Sunday, December 20, 2015

Best Antivirus Software for Mac OS X, According To Tests

If you think that Mac OS X is impregnable then rethink. Many people switch over to Mac from Windows just because the number of viruses that exist against the security of Windows out number antivirus software with tens of folds of margin.

Well, the same might apply to Mac OS X, but it does not necessarily conclude that MAC OS X does not have any security loopholes. Yes! it has. Just that we need some higher level of penetration testing which was very well done by AV-Test, a german company expert in antivirus software and antimalware reviews.


Av-Test is a German company expert in antivirus software and anti-malware reviews. This company’s basic model of working involves antivirus and antimalware testing reviews of different platforms like Android, iOS, Windows and Mac.

AV-Test performed the testing review for Mac OS X with a total of thirteen antivirus programs. After the antivirus testing on Mac OS X, there were some results drawn in a list of best to not-so-best (we cannot call an antivirus the worst antivirus in this case) antiviruses for Mac OS X.

Here are the results:

Out of the 13 antivirus tested, only 8 of them were able to identify and block cent percent of the malware.
- These antiviruses software were Avast, Avira, Bitdefender, ESET, Kaspersky, SentinelOne, Sophos, and Norton Security.
- Panda Antivirus 10.7 detected only 95.2 percent of the threats.
- Intego Mac Premium Bundle X8 followed Panda Antivirus 10.7 with 92.9 percent.
- Three antivirus products failed to receive the certification because they dropped below the 90 percent threshold. These antivirus software were ClamXav, Webroot SecureAnywhere, and F-Secure Anti-Virus.

Besides the percentage of malware blocked, another major criterion put was the impact of system performance of the Mac device. And here are the results of those:


Four antivirus software which do not hamper the system performance are Reference, ClamXav, Panda, Symantec, and Bitdefender
- AV-Test claims that Avast, one of the most secure antivirus for Mac, also degrades the system performance on Mac OS X.
- Overall, only four security products slow down Mac OS X devices by 10 percent.
- While rest of the other antiviruses software hamper the system performance by a great deal.
- However, Avast was still the champion antivirus among all.

Source: fossbytes

New LASER Technology Lets Camera Detect Objects Even At The Corners


If someone asks you how can you see an object around a blind corner, the most spontaneous reply that you could come up with would be “with the help of a mirror!”. Well, a group of scientists led by Genevieve Gariepy has taken a similar approach as well.

The working of a mirror: the shiny surface of a mirror reflects scattered light from an object/light source at a well-defined angle towards our eye. This is because that light scattered from different points on the object, in the case of a mirror, is reflected at the same angle, and so, our eye sees a clear image of the object. In contrast to this, in the case of a non-reflective surface light gets scattered randomly in all directions, and hence, creates no clear image.

Scientists are inspired from the same. What they did – they developed a state-of-the-art detector which, with smart data processing techniques, can turn walls and floors into a “virtual mirror”, thus being able to locate and track moving objects, even one that are out of direct line of sight. The laser range-finding technology further helps assist in the same.

So, how does the laser technology assisted camera work?

LASER stands for Light Amplification by Stimulated Emission of Radiation. The type of laser we are talking about over here is mainly infrared, semiconductor, GaAs laser diode. The generated light energy has a wavelength of approximately 900 nanometers, with a beam divergence of 3 milliradians – equal to a beam width of roughly 0.3 m at 100 m or likewise, 3 ft at 1000 ft. Laser Technology helps to calculate the distance by measuring the time of flight of very short pulses of infrared light.

This, however, differs from the traditional surveying instrument method of measuring phase shifts by comparing the incoming wavelength with the phase of the outgoing light. Any solid object will reflect back a certain percentage of the emitted light energy. This only needs to be a small percentage for the sensitive detector to pick it up. The time it takes a laser pulse to travel to the target and back with a precision, is thus measured by a crystal-controlled time base. Knowing the constant speed of light, it is then the distance traveled is then easily calculated. Also, For increased accuracy, the laser process as many as sixty pulses in a single measurement period. Target acquisition times range from 0.3 to 0.7 seconds. Sophisticated accuracy validation algorithms are in place to ensure a reliable reading. LTI lasers are completely eye-safe, meeting FDA Class 1 specifications.

A laser pulse is made to strike on the floor, which scatters in all directions. A small fraction of the laser light strikes the object, and the backscattered light is recorded on a patch of floor, which acts as the “virtual mirror”. This is explained in the image given below. We know that the speed of light is constant and is known to us(3*10^8m/s). Thus, by measuring the time interval between the start of the laser pulse and the scattered light reaching the patch of floor, the position of the object can be calculated.

Also Read: MIT Researchers Use Wi-Fi To See People Through Walls
Also, why the timing measurement needs to be accurate, is because of the fact that light levels that must be detected are extremely low. To overcome this obstacle demands the use advanced laser and detector technology. The laser pulses used for the timing measurement are just ten femtoseconds (100,000 billionths of a second, or 10-15) Long. Also, each pixel in the ultra-sensitive “camera” (known as a single-pixel avalanche diode array) used to image the patch of the floor is essentially an ultra fast stopwatch that records the arrival time of the scattered light pulse to within a few hundred billionths of a second.
Besides, light scattered from the object of interest reaches the virtual mirror of the floor, but the problem lies in the fact that light scattered from every other object in the vicinity does the same. Hence, it becomes essential that the two be separated, the “signal” of the hidden object from the background noise of everything else.

So how is that achieved? Well, the logic applied here is that the hidden object the device is trying to detect is mobile, while other nearby objects are not. Because the moving object generates a signal in the virtual mirror that changes with time, it can be filtered from the constant background signal produced by the stationary objects of the surroundings.

The final stage being the timing measurement for scattered light arriving at a single point on the virtual mirror. This is recorded by a single pixel in the detector. A similar time delay could result from objects located at any number of different positions located an appropriate distance from the virtual mirror. While the timing data from a single pixel only locates the object to a range of positions, the range is different for each pixel. However, it turns out that there is only a single position at which the timing condition is satisfied simultaneously for all pixels, and this allows the object to be unambiguously identified from the background signals.

Take a look at the video below:


What’s more is that the prototype camera system allows the object’s position behind the wall to be localized within a centimeter or two. Also, the camera makes measurements every few seconds and hence can detect the speed of a moving object. Over the former method that demanded long data processing times, the new method can track moving objects in real time.

While currently, it’s limited to locating objects up to 60cm away from the virtual mirror on the floor, scientists are optimistic of extending the same to approximately ten meters, as well as to more closely detect the shapes of hidden objects as well as their positions. The future applications seem to be promising in areas such as surveillance or for security purposes.

Tell us about your opinions/suggestions in the comment below.

Source: fossbytes

Friday, December 18, 2015

Juniper Networks discovers "unauthorized" code that decrypts encrypted VPN traffic



Networking provider Juniper Networks has released an emergency patch to remedy what appears to be an intentional backdoor into many of its products.

Juniper Chief Information Officer Bob Worrall said that during a recent internal code review, they found "unauthorized code" in ScreenOS that could allow a knowledgeable attacker to gain admin access to NetScreen devices and to decrypt VPN connections.

The company said NetScreen devices using ScreenOS 6.2.0r15 through 6.2.0r18 and 6.3.0r12 through 6.3.0r20 are affected and require immediate patching. Worrall said that once they identified the issue, they launched an investigation and set about developing and issuing a patched version of ScreenOS.

Juniper Networks added that they have not received any reports of the vulnerabilities being exploited in the wild (nor should they expect to). The obvious question is, how did the nefarious code get into the software to begin with? Was it a rogue employee on a power trip or did a government agency have something to do with it?

As Ars Technica points out, an article a few years back published by Der Spiegel references an NSA operation targeting Juniper firewalls that gave them backdoor access. Said operation, dubbed FEEDTHROUGH, was described as malware that could get into Juniper firewalls and even survive software upgrades.

Conveniently enough, Juniper doesn't mention how it thinks the code might have come into play.

Source: techspot

The First iPhone Hacker Builds A Self-driving Car Within A Month In His Garage


eorge Hotz is often regarded as a pioneer in the field of iPhone hacking. Better known as “Geohot”, in the past he has said that he hacks because he gets bored. Probably this boredom and a desire to make calls from his own network on the newly released iPhone in 2007, inspired him to jailbreak the phone. But, these days he is onto something much bigger.

His new hobby pertains to taking on Google, Tesla, and Apple – all by himself. He spends his days perfecting his autonomous car based on an Acura ILX sedan. He started to work on his project in his garage this October, and the car actually works.


This prodigy took a 2015 Acura ILX with AcuraWatch Plus package and added some cameras and a laser-based radar (LIDAR). Talking about his system, he calls it substantially different from those in the market as his system doesn’t follow the programmed driving rules. Instead, his car learns using intelligent deep learning and by watching the iPhone hacker drive.

Normally, the preinstalled Lane Keeping Assist System (LKAS) in Acura warns the driver if it doesn’t detect steering input and disables it to force a restart. In Hotz’s system, a computer coupled with GPS sensors and cables is used to sneak into car’s internal bus to take control. This computer runs Linux and car’s glovebox is replaced by its 21.5-inch LCD.


To engage the self-driving system, there’s a gaming joystick installed in the center console of ILX. Just with a single pull, the self-driving system of Acura ILX sedan engages.

In the past, Hotz has turned down many fancy job offers and is currently working on to take down Mobileye, a driving assistance systems supplier that plays an important role in Tesla’s Autopilot system. Notably, Mr. Elon Musk himself offered him a job at Tesla and emailed him, but Hotz declined due to Musk’s uncertain deal terms.

If you look inside his autonomous car, it looks like a mess of wires and sensors with a joystick and an LCD screen in the middle. Even though there are no immediate plans of commercializing his work, he wishes to sell this system in future to the car makers or as a kit to the consumers for about $1,000.

Check out the full story of the electronics hacker on Bloomberg and watch the video below:


Source: fossbytes

Wednesday, December 16, 2015

Pirates Earn Up To $70 Million/year As A Pirate, Shows Study

The dusts from the unabating tussle between the pirates and the copyright holders is still befouling the digital atmosphere, and a new study has come into light which claims the annual earnings of pirates to be around $70 million in a year. And it also empowers the argument made by the copyright holders.


RiskIQ, a San Francisco-based cybersecurity company, was authorized by the Digital Citizens Alliance (DCA) to conduct the study titled as “Digital Bait”, which was out of a sample of about 800 websites hosting pirated content. It was realized, one out of every three websites were indulged in transmitting malware that was found attached with their digital content downloaded by the users.

Another mode of malware spreading is “drive-by download” which involves installing a malicious software on a device without user’s consent. Such download processes are usually expedited by adware acting as the front face, or as a background process, users being completely unaware of any potential threat to his device.

It’s clear that the criminals who exploit stolen content have diversified to make more money by baiting consumers to view videos and songs and then stealing their IDs and financial information.

— a statement made by Tom Galvin, Executive Director of DCA.



The malware installed on these devices are then used to purloin payment credentials which are then sold in the Underground Darknet for $2-$135 per credential, and to deploy Remote Access Trojans (RTA) to nab photos, videos and control the webcam. The infected device can be locked down and used for demanding ransom. “Botnets can make a user’s PC behave like a ‘zombie’ that performs operator’s bidding such as distributed denial-of-service attacks (DDoS)”, says the report.
Jacob Siegel writes for BGR.com,
It’s a terrifying (and lucrative) industry, but you can effectively protect yourself from it by simply avoiding malicious sites. One of the most interesting claims in the study is that content theft sites are 28x more likely to contain malware than a legitimate site.

On a conclusive note, you need to “stop” your habit of taking these websites as, ‘for granted’. Prepare yourself to shell put some cash and subscribe authentic streaming services like Netflix and Hulu to watch your favorite Movies and TV Shows. Anyways, the choice is yours, make it large.

Source: fossbytes

Tuesday, December 15, 2015

6 Amazing Things You Probably didn’t know about Your Computer


It’s a ritual across the globe: somewhere between sticking the kettle on and complaining about last night’s match, you’ll probably hit the button on your ageing company PC and wait while it slowly thinks about turning on. Rather than take it for granted, though, it’s worth taking a couple minutes to realize a few of the things that your poor robot slave does without you ever knowing.

1. Bits, Bytes, and Size

Next time you complain about the pitiful memory capacity of your old 8GB iPod Touch, it’s worth remember what makes up eight whole gigabytes. Computer science grads will know that in every gigabyte, there’s 1024 megabytes; 1024 kilobytes in a megabyte, and 1024 bytes in a kilobyte. Breaking it down to the lowest level, you’ve got 8 bits in a byte.

Why does that matter? Because on a flash drive, each bit of data is made up of eight separate floating gates, each comprising two physical transistors, which can basically record themselves as either a ‘1’ or a ‘0’. (Want to be impressed ever further? Each floating gate actually relies on quantum mechanics to work.) That means that an 8GB iPod Touch – the one you were laughing at a minute ago for being puny – has, according to my back-of-the-napkin maths, 549,755,813,888 individual gates arrayed inside that svelte aluminium body. Mighty clever engineering indeed.

2. Everything you see or hear on the internet is actually on your computer

All your computer-whizz friends probably delight in telling you how having a ‘library’ of videos is so 2008, that no-one torrents any more, it’s all Netflix and iPlayer and ‘The Cloud’, whatever that means. But, you might want to remind them: every time you stream a video or the week’s latest Top 40 off the web, it’s actually, technically playing off your computer.See, every internet media file has to make a local copy of itself on your machine, first. Ever wondered what that white buffering bar means on YouTube or Netflix? It’s the amount of video that’s been copied to the local cache, a.k.a. the amount you can still watch if your internet decides to up and die.

3. The distance data travels


A quick experiment for you: click this link, which should take you to Wikipedia. With one click, you’ve just fetched a bunch of data from servers in Ashburn, Virginia, about 6000km away. Your request has travelled from your computer, through a local Wi-Fi router or a modem, up to a local data centre, from there onwards (under the Atlantic Ocean, if you’re in the UK), all the way to Virginia, and back again – in around 0.1 of a second, depending on how good your internet connection is.

By comparison, your body takes around 0.15 of a second for a signal to pass from your fingers, up your spinal cord to the brain, and back down again.

4. Counting Starts at Zero

At a base level, every computer’s just a really big, complicated calculator. But thanks to the way its intrinsic circuitry works – with lots of little logic gates that are either ‘on’ or ‘off’ – every action that takes place at a base level is happening in binary, where things are either a 1 or a 0, with no shades of grey in between.

This actually translates up to a neat bit of programming trivia – in the computer science world, all counting (with the rather notable exceptions of Fortran and Visual Basic) starts at zero, not one.

It actually makes a lot more sense – ever thought about why the 20th century refers to the 1900s? It’s because when historians decided on the dating system, they weren’t clever enough to call the very first century (0-99AD) the 0th century. If they had, we’d probably have far fewer confused school children the world over.

5. The work that goes into a Ctrl+C, Ctrl+V

One rather under-appreciated fact about solid state drives (SSDs), regarded as the gold standard for fast, reliable storage, is the amount of copying they have to do. When you want to copy some data from one bit to another, it’s not just a matter of shuffling the data from one part of the drive to another.

Because of the complicated way a SSD works, over-writing a block of old data with some shiny new data isn’t as simple as just writing the new stuff in with a bigger, thicker Sharpie. Rather, the storage drive has to do some complicated shuffling around.

In practice, this can mean that writing a tiny 4KB file can require the drive to read 2MB (that’s thousands of times more data that the 4KB file you’re trying to write), store that temporarily, erase a whole tonne of blocks, then re-write all the data. It’s rather labour-intensive, so think before you juggle your files around next time.

6. Code isn’t as clean as you think


The majority of us put faith in bits of technology you don’t quite understand – be it committing your life to a 747, or your dirty pics to Snapchat’s auto-delete. When you do you generally tend to assume that the code’s been scrupulously examined by teams of caffeine-fuelled programmers, with most of the niggling little bugs found and nixed.

The truth seems to be quite the opposite. One Quora user pointed out that buried within the source code for Java, one of the internet’s fundamental bits of code, is this gem:

/**
* This method returns the Nth bit that is set in the bit array. The
* current position is cached in the following 4 variables and will
* help speed up a sequence of next() call in an index iterator. This
* method is a mess, but it is fast and it works, so don’t f*ck with it.
*/
private int _pos = Integer.MAX_VALUE;
It just goes to show that even programmers rush things to get home for the next installment of Game of Thrones sometimes.

Source: technotification

Monday, December 14, 2015

10 Reasons To Switch Over To Linux OS Right Now


Linux has been around for years and so as the other operating systems. The evidences, rumors and even frustrations from the tech world suggest that Linux still leads the way at personal as well as enterprise level.
Here are 10 reasons to switch over to Linux from other operating systems right now:

1. Linux is free:


Leave aside Apple, we all know how things and software at professional level work in Apple. Even Windows charges for upgrades. However, if you want to switch over to the Linux, you do not have to pay any extra cost. Yes, it’s completely free.

2. More Secure:


Ask people who use Windows. Ask how much they do not want unwanted things playing around their computers. Basically, you cannot survive without an antivirus.

On the other hand, Linux is unknown to a virus and so, antivirus as well. You do not have to pay much attention towards security and programs doing unwanted things in the background.

3. It’s easy to use:


Well, it might sound like a stupid statement but gone are those days when you needed to be a computer expert to use the Linux operating system. With time, the Linux has evolved and these days, Linux also offers great user interface like other operating systems. It just takes to come out of your closet and try your hands on this beautiful OS. Once acquainted with it, you might very well start enjoying playing around with the Linux.

4. It runs Free and Open Source Software (FOSS):


Not to be denied, you can pretty much install many of the proprietary titled software to your Windows. However, when it comes to running FOSS on Windows, its same as India building a dam in Pakistan on a river originated in China. You know what I mean. What’s so special about FOSS? Well, it’s free, easy to use, usually stable, and secure and versatile — the same things that make Linux special.

5. It’s Versatile:


Most of the popular operating system run on ‘One size fits all’ benchmark. When we talk about Linux, there are literally different versions that you can further customize to suit your needs. For example, if you are a gamer, you can simply install/ uninstall some packages to move from a DJ to a gamer level in Linux. This kind of flexibility is not offered in other OS. That’s why Linux is Versatile.

6. Compatibility:


Ah! when upgraded from lower versions to higher versions, many software need further up gradation. On top of that, there are compatibility issues with the hardware and drivers. Well, that’s not a regular case with the Linux. You can literally survive on a machine from even 90s.

7. Software repository:



Well, you do not have a particular store called app store or Android store or Windows store, where you might have to buy a professional version of a software. The Linux world has its own store and there, everything is for free. Linux recommends a compatible software automatically for you and also, you keep on getting automatic updates for free.

8. Regular Linux updates:


You do not have to wait every one year or every eighteen months for an upgraded software roll out and in the meantime keep struggling with the lacuna of your operating system, or trying to find a fix temporarily. Yes, in the Linux, you get regular updates along with the provision of short-short updates and that too for a particular package. Moreover, you do not need to restart your machine in all cases. It just happens like a fluke.

9. Drivers already included in Linux:


We have seen those times, when after installing an operating system, the next step we had to go for will be the long process of installation of drivers like wifi driver, Bluetooth driver, touchpad driver, graphics card driver, audio driver and much more. Well, that’s not the case with the Linux. Most of the drivers are supported by the Linux Kernel. That means you do not have to hunt around to find a driver. It’s more like plug n play.

10. Big Linux Community Support:


Linux community is probably the best thing Linux has seen. You are never alone. There are a plethora of forum where you will find the answers for your problem. If you think you can resolve the issue, you can also contribute towards it. Such support is still missing in other OS.

Source: fossbytes