Showing posts with label wireless. Show all posts
Showing posts with label wireless. Show all posts

Saturday, April 18, 2009

Wireless Attacks and Penetration Testing

Wireless Attacks and Penetration Testing (part 1 of 3)
Jonathan Hassell 2004-06-03
http://www.securityfocus.com/infocus/1783

Wireless Attacks and Penetration Testing (part 2 of 3)
Jonathan Hassell 2004-06-14
http://www.securityfocus.com/infocus/1785

Wireless Attacks and Penetration Testing (part 3 of 3)
Jonathan Hassell 2004-07-26
http://www.securityfocus.com/infocus/1792


Figure 1: Sniffing packets with AirSnort

Saturday, February 14, 2009

One of my student just copy paste everything from here for their wireless assignment.. got u! :P

http://technet.microsoft.com/en-us/library/bb457019.aspx

2.4GHz vs. 5GHz Deployment Considerations

When deploying a wireless LAN, companies must make a decision on whether to use network interface cards (NICs) and access points designed to operate in the 2.4GHz or 5GHz band (or both). Not too long ago the choice of frequency band was easy, when only 2.4GHz (i.e., 802.11b) products were available. Now, 802.11b and 802.11g products are both available that operate in the 2.4GHz band, while 802.11a use the 5GHz band. This can cause confusion when designing a WLAN, so let's take a look at what you need to consider when making this critical resolution.

http://www.wi-fiplanet.com/tutorials/article.php/1569271

Sunday, February 8, 2009

Wireless threats, vulnerabilities and solution


Wireless networks broadcast their packets using radio frequency or optical wavelengths. A modern laptop computer can listen in. Worse, an attacker can manufacture new packets on the fly and persuade wireless stations to accept his packets as legitimate.
The step by step procerdure in wireless hacking can be explained with help of different topics as follows:-

1) Stations and Access Points :- A wireless network interface card (adapter) is a device, called a station, providing the network physical layer over a radio link to another station.
An access point (AP) is a station that provides frame distribution service to stations associated with it. 
The AP itself is typically connected by wire to a LAN. Each AP has a 0 to 32 byte long Service Set Identifier (SSID) that is also commonly called a network name. The SSID is used to segment the airwaves for usage.

2) Channels :- The stations communicate with each other using radio frequencies between 2.4 GHz and 2.5 GHz. Neighboring channels are only 5 MHz apart. Two wireless networks using neighboring channels may interfere with each other.

3) Wired Equivalent Privacy (WEP) :- It is a shared-secret key encryption system used to encrypt packets transmitted between a station and an AP. The WEP algorithm is intended to protect wireless communication from eavesdropping. A secondary function of WEP is to prevent unauthorized access to a wireless network. WEP encrypts the payload of data packets. Management and control frames are always transmitted in the clear. WEP uses the RC4 encryption algorithm.

4) Wireless Network Sniffing :- Sniffing is eavesdropping on the network. A (packet) sniffer is a program that intercepts and decodes network traffic broadcast through a medium. It is easier to sniff wireless networks than wired ones. Sniffing can also help find the easy kill as in scanning for open access points that allow anyone to connect, or capturing the passwords used in a connection session that does not even use WEP, or in telnet, rlogin and ftp connections.

5 ) Passive Scanning :- Scanning is the act of sniffing by tuning to various radio channels of the devices. A passive network scanner instructs the wireless card to listen to each channel for a few messages. This does not reveal the presence of the scanner. An attacker can passively scan without transmitting at all. 

6) Detection of SSID :- The attacker can discover the SSID of a network usually by passive scanning because the SSID occurs in the following frame types: Beacon, Probe Requests, Probe Responses, Association Requests, and Reassociation Requests. Recall that management frames are always in the clear, even when WEP is enabled.
When the above methods fail, SSID discovery is done by active scanning 

7) Collecting the MAC Addresses :- The attacker gathers legitimate MAC addresses for use later in constructing spoofed frames. The source and destination MAC addresses are always in the clear in all the frames.

8) Collecting the Frames for Cracking WEP :- The goal of an attacker is to discover the WEP shared-secret key. The attacker sniffs a large number of frames An example of a WEP cracking tool is AirSnort ( http://airsnort.shmoo.com ).

9) Detection of the Sniffers :- Detecting the presence of a wireless sniffer, who remains radio-silent, through network security measures is virtually impossible. Once the attacker begins probing (i.e., by injecting packets), the presence and the coordinates of the wireless device can be detected.

10) Wireless Spoofing :- There are well-known attack techniques known as spoofing in both wired and wireless networks. The attacker constructs frames by filling selected fields that contain addresses or identifiers with legitimate looking but non-existent values, or with values that belong to others. The attacker would have collected these legitimate values through sniffing.

11) MAC Address Spoofing :- The attacker generally desires to be hidden. But the probing activity injects frames that are observable by system administrators. The attacker fills the Sender MAC Address field of the injected frames with a spoofed value so that his equipment is not identified.

12) IP spoofing :- Replacing the true IP address of the sender (or, in rare cases, the destination) with a different address is known as IP spoofing. This is a necessary operation in many attacks.

13) Frame Spoofing :- The attacker will inject frames that are valid but whose content is carefully spoofed.

14) Wireless Network Probing :-
 The attacker then sends artificially constructed packets to a target that trigger useful responses. This activity is known as probing or active scanning.

15) AP Weaknesses :-
 APs have weaknesses that are both due to design mistakes and user interfaces

16) Trojan AP :- An attacker sets up an AP so that the targeted station receives a stronger signal from it than what it receives from a legitimate AP.

17) Denial of Service :- A denial of service (DoS) occurs when a system is not providing services to authorized clients because of resource exhaustion by unauthorized clients. In wireless networks, DoS attacks are difficult to prevent, difficult to stop. An on-going attack and the victim and its clients may not even detect the attacks. The duration of such DoS may range from milliseconds to hours. A DoS attack against an individual station enables session hijacking.

18) Jamming the Air Waves :- A number of consumer appliances such as microwave ovens, baby monitors, and cordless phones operate on the unregulated 2.4GHz radio frequency. An attacker can unleash large amounts of noise using these devices and jam the airwaves so that the signal to noise drops so low, that the wireless LAN ceases to function.

19) War Driving :- Equipped with wireless devices and related tools, and driving around in a vehicle or parking at interesting places with a goal of discovering easy-to-get-into wireless networks is known as war driving. War-drivers (http://www.wardrive.net) define war driving as “The benign act of locating and logging wireless access points while in motion.” This benign act is of course useful to the attackers. 
Regardless of the protocols, wireless networks will remain potentially insecure because an attacker can listen in without gaining physical access.

Tips for Wireless Home Network Security

1) Change Default Administrator Passwords (and Usernames)
2) Turn on (Compatible) WPA / WEP Encryption
3) Change the Default SSID
4) Disable SSID Broadcast 
5) Assign Static IP Addresses to Devices
6) Enable MAC Address Filtering 
7) Turn Off the Network During Extended Periods of Non-Use
8) Position the Router or Access Point Safely 

http://www.insecure.in/wireless_hacking.asp

List of Wireless Certification

CISCO

http://www.cisco.com/web/learning/le3/learning_career_certifications_and_learning_paths_home.html

1. CCNA Wireless Certification


Cisco Certified Network Associate Wireless (CCNA® Wireless) validates associate-level knowledge and skills to configure, implement and support of wireless LANs, specifically those networks using Cisco equipment. With a CCNA Wireless certification, network professionals can support a basic wireless network on a Cisco WLAN in a SMB to enterprise network. The CCNA Wireless curriculum includes information and practice activities to prepare them for configuring, monitoring and troubleshooting basic tasks of a Cisco WLAN in SMB and Enterprise networks.

http://www.cisco.com/web/learning/le3/le2/le0/le2/learning_certification_type_home.html

2. CCIE Wireless Certification

The Cisco CCIE Wireless certification assesses and validates wireless expertise. Candidates who pass the CCIE Wireless certification exams demonstrate broad theoretical knowledge of wireless networking and a solid understanding of wireless local area networking (WLAN) technologies from Cisco, the market leader in WLAN technology.

http://www.cisco.com/web/learning/le3/ccie/wireless/index.html

Cisco Advanced Wireless LAN Design Specialist



The Cisco Advanced Wireless LAN Design Specialist will demonstrate the ability to successfully design solutions using the advanced feature set of Cisco wireless products and based on a validated understanding of radio frequency and antenna theory, 802.11a/b/g standards, site survey and configuration of controllers and APs. Solutions include voice over WLAN, outdoor mesh and secure wireless.

http://www.cisco.com/web/learning/le3/le2/le41/le86/le95/learning_certification_type_home_extra_level.html

CWNA® (Certified Wireless Network Administrator) 

http://www.cwnp.com/cwna/

Monday, January 26, 2009

Comparison of Wireless LAN Standards


http://www.mobileinfo.com/wireless_lans/802.11a_802.11b.htm

SANS InfoSec Reading Room - Wireless Access

Various great papers on Wireless Security can be found here...

Crack WEP?

How To Crack WEP - Part 1 - 3
How To Crack WEP - Part 1: Setup & Network Recon

How To Crack WEP - Part 2: Performing the Crack

How To Crack WEP - Part 3: Securing your WLAN

WEP: Dead Again, Part 1
Michael Ossmann 2004-12-14

WEP: Dead Again, Part 2
Michael Ossmann 2005-03-08

How RFID Works

Long checkout lines at the grocery store are one of the biggest complaints about the shopping experience. Soon, these lines could disappear when the ubiquitous Universal Product Code (UPC) bar code is replaced by smart labels, also called radio frequency identification (RFID) tags. RFID tags are intelligent bar codes that can talk to a networked system to track every product that you put in your shopping cart.

Read more here...

http://electronics.howstuffworks.com/rfid.htm/printable

Wireless and Mobile Security/Keselamatan Tanpa Wayar dan Mudahalih

Subject Name

Wireless and Mobile Security

Subject Code

IWD 2243

Status

Teras Major

Level

Diploma

Credit hours

3 hours

Pre Requisite

IWD2323- Computer Security

Assessment

Final examination – 40%

Mid-semester test – 20%,

Course Work- 40%

Semester Thought

Year 2, Semester 2

Synopsis

The use of wireless networks and mobile communications has become a major trend these days.  Wireless and mobile communications offer many benefits such as portability and flexibility, increased productivity, and lower installation costs. Wireless technologies cover a broad range of differing capabilities oriented toward different uses and needs. Wireless local area network (WLAN) devices, for instance, allow users to move their laptops from place to place within their offices without the need for wires and without losing network connectivity.  Mobile and wireless security is therefore of high priority. Security measures taken depend on the different protocols, standards, techniques and systems available. A brief introduction to security protocols, standards and corresponding technologies is given in this subject particularly on 2G, 2.5G, 3G and wireless local area networks. Standards, like WAP, IEEE 802.11 and Bluetooth are included as well as the awareness of the vulnerabilities, threats and countermeasures associated with these wireless technologies

Learning Objective

Aim

In this course, student should be able to gain a solid understanding of the security weaknesses of and threats to wireless LANs ,  understand wireless network design and deployment ,  implement the best security techniques currently available ,  introduce the latest security software and protocols for wireless LANs ,  introduce the best resources for wireless security issues and decisions to the organization

Course learning Outcomes

Upon successful completion of the course, the students should be able to:

  1. Have a clear understanding of the full range of wireless technologies in common use and how to implement them safely.
  2. Understand how to secure wireless systems and prevent threats posed by hackers.
  3. Understand how wireless devices, components and protocols work, how to determine the best wireless solutions for their environments, and how to implement, secure and maintain these solutions.

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