Secure Programming Cookbook for C & C++ Recipes for Cryptography, Authentication, Networking, Input Validation & More. Covers Unix & Windows
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Sprache:Englisch
71,99 €
inkl. gesetzl. MwSt.,
Beschreibung
Produktdetails
Einband
Taschenbuch
Erscheinungsdatum
19.08.2003
Verlag
O'Reilly MediaSeitenzahl
762
Maße (L/B/H)
23,3/17,9/4,5 cm
Gewicht
1267 g
Auflage
1. Auflage
Sprache
Englisch
ISBN
978-0-596-00394-4
Secure Programming Cookbook for C and C++ is an important new resource for developers serious about writing secure code. It contains a wealth of solutions to problems faced by those who care about the security of their applications. It covers a wide range of topics, including safe initialization, access control, input validation, symmetric and public key cryptography, cryptographic hashes and MACs, authentication and key exchange, PKI, random numbers, and anti-tampering. The rich set of code samples provided in the book's more than 200 recipes will help programmers secure the C and C++ programs they write for both Unix® (including Linux®) and Windows® environments. Readers will learn:
* How to avoid common programming errors, such as buffer overflows, race conditions, and format string problems
* How to properly SSL-enable applications
* How to create secure channels for client-server communication without SSL
* How to integrate Public Key Infrastructure (PKI) into applications
* Best practices for using cryptography properly
* Techniques and strategies for properly validating input to programs
* How to launch programs securely
* How to use file access mechanisms properly
* Techniques for protecting applications from reverse engineering
The book's web site supplements the book by providing a place to post new recipes, including those written in additional languages like Perl, Java, and Python. Monthly prizes will reward the best recipes submitted by readers.
Secure Programming Cookbook for C and C++ is destined to become an essential part of any developer's library, a code companion developers will turn to again and again as they seek to protect their systems from attackers and reduce the risks they face in today's dangerous world.
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