JPH02244208A - Information processor control system - Google Patents

Information processor control system

Info

Publication number
JPH02244208A
JPH02244208A JP1063823A JP6382389A JPH02244208A JP H02244208 A JPH02244208 A JP H02244208A JP 1063823 A JP1063823 A JP 1063823A JP 6382389 A JP6382389 A JP 6382389A JP H02244208 A JPH02244208 A JP H02244208A
Authority
JP
Japan
Prior art keywords
information processing
power supply
carried out
processing device
application
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP1063823A
Other languages
Japanese (ja)
Inventor
Takashi Suzuki
孝 鈴木
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
NEC Corp
Original Assignee
NEC Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by NEC Corp filed Critical NEC Corp
Priority to JP1063823A priority Critical patent/JPH02244208A/en
Publication of JPH02244208A publication Critical patent/JPH02244208A/en
Pending legal-status Critical Current

Links

Landscapes

  • Test And Diagnosis Of Digital Computers (AREA)

Abstract

PURPOSE:To automatically perform the tasks up to the incorporation of a system and to improve the starting efficiency of the system by identifying the state of an information processor and discriminating whether a power supply is normally applied or not. CONSTITUTION:An interruption acceptance part 10 is prepared to detect an interruption at application of the power supply of an information processor together with an interruption factor identification part 20, a system/device state control part 30, a device starting part 40, a constitution change part 50 which changes the constitution of the information processor so as to set it into a system, and a device diagnostic part 60. Then a starting process is carried out when the part 30 decides the normal application of a power supply. Then the starting process is carried out after a diagnostic process when the part 30 discriminates the application of the power supply carried out after occurrence of a fault. Furthermore a changing processing is carried out for the system constitution after the end of each process when the application of the power supply carried out during the system operation is discriminated. As a result, the necessary processings are automatically carried out with no waste of time after the application of the power supply. Then the occurrence of misoperations can be prevented.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明は、情報処理装置の状態を管理し情報処理装置に
対して様々な操作を行なうRASプロセッサの情報処理
装置管理方式に関する。
DETAILED DESCRIPTION OF THE INVENTION [Field of Industrial Application] The present invention relates to an information processing device management method for a RAS processor that manages the state of an information processing device and performs various operations on the information processing device.

〔従来の技術〕[Conventional technology]

従来、情報処理装置の電源投入が行なわれる場合は、通
常立ち上げの他に故障による修理後の電源投入などがあ
る。
Conventionally, when an information processing apparatus is powered on, there are cases such as normal startup and power-on after repair due to a failure.

この場合、装置をどの様な状態で立ち上げたかは、人間
が装置の状態を識別し、状況に応じて装置診断を行なっ
たり、システムが動作中ならばシステムに対して該装置
の組み込みなどによる構成変更を行なうなどの作業を必
要としていた。
In this case, the state in which the device was started can be determined by a person identifying the device's condition and diagnosing the device depending on the situation, or by incorporating the device into the system if the system is running. This required work such as configuration changes.

〔発明が解決しようとする課題〕[Problem to be solved by the invention]

しかしながら、これらの作業は、個別に実行しなくては
ならずしかも、人手作業によるため誤操作を招く危険性
がある。また、人手介入があることにより該装置を目的
の状態にまで操作するにはかなりの時間を費やすことが
多いという欠点があった。
However, these operations must be performed individually and are manually performed, which poses a risk of erroneous operation. Another disadvantage is that it often takes a considerable amount of time to operate the device to a desired state due to manual intervention.

本発明は、このような従来の欠点を改善したもので、そ
の目的は、電源投入された情報処理装置に対して必要な
処理を自動的に時間の無駄なく行なわせ、また人手介入
を行なわせないようにする事により誤操作を防止するこ
との可能な情報処理装!管理方式を提供することにある
The present invention has been made to improve these conventional drawbacks.The purpose of the present invention is to automatically perform necessary processing on an information processing device that has been powered on without wasting time, and to eliminate manual intervention. An information processing device that can prevent erroneous operations by ensuring that no errors occur! The purpose is to provide a management method.

〔課題を解決するための手段〕[Means to solve the problem]

本発明の情報処理装置管理方式は、情報処理装置の電源
が投入されたときに情報処理装置の状態を識別して通常
の電源投入であるか否かを判別する状態管理手段を有し
、前記状態管理手段は通常の電源投入であると判別した
ときには立ち上げ処理を行なわせ、故障後の電源投入で
あると判別したときには診断処理を実行した後に立ち上
げ処理を行なわせ、システム運用中の電源投入であると
判別したときには前記各処理の後にシステムへの構成変
更処理を行なわせるようになっていることを特徴として
いる。
The information processing device management method of the present invention includes a state management means for identifying the state of the information processing device when the power of the information processing device is turned on and determining whether or not the power is turned on normally; When the status management means determines that the power is being turned on normally, it causes the startup process to be performed, and when it determines that the power is being turned on after a failure, it performs the startup process after executing diagnostic processing, and the system performs the startup process while the system is in operation. The feature is that when it is determined that the system has been loaded, the system is made to perform a configuration change process after each of the above processes.

〔作 用〕[For production]

状態管理手段は、情報処理装置の電源が投入されたとき
に情報処理装置の状態を識別して通常の電源投入である
かを判別し、通常の電源投入のときは立ち上げ処理を行
なわせ、故障後の電源投入のときは診断処理を行なった
後に立ち上げ処理を行なわせ、システム運用中の電源投
入のときはこれらの各処理の後にシステムへの構成変更
処理を行なわせる。
The state management means identifies the state of the information processing device when the information processing device is powered on, determines whether the power is turned on normally, and causes startup processing to be performed when the power is turned on normally; When power is turned on after a failure, startup processing is performed after diagnostic processing, and when power is turned on while the system is in operation, configuration change processing for the system is performed after each of these processings.

〔実施例〕〔Example〕

以下、本発明の一実施例を図面を参照して説明する。 Hereinafter, one embodiment of the present invention will be described with reference to the drawings.

第1図は本発明に係る情報処理装置管理方式の一実施例
のブロフク図であって、本実施例では、RASプロセッ
サのソフトウェア処理によって情報処理装置の制御を実
現するようにしている。
FIG. 1 is a block diagram of an embodiment of an information processing device management method according to the present invention. In this embodiment, control of the information processing device is realized by software processing of a RAS processor.

第1図を参照すると、本実施例は、情報処理装置の電源
が投入されると割込みを検出する割込み受付部10と、
割込み要因の識別を行なう割込み要因識別部20と、シ
ステム状態/装置状態を管理するシステム状態/装置状
態管理部30と、装置立ち上げを行なう装置立上げ部4
0と、情報処理装置をシステムに組み込むよう構成変更
を行なう構成変更部50と、装置の診断を行なう装置診
断部60とを備えており、情報処理装置立ち上げ部40
、構成変更部50、情報処理装置診断部60は、システ
ム状態装置状態管理部30の制御の元に所定の処理を実
行する様になっている。
Referring to FIG. 1, the present embodiment includes an interrupt reception unit 10 that detects an interrupt when the power of the information processing device is turned on;
An interrupt factor identification unit 20 that identifies interrupt causes, a system status/device status management unit 30 that manages system status/device status, and a device startup unit 4 that starts up the device.
0, a configuration change unit 50 that changes the configuration to incorporate the information processing device into the system, and a device diagnosis unit 60 that diagnoses the device.
, the configuration change unit 50, and the information processing device diagnosis unit 60 are configured to execute predetermined processing under the control of the system status and device status management unit 30.

次にこのような構成の情報処理装置管理方式の処理流れ
を第2図のフローチャートを用いて説明する。
Next, the processing flow of the information processing device management method having such a configuration will be explained using the flowchart shown in FIG.

初めに、情報処理装置の電源が投入されるとRASプロ
セッサの割り込み受付部10が割り込みを検出する(ス
テップ100)。次に、割り込み要因識別部20に制御
が渡り、割込み要因識別部20では、割り込み要因の人
手を行ない(ステップ101)、電源割り込みであるか
否かを識別しくステップ102)、電源割り込みでない
場合は、他の割込み処理を行ない(ステ、プ103)、
電源割り込みの場合は、投入された情報処理装置のコー
ドを得て、システム状態/装置状態管理部30に制御を
渡す。システム状態/装置状態管理部30では、割り込
み要因識別部20で得た情報処理装置コードにより該当
する情報処理装置が故障していたかどうかを識別しくス
テップ104)、故障していなければステップ107に
進み、該情報処理装置が故障状態であったならば情報処
理装置診断部60に診断実行を指示する。
First, when the information processing device is powered on, the interrupt reception unit 10 of the RAS processor detects an interrupt (step 100). Next, control is passed to the interrupt cause identification unit 20, which manually handles the interrupt cause (step 101) and identifies whether or not it is a power interrupt (step 102), and if it is not a power interruption, , performs other interrupt processing (step 103),
In the case of a power interruption, the code of the turned-on information processing device is obtained and control is passed to the system status/device status management unit 30. The system status/equipment status management section 30 identifies whether or not the information processing device in question is out of order based on the information processing device code obtained by the interrupt factor identification section 20 (step 104); if it is not out of order, the process proceeds to step 107). , if the information processing device is in a failure state, the information processing device diagnosis unit 60 is instructed to execute the diagnosis.

情報処理装置診断部60では、システム状態/装置状態
管理部30からの診断実行指示により診断を実行する(
ステップ105)。しかる後にその診断結果をシステム
状B/装置状態管理部30に伝える。
The information processing device diagnosis unit 60 executes diagnosis based on the diagnosis execution instruction from the system status/device status management unit 30 (
Step 105). Thereafter, the diagnosis result is transmitted to the system status B/device status management section 30.

システム状B/装置状態管理部30では、情報処理装置
診断部60からの診断結果により診断が正常に行なわれ
た場合は該情報処理装置を故障状態から解除しくステッ
プ106)、ステップ107に進む。ステップ107で
はシステム状態/装置状態管理部30は、装置立上げ部
40に対して装置立ち工状指示を発行する。
If the diagnosis result from the information processing device diagnosis section 60 indicates that the diagnosis is successful, the system state B/device state management section 30 releases the information processing device from the failure state (step 106) and proceeds to step 107. In step 107, the system status/equipment status management section 30 issues a device startup instruction to the device startup section 40.

装置立上げ部40では、指示をうけて該情報処理装置の
立ち上げを実施しくステップ108)、立ち上げ完了後
、システム状態/装置状態管理部30に通知する。シス
テム状B/装置状態管理部30では、通知をうけてシス
テム運用中がどうかを識別しくステップ109)、運用
中ならば構成変更部50に対して該情報処理装置をシス
テムに組み込むように指示する。
Upon receiving the instruction, the device startup section 40 starts up the information processing device (step 108), and notifies the system status/device status management section 30 after the startup is completed. Upon receiving the notification, the system state B/device state management unit 30 identifies whether the system is in operation (step 109), and if it is in operation, instructs the configuration change unit 50 to incorporate the information processing device into the system. .

構成変更部50では、指示を受けてシステムに該情報処
理装置を組み込む処理を行なう(ステップ110)。
The configuration change unit 50 receives the instruction and performs a process of incorporating the information processing device into the system (step 110).

このようにして、電源投入からシステムへの組込み処理
まで一連の動作を電源投入という作業だけで行なうこと
が可能となる。
In this way, a series of operations from turning on the power to processing for incorporating it into the system can be performed simply by turning on the power.

〔発明の効果〕〔Effect of the invention〕

以上説明したように本発明は、情報処理装置の電源投入
によりシステムの組み込みまでを自動的に行うようにな
っているので、情報処理装置の立ち上げを無駄なく効率
よく行うことができて、人手操作による介入の余地をな
(すことにより誤操作をも防止できるという効果がある
As explained above, in the present invention, the system installation is automatically performed when the information processing device is powered on, so that the information processing device can be started up efficiently without waste, and without manual intervention. This has the effect of preventing erroneous operations by leaving room for intervention.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は本発明による情報処理装置管理方式の一実施例
のブロック図、第2図は、本発明の情報処理装置管理方
式の処理流れを示したフローチャートである。 第1図において、 10・・・割り込み受付部 20・・・割り込み要因識別部 30・・・システム状態/装置状態管理部40・・・情
報処理装置立ち上げ部 50・・・構成変更部 60・・・情報処理装置診断部である。 へ狂人 弁理士 山 下
FIG. 1 is a block diagram of an embodiment of the information processing device management method according to the present invention, and FIG. 2 is a flowchart showing the processing flow of the information processing device management method according to the present invention. In FIG. 1, 10... Interrupt acceptance unit 20... Interrupt factor identification unit 30... System status/device status management unit 40... Information processing device startup unit 50... Configuration change unit 60. ...Information processing device diagnostic section. Madman Patent Attorney Yamashita

Claims (1)

【特許請求の範囲】[Claims] 情報処理装置の電源が投入されたときに情報処理装置の
状態を識別して通常の電源投入であるか否かを判別する
状態管理手段を有し、前記状態管理手段は、通常の電源
投入であると判別したときには立ち上げ処理を行なわせ
、故障後の電源投入であると判別したときには診断処理
を実行した後に立ち上げ処理を行なわせ、システム運用
中の電源投入であると判別したときには前記各処理の後
にシステムへの構成変更処理を行わせるようになってい
ることを特徴とする情報処理装置管理方式。
The information processing device has a state management means for identifying the state of the information processing device when the power is turned on to determine whether or not the power is turned on normally, and the state management means is configured to identify the state of the information processing device when the power is turned on. When it is determined that the power is being turned on after a failure, the startup processing is performed after executing diagnostic processing, and when it is determined that the power is being turned on while the system is in operation, the startup processing is performed. An information processing device management method characterized in that the system is configured to perform configuration change processing after processing.
JP1063823A 1989-03-17 1989-03-17 Information processor control system Pending JPH02244208A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1063823A JPH02244208A (en) 1989-03-17 1989-03-17 Information processor control system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1063823A JPH02244208A (en) 1989-03-17 1989-03-17 Information processor control system

Publications (1)

Publication Number Publication Date
JPH02244208A true JPH02244208A (en) 1990-09-28

Family

ID=13240470

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1063823A Pending JPH02244208A (en) 1989-03-17 1989-03-17 Information processor control system

Country Status (1)

Country Link
JP (1) JPH02244208A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06348537A (en) * 1993-06-11 1994-12-22 Nec Corp Diagnostic system for input/output device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06348537A (en) * 1993-06-11 1994-12-22 Nec Corp Diagnostic system for input/output device

Similar Documents

Publication Publication Date Title
US7428660B2 (en) Starting control method, duplex platform system, and information processor
JPH02244208A (en) Information processor control system
JPH07160370A (en) Service interruption controller
JPH064417A (en) Battery backup control system for memory
JPH0581065A (en) Self diagnostic method for programmable controller system
JPS6389941A (en) Monitor and control equipment for microprocessor applied equipment
JPH064318A (en) Error detecting system
JP2002312076A (en) Power supply control device for computer system
JPH05191496A (en) Fault diagnostic system
JP2545763B2 (en) Restart method of batch processing in hot standby system
JPS61133443A (en) Fault processing system of electronic computer system
JPH02196341A (en) Fault restoring system for information processor
JPH01189736A (en) Program startup device
JPS60254308A (en) Power supply disconnection system for computer system
JPS63255742A (en) Data processor
JPH0378034A (en) Program parallel execution device
JPS6053887B2 (en) information processing system
JPH01140344A (en) Information processor
JPH02310634A (en) System for supervising runaway of program
JPH0363833A (en) Processor diagnostic system
JPH09152978A (en) Restart processing system for information processor
JPH0430229A (en) Automatic notice system for fault
JPH03167635A (en) Processing system in detection of fault
JPS6295647A (en) Microprogram controller with run monitoring device
JPS5927355A (en) Information processing system