与之前的版本一样,Android 16 包含一些行为变更,这些变更可能会影响您的应用。以下行为变更仅影响以 Android 16 或更高版本为目标平台的应用。如果您的应用以 Android 16 或更高版本为目标平台,您应该修改自己的应用以支持这些行为(如果适用)。
请务必查看对 Android 16 上运行的所有应用都有影响的行为变更列表(无论应用的 targetSdkVersion 如何)。
用户体验和系统界面
Android 16(API 级别 36)包含以下旨在打造更一致、更直观的用户体验的变更。
无边框设计选择退出功能即将停用
Android 15 enforced edge-to-edge for apps targeting Android 15 (API
level 35), but your app could opt-out by setting
R.attr#windowOptOutEdgeToEdgeEnforcement to true. For apps
targeting Android 16 (API level 36),
R.attr#windowOptOutEdgeToEdgeEnforcement is deprecated and disabled, and your
app can't opt-out of going edge-to-edge.
- If your app targets Android 16 (API level 36) and is running on an
Android 15 device,
R.attr#windowOptOutEdgeToEdgeEnforcementcontinues to work. - If your app targets Android 16 (API level 36) and is running on an
Android 16 device,
R.attr#windowOptOutEdgeToEdgeEnforcementis disabled.
For testing in Android 16, ensure your app supports edge-to-edge and
remove any use of R.attr#windowOptOutEdgeToEdgeEnforcement so that your app
also supports edge-to-edge on an Android 15 device. To support edge-to-edge,
see the Compose and Views guidance.
预测性返回需要迁移或选择停用
对于以 Android 16(API 级别 36)或更高版本为目标平台且在搭载 Android 16 或更高版本的设备上运行的应用,预测性返回系统动画(返回主屏幕、跨任务和跨 activity)默认处于启用状态。此外,系统不再调用 onBackPressed,也不再调度 KeyEvent.KEYCODE_BACK。
如果您的应用会拦截返回事件,但您尚未迁移到预测性返回,请更新应用以使用受支持的返回导航 API,或者通过在应用的 AndroidManifest.xml 文件的 <application> 或 <activity> 标记中将 android:enableOnBackInvokedCallback 属性设置为 false 来暂时选择停用。
优雅字体 API 已弃用并停用
Apps targeting Android 15 (API level 35) have the
elegantTextHeight
TextView attribute set to true by
default, replacing the compact font with one that is much more readable. You
could override this by setting the elegantTextHeight attribute to false.
Android 16 deprecates the
elegantTextHeight attribute,
and the attribute will be ignored once your app targets Android 16. The "UI
fonts" controlled by these APIs are being discontinued, so you should adapt any
layouts to ensure consistent and future proof text rendering in Arabic, Lao,
Myanmar, Tamil, Gujarati, Kannada, Malayalam, Odia, Telugu or Thai.
elegantTextHeight behavior for apps targeting Android
14 (API level 34) and lower, or for apps targeting Android 15 (API level 35)
that overrode the default by setting the elegantTextHeight
attribute to false.
elegantTextHeight behavior for apps targeting Android
16 (API level 36), or for apps targeting Android 15 (API level 35) that didn't
override the default by setting the elegantTextHeight attribute
to false.核心功能
Android 16(API 级别 36)包含以下变更,这些变更会修改或扩展 Android 系统的各种核心功能。
固定费率工作安排优化
在以 Android 16 为目标平台之前,如果 scheduleAtFixedRate 因不在有效的进程生命周期内而错过了任务执行,则当应用返回到有效的生命周期时,所有错过的执行会立即执行。
以 Android 16 为目标平台时,当应用返回到有效的生命周期时,系统会立即执行最多 1 次未执行的 scheduleAtFixedRate 执行。此行为变更预计会提升应用性能。在您的应用中测试此行为,检查您的应用是否受到影响。您还可以使用应用兼容性框架并启用 STPE_SKIP_MULTIPLE_MISSED_PERIODIC_TASKS 兼容性标志进行测试。
设备规格
Android 16(API 级别 36)在应用显示在大屏设备上时,包含以下变更。
自适应布局
With Android apps now running on a variety of devices (such as phones, tablets, foldables, desktops, cars, and TVs) and windowing modes on large screens (such as split screen and desktop windowing), developers should build Android apps that adapt to any screen and window size, regardless of device orientation. Paradigms like restricting orientation and resizability are too restrictive in today's multidevice world.
Ignore orientation, resizability, and aspect ratio restrictions
For apps targeting Android 16 (API level 36), orientation, resizability, and aspect ratio restrictions no longer apply on displays with smallest width >= 600dp. Apps fill the entire display window, regardless of aspect ratio or a user's preferred orientation, and pillarboxing isn't used.
This change introduces a new standard platform behavior. Android is moving toward a model where apps are expected to adapt to various orientations, display sizes, and aspect ratios. Restrictions like fixed orientation or limited resizability hinder app adaptability. Make your app adaptive to deliver the best possible user experience.
You can also test this behavior by using the
app compatibility framework and enabling the
UNIVERSAL_RESIZABLE_BY_DEFAULT compat flag.
Common breaking changes
Ignoring orientation, resizability, and aspect ratio restrictions might impact your app's UI on some devices, especially elements that were designed for small layouts locked in portrait orientation: for example, issues like stretched layouts and off-screen animations and components. Any assumptions about aspect ratio or orientation can cause visual issues with your app. Learn more about how to avoid them and improve your app's adaptive behaviour.
Allowing device rotation results in more activity re-creation, which can result in losing user state if not properly preserved. Learn how to correctly save UI state in Save UI states.
Implementation details
The following manifest attributes and runtime APIs are ignored across large screen devices in full-screen and multi-window modes:
screenOrientationresizableActivityminAspectRatiomaxAspectRatiosetRequestedOrientation()getRequestedOrientation()
The following values for screenOrientation, setRequestedOrientation(), and
getRequestedOrientation() are ignored:
portraitreversePortraitsensorPortraituserPortraitlandscapereverseLandscapesensorLandscapeuserLandscape
Regarding display resizability, android:resizeableActivity="false",
android:minAspectRatio, and android:maxAspectRatio have no effect.
For apps targeting Android 16 (API level 36), app orientation, resizability, and aspect ratio constraints are ignored on large screens by default, but every app that isn't fully ready can temporarily override this behavior by opting out (which results in the previous behavior of being placed in compatibility mode).
Exceptions
The Android 16 orientation, resizability, and aspect ratio restrictions don't apply in the following situations:
- Games (based on the
android:appCategoryflag) - Users explicitly opting in to the app's default behavior in aspect ratio settings of the device
- Screens that are smaller than
sw600dp
Opt out temporarily
To opt out a specific activity, declare the
PROPERTY_COMPAT_ALLOW_RESTRICTED_RESIZABILITY manifest property:
<activity ...>
<property android:name="android.window.PROPERTY_COMPAT_ALLOW_RESTRICTED_RESIZABILITY" android:value="true" />
...
</activity>
If too many parts of your app aren't ready for Android 16, you can opt out completely by applying the same property at the application level:
<application ...>
<property android:name="android.window.PROPERTY_COMPAT_ALLOW_RESTRICTED_RESIZABILITY" android:value="true" />
</application>
健康与健身
Android 16(API 级别 36)包含与健康和健身数据相关的以下变更。
健康与健身权限
For apps targeting Android 16 (API level 36) or higher,
BODY_SENSORS permissions use more granular permissions
under android.permissions.health, which Health Connect
also uses. As of Android 16, any API previously requiring BODY_SENSORS
or BODY_SENSORS_BACKGROUND requires the corresponding
android.permissions.health permission instead. This affects the following data
types, APIs, and foreground service types:
HEART_RATE_BPMfrom Health Services on Wear OSSensor.TYPE_HEART_RATEfrom Android Sensor ManagerheartRateAccuracyandheartRateBpmfromProtoLayouton Wear OSFOREGROUND_SERVICE_TYPE_HEALTHwhere the respectiveandroid.permission.healthpermission is needed in place ofBODY_SENSORS
If your app uses these APIs, it should request the respective granular permissions:
- For while-in-use monitoring of Heart Rate, SpO2, or Skin Temperature:
request the granular permission under
android.permissions.health, such asREAD_HEART_RATEinstead ofBODY_SENSORS. - For background sensor access: request
READ_HEALTH_DATA_IN_BACKGROUNDinstead ofBODY_SENSORS_BACKGROUND.
These permissions are the same as those that guard access to reading data from Health Connect, the Android datastore for health, fitness, and wellness data.
Mobile apps
Mobile apps migrating to use the READ_HEART_RATE and other granular
permissions must also declare an activity to display
the app's privacy policy. This is the same requirement as Health Connect.
连接
Android 16(API 级别 36)在蓝牙堆栈中进行了以下更改,以改善与外围设备的连接。
用于处理绑定丢失和加密更改的新 intent
作为改进了对键值对丢失的处理的一部分,Android 16 还引入了 2 个新 intent,以便应用更好地了解键值对丢失和加密更改。
以 Android 16 为目标平台的应用现在可以:
- 在检测到远程键盘连接丢失时接收
ACTION_KEY_MISSINGintent,以便提供更具信息量的用户反馈并采取适当的措施。 - 每当链接的加密状态发生变化时,都会收到
ACTION_ENCRYPTION_CHANGEintent。这包括加密状态更改、加密算法更改和加密密钥大小更改。如果应用在稍后收到ACTION_ENCRYPTION_CHANGEintent 时成功加密了链接,则必须将该绑定视为已恢复。
适应不同的 OEM 实现
虽然 Android 16 引入了这些新 intent,但其实现和广播可能会因不同的设备制造商 (OEM) 而异。为了确保您的应用在所有设备上都能提供一致且可靠的体验,开发者应设计其绑定丢失处理机制,以妥善适应这些潜在的变化。
我们建议您采用以下应用行为:
如果广播
ACTION_KEY_MISSINGintent:系统会断开 ACL(异步无连接)链接,但会保留设备的配对信息(如此处所述)。
您的应用应将此 intent 用作检测配对丢失的主要信号,并在发起设备忘记或重新配对之前引导用户确认远程设备是否在范围内。
如果设备在收到
ACTION_KEY_MISSING后断开连接,您的应用应谨慎重新连接,因为设备可能已不再与系统绑定。如果未广播
ACTION_KEY_MISSINGintent:ACL 链接将保持连接状态,系统会移除设备的配对信息,与 Android 15 中的行为相同。
在这种情况下,您的应用应继续使用与之前的 Android 版本相同的现有配对丢失处理机制,以检测和管理配对丢失事件。
移除蓝牙绑定的新方法
All apps targeting Android 16 are now able to unpair bluetooth devices using a
public API in CompanionDeviceManager. If a companion device is
being managed as a CDM association, then the app can trigger
bluetooth bond removal by using the new removeBond(int) API
on the associated device. The app can monitor the bond state changes by
listening to the bluetooth device broadcast event
ACTION_BOND_STATE_CHANGED.
安全
Android 16(API 级别 36)包含以下安全方面的变更。
MediaStore 版本锁定
对于以 Android 16 或更高版本为目标平台的应用,MediaStore#getVersion() 现在将是每个应用的唯一标识。这会从版本字符串中移除标识属性,以防止滥用和用于指纹识别技术。应用不应对此版本的格式做出任何假设。在使用此 API 时,应用应已处理版本变更,并且在大多数情况下无需更改其当前行为,除非开发者尝试推断超出此 API 预期范围的其他信息。
更安全的 intent
“更安全的 intent”功能是一项多阶段安全计划,旨在提高 Android 的 intent 解析机制的安全性。目标是在 intent 处理期间添加检查,并过滤不符合特定条件的 intent,从而保护应用免受恶意操作的侵害。
在 Android 15 中,该功能侧重于发送应用,现在在 Android 16 中,控制权转移到了接收应用,允许开发者使用其应用清单选择加入严格的 intent 解析。
我们正在实施两项关键变更:
显式 intent 必须与目标组件的 intent 过滤器相匹配:如果 intent 显式定位到某个组件,则应与该组件的 intent 过滤器相匹配。
没有操作的 intent 无法匹配任何 intent 过滤器:未指定操作的 intent 不应解析为任何 intent 过滤器。
这些变更仅在涉及多个应用时适用,不会影响单个应用内的 intent 处理。
影响
选择启用性质意味着,开发者必须在应用清单中明确启用它,才能使其生效。 因此,此功能的影响将仅限于以下应用:
- 了解“更安全的 intent”功能及其优势。
- 主动选择在应用中采用更严格的 intent 处理实践。
这种选择性采用的方法可最大限度地降低破坏可能依赖于当前不太安全的 intent 解析行为的现有应用的风险。
虽然在 Android 16 中,初始影响可能有限,但“更安全的 intent”计划的路线图显示,未来 Android 版本的影响范围会更广。我们计划最终将严格的意图解析设为默认行为。
“更安全的 intent”功能可让恶意应用更难利用 intent 解析机制中的漏洞,从而有望显著提升 Android 生态系统的安全性。
不过,向选择退出和强制执行的过渡必须谨慎管理,以解决现有应用的潜在兼容性问题。
实现
开发者需要在应用清单中使用 intentMatchingFlags 属性明确启用更严格的 intent 匹配。
以下示例展示了如何为整个应用选择启用该功能,但在接收器上停用/选择停用该功能:
<application android:intentMatchingFlags="enforceIntentFilter">
<receiver android:name=".MyBroadcastReceiver" android:exported="true" android:intentMatchingFlags="none">
<intent-filter>
<action android:name="com.example.MY_CUSTOM_ACTION" />
</intent-filter>
<intent-filter>
<action android:name="com.example.MY_ANOTHER_CUSTOM_ACTION" />
</intent-filter>
</receiver>
</application>
有关支持的标志的更多信息:
| 标志名称 | 说明 |
|---|---|
| enforceIntentFilter | 对传入的 intent 强制执行更严格的匹配 |
| none | 停用针对传入 intent 的所有特殊匹配规则。指定多个标志时,系统会优先考虑“无”标志,以解决值冲突问题 |
| allowNullAction | 放宽了匹配规则,允许匹配没有操作的 intent。此标志与“enforceIntentFilter”结合使用可实现特定行为 |
测试和调试
在强制执行处于有效状态时,如果 intent 调用方已正确填充 intent,应用应能正常运行。
不过,被屏蔽的 intent 会触发警告日志消息(例如 "Intent does not match component's intent filter:" 和 "Access blocked:"),并带有标记 "PackageManager."。这表示存在可能会影响应用的潜在问题,需要引起注意。
Logcat 过滤条件:
tag=:PackageManager & (message:"Intent does not match component's intent filter:" | message: "Access blocked:")
GPU 系统调用过滤
To harden the Mali GPU surface, Mali GPU IOCTLs that have been deprecated or are intended solely for GPU development have been blocked in production builds. Additionally, IOCTLs used for GPU profiling have been restricted to the shell process or debuggable applications. Refer to the SAC update for more details on the platform-level policy.
This change takes place on Pixel devices using the Mali GPU (Pixel 6-9). Arm
has provided official categorization of their IOCTLs in
Documentation/ioctl-categories.rst of their r54p2 release. This
list will continue to be maintained in future driver releases.
This change does not impact supported graphics APIs (including Vulkan and OpenGL), and is not expected to impact developers or existing applications. GPU profiling tools such as the Streamline Performance Analyzer and the Android GPU Inspector won't be affected.
Testing
If you see a SELinux denial similar to the following, it is likely your application has been impacted by this change:
06-30 10:47:18.617 20360 20360 W roidJUnitRunner: type=1400 audit(0.0:85): avc: denied { ioctl }
for path="/dev/mali0" dev="tmpfs" ino=1188 ioctlcmd=0x8023
scontext=u:r:untrusted_app_25:s0:c512,c768 tcontext=u:object_r:gpu_device:s0 tclass=chr_file
permissive=0 app=com.google.android.selinux.pts
If your application needs to use blocked IOCTLs, please file a bug and assign it to android-partner-security@google.com.
FAQ
Does this policy change apply to all OEMs? This change will be opt-in, but available to any OEMs who would like to use this hardening method. Instructions for implementing the change can be found in the implementation documentation.
Is it mandatory to make changes in the OEM codebase to implement this, or does it come with a new AOSP release by default? The platform-level change will come with a new AOSP release by default. Vendors may opt-in to this change in their codebase if they would like to apply it.
Are SoCs responsible for keeping the IOCTL list up to date? For example, if my device uses an ARM Mali GPU, would I need to reach out to ARM for any of the changes? Individual SoCs must update their IOCTL lists per device upon driver release. For example, ARM will update their published IOCTL list upon driver updates. However, OEMs should make sure that they incorporate the updates in their SEPolicy, and add any selected custom IOCTLs to the lists as needed.
Does this change apply to all Pixel in-market devices automatically, or is a user action required to toggle something to apply this change? This change applies to all Pixel in-market devices using the Mali GPU (Pixel 6-9). No user action is required to apply this change.
Will use of this policy impact the performance of the kernel driver? This policy was tested on the Mali GPU using GFXBench, and no measurable change to GPU performance was observed.
Is it necessary for the IOCTL list to align with the current userspace and kernel driver versions? Yes, the list of allowed IOCTLs must be synchronized with the IOCTLs supported by both the userspace and kernel drivers. If the IOCTLs in the user space or kernel driver are updated, the SEPolicy IOCTL list must be updated to match.
ARM has categorized IOCTLs as 'restricted' / 'instrumentation', but we want to use some of them in production use-cases, and/or deny others. Individual OEMs/SoCs are responsible for deciding on how to categorize the IOCTLs they use, based on the configuration of their userspace Mali libraries. ARM's list can be used to help decide on these, but each OEM/SoC's use-case may be different.
隐私权
Android 16(API 级别 36)包含以下隐私权方面的变更。
本地网络权限
具有 INTERNET 权限的任何应用都可以访问局域网上的设备。
这使得应用可以轻松连接到本地设备,但也存在隐私影响,例如形成用户指纹,以及成为位置信息的代理。
本地网络保护项目旨在通过在新的运行时权限后限制对本地网络的访问,来保护用户的隐私。
发布计划
此变更将分别在 25Q2 和 26Q2 这两个版本之间部署。 开发者必须遵循 25Q2 的相关指南并分享反馈,因为这些保护措施将在后续 Android 版本中强制执行。此外,他们还需要按照以下指南更新依赖于隐式本地网络访问权限的场景,并为用户拒绝和撤消新权限做好准备。
影响
在当前阶段,LNP 是一项选择启用功能,这意味着只有选择启用的应用会受到影响。选择启用阶段的目标是让应用开发者了解应用的哪些部分依赖于隐式本地网络访问权限,以便他们可以为下一个版本做好权限保护准备。
如果应用使用以下方式访问用户的本地网络,则会受到影响:
- 在本地网络地址(例如 mDNS 或 SSDP 服务发现协议)上直接或通过库使用原始套接字
- 使用可访问本地网络的框架级类(例如 NsdManager)
向本地网络地址发送流量和从本地网络地址接收流量需要本地网络访问权限。下表列出了一些常见情况:
| 应用低级层网络操作 | 需要本地网络权限 |
|---|---|
| 建立出站 TCP 连接 | 是 |
| 接受传入的 TCP 连接 | 是 |
| 发送 UDP 单播、多播、广播 | 是 |
| 接收传入的 UDP 单播、多播、广播 | 是 |
这些限制是在网络堆栈深处实现的,因此适用于所有网络 API。这包括在原生代码或受管理代码中创建的套接字、Cronet 和 OkHttp 等网络库,以及基于这些库实现的任何 API。尝试解析本地网络上的服务(即带有 .local 后缀的服务)将需要本地网络权限。
上述规则的例外情况:
- 如果设备的 DNS 服务器位于本地网络上,则进出该服务器(位于端口 53)的流量不需要本地网络访问权限。
- 如果应用使用输出切换器作为其应用内选择器,则无需本地网络权限(更多指南将在 2025 年第 4 季度发布)。
开发者指南(选择启用)
如需选择启用本地网络限制,请执行以下操作:
- 将设备刷写到 25Q2 Beta 3 或更高版本的 build。
- 安装要测试的应用。
在 adb 中切换 Appcompat 标志:
adb shell am compat enable RESTRICT_LOCAL_NETWORK <package_name>重启设备
现在,您的应用对本地网络的访问受到限制,任何访问本地网络的尝试都会导致套接字错误。如果您使用的 API 在应用进程之外执行本地网络操作(例如:NsdManager),在选择启用阶段,这些 API 不会受到影响。
如需恢复访问权限,您必须向应用授予 NEARBY_WIFI_DEVICES 权限。
- 确保应用在其清单中声明了
NEARBY_WIFI_DEVICES权限。 - 依次前往设置 > 应用 > [应用名称] > 权限 > 附近的设备 > 允许。
现在,应用对本地网络的访问权限应该已恢复,并且所有场景都应像选择启用应用之前一样正常运行。
本地网络保护功能开始强制执行后,应用的网络流量将受到以下影响。
| 权限 | 出站 LAN 请求 | 出站/入站互联网请求 | 入站 LAN 请求 |
|---|---|---|---|
| 已授予 | Works | Works | Works |
| 未授予 | 最差排行榜 | Works | 最差排行榜 |
使用以下命令切换关闭应用兼容性标志
adb shell am compat disable RESTRICT_LOCAL_NETWORK <package_name>
错误
每当调用套接字调用 send 或 send 变体向本地网络地址发送数据时,系统都会向该套接字返回因这些限制而产生的错误。
错误示例:
sendto failed: EPERM (Operation not permitted)
sendto failed: ECONNABORTED (Operation not permitted)
本地网络定义
此项目中的本地网络是指使用支持广播的网络接口(例如 Wi-Fi 或以太网)的 IP 网络,但不包括移动网络 (WWAN) 或 VPN 连接。
以下网络被视为本地网络:
IPv4:
- 169.254.0.0/16 // 链路本地
- 100.64.0.0/10 // CGNAT
- 10.0.0.0/8 // RFC1918
- 172.16.0.0/12 // RFC1918
- 192.168.0.0/16 // RFC1918
IPv6:
- 链路本地
- 直接连接的路线
- Thread 等桩网络
- 多个子网(待定)
此外,多播地址 (224.0.0.0/4、ff00::/8) 和 IPv4 广播地址 (255.255.255.255) 都归类为本地网络地址。
应用拥有的照片
当面向 SDK 36 或更高版本的应用在搭载 Android 16 或更高版本的设备上提示用户授予照片和视频权限时,如果用户选择限制对所选媒体的访问权限,则会在照片选择器中看到该应用拥有的所有照片。用户可以取消选择任何这些预选项,这会撤消该应用对这些照片和视频的访问权限。