Click here to download:Webserver for Embedded Systems
Web Server for Embedded Systems
1. TCP/IP-based HTTP as Communication Platform
2. Functional principle of a Web Server
3. Dynamic generated HTML Pages
4. Web Server running under Linux
Showing posts with label Embedded systems. Show all posts
Showing posts with label Embedded systems. Show all posts
Friday, February 13, 2009
Wednesday, February 11, 2009
C Support for Multiple Address Spaces in Embedded Systems
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5:24 AM
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TechnALLogy
Labels: Address Space, C and Datastructures, Embedded systems
Labels: Address Space, C and Datastructures, Embedded systems
Click to download: C Support for Multiple Address Spaces in Embedded Systems
C Support for Multiple Address Spaces in Embedded Systems
A case for named address space
Named address space on execution space
C Support for Multiple Address Spaces in Embedded Systems
A case for named address space
Named address space on execution space
Monday, February 9, 2009
An IO Device Driver Model and Framework for Embedded Systems
Click here to download:An IO Device Driver Model and Framework for Embedded Systems
An I/O Device Driver Model and Framework for Embedded Systems†
David B. Stewart
Abstract: Device drivers are used to provide a layer of
abstraction to hardware input/output (I/O) devices, so that
higher levels of software can access devices in a uniform,
hardware-independent fashion. Our objective is to develop a
device driver framework for embedded systems, that includes
a software model, interface specification, and straightforward
method for realization in any real-time operating system.
We address the many problems associated with
traditional methods of creating device drivers and have
developed a simple and straightforward framework that
addresses the needs of embedded systems and leads to the
development of CASE tools for device driver design. The
framework consists of separate definitions for basic I/O drivers,
sensor-actuator interfaces, and special purpose processors.
This paper specifically describes the framework for
basic I/O drivers.
An I/O Device Driver Model and Framework for Embedded Systems†
David B. Stewart
Abstract: Device drivers are used to provide a layer of
abstraction to hardware input/output (I/O) devices, so that
higher levels of software can access devices in a uniform,
hardware-independent fashion. Our objective is to develop a
device driver framework for embedded systems, that includes
a software model, interface specification, and straightforward
method for realization in any real-time operating system.
We address the many problems associated with
traditional methods of creating device drivers and have
developed a simple and straightforward framework that
addresses the needs of embedded systems and leads to the
development of CASE tools for device driver design. The
framework consists of separate definitions for basic I/O drivers,
sensor-actuator interfaces, and special purpose processors.
This paper specifically describes the framework for
basic I/O drivers.
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