release 2.0.0

This commit is contained in:
tommyskeff
2024-01-02 22:49:44 +00:00
parent d879cbcbfb
commit 0a05da2aeb
28 changed files with 183 additions and 659 deletions

View File

@@ -6,7 +6,7 @@ plugins {
} }
group = "dev.tommyjs" group = "dev.tommyjs"
version = "1.2.0" version = "2.0.0"
repositories { repositories {
mavenCentral() mavenCentral()

View File

@@ -1,7 +1,8 @@
package dev.tommyjs.futur.function; package dev.tommyjs.futur.function;
@FunctionalInterface
public interface ExceptionalConsumer<T> { public interface ExceptionalConsumer<T> {
void accept(T value) throws Exception; void accept(T value) throws Throwable;
} }

View File

@@ -1,7 +1,8 @@
package dev.tommyjs.futur.function; package dev.tommyjs.futur.function;
@FunctionalInterface
public interface ExceptionalFunction<K, V> { public interface ExceptionalFunction<K, V> {
V apply(K value) throws Exception; V apply(K value) throws Throwable;
} }

View File

@@ -1,7 +1,8 @@
package dev.tommyjs.futur.function; package dev.tommyjs.futur.function;
@FunctionalInterface
public interface ExceptionalRunnable { public interface ExceptionalRunnable {
void run() throws Exception; void run() throws Throwable;
} }

View File

@@ -1,7 +1,8 @@
package dev.tommyjs.futur.function; package dev.tommyjs.futur.function;
@FunctionalInterface
public interface ExceptionalSupplier<T> { public interface ExceptionalSupplier<T> {
T get() throws Exception; T get() throws Throwable;
} }

View File

@@ -1,25 +1,26 @@
package dev.tommyjs.futur.standalone; package dev.tommyjs.futur.impl;
import dev.tommyjs.futur.promise.AbstractPromise; import dev.tommyjs.futur.promise.AbstractPromise;
import dev.tommyjs.futur.promise.PromiseFactory; import dev.tommyjs.futur.promise.PromiseFactory;
import dev.tommyjs.futur.scheduler.Scheduler;
import org.slf4j.Logger; import org.slf4j.Logger;
public class PooledPromise<T> extends AbstractPromise<T> { import java.util.concurrent.ScheduledExecutorService;
private final Scheduler scheduler; public class SimplePromise<T> extends AbstractPromise<T> {
private final ScheduledExecutorService executor;
private final Logger logger; private final Logger logger;
private final PromiseFactory factory; private final PromiseFactory factory;
public PooledPromise(Scheduler scheduler, Logger logger, PromiseFactory factory) { public SimplePromise(ScheduledExecutorService executor, Logger logger, PromiseFactory factory) {
this.scheduler = scheduler; this.executor = executor;
this.logger = logger; this.logger = logger;
this.factory = factory; this.factory = factory;
} }
@Override @Override
protected Scheduler getScheduler() { protected ScheduledExecutorService getExecutor() {
return scheduler; return executor;
} }
@Override @Override

View File

@@ -1,44 +1,40 @@
package dev.tommyjs.futur.standalone; package dev.tommyjs.futur.impl;
import dev.tommyjs.futur.promise.AbstractPromise; import dev.tommyjs.futur.promise.AbstractPromise;
import dev.tommyjs.futur.promise.Promise; import dev.tommyjs.futur.promise.Promise;
import dev.tommyjs.futur.promise.PromiseFactory; import dev.tommyjs.futur.promise.PromiseFactory;
import dev.tommyjs.futur.scheduler.Scheduler;
import org.jetbrains.annotations.NotNull; import org.jetbrains.annotations.NotNull;
import org.slf4j.Logger; import org.slf4j.Logger;
public class PooledPromiseFactory implements PromiseFactory { import java.util.concurrent.ScheduledExecutorService;
private final Scheduler scheduler; public class SimplePromiseFactory implements PromiseFactory {
private final ScheduledExecutorService executor;
private final Logger logger; private final Logger logger;
public PooledPromiseFactory(Scheduler scheduler, Logger logger) { public SimplePromiseFactory(ScheduledExecutorService executor, Logger logger) {
this.scheduler = scheduler; this.executor = executor;
this.logger = logger; this.logger = logger;
} }
@Override @Override
public @NotNull <T> Promise<T> resolve(T value) { public @NotNull <T> Promise<T> resolve(T value) {
AbstractPromise<T> promise = new PooledPromise<>(scheduler, logger, this); AbstractPromise<T> promise = new SimplePromise<>(executor, logger, this);
promise.complete(value); promise.complete(value);
return promise; return promise;
} }
@Override @Override
public @NotNull <T> Promise<T> unresolved() { public @NotNull <T> Promise<T> unresolved() {
return new PooledPromise<>(scheduler, logger, this); return new SimplePromise<>(executor, logger, this);
} }
@Override @Override
public @NotNull <T> Promise<T> error(Throwable error) { public @NotNull <T> Promise<T> error(Throwable error) {
AbstractPromise<T> promise = new PooledPromise<>(scheduler, logger, this); AbstractPromise<T> promise = new SimplePromise<>(executor, logger, this);
promise.completeExceptionally(error); promise.completeExceptionally(error);
return promise; return promise;
} }
@Override
public @NotNull Promise<Void> start() {
return resolve(null);
}
} }

View File

@@ -4,52 +4,29 @@ import dev.tommyjs.futur.function.ExceptionalConsumer;
import dev.tommyjs.futur.function.ExceptionalFunction; import dev.tommyjs.futur.function.ExceptionalFunction;
import dev.tommyjs.futur.function.ExceptionalRunnable; import dev.tommyjs.futur.function.ExceptionalRunnable;
import dev.tommyjs.futur.function.ExceptionalSupplier; import dev.tommyjs.futur.function.ExceptionalSupplier;
import dev.tommyjs.futur.scheduler.Scheduler;
import dev.tommyjs.futur.trace.ExecutorTrace;
import dev.tommyjs.futur.trace.TraceUtil;
import org.jetbrains.annotations.NotNull; import org.jetbrains.annotations.NotNull;
import org.jetbrains.annotations.Nullable; import org.jetbrains.annotations.Nullable;
import org.slf4j.Logger; import org.slf4j.Logger;
import java.util.Arrays;
import java.util.Collection; import java.util.Collection;
import java.util.concurrent.ConcurrentLinkedQueue; import java.util.concurrent.ConcurrentLinkedQueue;
import java.util.concurrent.ScheduledExecutorService;
import java.util.concurrent.TimeUnit; import java.util.concurrent.TimeUnit;
import java.util.concurrent.TimeoutException; import java.util.concurrent.TimeoutException;
import java.util.concurrent.atomic.AtomicReference; import java.util.concurrent.atomic.AtomicReference;
import java.util.stream.Stream;
public abstract class AbstractPromise<T> implements Promise<T> { public abstract class AbstractPromise<T> implements Promise<T> {
private static final String PACKAGE;
static {
String[] packageElements = AbstractPromise.class.getPackageName().split("\\.");
int i = 0;
StringBuilder packageBuilder = new StringBuilder();
while (i < 3) {
packageBuilder.append(packageElements[i]);
i++;
}
PACKAGE = packageBuilder.toString();
}
private final Collection<PromiseListener<T>> listeners; private final Collection<PromiseListener<T>> listeners;
private final StackTraceElement[] stackTrace;
private @Nullable PromiseCompletion<T> completion; private @Nullable PromiseCompletion<T> completion;
public AbstractPromise() { public AbstractPromise() {
this.listeners = new ConcurrentLinkedQueue<>(); this.listeners = new ConcurrentLinkedQueue<>();
this.completion = null; this.completion = null;
this.stackTrace = Arrays.stream(Thread.currentThread().getStackTrace())
.filter(v -> !v.getClassName().startsWith(PACKAGE))
.toArray(StackTraceElement[]::new);
} }
protected abstract Scheduler getScheduler(); protected abstract ScheduledExecutorService getExecutor();
protected abstract Logger getLogger(); protected abstract Logger getLogger();
@@ -84,7 +61,7 @@ public abstract class AbstractPromise<T> implements Promise<T> {
return thenApplySync(result -> { return thenApplySync(result -> {
task.run(); task.run();
return null; return null;
}, TraceUtil.getTrace(task)); });
} }
@Override @Override
@@ -92,7 +69,7 @@ public abstract class AbstractPromise<T> implements Promise<T> {
return thenApplyDelayedSync(result -> { return thenApplyDelayedSync(result -> {
task.run(); task.run();
return null; return null;
}, delay, unit, TraceUtil.getTrace(task)); }, delay, unit);
} }
@Override @Override
@@ -100,7 +77,7 @@ public abstract class AbstractPromise<T> implements Promise<T> {
return thenApplySync(result -> { return thenApplySync(result -> {
task.accept(result); task.accept(result);
return null; return null;
}, TraceUtil.getTrace(task)); });
} }
@Override @Override
@@ -108,42 +85,21 @@ public abstract class AbstractPromise<T> implements Promise<T> {
return thenApplyDelayedSync(result -> { return thenApplyDelayedSync(result -> {
task.accept(result); task.accept(result);
return null; return null;
}, delay, unit, TraceUtil.getTrace(task)); }, delay, unit);
} }
@Override @Override
public <V> @NotNull Promise<V> thenSupplySync(@NotNull ExceptionalSupplier<V> task) { public <V> @NotNull Promise<V> thenSupplySync(@NotNull ExceptionalSupplier<V> task) {
return thenApplySync(result -> task.get(), TraceUtil.getTrace(task)); return thenApplySync(result -> task.get());
} }
@Override @Override
public <V> @NotNull Promise<V> thenSupplyDelayedSync(@NotNull ExceptionalSupplier<V> task, long delay, @NotNull TimeUnit unit) { public <V> @NotNull Promise<V> thenSupplyDelayedSync(@NotNull ExceptionalSupplier<V> task, long delay, @NotNull TimeUnit unit) {
return thenApplyDelayedSync(result -> task.get(), delay, unit, TraceUtil.getTrace(task)); return thenApplyDelayedSync(result -> task.get(), delay, unit);
}
protected <V> @NotNull Promise<V> thenApplySync(@NotNull ExceptionalFunction<T, V> task, @NotNull ExecutorTrace trace) {
Promise<V> promise = getFactory().unresolved();
addListener(ctx -> {
if (ctx.isError()) {
//noinspection ConstantConditions
promise.completeExceptionally(ctx.getException());
return;
}
Runnable runnable = createRunnable(ctx, promise, task);
getScheduler().runSync(runnable, trace);
});
return promise;
} }
@Override @Override
public <V> @NotNull Promise<V> thenApplySync(@NotNull ExceptionalFunction<T, V> task) { public <V> @NotNull Promise<V> thenApplySync(@NotNull ExceptionalFunction<T, V> task) {
return thenApplySync(task, TraceUtil.getTrace(task));
}
@Override
public <V> @NotNull Promise<V> thenApplyDelayedSync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
Promise<V> promise = getFactory().unresolved(); Promise<V> promise = getFactory().unresolved();
addListener(ctx -> { addListener(ctx -> {
if (ctx.isError()) { if (ctx.isError()) {
@@ -153,7 +109,7 @@ public abstract class AbstractPromise<T> implements Promise<T> {
} }
Runnable runnable = createRunnable(ctx, promise, task); Runnable runnable = createRunnable(ctx, promise, task);
getScheduler().runDelayedSync(runnable, delay, unit, trace); getExecutor().submit(runnable);
}); });
return promise; return promise;
@@ -161,13 +117,25 @@ public abstract class AbstractPromise<T> implements Promise<T> {
@Override @Override
public <V> @NotNull Promise<V> thenApplyDelayedSync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit) { public <V> @NotNull Promise<V> thenApplyDelayedSync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit) {
return thenApplyDelayedSync(task, delay, unit, TraceUtil.getTrace(task)); Promise<V> promise = getFactory().unresolved();
addListener(ctx -> {
if (ctx.isError()) {
//noinspection ConstantConditions
promise.completeExceptionally(ctx.getException());
return;
}
Runnable runnable = createRunnable(ctx, promise, task);
getExecutor().schedule(runnable, delay, unit);
});
return promise;
} }
@Override @Override
public <V> @NotNull Promise<V> thenComposeSync(@NotNull ExceptionalFunction<T, @NotNull Promise<V>> task) { public <V> @NotNull Promise<V> thenComposeSync(@NotNull ExceptionalFunction<T, @NotNull Promise<V>> task) {
Promise<V> promise = getFactory().unresolved(); Promise<V> promise = getFactory().unresolved();
thenApplySync(task, TraceUtil.getTrace(task)).thenConsumeAsync(nestedPromise -> { thenApplySync(task).thenConsumeAsync(nestedPromise -> {
nestedPromise.addListener(ctx1 -> { nestedPromise.addListener(ctx1 -> {
if (ctx1.isError()) { if (ctx1.isError()) {
//noinspection ConstantConditions //noinspection ConstantConditions
@@ -192,7 +160,7 @@ public abstract class AbstractPromise<T> implements Promise<T> {
return thenApplyAsync(result -> { return thenApplyAsync(result -> {
task.run(); task.run();
return null; return null;
}, TraceUtil.getTrace(task)); });
} }
@Override @Override
@@ -200,7 +168,7 @@ public abstract class AbstractPromise<T> implements Promise<T> {
return thenApplyDelayedAsync(result -> { return thenApplyDelayedAsync(result -> {
task.run(); task.run();
return null; return null;
}, delay, unit, TraceUtil.getTrace(task)); }, delay, unit);
} }
@Override @Override
@@ -208,7 +176,7 @@ public abstract class AbstractPromise<T> implements Promise<T> {
return thenApplyAsync(result -> { return thenApplyAsync(result -> {
task.accept(result); task.accept(result);
return null; return null;
}, TraceUtil.getTrace(task)); });
} }
@Override @Override
@@ -216,17 +184,17 @@ public abstract class AbstractPromise<T> implements Promise<T> {
return thenApplyDelayedAsync(result -> { return thenApplyDelayedAsync(result -> {
task.accept(result); task.accept(result);
return null; return null;
}, delay, unit, TraceUtil.getTrace(task)); }, delay, unit);
} }
@Override @Override
public <V> @NotNull Promise<V> thenSupplyAsync(@NotNull ExceptionalSupplier<V> task) { public <V> @NotNull Promise<V> thenSupplyAsync(@NotNull ExceptionalSupplier<V> task) {
return thenApplyAsync(result -> task.get(), TraceUtil.getTrace(task)); return thenApplyAsync(result -> task.get());
} }
@Override @Override
public <V> @NotNull Promise<V> thenSupplyDelayedAsync(@NotNull ExceptionalSupplier<V> task, long delay, @NotNull TimeUnit unit) { public <V> @NotNull Promise<V> thenSupplyDelayedAsync(@NotNull ExceptionalSupplier<V> task, long delay, @NotNull TimeUnit unit) {
return thenApplyDelayedAsync(result -> task.get(), delay, unit, TraceUtil.getTrace(task)); return thenApplyDelayedAsync(result -> task.get(), delay, unit);
} }
@Override @Override
@@ -237,7 +205,8 @@ public abstract class AbstractPromise<T> implements Promise<T> {
}); });
} }
protected <V> @NotNull Promise<V> thenApplyAsync(@NotNull ExceptionalFunction<T, V> task, @NotNull ExecutorTrace trace) { @Override
public <V> @NotNull Promise<V> thenApplyAsync(@NotNull ExceptionalFunction<T, V> task) {
Promise<V> promise = getFactory().unresolved(); Promise<V> promise = getFactory().unresolved();
addListener(ctx -> { addListener(ctx -> {
if (ctx.isError()) { if (ctx.isError()) {
@@ -247,23 +216,7 @@ public abstract class AbstractPromise<T> implements Promise<T> {
} }
Runnable runnable = createRunnable(ctx, promise, task); Runnable runnable = createRunnable(ctx, promise, task);
getScheduler().runAsync(runnable, trace); getExecutor().submit(runnable);
});
return promise;
}
@Override
public <V> @NotNull Promise<V> thenApplyAsync(@NotNull ExceptionalFunction<T, V> task) {
return thenApplyAsync(task, TraceUtil.getTrace(task));
}
@Override
public <V> @NotNull Promise<V> thenApplyDelayedAsync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
Promise<V> promise = getFactory().unresolved();
addListener(ctx -> {
Runnable runnable = createRunnable(ctx, promise, task);
getScheduler().runDelayedAsync(runnable, delay, unit, trace);
}); });
return promise; return promise;
@@ -271,18 +224,19 @@ public abstract class AbstractPromise<T> implements Promise<T> {
@Override @Override
public <V> @NotNull Promise<V> thenApplyDelayedAsync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit) { public <V> @NotNull Promise<V> thenApplyDelayedAsync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit) {
return thenApplyDelayedAsync(task, delay, unit, TraceUtil.getTrace(task)); Promise<V> promise = getFactory().unresolved();
} addListener(ctx -> {
Runnable runnable = createRunnable(ctx, promise, task);
getExecutor().schedule(runnable, delay, unit);
});
@Override return promise;
public <V> @NotNull Promise<V> thenCompose(@NotNull ExceptionalFunction<T, Promise<V>> task) {
return this.thenComposeAsync(task);
} }
@Override @Override
public <V> @NotNull Promise<V> thenComposeAsync(@NotNull ExceptionalFunction<T, Promise<V>> task) { public <V> @NotNull Promise<V> thenComposeAsync(@NotNull ExceptionalFunction<T, Promise<V>> task) {
Promise<V> promise = getFactory().unresolved(); Promise<V> promise = getFactory().unresolved();
thenApplyAsync(task, TraceUtil.getTrace(task)).thenConsumeAsync(nestedPromise -> { thenApplyAsync(task).thenConsumeAsync(nestedPromise -> {
nestedPromise.addListener(ctx1 -> { nestedPromise.addListener(ctx1 -> {
if (ctx1.isError()) { if (ctx1.isError()) {
//noinspection ConstantConditions //noinspection ConstantConditions
@@ -313,8 +267,8 @@ public abstract class AbstractPromise<T> implements Promise<T> {
try { try {
V result = task.apply(ctx.getResult()); V result = task.apply(ctx.getResult());
promise.complete(result); promise.complete(result);
} catch (Exception e) { } catch (Throwable e) {
promise.completeExceptionally(e, true); promise.completeExceptionally(e);
} }
}; };
} }
@@ -331,14 +285,14 @@ public abstract class AbstractPromise<T> implements Promise<T> {
@Override @Override
public @NotNull Promise<T> addListener(@NotNull PromiseListener<T> listener) { public @NotNull Promise<T> addListener(@NotNull PromiseListener<T> listener) {
if (isCompleted()) { if (isCompleted()) {
getScheduler().runAsync(() -> { getExecutor().submit(() -> {
try { try {
//noinspection ConstantConditions //noinspection ConstantConditions
listener.handle(getCompletion()); listener.handle(getCompletion());
} catch (Exception e) { } catch (Exception e) {
getLogger().error("Exception caught in promise listener", e); getLogger().error("Exception caught in promise listener", e);
} }
}, TraceUtil.getTrace(listener)); });
} else { } else {
getListeners().add(listener); getListeners().add(listener);
} }
@@ -348,13 +302,11 @@ public abstract class AbstractPromise<T> implements Promise<T> {
@Override @Override
public @NotNull Promise<T> timeout(long time, @NotNull TimeUnit unit) { public @NotNull Promise<T> timeout(long time, @NotNull TimeUnit unit) {
Runnable func = () -> { getExecutor().schedule(() -> {
if (!isCompleted()) { if (!isCompleted()) {
completeExceptionally(new TimeoutException("Promise timed out after " + time + " " + unit), true); completeExceptionally(new TimeoutException("Promise timed out after " + time + " " + unit));
} }
}; }, time, unit);
getScheduler().runDelayedAsync(func, time, unit, TraceUtil.getTrace(func));
return this; return this;
} }
@@ -368,19 +320,18 @@ public abstract class AbstractPromise<T> implements Promise<T> {
if (this.isCompleted()) return; if (this.isCompleted()) return;
setCompletion(ctx); setCompletion(ctx);
Runnable func = () -> { getExecutor().submit(() -> {
for (PromiseListener<T> listener : getListeners()) { for (PromiseListener<T> listener : getListeners()) {
if (!ctx.isActive()) return; if (!ctx.isActive()) return;
try { try {
listener.handle(ctx); listener.handle(ctx);
} catch (Exception e) { } catch (Exception e) {
e.printStackTrace();
getLogger().error("Exception caught in promise listener", e); getLogger().error("Exception caught in promise listener", e);
} }
} }
}; });
getScheduler().runAsync(func, TraceUtil.getTrace(func));
} }
@Override @Override
@@ -388,23 +339,9 @@ public abstract class AbstractPromise<T> implements Promise<T> {
handleCompletion(new PromiseCompletion<>(result)); handleCompletion(new PromiseCompletion<>(result));
} }
@Override
public void completeExceptionally(@NotNull Throwable result, boolean appendStacktrace) {
if (appendStacktrace && this.stackTrace != null) {
result.setStackTrace(Stream.of(result.getStackTrace(), this.stackTrace)
.flatMap(Stream::of)
.filter(v -> !v.getClassName().startsWith(PACKAGE))
.filter(v -> !v.getClassName().startsWith("java.lang.Thread"))
.filter(v -> !v.getClassName().startsWith("java.util.concurrent"))
.toArray(StackTraceElement[]::new));
}
handleCompletion(new PromiseCompletion<>(result));
}
@Override @Override
public void completeExceptionally(@NotNull Throwable result) { public void completeExceptionally(@NotNull Throwable result) {
completeExceptionally(result, false); handleCompletion(new PromiseCompletion<>(result));
} }
@Override @Override

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@@ -4,7 +4,6 @@ import dev.tommyjs.futur.function.ExceptionalConsumer;
import dev.tommyjs.futur.function.ExceptionalFunction; import dev.tommyjs.futur.function.ExceptionalFunction;
import dev.tommyjs.futur.function.ExceptionalRunnable; import dev.tommyjs.futur.function.ExceptionalRunnable;
import dev.tommyjs.futur.function.ExceptionalSupplier; import dev.tommyjs.futur.function.ExceptionalSupplier;
import dev.tommyjs.futur.trace.ExecutorTrace;
import org.jetbrains.annotations.NotNull; import org.jetbrains.annotations.NotNull;
import org.jetbrains.annotations.Nullable; import org.jetbrains.annotations.Nullable;
@@ -22,25 +21,12 @@ public interface Promise<T> {
return factory.error(error); return factory.error(error);
} }
static <T> @NotNull Promise<T> unresolved(PromiseFactory factory) {
return factory.unresolved();
}
static @NotNull Promise<Void> start(PromiseFactory factory) { static @NotNull Promise<Void> start(PromiseFactory factory) {
return factory.start(); return factory.resolve(null);
}
static <T> @NotNull Promise<T> resolve(T value) {
return resolve(value, UnpooledPromiseFactory.INSTANCE);
}
static <T> @NotNull Promise<T> error(Throwable error) {
return error(error, UnpooledPromiseFactory.INSTANCE);
}
static @NotNull Promise<Void> start() {
return start(UnpooledPromiseFactory.INSTANCE);
}
@Deprecated
static <T> @NotNull Promise<T> start(T start) {
return resolve(start);
} }
PromiseFactory getFactory(); PromiseFactory getFactory();
@@ -61,8 +47,6 @@ public interface Promise<T> {
<V> @NotNull Promise<V> thenApplySync(@NotNull ExceptionalFunction<T, V> task); <V> @NotNull Promise<V> thenApplySync(@NotNull ExceptionalFunction<T, V> task);
<V> @NotNull Promise<V> thenApplyDelayedSync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace);
<V> @NotNull Promise<V> thenApplyDelayedSync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit); <V> @NotNull Promise<V> thenApplyDelayedSync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit);
<V> @NotNull Promise<V> thenComposeSync(@NotNull ExceptionalFunction<T, @NotNull Promise<V>> task); <V> @NotNull Promise<V> thenComposeSync(@NotNull ExceptionalFunction<T, @NotNull Promise<V>> task);
@@ -83,12 +67,8 @@ public interface Promise<T> {
<V> @NotNull Promise<V> thenApplyAsync(@NotNull ExceptionalFunction<T, V> task); <V> @NotNull Promise<V> thenApplyAsync(@NotNull ExceptionalFunction<T, V> task);
<V> @NotNull Promise<V> thenApplyDelayedAsync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace);
<V> @NotNull Promise<V> thenApplyDelayedAsync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit); <V> @NotNull Promise<V> thenApplyDelayedAsync(@NotNull ExceptionalFunction<T, V> task, long delay, @NotNull TimeUnit unit);
<V> @NotNull Promise<V> thenCompose(@NotNull ExceptionalFunction<T, Promise<V>> task);
<V> @NotNull Promise<V> thenComposeAsync(@NotNull ExceptionalFunction<T, Promise<V>> task); <V> @NotNull Promise<V> thenComposeAsync(@NotNull ExceptionalFunction<T, Promise<V>> task);
@NotNull Promise<T> logExceptions(); @NotNull Promise<T> logExceptions();
@@ -101,8 +81,6 @@ public interface Promise<T> {
void complete(@Nullable T result); void complete(@Nullable T result);
void completeExceptionally(@NotNull Throwable result, boolean appendStacktrace);
void completeExceptionally(@NotNull Throwable result); void completeExceptionally(@NotNull Throwable result);
boolean isCompleted(); boolean isCompleted();

View File

@@ -1,6 +1,12 @@
package dev.tommyjs.futur.promise; package dev.tommyjs.futur.promise;
import dev.tommyjs.futur.impl.SimplePromiseFactory;
import org.jetbrains.annotations.NotNull; import org.jetbrains.annotations.NotNull;
import org.slf4j.Logger;
import org.slf4j.LoggerFactory;
import java.util.concurrent.Executors;
import java.util.concurrent.ScheduledExecutorService;
public interface PromiseFactory { public interface PromiseFactory {
@@ -10,6 +16,20 @@ public interface PromiseFactory {
<T> @NotNull Promise<T> error(Throwable error); <T> @NotNull Promise<T> error(Throwable error);
@NotNull Promise<Void> start(); static PromiseFactory create(ScheduledExecutorService executor, Logger logger) {
return new SimplePromiseFactory(executor, logger);
}
static PromiseFactory create(ScheduledExecutorService executor) {
return create(executor, LoggerFactory.getLogger(SimplePromiseFactory.class));
}
static PromiseFactory create(int threadPoolSize) {
return create(Executors.newScheduledThreadPool(threadPoolSize));
}
static PromiseFactory create() {
return create(Runtime.getRuntime().availableProcessors());
}
} }

View File

@@ -71,41 +71,23 @@ public class Promises {
return promise.timeout(timeout); return promise.timeout(timeout);
} }
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Map<K, Promise<V>> promises, long timeout, @Nullable BiConsumer<K, Throwable> exceptionHandler) {
return combine(promises, timeout, exceptionHandler, obtainFactory(promises.values()));
}
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Map<K, Promise<V>> promises, long timeout, boolean strict, PromiseFactory factory) { public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Map<K, Promise<V>> promises, long timeout, boolean strict, PromiseFactory factory) {
return combine(promises, timeout, strict ? null : (_k, _v) -> {}, factory); return combine(promises, timeout, strict ? null : (_k, _v) -> {}, factory);
} }
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Map<K, Promise<V>> promises, long timeout, boolean strict) {
return combine(promises, timeout, strict, obtainFactory(promises.values()));
}
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Map<K, Promise<V>> promises, long timeout, PromiseFactory factory) { public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Map<K, Promise<V>> promises, long timeout, PromiseFactory factory) {
return combine(promises, timeout, true, factory); return combine(promises, timeout, true, factory);
} }
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Map<K, Promise<V>> promises, long timeout) {
return combine(promises, timeout, true, obtainFactory(promises.values()));
}
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Map<K, Promise<V>> promises, PromiseFactory factory) { public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Map<K, Promise<V>> promises, PromiseFactory factory) {
return combine(promises, 1500L, true, factory); return combine(promises, 1500L, true, factory);
} }
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Map<K, Promise<V>> promises) {
return combine(promises, obtainFactory(promises.values()));
}
public static <V> @NotNull Promise<List<V>> combine(@NotNull List<Promise<V>> promises, long timeout, boolean strict, PromiseFactory factory) { public static <V> @NotNull Promise<List<V>> combine(@NotNull List<Promise<V>> promises, long timeout, boolean strict, PromiseFactory factory) {
AtomicInteger index = new AtomicInteger(); AtomicInteger index = new AtomicInteger();
return combine( return combine(
promises.stream() promises.stream().collect(Collectors.toMap(s -> index.getAndIncrement(), v -> v)),
.collect(Collectors.toMap(s -> index.getAndIncrement(), v -> v)), timeout, strict, factory
timeout,
strict
).thenApplySync(v -> ).thenApplySync(v ->
v.entrySet().stream() v.entrySet().stream()
.sorted(Map.Entry.comparingByKey()) .sorted(Map.Entry.comparingByKey())
@@ -114,24 +96,12 @@ public class Promises {
); );
} }
public static <V> @NotNull Promise<List<V>> combine(@NotNull List<Promise<V>> promises, long timeout, boolean strict) {
return combine(promises, timeout, strict, obtainFactory(promises));
}
public static <V> @NotNull Promise<List<V>> combine(@NotNull List<Promise<V>> promises, long timeout, PromiseFactory factory) { public static <V> @NotNull Promise<List<V>> combine(@NotNull List<Promise<V>> promises, long timeout, PromiseFactory factory) {
return combine(promises, timeout, true, factory); return combine(promises, timeout, true, factory);
} }
public static <V> @NotNull Promise<List<V>> combine(@NotNull List<Promise<V>> promises, long timeout) {
return combine(promises, timeout, obtainFactory(promises));
}
public static <V> @NotNull Promise<List<V>> combine(@NotNull List<Promise<V>> promises, PromiseFactory factory) { public static <V> @NotNull Promise<List<V>> combine(@NotNull List<Promise<V>> promises, PromiseFactory factory) {
return combine(promises, 1500L, true); return combine(promises, 1500L, true, factory);
}
public static <V> @NotNull Promise<List<V>> combine(@NotNull List<Promise<V>> promises) {
return combine(promises, obtainFactory(promises));
} }
public static @NotNull Promise<Void> all(@NotNull List<Promise<?>> promises, PromiseFactory factory) { public static @NotNull Promise<Void> all(@NotNull List<Promise<?>> promises, PromiseFactory factory) {
@@ -149,17 +119,6 @@ public class Promises {
return promise; return promise;
} }
public static @NotNull Promise<Void> all(@NotNull List<Promise<?>> promises) {
PromiseFactory factory;
if (promises.isEmpty()) {
factory = UnpooledPromiseFactory.INSTANCE;
} else {
factory = promises.get(0).getFactory();
}
return all(promises, factory);
}
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Collection<K> keys, @NotNull ExceptionalFunction<K, V> mapper, long timeout, boolean strict, PromiseFactory factory) { public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Collection<K> keys, @NotNull ExceptionalFunction<K, V> mapper, long timeout, boolean strict, PromiseFactory factory) {
Map<K, Promise<V>> promises = new HashMap<>(); Map<K, Promise<V>> promises = new HashMap<>();
for (K key : keys) { for (K key : keys) {
@@ -167,29 +126,17 @@ public class Promises {
promises.put(key, promise); promises.put(key, promise);
} }
return combine(promises, timeout, strict); return combine(promises, timeout, strict, factory);
}
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Collection<K> keys, @NotNull ExceptionalFunction<K, V> mapper, long timeout, boolean strict) {
return combine(keys, mapper, timeout, strict, UnpooledPromiseFactory.INSTANCE);
} }
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Collection<K> keys, @NotNull ExceptionalFunction<K, V> mapper, long timeout, PromiseFactory factory) { public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Collection<K> keys, @NotNull ExceptionalFunction<K, V> mapper, long timeout, PromiseFactory factory) {
return combine(keys, mapper, timeout, true, factory); return combine(keys, mapper, timeout, true, factory);
} }
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Collection<K> keys, @NotNull ExceptionalFunction<K, V> mapper, long timeout) {
return combine(keys, mapper, timeout, UnpooledPromiseFactory.INSTANCE);
}
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Collection<K> keys, @NotNull ExceptionalFunction<K, V> mapper, PromiseFactory factory) { public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Collection<K> keys, @NotNull ExceptionalFunction<K, V> mapper, PromiseFactory factory) {
return combine(keys, mapper, 1500L, true, factory); return combine(keys, mapper, 1500L, true, factory);
} }
public static <K, V> @NotNull Promise<Map<K, V>> combine(@NotNull Collection<K> keys, @NotNull ExceptionalFunction<K, V> mapper) {
return combine(keys, mapper, UnpooledPromiseFactory.INSTANCE);
}
public static @NotNull Promise<Void> erase(@NotNull Promise<?> p, PromiseFactory factory) { public static @NotNull Promise<Void> erase(@NotNull Promise<?> p, PromiseFactory factory) {
Promise<Void> promise = factory.unresolved(); Promise<Void> promise = factory.unresolved();
p.addListener(ctx -> { p.addListener(ctx -> {
@@ -221,19 +168,4 @@ public class Promises {
return promise; return promise;
} }
public static <T> @NotNull Promise<T> wrap(@NotNull CompletableFuture<T> future) {
return wrap(future, UnpooledPromiseFactory.INSTANCE);
}
public static <T> PromiseFactory obtainFactory(Collection<Promise<T>> promises) {
PromiseFactory factory;
if (promises.isEmpty()) {
factory = UnpooledPromiseFactory.INSTANCE;
} else {
factory = promises.stream().findFirst().get().getFactory();
}
return factory;
}
} }

View File

@@ -0,0 +1,24 @@
package dev.tommyjs.futur.promise;
import org.slf4j.Logger;
import java.util.concurrent.ScheduledExecutorService;
public class StaticPromise<T> extends AbstractPromise<T> {
@Override
protected ScheduledExecutorService getExecutor() {
return StaticPromiseFactory.EXECUTOR;
}
@Override
protected Logger getLogger() {
return StaticPromiseFactory.LOGGER;
}
@Override
public PromiseFactory getFactory() {
return StaticPromiseFactory.INSTANCE;
}
}

View File

@@ -0,0 +1,44 @@
package dev.tommyjs.futur.promise;
import org.jetbrains.annotations.NotNull;
import org.slf4j.Logger;
import org.slf4j.LoggerFactory;
import java.util.concurrent.Executors;
import java.util.concurrent.ScheduledExecutorService;
public class StaticPromiseFactory implements PromiseFactory {
public static final @NotNull PromiseFactory INSTANCE;
public static final @NotNull ScheduledExecutorService EXECUTOR;
public static final @NotNull Logger LOGGER;
static {
INSTANCE = new StaticPromiseFactory();
EXECUTOR = Executors.newSingleThreadScheduledExecutor();
LOGGER = LoggerFactory.getLogger(StaticPromiseFactory.class);
}
private StaticPromiseFactory() {
}
@Override
public @NotNull <T> Promise<T> resolve(T value) {
AbstractPromise<T> promise = new StaticPromise<>();
promise.setCompletion(new PromiseCompletion<>(value));
return promise;
}
@Override
public @NotNull <T> Promise<T> unresolved() {
return new StaticPromise<>();
}
@Override
public @NotNull <T> Promise<T> error(Throwable error) {
AbstractPromise<T> promise = new StaticPromise<>();
promise.completeExceptionally(error);
return promise;
}
}

View File

@@ -1,23 +0,0 @@
package dev.tommyjs.futur.promise;
import dev.tommyjs.futur.scheduler.Scheduler;
import org.slf4j.Logger;
public class UnpooledPromise<T> extends AbstractPromise<T> {
@Override
protected Scheduler getScheduler() {
return UnpooledPromiseFactory.SCHEDULER;
}
@Override
protected Logger getLogger() {
return UnpooledPromiseFactory.LOGGER;
}
@Override
public PromiseFactory getFactory() {
return UnpooledPromiseFactory.INSTANCE;
}
}

View File

@@ -1,50 +0,0 @@
package dev.tommyjs.futur.promise;
import dev.tommyjs.futur.scheduler.Scheduler;
import dev.tommyjs.futur.scheduler.SingleExecutorScheduler;
import org.jetbrains.annotations.NotNull;
import org.slf4j.Logger;
import org.slf4j.LoggerFactory;
import java.util.concurrent.Executors;
public class UnpooledPromiseFactory implements PromiseFactory {
public static final @NotNull PromiseFactory INSTANCE;
public static final @NotNull Scheduler SCHEDULER;
public static final @NotNull Logger LOGGER;
static {
INSTANCE = new UnpooledPromiseFactory();
SCHEDULER = new SingleExecutorScheduler(Executors.newSingleThreadScheduledExecutor());
LOGGER = LoggerFactory.getLogger(UnpooledPromiseFactory.class);
}
private UnpooledPromiseFactory() {
}
@Override
public @NotNull <T> Promise<T> resolve(T value) {
AbstractPromise<T> promise = new UnpooledPromise<>();
promise.setCompletion(new PromiseCompletion<>(value));
return promise;
}
@Override
public @NotNull <T> Promise<T> unresolved() {
return new UnpooledPromise<>();
}
@Override
public @NotNull <T> Promise<T> error(Throwable error) {
AbstractPromise<T> promise = new UnpooledPromise<>();
promise.completeExceptionally(error);
return promise;
}
@Override
public @NotNull Promise<Void> start() {
return resolve(null);
}
}

View File

@@ -1,37 +0,0 @@
package dev.tommyjs.futur.scheduler;
import dev.tommyjs.futur.trace.ExecutorTrace;
import org.jetbrains.annotations.NotNull;
import org.slf4j.Logger;
import org.slf4j.LoggerFactory;
import java.util.concurrent.TimeUnit;
public interface Scheduler {
Logger LOGGER = LoggerFactory.getLogger(Scheduler.class);
void runSync(@NotNull Runnable task, @NotNull ExecutorTrace trace);
void runDelayedSync(@NotNull Runnable task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace);
void runRepeatingSync(@NotNull Runnable task, long interval, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace);
void runAsync(@NotNull Runnable task, @NotNull ExecutorTrace trace);
void runDelayedAsync(@NotNull Runnable task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace);
void runRepeatingAsync(@NotNull Runnable task, long interval, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace);
static @NotNull Runnable wrapExceptions(@NotNull Runnable task, @NotNull ExecutorTrace trace) {
return () -> {
try {
task.run();
} catch (Exception e) {
LOGGER.error("Exception in scheduled task: {}", e.getClass().getName());
LOGGER.error(trace.toString());
}
};
}
}

View File

@@ -1,47 +0,0 @@
package dev.tommyjs.futur.scheduler;
import dev.tommyjs.futur.trace.ExecutorTrace;
import org.jetbrains.annotations.NotNull;
import java.util.concurrent.ScheduledExecutorService;
import java.util.concurrent.TimeUnit;
public class SingleExecutorScheduler implements Scheduler {
private final ScheduledExecutorService service;
public SingleExecutorScheduler(ScheduledExecutorService service) {
this.service = service;
}
@Override
public void runSync(@NotNull Runnable task, @NotNull ExecutorTrace trace) {
service.submit(Scheduler.wrapExceptions(task, trace));
}
@Override
public void runDelayedSync(@NotNull Runnable task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
service.schedule(Scheduler.wrapExceptions(task, trace), delay, unit);
}
@Override
public void runRepeatingSync(@NotNull Runnable task, long interval, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
service.scheduleAtFixedRate(Scheduler.wrapExceptions(task, trace), 0L, interval, unit);
}
@Override
public void runAsync(@NotNull Runnable task, @NotNull ExecutorTrace trace) {
runSync(task, trace);
}
@Override
public void runDelayedAsync(@NotNull Runnable task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
runDelayedSync(task, delay, unit, trace);
}
@Override
public void runRepeatingAsync(@NotNull Runnable task, long interval, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
runRepeatingSync(task, interval, unit, trace);
}
}

View File

@@ -1,31 +0,0 @@
package dev.tommyjs.futur.trace;
import org.jetbrains.annotations.NotNull;
import java.util.Arrays;
import java.util.stream.Collectors;
public class ExecutorTrace {
private final @NotNull Class<?> clazz;
private final @NotNull StackTraceElement[] trace;
public ExecutorTrace(@NotNull Class<?> clazz, @NotNull StackTraceElement[] trace) {
this.clazz = clazz;
this.trace = trace;
}
public @NotNull Class<?> getClazz() {
return clazz;
}
public @NotNull StackTraceElement[] getTrace() {
return trace;
}
@Override
public String toString() {
return Arrays.stream(trace).map(StackTraceElement::toString).collect(Collectors.joining("\n"));
}
}

View File

@@ -1,11 +0,0 @@
package dev.tommyjs.futur.trace;
import org.jetbrains.annotations.NotNull;
public class TraceUtil {
public static ExecutorTrace getTrace(@NotNull Object function) {
return new ExecutorTrace(function.getClass(), Thread.currentThread().getStackTrace());
}
}

View File

@@ -6,7 +6,7 @@ plugins {
} }
group = "dev.tommyjs" group = "dev.tommyjs"
version = "1.2.0" version = "2.0.0"
repositories { repositories {
mavenCentral() mavenCentral()

View File

@@ -2,7 +2,7 @@ package dev.tommyjs.futur.reactivestreams;
import dev.tommyjs.futur.promise.Promise; import dev.tommyjs.futur.promise.Promise;
import dev.tommyjs.futur.promise.PromiseFactory; import dev.tommyjs.futur.promise.PromiseFactory;
import dev.tommyjs.futur.promise.UnpooledPromiseFactory; import dev.tommyjs.futur.promise.StaticPromiseFactory;
import org.jetbrains.annotations.NotNull; import org.jetbrains.annotations.NotNull;
import org.reactivestreams.Publisher; import org.reactivestreams.Publisher;
@@ -14,8 +14,4 @@ public class ReactiveTransformer {
return subscriber.getPromise(); return subscriber.getPromise();
} }
public static <T> @NotNull Promise<T> wrapPublisher(@NotNull Publisher<T> publisher) {
return wrapPublisher(publisher, UnpooledPromiseFactory.INSTANCE);
}
} }

View File

@@ -2,7 +2,7 @@ package dev.tommyjs.futur.reactivestreams;
import dev.tommyjs.futur.promise.Promise; import dev.tommyjs.futur.promise.Promise;
import dev.tommyjs.futur.promise.PromiseFactory; import dev.tommyjs.futur.promise.PromiseFactory;
import dev.tommyjs.futur.promise.UnpooledPromiseFactory; import dev.tommyjs.futur.promise.StaticPromiseFactory;
import org.reactivestreams.Subscriber; import org.reactivestreams.Subscriber;
import org.reactivestreams.Subscription; import org.reactivestreams.Subscription;
@@ -47,7 +47,7 @@ public class SingleAccumulatorSubscriber<T> implements Subscriber<T> {
} }
public static <T> SingleAccumulatorSubscriber<T> create() { public static <T> SingleAccumulatorSubscriber<T> create() {
return create(UnpooledPromiseFactory.INSTANCE); return create(StaticPromiseFactory.INSTANCE);
} }
} }

View File

@@ -4,7 +4,7 @@ plugins {
} }
group = "dev.tommyjs" group = "dev.tommyjs"
version = "1.2.0" version = "2.0.0"
repositories { repositories {
mavenCentral() mavenCentral()

View File

@@ -2,7 +2,7 @@ package dev.tommyjs.futur.reactor;
import dev.tommyjs.futur.promise.Promise; import dev.tommyjs.futur.promise.Promise;
import dev.tommyjs.futur.promise.PromiseFactory; import dev.tommyjs.futur.promise.PromiseFactory;
import dev.tommyjs.futur.promise.UnpooledPromiseFactory; import dev.tommyjs.futur.promise.StaticPromiseFactory;
import org.jetbrains.annotations.NotNull; import org.jetbrains.annotations.NotNull;
import reactor.core.publisher.Flux; import reactor.core.publisher.Flux;
import reactor.core.publisher.Mono; import reactor.core.publisher.Mono;
@@ -19,10 +19,6 @@ public class ReactorTransformer {
return promise; return promise;
} }
public static <T> @NotNull Promise<T> wrapMono(@NotNull Mono<T> mono) {
return wrapMono(mono, UnpooledPromiseFactory.INSTANCE);
}
public static <T> @NotNull Promise<@NotNull List<T>> wrapFlux(@NotNull Flux<T> flux, PromiseFactory factory) { public static <T> @NotNull Promise<@NotNull List<T>> wrapFlux(@NotNull Flux<T> flux, PromiseFactory factory) {
Promise<List<T>> promise = factory.unresolved(); Promise<List<T>> promise = factory.unresolved();
AtomicReference<List<T>> out = new AtomicReference<>(new ArrayList<>()); AtomicReference<List<T>> out = new AtomicReference<>(new ArrayList<>());
@@ -34,8 +30,4 @@ public class ReactorTransformer {
return promise; return promise;
} }
public static <T> @NotNull Promise<@NotNull List<T>> wrapFlux(@NotNull Flux<T> flux) {
return wrapFlux(flux, UnpooledPromiseFactory.INSTANCE);
}
} }

View File

@@ -1,42 +0,0 @@
.gradle
build/
!gradle/wrapper/gradle-wrapper.jar
!**/src/main/**/build/
!**/src/test/**/build/
### IntelliJ IDEA ###
.idea/modules.xml
.idea/jarRepositories.xml
.idea/compiler.xml
.idea/libraries/
*.iws
*.iml
*.ipr
out/
!**/src/main/**/out/
!**/src/test/**/out/
### Eclipse ###
.apt_generated
.classpath
.factorypath
.project
.settings
.springBeans
.sts4-cache
bin/
!**/src/main/**/bin/
!**/src/test/**/bin/
### NetBeans ###
/nbproject/private/
/nbbuild/
/dist/
/nbdist/
/.nb-gradle/
### VS Code ###
.vscode/
### Mac OS ###
.DS_Store

View File

@@ -1,35 +0,0 @@
import com.github.jengelman.gradle.plugins.shadow.tasks.ShadowJar
plugins {
id("java")
id("com.github.johnrengelman.shadow") version "7.1.2"
}
group = "dev.tommyjs"
version = "1.2.0"
repositories {
mavenCentral()
}
dependencies {
implementation("org.jetbrains:annotations:24.1.0")
implementation("org.slf4j:slf4j-api:2.0.9")
compileOnly(project(mapOf("path" to ":futur-api")))
testImplementation(platform("org.junit:junit-bom:5.9.1"))
testImplementation("org.junit.jupiter:junit-jupiter")
}
tasks {
build {
dependsOn(shadowJar)
}
withType<ShadowJar> {
exclude("META-INF/**")
}
}
tasks.test {
useJUnitPlatform()
}

View File

@@ -1,61 +0,0 @@
package dev.tommyjs.futur.standalone;
import dev.tommyjs.futur.scheduler.Scheduler;
import dev.tommyjs.futur.trace.ExecutorTrace;
import org.jetbrains.annotations.NotNull;
import java.util.concurrent.Executors;
import java.util.concurrent.ScheduledExecutorService;
import java.util.concurrent.TimeUnit;
public class ExclusiveThreadPoolScheduler implements Scheduler {
private final ScheduledExecutorService executor;
protected ExclusiveThreadPoolScheduler(ScheduledExecutorService executor) {
this.executor = executor;
}
@Override
public void runSync(@NotNull Runnable task, @NotNull ExecutorTrace trace) {
throw new UnsupportedOperationException("Sync task invoked on asynchronous environment");
}
@Override
public void runDelayedSync(@NotNull Runnable task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
throw new UnsupportedOperationException("Sync task invoked on asynchronous environment");
}
@Override
public void runRepeatingSync(@NotNull Runnable task, long interval, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
throw new UnsupportedOperationException("Sync task invoked on asynchronous environment");
}
@Override
public void runAsync(@NotNull Runnable task, @NotNull ExecutorTrace trace) {
executor.submit(Scheduler.wrapExceptions(task, trace));
}
@Override
public void runDelayedAsync(@NotNull Runnable task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
executor.schedule(Scheduler.wrapExceptions(task, trace), delay, unit);
}
@Override
public void runRepeatingAsync(@NotNull Runnable task, long interval, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
executor.scheduleAtFixedRate(Scheduler.wrapExceptions(task, trace), 0L, interval, unit);
}
public @NotNull ScheduledExecutorService getExecutor() {
return executor;
}
public static ExclusiveThreadPoolScheduler create(ScheduledExecutorService executor) {
return new ExclusiveThreadPoolScheduler(executor);
}
public static ExclusiveThreadPoolScheduler create(int nThreads) {
return create(Executors.newScheduledThreadPool(nThreads));
}
}

View File

@@ -1,63 +0,0 @@
package dev.tommyjs.futur.standalone;
import dev.tommyjs.futur.scheduler.Scheduler;
import dev.tommyjs.futur.trace.ExecutorTrace;
import org.jetbrains.annotations.NotNull;
import java.util.concurrent.Executors;
import java.util.concurrent.ScheduledExecutorService;
import java.util.concurrent.TimeUnit;
public class ThreadPoolScheduler implements Scheduler {
private final ScheduledExecutorService syncExecutor;
private final ScheduledExecutorService asyncExecutor;
protected ThreadPoolScheduler(ScheduledExecutorService syncExecutor, ScheduledExecutorService asyncExecutor) {
this.syncExecutor = syncExecutor;
this.asyncExecutor = asyncExecutor;
}
@Override
public void runSync(@NotNull Runnable task, @NotNull ExecutorTrace trace) {
syncExecutor.submit(Scheduler.wrapExceptions(task, trace));
}
@Override
public void runDelayedSync(@NotNull Runnable task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
syncExecutor.schedule(Scheduler.wrapExceptions(task, trace), delay, unit);
}
@Override
public void runRepeatingSync(@NotNull Runnable task, long interval, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
syncExecutor.scheduleAtFixedRate(Scheduler.wrapExceptions(task, trace), 0L, interval, unit);
}
@Override
public void runAsync(@NotNull Runnable task, @NotNull ExecutorTrace trace) {
asyncExecutor.submit(Scheduler.wrapExceptions(task, trace));
}
@Override
public void runDelayedAsync(@NotNull Runnable task, long delay, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
asyncExecutor.schedule(Scheduler.wrapExceptions(task, trace), delay, unit);
}
@Override
public void runRepeatingAsync(@NotNull Runnable task, long interval, @NotNull TimeUnit unit, @NotNull ExecutorTrace trace) {
asyncExecutor.scheduleAtFixedRate(Scheduler.wrapExceptions(task, trace), 0L, interval, unit);
}
public @NotNull ScheduledExecutorService getSyncExecutor() {
return syncExecutor;
}
public @NotNull ScheduledExecutorService getAsyncExecutor() {
return asyncExecutor;
}
public static ThreadPoolScheduler create(int nThreads) {
return new ThreadPoolScheduler(Executors.newSingleThreadScheduledExecutor(), Executors.newScheduledThreadPool(nThreads));
}
}