Cyberwarfare

Cyberwarfare raises issues of growing national interest and concern.

Cyberwarfare can be used to describe various aspects of defending and attacking information and computer networks in cyberspace, as well as denying an adversary’s ability to do the same. Some major problems encountered with cyber attacks, in particular, are the difficulty in determining the origin and nature of the attack and in assessing the damage incurred.

A number of nations are incorporating cyberwarfare as a new part of their military doctrine. Some that have discussed the subject more openly include the United Kingdom, France, Germany, Russia, and China. Many of these are developing views toward the use of cyberwarfare that differ from those of the United States, and in some cases might represent national security threats.

Cyberterrorism is also an issue of growing national interest. Many believe terrorists plan to disrupt the Internet or critical infrastructures such as transportation, communications, or banking and finance. It does seem clear that terrorists use the Internet to conduct the business of terrorism, but on closer inspection, however, it is not clear how or whether terrorists could use violence through the Internet to achieve political objectives.

Although the U.S. government is striving to consolidate responsibility for and focus more attention on cyberwarfare issues, it is not clear how successful those efforts will be. Congress may choose to examine critically the policies, organization, and legal framework that guides executive ranch decisionmaking on issues of cyberwarfare.
Showing posts with label cyber experts. Show all posts
Showing posts with label cyber experts. Show all posts

Wednesday, January 20, 2010

War Against Computer

Companies Fight

Endless War Against

Computer Attacks


http://wwwimage.cbsnews.com/images/2005/05/31/image698632x.jpg
Published: January 17, 2010

The recent computer attacks on the mighty Google left every corporate network in the world looking a little less safe.

"Fighting computer crime is a balance of technology and behavioral science,” said Edward M. Stroz, a former agent with the F.B.I.

Google’s confrontation with China — over government censorship in general and specific attacks on its systems — is an exceptional case, of course, extending to human rights and international politics as well as high-tech spying. But the intrusion into Google’s computers and related attacks from within China on some 30 other companies point to the rising sophistication of such assaults and the vulnerability of even the best defenses, security experts say.

“The Google case shines a bright light on what can be done in terms of spying and getting into corporate networks,” said Edward M. Stroz, a former high-tech crime agent with the F.B.I. who now heads a computer security investigation firm in New York.

Computer security is an ever-escalating competition between so-called black-hat attackers and white-hat defenders. One of the attackers’ main tools is malicious software, known as malware, which has steadily evolved in recent years. Malware was once mainly viruses and worms, digital pests that gummed up and sometimes damaged personal computers and networks.

Malware today, however, is likely to be more subtle and selective, nesting inside corporate networks. And it can be a tool for industrial espionage, transmitting digital copies of trade secrets, customer lists, future plans and contracts.

Corporations and government agencies spend billions of dollars a year on specialized security software to detect and combat malware. Still, the black hats seem to be gaining the upper hand.

In a survey of 443 companies and government agencies published last month, the Computer Security Institute found that 64 percent reported malware infections, up from 50 percent the previous year. The financial loss from security breaches was $234,000 on average for each organization.

“Malware is a huge problem, and becoming a bigger one,” said Robert Richardson, director of the institute, a research and training organization. “And now the game is much more about getting a foothold in the network, for spying.”

Security experts say employee awareness and training are a crucial defense. Often, malware infections are a result of high-tech twists on old-fashioned cons. One scam, for example, involves small U.S.B. flash drives, left in a company parking lot, adorned with the company logo. Curious employees pick them up, put them in their computers and open what looks like an innocuous document. In fact, once run, it is software that collects passwords and other confidential information on a user’s computer and sends it to the attackers. More advanced malware can allow an outsider to completely take over the PC and, from there, explore a company’s network.

With this approach, the hackers do not need to break through a company’s network defenses because a worker has unknowingly invited them inside.

Another approach, one used in the Google attacks, is a variation on so-called phishing schemes, in which an e-mail message purporting to be from the recipient’s bank or another institution tricks the person into giving up passwords. Scammers send such messages to thousands of people in hopes of ensnaring a few. But with so-called spear-phishing, the bogus e-mail is sent to a specific person and appears to come from a friend or colleague inside that person’s company, making it far more believable. Again, an attached file, once opened, unleashes the spy software.

Other techniques for going inside companies involve exploiting weaknesses in Web-site or network-routing software, using those openings as gateways for malware.

To combat leaks of confidential information, network security software looks for anomalies in network traffic — large files and rapid rates of data transmission, especially coming from corporate locations where confidential information is housed.

“Fighting computer crime is a balance of technology and behavioral science, understanding the human dimension of the threat,” said Mr. Stroz, the former F.B.I. agent and security investigator. “There is no law in the books that will ever throw a computer in prison.”

As cellphones become more powerful, they offer new terrain for malware to exploit in new ways. Recently, security experts have started seeing malware that surreptitiously switches on a cellphone’s microphone and camera. “It turns a smartphone into a surveillance device,” said Mark D. Rasch, a computer security consultant in Bethesda, Md., who formerly prosecuted computer crime for the Justice Department.

Hacked cellphones, Mr. Rasch said, can also provide vital corporate intelligence because they can disclose their location. The whereabouts of a cellphone belonging to an investment banker who is representing a company in merger talks, he said, could provide telling clues to rival bidders, for example.

Security experts say the ideal approach is to carefully identify a corporation’s most valuable intellectual property and data, and place it on a separate computer network not linked to the Internet, leaving a so-called air gap.

“Sometimes the cheapest and best security solution is to lock the door and don’t connect,” said James P. Litchko, a former government security official who is a manager at Cyber Security Professionals, a consulting firm.

Some companies go further, building “Faraday cages” to house their most critical computers and data. These cages typically have a metal grid structure built into the walls, so no electromagnetic or cellphone transmissions can come in or out. Defense contractors, aerospace companies and some automakers have built Faraday cages, named for the 19th-century English scientist Michael Faraday, who designed them to shield electrical devices from lightning and other shocks.

But in the Internet era, isolationism is often an impractical approach for many companies. Sharing information and knowledge with industry partners and customers is seen as the path to greater flexibility and efficiency. Work is routinely done by far-flung project teams. Mobile professionals want vital company data to be accessible wherever they are.

Most of that collaboration and communication is done over the Internet, increasing the risk of outside attacks. And the ubiquity of Internet access inside companies has its own risks. In a case of alleged industrial theft that became public recently, a software engineer at Goldman Sachs was accused last year of stealing proprietary software used in high-speed trading, just before he left for another firm. The engineer, who pleaded not guilty, had uploaded the software to a server computer in Germany, prosecutors say.

The complexity of software code from different suppliers, as it intermingles in corporate networks and across the Internet, also opens the door to security weaknesses that malware writers exploit. One quip among computer security experts is: “The sum of the parts is a hole.”

But, security experts say, the problem goes well beyond different kinds of software not playing well together. The software products themselves, they say, are riddled with vulnerabilities — thousands of such flaws are detected each year across the industry. Several weaknesses, it seems, including one in the Microsoft Internet Explorer browser, were exploited in the recent attacks on Google that were aimed at Chinese dissidents.

The long-term answer, some experts assert, lies in setting the software business on a path to becoming a mature industry, with standards, defined responsibilities and liability for security gaps, guided by forceful self-regulation or by the government.

Just as the government eventually stepped in to mandate seat belts in cars and safety standards for aircraft, says James A. Lewis, a computer security expert at the Center for Strategic and International Studies, the time has come for software.

Mr. Lewis, who advised the Obama administration about online security last spring, recalled that he served on a White House advisory group on secure public networks in 1996. At the time, he recommended a hands-off approach, assuming that market incentives for the participants would deliver Internet security.

Today, Mr. Lewis says he was mistaken. “It’s a classic market failure — the market hasn’t delivered security,” he said. “Our economy has become so dependent on this fabulous technology — the Internet — but it’s not safe. And that’s an issue we’ll have to wrestle with.”

Crown jewels of Google, Cisco Systems or any other technology company

Fearing Hackers Who Leave No Trace
By JOHN MARKOFF and ASHLEE VANCE

MOUNTAIN VIEW, Calif. — The crown jewels of Google, Cisco Systems or any other technology company are the millions of lines of programming instructions, known as source code, that make its products run.

If hackers could steal those key instructions and copy them, they could easily dull the company’s competitive edge in the marketplace. More insidiously, if attackers were able to make subtle, undetected changes to that code, they could essentially give themselves secret access to everything the company and its customers did with the software.

The fear of someone building such a back door, known as a Trojan horse, and using it to conduct continual spying is why companies and security experts were so alarmed by Google’s disclosure last week that hackers based in China had stolen some of its intellectual property and had conducted similar assaults on more than two dozen other companies.

“Originally we were saying, ‘Well, whoever got it has the secret sauce to Google and some 30 other California companies, and they can replicate it,’ ” said Rick Howard, director of security intelligence at VeriSign iDefense, which helped Google investigate the Chinese attacks. “But some of the more devious folks in our outfit were saying, ‘Well, they could also insert their own code — and they probably have.’ ”

For example, a foreign intelligence agency might find it extremely useful to know who was asking particular questions of Google’s search engine.

Security researchers took particular interest in the fact that the Silicon Valley company Adobe Systems was one of the companies hit by the recent wave of attacks.

Computer users around the globe have Adobe’s Acrobat or Reader software sitting on their machines to create or read documents, and Adobe’s Flash technology is widely used to present multimedia content on the Web and mobile phones.

“Acrobat is installed on about 95 percent of the machines in the world, and there have been a lot of vulnerabilities found in Flash,” said Jeff Moss, a security expert who sits on the Homeland Security Advisory Council. “If you can find a vulnerability in one of these products, you’re golden.”

Products from Microsoft, including Windows, Office and Internet Explorer, have long been favored targets for hackers because so many people use them. But McAfee, a leading software security firm, predicts that Adobe’s software will become the top target this year, as Microsoft has improved its products after years of attacks and Adobe’s software has become ubiquitous.

Adobe said it was still investigating the attacks but so far had no evidence that any sensitive information had been compromised.

Brad Arkin, the director of product security at Adobe, said the company generally expected to face increasing attention from hackers given the growing popularity of its products. But he added that the company employed industry-leading practices to respond to threats. “The security of our customers will always be a critical priority for Adobe,” he said.

Given the complexity of today’s software programs, which are typically written by teams of hundreds or thousands of engineers, it is virtually impossible to be perfectly confident in the security of any program, and tampering could very well go undetected.

Companies are understandably reluctant to discuss their security failures. But one notable episode shows just how damaging the secret tampering with source code can be.

Before the 2004 Summer Olympics in Athens, an unidentified hacker inserted secret programs into four telephone switching computers operated by the Vodafone Group, the world’s largest cellphone carrier. The programs created a clandestine tapping system that allowed unknown snoops to eavesdrop on cellphone calls and track the location of about 100 prominent Greek citizens, including then-Prime Minister Kostas Karamanlis, military officials, the mayor of Athens, activists and journalists.

The infiltration was uncovered in a government investigation after a Vodafone engineer was found dead in 2005 under suspicious circumstances.

Although the recent round of attacks against Google and other companies appears to have come from China, the threat is not limited to that country, according to computer security researchers. A host of nations, private corporations and even bands of rogue programmers are capable of covertly tunneling into information systems.

“Our conventional military dominance drives our adversaries to cheat, lie and steal,” said James Gosler, a fellow at Sandia National Laboratories and a visiting scientist at the National Security Agency, in a speech last year to Pentagon employees. “The offensive technical capability to play this game is well within the reach of the principal adversaries of the United States. In fact, one could argue that some of our adversaries are better at this game than we are.” Over the years, Chinese attackers have shown the most interest in military and technology-related assets, leaving assaults on financial systems to hackers in Russia and Eastern European countries.

A look at the source code of software at a company like Adobe or Cisco can help attackers find new ways to burrow into products before the companies can fix errors in their software. In addition, the hackers can gain insights into how to insert their own code into the software so that they can have ready access to machines down the road. “One of the U.S. government’s biggest worries is that the attackers will place that source code back into products,” said George Kurtz, the chief technology officer at McAfee.

For example, the widespread appearance of counterfeit Cisco routers, which direct traffic on computer networks, has become a major concern in recent years.

Cisco is required by law to include technology in its networking products that allows investigators to tap the hardware for information. The fear is that a country like China could sell counterfeit routers containing slightly modified software that would allow hackers to dial into the systems. “That could provide the perfect over-the-shoulder view of everything coming out of a network,” Mr. Moss said.

A Cisco spokesman, Terry Alberstein, said that the company had extensively tested counterfeit Cisco routers. “We have not found a single instance of software or hardware that was modified to make them more vulnerable to security threats,” he said.

Alan Paller, director of research at the SANS Institute, a security education organization, said American technology companies had gotten better about protecting their most prized intellectual property by creating more complex systems for viewing and changing source code. Such systems can keep a detailed account of what tweaks have been made to a software product.

But such security can be undermined by employees who open malicious files sent to them in e-mail, said Mr. Kurtz. “One of the greatest vulnerabilities remains the people element,” he added.

Saturday, October 17, 2009

U.S. Homeland Security 1,000 cybersecurity experts

U.S. Homeland Security wants to hire 1,000 cybersecurity experts

Dept. of Homeland Security needs experts needed to fill out vast network protection goals
By Michael Cooney , Network World , 10/01/2009The Department of Homeland Security is looking to hire 1,000 cybersecurity professionals in the next three years according to the agency’s secretary Janet Napolitano.

The department now has the authority to recruit and hire cybersecurity professionals across DHS over the next three years in order to help fulfill its mission to protect the nation’s cyber infrastructure, systems and networks, she said.

NetworkWorld Extra: 12 changes that would give US cybersecurity a much needed kick in the pants

“This new hiring authority will enable DHS to recruit the best cyber analysts, developers and engineers in the world to serve their country by leading the nation’s defenses against cyber threats,” Napolitano stated. DHS his the focal point for the security of cyberspace -- including analysis, warning, information sharing, vulnerability reduction, mitigation, and recovery efforts for public and private critical infrastructure information systems.

The hiring authority, which results from a collaborative effort between DHS, the Office of Personnel Management and the Office of Management and Budget, lets DHS staff up to 1,000 positions over three years across all DHS agencies to fulfill critical cybersecurity roles—including cyber risk and strategic analysis; cyber incident response; vulnerability detection and assessment; intelligence and investigation; and network and systems engineering.

The need for DHS to bolster its security realm is a hot topic. A Government Accountability Office report this year said that while DHS established the National Cyber Security Division to be responsible for leading national day-today cybersecurity efforts that has not enabled DHS to become the national focal point for security as envisioned.

The GAO said the Defense Department and other organizations within the intelligence community that have significant resources and capabilities have come to dominate federal efforts. The group told the GAO there also needs to be an independent cybersecurity organization that leverages and integrates the capabilities of the private sector, civilian government, law enforcement, military, intelligence community, and the nation's international allies to address incidents against the nation's critical cyber systems and functions.

The cybersecurity jobs announcement comes on the same day that the FBI said fraudsters are targeting social networking sites with increased frequency and users need to take precautions, the FBI warned.

The FBI said fraudsters continue to hijack accounts on social networking sites and spread malicious software by using various techniques. One technique involves the use of spam to promote phishing sites, claiming there has been a violation of the terms of agreement or some other type of issue which needs to be resolved. Other spam entices users to download an application or view a video. Some spam appears to be sent from users' "friends", giving the perception of being legitimate. Once the user responds to the phishing site, downloads the application, or clicks on the video link, their computer, telephone or other digital device becomes infected, the FBI stated.

Meanwhile legislators are trying to encourage cooperation among universities and businesses to develop technology needed to carry out a strategic government effort to fight cyber attacks.

A US House subcommittee is recommending a bill that calls for a university-industry task force to coordinate joint cybersecurity research and development projects between business and academia. The Cybersecurity Research and Development Amendments Act of 2009 was approved recently by the House Committee on Science and Technology's Research and Science Education Subcommittee.

The legislation would set up a scholarship program that pays college bills for students who study in fields related to cybersecurity. They would also get summer internships in the federal government. In return the students would agree to work as cybersecurity professionals within the federal government for a period equal to the number of years they received scholarships. If there aren't any jobs there, they would work for state or local governments in the same capacity or teach cybersecurity courses.