Entries Tagged "scams"

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Weird Lottery Hack

This is a weird story:

On January 4, 2005 Dr Lee and Ms Day presented their Lotto ticket at the World Square Newsagency Bookshop. A friend took their photo with the ticket before they handed it in and filled in a claim form.

After the transaction, the employee who had served them, Chrishartato Ongkoputra, known as Chris Ong, substituted their claim form for one of his own. He then sent his form, and their winning ticket, to NSW Lotteries.

“The stars really aligned for him,” said the barrister James Stevenson, SC, who is representing newsagents Michael Pavellis and his partner Sheila Urech-Tan.

Mr Ong knew that NSW Lotteries would not pay out for 14 days. He told his boss he was having visa problems and needed to return temporarily to Indonesia. He gambled that the backpackers would not chase up their win until after he had left the country.

Gutsy.

Posted on May 7, 2007 at 11:07 AM • View Comments

Top 10 Internet Crimes of 2006

According to the Internet Crime Complaint Center and reported in U.S. News and World Report, auction fraud and non-delivery of items purchased are far and away the most common Internet crimes. Identity theft is way down near the bottom.

Although the number of complaints last year­207,492­fell by 10 percent, the overall losses hit a record $198 million. By far the most reported crime: Internet auction fraud, garnering 45 percent of all complaints. Also big was nondelivery of merchandise or payment, which notched second at 19 percent. The biggest money losers: those omnipresent Nigerian scam letters, which fleeced victims on average of $5,100 ­followed by check fraud at $3,744 and investment fraud at $2,694.

[…]

The feds caution that these figures don’t represent a scientific sample of just how much Net crime is out there. They note, for example, that the high number of auction fraud complaints is due, in part, to eBay and other big E-commerce outfits offering customers direct links to the IC3 website. And it’s tough to measure what may be the Web’s biggest scourge, child porn, simply by complaints. Still, the survey is a useful snapshot, even if it tells us what we already know: that the Internet, like the rest of life, is full of bad guys. Caveat emptor.

Posted on April 24, 2007 at 12:25 PM • View Comments

Hacking the U.S. Post Office

This is clever:

Many USA ecommerce shops don’t send their goods to Russia or to the countries of the Ex-USSR.

Some shops send but delivery costs differ greatly from the homeland ones, they are usually much bigger.

So what did some Russians invented? They got a way to fool the delivery.

It’s no secret that many bigger shops use electronic systems processing orders. So in order to see if this address is in USA or Canada it uses ZIP code, state or province name and words “USA” or “CANADA”.

So what was possible to do is to put totally Russian address in the order delivery form, like: Moscow, Lenin St. 20, Russia in the address fields, usually there is a plenty of space to enter long things like this, and in the field country they put Canada in the field ZIP code ­ Canadian zip code.

What happens next? The parcel travels to Canada, to the area to which the specified ZIP code belongs and there postal workers just see it’s not a Canadian address but Russian. They consider it to be some sort of mistake and forward it further, to Russia.

Posted on April 23, 2007 at 1:00 PM • View Comments

Story of a Credit Card Fraudster

A two–part story from The Guardian: an excerpt from Other People’s Money: The Rise And Fall Of Britain’s Most Audacious Credit Card Fraudster.

The first time I did the WTS, it was on a man from London who was staying in a £400 hotel room in Glasgow. I used my hotel phone trick to get his card and personal information—fortunately, he was a trusting individual. I then called his card company and explained that I was the gentleman concerned, in Glasgow on business, and had suffered the theft of my wallet and passport. I was understandably distraught, lying on my bed in Battlefield and speaking quietly so my parents couldn’t hear, and wondered what the company suggested I do. The sympathetic woman at the other end proposed I take a cash advance set against my account, which they could have ready for collection within a couple of hours at a wire transfer operator.

Posted on April 4, 2007 at 6:25 AM • View Comments

Social Engineering Diamond Theft

Nice story:

In what may be the biggest robbery committed by one person, the conman burgled safety deposit boxes at an ABN Amro bank in Antwerp’s diamond quarter, stealing gems weighing 120,000 carats. Posing as a successful businessman, the thief visited the bank frequently, befriending staff and gradually winning their confidence. He even brought them chocolates, according to one diamond industry official.

[…]

Mr Claes said of the thief: “He used no violence. He used one weapon—and that is his charm—to gain confidence. He bought chocolates for the personnel, he was a nice guy, he charmed them, got the original of keys to make copies and got information on where the diamonds were.

“You can have all the safety and security you want, but if someone uses their charm to mislead people it won’t help.”

People are the weakest security link, almost always.

Posted on March 19, 2007 at 3:42 PM • View Comments

Huge Online Bank Heist

Wow:

Swedish bank Nordea has told ZDNet UK that it has been stung for between seven and eight million Swedish krona—up to £580,000—in what security company McAfee is describing as the “biggest ever” online bank heist.

Over the last 15 months, Nordea customers have been targeted by emails containing a tailormade Trojan, said the bank.

Nordea believes that 250 customers have been affected by the fraud, after falling victim to phishing emails containing the Trojan. According to McAfee, Swedish police believe Russian organised criminals are behind the attacks. Currently, 121 people are suspected of being involved.

This is my favorite line:

Ehlin blamed successful social engineering for the heist, rather than any deficiencies in Nordea security procedures.

Um…hello? Are you an idiot, or what?

Posted on January 23, 2007 at 12:54 PM • View Comments

MPAA Kills Anti-Pretexting Bill

Remember pretexting? It’s the cute name given to…well…fraud. It’s when you call someone and pretend to be someone else, in order to get information. Or when you go online and pretend to be someone else, in order to get something. There’s no question in my mind that it’s fraud and illegal, but it seems to be a gray area.

California is considering a bill that would make this kind of thing illegal, and allow victims to sue for damages.

Who could be opposed to this? The MPAA, that’s who:

The bill won approval in three committees and sailed through the state Senate with a 30-0 vote. Then, according to Lenny Goldberg, a lobbyist for the Privacy Rights Clearinghouse, the measure encountered unexpected, last-minute resistance from the Motion Picture Association of America.

“The MPAA has a tremendous amount of clout and they told legislators, ‘We need to pose as someone other than who we are to stop illegal downloading,'” Goldberg said.

These people are looking more and more like a criminal organization every day.

EDITED TO ADD (12/11): Congress has outlawed pretexting. The law doesn’t go as far as some of the state laws—which it pre-empts—but it’s still a good thing.

Posted on December 4, 2006 at 7:38 AM • View Comments

Separating Data Ownership and Device Ownership

Consider two different security problems. In the first, you store your valuables in a safe in your basement. The threat is burglars, of course. But the safe is yours, and the house is yours, too. You control access to the safe, and probably have an alarm system.

The second security problem is similar, but you store your valuables in someone else’s safe. Even worse, it’s someone you don’t trust. He doesn’t know the combination, but he controls access to the safe. He can try to break in at his leisure. He can transport the safe anyplace he needs to. He can use whatever tools he wants. In the first case, the safe needs to be secure, but it’s still just a part of your overall home security. In the second case, the safe is the only security device you have.

This second security problem might seem contrived, but it happens regularly in our information society: Data controlled by one person is stored on a device controlled by another. Think of a stored-value smart card: If the person owning the card can break the security, he can add money to the card. Think of a DRM system: Its security depends on the person owning the computer not being able to get at the insides of the DRM security. Think of the RFID chip on a passport. Or a postage meter. Or SSL traffic being sent over a public network.

These systems are difficult to secure, and not just because you give your attacker the device and let him utilize whatever time, equipment and expertise he needs to break it. It’s difficult to secure because breaks are generally “class breaks.” The expert who figures out how to do it can build hardware—or write software—to do it automatically. Only one person needs to break a given DRM system; the software can break every other device in the same class.

This means that the security needs to be secure not against the average attacker, but against the smartest, most motivated and best funded attacker.

I was reminded of this problem earlier this month, when researchers announced a new attack (.pdf) against implementations of the RSA cryptosystem. The attack exploits the fact that different operations take different times on modern CPUs. By closely monitoring—and actually affecting—the CPU during an RSA operation, an attacker can recover the key. The most obvious applications for this attack are DRM systems that try to use a protected partition in the CPU to prevent the computer’s owner from learning the DRM system’s cryptographic keys.

These sorts of attacks are not new. In 1995, researchers discovered they could recover cryptographic keys by comparing relative timings on chips. In later years, both power and radiation were used to break cryptosystems. I called these “side-channel attacks,” because they made use of information other than the plaintext and ciphertext. And where are they most useful? To recover secrets from smart cards.

Whenever I see security systems with this data/device separation, I try to solve the security problem by removing the separation. This means completely redesigning the system and the security assumptions behind it.

Compare a stored-value card with a debit card. In the former case, the card owner can create money by changing the value on the card. For this system to be secure, the card needs to be protected by a variety of security countermeasures. In the latter case, there aren’t any secrets on the card. Your bank doesn’t care that you can read the account number off the front of the card, or the data off the magnetic stripe off the back—the real data, and the security, are in the bank’s databases.

Or compare a DRM system with a financial model that doesn’t care about copying. The former is impossible to secure, the latter easy.

While common in digital systems, this kind of security problem isn’t limited to them. Last month, the province of Ontario started investigating insider fraud in their scratch-and-win lottery systems, after the CBC aired allegations that people selling the tickets are able to figure out which tickets are winners, and not sell them. It’s the same problem: the owners of the data on the tickets—the lottery commission—tried to keep that data secret from those who had physical control of the tickets. And they failed.

Compare that with a traditional drawing-at-the-end-of-the-week lottery system. The attack isn’t possible, because there are no secrets on the tickets for an attacker to learn.

Separating data ownership and device ownership doesn’t mean that security is impossible, only much more difficult. You can buy a safe so strong that you can lock your valuables in it and give it to your attacker—with confidence. I’m not so sure you can design a smart card that keeps secrets from its owner, or a DRM system that works on a general-purpose computer—especially because of the problem of class breaks. But in all cases, the best way to solve the security problem is not to have it in the first place.

This essay originally appeared on Wired.com.

EDITED TO ADD (12/1): I completely misunderstood the lottery problem in Ontario. The frauds reported were perpetrated by lottery machine operators at convenience stores and the like stealing end-of-week draw tickets from unsuspecting customers. The customer would hand their ticket over the counter to be scanned to see if it was a winner. The clerk (knowing what the winning numbers actually were) would palm a non-winning ticket into the machine, inform the customer “sorry better luck next time” and claim the prize on their own at a later date.

Nice scam, but nothing to do with the point of this essay.

Posted on November 30, 2006 at 6:36 AM • View Comments

Sidebar photo of Bruce Schneier by Joe MacInnis.