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Janusz Sobczak 4fc1583b94 Migrate to absl::AnyInvocable
PiperOrigin-RevId: 501392167
2023-01-11 15:19:33 -08:00

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// Copyright 2020 Google LLC
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// https://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#import <XCTest/XCTest.h>
#include <utility>
#include "absl/time/time.h"
#include "internal/platform/implementation/cancelable.h"
#include "internal/platform/implementation/executor.h"
#include "internal/platform/implementation/platform.h"
#include "internal/platform/implementation/scheduled_executor.h"
#include "internal/platform/runnable.h"
using ::nearby::Runnable;
using ::nearby::api::ImplementationPlatform;
using ::nearby::api::ScheduledExecutor;
@interface GNCScheduledExecutorTest : XCTestCase
@property(atomic) int counter;
@end
@implementation GNCScheduledExecutorTest
// Creates a ScheduledExecutor.
- (std::unique_ptr<ScheduledExecutor>)executor {
std::unique_ptr<ScheduledExecutor> executor = ImplementationPlatform::CreateScheduledExecutor();
XCTAssert(executor != nullptr);
return executor;
}
// Tests that the executor schedules operation at the specified time.
- (void)testScheduling {
std::unique_ptr<ScheduledExecutor> executor([self executor]);
XCTestExpectation *expectation = [self expectationWithDescription:@"finished"];
void (^checkCounter)(int, NSTimeInterval, dispatch_block_t) =
^(int expectedCount, NSTimeInterval delay, dispatch_block_t finalBlock) {
dispatch_after(dispatch_time(DISPATCH_TIME_NOW, (int64_t)(delay * NSEC_PER_SEC)),
dispatch_get_main_queue(), ^{
XCTAssertEqual(self.counter, expectedCount);
finalBlock();
});
};
// Schedule two runnables that increment the counter, at 0.4 and 0.8 seconds.
executor->Schedule([self]() { self.counter++; }, absl::Seconds(0.4));
executor->Schedule([self]() { self.counter++; }, absl::Seconds(0.8));
// Check that the counter contains the expected values at 0.2, 0.6, and 1.0 seconds.
checkCounter(0, 0.2,
^{
});
checkCounter(1, 0.6,
^{
});
checkCounter(2, 1.0, ^{
[expectation fulfill];
});
[self waitForExpectationsWithTimeout:1.2 handler:nil];
}
// Tests that fails to schedule when the executor is shut down.
- (void)testFailtoScheduleAfterShutdown {
std::unique_ptr<ScheduledExecutor> executor([self executor]);
executor->Shutdown();
dispatch_queue_t queue = dispatch_get_global_queue(DISPATCH_TARGET_QUEUE_DEFAULT, 0);
XCTestExpectation *expectation = [self expectationWithDescription:@"finished"];
const NSTimeInterval delay = 0.1;
executor->Schedule([self]() { self.counter++; }, absl::Milliseconds(delay));
dispatch_after(dispatch_time(DISPATCH_TIME_NOW, (int64_t)(delay * 2 * NSEC_PER_SEC)), queue, ^{
XCTAssertEqual(self.counter, 0);
[expectation fulfill];
});
[self waitForExpectationsWithTimeout:delay * 5 handler:nil];
}
// Tests that fails to cancel when the executor is shut down.
- (void)testFailToCancelAfterShutdown {
std::unique_ptr<ScheduledExecutor> executor([self executor]);
executor->Shutdown();
auto cancelable = executor->Schedule([self]() { self.counter++; }, absl::Seconds(0.1));
XCTAssert(cancelable.get() == nullptr);
}
// Tests that shutting down an existing task fails to complete.
- (void)testShutdownToFailExistingTask {
std::unique_ptr<ScheduledExecutor> executor([self executor]);
dispatch_queue_t queue = dispatch_get_global_queue(DISPATCH_TARGET_QUEUE_DEFAULT, 0);
XCTestExpectation *expectation = [self expectationWithDescription:@"finished"];
const NSTimeInterval delay = 0.1;
executor->Schedule([self]() { self.counter++; }, absl::Milliseconds(delay));
executor->Shutdown();
dispatch_after(dispatch_time(DISPATCH_TIME_NOW, (int64_t)(delay * 2 * NSEC_PER_SEC)), queue, ^{
XCTAssertEqual(self.counter, 0);
[expectation fulfill];
});
[self waitForExpectationsWithTimeout:delay * 5 handler:nil];
}
// Tests that a canceled runnable doesn't run.
- (void)testCancelable {
std::unique_ptr<ScheduledExecutor> executor([self executor]);
// This runnable should run but not increment the counter because it sleeps for longer than the
// cancel below.
const NSTimeInterval delay = 0.1;
auto cancelable = executor->Schedule([self]() { self.counter++; }, absl::Seconds(delay));
XCTAssert(cancelable.get() != nullptr);
// Cancel the runnable.
cancelable->Cancel();
// Wait for the time interval to pass and verify that it didn't run.
[NSThread sleepForTimeInterval:delay * 1.1];
XCTAssertEqual(self.counter, 0);
}
@end