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Thursday, 26 January 2012

Basic Unix Commands.

Basic UNIX commands

Note: not all of these are actually part of UNIX itself, and you may not find them on all UNIX machines. But they can all be used on turing in essentially the same way, by typing the command and hitting return. Note that some of these commands are different on non-Solaris machines - see SunOS differences.
If you've made a typo, the easiest thing to do is hit CTRL-u to cancel the whole line.
UNIX is case-sensitive.

Files

  • ls --- lists your files
    ls -l --- lists your files in 'long format', which contains lots of useful information, e.g. the exact size of the file, who owns the file and who has the right to look at it, and when it was last modified.
    ls -a --- lists all files, including the ones whose filenames begin in a dot, which you do not always want to see.
    There are many more options, for example to list files by size, by date, recursively etc.
  • more filename --- shows the first part of a file, just as much as will fit on one screen. Just hit the space bar to see more or q to quit. You can use /pattern to search for a pattern.
  • emacs filename --- is an editor that lets you create and edit a file.
  • mv filename1 filename2 --- moves a file (i.e. gives it a different name, or moves it into a different directory (see below)
  • cp filename1 filename2 --- copies a file
  • rm filename --- removes a file. It is wise to use the option rm -i, which will ask you for confirmation before actually deleting anything. You can make this your default by making an alias in your .cshrc file.
  • diff filename1 filename2 --- compares files, and shows where they differ
  • wc filename --- tells you how many lines, words, and characters there are in a file
  • chmod options filename --- lets you change the read, write, and execute permissions on your files. The default is that only you can look at them and change them, but you may sometimes want to change these permissions. For example, chmod o+r filename will make the file readable for everyone, and chmod o-r filename will make it unreadable for others again. Note that for someone to be able to actually look at the file the directories it is in need to be at least executable.
  • File Compression
    • gzip filename --- compresses files, so that they take up much less space. Usually text files compress to about half their original size, but it depends very much on the size of the file and the nature of the contents. There are other tools for this purpose, too (e.g. compress), but gzip usually gives the highest compression rate. Gzip produces files with the ending '.gz' appended to the original filename.
    • gunzip filename --- uncompresses files compressed by gzip.
    • gzcat filename --- lets you look at a gzipped file without actually having to gunzip it (same as gunzip -c). You can even print it directly, using gzcat filename | lpr
  • printing
    • lpr filename --- print. Use the -P option to specify the printer name if you want to use a printer other than your default printer. For example, if you want to print double-sided, use 'lpr -Pvalkyr-d', or if you're at CSLI, you may want to use 'lpr -Pcord115-d'. See 'help printers' for more information about printers and their locations.
    • lpq --- check out the printer queue, e.g. to get the number needed for removal, or to see how many other files will be printed before yours will come out
    • lprm jobnumber --- remove something from the printer queue. You can find the job number by using lpq. Theoretically you also have to specify a printer name, but this isn't necessary as long as you use your default printer in the department.
    • genscript --- converts plain text files into postscript for printing, and gives you some options for formatting. Consider making an alias like alias ecop 'genscript -2 -r \!* | lpr -h -Pvalkyr' to print two pages on one piece of paper.
    • dvips filename --- print .dvi files (i.e. files produced by LaTeX). You can use dviselect to print only selected pages. See the LaTeX page for more information about how to save paper when printing drafts.

Directories

Directories, like folders on a Macintosh, are used to group files together in a hierarchical structure.
  • mkdir dirname --- make a new directory
  • cd dirname --- change directory. You basically 'go' to another directory, and you will see the files in that directory when you do 'ls'. You always start out in your 'home directory', and you can get back there by typing 'cd' without arguments. 'cd ..' will get you one level up from your current position. You don't have to walk along step by step - you can make big leaps or avoid walking around by specifying pathnames.
  • pwd --- tells you where you currently are.

Finding things

  • ff --- find files anywhere on the system. This can be extremely useful if you've forgotten in which directory you put a file, but do remember the name. In fact, if you use ff -p you don't even need the full name, just the beginning. This can also be useful for finding other things on the system, e.g. documentation.
  • grep string filename(s) --- looks for the string in the files. This can be useful a lot of purposes, e.g. finding the right file among many, figuring out which is the right version of something, and even doing serious corpus work. grep comes in several varieties (grep, egrep, and fgrep) and has a lot of very flexible options. Check out the man pages if this sounds good to you.

About other people

  • w --- tells you who's logged in, and what they're doing. Especially useful: the 'idle' part. This allows you to see whether they're actually sitting there typing away at their keyboards right at the moment.
  • who --- tells you who's logged on, and where they're coming from. Useful if you're looking for someone who's actually physically in the same building as you, or in some other particular location.
  • finger username --- gives you lots of information about that user, e.g. when they last read their mail and whether they're logged in. Often people put other practical information, such as phone numbers and addresses, in a file called .plan. This information is also displayed by 'finger'.
  • last -1 username --- tells you when the user last logged on and off and from where. Without any options, last will give you a list of everyone's logins.
  • talk username --- lets you have a (typed) conversation with another user
  • write username --- lets you exchange one-line messages with another user
  • elm --- lets you send e-mail messages to people around the world (and, of course, read them). It's not the only mailer you can use, but the one we recommend.

About your (electronic) self

  • whoami --- returns your username. Sounds useless, but isn't. You may need to find out who it is who forgot to log out somewhere, and make sure *you* have logged out.
  • finger & .plan files
    of course you can finger yourself, too. That can be useful e.g. as a quick check whether you got new mail. Try to create a useful .plan file soon. Look at other people's .plan files for ideas. The file needs to be readable for everyone in order to be visible through 'finger'. Do 'chmod a+r .plan' if necessary. You should realize that this information is accessible from anywhere in the world, not just to other people on turing.
  • passwd --- lets you change your password, which you should do regularly (at least once a year).
  • ps -u yourusername --- lists your processes. Contains lots of information about them, including the process ID, which you need if you have to kill a process. Normally, when you have been kicked out of a dialin session or have otherwise managed to get yourself disconnected abruptly, this list will contain the processes you need to kill. Those may include the shell (tcsh or whatever you're using), and anything you were running, for example emacs or elm. Be careful not to kill your current shell - the one with the number closer to the one of the ps command you're currently running. But if it happens, don't panic. Just try again :) If you're using an X-display you may have to kill some X processes before you can start them again. These will show only when you use ps -efl, because they're root processes.
  • kill PID --- kills (ends) the processes with the ID you gave. This works only for your own processes, of course. Get the ID by using ps. If the process doesn't 'die' properly, use the option -9. But attempt without that option first, because it doesn't give the process a chance to finish possibly important business before dying. You may need to kill processes for example if your modem connection was interrupted and you didn't get logged out properly, which sometimes happens.
  • quota -v --- show what your disk quota is (i.e. how much space you have to store files), how much you're actually using, and in case you've exceeded your quota (which you'll be given an automatic warning about by the system) how much time you have left to sort them out (by deleting or gzipping some, or moving them to your own computer).
  • du filename --- shows the disk usage of the files and directories in filename (without argument the current directory is used). du -s gives only a total.
  • last yourusername --- lists your last logins. Can be a useful memory aid for when you were where, how long you've been working for, and keeping track of your phonebill if you're making a non-local phonecall for dialling in.

Connecting to the outside world

  • nn --- allows you to read news. It will first let you read the news local to turing, and then the remote news. If you want to read only the local or remote news, you can use nnl or nnr, respectively. To learn more about nn type nn, then \tty{:man}, then \tty{=.*}, then \tty{Z}, then hit the space bar to step through the manual. Or look at the man page. Or check out the hypertext nn FAQ - probably the easiest and most fun way to go.
  • rlogin hostname --- lets you connect to a remote host
  • telnet hostname --- also lets you connect to a remote host. Use rlogin whenever possible.
  • ftp hostname --- lets you download files from a remote host which is set up as an ftp-server. This is a common method for exchanging academic papers and drafts. If you need to make a paper of yours available in this way, you can (temporarily) put a copy in /user/ftp/pub/TMP. For more permanent solutions, ask Emma. The most important commands within ftp are get for getting files from the remote machine, and put for putting them there (mget and mput let you specify more than one file at once). Sounds straightforward, but be sure not to confuse the two, especially when your physical location doesn't correspond to the direction of the ftp connection you're making. ftp just overwrites files with the same filename. If you're transferring anything other than ASCII text, use binary mode.
  • lynx --- lets you browse the web from an ordinary terminal. Of course you can see only the text, not the pictures. You can type any URL as an argument to the G command. When you're doing this from any Stanford host you can leave out the .stanford.edu part of the URL when connecting to Stanford URLs. Type H at any time to learn more about lynx, and Q to exit.

Miscellaneous tools

  • webster word --- looks up the word in an electronic version of Webster's dictionary and returns the definition(s)
  • date --- shows the current date and time.
  • cal --- shows a calendar of the current month.
Shantanu

Wednesday, 25 January 2012

What is anti-virus software and how it works?

What is anti-virus software?
There are many brands of anti-virus software, but all anti-virus programs are designed to prevent, and detect any possible threats to your computer. As well as remove malware (malicious code), which not only can disrupt the operation of your computer, but also steal personal information. Anti-virus software has three main identification methods.
The first being signature-based detection, which is only effective against malware that the anti-virus software is already aware of. Otherwise signature-based detection would be rendered useless, as it cannot protect against new or unknown viruses.
The second method is heuristics, which is found in more sophisticated software. Heuristics purpose is to seek out new malware or various types of known malware.
The last method is rootkit protection, in which the program specifically seeks out rootkits. Rootkits are a type of malware that are designed, and used to gain access at the administrative-level. Ultimately rootkits can completely change an operating system, as well as cause any anti-virus protection to be ineffective.


Soon we will see how an antivirus software works.
Enjoy...!!!



Shantanu

What is Flash?

What is Flash?

Flash is a multimedia platform used to create and add animation, video, and interactivity to websites.  Flash incorporates vector and raster graphics that allow the flash programer to create and manipulate text animation, drawings, still images, sound, and video.  Furthermore, Flash supports user interaction via the mouse, keyboard, microphone or camera. Flash contains an object-oriented language called Actionscript and also supports automation via the Javascript Flash Language.  While many users feel that Flash content enriches their web experience, others find that the extensive use of Flash animation, particularly in advertising, is intrusive and annoying. This sentiment has given rise to a cottage industry that specializes in producing software and plug-ins that block Flash content. 

Flash files that are used in websites and online media are usually saved in the SWF format, originally called "ShockWave Flash," and generally have a .swf file extension. The use of vector graphics combined with program code allows Flash files to be smaller and load / stream faster because of the limited use of bandwidth. In addition to a vector-rendering engine, the Flash Player includes a virtual machine called the Action Script Virtual Machine (AVM) for scripting interactivity at run-time, support for video, MP3-based audio, and bitmap graphics.

The video features of Flash allow for video playback if the user has downloaded and installed Adobe's free Flash Player. The Flash Player is a cross-platform video plug-in that has become ubiquitous due to the large installed user base and programmability of Flash. Furthermore, Flash also supports audio which is most often encoded in MP3 or AAC, as well as several other audio codecs. Flash allows sample rates of 11, 22, and 44.1 kHz. However, it does not support 48 kHz audio sample rate which is the standard audio rate for TV and DVDs. 

Recently, there has been an announcement by Adobe that the company is stopping development on their mobile flash player. Instead, the company will focus its efforts on HTML 5 and their proprietary AIR-based apps for smartphones. However, although the company is abandoning Flash for the mobile market, the company will continue to promote and enhance their Flash Player for PC's. 


Apple v. Adobe (The Flash Controversy)

In 2010, Apple CEO Steve Jobs announced that Flash would not be made available for use with the companies iOS platforms (iPod, iPhone, iPad). Jobs posted a six point bulletin on the Apple website stating the reasons for Apples decision not to include Flash compatibility with iOS. Furthermore, there have been recent announcements by Adobe, that the company is not going to push its Flash software format for use in the browser programs that come with smartphones and tablet computers. Instead, Adobe will increase its support for HTML5.  For more information regarding Apple and their controversial decision that may have led to Adobe's decision to eventually exit the mobile Flash market, you can follow the link: http://www.apple.com/hotnews/thoughts-on-flash/
The following list contains some of the reasons Apple cited when deciding to exclude Flash from Apple iOS:
  • Open Standards
  • The Full Web Experience
  • Reliability and Security
  • Battery Life
  • Touch Interface
  • Flash Apps


Shantanu

What is DSL modem ?

What is a DSL modem?

A DSL modem is a device that is used to connect a computer or router to a telephone circuit that has a Digital Service Line (DSL). Using a Digital Subscriber Line Access Multiplexer (DSLAM), the DSL modem modulates high-frequency tones for transmission. The DSL modem will also receive and demodulate the transmissions from the DSLAM.  Compared to analog dial-up, DSL significantly increases the bandwidth between the user's computer and the Internet. Download speeds are theoretically capable of reaching 10 Mbps and beyond, but telephone companies often limit the speed and/or bandwidth capabilities to prevent Web Hosting. However, DSL modems still transfer data at a rate which is typically 10 to 20 times that of a voice-band modem. Furthermore, a single telephone line can be used for simultaneous voice and data with DSL, while a voice-band modem does not allow for simultaneous voice traffic. Because a single phone line commonly carries DSL and voice, DSL filters are used to separate the two lines. DSL modems use frequencies from 25 kHz - 1MHz, in order not to interfere with voice service (which is primarily located between 0-4kHz. Some DSL modems also manage the connection for and sharing of the DSL service in a network, and in this case, the DSL modem would be referenced as a DSL router or residential gateway. 

Most DSL modems are external to the computer and wired to the computer's Ethernet port. Less common are DSL modems that connect to a computers USB port. Internal DSL modems with PCI interfaces are also available, however, they too are rare compared to DSL modems that use an Ethernet port. Like many other computer technologies, DSL functions that have typically been provided by multiple chips can be integrated onto one chip.

Various Manufactures of DSL modems

  • NetGear
  • Motorola
  • TRENDnet
  • Linksys
  • Zoom
  • Cisco
  • Siemens
  • D-Link
  • Actiontec
  • Qwest

Shantanu

What is SSD 2?

A solid state drive (SSD) is a digital storage device much like the traditional Hard Disc Drive (HDD) with some key differences. SSD's are able to do many more input/output operations per second (IOPS) then HDD's which results in SSD's operating a lot faster then a HDD. Inside most SSD's are a drive controller, stacks of memory board micro chips and depending on the type of memory used, a battery. The controller, also known as a cache or a buffer is the "brains" of the SSD. The controller in a SSD is a central processing unit (CPU). The CPU is in effect a data traffic cop that directs data which will be "written" to the memory chips. For the written data to maintain it's status or state as data it needs an electrical charge to achieve a persistent state. In layman's terms, the data requires electrical power to continue to exist. SSD's achieve persistent data several different ways depending on the type of memory chip the data is being written to.

How the data is stored

Most memory chips used today are NAND Flash Memory. The major reason for this is that NAND Flash memory is considered non-volitile memory which means that when it is powered off the memory will remain intact. Further, NAND Flash memory does not require a battery to keep the data written while the host device is powered off. The other popular type of memory used in SSD's today is called DRAM based.
SSD's that use DRAM based memory are substantially faster than those that use NAND Flash memory. On the negative side DRAM memory is considered volatile memory and therefore requires a battery to maintain data to stay written when powered off. A popular workaround exists that helps bridge the gap between the limitations of both types of memory. The solution is to use DRAM to drive the CPU inside the drive controller but use NAND Flash memory as the place where the data is written. With this arrangement, only a small battery is required to power the DRAM. No battery is required for NAND memory therefore the SSD is able to be considered non-volitile.

Differences between SSD and HDD

How data is written

HDD's store data by magnetically writing data on a physical set of platters. HDD's are limited by physics in the sense that the platters and actuator arms can only spin and move to write on different platters at a finite speed. In comparison, SSD's store data on solid state computer chips which operate at the speed of light. 

SSD Vs. HDD: Advantages and Disadvantages

  • Devoid of moving parts, the SSD is superior to HDD's in resilience to shock, vibration and extreme temperatures. SSD are used in mission critical situations like aeronautical, nautical, space and military applications where a devices failure rate, or chances that the device will work or not must be under a certain mean time between failures (MTB)
  • In addition to speed, the absence of moving parts in SSD's results in lower power consumption compared to HDD. Lower Power consumption reduces the amount of heat emitted from the device which translates into less space required to dissipate heat. Less space used for heat dissipation means the SSD can have a smaller footprint then a HDD.
  • Anecdotal evidence suggests a benefit in using SSD's in high end audio situations. Poor shielding surrounding HDD's can allow audio hu.

Shantanu

What is a SSD and a HDD ?

What is a SSD?

A SSD (Solid-State Drive) is a solid state memory storage device that uses non-volatile memory chips and provides access to data in a similar manner to traditional hard disk drives. Rather than using spinning disks like a hard disk drive would, solid state drives contain no moving parts and use microchips to store data. Solid state drives use the same interface as hard disk drives, so they are easily interchangeable for most applications. Most solid state drives retain memory without power, but some exist that are RAM-based and lack data persistence. Currently, many computer setups have a hybrid drive that contains both solid state memory and a hard drive. This gives the user the advantage of having faster boot times and faster loading for frequently accessed applications while having the large storage space and value of a hard disk drive.

What is the difference between a SSD and HDD?

Compared to hard drives, solid state drives have many advantages. The spin-up time on a solid state drive will take a few milliseconds, while hard drives often take several seconds. It doesn’t matter where you store data on solid state drives, fragmented data will not slow performance. A lack of moving parts eliminates mechanical breakdowns, and creates a silent atmosphere for solid state drives. Solid state drives are stronger when exposed to a shock or vibration, and magnets will not alter data on them.

What are the disadvantages of using a SSD instead of a HDD?

There are a few disadvantages with solid state drives. Solid state drives that use flash memory have a limited number writes over the life of the drive, while hard disk drives have an unlimited number of writes. The storage capacity of solid state drives is currently too small and expensive to replace hard disk drives, with prices ranging up to 20 times the price per gigabyte and storage spaces typically under 120GB.
Shantanu

What is a Sector?


A computer disk is divided into tracks and sectors. The tracks are concentric circles around the disk and the sectors are segments within the circle. They look like pieces of a pie and are the smallest unit that can be accessed on a disk. A disk might have 40 tracks, for example, with each track divided into 10 sectors. Both the operating system and the disk drive keep track of where information is stored on the disk by noting its track and sector number.If a sector cannot be used due to a physical flaw,it is called a bad sector. Tracks on the outside of the disk contain more sectors than those on the inside. 
In computer disk storage, the sector of a subdivision of a track on a magnetic disk or optical disk stores a fixed amount of data. Hard drives use about 4KB sectors. In order to read the data in a sector a header is needed which looks like the needle arm of an old record player. Each header has three parts: the sector head, the data head, and the error-correcting code. The sector header gives information such as address identification and an alternate address to be used if its data area is undependable. The address identification is used to be sure the read/write head is over the right spot. The data area contains the recorded user data. The ECL contains codes which are used to check for and correct errors in the data.

Shantanu