IP Library Patent Application 11094131
Patent Application
App. No. 11/094,131

Auto-display architecture for storage device and method thereof

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Quick Facts
Patent No.
US None
App. No.
11/094,131
Abstract

An auto-display architecture for storage device and method thereof are disclosed. A computer system installed with a first operating system and a second operating system is initiated under the second operating system. When an end user provides a piece of information to a storage device, a detecting unit automatically compares the information format with data format recorded in an index table so as to find a display unit corresponding to the information format. The detecting unit is installed on the second operating system or the first operating system. If the display unit is installed in the first operating system, then through the conversion of an interface unit, the display unit is converted into executable format of the second operating system so as to display the data stored inside the storage device.

Claims (54)

1 . An auto-display architecture for storage device comprising:

a first operating system;

a second operating system; and

an index table stored in a file system of the first operating system for recording at least one display unit corresponding to at least an information format;

wherein the second operating system shares information inside the index table of the first operating system with the first operating system.

2 . The auto-display architecture for storage device as claimed in claim 1 , wherein it further having an editing unit that is executed under the first operating system for providing editing operation of the display unit corresponding to the information format that is recorded by the index table.

3 . The auto-display architecture for storage device as claimed in claim 2 , wherein the second operating system shares the editing unit through an interface unit.

4 . The auto-display architecture for storage device as claimed in claim 1 , wherein system resource consumption of the first operating system is larger than system resource consumption of the second operating system.

5 . An auto-display method for storage device comprising the steps of:

providing a first operating system and a second operating system; and

storing an index table to a file system of the first operating system for recording at least one display unit corresponding to at least one information format;

wherein the second operating system shares information inside the index table of the first operating system with the first operating system.

6 . The method as claimed in claim 5 , wherein after step of storing the index table to the file system, the second operating system executes an editing unit of the first operating system through an interface unit for editing operation of the display unit corresponding to the information format that is recorded by the index table.

7 . The method as claimed in claim 5 , wherein system resource consumption of the first operating system is larger than system resource consumption of the second operating system.

8 . An auto-display architecture for storage device comprising:

a first operating system;

a second operating system;

a storage device for storing at least one piece of information;

an index table saved in a file system of the first operating system for recording at least one display unit corresponding to at least one information format; and

a detecting unit being executed under the first operating system for comparing information format of the information stored in the storage device with information in the index table;

wherein the second operating system executes the detecting unit through an interface unit and then runs the display unit corresponding to the stored information that is recorded by the index table to display the information stored in the storage device according to the comparison result.

9 . The auto-display architecture for storage device as claimed in claim 8 , wherein it further having a disk control unit coupled with the storage device for producing an interrupt signal of input/output access of the storage device.

10 . The auto-display architecture for storage device as claimed in claim 9 , wherein it further having a central processing unit for receiving the interrupt signal produced by the disk control unit.

11 . The auto-display architecture for storage device as claimed in claim 8 , wherein the display unit is executed under the first operating system while the second operating system executes the display unit through the interface unit to display the information stored in the storage device.

12 . The auto-display architecture for storage device as claimed in claim 8 , wherein the storage device is an external storage device.

13 . The auto-display architecture for storage device as claimed in claim 12 , wherein the external storage device is a hard disk with a Universal Serial Bus (USB) interface.

14 . An auto-display method for storage device comprising the steps of:

providing a first operating system and a second operating system;

providing a storage device for storing at least one piece of information;

storing an index table into a file system of the first operating system for recording at least a display unit corresponding to at least one information format;

providing a detecting unit under the first operating system for comparing the information format of the information stored in the storage device with the information in the index table;

wherein the second operating system executes the detecting unit through an interface unit and then runs the display unit corresponding to the stored information that is recorded by the index table to display the information stored in the storage device according to the comparison result.

15 . The method as claimed in claim 14 , wherein after step of providing a storage device, providing a disk control unit coupled with the storage device for producing an interrupt signal of input/output access of the storage device.

16 . The method as claimed in claim 15 , wherein after step of producing an interrupt signal by the disk control unit, providing a central processing unit for receiving the interrupt signal produced by the disk control unit.

17 . The method as claimed in claim 14 , wherein the second operating system executes the display unit through the interface unit to display the information stored in the storage device when the display unit is installed in the first operating system.

18 . An auto-display architecture for storage device comprising:

a first operating system;

a second operating system;

a storage device for storing at least one piece of information;

an index table stored in a file system of the first operating system for recording at least one display unit corresponding to at least one information format; and

a detecting unit being executed under the second operating system for comparing information format of the information stored in the storage device with information in the index table;

wherein the second operating system executes the display unit corresponding to the information stored in the storage device to display the information stored in the storage device according to the comparison result of the detecting unit.

19 . The auto-display architecture for storage device as claimed in claim 18 , wherein it further having a disk control unit coupled with the storage device for producing an interrupt signal of input/output access of the storage device.

20 . The auto-display architecture for storage device as claimed in claim 19 , wherein it further having a processing unit for receiving the interrupt signal produced by the disk control unit.

21 . The auto-display architecture for storage device as claimed in claim 18 , wherein the display unit is executed under the first operating system while the second operating system executes the display unit through an interface unit to display the information stored in the storage device.

22 . An auto-display method for storage device comprising the steps of:

providing a first operating system and a second operating system;

providing a storage device for storing at least one piece of information;

storing an index table into a file system of the first operating system for recording at least one display unit corresponding to at least one information format; and

providing a detecting unit under the second operating system for comparing the information format of the information stored in the storage device with the information in the index table;

wherein the second operating system executes the display unit corresponding to the stored information that is recorded by the index table to display the information stored in the storage device according to the comparison result of the detecting unit

23 . The method as claimed in claim 22 , wherein after step of providing a storage device, providing a disk control unit coupled with the storage device for producing an interrupt signal of input/output access of the storage device.

24 . The method as claimed in claim 23 , wherein after step of producing an interrupt signal by the disk control unit, providing a central processing unit for receiving the interrupt signal produced by the disk control unit.

25 . The method as claimed in claim 22 , wherein the second operating system executes the display unit through an interface unit to display the information stored in the storage device when the display unit is installed in the first operating system.

Assignments (3)
CHANGE OF NAME Recorded May 5, 2008
From: INTERVIDEO INC.
To: COREL TW CORP.
Reel/Frame 020902/0899 →
REAFFIRMATION AND JOINDER AGREEMENT Recorded Dec 28, 2006
From: COREL CORPORATION; COREL INC.; WINZIP INTERNATIONAL LLC; WINZIP COMPUTING LLC; WINZIP COMPUTING LP; CAYMAN LTD. HOLDCO; WINZIP COMPUTING, S.L.U.; WINZIP HOLDINGS SPAIN, S.L.U.; INTERVIDEO, INC.; INTERVIDEO DIGITAL TECHNOLOGY CORP.; COREL US HOLDINGS, LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 018688/0199 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2005
From: WU, TUNG-PENG; LIU, CHI-MIN
To: INTERVIDEO, INC.
Reel/Frame 016252/0842 →