1. Field of the Invention
The invention relates to a system management apparatus and method and, more particularly, to a system management apparatus and method for a multi-shelf modular computing system.
2. Description of the Prior Art
According to PCI Industrial Computers Manufacturers Group (PICMG) 3.0, when a multi-shelf modular computing system complying with an Advanced Telecom Computing Architecture (ATCA) specification has an abnormal situation occurred, a corresponding shelf management device would generate an alert information in a Simple Network Management Protocol (SNMP) trap format and transmit the alert information to a receiving apparatus of a predetermined target address.
Conventionally, the receiving apparatus can execute a receiving software program for receiving the alert information from the shelf management device, parsing the alert information, and displaying the parsed alert information in a text format on the receiving apparatus. Thereby, a user can perceive the abnormal situation of the multi-shelf modular computing system and take corresponding measures.
Nevertheless, the user has to further consult ATCA specification to understand the parsed alert information in the text format, which is very inconvenient for the user. Besides, since the alert information is displayed in text format, when the receiving apparatus receives too much alert information in a short time, owing to the size of display screen of the receiving apparatus and the excessive text information, earlier alert information would easily be ignored and therefore the abnormal situation of the system could not be handled in time. Furthermore, because the receiving software program executed by the receiving apparatus is not cross-platform capable, so its utilization is limited by compatibility.
Accordingly, a scope of the invention is to provide a system management apparatus for a multi-shelf modular computing system to solve the aforesaid problems.
A scope of the invention is to provide a system management apparatus and method for a multi-shelf modular computing system. At first, the system management apparatus receives and parses alert information associated with an abnormal parameter/state related to a component of the multi-shelf modular computing system, and stores the parsed alert information in a storage module. Afterward, the system management apparatus periodically retrieves the parsed alert information, if any, from the storage module, and generates a visual alert information indicative of the abnormal parameter/state. Thereby, a user can view the visual alert information to perceive the abnormal parameter/state rapidly and intuitively, so as to take corresponding measures. In addition, since the alert information can be stored in the storage module, the many alert information generated within a short time can be kept and the earlier alert information will not be neglected.
According to an embodiment of the invention, the system management apparatus is for a multi-shelf modular computing system. In the embodiment, the multi-shelf modular computing system includes a plurality of components and a shelf management device. The shelf management device is capable of sensing a plurality of parameters/states which each relates to one of the components, and of generating an original alert information in a first format in response to an abnormal one among the sensed parameters/states.
The system management apparatus includes a receiving module, a storage module, a parsing module, a visualization mapping module, and a management module. The receiving module is capable of communicating with the shelf management device, for receiving the original alert information in the first format from the shelf management device. The parsing module is coupled to the receiving module and the storage module, respectively, for parsing the original alert information to generate a parsed alert information in a second format, and for storing the parsed alert information into the storage module. The visualization mapping module is coupled to the storage module, for periodically retrieving the parsed alert information, if any, from the storage module, and for generating a mapping indication in accordance with the retrieved parsed alert information. The management module is coupled to the visualization mapping module, for receiving the mapping indication, and for generating a visual alert information indicative of the abnormal one among the sensed parameters/states on the basis of the mapping indication.
According to another embodiment of the invention, the system management method is for a multi-shelf modular computing system. In the embodiment, the multi-shelf modular computing system includes a plurality of components and a shelf management device. The shelf management device is capable of sensing a plurality of parameters/states which each relates to one of the components, and generating an original alert information in a first format in response to an abnormal one among the sensed parameters/states.
In the embodiment, the system management method, firstly, communicates with the shelf management device. Then, the system management method receives the original alert information in the first format from the shelf management device. After that, the system management method parses the original alert information to generate a parsed alert information in a second format. Next, the system management method stores the parsed alert information. Afterward, the system management method periodically retrieves the parsed alert information, if any, and generates a mapping indication in accordance with the retrieved parsed alert information. Finally, the system management method receives the mapping indication and generates a visual alert information indicative of the abnormal one among the sensed parameters/states on the basis of the mapping indication.
Therefore, the system management apparatus and method of the invention is for a multi-shelf modular computing system. At first, the system management apparatus receives and parses alert information associated with an abnormal parameter/state related to a component of the multi-shelf modular computing system, and stores the parsed alert information in a storage module. Afterward, the system management apparatus periodically retrieves the parsed alert information, if any, from the storage module, and generates a visual alert information indicative of the abnormal parameter/state. Thereby, a user can view the visual alert information to perceive the abnormal parameter/state rapidly and intuitively, so as to take corresponding measures. In addition, since the alert information can be kept in the storage module, the many alert information generated within a short time can be stored and the earlier alert information will not be neglected. Furthermore, the system management apparatus can be web-based architecture with advantage of cross-platform capability which can lower the loading of client terminal apparatus.
The advantage and spirit of the invention may be understood by the following recitations together with the appended drawings.
This invention provides a system management apparatus and method for a multi-shelf modular computing system. At first, the system management apparatus receives and parses alert information associated with an abnormal parameter/state related to a component of the multi-shelf modular computing system, and stores the parsed alert information in a storage module. Afterward, the system management apparatus periodically retrieves the parsed alert information, if any, from the storage module, and generates a visual alert information indicative of the abnormal parameter/state. Thereby, a user can view the visual alert information to perceive the abnormal parameter/state rapidly and intuitively, so as to take corresponding measures. In addition, since the alert information can be stored in the storage module, the many alert information generated within a short time can be kept and the earlier alert information will not be neglected. Furthermore, the system management apparatus can be web-based architecture with the advantage of cross-platform capability which can lower the loading of client terminal apparatus. The spirit and feature of the present invention will be described in details with the following embodiments.
Please refer to
The system management apparatus 5 includes a receiving module 50, a storage module 52, a parsing module 54, a visualization mapping module 56, and a management module 58. In practice, the system management apparatus 5 can be implemented as a network server to achieve cross-platform applications.
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The visualization mapping module 56 is coupled to the storage module 52. The visualization mapping module 56 periodically retrieves the parsed alert information, if any, from the storage module 52, and generates a mapping indication in accordance with the retrieved parsed alert information. The management module 58 is coupled to the visualization mapping module 56. The management module 58 can receive the mapping indication, and generate a visual alert information indicative of the abnormal one among the sensed parameters/states on the basis of the mapping indication.
Please refer to
For instance, when a fan component 10 of the multi-shelf modular computing system 1 is in an MO state, the shelf management device 3 can sense the MO state of the fan component 10 and responsively generate an original alert information in an SNMP trap format (as shown in
The management module 58 can also communicate with the shelf management device 3 to receive the sensed parameters/states, and to generate a plurality of visual data representative of the sensed parameters/states. In practice, the management module 58 communicates with the shelf management device 3 in a Transmission Control Protocol (TCP) to receive the sensed parameters/states. Similarly, the terminal apparatus 7 can also communicate with the management module 58 to retrieve the visual data VD and display the visual data VD in the user interface UI, as shown in
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In practice, the system management method can further include the step of retrieving the visual alert information and displaying the visual alert information in a user interface UI which visually represents a physical structure of the plurality of components 10, as shown in
In actual applications, the system management method can further include the step of communicating with the shelf management device 3 to receive the sensed parameters/states and generating a plurality of visual data representative of the sensed parameters/states. The shelf management device 3 can be communicated and the sensed parameters/states can be received in a TCP. In practice, the system management method can also retrieve the visual data VD and display the visual data VD in the user interface UI, as shown in
Comparing to prior arts, the system management apparatus and method of the invention is for a multi-shelf modular computing system. At first, the system management apparatus receives and parses alert information associated with an abnormal parameter/state related to a component of the multi-shelf modular computing system, and stores the parsed alert information in a storage module. Afterward, the system management apparatus periodically retrieves the parsed alert information, if any, from the storage module, and generates a visual alert information indicative of the abnormal parameter/state. Thereby, a user can view the visual alert information to perceive the abnormal parameter/state rapidly and intuitively, so as to take corresponding measures. In addition, since the alert information can be stored in the storage module, a lot of alert information generated within a short time can be kept and earlier alert information will not be neglected. Furthermore, the system management apparatus can be web-based architecture with advantage of cross-platform capability which can lower the loading on client terminal apparatus.
With the example and explanations above, the features and spirits of the invention will be hopefully well described. Those skilled in the art will readily observe that numerous modifications and alterations of the device may be made while retaining the teaching of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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096140172 | Oct 2007 | TW | national |