• Title/Summary/Keyword: Linux Device Driver

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Design and Implementation of iSCSI Protocol Based Virtual USB Drive for Mobile Devices (모바일 장치를 위한 iSCSI 프로토콜 기반의 가상 USB 드라이브 설계 및 구현)

  • Choi, Jae-Hyun;Nam, Young Jin;Kim, JongWan
    • IEMEK Journal of Embedded Systems and Applications
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    • v.5 no.4
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    • pp.175-184
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    • 2010
  • This paper designs a virtual USB drive for mobile devices which gives an illusion of a traditional USB flash memory drive and provides capacity-free storage space over IP network. The virtual USB drive operating with a S3C2410 hardware platform and embedded linux consists of USB device driver, an iSCSI-enabled network stack, and a seamless USB/iSCSI tunneling module. For performance enhancement, it additionally provides a kernel-level seamless USB/iSCSI tunneling module and data sharing with symbol references among kernel modules. Experiments reveal that the kernel-level implementation can improve the I/O performance up to 8 percentage, as compared with the user-level implementation.

Design of the Error Test Module for a Linux Device Driver (리눅스 디바이스 드라이버 오류 테스트 모듈 설계)

  • Jang, Seung-Ju;Kim, Dong-Gun;Lim, Chae-Duk;Ma, Yu-Sung
    • Proceedings of the Korea Information Processing Society Conference
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    • 2005.11a
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    • pp.1437-1440
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    • 2005
  • 임베디드 리눅스 디바이스 드라이버의 개발이 증가하면서 리눅스 디바이스 드라이버에 대한 오류 테스트 기능을 가진 모듈의 필요성이 증가되고 있다. 본 논문은 리눅스 디바이스 드라이버를 위한 오류 테스트 모듈의 기본 개념을 제시하며, 기본 개념을 바탕으로 오류 테스트 모듈을 설계한다. 오류 테스트 모듈의 설계를 위해 리눅스 디바이스 드라이버의 메모리 관련 오류를 분류하고, 오류가 발생할 가능성이 존재하는 부분에 대한 검증을 위한 코드를 추가하여 테스트 모듈을 작성한다. 또한 작성된 오류 테스트 모듈의 실험을 진행하였다. 실험을 통해 리눅스 디바이스 드라이버의 오류 테스트 모듈이 동작을 확인 할 수 있다.

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Developing a CIS Camera Interface for Embedded Systems (임베디드 시스템에서 CIS 카메라 인터페이스의 구현)

  • Lee, Wan-Su;Oh, Sam-Kwan;Hwang, Hee-Yeung;Roh, Young-Sub
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.8 no.3
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    • pp.513-521
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    • 2007
  • Recently, camera function is one of the most primary functions out of the multimedia capabilities in the small mobile terminals. But, it has been difficult for implementing embedded devices with low cost because of not supporting camera interface in many SoCs. Thus, this paper presents a method of supporting camera function with ease for embedded devices which has not camera interface. For this purpose, the interface is implemented for a CMOS image sensor. The method is also provided that CIS(CMOS Image Sensor) is supported in the embedded system by programming the device driver.

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Multifunctional Interface Board for the implementation of IoT (사물 인터넷을 위한 다기능 인터페이스 보드 구현)

  • kim, Ka-Eul;Oh, Kang-Jin;Jo, Su-Min;Kwoen, Oh-Jun;Kim, Sun-Hyeng
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2015.10a
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    • pp.530-532
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    • 2015
  • Nowadays, it is animately studied on IoT(Internet of Things) on the strength of development of the short-range communications technology and smart device. In this paper, it made a interface board which is capable of short-range communications networks based on embedded linux and Android OS (operating system). and we also made a IoT sensor module and device driver module. This devices are easily separated and changed and also simply embodied in IoT, and It was implemented using the Android app that allows you to control the sensors.

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Design of the Virtual SD Memory Card System on the Embedded Linux (임베디드 리눅스에서의 가상 SD 메모리 카드 시스템 설계)

  • Moon, Ji-Hoon;Oh, Jae-Chul
    • The Journal of the Korea institute of electronic communication sciences
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    • v.9 no.1
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    • pp.77-82
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    • 2014
  • SD memory cards are widely used in portable digital devices, and most of them exploit NAND flash memory as their storage, so that they have a feature of storing users' important data safely with low costs. In case of using NAND flash memory as storage, however, there is no method to store users' data if memory capacity is insufficient when transferring a large volume of data. This paper proposes a virtual SD memory card system. It used a SD memory card device driver to process data requested from a host by exploiting external storage rather than by exploiting flash memory as a memory core for storing data to the SD memory card. For experiment, it used the FPGA-based SD card slave controller IP on the SMC controller with a S3C2450 ARM CPU to test.

A Porting Technique of WiFi Device on Android Platform (안드로이드 플랫폼에 WiFi 디바이스 탑재 기법)

  • Jeong, Uyeong;Ju, Youngkwan;Jeon, Joongnam
    • Journal of Convergence Society for SMB
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    • v.2 no.1
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    • pp.51-58
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    • 2012
  • Android platform is a powerful operating system developed on Linux 2.6 Kernel, and provides many features such as comprehensive libraries, a multimedia environment, and powerful interface for phone applications. Since Android is an open operating system, which can be installed in any vendors's equipments. Current smartphones as well as netbooks, navigations, car PCs, tablet PCs, Industrial PCs are used in various fields. It is difficult a lot that to mount to other devices on the Android platform or new devices. In this Paper, The process that data that occurred from a hardware was passed to the highest application and Android platform system for managing hardware devices were analyzed. Building Android & driver compilation environment, How to support the protocol for the use of WiFi in the kernel, How to Mount a WiFi device in the kernel, Device driver registration for the Android platform, WiFi Management Service Daemon (wpa_supplicant) and IP allocation services daemon (dhcpcd) registration, How to create a socket for communication between the daemon (wpa_supplicant) and HAL have been presented. In the experiment using the proposed method, WiFi devices were mounted on the Android platform in the X-86 & ARM family. Understanding the whole process of control flow in Android hierarchy is very important to porting a new device on it. The process included in this paper can help technicians who might encounter the obstacles in their porting works.

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Access Control using Secured Container-based Virtualization (보안 컨테이너 가상화 기반 접근 제어)

  • Jeong, Dong-hwa;Lee, Sunggyu;Shin, Youngsang;Park, Hyuncheol
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2017.10a
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    • pp.330-334
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    • 2017
  • Container-based virtualization reduces performance overhead compared with other virtualization technologies and guarantees an isolation of each virtual execution environment. So, it is being studied to block access to host resources or container resources for sandboxing in restricted system resource like embedded devices. However, because security threats which are caused by security vulnerabilities of the host OS or the security issues of the host environment exist, the needs of the technology to prevent an illegal accesses and unauthorized behaviors by malware has to be increased. In this paper, we define additional access permissions to access a virtual execution environment newly and control them in kernel space to protect attacks from illegal access and unauthorized behaviors by malware and suggest the Container Access Control to control them. Also, we suggest a way to block a loading of unauthenticated kernel driver to disable the Container Access Control running in host OS by malware. We implement and verify proposed technologies on Linux Kernel.

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Real Time Linux System Design (리얼 타임 리눅스 시스템 설계)

  • Lee, Ah Ri;Hong, Seon Hack
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.10 no.2
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    • pp.13-20
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    • 2014
  • In this paper, we implemented the object scanning with nxtOSEK which is an open source platform. nxtOSEK consists of device driver of leJOS NXJ C/Assembly source code, TOPPERS/ATK(Automotive real time Kernel) and TOPPERS/JSP Real-Time Operating System source code that includes ARM7 specific porting part, and glue code make them work together. nxtOSEK can provide ANSI C by using GCC tool chain and C API and apply for real-time multi tasking features. We experimented the 3D scanning with ultra sonic and laser sensor which are made directly by laser module diode and experimented the measurement of scanning the object by knowing x, y, and z coordinates for every points that it scans. In this paper, the laser module is the dimension of $6{\times}10[mm]$ requiring 5volts/5[mW], and used the laser light of wavelength in the 650[nm] range. For detecting the object, we used the beacon detection algorithm and as the laser light swept the objects, the photodiode monitored the ambient light at interval of 10[ms] which is called a real time. We communicated the 3D scanning platform via bluetooth protocol with host platform and the results are displayed via DPlot graphic tool. And therefore we enhanced the functionality of the 3D scanner for identifying the image scanning with laser sensor modules compared to ultra sonic sensor.

A Study On Low-cost LPR(License Plate Recognition) System Based On Smart Cam System using Android (안드로이드 기반 스마트 캠 방식의 저가형 자동차 번호판 인식 시스템 구현에 관한 연구)

  • Lee, Hee-Yeol;Lee, Seung-Ho
    • Journal of IKEEE
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    • v.18 no.4
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    • pp.471-477
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    • 2014
  • In this paper, we propose a low-cost license plate recognition system based on smart cam system using Android. The proposed system consists of a portable device and server. Potable device Hardware consists of ARM Cortex-A9 (S5PV210) processor control unit, a power supply device, wired and wireless communication, input/output unit. We develope Linux kernel and dedicated device driver for WiFi module and camera. The license plate recognition algorithm is consisted of setting candidate plates areas with canny edge detector, extracting license plate number with Labeling, recognizing with template matching, etc. The number that is recognized by the device is transmitted to the remote server via the user mobile phone, and the server re-transfer the vehicle information in the database to the portable device. To verify the utility of the proposed system, user photographs the license plate of any vehicle in the natural environment. Confirming the recognition result, the recognition rate was 95%. The proposed system was suitable for low cost portable license plate recognition device, it enabled the stability of the system when used long time by using the Android operating system.

A Performance Improvement of Linux TCP/IP Stack based on Flow-Level Parallelism in a Multi-Core System (멀티코어 시스템에서 흐름 수준 병렬처리에 기반한 리눅스 TCP/IP 스택의 성능 개선)

  • Kwon, Hui-Ung;Jung, Hyung-Jin;Kwak, Hu-Keun;Kim, Young-Jong;Chung, Kyu-Sik
    • The KIPS Transactions:PartA
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    • v.16A no.2
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    • pp.113-124
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    • 2009
  • With increasing multicore system, much effort has been put on the performance improvement of its application. Because multicore system has multiple processing devices in one system, its processing power increases compared to the single core system. However in many cases the advantages of multicore can not be exploited fully because the existing software and hardware were designed to be suitable for single core. When the existing software runs on multicore, its performance improvement is limited by the bottleneck of sharing resources and the inefficient use of cache memory on multicore. Therefore, according as the number of core increases, it doesn't show performance improvement and shows performance drop in the worst case. In this paper we propose a method of performance improvement of multicore system by applying Flow-Level Parallelism to the existing TCP/IP network application and operating system. The proposed method sets up the execution environment so that each core unit operates independently as much as possible in network application, TCP/IP stack on operating system, device driver, and network interface. Moreover it distributes network traffics to each core unit through L2 switch. The proposed method allows to minimize the sharing of application data, data structure, socket, device driver, and network interface between each core. Also it allows to minimize the competition among cores to take resources and increase the hit ratio of cache. We implemented the proposed methods with 8 core system and performed experiment. Experimental results show that network access speed and bandwidth increase linearly according to the number of core.