功能和 API 概览

Android 14 面向开发者引入了强大的功能和 API。以下帮助 您将了解应用的功能并开始使用相关 API。

有关已添加、修改和移除的 API 的详细列表,请参阅 API 差异 报告。有关添加的 API 的详细信息,请访问 Android API 参考。 对于 Android 14,请查找 API 级别 34 中添加的 API。如需了解平台变更可能会在哪些方面影响您的应用,请务必查看会影响以 Android 14 为目标平台的应用所有应用的 Android 14 行为变更。

国际化

各应用语言偏好设定

Android 14 扩展了 Android 13(API 级别 33)中引入的按应用设定语言功能,并包含以下额外功能:

  • 自动生成应用的 localeConfig:从 Android Studio Giraffe Canary 7 和 AGP 8.1.0-alpha07 开始,您可以将应用配置为自动支持各应用语言偏好设定。Android Gradle 插件会根据您的项目资源生成 LocaleConfig 文件,并在最终清单文件中添加对该文件的引用,这样您就不再需要手动创建或更新该文件。AGP 使用应用模块的 res 文件夹中的资源以及任何库模块依赖项来确定要在 LocaleConfig 文件中添加的语言区域。

  • 动态更新应用的 localeConfig:使用 LocaleManager 方法中的 setOverrideLocaleConfig()getOverrideLocaleConfig() 可以在设备的系统设置中动态更新应用的受支持语言列表。有了这种灵活性,您可以按区域自定义支持的语言列表、运行 A/B 实验,或者如果您的应用通过服务器端推送进行本地化,则可以提供更新后的语言区域列表。

  • 输入法 (IME) 的应用语言可见性:IME 可以利用 getApplicationLocales() 方法查看当前应用的语言,并将 IME 语言与该语言进行匹配。

Grammatical Inflection API

有 30 亿人在使用区分性别的语言,此类语言的语法类别(例如名词、动词、形容词和介词)会根据您交谈所涉及的人或物的性别而变化。传统上,许多区分性别的语言使用阳性语法性别作为默认或通用性别。

以错误的语法性别来称呼用户,例如以阳性语法性别来称呼女性,可能会对她们的表现和态度产生负面影响。相比之下,界面语言如果能正确反映用户的语法性别,就可以提高用户互动度,并提供更个性化、更自然的用户体验。

To help you build a user-centric UI for gendered languages, Android 14 introduces the Grammatical Inflection API, which lets you add support for grammatical gender without refactoring your app.

地区偏好设置

Regional preferences enable users to personalize temperature units, the first day of the week, and numbering systems. A European living in the United States might prefer temperature units to be in Celsius rather than Fahrenheit and for apps to treat Monday as the beginning of the week instead of the US default of Sunday.

New Android Settings menus for these preferences provide users with a discoverable and centralized location to change app preferences. These preferences also persist through backup and restore. Several APIs and intents—such as getTemperatureUnit and getFirstDayOfWeek— grant your app read access to user preferences, so your app can adjust how it displays information. You can also register a BroadcastReceiver on ACTION_LOCALE_CHANGED to handle locale configuration changes when regional preferences change.

To find these settings, open the Settings app and navigate to System > Languages & input > Regional preferences.

Regional preferences screen in Android system settings.
Temperature options for regional preferences in Android system settings.

无障碍

非线性字体放大至 200%

Starting in Android 14, the system supports font scaling up to 200%, providing low-vision users with additional accessibility options that align with Web Content Accessibility Guidelines (WCAG).

To prevent large text elements on screen from scaling too large, the system applies a nonlinear scaling curve. This scaling strategy means that large text doesn't scale at the same rate as smaller text. Nonlinear font scaling helps preserve the proportional hierarchy between elements of different sizes while mitigating issues with linear text scaling at high degrees (such as text being cut off or text that becomes harder to read due to an extremely large display sizes).

Test your app with nonlinear font scaling

Enable the maximum font size in a device's accessibility settings to test your app.

If you already use scaled pixels (sp) units to define text sizing, then these additional options and scaling improvements are applied automatically to the text in your app. However, you should still perform UI testing with the maximum font size enabled (200%) to ensure that your app applies the font sizes correctly and can accommodate larger font sizes without impacting usability.

To enable 200% font size, follow these steps:

  1. Open the Settings app and navigate to Accessibility > Display size and text.
  2. For the Font size option, tap the plus (+) icon until the maximum font size setting is enabled, as shown in the image that accompanies this section.

Use scaled pixel (sp) units for text-sizes

Remember to always specify text sizes in sp units. When your app uses sp units, Android can apply the user's preferred text size and scale it appropriately.

Don't use sp units for padding or define view heights assuming implicit padding: with nonlinear font scaling sp dimensions might not be proportional, so 4sp + 20sp might not equal 24sp.

Convert scaled pixel (sp) units

Use TypedValue.applyDimension() to convert from sp units to pixels, and use TypedValue.deriveDimension() to convert pixels to sp. These methods apply the appropriate nonlinear scaling curve automatically.

Avoid hardcoding equations using Configuration.fontScale or DisplayMetrics.scaledDensity. Because font scaling is nonlinear, the scaledDensity field is no longer accurate. The fontScale field should be used for informational purposes only because fonts are no longer scaled with a single scalar value.

Use sp units for lineHeight

Always define android:lineHeight using sp units instead of dp, so the line height scales along with your text. Otherwise, if your text is sp but your lineHeight is in dp or px, it doesn't scale and looks cramped. TextView automatically corrects the lineHeight so that your intended proportions are preserved, but only if both textSize and lineHeight are defined in sp units.

摄像头和媒体

适用于图片的 Ultra HDR

An illustration of Standard Dynamic Range (SDR) versus High Dynamic Range (HDR) image quality.

Android 14 adds support for High Dynamic Range (HDR) images that retain more of the information from the sensor when taking a photo, which enables vibrant colors and greater contrast. Android uses the Ultra HDR format, which is fully backward compatible with JPEG images, allowing apps to seamlessly interoperate with HDR images, displaying them in Standard Dynamic Range (SDR) as needed.

Rendering these images in the UI in HDR is done automatically by the framework when your app opts in to using HDR UI for its Activity Window, either through a manifest entry or at runtime by calling Window.setColorMode(). You can also capture compressed Ultra HDR still images on supported devices. With more colors recovered from the sensor, editing in post can be more flexible. The Gainmap associated with Ultra HDR images can be used to render them using OpenGL or Vulkan.

相机扩展中的缩放、对焦、预览等功能

Android 14 升级并改进了相机扩展程序,让应用能够处理更长的处理时间,从而支持在受支持的设备上使用计算密集型算法(例如弱光摄影)来改善图片。这些功能可让用户在使用相机扩展功能时获得更出色的体验。这些改进的示例包括:

传感器内缩放

When REQUEST_AVAILABLE_CAPABILITIES_STREAM_USE_CASE in CameraCharacteristics contains SCALER_AVAILABLE_STREAM_USE_CASES_CROPPED_RAW, your app can use advanced sensor capabilities to give a cropped RAW stream the same pixels as the full field of view by using a CaptureRequest with a RAW target that has stream use case set to CameraMetadata.SCALER_AVAILABLE_STREAM_USE_CASES_CROPPED_RAW. By implementing the request override controls, the updated camera gives users zoom control even before other camera controls are ready.

无损 USB 音频

Android 14 gains support for lossless audio formats for audiophile-level experiences over USB wired headsets. You can query a USB device for its preferred mixer attributes, register a listener for changes in preferred mixer attributes, and configure mixer attributes using the AudioMixerAttributes class. This class represents the format, such as channel mask, sample rate, and behavior of the audio mixer. The class allows for audio to be sent directly, without mixing, volume adjustment, or processing effects.

开发者工作效率和工具

Credential Manager

Android 14 adds Credential Manager as a platform API, with additional support back to Android 4.4 (API level 19) devices through a Jetpack Library using Google Play services. Credential Manager aims to make sign-in easier for users with APIs that retrieve and store credentials with user-configured credential providers. Credential Manager supports multiple sign-in methods, including username and password, passkeys, and federated sign-in solutions (such as Sign-in with Google) in a single API.

Passkeys provide many advantages. For example, passkeys are built on industry standards, can work across different operating systems and browser ecosystems, and can be used with both websites and apps.

For more information, see the Credential Manager and passkeys documentation and the blogpost about Credential Manager and passkeys.

健康数据共享

Health Connect is an on-device repository for user health and fitness data. It allows users to share data between their favorite apps, with a single place to control what data they want to share with these apps.

On devices running Android versions prior to Android 14, Health Connect is available to download as an app on the Google Play store. Starting with Android 14, Health Connect is part of the platform and receives updates through Google Play system updates without requiring a separate download. With this, Health Connect can be updated frequently, and your apps can rely on Health Connect being available on devices running Android 14 or higher. Users can access Health Connect from the Settings in their device, with privacy controls integrated into the system settings.

Users can get started using Health Connect without a separate app download on devices running Android 14 or higher.
Users can control which apps have access to their health and fitness data through system settings.

Health Connect includes several new features in Android 14, such as exercise routes, allowing users to share a route of their workout which can be visualized on a map. A route is defined as a list of locations saved within a window of time, and your app can insert routes into exercise sessions, tying them together. To ensure that users have complete control over this sensitive data, users must allow sharing individual routes with other apps.

For more information, see the Health Connection documentation and the blogpost on What's new in Android Health.

OpenJDK 17 更新

Android 14 将继续更新 Android 的核心库,以与最新 OpenJDK LTS 版本中的功能保持一致,包括适合应用和平台开发者的库更新和 Java 17 语言支持。

其中包含以下功能和改进:

  • 将大约 300 个 java.base 类更新为支持 Java 17。
  • 文本块 - 为 Java 编程语言引入了多行字符串字面量。
  • instanceof 模式匹配:可让对象在 instanceof 中被视为具有特定类型,而无需任何额外的变量。
  • 密封类:允许您限制哪些类和接口可以扩展或实现它们。

得益于 Google Play 系统更新 (Project Mainline),6 亿多台设备能够接收包含这些更改的最新 Android 运行时 (ART) 更新。我们致力于为应用提供更加一致、安全的跨设备环境,并为用户提供独立于平台版本的新功能。

Java 和 OpenJDK 是 Oracle 及/或其关联公司的商标或注册商标。

针对应用商店的改进

Android 14 引入了多个 PackageInstaller API,可帮助应用商店改善其用户体验。

下载之前请求批准安装

安装或更新应用可能需要用户批准。例如,当使用 REQUEST_INSTALL_PACKAGES 权限的安装程序尝试安装新应用时。在之前的 Android 版本中,只有在将 APK 写入安装会话并且提交会话后,应用商店才能请求用户批准。

从 Android 14 开始,requestUserPreapproval() 方法可让安装程序在提交安装会话之前请求用户批准。此项改进可让应用商店将任何 APK 的下载操作推迟到用户批准安装之后。此外,用户批准安装后,应用商店可以在后台下载并安装应用,而不会干扰用户。

承担未来更新的责任

借助 setRequestUpdateOwnership() 方法,安装程序可以向系统表明它打算负责将被安装的应用未来的更新。此 capability 可实现更新所有权强制执行,即仅允许更新所有者为应用安装自动更新。更新所有权强制执行有助于确保用户仅收到来自预期应用商店的更新。

任何其他安装程序(包括使用 INSTALL_PACKAGES 权限的安装程序)都必须获得用户的明确批准,才能安装更新。如果用户决定继续从其他来源安装更新,则会失去更新所有权。

在干扰较少的时段更新应用

应用商店通常希望避免更新正在使用的应用,因为这会导致应用正在运行的进程被终止,而这可能会中断用户正在执行的操作。

从 Android 14 开始,InstallConstraints API 让安装程序可以确保其应用更新在适当的时机进行。例如,应用商店可以调用 commitSessionAfterInstallConstraintsAreMet() 方法来确保仅在用户不再与相应应用互动时才进行更新。

无缝安装可选拆分

借助拆分 APK,应用的功能可以通过单独的 APK 文件提供,而不是以单体式 APK 的形式提供。借助拆分 APK,应用商店可以优化不同应用组件的提供。例如,应用商店可能会根据目标设备的属性进行优化。自在 API 级别 22 中引入以来,PackageInstaller API 一直支持拆分。

在 Android 14 中,setDontKillApp() 方法可让安装程序指明在安装新的拆分项时应用的运行进程不应终止。应用商店可以使用此功能,在用户使用应用时无缝安装应用的新功能。

应用元数据软件包

Starting in Android 14, the Android package installer lets you specify app metadata, such as data safety practices, to include on app store pages such as Google Play.

检测用户何时截取设备屏幕截图

为了打造更加标准化的屏幕截图检测体验,Android 14 引入了可保护隐私的屏幕截图检测 API。借助此 API,应用可以按 activity 注册回调。如果用户在该 activity 可见时截取屏幕截图,系统会调用这些回调并通知用户。

用户体验

Sharesheet 自定义操作和经过改进的排名系统

Android 14 更新了系统 Sharesheet,以便为用户提供自定义应用操作和信息更丰富的预览结果。

添加自定义操作

对于 Android 14,您的应用可以向其调用的系统 Sharesheet 添加自定义操作

分享表格中自定义操作的屏幕截图。

提高直接共享目标的排名

Android 14 根据来自应用的更多信号来确定直接共享目标的排名,以便为用户提供更实用的结果。为了提供最实用的排名信号,请遵循提高直接共享目标排名的准则。通讯应用还可以报告出站和入站消息的快捷方式使用情况

共享表单中的“直接分享”行,如 1
所示

支持内置和自定义预测性返回动画

Video: Predictive back animations

Android 13 introduced the predictive back-to-home animation behind a developer option. When used in a supported app with the developer option enabled, swiping back shows an animation indicating that the back gesture exits the app back to the home screen.

Android 14 includes multiple improvements and new guidance for Predictive Back:

With this Android 14 preview release, all features of Predictive Back remain behind a developer option. See the developer guide to migrate your app to predictive back, as well as the developer guide to creating custom in-app transitions.

大屏设备制造商按应用替换项

Per-app overrides enable device manufacturers to change the behavior of apps on large screen devices. For example, the FORCE_RESIZE_APP override instructs the system to resize the app to fit display dimensions (avoiding size compatibility mode) even if resizeableActivity="false" is set in the app manifest.

Overrides are intended to improve the user experience on large screens.

New manifest properties enable you to disable some device manufacturer overrides for your app.

大屏用户按应用替换项

Per-app overrides change the behavior of apps on large screen devices. For example, the OVERRIDE_MIN_ASPECT_RATIO_LARGE device manufacturer override sets the app aspect ratio to 16:9 regardless of the app's configuration.

Android 14 QPR1 enables users to apply per‑app overrides by means of a new settings menu on large screen devices.

分享应用界面

借助应用界面共享功能,用户可以在录制屏幕内容时共享应用窗口,而不是整个设备屏幕。

在应用屏幕共享模式下,状态栏、导航栏、通知和其他系统界面元素会从共享显示屏中排除。系统只会分享所选应用的内容。

应用屏幕共享功能可让用户运行多个应用,但将内容共享限制为单个应用,从而提高工作效率并保护隐私。

Pixel 8 Pro 上 Gboard 中依托 LLM 的智能回复功能

On Pixel 8 Pro devices with the December Feature Drop, developers can try out higher-quality smart replies in Gboard powered by on-device Large Language Models (LLMs) running on Google Tensor.

This feature is available as a limited preview for US English in WhatsApp, Line, and KakaoTalk. It requires using a Pixel 8 Pro device with Gboard as your keyboard.

To try it out, first enable the feature in Settings > Developer Options > AiCore Settings > Enable Aicore Persistent.

Next, open a conversation in a supported app to see LLM-powered Smart Reply in Gboard's suggestion strip in response to incoming messages.

Gboard utilizes on-device LLMs to provide higher-quality smart replies.

图形

路径可查询和插值

Android's Path API is a powerful and flexible mechanism for creating and rendering vector graphics, with the ability to stroke or fill a path, construct a path from line segments or quadratic or cubic curves, perform boolean operations to get even more complex shapes, or all of these simultaneously. One limitation is the ability to find out what is actually in a Path object; the internals of the object are opaque to callers after creation.

To create a Path, you call methods such as moveTo(), lineTo(), and cubicTo() to add path segments. But there has been no way to ask that path what the segments are, so you must retain that information at creation time.

Starting in Android 14, you can query paths to find out what's inside of them. First, you need to get a PathIterator object using the Path.getPathIterator API:

Kotlin

val path = Path().apply {
    moveTo(1.0f, 1.0f)
    lineTo(2.0f, 2.0f)
    close()
}
val pathIterator = path.pathIterator

Java

Path path = new Path();
path.moveTo(1.0F, 1.0F);
path.lineTo(2.0F, 2.0F);
path.close();
PathIterator pathIterator = path.getPathIterator();

Next, you can call PathIterator to iterate through the segments one by one, retrieving all of the necessary data for each segment. This example uses PathIterator.Segment objects, which packages up the data for you:

Kotlin

for (segment in pathIterator) {
    println("segment: ${segment.verb}, ${segment.points}")
}

Java

while (pathIterator.hasNext()) {
    PathIterator.Segment segment = pathIterator.next();
    Log.i(LOG_TAG, "segment: " + segment.getVerb() + ", " + segment.getPoints());
}

PathIterator also has a non-allocating version of next() where you can pass in a buffer to hold the point data.

One of the important use cases of querying Path data is interpolation. For example, you might want to animate (or morph) between two different paths. To further simplify that use case, Android 14 also includes the interpolate() method on Path. Assuming the two paths have the same internal structure, the interpolate() method creates a new Path with that interpolated result. This example returns a path whose shape is halfway (a linear interpolation of .5) between path and otherPath:

Kotlin

val interpolatedResult = Path()
if (path.isInterpolatable(otherPath)) {
    path.interpolate(otherPath, .5f, interpolatedResult)
}

Java

Path interpolatedResult = new Path();
if (path.isInterpolatable(otherPath)) {
    path.interpolate(otherPath, 0.5F, interpolatedResult);
}

The Jetpack graphics-path library enables similar APIs for earlier versions of Android as well.

使用顶点和 fragment 着色器的自定义网格

Android has long supported drawing triangle meshes with custom shading, but the input mesh format has been limited to a few predefined attribute combinations. Android 14 adds support for custom meshes, which can be defined as triangles or triangle strips, and can, optionally, be indexed. These meshes are specified with custom attributes, vertex strides, varying, and vertex and fragment shaders written in AGSL.

The vertex shader defines the varyings, such as position and color, while the fragment shader can optionally define the color for the pixel, typically by using the varyings created by the vertex shader. If color is provided by the fragment shader, it is then blended with the current Paint color using the blend mode selected when drawing the mesh. Uniforms can be passed into the fragment and vertex shaders for additional flexibility.

适用于 Canvas 的硬件缓冲区渲染程序

协助使用 Android 的 Canvas API 通过 硬件加速至 HardwareBuffer、Android 14 引入了 HardwareBufferRenderer。如果您的用例涉及通过 SurfaceControl 与系统合成器通信以实现低延迟绘制,此 API 特别有用。