714     if (d.completeRelay(r)) {
1715     for (CompletableFuture<?> b : as)
1716     if (b != a)
1717     b.cleanStack();
1718     if (mode < 0)
1719     return d;
1720     else
1721     d.postComplete();
1722     }
1723     return null;
1724 dl 1.113 }
1725 jsr166 1.207 final boolean isLive() {
1726     CompletableFuture<Object> d;
1727     return (d = dep) != null && d.result == null;
1728 dl 1.113 }
1729 dl 1.104 }
1730    
1731 dl 1.113 /* ------------- Zero-input Async forms -------------- */
1732 dl 1.104
1733 jsr166 1.133 @SuppressWarnings("serial")
1734     static final class AsyncSupply<T> extends ForkJoinTask<Void>
1735 dl 1.143 implements Runnable, AsynchronousCompletionTask {
1736 dl 1.150 CompletableFuture<T> dep; Supplier<? extends T> fn;
1737     AsyncSupply(CompletableFuture<T> dep, Supplier<? extends T> fn) {
1738 dl 1.113 this.dep = dep; this.fn = fn;
1739     }
1740    
1741 jsr166 1.133 public final Void getRawResult() { return null; }
1742     public final void setRawResult(Void v) {}
1743 dl 1.187 public final boolean exec() { run(); return false; }
1744 jsr166 1.133
1745 jsr166 1.131 public void run() {
1746 dl 1.150 CompletableFuture<T> d; Supplier<? extends T> f;
1747 dl 1.113 if ((d = dep) != null && (f = fn) != null) {
1748     dep = null; fn = null;
1749     if (d.result == null) {
1750     try {
1751 jsr166 1.127 d.completeValue(f.get());
1752 dl 1.113 } catch (Throwable ex) {
1753 jsr166 1.127 d.completeThrowable(ex);
1754 dl 1.113 }
1755     }
1756     d.postComplete();
1757     }
1758     }
1759     }
1760    
1761     static <U> CompletableFuture<U> asyncSupplyStage(Executor e,
1762     Supplier<U> f) {
1763     if (f == null) throw new NullPointerException();
1764     CompletableFuture<U> d = new CompletableFuture<U>();
1765     e.execute(new AsyncSupply<U>(d, f));
1766     return d;
1767     }
1768    
1769 jsr166 1.133 @SuppressWarnings("serial")
1770     static final class AsyncRun extends ForkJoinTask<Void>
1771 dl 1.143 implements Runnable, AsynchronousCompletionTask {
1772 dl 1.113 CompletableFuture<Void> dep; Runnable fn;
1773     AsyncRun(CompletableFuture<Void> dep, Runnable fn) {
1774     this.dep = dep; this.fn = fn;
1775     }
1776    
1777 jsr166 1.133 public final Void getRawResult() { return null; }
1778     public final void setRawResult(Void v) {}
1779 dl 1.187 public final boolean exec() { run(); return false; }
1780 jsr166 1.133
1781 jsr166 1.131 public void run() {
1782 dl 1.113 CompletableFuture<Void> d; Runnable f;
1783     if ((d = dep) != null && (f = fn) != null) {
1784     dep = null; fn = null;
1785     if (d.result == null) {
1786     try {
1787     f.run();
1788 jsr166 1.128 d.completeNull();
1789 dl 1.113 } catch (Throwable ex) {
1790 jsr166 1.127 d.completeThrowable(ex);
1791 dl 1.113 }
1792     }
1793     d.postComplete();
1794 dl 1.88 }
1795     }
1796     }
1797    
1798 dl 1.113 static CompletableFuture<Void> asyncRunStage(Executor e, Runnable f) {
1799     if (f == null) throw new NullPointerException();
1800 dl 1.104 CompletableFuture<Void> d = new CompletableFuture<Void>();
1801 dl 1.113 e.execute(new AsyncRun(d, f));
1802 dl 1.104 return d;
1803     }
1804    
1805     /* ------------- Signallers -------------- */
1806    
1807     /**
1808 dl 1.113 * Completion for recording and releasing a waiting thread. This
1809     * class implements ManagedBlocker to avoid starvation when
1810     * blocking actions pile up in ForkJoinPools.
1811 dl 1.104 */
1812 dl 1.113 @SuppressWarnings("serial")
1813 dl 1.110 static final class Signaller extends Completion
1814 dl 1.104 implements ForkJoinPool.ManagedBlocker {
1815 jsr166 1.173 long nanos; // remaining wait time if timed
1816 dl 1.113 final long deadline; // non-zero if timed
1817 dl 1.177 final boolean interruptible;
1818     boolean interrupted;
1819 dl 1.104 volatile Thread thread;
1820 dl 1.113
1821 dl 1.104 Signaller(boolean interruptible, long nanos, long deadline) {
1822     this.thread = Thread.currentThread();
1823 dl 1.177 this.interruptible = interruptible;
1824 dl 1.104 this.nanos = nanos;
1825     this.deadline = deadline;
1826     }
1827 dl 1.113 final CompletableFuture<?> tryFire(int ignore) {
1828     Thread w; // no need to atomically claim
1829     if ((w = thread) != null) {
1830     thread = null;
1831 dl 1.104 LockSupport.unpark(w);
1832 dl 1.88 }
1833 dl 1.104 return null;
1834 dl 1.88 }
1835 dl 1.104 public boolean isReleasable() {
1836 dl 1.177 if (Thread.interrupted())
1837     interrupted = true;
1838     return ((interrupted && interruptible) ||
1839     (deadline != 0L &&
1840     (nanos <= 0L ||
1841     (nanos = deadline - System.nanoTime()) <= 0L)) ||
1842     thread == null);
1843 dl 1.104 }
1844     public boolean block() {
1845 dl 1.177 while (!isReleasable()) {
1846     if (deadline == 0L)
1847     LockSupport.park(this);
1848     else
1849     LockSupport.parkNanos(this, nanos);
1850     }
1851     return true;
1852 dl 1.88 }
1853 dl 1.113 final boolean isLive() { return thread != null; }
1854 dl 1.88 }
1855    
1856 dl 1.104 /**
1857     * Returns raw result after waiting, or null if interruptible and
1858     * interrupted.
1859     */
1860     private Object waitingGet(boolean interruptible) {
1861     Signaller q = null;
1862     boolean queued = false;
1863 dl 1.88 Object r;
1864 dl 1.104 while ((r = result) == null) {
1865 dl 1.184 if (q == null) {
1866     q = new Signaller(interruptible, 0L, 0L);
1867 dl 1.186 if (Thread.currentThread() instanceof ForkJoinWorkerThread)
1868     ForkJoinPool.helpAsyncBlocker(defaultExecutor(), q);
1869 dl 1.88 }
1870 dl 1.104 else if (!queued)
1871 jsr166 1.129 queued = tryPushStack(q);
1872 dl 1.177 else {
1873 dl 1.104 try {
1874     ForkJoinPool.managedBlock(q);
1875 dl 1.179 } catch (InterruptedException ie) { // currently cannot happen
1876 dl 1.177 q.interrupted = true;
1877 dl 1.104 }
1878 dl 1.177 if (q.interrupted && interruptible)
1879     break;
1880 dl 1.88 }
1881 dl 1.104 }
1882 dl 1.185 if (q != null && queued) {
1883 dl 1.104 q.thread = null;
1884 dl 1.185 if (!interruptible && q.interrupted)
1885     Thread.currentThread().interrupt();
1886     if (r == null)
1887     cleanStack();
1888 dl 1.88 }
1889 dl 1.185 if (r != null || (r = result) != null)
1890 dl 1.177 postComplete();
1891 dl 1.104 return r;
1892 dl 1.88 }
1893    
1894 dl 1.104 /**
1895     * Returns raw result after waiting, or null if interrupted, or
1896     * throws TimeoutException on timeout.
1897     */
1898     private Object timedGet(long nanos) throws TimeoutException {
1899     if (Thread.interrupted())
1900     return null;
1901 dl 1.177 if (nanos > 0L) {
1902     long d = System.nanoTime() + nanos;
1903     long deadline = (d == 0L) ? 1L : d; // avoid 0
1904     Signaller q = null;
1905     boolean queued = false;
1906     Object r;
1907 dl 1.184 while ((r = result) == null) { // similar to untimed
1908     if (q == null) {
1909 dl 1.177 q = new Signaller(true, nanos, deadline);
1910 dl 1.186 if (Thread.currentThread() instanceof ForkJoinWorkerThread)
1911     ForkJoinPool.helpAsyncBlocker(defaultExecutor(), q);
1912 dl 1.184 }
1913 dl 1.177 else if (!queued)
1914     queued = tryPushStack(q);
1915 jsr166 1.178 else if (q.nanos <= 0L)
1916 dl 1.177 break;
1917     else {
1918     try {
1919     ForkJoinPool.managedBlock(q);
1920     } catch (InterruptedException ie) {
1921     q.interrupted = true;
1922     }
1923     if (q.interrupted)
1924     break;
1925     }
1926     }
1927 dl 1.185 if (q != null && queued) {
1928 dl 1.104 q.thread = null;
1929 dl 1.185 if (r == null)
1930     cleanStack();
1931     }
1932     if (r != null || (r = result) != null)
1933 dl 1.177 postComplete();
1934     if (r != null || (q != null && q.interrupted))
1935     return r;
1936 dl 1.88 }
1937 dl 1.177 throw new TimeoutException();
1938 dl 1.88 }
1939    
1940 dl 1.104 /* ------------- public methods -------------- */
1941 dl 1.88
1942     /**
1943     * Creates a new incomplete CompletableFuture.
1944     */
1945     public CompletableFuture() {
1946     }
1947    
1948     /**
1949 jsr166 1.128 * Creates a new complete CompletableFuture with given encoded result.
1950     */
1951 dl 1.143 CompletableFuture(Object r) {
1952 jsr166 1.217 RESULT.setRelease(this, r);
1953 jsr166 1.128 }
1954    
1955     /**
1956 dl 1.88 * Returns a new CompletableFuture that is asynchronously completed
1957     * by a task running in the {@link ForkJoinPool#commonPool()} with
1958     * the value obtained by calling the given Supplier.
1959     *
1960     * @param supplier a function returning the value to be used
1961     * to complete the returned CompletableFuture
1962 jsr166 1.95 * @param <U> the function's return type
1963 dl 1.88 * @return the new CompletableFuture
1964     */
1965     public static <U> CompletableFuture<U> supplyAsync(Supplier<U> supplier) {
1966 jsr166 1.171 return asyncSupplyStage(ASYNC_POOL, supplier);
1967 dl 1.88 }
1968    
1969     /**
1970     * Returns a new CompletableFuture that is asynchronously completed
1971     * by a task running in the given executor with the value obtained
1972     * by calling the given Supplier.
1973     *
1974     * @param supplier a function returning the value to be used
1975     * to complete the returned CompletableFuture
1976     * @param executor the executor to use for asynchronous execution
1977 jsr166 1.95 * @param <U> the function's return type
1978 dl 1.88 * @return the new CompletableFuture
1979     */
1980     public static <U> CompletableFuture<U> supplyAsync(Supplier<U> supplier,
1981     Executor executor) {
1982 dl 1.113 return asyncSupplyStage(screenExecutor(executor), supplier);
1983 dl 1.28 }
1984    
1985     /**
1986 jsr166 1.66 * Returns a new CompletableFuture that is asynchronously completed
1987     * by a task running in the {@link ForkJoinPool#commonPool()} after
1988     * it runs the given action.
1989 dl 1.28 *
1990     * @param runnable the action to run before completing the
1991     * returned CompletableFuture
1992 jsr166 1.58 * @return the new CompletableFuture
1993 dl 1.28 */
1994     public static CompletableFuture<Void> runAsync(Runnable runnable) {
1995 jsr166 1.171 return asyncRunStage(ASYNC_POOL, runnable);
1996 dl 1.28 }
1997    
1998     /**
1999 jsr166 1.66 * Returns a new CompletableFuture that is asynchronously completed
2000     * by a task running in the given executor after it runs the given
2001     * action.
2002 dl 1.28 *
2003     * @param runnable the action to run before completing the
2004     * returned CompletableFuture
2005     * @param executor the executor to use for asynchronous execution
2006 jsr166 1.58 * @return the new CompletableFuture
2007 dl 1.28 */
2008     public static CompletableFuture<Void> runAsync(Runnable runnable,
2009     Executor executor) {
2010 dl 1.113 return asyncRunStage(screenExecutor(executor), runnable);
2011 dl 1.28 }
2012    
2013     /**
2014 dl 1.77 * Returns a new CompletableFuture that is already completed with
2015     * the given value.
2016     *
2017     * @param value the value
2018 jsr166 1.95 * @param <U> the type of the value
2019 dl 1.77 * @return the completed CompletableFuture
2020     */
2021     public static <U> CompletableFuture<U> completedFuture(U value) {
2022 jsr166 1.128 return new CompletableFuture<U>((value == null) ? NIL : value);
2023 dl 1.77 }
2024    
2025     /**
2026 dl 1.28 * Returns {@code true} if completed in any fashion: normally,
2027     * exceptionally, or via cancellation.
2028     *
2029     * @return {@code true} if completed
2030     */
2031     public boolean isDone() {
2032     return result != null;
2033     }
2034    
2035     /**
2036 dl 1.49 * Waits if necessary for this future to complete, and then
2037 dl 1.48 * returns its result.
2038 dl 1.28 *
2039 dl 1.48 * @return the result value
2040     * @throws CancellationException if this future was cancelled
2041     * @throws ExecutionException if this future completed exceptionally
2042 dl 1.28 * @throws InterruptedException if the current thread was interrupted
2043     * while waiting
2044     */
2045 jsr166 1.190 @SuppressWarnings("unchecked")
2046 dl 1.28 public T get() throws InterruptedException, ExecutionException {
2047 jsr166 1.105 Object r;
2048 jsr166 1.191 if ((r = result) == null)
2049     r = waitingGet(true);
2050     return (T) reportGet(r);
2051 dl 1.28 }
2052    
2053     /**
2054 dl 1.49 * Waits if necessary for at most the given time for this future
2055     * to complete, and then returns its result, if available.
2056 dl 1.28 *
2057     * @param timeout the maximum time to wait
2058     * @param unit the time unit of the timeout argument
2059 dl 1.48 * @return the result value
2060     * @throws CancellationException if this future was cancelled
2061     * @throws ExecutionException if this future completed exceptionally
2062 dl 1.28 * @throws InterruptedException if the current thread was interrupted
2063     * while waiting
2064     * @throws TimeoutException if the wait timed out
2065     */
2066 jsr166 1.190 @SuppressWarnings("unchecked")
2067 dl 1.28 public T get(long timeout, TimeUnit unit)
2068     throws InterruptedException, ExecutionException, TimeoutException {
2069 jsr166 1.191 long nanos = unit.toNanos(timeout);
2070 jsr166 1.105 Object r;
2071 jsr166 1.191 if ((r = result) == null)
2072     r = timedGet(nanos);
2073     return (T) reportGet(r);
2074 dl 1.28 }
2075    
2076     /**
2077     * Returns the result value when complete, or throws an
2078     * (unchecked) exception if completed exceptionally. To better
2079     * conform with the use of common functional forms, if a
2080     * computation involved in the completion of this
2081     * CompletableFuture threw an exception, this method throws an
2082     * (unchecked) {@link CompletionException} with the underlying
2083     * exception as its cause.
2084     *
2085     * @return the result value
2086     * @throws CancellationException if the computation was cancelled
2087 jsr166 1.55 * @throws CompletionException if this future completed
2088     * exceptionally or a completion computation threw an exception
2089 dl 1.28 */
2090 jsr166 1.190 @SuppressWarnings("unchecked")
2091 dl 1.28 public T join() {
2092 dl 1.104 Object r;
2093 jsr166 1.191 if ((r = result) == null)
2094     r = waitingGet(false);
2095     return (T) reportJoin(r);
2096 dl 1.28 }
2097    
2098     /**
2099     * Returns the result value (or throws any encountered exception)
2100     * if completed, else returns the given valueIfAbsent.
2101     *
2102     * @param valueIfAbsent the value to return if not completed
2103     * @return the result value, if completed, else the given valueIfAbsent
2104     * @throws CancellationException if the computation was cancelled
2105 jsr166 1.55 * @throws CompletionException if this future completed
2106     * exceptionally or a completion computation threw an exception
2107 dl 1.28 */
2108 jsr166 1.190 @SuppressWarnings("unchecked")
2109 dl 1.28 public T getNow(T valueIfAbsent) {
2110 dl 1.104 Object r;
2111 jsr166 1.190 return ((r = result) == null) ? valueIfAbsent : (T) reportJoin(r);
2112 dl 1.28 }
2113    
2114     /**
2115     * If not already completed, sets the value returned by {@link
2116     * #get()} and related methods to the given value.
2117     *
2118     * @param value the result value
2119     * @return {@code true} if this invocation caused this CompletableFuture
2120     * to transition to a completed state, else {@code false}
2121     */
2122     public boolean complete(T value) {
2123 jsr166 1.127 boolean triggered = completeValue(value);
2124 dl 1.104 postComplete();
2125 dl 1.28 return triggered;
2126     }
2127    
2128     /**
2129     * If not already completed, causes invocations of {@link #get()}
2130     * and related methods to throw the given exception.
2131     *
2132     * @param ex the exception
2133     * @return {@code true} if this invocation caused this CompletableFuture
2134     * to transition to a completed state, else {@code false}
2135     */
2136     public boolean completeExceptionally(Throwable ex) {
2137     if (ex == null) throw new NullPointerException();
2138 dl 1.104 boolean triggered = internalComplete(new AltResult(ex));
2139     postComplete();
2140 dl 1.28 return triggered;
2141     }
2142    
2143 dl 1.104 public <U> CompletableFuture<U> thenApply(
2144     Function<? super T,? extends U> fn) {
2145 dl 1.113 return uniApplyStage(null, fn);
2146 dl 1.28 }
2147    
2148 dl 1.104 public <U> CompletableFuture<U> thenApplyAsync(
2149     Function<? super T,? extends U> fn) {
2150 dl 1.143 return uniApplyStage(defaultExecutor(), fn);
2151 dl 1.17 }
2152    
2153 dl 1.104 public <U> CompletableFuture<U> thenApplyAsync(
2154     Function<? super T,? extends U> fn, Executor executor) {
2155 dl 1.113 return uniApplyStage(screenExecutor(executor), fn);
2156 dl 1.28 }
2157 dl 1.1
2158 dl 1.104 public CompletableFuture<Void> thenAccept(Consumer<? super T> action) {
2159 dl 1.113 return uniAcceptStage(null, action);
2160 dl 1.28 }
2161    
2162 dl 1.104 public CompletableFuture<Void> thenAcceptAsync(Consumer<? super T> action) {
2163 dl 1.143 return uniAcceptStage(defaultExecutor(), action);
2164 dl 1.28 }
2165    
2166 dl 1.113 public CompletableFuture<Void> thenAcceptAsync(Consumer<? super T> action,
2167     Executor executor) {
2168     return uniAcceptStage(screenExecutor(executor), action);
2169 dl 1.7 }
2170    
2171 dl 1.104 public CompletableFuture<Void> thenRun(Runnable action) {
2172 dl 1.113 return uniRunStage(null, action);
2173 dl 1.28 }
2174    
2175 dl 1.104 public CompletableFuture<Void> thenRunAsync(Runnable action) {
2176 dl 1.143 return uniRunStage(defaultExecutor(), action);
2177 dl 1.28 }
2178    
2179 dl 1.113 public CompletableFuture<Void> thenRunAsync(Runnable action,
2180     Executor executor) {
2181     return uniRunStage(screenExecutor(executor), action);
2182 dl 1.28 }
2183    
2184 dl 1.104 public <U,V> CompletableFuture<V> thenCombine(
2185     CompletionStage<? extends U> other,
2186     BiFunction<? super T,? super U,? extends V> fn) {
2187 dl 1.113 return biApplyStage(null, other, fn);
2188 dl 1.28 }
2189    
2190 dl 1.104 public <U,V> CompletableFuture<V> thenCombineAsync(
2191     CompletionStage<? extends U> other,
2192     BiFunction<? super T,? super U,? extends V> fn) {
2193 dl 1.143 return biApplyStage(defaultExecutor(), other, fn);
2194 dl 1.28 }
2195    
2196 dl 1.104 public <U,V> CompletableFuture<V> thenCombineAsync(
2197     CompletionStage<? extends U> other,
2198 dl 1.113 BiFunction<? super T,? super U,? extends V> fn, Executor executor) {
2199     return biApplyStage(screenExecutor(executor), other, fn);
2200 dl 1.1 }
2201    
2202 dl 1.104 public <U> CompletableFuture<Void> thenAcceptBoth(
2203     CompletionStage<? extends U> other,
2204     BiConsumer<? super T, ? super U> action) {
2205 dl 1.113 return biAcceptStage(null, other, action);
2206 dl 1.28 }
2207    
2208 dl 1.104 public <U> CompletableFuture<Void> thenAcceptBothAsync(
2209     CompletionStage<? extends U> other,
2210     BiConsumer<? super T, ? super U> action) {
2211 dl 1.143 return biAcceptStage(defaultExecutor(), other, action);
2212 dl 1.28 }
2213    
2214 dl 1.104 public <U> CompletableFuture<Void> thenAcceptBothAsync(
2215     CompletionStage<? extends U> other,
2216 dl 1.113 BiConsumer<? super T, ? super U> action, Executor executor) {
2217     return biAcceptStage(screenExecutor(executor), other, action);
2218 dl 1.28 }
2219    
2220 dl 1.113 public CompletableFuture<Void> runAfterBoth(CompletionStage<?> other,
2221     Runnable action) {
2222     return biRunStage(null, other, action);
2223 dl 1.7 }
2224    
2225 dl 1.113 public CompletableFuture<Void> runAfterBothAsync(CompletionStage<?> other,
2226     Runnable action) {
2227 dl 1.143 return biRunStage(defaultExecutor(), other, action);
2228 dl 1.28 }
2229    
2230 dl 1.113 public CompletableFuture<Void> runAfterBothAsync(CompletionStage<?> other,
2231     Runnable action,
2232     Executor executor) {
2233     return biRunStage(screenExecutor(executor), other, action);
2234 dl 1.28 }
2235    
2236 dl 1.104 public <U> CompletableFuture<U> applyToEither(
2237     CompletionStage<? extends T> other, Function<? super T, U> fn) {
2238 dl 1.113 return orApplyStage(null, other, fn);
2239 dl 1.28 }
2240    
2241 dl 1.104 public <U> CompletableFuture<U> applyToEitherAsync(
2242     CompletionStage<? extends T> other, Function<? super T, U> fn) {
2243 dl 1.143 return orApplyStage(defaultExecutor(), other, fn);
2244 dl 1.28 }
2245    
2246 dl 1.113 public <U> CompletableFuture<U> applyToEitherAsync(
2247     CompletionStage<? extends T> other, Function<? super T, U> fn,
2248     Executor executor) {
2249     return orApplyStage(screenExecutor(executor), other, fn);
2250 dl 1.1 }
2251    
2252 dl 1.104 public CompletableFuture<Void> acceptEither(
2253     CompletionStage<? extends T> other, Consumer<? super T> action) {
2254 dl 1.113 return orAcceptStage(null, other, action);
2255 dl 1.28 }
2256    
2257 dl 1.113 public CompletableFuture<Void> acceptEitherAsync(
2258     CompletionStage<? extends T> other, Consumer<? super T> action) {
2259 dl 1.143 return orAcceptStage(defaultExecutor(), other, action);
2260 dl 1.28 }
2261    
2262 dl 1.104 public CompletableFuture<Void> acceptEitherAsync(
2263     CompletionStage<? extends T> other, Consumer<? super T> action,
2264     Executor executor) {
2265 dl 1.113 return orAcceptStage(screenExecutor(executor), other, action);
2266 dl 1.7 }
2267    
2268 dl 1.113 public CompletableFuture<Void> runAfterEither(CompletionStage<?> other,
2269     Runnable action) {
2270     return orRunStage(null, other, action);
2271 dl 1.28 }
2272    
2273 dl 1.113 public CompletableFuture<Void> runAfterEitherAsync(CompletionStage<?> other,
2274     Runnable action) {
2275 dl 1.143 return orRunStage(defaultExecutor(), other, action);
2276 dl 1.28 }
2277    
2278 dl 1.113 public CompletableFuture<Void> runAfterEitherAsync(CompletionStage<?> other,
2279     Runnable action,
2280     Executor executor) {
2281     return orRunStage(screenExecutor(executor), other, action);
2282 dl 1.1 }
2283    
2284 dl 1.113 public <U> CompletableFuture<U> thenCompose(
2285     Function<? super T, ? extends CompletionStage<U>> fn) {
2286     return uniComposeStage(null, fn);
2287 dl 1.37 }
2288    
2289 dl 1.104 public <U> CompletableFuture<U> thenComposeAsync(
2290     Function<? super T, ? extends CompletionStage<U>> fn) {
2291 dl 1.143 return uniComposeStage(defaultExecutor(), fn);
2292 dl 1.37 }
2293    
2294 dl 1.104 public <U> CompletableFuture<U> thenComposeAsync(
2295     Function<? super T, ? extends CompletionStage<U>> fn,
2296     Executor executor) {
2297 dl 1.113 return uniComposeStage(screenExecutor(executor), fn);
2298 dl 1.37 }
2299    
2300 dl 1.104 public CompletableFuture<T> whenComplete(
2301     BiConsumer<? super T, ? super Throwable> action) {
2302 dl 1.113 return uniWhenCompleteStage(null, action);
2303 dl 1.88 }
2304    
2305 dl 1.104 public CompletableFuture<T> whenCompleteAsync(
2306     BiConsumer<? super T, ? super Throwable> action) {
2307 dl 1.143 return uniWhenCompleteStage(defaultExecutor(), action);
2308 dl 1.88 }
2309    
2310 dl 1.104 public CompletableFuture<T> whenCompleteAsync(
2311     BiConsumer<? super T, ? super Throwable> action, Executor executor) {
2312 dl 1.113 return uniWhenCompleteStage(screenExecutor(executor), action);
2313 dl 1.88 }
2314    
2315 dl 1.104 public <U> CompletableFuture<U> handle(
2316     BiFunction<? super T, Throwable, ? extends U> fn) {
2317 dl 1.113 return uniHandleStage(null, fn);
2318 dl 1.88 }
2319    
2320 dl 1.104 public <U> CompletableFuture<U> handleAsync(
2321     BiFunction<? super T, Throwable, ? extends U> fn) {
2322 dl 1.143 return uniHandleStage(defaultExecutor(), fn);
2323 dl 1.88 }
2324    
2325 dl 1.104 public <U> CompletableFuture<U> handleAsync(
2326     BiFunction<? super T, Throwable, ? extends U> fn, Executor executor) {
2327 dl 1.113 return uniHandleStage(screenExecutor(executor), fn);
2328 dl 1.88 }
2329    
2330     /**
2331 jsr166 1.108 * Returns this CompletableFuture.
2332 dl 1.88 *
2333     * @return this CompletableFuture
2334     */
2335     public CompletableFuture<T> toCompletableFuture() {
2336     return this;
2337 dl 1.28 }
2338    
2339 dl 1.213 public CompletableFuture<T> exceptionally(
2340     Function<Throwable, ? extends T> fn) {
2341     return uniExceptionallyStage(null, fn);
2342     }
2343 dl 1.88
2344 dl 1.213 public CompletableFuture<T> exceptionallyAsync(
2345 dl 1.104 Function<Throwable, ? extends T> fn) {
2346 dl 1.213 return uniExceptionallyStage(defaultExecutor(), fn);
2347 dl 1.28 }
2348    
2349 dl 1.213 public CompletableFuture<T> exceptionallyAsync(
2350     Function<Throwable, ? extends T> fn, Executor executor) {
2351     return uniExceptionallyStage(screenExecutor(executor), fn);
2352     }
2353    
2354 jsr166 1.214 public CompletableFuture<T> exceptionallyCompose(
2355 dl 1.213 Function<Throwable, ? extends CompletionStage<T>> fn) {
2356     return uniComposeExceptionallyStage(null, fn);
2357     }
2358 dl 1.143
2359 dl 1.213 public CompletableFuture<T> exceptionallyComposeAsync(
2360     Function<Throwable, ? extends CompletionStage<T>> fn) {
2361     return uniComposeExceptionallyStage(defaultExecutor(), fn);
2362     }
2363    
2364     public CompletableFuture<T> exceptionallyComposeAsync(
2365     Function<Throwable, ? extends CompletionStage<T>> fn,
2366     Executor executor) {
2367     return uniComposeExceptionallyStage(screenExecutor(executor), fn);
2368     }
2369 jsr166 1.214
2370 dl 1.35 /* ------------- Arbitrary-arity constructions -------------- */
2371    
2372     /**
2373     * Returns a new CompletableFuture that is completed when all of
2374 jsr166 1.66 * the given CompletableFutures complete. If any of the given
2375 jsr166 1.69 * CompletableFutures complete exceptionally, then the returned
2376     * CompletableFuture also does so, with a CompletionException
2377     * holding this exception as its cause. Otherwise, the results,
2378     * if any, of the given CompletableFutures are not reflected in
2379     * the returned CompletableFuture, but may be obtained by
2380     * inspecting them individually. If no CompletableFutures are
2381     * provided, returns a CompletableFuture completed with the value
2382     * {@code null}.
2383 dl 1.35 *
2384     * <p>Among the applications of this method is to await completion
2385     * of a set of independent CompletableFutures before continuing a
2386     * program, as in: {@code CompletableFuture.allOf(c1, c2,
2387     * c3).join();}.
2388     *
2389     * @param cfs the CompletableFutures
2390 jsr166 1.59 * @return a new CompletableFuture that is completed when all of the
2391 dl 1.35 * given CompletableFutures complete
2392     * @throws NullPointerException if the array or any of its elements are
2393     * {@code null}
2394     */
2395     public static CompletableFuture<Void> allOf(CompletableFuture<?>... cfs) {
2396 dl 1.113 return andTree(cfs, 0, cfs.length - 1);
2397 dl 1.35 }
2398    
2399     /**
2400 dl 1.76 * Returns a new CompletableFuture that is completed when any of
2401 jsr166 1.79 * the given CompletableFutures complete, with the same result.
2402     * Otherwise, if it completed exceptionally, the returned
2403 dl 1.77 * CompletableFuture also does so, with a CompletionException
2404     * holding this exception as its cause. If no CompletableFutures
2405     * are provided, returns an incomplete CompletableFuture.
2406 dl 1.35 *
2407     * @param cfs the CompletableFutures
2408 dl 1.77 * @return a new CompletableFuture that is completed with the
2409     * result or exception of any of the given CompletableFutures when
2410     * one completes
2411 dl 1.35 * @throws NullPointerException if the array or any of its elements are
2412     * {@code null}
2413     */
2414 dl 1.77 public static CompletableFuture<Object> anyOf(CompletableFuture<?>... cfs) {
2415 jsr166 1.207 int n; Object r;
2416     if ((n = cfs.length) <= 1)
2417     return (n == 0)
2418     ? new CompletableFuture<Object>()
2419     : uniCopyStage(cfs[0]);
2420     for (CompletableFuture<?> cf : cfs)
2421     if ((r = cf.result) != null)
2422     return new CompletableFuture<Object>(encodeRelay(r));
2423     cfs = cfs.clone();
2424     CompletableFuture<Object> d = new CompletableFuture<>();
2425     for (CompletableFuture<?> cf : cfs)
2426     cf.unipush(new AnyOf(d, cf, cfs));
2427     // If d was completed while we were adding completions, we should
2428     // clean the stack of any sources that may have had completions
2429     // pushed on their stack after d was completed.
2430     if (d.result != null)
2431     for (int i = 0, len = cfs.length; i < len; i++)
2432     if (cfs[i].result != null)
2433     for (i++; i < len; i++)
2434     if (cfs[i].result == null)
2435     cfs[i].cleanStack();
2436     return d;
2437 dl 1.35 }
2438    
2439     /* ------------- Control and status methods -------------- */
2440    
2441 dl 1.28 /**
2442 dl 1.37 * If not already completed, completes this CompletableFuture with
2443     * a {@link CancellationException}. Dependent CompletableFutures
2444     * that have not already completed will also complete
2445     * exceptionally, with a {@link CompletionException} caused by
2446     * this {@code CancellationException}.
2447 dl 1.28 *
2448     * @param mayInterruptIfRunning this value has no effect in this
2449     * implementation because interrupts are not used to control
2450     * processing.
2451     *
2452     * @return {@code true} if this task is now cancelled
2453     */
2454     public boolean cancel(boolean mayInterruptIfRunning) {
2455 dl 1.46 boolean cancelled = (result == null) &&
2456 dl 1.104 internalComplete(new AltResult(new CancellationException()));
2457     postComplete();
2458 dl 1.48 return cancelled || isCancelled();
2459 dl 1.28 }
2460    
2461     /**
2462     * Returns {@code true} if this CompletableFuture was cancelled
2463     * before it completed normally.
2464     *
2465     * @return {@code true} if this CompletableFuture was cancelled
2466     * before it completed normally
2467     */
2468     public boolean isCancelled() {
2469     Object r;
2470 jsr166 1.43 return ((r = result) instanceof AltResult) &&
2471     (((AltResult)r).ex instanceof CancellationException);
2472 dl 1.28 }
2473    
2474     /**
2475 dl 1.88 * Returns {@code true} if this CompletableFuture completed
2476 dl 1.91 * exceptionally, in any way. Possible causes include
2477     * cancellation, explicit invocation of {@code
2478     * completeExceptionally}, and abrupt termination of a
2479     * CompletionStage action.
2480 dl 1.88 *
2481     * @return {@code true} if this CompletableFuture completed
2482     * exceptionally
2483     */
2484     public boolean isCompletedExceptionally() {
2485 dl 1.91 Object r;
2486     return ((r = result) instanceof AltResult) && r != NIL;
2487 dl 1.88 }
2488    
2489     /**
2490 dl 1.28 * Forcibly sets or resets the value subsequently returned by
2491 jsr166 1.42 * method {@link #get()} and related methods, whether or not
2492     * already completed. This method is designed for use only in
2493     * error recovery actions, and even in such situations may result
2494     * in ongoing dependent completions using established versus
2495 dl 1.30 * overwritten outcomes.
2496 dl 1.28 *
2497     * @param value the completion value
2498     */
2499     public void obtrudeValue(T value) {
2500     result = (value == null) ? NIL : value;
2501 dl 1.104 postComplete();
2502 dl 1.28 }
2503    
2504 dl 1.30 /**
2505 jsr166 1.41 * Forcibly causes subsequent invocations of method {@link #get()}
2506     * and related methods to throw the given exception, whether or
2507     * not already completed. This method is designed for use only in
2508 jsr166 1.119 * error recovery actions, and even in such situations may result
2509     * in ongoing dependent completions using established versus
2510 dl 1.30 * overwritten outcomes.
2511     *
2512     * @param ex the exception
2513 jsr166 1.120 * @throws NullPointerException if the exception is null
2514 dl 1.30 */
2515     public void obtrudeException(Throwable ex) {
2516     if (ex == null) throw new NullPointerException();
2517     result = new AltResult(ex);
2518 dl 1.104 postComplete();
2519 dl 1.30 }
2520    
2521 dl 1.35 /**
2522     * Returns the estimated number of CompletableFutures whose
2523     * completions are awaiting completion of this CompletableFuture.
2524     * This method is designed for use in monitoring system state, not
2525     * for synchronization control.
2526     *
2527     * @return the number of dependent CompletableFutures
2528     */
2529     public int getNumberOfDependents() {
2530     int count = 0;
2531 dl 1.113 for (Completion p = stack; p != null; p = p.next)
2532 dl 1.35 ++count;
2533     return count;
2534     }
2535    
2536     /**
2537     * Returns a string identifying this CompletableFuture, as well as
2538 jsr166 1.40 * its completion state. The state, in brackets, contains the
2539 dl 1.35 * String {@code "Completed Normally"} or the String {@code
2540     * "Completed Exceptionally"}, or the String {@code "Not
2541     * completed"} followed by the number of CompletableFutures
2542     * dependent upon its completion, if any.
2543     *
2544     * @return a string identifying this CompletableFuture, as well as its state
2545     */
2546     public String toString() {
2547     Object r = result;
2548 dl 1.143 int count = 0; // avoid call to getNumberOfDependents in case disabled
2549     for (Completion p = stack; p != null; p = p.next)
2550     ++count;
2551 jsr166 1.40 return super.toString() +
2552 jsr166 1.211 ((r == null)
2553     ? ((count == 0)
2554     ? "[Not completed]"
2555     : "[Not completed, " + count + " dependents]")
2556     : (((r instanceof AltResult) && ((AltResult)r).ex != null)
2557     ? "[Completed exceptionally: " + ((AltResult)r).ex + "]"
2558     : "[Completed normally]"));
2559 dl 1.35 }
2560    
2561 dl 1.143 // jdk9 additions
2562    
2563     /**
2564 jsr166 1.152 * Returns a new incomplete CompletableFuture of the type to be
2565 dl 1.143 * returned by a CompletionStage method. Subclasses should
2566     * normally override this method to return an instance of the same
2567     * class as this CompletableFuture. The default implementation
2568     * returns an instance of class CompletableFuture.
2569     *
2570 jsr166 1.148 * @param <U> the type of the value
2571 dl 1.143 * @return a new CompletableFuture
2572 jsr166 1.182 * @since 9
2573 dl 1.143 */
2574     public <U> CompletableFuture<U> newIncompleteFuture() {
2575     return new CompletableFuture<U>();
2576     }
2577 jsr166 1.147
2578 dl 1.143 /**
2579     * Returns the default Executor used for async methods that do not
2580     * specify an Executor. This class uses the {@link
2581 dl 1.161 * ForkJoinPool#commonPool()} if it supports more than one
2582     * parallel thread, or else an Executor using one thread per async
2583 jsr166 1.165 * task. This method may be overridden in subclasses to return
2584 dl 1.161 * an Executor that provides at least one independent thread.
2585 dl 1.143 *
2586     * @return the executor
2587 jsr166 1.182 * @since 9
2588 dl 1.143 */
2589     public Executor defaultExecutor() {
2590 jsr166 1.171 return ASYNC_POOL;
2591 dl 1.143 }
2592    
2593     /**
2594     * Returns a new CompletableFuture that is completed normally with
2595 jsr166 1.144 * the same value as this CompletableFuture when it completes
2596 dl 1.143 * normally. If this CompletableFuture completes exceptionally,
2597     * then the returned CompletableFuture completes exceptionally
2598     * with a CompletionException with this exception as cause. The
2599 jsr166 1.145 * behavior is equivalent to {@code thenApply(x -> x)}. This
2600 dl 1.143 * method may be useful as a form of "defensive copying", to
2601     * prevent clients from completing, while still being able to
2602     * arrange dependent actions.
2603     *
2604     * @return the new CompletableFuture
2605 jsr166 1.182 * @since 9
2606 dl 1.143 */
2607     public CompletableFuture<T> copy() {
2608 jsr166 1.207 return uniCopyStage(this);
2609 dl 1.143 }
2610    
2611     /**
2612     * Returns a new CompletionStage that is completed normally with
2613 jsr166 1.144 * the same value as this CompletableFuture when it completes
2614 dl 1.143 * normally, and cannot be independently completed or otherwise
2615     * used in ways not defined by the methods of interface {@link
2616     * CompletionStage}. If this CompletableFuture completes
2617     * exceptionally, then the returned CompletionStage completes
2618     * exceptionally with a CompletionException with this exception as
2619     * cause.
2620     *
2621 jsr166 1.210 * <p>Unless overridden by a subclass, a new non-minimal
2622     * CompletableFuture with all methods available can be obtained from
2623     * a minimal CompletionStage via {@link #toCompletableFuture()}.
2624     * For example, completion of a minimal stage can be awaited by
2625     *
2626     * <pre> {@code minimalStage.toCompletableFuture().join(); }</pre>
2627     *
2628 dl 1.143 * @return the new CompletionStage
2629 jsr166 1.182 * @since 9
2630 dl 1.143 */
2631     public CompletionStage<T> minimalCompletionStage() {
2632     return uniAsMinimalStage();
2633     }
2634    
2635     /**
2636     * Completes this CompletableFuture with the result of
2637     * the given Supplier function invoked from an asynchronous
2638     * task using the given executor.
2639     *
2640     * @param supplier a function returning the value to be used
2641     * to complete this CompletableFuture
2642     * @param executor the executor to use for asynchronous execution
2643     * @return this CompletableFuture
2644 jsr166 1.182 * @since 9
2645 dl 1.143 */
2646 dl 1.150 public CompletableFuture<T> completeAsync(Supplier<? extends T> supplier,
2647 dl 1.143 Executor executor) {
2648     if (supplier == null || executor == null)
2649     throw new NullPointerException();
2650     executor.execute(new AsyncSupply<T>(this, supplier));
2651     return this;
2652     }
2653    
2654     /**
2655     * Completes this CompletableFuture with the result of the given
2656     * Supplier function invoked from an asynchronous task using the
2657 jsr166 1.154 * default executor.
2658 dl 1.143 *
2659     * @param supplier a function returning the value to be used
2660     * to complete this CompletableFuture
2661     * @return this CompletableFuture
2662 jsr166 1.182 * @since 9
2663 dl 1.143 */
2664 dl 1.150 public CompletableFuture<T> completeAsync(Supplier<? extends T> supplier) {
2665 dl 1.143 return completeAsync(supplier, defaultExecutor());
2666     }
2667    
2668     /**
2669     * Exceptionally completes this CompletableFuture with
2670     * a {@link TimeoutException} if not otherwise completed
2671     * before the given timeout.
2672     *
2673     * @param timeout how long to wait before completing exceptionally
2674     * with a TimeoutException, in units of {@code unit}
2675     * @param unit a {@code TimeUnit} determining how to interpret the
2676     * {@code timeout} parameter
2677     * @return this CompletableFuture
2678 jsr166 1.182 * @since 9
2679 dl 1.143 */
2680     public CompletableFuture<T> orTimeout(long timeout, TimeUnit unit) {
2681 dl 1.158 if (unit == null)
2682     throw new NullPointerException();
2683 dl 1.143 if (result == null)
2684     whenComplete(new Canceller(Delayer.delay(new Timeout(this),
2685     timeout, unit)));
2686     return this;
2687     }
2688    
2689     /**
2690 dl 1.146 * Completes this CompletableFuture with the given value if not
2691     * otherwise completed before the given timeout.
2692     *
2693     * @param value the value to use upon timeout
2694 jsr166 1.152 * @param timeout how long to wait before completing normally
2695     * with the given value, in units of {@code unit}
2696 dl 1.146 * @param unit a {@code TimeUnit} determining how to interpret the
2697     * {@code timeout} parameter
2698     * @return this CompletableFuture
2699 jsr166 1.182 * @since 9
2700 dl 1.146 */
2701 jsr166 1.147 public CompletableFuture<T> completeOnTimeout(T value, long timeout,
2702 dl 1.146 TimeUnit unit) {
2703 dl 1.158 if (unit == null)
2704     throw new NullPointerException();
2705 dl 1.146 if (result == null)
2706     whenComplete(new Canceller(Delayer.delay(
2707     new DelayedCompleter<T>(this, value),
2708     timeout, unit)));
2709     return this;
2710     }
2711    
2712     /**
2713 jsr166 1.174 * Returns a new Executor that submits a task to the given base
2714 dl 1.164 * executor after the given delay (or no delay if non-positive).
2715 jsr166 1.175 * Each delay commences upon invocation of the returned executor's
2716     * {@code execute} method.
2717 dl 1.143 *
2718     * @param delay how long to delay, in units of {@code unit}
2719     * @param unit a {@code TimeUnit} determining how to interpret the
2720     * {@code delay} parameter
2721     * @param executor the base executor
2722     * @return the new delayed executor
2723 jsr166 1.182 * @since 9
2724 dl 1.143 */
2725     public static Executor delayedExecutor(long delay, TimeUnit unit,
2726     Executor executor) {
2727     if (unit == null || executor == null)
2728     throw new NullPointerException();
2729     return new DelayedExecutor(delay, unit, executor);
2730     }
2731    
2732     /**
2733     * Returns a new Executor that submits a task to the default
2734 dl 1.164 * executor after the given delay (or no delay if non-positive).
2735 jsr166 1.176 * Each delay commences upon invocation of the returned executor's
2736     * {@code execute} method.
2737 dl 1.143 *
2738     * @param delay how long to delay, in units of {@code unit}
2739     * @param unit a {@code TimeUnit} determining how to interpret the
2740     * {@code delay} parameter
2741     * @return the new delayed executor
2742 jsr166 1.182 * @since 9
2743 dl 1.143 */
2744     public static Executor delayedExecutor(long delay, TimeUnit unit) {
2745 jsr166 1.163 if (unit == null)
2746     throw new NullPointerException();
2747 jsr166 1.171 return new DelayedExecutor(delay, unit, ASYNC_POOL);
2748 dl 1.143 }
2749    
2750     /**
2751     * Returns a new CompletionStage that is already completed with
2752     * the given value and supports only those methods in
2753     * interface {@link CompletionStage}.
2754     *
2755     * @param value the value
2756     * @param <U> the type of the value
2757     * @return the completed CompletionStage
2758 jsr166 1.182 * @since 9
2759 dl 1.143 */
2760     public static <U> CompletionStage<U> completedStage(U value) {
2761     return new MinimalStage<U>((value == null) ? NIL : value);
2762     }
2763    
2764     /**
2765     * Returns a new CompletableFuture that is already completed
2766     * exceptionally with the given exception.
2767     *
2768 jsr166 1.151 * @param ex the exception
2769 dl 1.143 * @param <U> the type of the value
2770     * @return the exceptionally completed CompletableFuture
2771 jsr166 1.182 * @since 9
2772 dl 1.143 */
2773     public static <U> CompletableFuture<U> failedFuture(Throwable ex) {
2774     if (ex == null) throw new NullPointerException();
2775 dl 1.166 return new CompletableFuture<U>(new AltResult(ex));
2776 dl 1.143 }
2777    
2778     /**
2779     * Returns a new CompletionStage that is already completed
2780     * exceptionally with the given exception and supports only those
2781     * methods in interface {@link CompletionStage}.
2782     *
2783 jsr166 1.151 * @param ex the exception
2784 dl 1.143 * @param <U> the type of the value
2785     * @return the exceptionally completed CompletionStage
2786 jsr166 1.182 * @since 9
2787 dl 1.143 */
2788 dl 1.153 public static <U> CompletionStage<U> failedStage(Throwable ex) {
2789 dl 1.143 if (ex == null) throw new NullPointerException();
2790 dl 1.166 return new MinimalStage<U>(new AltResult(ex));
2791 dl 1.143 }
2792    
2793     /**
2794     * Singleton delay scheduler, used only for starting and
2795     * cancelling tasks.
2796     */
2797 dl 1.158 static final class Delayer {
2798     static ScheduledFuture<?> delay(Runnable command, long delay,
2799     TimeUnit unit) {
2800     return delayer.schedule(command, delay, unit);
2801     }
2802    
2803 dl 1.143 static final class DaemonThreadFactory implements ThreadFactory {
2804     public Thread newThread(Runnable r) {
2805     Thread t = new Thread(r);
2806     t.setDaemon(true);
2807     t.setName("CompletableFutureDelayScheduler");
2808     return t;
2809     }
2810     }
2811 dl 1.158
2812     static final ScheduledThreadPoolExecutor delayer;
2813     static {
2814     (delayer = new ScheduledThreadPoolExecutor(
2815     1, new DaemonThreadFactory())).
2816     setRemoveOnCancelPolicy(true);
2817 dl 1.143 }
2818     }
2819    
2820     // Little class-ified lambdas to better support monitoring
2821    
2822     static final class DelayedExecutor implements Executor {
2823     final long delay;
2824     final TimeUnit unit;
2825     final Executor executor;
2826     DelayedExecutor(long delay, TimeUnit unit, Executor executor) {
2827     this.delay = delay; this.unit = unit; this.executor = executor;
2828     }
2829     public void execute(Runnable r) {
2830 dl 1.149 Delayer.delay(new TaskSubmitter(executor, r), delay, unit);
2831 dl 1.143 }
2832     }
2833    
2834 dl 1.149 /** Action to submit user task */
2835     static final class TaskSubmitter implements Runnable {
2836 dl 1.143 final Executor executor;
2837     final Runnable action;
2838 dl 1.149 TaskSubmitter(Executor executor, Runnable action) {
2839 dl 1.143 this.executor = executor;
2840     this.action = action;
2841     }
2842     public void run() { executor.execute(action); }
2843     }
2844    
2845     /** Action to completeExceptionally on timeout */
2846     static final class Timeout implements Runnable {
2847     final CompletableFuture<?> f;
2848     Timeout(CompletableFuture<?> f) { this.f = f; }
2849     public void run() {
2850     if (f != null && !f.isDone())
2851     f.completeExceptionally(new TimeoutException());
2852     }
2853     }
2854    
2855 dl 1.149 /** Action to complete on timeout */
2856 dl 1.146 static final class DelayedCompleter<U> implements Runnable {
2857     final CompletableFuture<U> f;
2858     final U u;
2859     DelayedCompleter(CompletableFuture<U> f, U u) { this.f = f; this.u = u; }
2860 dl 1.166 public void run() {
2861     if (f != null)
2862     f.complete(u);
2863     }
2864 dl 1.146 }
2865    
2866 dl 1.143 /** Action to cancel unneeded timeouts */
2867 jsr166 1.147 static final class Canceller implements BiConsumer<Object, Throwable> {
2868 dl 1.143 final Future<?> f;
2869     Canceller(Future<?> f) { this.f = f; }
2870     public void accept(Object ignore, Throwable ex) {
2871     if (ex == null && f != null && !f.isDone())
2872     f.cancel(false);
2873     }
2874     }
2875    
2876 jsr166 1.168 /**
2877     * A subclass that just throws UOE for most non-CompletionStage methods.
2878     */
2879 dl 1.143 static final class MinimalStage<T> extends CompletableFuture<T> {
2880     MinimalStage() { }
2881     MinimalStage(Object r) { super(r); }
2882 jsr166 1.168 @Override public <U> CompletableFuture<U> newIncompleteFuture() {
2883 dl 1.143 return new MinimalStage<U>(); }
2884 jsr166 1.168 @Override public T get() {
2885 dl 1.143 throw new UnsupportedOperationException(); }
2886 jsr166 1.168 @Override public T get(long timeout, TimeUnit unit) {
2887 dl 1.143 throw new UnsupportedOperationException(); }
2888 jsr166 1.168 @Override public T getNow(T valueIfAbsent) {
2889 dl 1.143 throw new UnsupportedOperationException(); }
2890 jsr166 1.168 @Override public T join() {
2891 dl 1.143 throw new UnsupportedOperationException(); }
2892 jsr166 1.168 @Override public boolean complete(T value) {
2893 dl 1.143 throw new UnsupportedOperationException(); }
2894 jsr166 1.168 @Override public boolean completeExceptionally(Throwable ex) {
2895 dl 1.143 throw new UnsupportedOperationException(); }
2896 jsr166 1.168 @Override public boolean cancel(boolean mayInterruptIfRunning) {
2897 dl 1.143 throw new UnsupportedOperationException(); }
2898 jsr166 1.168 @Override public void obtrudeValue(T value) {
2899 dl 1.143 throw new UnsupportedOperationException(); }
2900 jsr166 1.168 @Override public void obtrudeException(Throwable ex) {
2901 dl 1.143 throw new UnsupportedOperationException(); }
2902 jsr166 1.168 @Override public boolean isDone() {
2903 dl 1.143 throw new UnsupportedOperationException(); }
2904 jsr166 1.168 @Override public boolean isCancelled() {
2905 dl 1.143 throw new UnsupportedOperationException(); }
2906 jsr166 1.168 @Override public boolean isCompletedExceptionally() {
2907 dl 1.143 throw new UnsupportedOperationException(); }
2908 jsr166 1.168 @Override public int getNumberOfDependents() {
2909 dl 1.143 throw new UnsupportedOperationException(); }
2910 jsr166 1.168 @Override public CompletableFuture<T> completeAsync
2911     (Supplier<? extends T> supplier, Executor executor) {
2912 dl 1.167 throw new UnsupportedOperationException(); }
2913 jsr166 1.168 @Override public CompletableFuture<T> completeAsync
2914     (Supplier<? extends T> supplier) {
2915 dl 1.167 throw new UnsupportedOperationException(); }
2916 jsr166 1.168 @Override public CompletableFuture<T> orTimeout
2917     (long timeout, TimeUnit unit) {
2918 dl 1.167 throw new UnsupportedOperationException(); }
2919 jsr166 1.168 @Override public CompletableFuture<T> completeOnTimeout
2920     (T value, long timeout, TimeUnit unit) {
2921 dl 1.167 throw new UnsupportedOperationException(); }
2922 jsr166 1.210 @Override public CompletableFuture<T> toCompletableFuture() {
2923     Object r;
2924     if ((r = result) != null)
2925     return new CompletableFuture<T>(encodeRelay(r));
2926     else {
2927     CompletableFuture<T> d = new CompletableFuture<>();
2928     unipush(new UniRelay<T,T>(d, this));
2929     return d;
2930     }
2931     }
2932 dl 1.143 }
2933    
2934 dl 1.192 // VarHandle mechanics
2935 jsr166 1.193 private static final VarHandle RESULT;
2936 dl 1.192 private static final VarHandle STACK;
2937     private static final VarHandle NEXT;
2938 dl 1.1 static {
2939     try {
2940 dl 1.192 MethodHandles.Lookup l = MethodHandles.lookup();
2941 jsr166 1.193 RESULT = l.findVarHandle(CompletableFuture.class, "result", Object.class);
2942 dl 1.192 STACK = l.findVarHandle(CompletableFuture.class, "stack", Completion.class);
2943     NEXT = l.findVarHandle(Completion.class, "next", Completion.class);
2944 jsr166 1.137 } catch (ReflectiveOperationException e) {
2945 jsr166 1.212 throw new ExceptionInInitializerError(e);
2946 dl 1.1 }
2947 jsr166 1.159
2948     // Reduce the risk of rare disastrous classloading in first call to
2949     // LockSupport.park: https://bugs.openjdk.java.net/browse/JDK-8074773
2950     Class<?> ensureLoaded = LockSupport.class;
2951 dl 1.1 }
2952     }