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okhttp/src/main/kotlin/okhttp3/internal/ws/RealWebSocket.kt
private val key: String /** Non-null for client web sockets. These can be canceled. */ internal var call: Call? = null /** This task processes the outgoing queues. Call [runWriter] to after enqueueing. */ private var writerTask: Task? = null /** Null until this web socket is connected. Only accessed by the reader thread. */ private var reader: WebSocketReader? = null
Registered: Fri Nov 01 11:42:11 UTC 2024 - Last Modified: Mon Apr 01 14:21:25 UTC 2024 - 22.1K bytes - Viewed (0) -
android/guava/src/com/google/common/util/concurrent/RateLimiter.java
* <p>As an example, imagine that we have a list of tasks to execute, but we don't want to submit * more than 2 per second: * * <pre>{@code * final RateLimiter rateLimiter = RateLimiter.create(2.0); // rate is "2 permits per second" * void submitTasks(List<Runnable> tasks, Executor executor) { * for (Runnable task : tasks) { * rateLimiter.acquire(); // may wait * executor.execute(task); * } * } * }</pre> *
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Sat Oct 19 00:51:36 UTC 2024 - 21.9K bytes - Viewed (0) -
build-logic/build-update-utils/src/main/kotlin/gradlebuild/buildutils/tasks/AbstractCheckOrUpdateContributorsInReleaseNotes.kt
* limitations under the License. */ package gradlebuild.buildutils.tasks import com.google.gson.Gson import org.gradle.api.DefaultTask import org.gradle.api.file.RegularFileProperty import org.gradle.api.provider.Property import org.gradle.api.tasks.Internal import org.gradle.api.tasks.options.Option import org.gradle.work.DisableCachingByDefault import java.net.URI
Registered: Wed Nov 06 11:36:14 UTC 2024 - Last Modified: Fri Jun 28 08:29:28 UTC 2024 - 5.6K bytes - Viewed (0) -
android/guava/src/com/google/common/util/concurrent/SettableFuture.java
* other {@code Future}, be {@linkplain #cancel cancelled}. * * <p>{@code SettableFuture} is the recommended {@code ListenableFuture} implementation when your * task cannot be implemented with {@link ListeningExecutorService}, the various {@link Futures} * utility methods, or {@link ListenableFutureTask}. Those APIs have less opportunity for developer
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Fri Oct 01 17:18:04 UTC 2021 - 2.4K bytes - Viewed (0) -
build-logic-commons/basics/src/main/kotlin/gradlebuild/basics/tasks/PackageListGenerator.kt
*/ package gradlebuild.basics.tasks import org.gradle.api.DefaultTask import org.gradle.api.file.ConfigurableFileCollection import org.gradle.api.file.RegularFileProperty import org.gradle.api.provider.ListProperty import org.gradle.api.tasks.CacheableTask import org.gradle.api.tasks.CompileClasspath import org.gradle.api.tasks.Input import org.gradle.api.tasks.OutputFile import org.gradle.api.tasks.TaskAction
Registered: Wed Nov 06 11:36:14 UTC 2024 - Last Modified: Fri Oct 11 19:14:16 UTC 2024 - 7.1K bytes - Viewed (0) -
.teamcity/src/main/kotlin/util/AdHocPerformanceScenario.kt
text( "profiler", defaultProfiler, display = ParameterDisplay.PROMPT, allowEmpty = false, description = "Command line option for the performance test task to enable profiling. For example `async-profiler`, `async-profiler-heap`, `async-profiler-all` or `jfr`. Use `none` for benchmarking only." ) } object AdHocPerformanceScenarioLinux : AdHocPerformanceScenario(Os.LINUX)
Registered: Wed Nov 06 11:36:14 UTC 2024 - Last Modified: Thu Oct 03 06:45:18 UTC 2024 - 4.9K bytes - Viewed (0) -
guava/src/com/google/common/util/concurrent/RateLimiter.java
* <p>As an example, imagine that we have a list of tasks to execute, but we don't want to submit * more than 2 per second: * * <pre>{@code * final RateLimiter rateLimiter = RateLimiter.create(2.0); // rate is "2 permits per second" * void submitTasks(List<Runnable> tasks, Executor executor) { * for (Runnable task : tasks) { * rateLimiter.acquire(); // may wait * executor.execute(task); * } * } * }</pre> *
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Sat Oct 19 00:51:36 UTC 2024 - 21.6K bytes - Viewed (0) -
.github/bot_config.yml
* It has an added advantage since you can you easily switch to different hardware accelerators (cpu, gpu, tpu) as per the task. * All you need is a good internet connection and you are all set. * Try to build TF from sources by changing CPU optimization flags. *Please let us know if this helps.* windows_comment: >
Registered: Tue Nov 05 12:39:12 UTC 2024 - Last Modified: Mon Jul 15 05:00:54 UTC 2024 - 4K bytes - Viewed (0) -
tensorflow/c/eager/c_api_experimental.h
// custom devices will fail. // // `device_name` must not name an existing physical or custom device. It must // follow the format: // // /job:<name>/replica:<replica>/task:<task>/device:<type>:<device_num> // // If the device is successfully registered, `status` is set to TF_OK. Otherwise // the device is not usable. In case of a bad status, `device.delete_device` is
Registered: Tue Nov 05 12:39:12 UTC 2024 - Last Modified: Wed Feb 21 22:37:46 UTC 2024 - 39.5K bytes - Viewed (0) -
guava/src/com/google/common/util/concurrent/ExecutionError.java
import javax.annotation.CheckForNull; /** * {@link Error} variant of {@link java.util.concurrent.ExecutionException}. As with {@code * ExecutionException}, the error's {@linkplain #getCause() cause} comes from a failed task, * possibly run in another thread. That cause should itself be an {@code Error}; if not, use {@code * ExecutionException} or {@link UncheckedExecutionException}. This allows the client code to
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Thu Mar 07 17:52:19 UTC 2024 - 3.8K bytes - Viewed (0)