Multi-Camera Support_test_multi_camera_frame_sync-程序员宅基地

技术标签: Android_Camera  Camera  Multi-Camera  Android  

Android 9 introduces API support for multi-camera devices via a new logical camera device composed of two or more physical camera devices pointing in the same direction. The logical camera device is exposed as a single CameraDevice/CaptureSession to an application allowing for interaction with HAL-integrated multi-camera features. Applications can optionally access and control underlying physical camera streams, metadata, and controls.

Multi-camera support

                          Figure 1. Multi-camera support

In this diagram, different camera IDs are color coded. The application can stream raw buffers from each physical camera at the same time. It is also possible to set separate controls and receive separate metadata from different physical cameras.

Examples and sources

Multi-camera devices must be advertised via the logical multi-camera capability.

Camera clients can query the camera ID of the physical devices a particular logical camera is made of by callinggetPhysicalCameraIds(). The IDs returned as part of the result are then used to control physical devices individually via setPhysicalCameraId(). The results from such individual requests can be queried from the complete result by invoking getPhysicalCameraResults().

Individual physical camera requests may support only a limited subset of parameters. To receive a list of the supported parameters, developers can call getAvailablePhysicalCameraRequestKeys().

Physical camera streams are supported only for non-reprocessing requests and only for monochrome and bayer sensors.

Implementation

Support checklist

To add logical multi-camera devices on the HAL side:

For devices running Android 9, camera devices must support replacing one logical YUV/RAW stream with physical streams of the same size (doesn't apply to RAW streams) and the same format from two physical cameras. This doesn't apply to devices running Android 10.

For devices running Android 10 where the camera HAL device version is 3.5 or higher, the camera device must support isStreamCombinationSupported for applications to query whether a particular stream combination containing physical streams is supported.

Stream configuration map

For a logical camera, the mandatory stream combinations for the camera device of a certain hardware level is the same as what's required in CameraDevice.createCaptureSession. All of the streams in the stream configuration map must be logical streams.

For a logical camera device supporting RAW capability with physical sub-cameras of different sizes, if an application configures a logical RAW stream, the logical camera device must not switch to physical sub-cameras with different sensor sizes. This ensures that existing RAW capture applications don't break.

To take advantage of HAL-implemented optical zoom by switching between physical sub-cameras during RAW capture, applications must configure physical sub-camera streams instead of a logical RAW stream.

Guaranteed stream combination

Both the logical camera and its underlying physical cameras must guarantee the mandatory stream combinationsrequired for their device levels.

A logical camera device should operate in the same way as a physical camera device based on its hardware level and capabilities. It's recommended that its feature set is a superset of that of individual physical cameras.

On devices running Android 9, for each guaranteed stream combination, the logical camera must support:

  • 在physical camera支持的情况下,用两个physical camera出两路(分别出一路)size和format相同的physical stream替换一路logical stream (YUV_420_888或RAW).

  • 如果logical camera不支持RAW capability,而底层的physical camera支持,则添加两路raw stream,每个physical camera输出一路。当physical camera具有不同的senso size时,通常会发生这种情况。

  • 使用physical stream代替相同size和format的logical stream。当physical stream和logical stream的minimum_frame_duration相同时,这一定不能减慢Cpature的帧率。

Performance and power considerations

  • Performance:

    • Configuring and streaming physical streams may slow down the logical camera's capture rate due to resource constraints.
    • Applying physical camera settings may slow down the capture rate if the underlying cameras are put into different frame rates.
  • Power:

    • HAL's power optimization continues to work in the default case.
    • Configuring or requesting physical streams may override HAL's internal power optimization and incur more power use.

Customization

You can customize your device implementation in the following ways.

  • Logical_camera_device输出的logical stream完全取决于HAL实现。 如何从底层的physical camera生成并输出的ogic stream对于应用程序和Android Camera Framework是透明的。
  • 对Individual physical requests 和 results 的支持是可选的. 此类请求中的可用参数集也完全取决于特定的HAL实现。
  • 从Android 10开始,HAL可以在调用getCameraIdList将部分或全部PHYSICAL_ID返回,从而减少应用程序可以直接打开的Camera数量。但是,调用getPhysicalCameraCharacteristics 必须返回physical camera的 characteristics。
    /**
     * getCameraIdList:
     *
     * Returns the list of internal camera device interfaces known to this
     * camera provider. These devices can then be accessed via the hardware
     * service manager.
     *
     * External camera devices (camera facing EXTERNAL) must be reported through
     * the device status change callback, not in this list. Only devices with
     * facing BACK or FRONT must be listed here.
     *
     * @return status Status code for the operation, one of:
     *     OK:
     *         On a succesful generation of camera ID list
     *     INTERNAL_ERROR:
     *         A camera ID list cannot be created. This may be due to
     *         a failure to initialize the camera subsystem, for example.
     * @return cameraDeviceServiceNames The vector of internal camera device
     *     names known to this provider.
     */
    getCameraIdList()
            generates (Status status, vec<string> cameraDeviceNames);

 

Validation

Logical multi-camera devices must pass Camera CTS like any other regular camera. The test cases that target this type of device can be found in the LogicalCameraDeviceTest module.

These three ITS tests target multi-camera systems to facilitate the proper fusing of images:

The scene1 and scene4 tests run with the ITS-in-a-box test rig. The test_multi_camera_match test asserts that the brightness of the center of the images match when the two cameras are both enabled. The test_multi_camera_alignment test asserts that camera spacings, orientations, and distortion parameters are properly loaded. If the multi-camera system includes a Wide FoV camera (>90o), the rev2 version of the ITS box is required.

Sensor_fusion is a second test rig that enables repeated, prescribed phone motion and asserts that the gyroscope and image sensor timestamps match and that the multi-camera frames are in sync.

All boxes are available through AcuSpec, Inc. (www.acuspecinc.com, [email protected]) and MYWAY Manufacturing (www.myway.tw, [email protected]). Additionally, the rev1 ITS box can be purchased through West-Mark (www.west-mark.com, [email protected]).

原文地址

        https://source.android.google.cn/devices/camera/multi-camera

版权声明:本文为博主原创文章,遵循 CC 4.0 BY-SA 版权协议,转载请附上原文出处链接和本声明。
本文链接:https://blog.csdn.net/f2006116/article/details/104069870

智能推荐

51单片机的中断系统_51单片机中断篇-程序员宅基地

文章浏览阅读3.3k次,点赞7次,收藏39次。CPU 执行现行程序的过程中,出现某些急需处理的异常情况或特殊请求,CPU暂时中止现行程序,而转去对异常情况或特殊请求进行处理,处理完毕后再返回现行程序断点处,继续执行原程序。void 函数名(void) interrupt n using m {中断函数内容 //尽量精简 }编译器会把该函数转化为中断函数,表示中断源编号为n,中断源对应一个中断入口地址,而中断入口地址的内容为跳转指令,转入本函数。using m用于指定本函数内部使用的工作寄存器组,m取值为0~3。该修饰符可省略,由编译器自动分配。_51单片机中断篇

oracle项目经验求职,网络工程师简历中的项目经验怎么写-程序员宅基地

文章浏览阅读396次。项目经验(案例一)项目时间:2009-10 - 2009-12项目名称:中驰别克信息化管理整改完善项目描述:项目介绍一,建立中驰别克硬件档案(PC,服务器,网络设备,办公设备等)二,建立中驰别克软件档案(每台PC安装的软件,财务,HR,OA,专用系统等)三,能过建立的档案对中驰别克信息化办公环境优化(合理使用ADSL宽带资源,对域进行调整,对文件服务器进行优化,对共享打印机进行调整)四,优化完成后..._网络工程师项目经历

LVS四层负载均衡集群-程序员宅基地

文章浏览阅读1k次,点赞31次,收藏30次。LVS:Linux Virtual Server,负载调度器,内核集成, 阿里的四层SLB(Server Load Balance)是基于LVS+keepalived实现。NATTUNDR优点端口转换WAN性能最好缺点性能瓶颈服务器支持隧道模式不支持跨网段真实服务器要求anyTunneling支持网络private(私网)LAN/WAN(私网/公网)LAN(私网)真实服务器数量High (100)High (100)真实服务器网关lvs内网地址。

「技术综述」一文道尽传统图像降噪方法_噪声很大的图片可以降噪吗-程序员宅基地

文章浏览阅读899次。https://www.toutiao.com/a6713171323893318151/作者 | 黄小邪/言有三编辑 | 黄小邪/言有三图像预处理算法的好坏直接关系到后续图像处理的效果,如图像分割、目标识别、边缘提取等,为了获取高质量的数字图像,很多时候都需要对图像进行降噪处理,尽可能的保持原始信息完整性(即主要特征)的同时,又能够去除信号中无用的信息。并且,降噪还引出了一..._噪声很大的图片可以降噪吗

Effective Java 【对于所有对象都通用的方法】第13条 谨慎地覆盖clone_为继承设计类有两种选择,但无论选择其中的-程序员宅基地

文章浏览阅读152次。目录谨慎地覆盖cloneCloneable接口并没有包含任何方法,那么它到底有什么作用呢?Object类中的clone()方法如何重写好一个clone()方法1.对于数组类型我可以采用clone()方法的递归2.如果对象是非数组,建议提供拷贝构造器(copy constructor)或者拷贝工厂(copy factory)3.如果为线程安全的类重写clone()方法4.如果为需要被继承的类重写clone()方法总结谨慎地覆盖cloneCloneable接口地目的是作为对象的一个mixin接口(详见第20_为继承设计类有两种选择,但无论选择其中的

毕业设计 基于协同过滤的电影推荐系统-程序员宅基地

文章浏览阅读958次,点赞21次,收藏24次。今天学长向大家分享一个毕业设计项目基于协同过滤的电影推荐系统项目运行效果:项目获取:https://gitee.com/assistant-a/project-sharing21世纪是信息化时代,随着信息技术和网络技术的发展,信息化已经渗透到人们日常生活的各个方面,人们可以随时随地浏览到海量信息,但是这些大量信息千差万别,需要费事费力的筛选、甄别自己喜欢或者感兴趣的数据。对网络电影服务来说,需要用到优秀的协同过滤推荐功能去辅助整个系统。系统基于Python技术,使用UML建模,采用Django框架组合进行设

随便推点

你想要的10G SFP+光模块大全都在这里-程序员宅基地

文章浏览阅读614次。10G SFP+光模块被广泛应用于10G以太网中,在下一代移动网络、固定接入网、城域网、以及数据中心等领域非常常见。下面易天光通信(ETU-LINK)就为大家一一盘点下10G SFP+光模块都有哪些吧。一、10G SFP+双纤光模块10G SFP+双纤光模块是一种常规的光模块,有两个LC光纤接口,传输距离最远可达100公里,常用的10G SFP+双纤光模块有10G SFP+ SR、10G SFP+ LR,其中10G SFP+ SR的传输距离为300米,10G SFP+ LR的传输距离为10公里。_10g sfp+

计算机毕业设计Node.js+Vue基于Web美食网站设计(程序+源码+LW+部署)_基于vue美食网站源码-程序员宅基地

文章浏览阅读239次。该项目含有源码、文档、程序、数据库、配套开发软件、软件安装教程。欢迎交流项目运行环境配置:项目技术:Express框架 + Node.js+ Vue 等等组成,B/S模式 +Vscode管理+前后端分离等等。环境需要1.运行环境:最好是Nodejs最新版,我们在这个版本上开发的。其他版本理论上也可以。2.开发环境:Vscode或HbuilderX都可以。推荐HbuilderX;3.mysql环境:建议是用5.7版本均可4.硬件环境:windows 7/8/10 1G内存以上;_基于vue美食网站源码

oldwain随便写@hexun-程序员宅基地

文章浏览阅读62次。oldwain随便写@hexun链接:http://oldwain.blog.hexun.com/ ...

渗透测试-SQL注入-SQLMap工具_sqlmap拖库-程序员宅基地

文章浏览阅读843次,点赞16次,收藏22次。用这个工具扫描其它网站时,要注意法律问题,同时也比较慢,所以我们以之前写的登录页面为例子扫描。_sqlmap拖库

origin三图合一_神教程:Origin也能玩转图片拼接组合排版-程序员宅基地

文章浏览阅读1.5w次,点赞5次,收藏38次。Origin也能玩转图片的拼接组合排版谭编(华南师范大学学报编辑部,广州 510631)通常,我们利用Origin软件能非常快捷地绘制出一张单独的绘图。但是,我们在论文的撰写过程中,经常需要将多种科学实验图片(电镜图、示意图、曲线图等)组合在一张图片中。大多数人都是采用PPT、Adobe Illustrator、CorelDraw等软件对多种不同类型的图进行拼接的。那么,利用Origin软件能否实..._origin怎么把三个图做到一张图上

51单片机智能电风扇控制系统proteus仿真设计( 仿真+程序+原理图+报告+讲解视频)_电风扇模拟控制系统设计-程序员宅基地

文章浏览阅读4.2k次,点赞4次,收藏51次。51单片机智能电风扇控制系统仿真设计( proteus仿真+程序+原理图+报告+讲解视频)仿真图proteus7.8及以上 程序编译器:keil 4/keil 5 编程语言:C语言 设计编号:S0042。_电风扇模拟控制系统设计