I have a problem where 'My Computer' sometimes hangs when I double-click it. The window pops up, but remains blank and hangs there. My mouse is still active at this point. I thought at first that it happened only when I was online or using multimedia apps, but it happens occasionally right after startup. I usually have to restart the computer. Here's my system : P3 533 Mhz, Asus P3V4X Motherboard, 10GB HD (7GB have been used up), 64MB 100 Mhz SDRAM, ATI 32MB Rage Fury, Soundblaster Live Value, A-0pen 56K software Modem, and a Sony 48x CD-Rom. The things I have running on my system are Windows 98 SE, Norton Anti-Virus (I have System Works, but I disabled the Crash Guard when I realized it was doing more harm than good), MSN Messenger, and Disk Detector (I disabled that but the problem still persists). I also run Scandisk and Defrag regularily as well. This 'hang' happened to me a few nights ago, and when I hit Ctrl-Alt-Delete to end the task I received a 'blue screen of death' with this error message : 'Terminating Thread due to a stack overflow problem. A Vxd, possibly recently installed, has consumed too much stack space. Increase the setting of 'MinSPs' in SYSTEM.INI or remove recently installed VxD's. There are currently 5 SPs allocated.' This is the first time that this has appeared. The only things I've installed recently are a few games, and the message doesn't make sense to me. If someone could help me I'd really appreciate it. |
Thursday, October 7, 2010
My Computer Hang while loading
Monday, October 4, 2010
Program Error Report
To enable or disable error reporting
- Open System in Control Panel.
- On the Advanced tab, click Error Reporting.
- Click Disable error reporting or Enable error reporting.
Notes
To open System, click Start, click Control Panel, and then double-clickSystem. - If you disable error reporting, you can still have
Windows notify you when an error occurs. To do so, select the But notify me when critical errors occurcheck box. - To report operating system errors, select the
Windows operating systemcheck box. - To report program errors for programs, such as
Microsoft Word, select thePrograms check box.
Sunday, October 3, 2010
How To Take Care Of Your Laptop
1. Keep Your Laptop Ventilated.
2. Protect Your Screen.
3. Avoid Beverages.
This seems like a very common sense tip, but it’s on here because of how common the problem really is. Laptop spills are not hated because they’re annoying to clean up, but because they can cause permanent damage to the components of your computer. Most of the components are stored under the area where the keyboard is, so when you spill a drink into the keyboard, they sop right into the components causing short circuits and possibly corrupting data.
4. Keep The Hard Drive Clean.
It’s not only important to keep the hardware clean, but it’s also important to keep the contents on the inside of your computer safe. It’s never a bad idea to run routine virus and spyware checks to ensure that your computer has not been slowed down or affected by a virus. Always make sure to turn your firewall on, and that you’re careful about which websites you visit and who you accept files form.
Friday, October 1, 2010
C:\WINDOWS\system32\MSCTF.dll - invalid Windows image?
- The application or DLL C:\WINDOWS\system32\MSCTF.dll is not a valid Windows image. Please check this against your installation diskette.
And then, I've ever accessed the Properties anymore.
Friday, September 17, 2010
Receive Error When CD is Put in Computer
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Issue:
Receive error when CD is put in computer.
Cause:
There are several possible reasons your CD-ROM may generate errors when placed in the computer. Below are the most common reasons, which are also discussed in this document.
- Dirty CD-ROM drive or CD causing CD not to be read properly.
- Third-party program running causing issue.
- CD-ROM not setup properly.
- CD is a bad burned CD or CD was copied from protected CD.
- CD is auto-running causing error.
- Windows is corrupted causing CD to generate error.
Solution:
Dirty CD-ROM drive or CD causing CD not to be read properly
Generally, it is very common for dust, dirt, hair or other material on a CD or CD-ROM drive to cause the CD to be improperly read or generate errors because data cannot be read from the CD.
- See our Cleaning page for additional information on how to properly clean your CDs and CD-ROM drive.
Third-party program running causing issue
It is possible that third-party programs that may be running or running in the background are causing errors with the CD; it is recommended you close all programs as well as End task any programs that may be running in the background to ensure they are not causing your issues.
- See document CHTSR for additional information on how to temporally remove all third-party programs that may be running in the background.
If the CD-ROM is not installed or setup properly this can cause the CDs to not be read or be read properly. If you are using Windows 95 or Windows 98 it is recommended that you check in Device Manager and verify no conflicts or errors are currently occurring with the installed CD-ROM drive.
- Additional information on Device Manager can be found on our Device manager page.
CD is a bad burned CD or CD was copied from protected CD
If you have created a CD (burned a CD) and are unable to read it or are getting errors with the CD, it is likely that either the CD was burned improperly or that the CD you copied was protected and that it cannot be copied. It is recommended you either attempt to burn the CD again or verify with the software vendor to verify that the CD is not protected from being copied.
CD is auto-running causing error
If you are using Windows 95 or Windows 98, autorun can, in some cases, cause errors when first placed in the computer. It is recommended that you eject the CD from the computer and when the CD is placed back into the computer, hold the left shift key on the keyboard. Holding the left shift key down will disable the auto-running feature temporarily. Once the CD-ROM light is done flashing, if you receive no error, open My Computer and right-click on the CD-ROM drive and click Explore to see if you receive errors reading the CD.
Windows is corrupted causing CD to generate error
If you are running Windows 95, Windows 98 or Windows ME, it is possible that Windows may be corrupted causing the CD-ROM drive to not be properly read and we recommend that it be tested from MS-DOS. Before trying the below recommendation, ensure that you have tried all of the above steps first.
We recommend that you use a bootable diskette that has CD-ROM drivers on it and test the CD-ROM drive from MS-DOS.
If you receive errors from MS-DOS it is likely that the CD-ROM drive is bad.
If you do not receive errors from MS-DOS and the CD-ROM drive reads properly, it is likely that Windows is corrupted and we recommend that it be reinstalled.
- Additional information on bootable disks can be found on our boot disk page.
Bad drive / bad discs
If you've determined you're only encountering errors with only one disc you can attempt to recover the data from the disc and/or test the drive further using the software programs in document CH001090.
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USB Device not Recognized in Windows
Search:
USB Device not recognized, Error USB Device, USB Device, Trouble USB Device, Syntac Error USB Device
Are you getting a “USB device not recognized” error whenever you plug in a USB mouse, keyboard, or other USB device? I love USB and have 5 ports on my computer so that I can connect my mouse, keyboard, camera, phone, and printer to it all at once!
However, last weekend, my computer stopped recognizing my USB devices! The strange thing about it was that the USB ports were not bad because all of my devices were still getting power to them. I could still charge my cell phone without a problem!
So I started with the normal fixing methods, including uninstalling the drivers for my devices and reinstalling them. That didn’t work! Next I tried System Restore thinking that maybe I had installed something and it caused a conflict with the USB system drivers. That didn’t work!
I read online that in order to fix this problem I should go to Device Manager and uninstall all of the devices under USB Controllers. Restarted the computer, reinstalled the USB drivers, but the problem STILL did not go away!
You may also see in Device Manager that the device shows up as an “Unknown Device”.
So how did I finally fix the problem? Well, apparently it’s a super simple solution! No need to edit the registry, uninstall drivers, or anything of that sort.
Simply UNPLUG YOUR COMPUTER FROM THE POWER SUPPLY. Yes that’s it! Note that this does not mean just turning off your computer because modern computers don’t really turn off when you press the power button as the motherboard still gets power.
First to explain, the motherboard is where all of hardware of the computer is connected to, including the USB ports. Sometimes the motherboard needs to be “rebooted” also because something can go wrong, i.e. all your USB ports suddenly stop working. The small microprocessor on the motherboard will reload the drivers and your USB ports should be back to recognizing all devices!
So first turn off your computer using Shut Down or pressing the power button and then UNPLUG it from the wall outlet. Let it sit for about a minute and then plug it back in.
Hope this helps someone fix that pesky “USB device not recognized” Windows error!
Search:
USB Device not recognized, Error USB Device, USB Device, Trouble USB Device, Syntac Error USB Device
Thursday, January 7, 2010
Firewall
Firewalls can be implemented in either hardware or software, or a combination of both. Firewalls are frequently used to prevent unauthorized Internet users from accessing private networks connected to the Internet, especially intranets. All messages entering or leaving the intranet pass through the firewall, which examines each message and blocks those that do not meet the specified security criteria.
There are several types of firewall techniques:
Packet filter: Packet filtering inspects each packet passing through the network and accepts or rejects it based on user-defined rules. Although difficult to configure, it is fairly effective and mostly transparent to its users. In addition, it is susceptible to IP spoofing.
Application gateway: Applies security mechanisms to specific applications, such as FTP and Telnet servers. This is very effective, but can impose a performance degradation.
Circuit-level gateway: Applies security mechanisms when a TCP or UDP connection is established. Once the connection has been made, packets can flow between the hosts without further checking.
Proxy server: Intercepts all messages entering and leaving the network. The proxy server effectively hides the true network addresses.
It is a software or hardware that is normally placed between a protected network and an unprotected network and acts like a gate to protect assets to ensure that nothing private goes out and nothing malicious comes in.
A firewall's basic task is to regulate some of the flow of traffic between computer networks of different trust levels. Typical examples are the Internet which is a zone with no trust and an internal network which is a zone of higher trust. A zone with an intermediate trust level, situated between the Internet and a trusted internal network, is often referred to as a "perimeter network" or Demilitarized zone (DMZ).
A firewall's function within a network is similar to physical firewalls with fire doors in building construction. In the former case, it is used to prevent network intrusion to the private network. In the latter case, it is intended to contain and delay structural fire from spreading to adjacent structures.
Without proper configuration, a firewall can often become worthless. Standard security practices dictate a "default-deny" firewall ruleset, in which the only network connections which are allowed are the ones that have been explicitly allowed. Unfortunately, such a configuration requires detailed understanding of the network applications and endpoints required for the organization's day-to-day operation. Many businesses lack such understanding, and therefore implement a "default-allow" ruleset, in which all traffic is allowed unless it has been specifically blocked. This configuration makes inadvertent network connections and system compromise much more likely.
Firewall technology emerged in the late 1980s when the Internet was a fairly new technology in terms of its global use and connectivity. The predecessors to firewalls for network security were the routers used in the late 1980s to separate networks from one another.[1] The view of the Internet as a relatively small community of compatible users who valued openness for sharing and collaboration was ended by a number of major internet security breaches which occurred in the late 1980s
Clifford Stoll's discovery of German spies tampering with his system
Bill Cheswick's "Evening with Berferd" 1992 in which he set up a simple electronic jail to observe an attacker
In 1988 an employee at the NASA Ames Research Center in California sent a memo by email to his colleagues that read,“ We are currently under attack from an Internet VIRUS! It has hit Berkeley, UC San Diego, Lawrence Livermore, Stanford, and NASA Ames. ”
The Morris Worm spread itself through multiple vulnerabilities in the machines of the time. Although it was not malicious in intent, the Morris Worm was the first large scale attack on Internet security; the online community was neither expecting an attack nor prepared to deal with one.
First generation - Packet filters
The first paper published on firewall technology was in 1988, when engineers from Digital Equipment Corporation (DEC) developed filter systems known as packet filter firewalls. This fairly basic system was the first generation of what became a highly evolved and technical internet security feature. At AT&T Bell Labs, Bill Cheswick and Steve Bellovin were continuing their research in packet filtering and developed a working model for their own company based upon their original first generation architecture.
Packet filters act by inspecting the "packets" which represent the basic unit of data transfer between computers on the Internet. If a packet matches the packet filter's set of rules, the packet filter will drop (silently discard) the packet, or reject it (discard it, and send "error responses" to the source).
This type of packet filtering pays no attention to whether a packet is part of an existing stream of traffic (it stores no information on connection "state"). Instead, it filters each packet based only on information contained in the packet itself (most commonly using a combination of the packet's source and destination address, its protocol, and, for TCP and UDP traffic, the port number).
TCP and UDP protocols comprise most communication over the Internet, and because TCP and UDP traffic by convention uses well known ports for particular types of traffic, a "stateless" packet filter can distinguish between, and thus control, those types of traffic (such as web browsing, remote printing, email transmission, file transfer), unless the machines on each side of the packet filter are both using the same non-standard ports.
Packet filtering firewalls work on the first three layers of OSI reference model which means all the work done between the network and physical layers. When a packet originates from the sender and filters through a firewall the device checks for matches to any of the packet filtering rules that are configured in the firewall and drops or rejects the packet accordingly. When the packet passes through firewall it filters the packet on a protocol/port number basis. For example if a rule in the firewall exists to block telnet access then the firewall will block IP protocol for port number 23.
Second generation - Application layer
Main article: Application layer firewall
The key benefit of application layer filtering is that it can "understand" certain applications and protocols (such as File Transfer Protocol, DNS, or web browsing), and it can detect whether an unwanted protocol is being sneaked through on a non-standard port or whether a protocol is being abused in any harmful way.
An application firewall is much more secure and reliable when comparing to packet filter firewall because it works on all seven layers of the OSI reference model which means application to physical Layer. This is similar to a packet filter firewall but here we can also filter information on Content Basis. The best example of application firewall is ISA (Internet Security and Acceleration) server. An application firewall can filter Higher Layer Protocols such as FTP, TELNET, DNS, DHCP, HTTP, TCP, UDP and TFTP. For example if an organization wants to block all the information related to "spam" word then we can enable content filtering on the firewall to block that particular word. an application firewall is a software based firewall thus it is much slower then statefull firewall.
Third generation - "stateful" filters
Main article: Stateful firewall
From 1989-1990 three colleagues from AT&T Bell Laboratories, Dave Presetto, Janardan Sharma, and Kshitij Nigam developed the third generation of firewalls, calling them circuit level firewalls.
Third generation firewalls in addition regard placement of each individual packet within the packet series. This technology is generally referred to as a stateful packet inspection as it maintains records of all connections passing through the firewall and is able to determine whether a packet is either the start of a new connection, a part of an existing connection, or is an invalid packet. Though there is still a set of static rules in such a firewall, the state of a connection can in itself be one of the criteria which trigger specific rules.
This type of firewall can help prevent attacks which exploit existing connections, or certain Denial-of-service attacks.
Circuit level firewalls are highly in demand because of they are secure also is a hardware based firewall and much faster then application firewall which is software based. It has all the features of application firewall plus support for content and port filtering. It operates on all the seven layer's of OSI reference model application to physical. In terms of performance stateful Firewall is the best option when comparing to application firewall. Both application and stateful firewall have VPN (Virtual Private Network) service capabilities. An example of a stateful firewall is the Cisco Pix Firewall.
Subsequent developments
In 1992, Bob Braden and Annette DeSchon at the University of Southern California (USC) were refining the concept of a firewall. The product known as "Visas" was the first system to have a visual integration interface with colours and icons, which could be easily implemented to and accessed on a computer operating system such as Microsoft's Windows or Apple's MacOS. In 1994 an Israeli company called Check Point Software Technologies built this into readily available software known as FireWall-1.
The existing deep packet inspection functionality of modern firewalls can be shared by Intrusion-prevention systems (IPS).
Currently, the Middlebox Communication Working Group of the Internet Engineering Task Force (IETF) is working on standardizing protocols for managing firewalls and other middleboxes.
Another axis of development is about integrating identity of users into Firewall rules. Many firewalls provide such features by binding user identities to IP or MAC addresses, which is very approximate and can be easily turned around. The NuFW firewall provides real identity based firewalling, by requesting user's signature for each connection.
There are several classifications of firewalls depending on where the communication is taking place, where the communication is intercepted and the state that is being traced.
Network layer and packet filters
Network layer firewalls, also called packet filters, operate at a relatively low level of the TCP/IP protocol stack, not allowing packets to pass through the firewall unless they match the established rule set. The firewall administrator may define the rules; or default rules may apply. The term "packet filter" originated in the context of BSD operating systems.
Network layer firewalls generally fall into two sub-categories, stateful and stateless. Stateful firewalls maintain context about active sessions, and use that "state information" to speed packet processing. Any existing network connection can be described by several properties, including source and destination IP address, UDP or TCP ports, and the current stage of the connection's lifetime (including session initiation, handshaking, data transfer, or completion connection). If a packet does not match an existing connection, it will be evaluated according to the ruleset for new connections. If a packet matches an existing connection based on comparison with the firewall's state table, it will be allowed to pass without further processing.
Stateless firewalls require less memory, and can be faster for simple filters that require less time to filter than to look up a session. They may also be necessary for filtering stateless network protocols that have no concept of a session. However, they cannot make more complex decisions based on what stage communications between hosts have reached.
Modern firewalls can filter traffic based on many packet attributes like source IP address, source port, destination IP address or port, destination service like WWW or FTP. They can filter based on protocols, TTL values, netblock of originator, of the source, and many other attributes.
Commonly used packet filters on various versions of Unix are ipf (various), ipfw (FreeBSD/Mac OS X), pf (OpenBSD, and all other BSDs), iptables/ipchains (Linux).
Application-layer
Main article: Application layer firewall
Application-layer firewalls work on the application level of the TCP/IP stack (i.e., all browser traffic, or all telnet or ftp traffic), and may intercept all packets traveling to or from an application. They block other packets (usually dropping them without acknowledgment to the sender). In principle, application firewalls can prevent all unwanted outside traffic from reaching protected machines.
On inspecting all packets for improper content, firewalls can restrict or prevent outright the spread of networked computer worms and trojans. The additional inspection criteria can add extra latency to the forwarding of packets to their destination.
Proxies
Main article: Proxy server
A proxy device (running either on dedicated hardware or as software on a general-purpose machine) may act as a firewall by responding to input packets (connection requests, for example) in the manner of an application, whilst blocking other packets.
Proxies make tampering with an internal system from the external network more difficult and misuse of one internal system would not necessarily cause a security breach exploitable from outside the firewall (as long as the application proxy remains intact and properly configured). Conversely, intruders may hijack a publicly-reachable system and use it as a proxy for their own purposes; the proxy then masquerades as that system to other internal machines. While use of internal address spaces enhances security, crackers may still employ methods such as IP spoofing to attempt to pass packets to a target network.
Network address translation
Main article: Network address translation
Firewalls often have network address translation (NAT) functionality, and the hosts protected behind a firewall commonly have addresses in the "private address range", as defined in RFC 1918. Firewalls often have such functionality to hide the true address of protected hosts. Originally, the NAT function was developed to address the limited number of IPv4 routable addresses that could be used or assigned to companies or individuals as well as reduce both the amount and therefore cost of obtaining enough public addresses for every computer in an organization. Hiding the addresses of protected devices has become an increasingly important defense against network reconnaissance.
COMPUTER MANAGER V.2.17
Select files and subdirectories from different directories/computers (!), make your computer a http, ftp server, powerfull search engine(!), lan chat, file splitter, automatic resume of file copying to/from network when it becomes unavailable(!), show/hide drives/partitions, shows ip and mac address of other lan computers, ftp explorer, list of known computers(used when having network crashes)(!), automatic update when a newer version is available(!).........A must for LAN users.
TERMS AND CONDITIONS
This freeware software is released for non-comercial use with no warranties of any kind.
Though this software has been tested i am not responsible for any damage done to your computer system, loss of data, loss of profits, or any other direct or indirect damage that results from the use of this software.
Use it on your own risk and don't modify(alter) it.
How to dual-boot Vista with XP (with XP installed first) - step-by-step guide with screenshots
Want to install Vista on your PC but don't want to get rid of XP just yet? Here's how to install it so you can dual-boot between them, in an easy-to-follow, step-by-step guide
Scenario: You want to install Vista on your PC alongside your XP installation, on the same drive. You have already installed XP. (If you installed Vista first, see our other tutorial on How to dual-boot Vista and XP - with Vista installed first.)
Tutorial Summary: We're going to shrink the Windows XP partition on the hard disk and create enough space for an installation of Vista. There are two easy methods of doing this - using the GPartEd Live CD and the DISKPART utility on the Vista DVD. On some systems, depending on the primary storage controller, We'll then install Vista and use the EasyBCD utility to modify Vista's bootloader to get XP loading properly.
Get Started - Using GParted
We assume that before you start this tutorial, you have backed up the drive (partitions and data) that will host the two operating systems.
Your first step will be to modify the Windows XP system partition to make space for Vista using GParted
The GParted Live CD ISO is available here – burn it to CD and boot the system from the disc. The version we used was 0.3.7-7.
When you boot from the GParted LiveCD, depending on your system, you should just need to select the auto-configuration boot option
During boot, press Enter twice when prompted to select the keymap and language settings.
When the main GUI loads, right-click on the main Windows XP NTFS partition (depending on your setup, probably /dev/hda1) and select Resize/Move.
Use the slider to reduce the partition size and free up enough room to install Vista (at least 10GB) and click Resize/Move
The changes haven’t actually been made, they’ve just been scheduled to run. To commit the changes and resize the partition, click Apply. GParted will ask to confirm the changes – hit OK and away you go.
Get Started - Using DISKPART
Boot the machine from the Vista DVD. Select the appropriate language and then "Install Now".
On the product key page, press SHIFT + F10 to launch a Windows PE 2.0 command window. Then type in DISKPART and press enter to get into the DISKPART utility.
Now type in LIST VOLUME - this gives you a readout of the volumes available on the system. Select the main Windows XP volume by typing in SELECT VOLUME 0 (in most cases it will be Volume 0 - in our lab in was Volume 1).
Now type in SHRINK. Vista will reduce the size the selected Volume by around 50%.
Now Install Vista
If you used the GParted LiveCD to shrink the XP partition, you'll need to reboot the system from the Vista install DVD. If you've used DISKPART then you just need to continue the installation. Once the install gets to the install location, there should be at least two options: a partition marked as Primary and unallocated space. Select the unallocated space and click Next. The install will then commence.
The Vista boot manager will take over the system completely, and Windows XP effectively loads via Vista. It’s all pretty seamless though, and you shouldn’t encounter any technical problems.
Modify Vista's Bootloader
Once Vista is installed and the system reboots, you’ll be presented with a boot menu with two options: “Microsoft Windows Vista” and "Earlier Version of Windows”.
This is perhaps a little bit bland, so you’ll probably want to change it. Here’s where one of the new features of Vista comes in, and it’s not so terrific. In Windows XP if you want to modify the bootloader, just right-click on My Computer, select Properties, go to the Advanced Tab, and click Settings under Startup and Recovery, then click Edit. This opens a local file – boot.ini. It’s just a standard text file and you can change pretty much anything. Unfortunately it’s not that easy in Vista – you can still navigate to the Startup and Recovery settings, but all you can do is select which operating system is the default and modify the timeout settings.
To edit Vista’s boot manager you have to use the command line BCDEDIT utility. To access BCDEDIT, run the Command Window as an administrator and type in BCDEDIT.
Unfortunately BCDEDIT isn’t an easy tool to come to terms with, especially as it’s purely command line-driven. So, a great tool to use here is EasyBCD by NeoSmart Technologies. EasyBCD offers a GUI frontend to BCDEDIT, and makes life much easier.
Once Vista is installed, call up the browser and navigate to the EasyBCD download page - download the latest version (1.7.2 at the time of writing), install and launch the application.
To configure the bootloader go to “Change Settings”. Here you can change the default OS if you prefer to boot into XP first. Under "Entry-Based Settings" you'll see the field which refers to the the XP partition. Overwrite "Earlier Version of Windows" with "Windows XP" and click "Save Settings".
Reboot the system and the changes are visible. You have a dual-booting Vista and XP system. That's all there is to it.
Open up Windows Explorer and there’s two hard drives – the primary disk running Vista and the secondary disk with XP installed. Restart the system and load up Windows XP, and the XP disk is now the primary, with the Vista partition running on the secondary D: drive
If you decide that dual-booting Vista and XP is not for you, EasyBCD lets you wind back the clock.
All you have to do is remove Vista’s boot manager – go to “Manage Bootloader”, select “Uninstall the Vista Bootloader” and then “Write MBR”. Restart the machine and that’s it – the XP boot loader is the only one left on the system and XP loads. You can then delete the Vista partition and use GParted to re-extend the partition to take up the entire disk, or the Extend command in Vista DISKPART.
let's try...+++



