Android 14 面向开发者引入了一些出色的功能和 API。以下内容可帮助您了解适用于您的应用的功能并开始使用相关 API。
如需查看新增、修改和移除的 API 的详细列表,请参阅 API 差异报告。如需详细了解添加的 API,请访问 Android API 参考文档。对于 Android 14,请查找在 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 为目标平台的应用和所有应用的 Android 14 行为变更。
国际化
单个应用语言设置
Android 14 expands on the per-app language features that were introduced in Android 13 (API level 33) with these additional capabilities:
Automatically generate an app's
localeConfig: Starting with Android Studio Giraffe Canary 7 and AGP 8.1.0-alpha07, you can configure your app to support per-app language preferences automatically. Based on your project resources, the Android Gradle plugin generates theLocaleConfigfile and adds a reference to it in the final manifest file, so you no longer have to create or update the file manually. AGP uses the resources in theresfolders of your app modules and any library module dependencies to determine the locales to include in theLocaleConfigfile.Dynamic updates for an app's
localeConfig: Use thesetOverrideLocaleConfig()andgetOverrideLocaleConfig()methods inLocaleManagerto dynamically update your app's list of supported languages in the device's system settings. Use this flexibility to customize the list of supported languages per region, run A/B experiments, or provide an updated list of locales if your app utilizes server-side pushes for localization.App language visibility for input method editors (IMEs): IMEs can utilize the
getApplicationLocales()method to check the language of the current app and match the IME language to that language.
Grammatical Inflection API
3 billion people speak gendered languages: languages where grammatical categories—such as nouns, verbs, adjectives, and prepositions—inflect according to the gender of people and objects you talk to or about. Traditionally, many gendered languages use masculine grammatical gender as the default or generic gender.
Addressing users in the wrong grammatical gender, such as addressing women in masculine grammatical gender, can negatively impact their performance and attitude. In contrast, a UI with language that correctly reflects the user's grammatical gender can improve user engagement and provide a more personalized and natural-sounding user experience.
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
用户可通过地区偏好设置对温度单位、一周的第一天和编号系统进行个性化设置。居住在美国的欧洲用户可能更希望使用摄氏度,而不是华氏度,并且希望应用将星期一视为一周的开始,而不是像美国那样默认从星期日开始。
新 Android 设置菜单包含这些偏好设置,使用户能够在一个位置集中发现这些应用更改偏好设置。这些偏好设置在备份和恢复设备后也会保持不变。多个 API 和 intent(例如 getTemperatureUnit 和 getFirstDayOfWeek)会为您的应用授予读取权限来访问用户偏好设置,因此您的应用可以调整其显示信息的方式。您还可以在 ACTION_LOCALE_CHANGED 上注册 BroadcastReceiver,以便在地区偏好设置发生更改时处理语言区域配置更改。
如需找到这些设置,请打开“设置”应用,然后依次前往系统 > 语言和输入法 > 地区偏好设置。
无障碍
非线性字体放大至 200%
从 Android 14 开始,系统支持字体放大高达 200%,为弱视用户提供了符合网络内容无障碍指南 (WCAG) 的其他无障碍功能选项。
为防止屏幕上的大文本元素放大放大, 应用非线性缩放曲线。这种放大策略意味着大号文本的放大比例不会与较小的文本相同。非线性字体放大有助于保持不同大小元素之间的比例层次结构,同时缓解高级别线性文本放大存在的问题(例如文本被截断或文本因非常大的显示大小而难以阅读)。
使用非线性字体放大测试应用
如果您已使用放大像素 (sp) 单位来定义文字大小,那么这些 其他选项和扩缩方面的改进会自动应用到 。不过,您仍应使用 启用字体大小 (200%),以确保应用采用 且可以适应较大字号,并且不会影响易用性。
要启用 200% 字号,请按以下步骤操作:
- 打开“设置”应用,然后依次前往无障碍 > 显示大小和文字。
- 在字号选项中,点按加号 (+) 图标,直到启用最大字号设置,如本部分随附的图片所示。
针对文本大小使用放大像素 (sp) 单位
请务必始终以 sp 为单位指定文字大小。当应用使用 sp 单位时,Android 可以应用用户的首选文本大小,并相应地进行缩放。
请勿为内边距使用 sp 单位,也不要假定内边距来定义视图高度:使用非线性字体放大 sp 尺寸可能并不成比例,因此 4sp + 20sp 可能并不等于 24sp。
转换放大像素 (sp) 单位
使用 TypedValue.applyDimension() 从 sp 单位转换为像素,并使用 TypedValue.deriveDimension() 将像素转换为 sp。这些方法会自动应用适当的非线性放大曲线。
避免对公式进行硬编码,使用以下代码
Configuration.fontScale 或
DisplayMetrics.scaledDensity。因为字体缩放
非线性的,则 scaledDensity 字段不再准确。fontScale
字段应仅用于提供信息,
使用单个标量值进行扩缩。
为 lineHeight 使用 sp 单位
始终使用 sp 单位定义 android:lineHeight
dp 为 dp,因此行高会随文本一起缩放。否则,如果文本使用 sp,但 lineHeight 使用 dp 或 px,则文本不会缩放,并且看起来很拥挤。TextView 会自动更正 lineHeight,以便实现您的目标
比例会得到保留,但前提是 textSize 和 lineHeight
以 sp 为单位进行定义。
摄像头和媒体
图片 Ultra HDR
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、聚焦、postview 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:
- 动态静态拍摄处理延迟时间估算功能可根据当前场景和环境条件提供更准确的静态拍摄延迟时间估算值。调用
CameraExtensionSession.getRealtimeStillCaptureLatency()可获取具有两种延迟时间估算方法的StillCaptureLatency对象。getCaptureLatency()方法会返回onCaptureStarted和onCaptureProcessStarted()之间的估算延迟时间,而getProcessingLatency()方法会返回onCaptureProcessStarted()和可用的最终处理帧之间的估算延迟时间。 - 支持拍摄进度回调,以便应用可以显示长时间运行的静态拍摄处理操作的当前进度。您可以检查
CameraExtensionCharacteristics.isCaptureProcessProgressAvailable是否支持此功能,如果支持,则实现onCaptureProcessProgressed()回调,并将进度(从 0 到 100)作为参数传入。 扩展程序专用元数据,例如用于调节扩展程序效果(例如背景虚化程度)的
CaptureRequest.EXTENSION_STRENGTH和EXTENSION_BOKEH。相机扩展程序中的静态图片拍摄预览功能,该功能比最终图片更快地提供经过较少处理的图片。如果扩展程序的处理延迟时间增加,可以提供 postview 图片作为占位符以提升用户体验,并在稍后改用最终图片。您可以使用
CameraExtensionCharacteristics.isPostviewAvailable检查此功能是否可用。然后,您可以将OutputConfiguration传递给ExtensionSessionConfiguration.setPostviewOutputConfiguration。支持
SurfaceView,可实现更优化且能效更高的预览渲染路径。支持在使用扩展程序时点按对焦和缩放。
传感器内变焦
当 CameraCharacteristics 中的 REQUEST_AVAILABLE_CAPABILITIES_STREAM_USE_CASE 包含 SCALER_AVAILABLE_STREAM_USE_CASES_CROPPED_RAW 时,您的应用可以使用高级传感器功能,将剪裁后的 RAW 数据流的像素与全视野范围相同,方法是将 CaptureRequest 与将数据流用例设置为 CameraMetadata.SCALER_AVAILABLE_STREAM_USE_CASES_CROPPED_RAW 的 RAW 目标搭配使用。通过实现请求替换控件,更新后的相机可让用户在其他相机控件准备就绪之前使用缩放控件。
无损 USB 音频
Android 14 支持无损音频格式,可通过 USB 有线耳机提供发烧友级体验。您可以查询 USB 设备的首选混音器属性,注册监听器以监听首选混音器属性的更改,以及使用 AudioMixerAttributes 类配置混音器属性。此类表示音频混音器的格式,例如声道掩码、采样率和行为。该类允许直接发送音频,而无需混音、调节音量或处理效果。
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.
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 continues the work of refreshing Android's core libraries to align with the features in the latest OpenJDK LTS releases, including both library updates and Java 17 language support for app and platform developers.
The following features and improvements are included:
- Updated approximately 300
java.baseclasses to Java 17 support. - Text Blocks, which introduce multi-line string literals to the Java programming language.
- Pattern Matching for instanceof, which allows an object to
be treated as having a specific type in an
instanceofwithout any additional variables. - Sealed classes, which allow you restrict which classes and interfaces can extend or implement them.
Thanks to Google Play system updates (Project Mainline), over 600 million devices are enabled to receive the latest Android Runtime (ART) updates that include these changes. This is part of our commitment to give apps a more consistent, secure environment across devices, and to deliver new features and capabilities to users independent of platform releases.
Java and OpenJDK are trademarks or registered trademarks of Oracle and/or its affiliates.
针对应用商店的改进
Android 14 introduces several PackageInstaller APIs that
allow app stores to improve their user experience.
Request install approval before downloading
Installing or updating an app might require user approval.
For example, when an installer making use of the
REQUEST_INSTALL_PACKAGES permission attempts to install a
new app. In prior Android versions, app stores can only request user approval
after APKs are written to the install session and the
session is committed.
Starting with Android 14, the requestUserPreapproval()
method lets installers request user approval before committing the install
session. This improvement lets an app store defer downloading any APKs until
after the installation has been approved by the user. Furthermore, once a user
has approved installation, the app store can download and install the app in the
background without interrupting the user.
Claim responsibility for future updates
The setRequestUpdateOwnership() method allows an installer
to indicate to the system that it intends to be responsible for future updates
to an app it is installing. This capability enables update ownership
enforcement, meaning that only the update owner is permitted
to install automatic updates to the app. Update ownership enforcement helps to
ensure that users receive updates only from the expected app store.
Any other installer, including those making use of the
INSTALL_PACKAGES permission, must receive explicit user
approval in order to install an update. If a user decides to proceed with an
update from another source, update ownership is lost.
Update apps at less-disruptive times
App stores typically want to avoid updating an app that is actively in use because this leads to the app's running processes being killed, which potentially interrupts what the user was doing.
Starting with Android 14, the InstallConstraints API
gives installers a way to ensure that their app updates happen at an opportune
moment. For example, an app store can call the
commitSessionAfterInstallConstraintsAreMet() method to
make sure that an update is only committed when the user is no longer
interacting with the app in question.
Seamlessly install optional splits
With split APKs, features of an app can be delivered in separate APK files,
rather than as a monolithic APK. Split APKs allow app stores to optimize the
delivery of different app components. For example, app stores might optimize
based on the properties of the target device. The
PackageInstaller API has supported splits since its
introduction in API level 22.
In Android 14, the setDontKillApp() method allows an
installer to indicate that the app's running processes shouldn't be killed when
new splits are installed. App stores can use this feature to seamlessly install
new features of an app while the user is using the app.
应用元数据软件包
从 Android 14 开始,Android 软件包安装程序可让您指定应用元数据(例如数据安全做法),以在 Google Play 等应用商店页面上架。
检测用户何时截取设备屏幕截图
To create a more standardized experience for detecting screenshots, Android 14 introduces a privacy-preserving screenshot detection API. This API lets apps register callbacks on a per-activity basis. These callbacks are invoked, and the user is notified, when the user takes a screenshot while that activity is visible.
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。
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。
支持内置和自定义预测性返回动画
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:
- You can set
android:enableOnBackInvokedCallback=trueto opt in to predictive back system animations per-Activity instead of for the entire app. - We've added new system animations to accompany the back-to-home animation from Android 13. The new system animations are cross-activity and cross-task, which you get automatically after migrating to Predictive Back.
- We've added new Material Component animations for Bottom sheets, Side sheets, and Search.
- We've created design guidance for creating custom in-app animations and transitions.
- We've added new APIs to support custom in-app transition animations:
handleOnBackStarted,handleOnBackProgressed,handleOnBackCancelledinOnBackPressedCallbackonBackStarted,onBackProgressed,onBackCancelledinOnBackAnimationCallback- Use
overrideActivityTransitioninstead ofoverridePendingTransitionfor transitions that respond as the user swipes 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
借助按应用替换项,设备制造商可以更改应用在大屏设备上的行为。例如,FORCE_RESIZE_APP 替换项会指示系统调整应用大小以适应显示屏尺寸(避免进入尺寸兼容模式),即使在应用清单中设置了 resizeableActivity="false" 也是如此。
替换项旨在改善大屏设备上的用户体验。
借助新的清单属性,您可以为应用停用某些设备制造商替换项。
大屏设备用户按应用替换项
按应用替换项会更改应用在大屏设备上的行为。例如,无论应用的配置如何,OVERRIDE_MIN_ASPECT_RATIO_LARGE 设备制造商替换项都会将应用宽高比设置为 16:9。
借助 Android 14 QPR1,用户可以在大屏设备上通过新的设置菜单应用按应用替换项。
应用屏幕共享
App screen sharing enables users to share an app window instead of the entire device screen during screen content recording.
With app screen sharing, the status bar, navigation bar, notifications, and other system UI elements are excluded from the shared display. Only the content of the selected app is shared.
App screen sharing improves productivity and privacy by enabling users to run multiple apps but limit content sharing to a single app.
Pixel 8 Pro 上由 LLM 提供支持的 Gboard 智能回复功能
在搭载 12 月功能分块的 Pixel 8 Pro 设备上,开发者可以在 Gboard 中试用质量更高的智能回复,这些回复由在 Google Tensor 上运行的设备端大语言模型 (LLM) 提供支持。
此功能目前仅在 WhatsApp、Line 和 KakaoTalk 中以美式英语的形式提供给用户进行小范围测试。此功能需要使用 Pixel 8 Pro 设备,并将 Gboard 用作键盘。
如需试用此功能,请先依次前往设置 > 开发者选项 > AiCore 设置 > 启用 Aicore 持久性,启用该功能。
接下来,在受支持的应用中打开对话,即可在 Gboard 的建议栏中看到依托 LLM 的智能回复,以便回复收到的消息。
图形
路径可查询和插值
Android 的 Path API 是一种强大且灵活的机制,可用于创建和渲染矢量图形,能够描边或填充路径、根据线段或二次曲线或立方曲线构建路径、执行布尔运算以获取更复杂的形状,或同时执行所有这些操作。但有一个限制是,您无法了解 Path 对象中实际包含的内容;该对象的内部信息在创建后对调用方是不透明的。
如需创建 Path,您可以调用 moveTo()、lineTo() 和 cubicTo() 等方法来添加路径段。但是,无法询问该路径有哪些片段,因此您必须在创建时保留该信息。
从 Android 14 开始,您可以查询路径以了解其内部内容。首先,您需要使用 Path.getPathIterator API 获取 PathIterator 对象:
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();
接下来,您可以调用 PathIterator 逐个遍历片段,并检索每个片段的所有必要数据。以下示例使用了 PathIterator.Segment 对象,它会为您打包数据:
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 还有一个非分配版 next(),您可以在其中传入缓冲区来保存点数据。
查询 Path 数据的一个重要用例是插值。例如,您可能想在两个不同的路径之间添加动画(或变形)。为了进一步简化该用例,Android 14 针对 Path 还包含 interpolate() 方法。假设两个路径具有相同的内部结构,interpolate() 方法会使用该插值结果创建一个新的 Path。以下示例返回了一个形状介于 path 和 otherPath 之间的一半(线性插值为 0.5)的路径:
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); }
Jetpack graphics-path 库也为早期版本的 Android 启用了类似的 API。
使用顶点着色器和片段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.
Canvas 的硬件缓冲区渲染器
To assist in using Android's Canvas API to draw with
hardware acceleration into a HardwareBuffer, Android 14
introduces HardwareBufferRenderer. This API is
particularly useful when your use case involves communication with the system
compositor through SurfaceControl for low-latency
drawing.