Computer Virus Archives

computer viruses

The term usually used to define a computer virus is:' A computer virus is often malicious software which replicates itself'

- COMPUTER VIRUSES ARE BASICALLY PROGRAMS, LIKE A SPREADSHEET OR A WORD PROCESSOR.

- PROGRAMS WHICH CAN INSERT EXECUTABLE COPIES OF ITSELF INTO OTHER PROGRAMS.

- PROGRAMS THAT MANIPULATES PROGRAMS, MODIFIES OTHER PROGRAMS AND REPRODUCE ITSELF IN THE PROCESS.

 

*************************************************************

* Attack specific              * Attack specific

*  body cells                   *      programs (*.COM *.EXE)

*************************************************************

* Modify the genetic information * Manipulate the program:

* of a cell other than previous    *    It performs tasks

*************************************************************

*   New viruses grow in the      * The infected program   produces

*          infected cell itself  *          virus programs

*************************************************************

* Infected cells aren't infected * Program are infected only once

* more than once by the same cell*               by most programs

*************************************************************

* An infected organism may not   * The infected program can work

* exhibit symptoms for a while   * without error for a long time

*************************************************************

* Not all cells with which the   * Program can be made immune

* virus contact are infected     * against certain viruses

*************************************************************

* Viruses can mutate and thus    * Virus program can modify

* cannot be clearly told apart   * themselves & possibly escape

*                                * detection this way

*************************************************************

However, " computer virus " is just another name for a class of programs.  They can do anything that another program can.

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The only distinguishing characteristic is the program has ability to reproduce and infect other programs.

- PROGRAM WHICH HAS CAPABILITY TO EXECUTE THE MODIFICATION ON A NUMBER OF PROGRAMS.

- CAPABILITY TO RECOGNIZE A MODIFICATION PERFORMED ON A PROGRAM.(THE ABILITY TO PREVENT FURTHER MODIFICATION OF THE SAME PROGRAM UPON SUCH RECONDITION.)

- MODIFIED SOFTWARE ASSUME ATTRIBUTES 1 TO 4.

A computer virus can only be put into your system either by yourself or someone else.  One way in which a virus can be put into your computer is via a Trojan Horse.

-TROJAN HORSE IS USUALLY CONTAMINATED IN DISKS WHICH ARE PARTICULARY PIRATED COPIES OF SOFTWARE.  IT IS SIMPLY A DAMAGING PROGRAM DISGUISED AS AN INNOCENT ONE.  MANY VIRUSES MAYBE HIDDEN IN IT, BUT T.H. THEMSELVES DO NOT HAVE THE ABILITY TO REPLICATE.

Viruses also can be spread through a Wide Area network (WAN) or a Local Area Network (LAN) by telephone line.

For example down loading a file from a local BBS.

BBS(bulletin board system)-AN Electronic mailbox that user can access to send or receive massages.

However, there seems to be countless numbers of ways to become infected.  Every-time you down loads a program from somewhere or borrowed a disk from a friend, you are taking a risk of getting infected.

a.> Fill Up your P.C. with Garbage:As a virus reproduces, it takes up space.  This space cannot be used by the operator.  As more copies of the virus are made, the memory space is lessened.

b.> Mess Up Files:Computer files have a fixed method of being stored.  With this being the case, it is very easy for a computer virus to affect the system so some parts of the accessed files cannot be located.

c.> Mess Up FAT:FAT(the File Allocation Table) is the method used to contain the information required about the location of files stored on a disk.  Any allocation to this information can cause endless trouble.

d.> Mess Up The Boot Sector:The boot sector is the special information found on a disk.Changing the boot sector could result in the inability of the computer to run.

e.> Format a Disk/ Diskette:A virus can simply format a disk as the operator would with the format or initialise command.

f.> Reset The Computer:To reset the computer, the operator or the user only has to press a few keys.  The virus can do this by sending the codes to the operating system.

g.> Slowing Things Down: As the name implies, the object of the virus is to slow down the running line of the program.

h.> Redefine Keys: The computer has been program to recognize that certain codes/ signals symbolize a certain keystroke.  The virus could change the definition of these keystrokes.

i.> Lock The Keyboard: redefining all keys into an empty key.

When signs of a virus attack have been recognized,the virus has already reproduced itself several times.Thus, to get rid of the virus, the user has to hack down and destroy each one of these copies.  The easier way is to:

1. Have the original write protected back-up copy of your operating system on a diskette.

2. Power down the machine.

3. Boot up the system from the original system diskette.

4. Format the hard disk.

5. Restore all back-ups and all executable program.

*If it's not effective, power down and seek for professional help*

a.> OVER-WRITING VIRUSES

b.> NON-OVERWRITNG VIRUSES

c.> MEMORY RESENDENT VIRUSES

Viruses are a day to day reality.  Different activities leads to different exposure.  To protect oneself from a virus, several things can be done:

1. Avoid them in the first place.

2. Discovering and getting rid of them.

3. Repairing the damage.

The simple thing that can cut down on exposure rate are to:avoid pirate software, checking programs that have been down loaded form the BBS before running them.  Make sure that you have sufficient backups.

The pace at which new antiviral products have been pouring onto the market has accelerated rapidly since the major infection of 1988.  Indeed, by early 1989, there were over 60 proprietary products making varied claims for effectiveness in preventing or detecting virus attacks.

 

 

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Suggestions For Protecting Yourself From Computer Viruses

PC viruses are a typical cause of many pc difficulties and failures. Unfortunately, personal computer viruses can spread incredibly quickly if your laptop or computer is not properly protected. And unattended, a personal computer virus can certainly make your computer essentially unusable! Possessing a virus may also open you up to a host of various other issues, which includes id theft and email hacking. So it's obviously incredibly crucial to safeguard your self from viruses.

But numerous people are unsure as to how greatest to defend themselves from computer viruses. There are so several distinct anti-virus items obtainable that it might be difficult to decide on one. The excellent news is that numerous anti-virus programs work within the identical way -- by preventing the virus from infecting key system files within your pc. Infection can occur just by going to an infected web site or downloading a file which has the virus. The virus is frequently kept "isolated" on your computer, thus permitting you to delete the virus whenever you want with no risk to your system.

Having said that, the most critical aspect of successfully utilizing any anti-virus program is keeping the program's virus definitions up-to-date. New computer viruses are created continually, so it's vitally essential to ensure that your system is protected against the latest threats. An excellent anti-virus program will update automatically, so be sure not to disable this important feature or you might be leaving your computer at risk of new virus threats. In most anti-virus programs, it is possible to change a setting within the program that affects the time each day that the program will automatically check for new virus definition updates, so it is possible to change this task to be done throughout a time when your laptop or computer will likely be on-line. It won't do any very good to set your virus definitions to update at three AM every night when you always turn your computer off overnight.

Another aspect of preventing personal computer viruses is avoiding internet websites which are likely to harm your laptop or computer. The search engine Google will alert you if a search result will take you to a web-site that has been reported to contain viruses, Trojans, malware, or other programs that are prone to attack your computer. Internet sites offering "free downloads" are usually causes of malicious software that will harm your laptop or computer, so keep away from these types of internet sites unless you know the web-site is legitimate.

In addition, quite a few viruses spread through e-mail, specifically by way of attachments, so don't download e-mail attachments sent by persons you don't know. Email viruses can even be sent by persons you know and trust -- one of the most important ways laptop or computer viruses spread is via an infected personal computer automatically sending a virus-infected email to everyone within the infected computer's e-mail contacts list. If an e-mail attachment seems suspicious, try performing a Google search for the file name or the subject line of the email. That way, you may find out if the seemingly harmless attachment is actually a harmful computer virus.

Are you interested in fighting personal computer viruses as a profession? If so, consider computer forensics training.

Computer forensics degrees are at the cutting edge of battling computer virus creators.


Article from articlesbase.com

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Computer Viruses - a Risk Worth Taking

If you've never been the victim of a computer virus, you may think that all of the uproar over these nasty little programs is making much ado out of nothing. You may even be thinking that computer security experts and anti-virus companies are using scare tactics to sell anti-virus software. After all, the bigger the problem, the more software people buy. Today, the anti-virus business is worth several billion dollars and it shows no sign of slowing down.

So, with all of this money at risk, you are certainly justified in wondering whether computer viruses really are as big a problem as the industry says they are.

Unfortunately, the answer is that they absolutely are. If you get a virus, you could actually lose your money, your identity and your computer's hard drive. With new viruses being developed constantly, the problem continues to grow. While many viruses are more annoying than destructive, even a "harmless" virus can use up valuable resources. The worst viruses can spread worldwide in a few days and wreak unbelievable havoc. The damage from one infamous virus can mean billions of dollars in lost business opportunities and damaged equipment.

With all of this bad news, is there any good news for computer users? Take this quick risk quiz:

1. Does your computer have antivirus software installed on it?

If you can say yes, you are much less a risk than people that don't have antivirus software. If you say no, than it is only a matter of time until you find out about viruses personally.

2. Does your computer have a firewall installed on it?

If your response is yes again, you can relax a bit. You're doing all you can do software wise to keep your computer safe from a deadly virus. If you say no again, you are leaving your computer wide open for an attack.

Despite all of the media attention paid to antivirus software, people still have the "It can't happen to me." mentality. They laugh off warnings to protect their computers and say that they are working just fine. They think that because they never actually initiate a file download or send and receive files with friends, they are safe. A few months go by and suddenly they can't get their computers to boot up forever and then when they finally do start, they plod along at a snail's pace.

To make things worse, quite a few of these computer users who leave their computers unprotected are actually taking classes for computer related careers. They are completely at sea when they have to try to repair the damage caused by a virus filled computer. Perhaps a basic class on computer care and repair is in order!

You are probably wondering how viruses develop anyway. Hackers are the people creating these nasty bugs, right? Actually, while some hackers may decide to create computer viruses, most of them spend all of their waking hours attempting to break in to the most secure and top secret systems they can find. People who write viruses are people with an ax to grind. They want to send a wake up message or show people that they are superior to them. Today, many people are concerned that computer viruses could be used as a terrorist weapon.

If you do get a computer virus, will you lose everything on your hard drive? It actually is rare for this type of virus to spread very fast or far. Annoying viruses that stop you from starting your computer or using windows or those that mail spoof emails to your entire email address book are much more common. The hard drive is usually recoverable when the computer has one of these viruses.

What about your financial and personal information? Are viruses really likely to swipe them from the computer. Absolutely. This is a common reason that viruses are created and spread.

Is there any way to keep your computer virus free? While no anti-virus software is foolproof, installing one of these programs can provide some protection. While there are anti-virus software programs that provide better protection, any of them will help somewhat. Even free anti-virus programs are actually able to ward off at least some viruses.

After reading this information on viruses and anti-virus software, you have probably resolved to get protection for your computer right away. If so, you won't be sorry. Dealing with viruses after you are infected is frustrating and time consuming. It is so much easier to keep a disaster from happening instead of trying to reconstruct a ton of missing data and worry about identity or financial thefts after the fact.

Does your computer have a virus? Dozens of new viruses appear every single day and if you're not using antivirus software your identity and data is at risk. Find out what the best antivirus software is by visiting www.cpusecurity.com today.


Article from articlesbase.com

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Computer Viruses 2011 Tips in Urdu

When we speak of computer viruses 2011 tips in urdu, we need to understand that the world of computer viruses is constantly evolving. As computer security features become more advanced, the viruses that affect these machines also become more varied in nature and stronger as well. Each year there are plenty of new computer viruses that can potentially harm our machines and extract useful information from it.

Computer Tips and Tricks

Beauty Tips online

Health and Fitness

A computer virus is nothing but a software program that copies itself and spreads to various locations once it enters a machine. Once this happens, the machine starts malfunctioning and in most cases, it interacts with a remote host and transfers some data which could be vital and confidential. The antivirus software that we install on our machines, needs to be updated constantly because failure to do so will render the program unable to deal with a new type of computer virus.

Dangerous Computer Viruses 2010

There are so many different types of computer viruses that show up from time to time, so it is important to understand the differences between these various types. Sometimes computer viruses are also known as malicious software, or malware, and this includes various categories of programs like trojans, computer worms, spyware, rootkits and some unethical adware. It is also important to know the answer to the question what is the difference between malware, adware and spyware.

The emergence of new computer viruses in 2010 has made the world more conscious of the threat that these programs bring. With the rising popularity of various social networking websites, these are the areas where the most viruses are being found nowadays. It is no surprise that the most dangerous computer viruses 2010 are being found on these platforms.

McAfee, the antivirus developer, has built a knack of accurately predicting where the years major virus threats will come from. They say that the biggest threat will undoubtedly arise from these social networking platforms, and also from the thousands of apps that people have started downloading onto their smartphones. Even banking transactions will need to be performed under more secure circumstances, since they are facing a greater risk than ever. The issue of how to get rid of computer viruses is something that can be tackled more effectively if we have some knowledge about where the potential risks could come from.

Current Computer Viruses of 2010

As of October 19, 2010 here are some computer viruses 2010 that you should be guarding yourself against. The best way to do so is to update your antivirus, assuming that you have the best antivirus software installed on your machine already. Stay away from the free antivirus programs that you get online, as they are not completely reliable.
•Mal/VB-LP
•Mal/Krap-I
•W32/AutoRun-BJS
•Troj/FakeAV-BVP
•Troj/FakeAV-BVQ
•Troj/Cosmu-K
•Troj/Mdrop-CZQ
•Troj/BredoZp-BH
•Troj/Agent-PAQ
•Troj/Agent-PAP
You should also be on the lookout for PC AntiSpyware 2010. This is one of the so-called free antispyware softwares that you can download off the Internet, when in reality this is a malicious software itself. This is one of the newest computer viruses 2010, and more and more people are beginning to get affected by this virus. The program basically loads your machine with harmless files and then detects them as virus risks when you scan your machine using the program. It thus tries to fool you into buying the program outright. This is a very similar virus to Home Antivirus 2010, which is another of the latest computer viruses of 2010. It is necessary to carry out spyware protection and adware protection on your machine, to guard against such programs.

Here are some more recent computer viruses of 2010 that you should be guarding your machine against, and this list was compiled by McAfee.
•W32/Autorun.worm.q
•Stuxnet
•MSIL/Terdial.D
•Exploit-CVE2010-2568
•Exploit-CVE2010-0814
•W32/VBMania@MM
•MSFT Win SMB Val Vuln
•Ms IE HO RCE 2746
•Ms Wind New Cl 3223
•Ms .NET JIT 3228
•Ms Wind TLSv1 3229
•Ms WindOTFont 2741
All of these computer viruses 2010 can be very harmful for your desktop computer or laptop computer, and you should take all the necessary precautions that you can to guard yourself against this. Be responsible when you use your machine, and do not hesitate to spend some money to get a good antivirus software. You must also take the time out to regularly update this antivirus software from time to time.

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40th Anniversary of the Computer Virus
Orome1 writes "This year marks the 40th anniversary of Creeper, the world's first computer virus. From Creeper to Stuxnet, the last four decades saw the number of malware instances boom from 1,300 in 1990, to 50,000 in 2000, to over 200 million in 2010. Besides sheer quantity, viruses, which were originally used as academic proofs of concept, quickly turned into geek pranks, then evolved into ...
Read more on Slashdot

Viruses"computer Viruses"

A virus is a program that copies itself without the knowledge of the computer user. Typically, a virus spreads from one computer to another by adding itself to an existing piece of executable code so that it is executed when its host code is run.   If a virus if found, you shouldn't panic or be in a hurry, and you should work systematically. Don't rush!

A Viruse may be classified by it's method of concealment (hiding).  Some are called stealth viruses because of the way that they hide themselves, and some polymorphic because of the way they change themselves to avoid scanners from detecting them.

The most common classification relates to the sort of executable code which the virus attaches itself to. These are:

¨ Partition Viruses

¨ Boot Viruses

¨ File Viruses

¨ Overwriting Viruses

As well as replicating, a virus may carry a Damage routine.

There is also a set of programs that are related to viruses by virtue of their intentions, appearances, or users likely reactions.  For example:

¨ Droppers

¨ Failed viruses

¨ Packagers

¨ Trojans

¨ Jokes

¨ Test files

THE DAMAGE ROUTINE

Damage is defined as something that you would prefer not to have happened. It is measured by the amount of time it takes to reverse the damage.

Trivial damage happens when all you have to do is get rid of the virus. There may be some audio or visual effect; often there is no effect at all.

Minor damage occurs when you have to replace some or all of your executable files from clean backups, or by re-installing. Remember to run FindVirus again afterwards.

Moderate damage is done when a virus trashes the hard disk, scrambles the FAT, or low-level formats the drive. This is recoverable from your last backup. If you take backups every day you lose, on average, half a day's work.

Major damage is done by a virus that gradually corrupts data files, so that you are unaware of what is happening. When you discover the problem, these corrupted files are also backed up, and you might have to restore a very old backup to get valid data.

Severe damage is done by a virus that gradually corrupts data files, but you cannot see the corruption (there is no simple way of knowing whether the data is good or bad). And, of course, your backups have the same problem.

Unlimited damage is done by a virus that gives a third party access to your network, by stealing the supervisor password. The damage is then done by the third party, who has control of the network.

CLASSIFICATION OF VIRUSES

Stealth Viruses

If a stealth virus is in memory, any program attempting to read the file (or sector) containing the virus is fooled into believing that the virus is not there, as it is hiding. The virus in memory filters out its own bytes, and only shows the original bytes to the program.

There are three ways to deal with this:

1. Cold Boot from a clean DOS floppy, and make sure that nothing on the hard disk is executed. Run any anti-virus software from floppy disk. Unfortunately, although this method is foolproof, relatively few people are willing to do it.

2. Search for known viruses in memory. All the virus scanners do this when the programs are run.

3. Use advanced programming techniques to probe the confusion that the virus causes. A process known as the "Anti-Stealth Methodology" in some scanners can be used for this.

Polymorphic Viruses

A polymorphic virus is one that is encrypted, and the decryptor/loader for the rest of the virus is very variable. With a polymorphic virus, two instances of the virus have no sequence of bytes in common. This makes it more difficult for scanners to detect them.

Many scanners use the "Fuzzy Logic" technique and a "Generic Decryption Engine" to detect these viruses.

The Partition and Partition Viruses

The partition sector is the first sector on a hard disk. It contains information about the disk such as the number of sectors in each partition, where the DOS partition starts, plus a small program. The partition sector is also called the "Master Boot Record" (MBR).

When a PC starts up, it reads the partition sector and executes the code it finds there. Viruses that use the partition sector modify this code.

Since the partition sector is not part of the normal data storage part of a disk, utilities such as DEBUG will not allow access to it. However, it is possible to use Inspect Disk to examine the partition sector. A floppy disk does not have a partition sector.

How to Remove a Partition Sector (MBR) Virus

1. Cold Boot from a clean DOS diskette.

2. Run the DOS scanner.

3. Select the drive to clean and "Repair" it.

4. Follow the instructions.

The Boot Sector and Boot Sector Viruses

The boot sector is the first sector on a floppy disk.  On a hard disk it is the first sector of a partition. It contains information about the disk or partition, such as the number of sectors, plus a small program.

When the PC starts up, it attempts to read the boot sector of a disk in drive A:. If this fails because there is no disk, it reads the boot sector of drive C:. A boot sector virus replaces this sector with its own code and moves the original elsewhere on the disk.

Even a non-bootable floppy disk has executable code in its boot sector. This displays the "not bootable" message when the computer attempts to boot from the disk. Therefore, a non-bootable floppy can still contain a virus and infect a PC if it is inserted in drive A: when the PC starts up.

File Viruses

File viruses append or insert themselves into executable files, typically .COM and .EXE programs.

A direct-action file virus infects another executable file on disk when its 'host' executable file is run.

An indirect-action (or TSR - Terminate and Stay Resident) file virus installs itself into memory when its 'host' is executed, and infects other files when they are subsequently accessed.

Overwriting Viruses

Overwriting viruses overwrite all or part of the original program. As a result, the original program doesn't run. Overwriting viruses are not, therefore, a real problem - they are extremely obvious, and so cannot spread effectively.

APPEARANCES AND INTENTIONS OF VIRUSES

Droppers

Droppers are programs that have been written to perform some apparently useful job but, while doing so, write a virus out to the disk. In some cases, all that they do is install the virus (or viruses).

A typical example is a utility that formats a floppy disk, complete with Stoned virus installed on the boot sector.

Failed Viruses

Sometimes a file is found that contains a 'failed virus'. This is the result of either a corrupted 'real' virus or simply a result of bad programming on the part of an aspiring virus writer. The virus does not work - it hangs when run, or fails to infect.

Many viruses have severe bugs that prevent their design goals - some will not reproduce successfully or will fail to perform their intended final actions (such as corrupting the hard disk). In general many virus authors are very poor programmers.

Packagers

Packagers are programs that in some way wrap something around the original program. This could be as an anti-virus precaution, or for file compression. Packagers can mask the existence of a virus inside.

Trojans and Jokes

A Trojan is a program that deliberately does unpleasant things, as well as (or instead of) its declared function. They are not capable of spreading themselves and rely on users copying them.

A Joke is a harmless program that does amusing things, perhaps unexpectedly. We include the detection of a few jokes in the Toolkit, where people have found particular jokes that give concern or offence.

Test files

Test files are used to test and demonstrate anti-virus software, in the context of viruses.  They are not viruses - simply small files that are recognised by the software and cause it to simulate what would happen if it had found a virus. This allows users to see what happens when it is triggered, without needing a live virus.

METHODS OF REMOVING VIRUSES

How to Remove a Boot Virus from a Hard Disk

1. Cold Boot from a clean DOS diskette.

2. Run the scanner.

3. Select the drive to clean and "Repair" it.

An alternative method is as follows:

1. Cold Boot from a clean DOS diskette.

2. Type:

SYS C: at the DOS prompt. (if C drive is infected)

The clean DOS diskette should be the same version of DOS that  is on the hard disk.

How to Remove a Boot Virus from a Floppy

1. Cold Boot from a clean DOS diskette.

2. Run the scanner.

3. Make sure to "Replace the Boot Sector" of the floppy drive.

If you find a new virus...

If you have some symptoms that you think are a virus, then:

1. Format a floppy disk in the infected computer.

2. Copy any infected files to that floppy.

3. Copy your FORMAT and CHKDSK programs too.

As you can see in this essay, viruses are very appalling, and since a virus spreads from one computer to another, it gets worse!  Just like a contagious human virus which causes more harm, as more people are infected and more need to be treated. This same concept applies to a computer virus infecting computers continually.  Also, in this essay, various techniques have been explained on how to remove and deal with computer viruses, of different types, inflicting different components in a computer.  So, next time you have suspicions that your computer has been damaged by a virus, read through this essay and exercise the remedies indicated.

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Computer Viruses and the Harm They Cause

What is a Computer Virus?

Computer viruses are unwanted computer programs that can invade your hard drive and cause many different types of damage. Usually viruses are created when someone writes a computer program and embeds harmful software within that program. As soon as other people begin downloading that infected program onto their computers, the virus finds it's way in and negatively alters information stored in the computers. Not one computer virus is alike, there are millions of diverse programs that cause varying amounts of damage to a computer.

Just like human viruses, computer viruses spread rapidly as soon they are created and computers are exposed to the 'infection'. Although instead of traveling through the air, computer viruses disperse themselves all over the internet, sometimes you can get a virus just by clicking on a certain webpage. Many of times computer users will have a virus in their computer for a long period of time before it is detected or before it starts causing greater damage. Even when you have anti-virus software in your computer, it will not always find every virus because the anti-virus software can only find threats already known through that program's database.

You may ask, Why would someone create such counterproductive programs?

Well, there may not be an exact answer as to why humans knowingly create computer viruses other than to get some sort of revenge or to challenge their skills. No one will be able to prevent those people from creating viruses and exposing other computers to infection, the best thing for computer users to do to prevent such invasion is to use current anti-virus software and be cautious as to what sites they visit and what files they download.

When a virus finds it's way into your computer, it will hide in your hard drive and rapidly duplicate itself just like virus cells do in humans. You may not be able to tell, but every time you save your data, you are also saving the virus. Soon enough the virus has multiplied to such a great extent that it damages your data and causes major problems.

Although the computer's ROM (Read Only Memory) will not be affected by a virus, the RAM (Random Access Memory) and your computer's disks will surely be damaged. So if the virus is only in the RAM data in your computer, when you shut the computer down the virus will be lost as well as any other memory that had been held in the random access memory (RAM).

Unfortunately if the computer virus is on your hard drive or computer disk it will remain in the computer after you restart it and it will be there whenever you use the program again. If you switch from the infected program to another program without shutting down your computer, the virus will then attach to the other program. With that happening, that virus will slowly go through infecting all of your computer's programs before you have a clue that you computer is infected.

Currently, millions and millions of dollars are spent on efforts to protect computers from viruses and eliminate destructive virus programs.

Anti-virus programs offered by commercial and shareware sources were made solely to detect and fix programs that may be virus infected. These programs should be used to scan for viruses every time you put a disk into your computer and every time you start up your computer.

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Computer Viruses and their Effects on your PC

A virus is an independent program that reproduces itself.  It can attach itself to other programs and  make copies of itself (i.e., companion viruses).  It can damage or corrupt data, or lower the performance of your system by using resources like memory or disk space.  A virus can be annoying or it can cost you lots of cold hard cash.  A virus is just another name for a class of programs.  They do anything that another program can.  The only distinguishing characteristic is the program has ability to reproduce and infect other programs.  Is a computer virus similar to a human virus?  Below is a chart that will show the similarities.

Comparing Biological Viruses & Human Viruses

Human Virus Effects  :-

Attack specific body cells'Modify the genetic information of a cell other than previous one.
New viruses grow in the infected cell itself.
Not all cells with which the virus contact are infected.
Viruses can mutate and thus cannot clearly be diagnosed.
Infected cells aren't infected more than once by the same cell.

Computer Virus Effects

Attack specific programs (*.com,*.exe) Manipulate the program:It performs tasks.
The infected program produces virus programs.An infected program may not exhibit symptoms for a while.   The infected program can work without error for a long time.
Program can be made immune against certain viruses.
Virus program can modify themselves & possibly escape detection this way.
Programs are infected only once by most viruses.

There are many ways a virus can infect you system.  One way is, if the virus is a file infecting virus, when you run a file infected with that virus.  This particular kind of virus can only infect if YOU run the program!  This virus targets COM and EXE files, but have also been found in other executable files.  some viruses are memory resident which will infect every file run after that one.  Other are "direct action" injectors that immediately infect other files on your hard drive then leave.  Another way viruses infect your system is if they are polymorphic.  Polymorphism is where the virus changes itself with every infection so it is harder to find.  Also, virus writers have come up with a virus called a multipartite virus.  This virus can infect boot sectors and the master boot record as well as files therefore enables it to attack more targets, spread further and thus do more damage.

A computer virus can be spread in many different ways.  The first way is by a person knowingly installing a virus onto a computer.  Now the computer is infected with a virus.  The second way is inserting your disk into an infected computer.  The infected computer will duplicate the virus onto your  disk.  Now your disk is a virus carrier.   Any computer that comes in contact with this disk will become infected.  For example, I once caught a virus from Cochise College by copying two non-infected disks, the computer was infected.   What if my friend borrows an infected disk?  Your friend's computer will most likely become infected the instant that he/she uses your disk into a computer.  The third way, is the Internet.  A lot of programs on the Internet contain live viruses.  However, there seems to be countless numbers of ways to become infected.  Every time you download a program from somewhere or borrow a disk from a friend, you are taking a risk of getting infected.

Computer software bought in stores have been know to carry viruses.  "How? CD-ROMS are non-recordable?"  A virus may be installed into a computer at the time of manufacturing.    In September of 1996, the September edition of Microsoft SPCD has a file infected with a virus called "Wazzu".  Watch out for SIA\MKTOOLS\CASE\ED3905A.DOC.   Microsoft aided the spread of Wazzu by distributing a Wazzu-infected document on the Swiss ORBITconference CD, and keeping an identical copy of the infected document on it's Swiss Website for at least five days after being notified of the problem.  It is  noted, by Microsoft records , that over 2 million of the infected CD's were sold.  The CD's were replaced on a recall from Microsoft, however: this aided the spread of the Wazzu Virus.

The major damages can vary, but here are the most common:

A.    Fill up your P.C. with Garbage:

As a virus reproduces, it takes up space.  This space cannot be used by the operator

As more copies of the virus are made, the memory space is lessened.

B.    Mess Up Files:

Computer files have a fixed method of being stored.  With this being the case, it is very easy for a   computer virus to affect the system so some parts of the accessed files cannot be located.

C.    Mess Up FAT:

Fat (File Allocation Table) is the method used to contain the information required about the location      of files stored on a disk.  Any allocation to this information can cause endless trouble

D.    Mess Up The Boot Sector:

The boot sector is the special information found on a disk.  Changing the boot sector could result      in the inability of the computer to run.

E.    Erase The Whole Hard Drive/ Diskette:

A virus can simply format a disk.  This will cause you to lose all of the data stored on the formatted disk.

F.    Reset The Computer:

Virus can reset your computer.  Normally, the operator or user has to press a few keys.  The virus   can do this by sending codes to the operating system.

G.    Slowing Things Down:

The object of this virus can slow down the running line of a program.  This causes a computer with     100 megahertz to act like a computer with 16 megahertz.  That is why a 486 or 586 computer can     slow down and run as if it were a 286.  As I would call it "Turtle Speed".

H.    Redefine Keys:

The computer has been programmed to recognize certain codes with the press of certain keys.  For Example: When you press the letter T, your computer puts a T on your display.  A virus can change the command.  Imagine if every time you pressed the T, your computer would format your hard drive.

I.    Lock The Keyboard:

Redefining all the keys into an empty key.  Then the user cannot use the keyboard to input any data.

People are often telling me I am paranoid of viruses.  Some forms of paranoia are healthy.  When it comes to securing your system from viruses, trust no one, not even your mother-when you change disks with her, that is.  Thank god for the invention of Anti-Virus Software.  Anti-Virus Software is a program that can protect your PC from a virus.  They can also remove a virus, once it is detected.  However, there are thousands of viruses in existence.  And finding a consistant virus scanning program can be rough.  I have read many articles on popular virus scanning programs.  I have found the top two virus scanning programs to be:

#1.)  McAfee Virus Scan

#2.)   Norton Anti-Virus

Both of these programs can prevent a virus from entering your computer.  If one sneaks past, then you will have a choice to delete the file, clean the virus or move the virus.  I would highly suggest you to check out these programs and test them.

Conclusion:

Remember, one virus can shred many years of work on your computer.  Protect yourself and always, use an Anti-Virus Program.

 

 

 

Itech troubleshooter is an advanced web development, high skilled professional software Solution Company located in New Delhi founded by, PRABHAKAR MISHRA in the year 2008.The company provides vast range of services to each and every customer in reaching their respective targeted spectators and their valuable information in fix and on steady affordable price. Today, you can easily get a lot of quality services by this company on just dialing a call to the company which includes services like website designing , web application development , Application development , Maintenance , Re-engineering , Flash development , SEO , SEO Services , Computer AMC , Computer Networking , Wireless Networking , Data Recovery , ERP Solution .


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Computer Virus

In 1983, Fred Cohen coined the term “computer virus”, postulating a virus was "a program that can 'infect' other programs by modifying them to include a possibly evolved copy of itself.” The term virus is actually an acronym for Vital Information Resources Under Seize. Mr. Cohen expanded his definition a year later in his 1984 paper, “A Computer Virus”, noting that “a virus can spread throughout a computer system or network using the authorizations of every user using it to infect their programs. Every program that gets infected may also act as a virus and thus the infection grows.” Computer viruses, as we know them now, originated in 1986 with the creation of Brain - the first virus for personal computers. Two brothers wrote it (Basid and Farooq Alvi who ran a small software house in Lahore, Pakistan) and started the race between viruses and anti-virus programs which still goes on today.

Using the above explanation, it can be said that viruses infect program files. However, viruses can also infect certain types of data files, specifically those types of data files that support executable content, for example, files created in Microsoft Office programs that rely on macros.

Compounding the definition difficulty, viruses also exist that demonstrate a similar ability to infect data files that don't typically support executable content - for example, Adobe PDF files, widely used for document sharing, and .JPG image files. However, in both cases, the respective virus has a dependency on an outside executable and thus neither virus can be considered more than a simple ‘proof of concept’. In other cases, the data files themselves may not be infectable, but can allow for the introduction of viral code. Specifically, vulnerabilities in certain products can allow data files to be manipulated in such a way that it will cause the host program to become unstable, after which malicious code can be introduced to the system. These examples are given simply to note that viruses no longer relegate themselves to simply infecting program files, as was the case when Mr. Cohen first defined the term. Thus, to simplify and modernize, it can be safely stated that a virus infects other files, whether program or data.

Computer viruses are called viruses because they share some of the traits of biological viruses. A computer virus passes from computer to computer like a biological virus passes from person to person.

There are similarities at a deeper level, as well. A biological virus is not a living thing. A virus is a fragment of DNA inside a protective jacket. Unlike a cell, a virus has no way to do anything or to reproduce by itself -- it is not alive. Instead, a biological virus must inject its DNA into a cell. The viral DNA then uses the cell's existing machinery to reproduce itself. In some cases, the cell fills with new viral particles until it bursts, releasing the virus. In other cases, the new virus particles bud off the cell one at a time, and the cell remains alive.

A computer virus shares some of these traits. A computer virus must piggyback on top of some other program or document in order to get executed. Once it is running, it is then able to infect other programs or documents. Obviously, the analogy between computer and biological viruses stretches things a bit, but there are enough similarities that the name sticks.

A computer virus is a program that replicates. To do so, it needs to attach itself to other program files (for example, .exe, .com, .dll) and execute whenever the host program executes. Beyond simple replication, a virus almost always seeks to fulfill another purpose: to cause damage.

Called the damage routine, or payload, the destructive portion of a virus can range from overwriting critical information kept on the hard disk's partition table to scrambling the numbers in the spreadsheets to just taunting the user with sounds, pictures, or obnoxious effects.

It’s worth bearing in mind, however, that even without a ”damage routine”, if viruses are allowed to run unabated then it will continue to propagate--consuming system memory, disk space, slowing network traffic and generally degrading performance. Besides, virus code is often buggy and can also be the source of mysterious system problems that take weeks to understand. So, whether a virus is harmful or not, its presence on the system can lead to instability and should not be tolerated.

Some viruses, in conjunction with "logic bombs," do not make their presence known for months. Instead of causing damage right away, these viruses do nothing but replicate--until the preordained trigger day or event when they unleash their damage routines on the host system or across a network.


Impact of Viruses on Computer Systems

Virus can be reprogrammed to do many kinds of harm including the following.

1.Copy themselves to other programs or areas of a disk.

2.Replicate as rapidly and frequently as possible, filling up the infected system’s disk and memory rendering the systems useless.

3.Display information on the screen.

4.Modify, corrupt or destroy selected files.

5.Erase the contents of entire disks.

6.Lie dormant for a specified time or until a given condition is met, and then become active.

7.Open a back door to the infected system that allows someone else to access and even control of the system through a network or internet connection.

8.Some viruses can crash the system by causing some programs (typically Windows) to behave oddly.

How viruses spread from one system to another?

The most likely virus entry points are email, Internet and network connections, floppy disk drives, and modems or other serial or parallel port connections. In today's increasingly interconnected workplace (Internet, intranet, shared drives, removable drives, and email), virus outbreaks now can spread faster and wider than ever before.


The following are some common ways for a virus to enter the users’ computer system:

•Email attachments

•Malicious scripts in web pages or HTML email

•FTP traffic from the Internet (file downloads)

•Shared network files & network traffic in general

•Demonstration software

•Pirated software

•Shrink-wrapped, production programs (rare)

•Computer labs

•Electronic bulletin boards (BBS)

•Diskette swapping (using other people’s diskettes for carrying data and programs back and forth)


High risk files


The most dangerous files types are:

.EXE, .COM, .XLS, .DOC, .MDB

Because they don't need any special conversion to infect a computer -- all they've got to do is run and consequently the virus spreads. It has been estimated that 99% of all viruses are written for these file formats.

A list of possible virus carriers includes:

EXE - (Executable file)

SYS - (Executable file)

COM - (Executable file)

DOC - (Microsoft Word)

XLS - (Microsoft Excel)

MDB - (Microsoft Access)

ZIP - (Compressed file, common in the USA)

ARJ - (Compressed file, common in the USA)

DRV - (Device driver)

BIN - (Common boot sector image file)

SCR - (Microsoft screen saver)


Common Symptoms Of Virus Infection


?Computer does not boot.

?Computer hard drive space is reduced.

?Applications will not load.

?An application takes longer to load than normal time period.

?Hard dive activity increases especially when nothing is being done on the computer.

?An anti virus software message appears.

?The number of hard drive bad sectors steadily increases.

?Unusual graphics or messages appear on the screen

?Files are missing (deleted)

?A message appears that hard drive cannot be detected or recognized.

?Strange sounds come from the computer.

?Some viruses take control of the keyboard and occasionally substitute a neighboring key for the one actually pressed. Another virus "swallows" key presses so that nothing appears on the screen.

?Also interesting are system time effects. Clocks going backwards are especially frightening for workers who cannot wait to go home. More seriously though, this type of virus can cause chaos for programs which depend on the system time or date.

?Some viruses can cost the user dearly by dialing out on his modem. We do not know of one which dials premium telephone numbers but no doubt we shall see one soon. One particularly malicious virus dials 911 (the emergency number in the USA) and takes up the valuable time of the emergency services.


Categories of viruses

Depending on the source of information different types of viruses may be categorized in the following ways:


PDA VIRUSES

The increasing power of PDAs has spawned a new breed of viruses. Maliciously creative programmers have leveraged the PDA's ability to communicate with other devices and run programs, to cause digital mayhem.

The blissfully safe world where users of these devices could synchronize and download with impunity came to an end in August 2000 with the discovery of the virus Palm Liberty. Since then, many more viruses have been discovered.

Though not yet as harmful as their PC-based cousins, these viruses still pose a threat to unsuspecting users. Their effects vary from the harmless flashing of an unwanted message or an increase in power consumption, to the deletion of all installed programs. But the threat is growing, and the destructiveness of these viruses is expected to parallel the development of the devices they attack.


MULTIPARTITE VIRUSES

A virus that combines two or more different infection methods is called a multipartite virus. This type of virus can infect both files and boot sector of a disk. Multi-partite viruses share some of the characteristics of boot sector viruses and file viruses: They can infect .com files, .exe files, and the boot sector of the computer’s hard drive. On a computer booted up with an infected diskette, the typical multi-partite virus will first make itself resident in memory then infect the boot sector of the hard drive. From there, the virus may infect a PC's entire environment. Not many forms of this virus class actually exist. However, they do account for a disproportionately large percentage of all infections. Tequila and Anticad are the examples of multipartite viruses.


BOMBS

The two most prevalent types of bombs are time bombs and logic bombs. A time bomb hides on the victim’s disk and waits until a specific date before running. A logic bomb may be activated by a date, a change to a file, or a particular action taken by a user or a program. Bombs are treated as viruses because they can cause damage or disruption to a system.


BOOT SECTOR VIRUSES

Until the mid-1990s, boot sector viruses were the most prevalent virus type, spreading primarily in the 16-bit DOS world via floppy disk. Boot sector viruses infect the boot sector on a floppy disk and spread to a user's hard disk, and can also infect the master boot record (MBR) on a user's hard drive. Once the MBR or boot sector on the hard drive is infected, the virus attempts to infect the boot sector of every floppy disk that is inserted into the computer and accessed. Examples of boot sector viruses are Michelangelo, Satria and Keydrop.

Boot sector viruses work like this: Let us assume that the user received a diskette with an infected boot sector. The user copied data from it but forgot to remove it from drive A:. When he started the computer next time the boot process will execute the infected boot sector program from the diskette. The virus will load first and infect the hard disk. Note that this can be prevented by changing the boot sequence in CMOS (Let C: drive boot before A:). By hiding on the first sector of a disk, the virus is loaded into memory before the system files are loaded. This allows it to gain complete control of DOS interrupts and in the process replaces the original contents of the MBR or DOS boot sector with their own contents and move the original boot sector data to another area on the disk. Because the virus has infected a system area of the hard disk it will be loaded into memory each time the computer is started. It will first take control of the lowest level disk system services before executing the original boot sector code which it has stored in another part of the hard disk. The computer seems to behave exactly as it should. Nobody will notice the extra few fractions of a second added to the boot sequence.

During normal operation the virus will happily stay in memory. Thanks to the fact that it has control of the disk services it can easily monitor requests for disk access - including diskettes. As soon as it gets a request for access to a diskette it will determine that there is a diskette in the floppy drive. It will then examine its boot sector to see if it has already been infected. If it finds the diskette clean it will replace the boot sector with its own code. From this moment the diskette will be a "carrier" and become a medium for infections on other PC's.


The virus will also monitor special disk requests for access to the boot sector. The boot sector contains its own code, and a request to read it could be from an anti-virus program checking for virus presence. The virus will not allow the boot sector to be read and will redirect all requests to the place on the hard disk where it has backed up the original contents. In this way nothing unusual is detected. Such methods are called stealth techniques and their main goal is to mask the presence of the virus. Not all boot viruses use stealth but those which do are common.

Boot viruses also infect the non-file (system) areas of hard and floppy disks. These areas offer an efficient way for a virus to spread from one computer to another. Boot viruses have achieved a higher degree of success than program viruses in infecting their targets and spreading.

Boot virus can infect DOS, Windows 3.x, Windows 95/98, Windows NT, and even Novell Netware systems. This is because they exploit inherent features of the computer (rather than the operating system) to spread and activate.

Cleaning up a boot sector virus can be performed by booting the machine from an uninfected floppy system disk rather than from the hard drive, or by finding the original boot sector and replacing it in the correct location on the disk.


CLUSTER VIRUSES

This type of virus makes changes to a disks file system. If any program is run from the infected disk, the program causes the virus to run as well. This technique creates the illusion that the virus has infected every program on the disk.


E-MAIL VIRUSES

These types of viruses can be transmitted via e-mail messages sent across private networks or the internet. Some e-mail viruses are transmitted as an infected attachment- a document file or program that is attached to the message. This type of virus is run when the victim opens the file that is attached to the message. Other types of email viruses reside within the body of the message itself. To store a virus, the message must be encoded in html format. Once launched many e-mail viruses attempt to spread by sending messages to everyone in the victim’s address book; each of those contains a copy of the virus.

The latest thing in the world of computer viruses is the e-mail virus called Melissa virus which surfaced in March 1999. Melissa spread in Microsoft Word documents sent via e-mail, and it worked like this:

Someone created the virus as a Word document uploaded to an Internet newsgroup. Anyone who downloaded the document and opened it would trigger the virus. The virus would then send the document (and therefore itself) in an e-mail message to the first 50 people in the person's address book. The e-mail message contained a friendly note that included the person's name, so the recipient would open the document thinking it was harmless. The virus would then create 50 new messages from the recipient's machine. As a result, the Melissa virus was the fastest-spreading virus ever seen and it forced a number of large companies to shut down their e-mail systems at that time.

The ILOVEYOU virus, which appeared on May 4, 2000, was even simpler. It contained a piece of code as an attachment. People who double clicked on the attachment allowed the code to execute. The code sent copies of itself to everyone in the victim's address book and then started corrupting files on the victim's machine. This is as simple as a virus can get. It is really more of a Trojan horse distributed by e-mail than it is a virus.

The Melissa virus took advantage of the programming language built into Microsoft Word called VBA, or Visual Basic for Applications. It is a complete programming language and it can be programmed to do things like modify files and send e-mail messages. It also has a useful but dangerous auto-execute feature. A programmer can insert a program into a document that runs instantly whenever the document is opened. This is how the Melissa virus was programmed. Anyone who opened a document infected with Melissa would immediately activate the virus. It would send the 50 e-mails, and then infect a central file called NORMAL.DOT so that any file saved later would also contain the virus! It created a huge mess.

FILE INFECTING VIRUSES

File infectors operate in memory and usually infect executable files with the following extensions: *.COM, *.EXE, *.DRV, *.DLL, *.BIN, *.OVL, *.SYS. They activate every time the infected file is executed by copying themselves into other executable files and can remain in memory long after the virus has activated.

Thousands of different file infecting viruses exist, but similar to boot sector viruses, the vast majority operates in a DOS 16-bit environment. Some, however, have successfully infected the Microsoft Windows, IBM OS/2, and Apple Computer Macintosh environments.

File viruses can be separated further into sub-categories by the way they manipulate their targets:


TSR FILE VIRUSES

A less common type of virus is the terminate-and-stay-resident file virus. As the name suggests these infect files usually these are .com and .exe files. there are however some device driver viruses, some viruses that infect overlay files, and although over 99% of executable programs have the extension .com and .exe, some do not .For a TSR virus to spread some one has to run an infected program. The virus goes memory resident typically looking at each program run thereafter and infects it. Examples of TSR file viruses are Dark Avenger and Green Caterpillar.


OVERWRITING VIRUSES

These viruses infect by overwriting part of their target with their own code but, by doing so, they damage the file. The file will never serve another purpose other than spreading the virus further. Because of this they are usually detected quickly and do not spread easily.


PARASITIC VIRUSES

These viruses attach themselves to executables without substantially changing the contents of the host program. They attach by adding their code to the beginning, end, or even middle of the file and divert program flow so that the virus is executed first. When the virus has finished its job, control is passed on to the host. Execution of the host is a little delayed but this is usually not noticeable.


MACRO VIRUSES

Many older applications had simple macro systems that allowed the user to record a sequence of operations within the application and associate them with a specific keystroke. Later, the user could perform the same sequence of operations by merely hitting the specified key.

Newer applications provide much more complex macro systems. User can write entire macro-programs that run within the word processor or spreadsheet environment and are attached directly onto word processing and spreadsheet files. Unfortunately, this ability also makes it possible to create macro viruses.

Macro viruses currently account for about 80 percent of all viruses, according to the International Computer Security Association (ICSA), and are the fastest growing viruses in computer history. Unlike other virus types, macro viruses aren’t specific to an operating system and spread with ease via email attachments, floppy disks, Web downloads, file transfers, and cooperative applications.

Macro viruses are, however, application-specific. A macro virus is designed to infect a specific type of document file, such as Microsoft word or excel files. They infect macro utilities that accompany such applications as Microsoft Word and Excel, which means a Word macro virus cannot infect an Excel document and vice versa. A macro virus is embedded in a document file and can travel between data files in the application and can eventually infect hundreds of files if undeterred and in the process do various levels of damage to data from corrupting documents to deleting data.

Macro viruses are written in "every man's programming language" -- Visual Basic -- and are relatively easy to create. They can infect at different points during a file's use, for example, when it is opened, saved, closed, or deleted

A typical chronology for macro virus infection begins when an infected document or spreadsheet is loaded. The application also loads any accompanying macros that are attached to the file. If one or more of the macros meet certain criteria, the application will also immediately execute these macros. Macro viruses rely upon this auto-execution capability to gain control of the application’s macro system.

Once the macro virus has been loaded and executed, it waits for the user to edit a new document, and then kicks into action again. It attaches its virus macro programs onto the new document, and then allows the application to save the document normally. In this fashion, the virus spreads to another file and does so in a completely discrete fashion. Users have no idea of the infection. If this new file is later opened on another computer, the virus will once again load, be launched by the application, and find other unsuspecting files to infect.


Finally, as far as a macro virus is concerned, the application serves as the operating system. A single macro virus can spread to any of the platforms on which the application is installed and running. For example, a single macro virus that uses Microsoft Word could conceivably spread to Windows 3.x, Windows 95/98, Window NT, and the Macintosh.


Macro viruses for Word


In the summer of 1995, Microsoft Word 6 was the first product affected with macro virus. The first one (WM/Concept.A) was really only a proof of concept - one of the installed macros (called Payload) contained only this remark:

“That's enough to prove my point”

Most macro viruses for Word use a feature called 'automacros'. The basic principle is that some macros with special names are automatically executed when Word starts, opens a file, or closes a file. The macro virus then inserts macros into NORMAL.DOT - a standard template which is loaded every time Word starts.

In Word there are some ways to disable automacros but this isn't the ultimate solution. Some macro viruses use other methods to take control over the Word environment.

Another method of self-protection may be to set NORMAL.DOT to read only. But this can also be bypassed and, in addition, it prevents the user from customizing the template.


Macro viruses for Excel


Excel has the same opportunities for virus authors as Word. It has automacros and a directory called XLSTART from which templates are automatically loaded.

But Excel does not have just normal VBA macros like Word. In Excel there are so called 'formulas' - macros stored in spreadsheet cells. The first macro virus using this technology was XF/Paix.


Macro viruses for other MS Office products:


Writing a macro virus for other Office products is not difficult. There have been already some viruses for Access, and it is expected that there will be macro viruses for Power Point in the near future.


But those macro viruses are not as dangerous as the macro viruses for Word or Excel. Not because of some limitation of these other Office products, but because data files from these products are not so frequently shared.


There is one danger which can be seen in today's Power Point even without native macro viruses written for this product. Programmers can include in their presentation any number of objects from Excel or Word. And these objects can be infected with macro viruses - if they edit the presentation and open the infected object with its parent application, then the virus can spread further.


But the current situation may change dramatically over the next few years. Microsoft has licensed VBA technology to many firms, so one can expect to see more macro viruses for other products, too.


POLYMORPHIC VIRUSES

This type of virus can change itself each time it is copied, making it difficult to isolate. Most simple viruses attach identical copies of themselves to the files they infect. An anti-virus program can detect the virus’s code (or signature) because it is always the same and quickly ferret out the virus. To avoid such easy detection, polymorphic viruses operate somewhat differently. Unlike the simple virus, when a polymorphic virus infects a program, it scrambles its virus code in the program body. This scrambling means that no two infections look the same, making detection more difficult. These viruses create a new decryption routine each time they infect, so every infected file will have a different sequence of virus code.


STEALTH VIRUSES

Stealth viruses actively seek to conceal themselves from attempts to detect or remove them. They also can conceal changes they make to other files, hiding the damage from the user and the operating system.

Stealth viruses, or Interrupt Interceptors, as they are sometimes called, take control of key DOS-level instructions by intercepting the interrupt table, which is located at the beginning of memory. This gives the virus the ability to do two important things: 1) gain control of the system by re-directing the interrupt calls, and 2) hide itself to prevent detection. They use techniques such as intercepting disk reads to provide an uninfected copy of the original item in place of the infected copy (read-stealthing viruses), altering disk directory or folder data for infected program files (size-stealthing), or both. For example, the Whale virus is a size-stealthing virus. It infects .EXE program files and alters the folder entries of infected files when other programs attempt to read them. The Whale virus adds 9216 bytes to an infected file. Because changes in file size are an indication that a virus might be present, the virus then subtracts the same number of bytes (9216) from the file size given in the directory/folder entry to trick the user into believing that the file’s size has not changed.

An antivirus program which is not equipped with anti-stealth technology will be deceived.


COMPANION VIRUSES


A companion virus is the exception to the rule that a virus must attach itself to a file. The companion virus instead creates a new file and relies on a behavior of DOS to execute it instead of the program file that is normally executed. These viruses target EXE programs. They create another file of the same name but with a COM extension containing the virus code. These viruses take advantage of a property of MS-DOS which allows files to share the same first name in the same directory (e.g. ABC.EXE and ABC.COM) but executes COM files in preference to EXE files.

For example, the companion virus might create a file named CHKDSK.COM and place it in the same directory as CHKDSK.EXE. Whenever DOS must choose between executing two files of the same name where one has an .EXE extension and the other a .COM extension, it executes the .COM file. This is not an effective way of spreading but has one big advantage - it does not amend files in any way and so can escape integrity tests or resident protection. Another method which can be used by companion viruses is based on defined path. A virus simply puts an infected file into the path listed before the directory within the original program.


PROGRAM VIRUSES

Like normal programs, program viruses must be written for a specific operating system. The vast majority of viruses are written for DOS but some have been written for Windows 3.x, Windows 95/98, and even UNIX. All versions of Windows are compatible with DOS and can host DOS viruses with varying degrees of success. Program viruses infect program files, which commonly have extensions such as .COM, .EXE, .SYS, .DLL, .OVL, or .SCR. Program files are attractive targets for virus writers because they are widely used and have relatively simple formats to which viruses can attach.


Malicious Programs and Scripts


Viruses that infect agent programs (such as those that download software from the Internet; for example, JAVA and ActiveX).


WORM


A worm is a computer program that has the ability to copy itself from machine to machine. Worms normally move around and infect other machines through computer networks. An entire LAN or corporate e-mail system can become totally clogged with copies of a worm, rendering it useless. Worms are commonly spread over the internet via e-mail message attachments and through internet relay chat channels.

For example, the Code Red worm replicated itself over 250,000 times in approximately nine hours on July 19, 2001.

A worm usually exploits some sort of security hole in a piece of software or the operating system. For example, the Slammer worm (which caused mayhem in January 2003) exploited a hole in Microsoft's SQL server.

Worms use up computer time and network bandwidth when they are replicating, and they often have some sort of evil intent. A worm called Code Red made huge headlines in 2001. Experts predicted that this worm could clog the Internet so effectively that things would completely grind to a halt.

The Code Red worm slowed down Internet traffic when it began to replicate itself, but not nearly as badly as predicted. Each copy of the worm scanned the Internet for Windows NT or Windows 2000 servers that do not have the Microsoft security patch installed. Each time it found an unsecured server, the worm copied itself to that server. The new copy then scanned for other servers to infect. Depending on the number of unsecured servers, a worm could conceivably create hundreds of thousands of copies.

The Code Red worm was designed to do three things:

•Replicate itself for the first 20 days of each month

•Replace Web pages on infected servers with a page that declares "Hacked by Chinese"

•Launch a concerted attack on the White House Web server in an attempt to overwhelm it

The most common version of Code Red is a variation, typically referred to as a mutated strain, of the original Ida Code Red that replicated itself on July 19, 2001.


TROJAN HORSES


Trojans, another form of malware, are generally agreed upon as doing something other than the user expected, with that “something” defined as malicious. Most often, Trojans are associated with remote access programs that perform illicit operations such as password-stealing or which allow compromised machines to be used for targeted denial of service attacks. One of the more basic forms of a denial of service (DoS) attack involves flooding a target system with so much data, traffic, or commands that it can no longer perform its core functions. When multiple machines are gathered together to launch such an attack, it is known as a distributed denial of service attack, or DDoS.

Because Trojan horses do not make duplicates of themselves on the victims disk (or copy themselves to other disks), they are not technically viruses. But because they can do harm, many experts consider them to be a type of virus. Trojan horses are often used as by hackers to create a back door to an infected system. Trojans, such as BackOrrifice are very dangerous. If anyone runs this program and his computer is connected to the internet, then the hacker can take control of that computer - transfer files to or from the computer, capture screen contents, run any program or kill any running process, etc.


Once a Trojan is installed onto the system this program has the same privileges as the user of the computer and can exploit the system to do something the user did not intend such as:

?Delete files

?Transmit to the intruder any files that the user can read

?Change any files that the user can modify

?Install other programs with the user’s privileges

?Execute privilege-elevation attacks—the Trojan can attempt to exploit a weakness to raise the level of access beyond the user running the Trojan. If successful, the Trojan can operate with increased privileges.

?Install viruses

?Install other Trojans


The Following Tips Will Help The User To Minimize Virus Risk:


?If the users are truly worried about traditional (as opposed to e-mail) viruses, they should be running a more secure operating system like UNIX. One should never hear about viruses on these operating systems because the security features keep viruses (and unwanted human visitors) away from the hard disk.

?If the users are using an unsecured operating system, then buying virus protection software is a nice safeguard. Some popular anti virus programs include:

•McAfee Virus Scan

•Norton Anti Virus

•Virex

•PC—cillin

•Avast!

•AVG Anti Virus System

?Automatic protection of anti-virus software should be turned on at all times.

?The users should perform a manual scan (or schedule a scan to occur automatically) of their hard disks weekly. These scans supplement automatic protection and confirm that the computer is virus-free.

?Scan all floppy disks before first use.

?Disable floppy disk booting -- most computers now allow the user to do this, and that will eliminate the risk of a boot sector virus coming in from a floppy disk accidentally left in the drive.

?The users should Enable Automatic Update option of their anti-virus software in order to update their virus definition files.

?Creation and maintenance of a rescue disk should be done by the user in order to facilitate recovery from certain boot viruses.

?Periodic backups of the hard disk should be done.

?Users’ should buy legal copies of all software they use and make write-protected backups.

? Email messages and email attachments from unknown people should not be opened. Attachments that come in as Word files (.DOC), spreadsheets (.XLS), images (.GIF and .JPG), etc., are data files and they can do no damage (noting the macro virus problem in Word and Excel documents mentioned above). A file with an extension like EXE, COM or VBS is an executable, and an executable can do any sort of damage it wants. Further it should be verified that the "author" of the email has sent the attachments. Newer viruses can send email messages that appear to be from a person user know.

?The potential users should make sure that Macro Virus Protection is enabled in all Microsoft applications, and they should never run macros in a document unless they know specifically the functionality of the macros.

?Appropriate Passwords should be assigned to the shared network drives.


Things that are not viruses!


Joke programs

Joke programs are not viruses and do not inflict any damage. Their purpose is to frighten their victims into thinking that a virus has infected and damaged their system. For example, a joke program may display a message warning the user not to touch any keys or else the computer’s hard disk will be formatted.


Droppers

A dropper is a program that is not a virus, nor is it infected with a virus but when run it installs a virus into memory on to the disk, or onto a file. Droppers have been written sometimes as a convenient carrier for a virus and sometimes as an act of sabotage.


Hoaxes

There must be very few people on email who haven't received a chain letter with the subject line warning of a virus doing the rounds. These are often hoaxes and meant to scare people and have fun at their expense. The warnings encourage the recipient of the e-mail to pass the warning to the netizens and thus create an unnecessary furor, besides clogging mailboxes, as it usurps an air of credibility.


Methodology of virus detection applied by antivirus softwares:


Three main methods exist for detecting viruses: integrity checking (also known as checksumming), behavior monitoring and pattern matching (scanning).


Integrity checking

Antivirus programs that use integrity checking start by building an initial record of the status (size, time, date, etc.) of every application file on the hard drive. Using this data, checksumming programs then monitor the files to see if changes have been made. If the status changes, the integrity checker warns the user of a possible virus.

However, this method has several disadvantages, the biggest being that false alarms are altogether too common. The records used by checksumming programs are often rendered obsolete by legitimate programs, which, in their normal course of operations, make changes to files that appear to the Integrity checker to be viral activity. Another weakness of integrity checking is that it can only alert the user after a virus has infected the system.


Behavior monitoring

Behavior Monitoring programs are usually terminate and stay resident (TSR) and constantly monitor requests that are passed to the interrupt table. These programs are on the lookout for activities that a virus might engage in--requests to write to a boot sector, opening an executable program for writing, or placing itself resident in memory. The behavior these programs monitor is derived from a user-configurable set of rules.


Pattern matching

Using a process called "pattern matching," the anti-virus software draws upon an extensive database of virus patterns to identify known virus signatures, or telltale snippets of virus code. Key areas of each scanned file are compared against the list of thousands of virus signatures that the anti-virus software has on record.

Whenever a match occurs, the anti-virus software takes the action the user has configured: Clean, Delete, Quarantine, Pass (Deny Access for Real-time Scan), or Rename.


Self Defense Mechanisms Evolved By Viruses


Virus authors of course wish that their child successfully lives. For this reason there are many viruses outfitted with some self-defense mechanisms against anti virus systems.


Passive Defense :

Viruses use a variety of methods to hide themselves from antivirus programs. Passive defense uses programming methods which make analysis of the virus more difficult, e.g. polymorphic viruses which were developed to counter scanners looking for constant strings of virus code.

Today antivirus systems are capable of analyzing polymorphic code and searching for virus identifiers in the decrypted body. The virus authors reacted by making the encryption too complex for antivirus software to unravel, thus mistaking it for a clean program.


Active Self-defense :

Viruses actively defend themselves by protecting their own code or by attempting to damage antivirus software. A simple method is to locate antivirus software databases and amend or delete them.

More sophisticated resident viruses use stealth techniques. When they detect a request to use an infected file, they can temporarily "clean" it or report its original (uninfected) parameters. They can monitor which programs are being executed and react if it is antivirus software. The list of such reactions is endless. Usually, the execution of the antivirus program is refused, but it could be erased (often accompanied by a bogus error message) or the virus suspends its activities while it runs. There are occasionally extremely 'clever' viruses which modify the code of a specific AV program to partially disable it.

There are very rare viruses which consider an attempt to run an anti-virus program as arrogant and immediately reply with some revenge action - for example hard disk formatting.


Trap

A trap is the most malicious form of self-defense and works as follows. Although the user’s computer is infected but everything appears to work correctly. Once the user discovers the virus and removes it things get complicated - programs no longer run properly or the hard disk may become inaccessible even when booting from a clean system diskette.

The best known trap virus is One_Half. It continuously encrypts the data on a hard disk (two tracks on every boot). If it is removed from the partition sector before data files are decoded then some files will become inaccessible. At this stage the situation is serious but recovery of the data is still possible. However, if the user runs a disk utility (Scandisk etc.) to repair the damage then the data will almost certainly be lost forever.

These utilities are designed to repair relatively minor damage to file system and do not recognize the encrypted data.


REFERENCE:


1. Mary Landesman “What is a virus?”

http://antivirus.about.com/cs/tutorials/a/whatisavirus.htm

2. NetGuide “What are computer viruses? “–

http://www.netguide.co.nz/knowhow/tutorials/print.php?iid=38

3. Marshall Brain “How Computer Viruses Work”

http://www.Howstuffworks How Computer Viruses Work.htm

4. AVG Anti Virus Free Edition Help

Developed by Grisoft Inc

5. Norton Anti-virus Help

Developed by Symantec Corporation

6. Trend Micro PC-cillin Help

Developed by Trend Micro Inc

7. Peter Norton “Computer Viruses”

Introduction to Computers, Tata McGraw Hill Co:

8. Dr.Solomon ”About Viruses” &”Virus Prevention”

Dr.Solomon’s Virus Encyclopedia, Dr.Solomon’s Software Ltd.

9. C.A.Schmidt ”Virus”

The Complete Computer Upgrade And Repair Text Book,Dreamtech

10. S.Jaiswal “Virus Detection And Elimination”

Information Technology Today, Galgotia Publication Pvt. Ltd.

M.Com,M.C.A, Master in Multimedia Development (Equiv: M.E)

Lecturer-Pailan School of International Studies

Part time Lecturer -Prafulla Chandra College


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