WO2015078217A1 - Ras配置的设置方法及装置 - Google Patents

Ras配置的设置方法及装置 Download PDF

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Publication number
WO2015078217A1
WO2015078217A1 PCT/CN2014/086134 CN2014086134W WO2015078217A1 WO 2015078217 A1 WO2015078217 A1 WO 2015078217A1 CN 2014086134 W CN2014086134 W CN 2014086134W WO 2015078217 A1 WO2015078217 A1 WO 2015078217A1
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Prior art keywords
ras configuration
configuration information
user
ras
bmc
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PCT/CN2014/086134
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English (en)
French (fr)
Inventor
许利霞
李迪挺
张斌
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华为技术有限公司
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Publication of WO2015078217A1 publication Critical patent/WO2015078217A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/4401Bootstrapping
    • G06F9/4411Configuring for operating with peripheral devices; Loading of device drivers

Definitions

  • the present invention relates to communication technologies, and in particular, to a method and an apparatus for setting a RAS configuration.
  • the configuration of the reliability, availability, and serviceability (Reservability, Availability and Serviceability, RAS) configuration parameters in the operating system of the terminal device is generally optimized.
  • Configuration At present, when setting the RAS configuration parameters in the operating system of the terminal device, it is usually necessary to enter the RAS configuration setting interface through the Basic Input Output System (BIOS) program at boot or restart, thereby completing the RAS configuration. The setting of the parameters.
  • BIOS Basic Input Output System
  • the RAS configuration parameters in the operating system of the terminal device cannot be set at any time, so that the method for setting the RAS configuration parameter is restrictive, and the security of the RAS configuration is reduced.
  • the embodiment of the invention provides a method and a device for setting a RAS configuration, so as to solve the problem that the RAS configuration parameter in the operating system of the terminal device cannot be set at any time in the prior art, so that the method for setting the RAS configuration parameter is more restrictive.
  • an embodiment of the present invention provides a method for setting a reliability, availability, and serviceability configuration, including:
  • the obtaining the reliability, availability, and serviceability RAS configuration information set by the user includes:
  • the method further includes:
  • a RAS configuration acquisition response that includes the RAS configuration information, including:
  • BIOS a RAS configuration acquisition response including the first topology map, so that the BIOS sets RAS configuration parameters according to the RAS configuration information indicated by the first topology map.
  • any one of the first and second possible implementation manners of the first aspect in a third possible implementation manner, the obtaining reliability, availability, and serviceability of the user setting RAS Before configuring the information, it also includes:
  • the obtaining the reliability, availability, and serviceability RAS configuration information set by the user includes:
  • the method further includes:
  • the method before the receiving the information view instruction of the user input, the method further includes:
  • the method further includes :
  • the obtaining the reliability, availability, and serviceable RAS configuration information set by the user includes:
  • the obtaining, the user-set reliability, availability, serviceability RAS configuration information including :
  • any one of the first to sixth possible implementations of the first aspect in a seventh possible implementation, the returning the RAS that includes the RAS configuration information to the BIOS After the configuration obtains the response, so that the BIOS sets the RAS configuration parameter according to the RAS configuration information, the method further includes:
  • the user is prompted to complete the setting of the RAS configuration parameters.
  • the setting success message carries the set RAS configuration parameter; the prompting the user that the RAS configuration parameter has been completed After the setting, it also includes:
  • any one of the first to eighth possible implementation manners of the first aspect, in the ninth possible implementation manner, before the receiving the basic input/output system BIOS sends the RAS configuration acquisition request ,Also includes:
  • an embodiment of the present invention provides a method for setting a reliability, availability, and serviceability configuration, including:
  • the RAS configuration interface connected to the BMC acquires the replaced RAS configuration information in the BMC, and further sets the RAS configuration parameter according to the replaced RAS configuration information;
  • the parameter setting response is used to indicate to the user that the BMC has replaced the currently saved RAS configuration information according to the RAS configuration information set by the user.
  • the method further includes:
  • the upper management node Node has the saved RAS configuration information, the reliability of the user setting is obtained.
  • the availability, serviceability, and RAS configuration information it also includes:
  • the obtaining the reliability, availability, and serviceability RAS configuration information set by the user includes:
  • the method further includes:
  • the method further includes :
  • the obtaining the reliability, availability, and serviceable RAS configuration information set by the user includes:
  • the RAS configuration information includes RAS configuration information acquired from the BMC; Before the reliability, availability, and serviceability RAS configuration information, including:
  • the obtaining the reliability, availability, and serviceable RAS configuration information set by the user includes:
  • the acquiring reliability, availability, and serviceability RAS configuration information of the user setting includes: :
  • the user is prompted to complete the setting of the RAS configuration parameters.
  • the setting success message carries the set RAS configuration parameter; the prompting the user that the RAS configuration parameter has been completed After the setting, it also includes:
  • the RAS configuration information that is set by the user is used to manage the management of the substrate Before the BMC sends the parameter setting request, it also includes:
  • an embodiment of the present invention provides a setting of reliability, availability, and serviceability configuration.
  • the RAS configuration parameters are set according to the current RAS configuration information.
  • the method further includes:
  • the method further includes:
  • any one of the first and second possible implementation manners of the third aspect, in a third possible implementation manner, before the sending the RAS configuration acquisition request to the baseboard management controller BMC, also includes:
  • an embodiment of the present invention provides a device for setting a reliability, availability, and serviceability, which is disposed in a baseboard management controller BMC, and includes:
  • An obtaining module configured to obtain reliability, availability, and serviceability RAS configuration information set by the user, and stored in the BMC;
  • a receiving module configured to receive a RAS configuration acquisition request sent by a BIOS of the basic input/output system, where the BMC is connected to the BIOS through a RAS configuration interface;
  • a sending module configured to return, to the BIOS, a RAS configuration acquisition response that includes the RAS configuration information acquired by the obtaining module, so that the BIOS sets the RAS configuration parameter according to the RAS configuration information.
  • the acquiring module is further configured to acquire RAS configuration information that is set by the user through the upper management node Node.
  • the apparatus further includes: an image generating module, configured to acquire, by the acquiring module, a RAS configuration set by a user After the information, generating a first topology map according to the RAS configuration information set by the user;
  • the sending module is specifically configured to return, to the BIOS, a RAS configuration acquisition response that includes the first topology map, so that the BIOS sets a RAS configuration parameter according to the RAS configuration information indicated by the first topology map.
  • the receiving module is further configured to acquire a user in the acquiring module Receiving the information view instruction input by the user before setting the RAS configuration information;
  • the obtaining module is further configured to acquire current RAS configuration information saved in the BMC according to the information viewing instruction received by the receiving module;
  • the acquiring, by the acquiring module, the RAS configuration information that is set by the user includes: acquiring RAS configuration information that is obtained by setting, by the user, the current RAS configuration information;
  • the device further includes: an update module, configured to: after the obtaining module acquires the RAS configuration information set by the user, update the saved in the BMC according to the RAS configuration information set by the user RAS configuration information.
  • the receiving module is further configured to receive information sent by the BIOS before receiving the information viewing instruction input by the user Reporting the request, the information reporting request includes RAS configuration information in the BIOS;
  • the device further includes: a storage module, configured to save the RAS configuration information in the information reporting request received by the receiving module;
  • the sending module is further configured to: return an information report response to the BIOS, where the information report response is used to indicate to the BIOS that the BMC has saved the RAS configuration information reported by the BIOS.
  • the image generating module is further configured to: when the acquiring module is configured to view information according to the receiving module After acquiring the current RAS configuration information saved in the BMC, generating a second topology map according to the current RAS configuration information;
  • the acquiring module is configured to obtain RAS configuration information that is set by the user, and specifically includes: acquiring RAS configuration information that is obtained by setting, by the user, the current RAS configuration information indicated by the second topology map.
  • the acquiring module is configured to acquire RAS configuration information set by a user, including: for receiving And determining, by the user, the current RAS configuration information as the RAS configuration information set by the user, according to the confirmation instruction returned by the current RAS configuration information;
  • the receiving module is further configured to: The RAS configuration of the RAS configuration information acquires a response, so that the BIOS receives the setting success message sent by the BIOS after setting the RAS configuration parameter according to the RAS configuration information;
  • the device further includes: a prompting module, configured to prompt the user to complete the RAS configuration Set the parameters.
  • the setting success message carries the set RAS configuration parameter;
  • the image generating module is further configured to be in the prompting module After prompting the user to complete the setting of the RAS configuration parameter, generating a third topology map for the set RAS configuration parameter;
  • the prompting module is further configured to return, to the user, the third topology map to indicate the completed RAS configuration parameter.
  • the receiving module is further configured to receive, by the BIOS, Receiving a RAS configuration cancel instruction input by the user before the RAS configuration acquires the request;
  • the device further includes: a canceling module, configured to disconnect the RAS configuration interface connected to the BIOS according to the RAS configuration cancel command received by the receiving module, so that the BIOS sets the RAS configuration information according to the saved RAS configuration information.
  • a canceling module configured to disconnect the RAS configuration interface connected to the BIOS according to the RAS configuration cancel command received by the receiving module, so that the BIOS sets the RAS configuration information according to the saved RAS configuration information. RAS configuration parameters.
  • an embodiment of the present invention provides a device for setting a reliability, an availability, and a serviceability configuration, which is disposed in an upper management node Node, and includes:
  • the obtaining module is configured to obtain reliability, availability, and serviceability RAS configuration information set by the user;
  • a sending module configured to send a parameter setting request to the baseboard management controller BMC according to the RAS configuration information set by the user acquired by the acquiring module, so that the BMC replaces the currently saved RAS configuration information according to the RAS configuration information set by the user. And instructing the basic input/output system BIOS to obtain the replaced RAS configuration information in the BMC through the RAS configuration interface connected to the BMC, and further set the RAS configuration parameter according to the replaced RAS configuration information;
  • a receiving module configured to receive a parameter setting response returned by the BMC, where the parameter setting response is used to indicate to the user that the BMC has replaced the current RAS configuration information according to the user setting Saved RAS configuration information.
  • the device further includes: an image generating module, configured to generate, according to the RAS configuration information set by the user, after the acquiring module acquires the RAS configuration information set by the user a topology map;
  • the sending module is configured to send a parameter setting request to the BMC according to the first topology, so that the BMC replaces the currently saved RAS configuration information according to the RAS configuration information indicated by the first topology map.
  • the receiving module is further used. Receiving, by the acquiring module, the first viewing instruction input by the user, before acquiring the RAS configuration information set by the user;
  • the acquiring module is further configured to acquire current RAS configuration information saved in the upper management node according to the first information viewing instruction received by the receiving module;
  • the acquiring, by the acquiring module, the RAS configuration information that is set by the user includes: acquiring RAS configuration information that is obtained by setting, by the user, the current RAS configuration information;
  • the device further includes: an update module, configured to: after the obtaining module acquires the RAS configuration information set by the user, update the RAS configuration information saved in the upper management node according to the RAS configuration information set by the user.
  • an update module configured to: after the obtaining module acquires the RAS configuration information set by the user, update the RAS configuration information saved in the upper management node according to the RAS configuration information set by the user.
  • the image generating module is further configured to obtain, by the acquiring module, the first information viewing instruction received by the receiving module After the current RAS configuration information saved in the upper management node, generating a second topology map according to the current RAS configuration information;
  • the acquiring module is configured to obtain the RAS configuration information set by the user, and specifically includes: acquiring a RAS configuration that is set by the user according to the current RAS configuration information indicated by the second topology map. Set the information.
  • the RAS configuration information includes RAS configuration information acquired from the BMC, and the receiving module, And receiving, before the obtaining module acquires RAS configuration information set by the user, receiving a second viewing instruction input by the user;
  • the acquiring module is further configured to send a RAS configuration acquisition request to the BMC according to the second viewing instruction received by the receiving module;
  • the receiving module is further configured to receive a RAS configuration acquisition response that is returned by the BMC and includes current RAS configuration information saved in the BMC.
  • the image generating module is further configured to generate a third topology map according to the current RAS configuration information returned by the BMC;
  • the obtaining, by the acquiring module, the RAS configuration information that is set by the user, and the method includes: acquiring RAS configuration information that is obtained by the user according to the current RAS configuration information indicated by the third topology map.
  • the acquiring module is configured to acquire RAS configuration information set by a user, including: And determining, by the user, the current RAS configuration information as the RAS configuration information set by the user, according to the confirmation instruction returned by the current RAS configuration information;
  • the receiving module is further configured to receive the BMC return After the parameter setting response, receiving a setting success message sent by the BMC after the BIOS sets the RAS configuration parameter;
  • the apparatus further includes: a prompting module, configured to prompt the user to complete the setting of the RAS configuration parameter.
  • the setting success message carries the set RAS configuration parameter;
  • the image generating module is further configured to be in the prompting module After prompting the user to complete the setting of the RAS configuration parameter, generating a fourth topology map for the set RAS configuration parameter;
  • the prompting module is further configured to return, to the user, the fourth topology map to indicate the completed RAS configuration parameter.
  • the receiving module is further configured to: Receiving a RAS configuration cancel command input by the user before sending the parameter setting request to the baseboard management controller BMC by the RAS configuration information of the user setting acquired by the obtaining module;
  • the sending module is further configured to send the RAS configuration cancel command to the BMC, so that the BMC disconnects the RAS configuration interface connected to the BIOS according to the RAS configuration cancel command, so that the BIOS is based on the
  • the saved RAS configuration information sets the RAS configuration parameters.
  • the embodiment of the present invention provides a setting device for reliability, availability, and serviceability configuration, which is disposed in a BIOS of a basic input/output system, and includes:
  • a sending module configured to send a RAS configuration acquisition request to the baseboard management controller BMC, where the BIOS is connected to the BMC through a RAS configuration interface;
  • a receiving module configured to receive a RAS configuration acquisition response returned by the BMC, where the RAS configuration acquisition response includes current RAS configuration information saved in the BMC;
  • a setting module configured to set a RAS configuration parameter according to current RAS configuration information received by the receiving module.
  • the sending module is further configured to: after the setting module sets a RAS configuration parameter according to the current RAS configuration information received by the receiving module, send the setting to the BMC successfully. a message to cause the BMC to prompt the user that the RAS has been completed Configuration parameter settings.
  • the sending module is further configured to: after the setting module sets the RAS configuration parameter according to the current RAS configuration information received by the receiving module, send the setting to the BMC successfully. And a message, so that the BMC forwards the setting success information to the upper layer management node Node, so that the upper management node prompts the user to complete the setting of the RAS configuration parameter.
  • the sending module is further configured to send the RAS to the BMC Before the configuration request is configured, the information reporting request is sent to the BMC, where the information reporting request includes the RAS configuration information in the BIOS.
  • the receiving module is further configured to receive an information report response returned by the BMC through the RAS configuration interface, where the information report response is used to indicate to the BIOS that the BMC has saved RAS configuration information in the BIOS.
  • the method and device for setting the RAS configuration provided by the embodiment of the present invention obtain the RAS configuration information set by the user through the BMC and store it in the BMC, and the BMC and the BIOS are connected through the RAS configuration interface, so that the BIOS obtains the BMC.
  • the RAS configuration information set by the user enables the user to set the RAS configuration information in the operating system in the normal running state of the terminal device, and solves the problem that the RAS configuration parameters in the operating system of the terminal device cannot be set at any time in the prior art.
  • the method of setting RAS configuration parameters is more restrictive and improves the security of the RAS configuration.
  • FIG. 1 is a flowchart of a method for setting a RAS configuration according to Embodiment 1 of the present invention
  • FIG. 2 is a schematic structural diagram of an operating system in a method for setting a RAS configuration shown in FIG. 1;
  • FIG. 3 is a schematic diagram of a first topology diagram in a method for setting a RAS configuration according to an embodiment of the present invention
  • FIG. 4 is a flowchart of a method for setting a RAS configuration according to Embodiment 2 of the present invention.
  • FIG. 5 is a flowchart of a method for setting a RAS configuration according to Embodiment 3 of the present invention.
  • FIG. 6 is a flowchart of a method for setting a RAS configuration according to Embodiment 4 of the present invention.
  • FIG. 7 is a flowchart of a method for setting a RAS configuration according to Embodiment 5 of the present invention.
  • FIG. 9 is a signaling flowchart of a method for setting a RAS configuration according to Embodiment 7 of the present invention.
  • FIG. 10 is a schematic structural diagram of a device for setting a RAS configuration according to Embodiment 8 of the present invention.
  • FIG. 11 is a schematic structural diagram of another apparatus for setting a RAS configuration according to an embodiment of the present invention.
  • FIG. 12 is a schematic structural diagram of a device for setting a RAS configuration according to Embodiment 9 of the present invention.
  • FIG. 13 is a schematic structural diagram of still another apparatus for setting a RAS configuration according to an embodiment of the present invention.
  • FIG. 14 is a schematic structural diagram of a device for setting a RAS configuration according to Embodiment 10 of the present invention.
  • FIG. 15 is a schematic structural diagram of a terminal device according to Embodiment 11 of the present invention.
  • FIG. 16 is a schematic structural diagram of a terminal device according to Embodiment 12 of the present invention.
  • FIG. 17 is a schematic structural diagram of a terminal device according to Embodiment 13 of the present invention.
  • FIG. 1 is a flowchart of a method for setting a RAS configuration according to Embodiment 1 of the present invention.
  • the method in this embodiment is applicable to the setting of the RAS configuration parameter in the operating system of the terminal device, and the method may be performed by a baseboard management controller (BMC) or a RAS configuration setting device, where the device is usually It is implemented in hardware and/or software and integrated in the terminal device.
  • BMC baseboard management controller
  • RAS configuration setting device where the device is usually It is implemented in hardware and/or software and integrated in the terminal device.
  • the method in this embodiment may include:
  • the setting of the RAS configuration information in the operating system of the terminal device is usually set at the startup or restart, that is, when the BIOS program starts, enters the setting interface of the RAS configuration to set the RAS configuration parameter, and takes effect immediately after setting.
  • the setting interface is usually based on the Disk Operating System (DOS), and is specifically set by the system command, and the interface display is relatively simple.
  • DOS Disk Operating System
  • the user can operate normally in the terminal device.
  • the RAS parameters can be set through the BMC of the terminal device operating system.
  • the operating system of the terminal device can use the Intelligent Platform Management Interface (IPMI).
  • IPMI Intelligent Platform Management Interface
  • the upper management node (Node) and each Node can be connected by Ethernet or other network, and the upper management node can be operated by the IPMI original equipment manufacturer (OEM) command.
  • Management of each Node in the system such as FIG. 2 is a schematic structural diagram of an operating system in the setting method of the RAS configuration shown in FIG. 1.
  • One Node in the operating system usually includes a BIOS and a BMC, and the BMC and the BIOS pass the IPMI system.
  • the interface of the IPMI system is, for example, a keyboard controller (KCS) or a block transfer (Block Transfer, BT for short).
  • KCS keyboard controller
  • Block Transfer Block Transfer
  • the IPMI OEM command sent by the Node; the method provided by the embodiment, the BMC acquires and stores the RAS configuration information set by the user, and the setting of the RAS configuration parameter by the user may be implemented in an interface interface of the operating system, and the interface interface may be, for example,
  • the web system built in the terminal device allows the user to access the BMC through the page browser and store the set RAS configuration information in the BMC.
  • the BIOS sends a RAS configuration acquisition request to the BMC when the system is powered on or restarted.
  • the BIOS is activated every time the system is powered on or restarted.
  • the RAS configuration parameters are refreshed.
  • the BIOS if the user does not actively enter the BIOS to set the RAS configuration parameters, the system will refresh the settings at the time of the previous booting; unlike the prior art, in this embodiment,
  • the BMC and the BIOS are connected through the RAS configuration interface, and the RAS configuration interface is preset in the system to be the preferred mode for the BIOS to obtain the RAS configuration information.
  • the BIOS sends a RAS configuration acquisition request to the BMC.
  • the BMC receives the RAS configuration acquisition request sent by the BIOS, and the RAS configuration information that the user has set is carried in the RAS configuration acquisition response and returned to the BIOS, and the BIOS sets the parameters by using the RAS configuration information fed back by the BMC. .
  • the setting method of the RAS configuration provided in this embodiment obtains the RAS configuration information set by the user through the BMC and stores it in the BMC, and the BMC and the BIOS are connected through the RAS configuration interface, so that the BIOS obtains the user setting from the BMC.
  • RAS configuration information the user is at the end
  • the RAS configuration information in the operating system is set in the normal running state of the device, which solves the problem that the RAS configuration parameters in the operating system of the terminal device cannot be set at any time in the prior art, so that the method for setting the RAS configuration parameter is more restrictive.
  • the problem is to improve the security of the RAS configuration.
  • the setting of the RAS configuration information by the user may also be implemented by using the upper management node.
  • the setting of the RAS configuration parameter by the user may also be an interface interface of the operating system.
  • the user accesses the upper management node through the page browser, and the RAS configuration information is set through the upper management node.
  • the first topology map may be generated according to the RAS configuration information set by the user; correspondingly, the S130 is replaced by: returning the first topology to the BIOS.
  • the RAS configuration of the topology map obtains a response such that the BIOS sets the RAS configuration parameters according to the RAS configuration information indicated by the first topology map.
  • the BMC converts the acquired data of the RAS configuration information into a topology map, and the RAS configuration information represented by the topology diagram is more intuitive, and can better reflect the content of the RAS configuration information.
  • the effect for example, the first topology map includes a configuration area and a graphic display area; the configuration area includes RAS configuration information, such as a micro channel architecture (MCA), a mirror (Mirror), and a threshold (Threshold)
  • MCA micro channel architecture
  • Mirror mirror
  • Threshold threshold
  • FIG. 3 it is a schematic diagram of a first topology diagram in a method for setting a RAS configuration according to an embodiment of the present invention.
  • DIMM11 to DIMM88 refer to a number of a memory module.
  • the memory module in the embodiment may be, for example, a dual inline memory module (DIMM).
  • FIG. 4 is a flowchart of a method for setting a RAS configuration according to Embodiment 2 of the present invention. As shown in FIG. 4, the method in this embodiment may include:
  • the user can access the BMC through the interface interface, and input an information viewing instruction.
  • the BMC obtains the current RAS configuration information saved by the BMC according to the information input instruction input by the user. Specifically, the BMC obtains the RAS configuration information set by the user each time. After saving the RAS configuration information in the BMC through the interface interface, the RAS configuration information stored in the BMC can be obtained first.
  • the user can view the saved RAS configuration information in the BMC.
  • the BMC Before the user has set the RAS configuration information, the BMC can obtain the RAS in the BIOS through the RAS configuration interface connected to the BIOS. Configuration information; specifically, the BMC receives the information report request sent by the BIOS, where the information report request includes the RAS configuration information in the BIOS; and saves the RAS configuration information in the information report request; and further returns a response report to the BIOS.
  • the information reporting response is used to indicate to the BIOS that the BMC has saved the RAS configuration information reported by the BIOS.
  • the operating system of the terminal device is in a Power On Self Test (POST) phase when the device is powered on.
  • the BMC connected to the BIOS through the RAS configuration interface receives the information report request sent by the BIOS.
  • the information reporting request includes the RAS configuration information that is already in the BIOS, and is used to provide the RAS configuration information to the BMC.
  • the BMC saves the RAS configuration information included in the request. Accordingly, the BMC is in the BMC.
  • the information reporting response corresponding to the information reporting request is returned to the BIOS, and the BIOS is notified that the BMC has saved the reported RAS configuration information.
  • the BIOS can send an information report request through the IPMI OEM command. If the RAS configuration information included in the request is memory mirror information, the specific content of the IPMI OEM command can be referred to Table 1 below:
  • the BMC obtains the current RAS configuration information saved by itself according to the information viewing instruction of the user, and can display the current RAS configuration information to the user through the interface. Therefore, when the user performs the setting of the RAS configuration information, Based on the current RAS configuration information provided by the BMC, only the parameters of the RAS related configuration can be changed, which simplifies the content that the user sets in the RAS configuration information.
  • the S230 in this embodiment may include: receiving an acknowledgment instruction returned by the user based on the current RAS configuration information; and using the current RAS configuration information as the RAS configuration information set by the user according to the confirmation instruction.
  • the BMC obtains the RAS configuration information that is reset by the user
  • the previously saved RAS configuration information is replaced by the RAS configuration information set by the user, that is, the RAS configuration information that is last set by the user is saved in the BMC.
  • S250 to S260 refer to S120 to S130 in the first embodiment.
  • the BMC returns a response including the RAS configuration information to the BIOS, that is, the BIOS reads the RAS configuration information obtained by the BMC.
  • the BIOS reads the memory mirror information in the RAS configuration information sent by the BMC through the IPMI OEM command.
  • the specific content of the IPMI OEM command can be referred to Table 2 below:
  • the setting method of the RAS configuration provided in this embodiment obtains the RAS configuration information set by the user through the BMC and stores it in the BMC, and the BMC and the BIOS are connected through the RAS configuration interface, so that the BIOS obtains the user setting from the BMC.
  • the RAS configuration information is used to set the RAS configuration information in the operating system in the normal running state of the terminal device, which solves the problem that the RAS configuration parameters in the operating system of the terminal device cannot be set at any time in the prior art, so that the RAS configuration is set.
  • the method of parameter is more restrictive and improves the security of the RAS configuration.
  • the BMC can provide the user with its own saved information.
  • the RAS configuration information simplifies the content of the user's RAS configuration information settings.
  • the method provided in this embodiment after S220, further includes: generating a second topology map according to the current RAS configuration information; and correspondingly, S230 is replaced by: acquiring the current RAS indicated by the user based on the second topology map.
  • the configuration information is used to set the obtained RAS configuration information.
  • the BMC can convert the current RAS configuration information into the second topology map according to the preset topology form in the system.
  • the form of the second topology map displays the current RAS configuration information in the BMC to the user, so that the user can view and change the RAS configuration information more intuitively based on the content of the second topology map.
  • the BMC may further receive a setup success message sent by the BIOS, and prompt the user to complete the setting of the RAS configuration parameter; the setup success message may carry the configured RAS configuration.
  • the parameter correspondingly, the method provided in this embodiment further includes: generating a third topology map for the set RAS configuration parameter; therefore, returning to the user the set RAS configuration parameter used by the third topology map to indicate.
  • the RAS configuration cancellation interface is disconnected according to the RAS configuration cancellation command, so that the BIOS saves the RAS according to itself.
  • the configuration information sets the RAS configuration parameters.
  • FIG. 5 is a flowchart of a method for setting a RAS configuration according to Embodiment 3 of the present invention.
  • the method in this embodiment is applicable to the setting of the RAS configuration parameter in the operating system of the terminal device, and the method may be performed by a setting device configured by the upper management Node or the RAS, and the device is usually implemented by hardware and/or software. And integrated in the terminal device.
  • the method in this embodiment may include:
  • the RAS configuration parameter can be set in the state in which the terminal device is in normal operation.
  • the user specifically performs the RAS parameter setting through the upper management node of the terminal device operating system, and the same.
  • the upper management node and each Node are connected by Ethernet or other network, and the upper management node can be implemented by the IPMI OEM command to each Node in the operating system.
  • Management as shown in FIG. 2, may also be a result of an operating system provided in the setting method of the RAS configuration shown in FIG. 5.
  • a Node of the operating system usually includes a BIOS and a BMC, and the BMC passes through the BIOS.
  • the IPMI system interface is connected.
  • the IPMI system interface can be, for example, KCS or BT.
  • the BMC and the upper management node in the Node can be connected through the RAS configuration interface to implement interaction of the RAS configuration information, and receive the upper layer.
  • the management Node can also set the RAS configuration information in the form of the sent IPMI OEM command; this embodiment provides
  • the upper management node obtains the RAS configuration information set by the user, and the setting of the RAS configuration parameter by the user may be implemented in an interface interface of the operating system, and the interface interface may be, for example, a web system built in the terminal device, and the user may pass The page browser accesses the upper management node to set the RAS configuration information.
  • the upper management node cannot directly send the RAS configuration information set by the user to the BIOS, and may send the set RAS configuration information to the BIOS through the connected BMC.
  • the BMC has the currently saved RAS configuration information.
  • the currently saved RAS configuration information is replaced by the RAS configuration information set by the user included in the request, and then the BMC sends the replaced RAS configuration interface to the BIOS through the RAS configuration interface connected to the BIOS.
  • the RAS configuration information so that the BIOS performs parameter setting according to the received RAS configuration information.
  • the BMC when receiving the parameter setting request sent by the upper management node and replacing the RAS configuration information currently saved by the RAS configuration information in the request, the BMC may also send a parameter setting response to the upper management node, The upper management node is notified that the BMC has saved the received RAS configuration information.
  • the setting method of the RAS configuration provided by the embodiment obtains the RAS configuration information set by the user through the upper management node and sends the RAS configuration information to the BMC, so that the BMC replaces the currently saved RAS configuration information with the RAS configuration information set by the user, and the BMC and the BMC
  • the BIOS is connected to the RAS configuration interface, so that the BIOS can obtain the RAS configuration information set by the user from the BMC, and the RAS configuration information in the operating system is set in the normal operation state of the terminal device, which solves the prior art.
  • the RAS configuration parameters in the operating system of the terminal device cannot be set at any time, so that the method for setting the RAS configuration parameters is more restrictive, and the security of the RAS configuration is improved.
  • the first topology map may be generated according to the RAS configuration information set by the user; correspondingly, the upper management node may also be according to the first topology.
  • the figure sends a parameter setting request to the BMC, so that the BMC replaces the currently saved RAS configuration information according to the RAS configuration information indicated by the first topology map.
  • the upper management node converts the data formation of the acquired RAS configuration information into a topology diagram, and the RAS configuration information represented by the topology diagram is more intuitive, and can better reflect the RAS configuration information. Content and effects.
  • FIG. 6 is a flowchart of a method for setting a RAS configuration according to Embodiment 4 of the present invention. As shown in FIG. 6, the method in this embodiment may include:
  • the user can access the upper management node through the interface interface, and input the first information viewing instruction, and the upper management node obtains the current RAS configuration information saved by the user according to the first information viewing instruction input by the user; specifically, the upper management Each time the Node obtains the RAS configuration information set by the user, it saves it in the storage module in the upper management node. Therefore, when the user sets the RAS configuration information in the upper management node through the interface interface, the user can obtain the upper management node first. The RAS configuration information that has been stored.
  • the upper management node obtains the current RAS configuration information saved by itself according to the first information viewing instruction of the user, and can display the current RAS configuration information to the user through the interface. Therefore, the user is performing RAS configuration information.
  • it can be set based on the current RAS configuration information provided by the upper management node, and only the parameters of the RAS related configuration can be changed, which simplifies the content that the user sets the RAS configuration information.
  • the S430 in this embodiment may include: receiving an acknowledgment instruction returned by the user based on the current RAS configuration information; and using the current RAS configuration information as the RAS configuration information set by the user according to the confirmation instruction.
  • the upper management node after the upper management node obtains the RAS configuration information that is reset by the user, the previously saved RAS configuration information is replaced by the RAS configuration information set by the user, that is, the upper management node stores the last set RAS of the user. Configuration information.
  • the upper management node has replaced the RAS configuration information set by the user with the currently saved RAS configuration information. Therefore, the RAS configuration information set by the user in this embodiment can also be understood as being replaced in the upper management node.
  • RAS configuration information Specifically, specific implementations of S450 to S460 refer to S320 to S330 in the third embodiment.
  • the setting method of the RAS configuration provided by the embodiment obtains the RAS configuration information set by the user through the upper management node and sends the RAS configuration information to the BMC, so that the BMC replaces the currently saved RAS configuration information with the RAS configuration information set by the user, and the BMC and the BMC
  • the BIOS is connected to the RAS configuration interface, so that the BIOS can obtain the RAS configuration information set by the user from the BMC, and the RAS configuration information in the operating system is set in the normal operation state of the terminal device, which solves the prior art.
  • the RAS configuration parameters in the operating system of the terminal device cannot be set at any time, so that the method for setting the RAS configuration parameters is more restrictive, and the security of the RAS configuration is improved.
  • the upper management node can provide the user with the RAS configuration information saved by the user, which simplifies the content that the user sets in the RAS configuration information.
  • the method provided in this embodiment after S420, further includes: generating a second topology map according to the current RAS configuration information; and correspondingly, the S430 is replaced by: acquiring the current RAS configuration indicated by the user based on the second topology map. The information is set to get the RAS configuration information.
  • the upper management node may follow the preset topology form in the system.
  • the current RAS configuration information is converted into a second topology map, and the current RAS configuration information in the upper management node is displayed to the user in the form of the second topology map, so that the user can view and based on the content pair of the second topology map more intuitively.
  • the RAS configuration information is changed.
  • the upper management node receives the second viewing instruction input by the user, and according to the second viewing instruction.
  • the upper management node may further generate a third topology map according to the current RAS configuration information returned by the BMC; correspondingly, the user may perform setting based on the current RAS configuration information indicated by the third topology map.
  • the RAS configuration information saved in the BMC may be obtained from the BIOS through a RAS configuration interface connected to the BIOS.
  • the BMC receives an information reporting request sent by the BIOS, where the information reporting request includes the BIOS.
  • the RAS configuration information; and the RAS configuration information in the information reporting request is saved; and the information reporting response is returned to the BIOS, and the information reporting response is used to indicate to the BIOS that the BMC has saved the RAS configuration information reported by the BIOS.
  • the upper management node may further receive a setup success message sent by the BMC after the BIOS sets the RAS configuration parameter, where the success prompt message is sent by the BIOS to the BMC after setting the RAS configuration parameter. And being forwarded by the BMC to the upper management node, specifically for prompting the user to complete the setting of the RAS configuration parameter; in the specific implementation, the setting success message may carry the set RAS configuration parameter, and correspondingly, the embodiment provides The method further includes: generating a fourth topology map for the set RAS configuration parameters; therefore, returning the fourth topology map to the user to indicate the set RAS configuration parameters.
  • the RAS configuration cancellation instruction when the upper management node receives the RAS configuration cancellation instruction input by the user, the RAS configuration cancellation instruction is sent to the BMC, so that the BMC disconnects from the BIOS according to the RAS configuration cancellation instruction.
  • RAS configuration interface so that the BIOS saves according to itself
  • the RAS configuration information sets the RAS configuration parameters.
  • FIG. 7 is a flowchart of a method for setting a RAS configuration according to Embodiment 5 of the present invention.
  • the method of this embodiment is applicable to the setting of the RAS configuration parameter in the operating system of the terminal device, and the method may be performed by a setting device configured by the BIOS or the RAS, and the device is usually implemented by a hardware and/or software method, and Integrated in the terminal device.
  • the method in this embodiment may include:
  • the RAS configuration information is set through the BIOS to enter the setting interface of the RAS configuration; in this embodiment, the BIOS and the BMC have a RAS configuration interface, therefore, In the POST stage, the BIOS may send a RAS configuration acquisition request to the BMC through the RAS configuration interface to obtain the RAS configuration information in the BMC.
  • the RAS configuration information in the BMC may be in a normal running state of the terminal device.
  • the RAS configuration information may be that the user accesses the BMC through the interface interface, and is directly set and saved in the BMC.
  • the RAS configuration information may also be accessed by the user through the interface interface to the upper management node. After the settings in the management node are sent to the BMC, they are stored in the BMC.
  • the BMC is directly connected to the BIOS, and the RAS configuration information is set in the BMC regardless of whether the user is in the BMC or in the upper management node, and the RAS configuration information set by the user is saved in the BMC, and the BMC and the BMC are The BIOS completes the interaction of the RAS configuration information. Therefore, the BIOS receives the RAS configuration acquisition response that is returned by the BMC and includes the saved RAS configuration information, so that the BIOS obtains the RAS configuration information that the user sets in the normal state of the terminal device.
  • the BIOS may set the RAS configuration parameter according to the current RAS configuration information, so as to refresh the RAS configuration information when the system is powered on or restarted.
  • the setting method of the RAS configuration provided by the embodiment is implemented by the RAS configuration interface of the BMC and the BIOS.
  • the BIOS can send a RAS configuration acquisition request to the BMC to obtain the current RAS configuration information saved in the BMC.
  • the BIOS obtains the RAS configuration information set by the user in the normal running state of the terminal device from the BMC, and solves the problem that the RAS configuration parameter in the operating system of the terminal device cannot be set at any time in the prior art, so that the method for setting the RAS configuration parameter is restricted. Larger problems increase the security of the RAS configuration.
  • the BIOS further sends a setting success message to the BMC. So that the BMC prompts the user to complete the setting of the RAS configuration parameter; if the RAS configuration information is accessed by the user through the interface interface to the upper management node, the upper management node is set, and after S530, the BIOS goes to the The BMC sends a setup success message, which is used to enable the BMC to forward the setup success information to the upper management node Node, so that the upper management node prompts the user to complete the setting of the RAS configuration parameter.
  • the BIOS may report the RAS configuration information to the BMC through the RAS configuration interface connected to the BMC. Specifically, the BIOS sends an information report request to the BMC.
  • the information reporting request includes the RAS configuration information in the BIOS; and further receives the information reporting response returned by the BMC through the RAS configuration interface, where the information reporting response is used to indicate to the BIOS that the BMC has saved the RAS configuration information in the BIOS.
  • FIG. 8 is a signaling flowchart of a method for setting a RAS configuration according to Embodiment 6 of the present invention. As shown in FIG. 8, the method in this embodiment may include:
  • the BMC receives an information viewing instruction input by the user.
  • the BMC obtains current RAS configuration information saved in the BMC according to the information viewing instruction.
  • the BMC updates the RAS configuration information saved in the BMC according to the RAS configuration information set by the user.
  • the BIOS sends a RAS configuration acquisition request to the BMC, and the BIOS connects to the BMC through the RAS configuration interface.
  • the BIOS when the terminal device is restarted or restarted, the BIOS sends a RAS configuration acquisition request to the BMC to obtain the last saved RAS configuration information in the BMC.
  • the BMC returns a RAS configuration acquisition response including the RAS configuration information to the BIOS.
  • the BIOS sets the RAS configuration parameter according to the RAS configuration information.
  • the setting method of the RAS configuration provided in this embodiment obtains the RAS configuration information set by the user through the BMC and stores it in the BMC, and the BMC and the BIOS are connected through the RAS configuration interface, so that the BIOS can obtain the user setting from the BMC.
  • the RAS configuration information enables the user to set the RAS configuration information in the operating system under the normal operation of the terminal device, and solves the problem that the RAS configuration parameters in the operating system of the terminal device cannot be set at any time in the prior art, so that the RAS is set.
  • the method of configuring parameters is more restrictive and improves the security of the RAS configuration.
  • the BMC can provide the user with the RAS configuration information saved by the user, which simplifies the content that the user sets in the RAS configuration information.
  • the method may further generate a first topology map according to the RAS configuration information set by the user; correspondingly, the S606 is replaced with: Returning a RAS configuration acquisition response including the first topology diagram, so that the BIOS sets the RAS configuration parameter according to the RAS configuration information indicated by the first topology map; Similarly, after the current RAS configuration information is obtained by the BMC, the second topology map may be generated according to the current RAS configuration information.
  • the S603 is specifically: the BMC obtains the current RAS configuration indicated by the user based on the second topology map. The information is set to get the RAS configuration information.
  • the method provided in this embodiment further includes: S608, the BIOS sends a setup success message to the BMC after the S607;
  • the BMC prompts the user to complete the setting of the RAS configuration parameter.
  • the setting success message sent by the BIOS carries the set RAS configuration parameter
  • the method further includes: generating a third topology map for the set RAS configuration parameter; correspondingly, S609 specifically includes : Return to the user the set RAS configuration parameters indicated by the third topology map.
  • the setting method of the RAS configuration converts the RAS configuration information acquired by the BMC, the current RAS configuration information saved in the BMC, and the data of the set RAS configuration parameters into a topology map, and the RAS represented by the topology diagram.
  • the configuration information is more intuitive and can better reflect the content and effects of the RAS configuration information.
  • the method provided in this embodiment before the S601, when the terminal device is in the POST phase, further includes: S610, the BIOS sends an information reporting request to the BMC, where the information reporting request includes the RAS configuration information that already exists in the BIOS;
  • the BMC saves the RAS configuration information included in the information report request.
  • the BMC returns a message reporting response to the BIOS, to notify the BIOS that the BMC has saved the RAS configuration information that it reports.
  • the BRAS when the BMC can receive the RAS configuration cancellation command input by the user, the BRAS disconnects the RAS configuration interface connected to the BIOS according to the RAS configuration cancellation command, so that the BIOS saves the RAS according to the RAS.
  • the configuration information sets the RAS configuration parameters.
  • FIG. 9 is a signaling flowchart of a method for setting a RAS configuration according to Embodiment 7 of the present invention. As shown in FIG. 9, the method in this embodiment may include:
  • the upper management node receives the first view instruction input by the user.
  • the upper management node acquires current RAS configuration information saved in the upper management node according to the first information viewing instruction.
  • the upper management node acquires RAS configuration information that is obtained by the user according to the current RAS configuration information.
  • the upper management node updates the RAS configuration information saved in the upper management node according to the RAS configuration information set by the user.
  • the upper management node sends a parameter setting request to the BMC, where the parameter setting request includes the RAS configuration information set by the user.
  • the BMC replaces the currently saved RAS configuration information according to the RAS configuration information set by the user.
  • the BMC returns the parameter setting response to the upper layer management Node.
  • the upper management node indicates to the user that the BMC has replaced the currently saved RAS configuration information according to the RAS configuration information set by the user.
  • the BIOS sends a RAS configuration acquisition request to the BMC, and the BIOS connects to the BMC through the RAS configuration interface.
  • the BIOS when the terminal device is restarted or restarted, the BIOS sends a RAS configuration acquisition request to the BMC to obtain the last saved RAS configuration information in the BMC.
  • the BMC returns a RAS configuration acquisition response that includes the RAS configuration information to the BIOS, and returns the replaced RAS configuration information in the BMC to the BIOS.
  • the BIOS sets the RAS configuration parameter according to the replaced RAS configuration information.
  • the setting method of the RAS configuration provided by the embodiment obtains the RAS configuration information set by the user through the upper management node and sends the RAS configuration information to the BMC, so that the BMC replaces the currently saved RAS configuration information with the RAS configuration information set by the user, and the BMC and the BMC
  • the BIOS is connected through the RAS configuration interface, so that the BIOS can obtain the RAS configuration information set by the user from the BMC, and implement the setting of the RAS configuration information in the operating system when the terminal device is in normal operation, which solves the prior art.
  • the RAS configuration parameters in the operating system of the terminal device cannot be set at any time, so that the method for setting the RAS configuration parameters is more restrictive, and the security of the RAS configuration is improved.
  • the upper management node can provide the user with the RAS configuration information saved by the user, which simplifies the content that the user sets in the RAS configuration information.
  • the method provided in this embodiment may generate a first topology map according to the RAS configuration information set by the user after the upper management node obtains the RAS configuration information set by the user; correspondingly, the S705 is replaced by: the upper layer.
  • the management node sends a parameter setting request to the BMC according to the first topology map; S706 is replaced by: the BMC replaces the currently saved RAS configuration information according to the RAS configuration information indicated by the first topology map; similarly, the upper management node acquires After the current RAS configuration information, the second topology map may be generated according to the current RAS configuration information.
  • the S703 is specifically configured to: obtain, by the upper management node, the current RAS configuration information indicated by the second topology map. RAS configuration information.
  • the S701 to S704 are replaced by:
  • the upper management node receives the second view instruction input by the user.
  • the upper management node sends a RAS configuration acquisition request to the BMC according to the second viewing instruction.
  • S714 The BMC returns a RAS configuration acquisition response to the upper layer management Node, where the response includes the BMC. Current RAS configuration information saved in ;
  • the upper management node instructs the user to set the RAS configuration information based on the current RAS configuration information saved in the BMC.
  • the upper management node may further generate a third topology map according to the current RAS configuration information returned by the BMC; correspondingly, S715 specifically includes: the current RAS indicated by the user based on the third topology map. Configuration information is set.
  • the method provided in this embodiment further includes: after S711:
  • the BIOS sends a setup success message to the BMC.
  • S717 The BMC sends a setup success message to the upper layer management node.
  • the upper management node prompts the user to complete the setting of the RAS configuration parameter.
  • the setting success message sent by the BIOS carries the set RAS configuration parameter
  • the S718 further includes: generating a fourth topology map for the set RAS configuration parameter; correspondingly, the S718 specifically includes : Returning the fourth topology map to the user to indicate the RAS configuration parameters that have been set.
  • the setting method of the RAS configuration provided by the embodiment the RAS configuration information set by the upper layer management node, the current RAS configuration information saved in the upper management node, and the BMC returning the RAS configuration information and the set RAS configuration to the upper layer management Node.
  • the data formation of the parameters is converted into a topology map, and the RAS configuration information represented by the topology map is more intuitive, and can better reflect the content and effect of the RAS configuration information.
  • the method provided in this embodiment before the S701 or S712, when the terminal device is in the POST phase, further includes: S719, the BIOS sends an information report request to the BMC, where the information report request includes the RAS configuration information that already exists in the BIOS. ;
  • S720 The BMC saves the RAS configuration information included in the information report request.
  • the BMC returns a message reporting response to the BIOS, to notify the BIOS of the BMC.
  • the RAS configuration information reported by it has been saved.
  • FIG. 10 is a schematic structural diagram of a device for setting a RAS configuration according to Embodiment 8 of the present invention.
  • the setting device of the RAS configuration provided in this embodiment is disposed in the baseboard management controller BMC, and specifically includes: an obtaining module 11, a receiving module 12, and a sending module 13.
  • the obtaining module 11 is configured to acquire RAS configuration information set by the user, and store the information in the BMC.
  • the receiving module 12 is configured to receive a RAS configuration acquisition request sent by the BIOS, where the BMC is connected to the BIOS through a RAS configuration interface.
  • the sending module 13 is configured to return, to the BIOS, a RAS configuration acquisition response that includes the RAS configuration information acquired by the obtaining module 11 to enable the BIOS to set the RAS configuration parameter according to the RAS configuration information.
  • the setting device of the RAS configuration provided by the embodiment of the present invention is used to perform the setting method of the RAS configuration provided by the first embodiment of the present invention, and has a corresponding functional module, and the implementation principle and the technical effect thereof are similar, and details are not described herein again.
  • the setting device of the RAS configuration provided in this embodiment, the setting of the RAS configuration information by the user may also be implemented by the upper management node, and the acquiring module 11 is further configured to obtain the user through the upper management node Node. Set the RAS configuration information.
  • FIG. 11 is a schematic structural diagram of another apparatus for setting a RAS configuration according to an embodiment of the present invention.
  • the setting device of the RAS configuration provided by the embodiment further includes: an image generating module 14 configured to generate, after the obtaining module 11 acquires the RAS configuration information set by the user, according to the RAS configuration information set by the user. a first topology diagram; correspondingly, the sending module 13 is specifically configured to return, to the BIOS, a RAS configuration acquisition response that includes the first topology map, so that the BIOS sets the RAS configuration parameter according to the RAS configuration information indicated by the first topology map. .
  • the receiving module 12 is further configured to: before the obtaining module 11 acquires the RAS configuration information set by the user, receive an information viewing instruction input by the user; correspondingly, the obtaining module 11 is further configured to The information viewing instruction received by the receiving module 12 acquires the current RAS configuration information saved in the BMC.
  • the acquiring module 11 is configured to obtain the RAS configuration information set by the user, and specifically includes: obtaining the RAS that is set by the user based on the current RAS configuration information.
  • the configuration information provided by the embodiment further includes an update module 15 configured to update the RAS configuration information saved in the BMC according to the RAS configuration information set by the user after the acquisition module 11 acquires the RAS configuration information set by the user.
  • the receiving module 12 is further configured to receive an information reporting request sent by the BIOS before receiving the information viewing instruction input by the user, where the information reporting request includes the
  • the device further includes: a storage module 16 configured to save the RAS configuration information in the information reporting request received by the receiving module 12; the sending module 13 is further configured to the BIOS Returning the information report response, the information report response is used to indicate to the BIOS that the BMC has saved the RAS configuration information reported by the BIOS.
  • the setting device of the RAS configuration provided by the embodiment of the present invention is used to perform the setting method of the RAS configuration provided by the second embodiment of the present invention, and has a corresponding functional module, and the implementation principle and the technical effect thereof are similar, and details are not described herein again.
  • the image generating module 14 is further configured to: after the obtaining module 11 obtains the current RAS configuration information saved in the BMC according to the information viewing instruction received by the receiving module 12, according to the current RAS configuration.
  • the information generates a second topology map.
  • the obtaining module 11 is configured to obtain RAS configuration information that is set by the user, and specifically includes: acquiring RAS configuration information that is obtained by setting, by the user, the current RAS configuration information indicated by the second topology map. .
  • the acquiring module 11 is configured to obtain RAS configuration information set by the user, including: receiving an acknowledgment instruction returned by the user based on the current RAS configuration information; and configuring the current RAS according to the confirmation instruction.
  • the information is the RAS configuration information set by the user.
  • the receiving module 12 is further configured to: after returning the RAS configuration acquisition response including the RAS configuration information to the BIOS, to enable the BIOS to set the RAS configuration parameter according to the RAS configuration information, Receiving the setting success message sent by the BIOS; correspondingly, the device may further include: a prompting module 17 for prompting the user to complete the setting of the RAS configuration parameter; generally, the setting success message may carry the set RAS Configuration parameters; similarly, the image generation module 14 is further configured to: after the prompting module 17 prompts the user to complete the setting of the RAS configuration parameter, generate a third topology map for the set RAS configuration parameter; The prompting module 17 is further configured to return the third topology map to the user to indicate the completed RAS configuration parameter.
  • the receiving module 12 may further receive a RAS configuration cancellation command input by the user before receiving the RAS configuration acquisition request sent by the BIOS; correspondingly, the device may further include: a cancellation module, The RAS configuration interface for disconnecting the BIOS is disconnected according to the RAS configuration cancel command received by the receiving module 12, so that the BIOS sets the RAS configuration parameter according to the RAS configuration information saved by itself.
  • FIG. 12 is a schematic structural diagram of a device for setting a RAS configuration according to Embodiment 9 of the present invention.
  • the setting device of the RAS configuration provided in this embodiment is disposed in the upper management node Node, and specifically includes: an obtaining module 21, a sending module 22, and a receiving module 23.
  • the obtaining module 21 is configured to obtain RAS configuration information set by the user.
  • the sending module 22 is configured to send a parameter setting request to the baseboard management controller BMC according to the RAS configuration information set by the user acquired by the obtaining module 21, so that the BMC replaces the currently saved RAS configuration information according to the RAS configuration information set by the user. And instructing the basic input/output system BIOS to obtain the replaced RAS configuration information in the BMC through the RAS configuration interface connected to the BMC, and then setting the RAS configuration parameter according to the replaced RAS configuration information.
  • the receiving module 23 is configured to receive a parameter setting response returned by the BMC, where the parameter setting response is The user is instructed to indicate that the BMC has replaced the currently saved RAS configuration information according to the RAS configuration information set by the user.
  • the setting device of the RAS configuration provided by the embodiment of the present invention is used to perform the setting method of the RAS configuration provided by the third embodiment of the present invention, and has a corresponding functional module, and the implementation principle and the technical effect thereof are similar, and details are not described herein again.
  • FIG. 13 is a schematic structural diagram of still another apparatus for setting a RAS configuration according to an embodiment of the present invention.
  • the setting device of the RAS configuration provided by the embodiment further includes: an image generating module 24, configured to: after the obtaining module 21 acquires the RAS configuration information set by the user, according to the RAS configuration information set by the user Generating a first topology map; correspondingly, the sending module 22 is configured to send a parameter setting request to the BMC according to the first topology, so that the BMC replaces the current save according to the RAS configuration information indicated by the first topology map.
  • RAS configuration information configured to: after the obtaining module 21 acquires the RAS configuration information set by the user, according to the RAS configuration information set by the user Generating a first topology map; correspondingly, the sending module 22 is configured to send a parameter setting request to the BMC according to the first topology, so that the BMC replaces the current save according to the RAS configuration information indicated by the first topology map.
  • RAS configuration information
  • the receiving module 23 is further configured to receive the user before the obtaining module 21 acquires the RAS configuration information set by the user.
  • the first viewing instruction is input; the obtaining module 21 is further configured to acquire the current RAS configuration information saved in the upper management node according to the first information viewing instruction received by the receiving module 23; the obtaining module 21 is configured to acquire user settings.
  • the RAS configuration information includes: obtaining the RAS configuration information that is set by the user based on the current RAS configuration information; and correspondingly, the apparatus further includes: an update module 25, configured to acquire, by the obtaining module 21, the RAS configuration set by the user. After the information, the RAS configuration information saved in the upper management node is updated according to the RAS configuration information set by the user.
  • the setting device of the RAS configuration provided by the embodiment of the present invention is used to perform the setting method of the RAS configuration provided by the fourth embodiment of the present invention, and has a corresponding functional module, and the implementation principle and the technical effect thereof are similar, and details are not described herein again.
  • the image generating module 24 is further configured to acquire, in the upper layer management node, the acquiring module 21 according to the first information viewing instruction received by the receiving module 23 After the current RAS configuration information, the second topology map is generated according to the current RAS configuration information.
  • the obtaining module 21 is configured to obtain the RAS configuration information set by the user, and specifically includes: acquiring, by the user, the second topology map. The current RAS configuration information is set to get the RAS configuration information.
  • the receiving module 23 is further configured to acquire, by the acquiring module 21, the RAS configuration set by the user.
  • the obtaining module 21 is further configured to send a RAS configuration acquisition request to the BMC according to the second viewing instruction received by the receiving module 23; and further, the receiving module 23 And the RAS configuration acquisition response that is returned by the BMC and includes the current RAS configuration information saved in the BMC.
  • the image generation module 24 is further configured to generate a third topology according to the current RAS configuration information returned by the BMC.
  • the acquiring module 21 is configured to obtain the RAS configuration information set by the user, and specifically includes: acquiring RAS configuration information that is set by the user according to the current RAS configuration information indicated by the third topology map.
  • the acquiring module 21 is configured to obtain RAS configuration information set by the user, including: receiving an acknowledgment instruction returned by the user based on the current RAS configuration information; and configured to use the acknowledgment command received by the receiving unit to The current RAS configuration information is used as the RAS configuration information set by the user.
  • the receiving module 23 is further configured to: after receiving the parameter setting response returned by the BMC, receive a setting success message sent by the BMC after the BIOS sets the RAS configuration parameter;
  • the method further includes: a prompting module 26, configured to prompt the user to complete the setting of the RAS configuration parameter; generally, the setting success message may carry the set RAS configuration parameter; correspondingly, the image generating module 24 is further configured to After the prompting module 26 prompts the user that the setting of the RAS configuration parameter has been completed, generating a fourth topology map for the set RAS configuration parameter; the prompting module 26 is further configured to return the fourth to the user.
  • the topology map is indicated by the end Set the RAS configuration parameters.
  • the receiving module 23 may also receive the RAS configuration cancellation of the user input before the sending module 22 sends a parameter setting request to the BMC according to the RAS configuration information set by the user acquired by the obtaining module 21.
  • the sending module 22 is further configured to send the RAS configuration cancel command to the BMC, so that the BMC disconnects the RAS configuration interface connected to the BIOS according to the RAS configuration cancel command, so that the BIOS saves according to itself.
  • the RAS configuration information sets the RAS configuration parameters.
  • FIG. 14 is a schematic structural diagram of a device for setting a RAS configuration according to Embodiment 10 of the present invention.
  • the setting device of the RAS configuration provided in this embodiment is disposed in the BIOS of the basic input/output system, and specifically includes: a sending module 31, a receiving module 32, and a setting module 33.
  • the sending module 31 is configured to send a RAS configuration acquisition request to the BMC, where the BIOS is connected to the BMC through a RAS configuration interface.
  • the receiving module 32 is configured to receive a RAS configuration acquisition response returned by the BMC, where the RAS configuration acquisition response includes current RAS configuration information saved in the BMC.
  • the setting module 33 is configured to set the RAS configuration parameter according to the current RAS configuration information received by the receiving module 32.
  • the setting device of the RAS configuration provided by the embodiment of the present invention is used to perform the setting method of the RAS configuration provided by the fifth embodiment of the present invention, and has a corresponding functional module, and the implementation principle and the technical effect thereof are similar, and details are not described herein again.
  • the sending module 31 is further configured to: in the setting module 33, set the RAS configuration according to the current RAS configuration information received by the receiving module 32. After the parameter, sending a setup success message to the BMC, so that the BMC prompts the user to complete the setting of the RAS configuration parameter; if the RAS configuration information is that the user is in the The sending module 31 is further configured to send a setting success message to the BMC after the setting module 33 sets the RAS configuration parameter according to the current RAS configuration information received by the receiving module 32, so that the BMC is enabled.
  • the setting success information is forwarded to the upper management node Node, so that the upper management node prompts the user to complete the setting of the RAS configuration parameter.
  • the sending module 31 is further configured to: before sending the RAS configuration acquisition request to the BMC, send an information reporting request to the BMC, where the information reporting request includes RAS configuration information in the BIOS;
  • the receiving module 32 is further configured to receive an information report response returned by the BMC through the RAS configuration interface, where the information report response is used to indicate to the BIOS that the BMC has saved the RAS configuration information in the BIOS.
  • FIG. 15 is a schematic structural diagram of a terminal device according to Embodiment 11 of the present invention.
  • the terminal device provided in this embodiment specifically includes: a processor 41, a receiver 42, and a transmitter 43.
  • the processor 41 is configured to acquire RAS configuration information set by the user, and store the information in the BMC.
  • the receiver 42 is configured to receive a RAS configuration acquisition request sent by the BIOS, where the BMC is connected to the BIOS through a RAS configuration interface.
  • the transmitter 43 is configured to return, to the BIOS, a RAS configuration acquisition response including the RAS configuration information acquired by the processor 41, so that the BIOS sets the RAS configuration parameter according to the RAS configuration information.
  • the terminal device provided by the embodiment of the present invention is configured to perform the setting method of the RAS configuration provided by the first embodiment of the present invention, and has a corresponding physical device, and the implementation principle and the technical effect thereof are similar, and details are not described herein again.
  • the setting of the RAS configuration information by the user may also be implemented by using an upper management node, and correspondingly, the processor 41 is further configured to acquire the user through the upper layer. Manage the RAS configuration information set by the Node.
  • the processor 41 is further configured to: after acquiring the RAS configuration information set by the user, generate a first topology map according to the RAS configuration information set by the user; correspondingly, the transmitter 43 is specific. And the RAS configuration acquisition response including the first topology map is returned to the BIOS, so that the BIOS sets the RAS configuration parameter according to the RAS configuration information indicated by the first topology map.
  • the receiver 42 is further configured to receive an information viewing instruction input by the user before the processor 41 acquires the RAS configuration information set by the user; correspondingly, the processor 41 is further configured to The information view command received by the receiver 42 acquires the current RAS configuration information saved in the BMC.
  • the processor 41 is configured to obtain the RAS configuration information set by the user, and specifically includes: obtaining, by the user, setting according to the current RAS configuration information. RAS configuration information; in this embodiment, the processor 41 is further configured to: after acquiring the RAS configuration information set by the user, update the RAS configuration information saved in the BMC according to the RAS configuration information set by the user.
  • the receiver 42 is further configured to receive an information reporting request sent by the BIOS before receiving the information viewing instruction input by the user, where the information reporting request includes the
  • the device further includes: a memory 44, configured to save the RAS configuration information in the information reporting request received by the receiver 42; and the transmitter 43 is further configured to return information to the BIOS.
  • the report response is used to indicate to the BIOS that the BMC has saved the RAS configuration information reported by the BIOS.
  • the terminal device provided by the embodiment of the present invention is configured to perform the setting method of the RAS configuration provided by the second embodiment of the present invention, and has a corresponding physical device, and the implementation principle and the technical effect thereof are similar, and details are not described herein again.
  • the processor 41 is further configured to generate a second topology map according to the current RAS configuration information after acquiring the current RAS configuration information saved in the BMC according to the information viewing instruction received by the receiver 42.
  • the processor 41 is configured to acquire the RAS set by the user.
  • the configuration information includes: obtaining RAS configuration information that is set by the user according to the current RAS configuration information indicated by the second topology map.
  • the processor 41 is configured to obtain RAS configuration information set by the user, including: receiving an acknowledgment instruction returned by the user based on the current RAS configuration information; and using the current RAS configuration information as the acknowledgment instruction The RAS configuration information set by this user.
  • the receiver 42 is further configured to: after receiving a RAS configuration acquisition response including the RAS configuration information to the BIOS, to enable the BIOS to set the RAS configuration parameter according to the RAS configuration information, and then receive the response.
  • the setting success message sent by the BIOS correspondingly, the device may further include a display for prompting the user to complete the setting of the RAS configuration parameter; generally, the setting success message may carry the set RAS configuration parameter;
  • the processor 41 is further configured to: after the display prompts the user that the setting of the RAS configuration parameter has been completed, generate a third topology map for the set RAS configuration parameter; and the display is further used for the user Returns the third topology map to indicate the completed RAS configuration parameters.
  • the receiver 42 may further receive a RAS configuration cancel instruction input by the user before receiving the RAS configuration acquisition request sent by the BIOS; accordingly, the processor 41 is further configured to be used according to the receiver. 42
  • the received RAS configuration cancel command disconnects the RAS configuration interface connected to the BIOS, so that the BIOS sets the RAS configuration parameter according to the RAS configuration information saved by itself.
  • FIG. 16 is a schematic structural diagram of a terminal device according to Embodiment 12 of the present invention.
  • the terminal device provided in this embodiment specifically includes: a processor 51, a transmitter 52, and a receiver 53.
  • the processor 51 is configured to acquire RAS configuration information set by the user.
  • the transmitter 52 is configured to send a parameter setting request to the baseboard management controller BMC according to the RAS configuration information set by the user, so that the BMC replaces the currently saved RAS configuration information according to the RAS configuration information set by the user. And instruct the basic input and output system BIOS to pass The RAS configuration interface of the BMC connection acquires the replaced RAS configuration information in the BMC, and then sets the RAS configuration parameter according to the replaced RAS configuration information.
  • the receiver 53 is configured to receive a parameter setting response returned by the BMC, where the parameter setting response is used to indicate to the user that the BMC has replaced the currently saved RAS configuration information according to the RAS configuration information set by the user.
  • the terminal device provided by the embodiment of the present invention is configured to perform the setting method of the RAS configuration provided by the third embodiment of the present invention, and has a corresponding physical device, and the implementation principle and the technical effect thereof are similar, and details are not described herein again.
  • the processor 51 is further configured to: after acquiring the RAS configuration information set by the user, generate a first topology map according to the RAS configuration information set by the user; correspondingly, the transmitter 52 is specifically used. And sending a parameter setting request to the BMC according to the first topology, so that the BMC replaces the currently saved RAS configuration information according to the RAS configuration information indicated by the first topology map.
  • the receiver 53 is further configured to receive the user input before the processor 51 acquires the RAS configuration information set by the user.
  • the first view command; the processor 51 is further configured to acquire the current RAS configuration information saved in the upper management node according to the first information viewing instruction received by the receiver 53; then the processor 51 is configured to acquire user settings.
  • the RAS configuration information includes: obtaining RAS configuration information that is set by the user based on the current RAS configuration information; and correspondingly, in the device, the processor 51 is further configured to: after acquiring the RAS configuration information set by the user, according to The RAS configuration information set by the user updates the RAS configuration information saved in the upper management node.
  • the terminal device provided by the embodiment of the present invention is configured to perform the setting method of the RAS configuration provided by the fourth embodiment of the present invention, and has a corresponding physical device, and the implementation principle and the technical effect thereof are similar, and details are not described herein again.
  • the processor 51 is further configured to receive according to the receiver 53.
  • the first information viewing instruction acquires the current RAS configuration information saved in the upper management node
  • the second topology map is generated according to the current RAS configuration information;
  • the processor 51 is configured to obtain the RAS configuration information set by the user, specifically The method includes: obtaining RAS configuration information that is set by the user according to current RAS configuration information indicated by the second topology map.
  • the receiver 53 is further configured to acquire, by the processor 51, the RAS configuration set by the user.
  • the processor 51 is further configured to send a RAS configuration acquisition request to the BMC according to the second viewing instruction received by the receiver 53; and further, the receiver 53 further And receiving, by the BMC, a RAS configuration acquisition response that includes the current RAS configuration information saved in the BMC; similarly, the processor 51 is further configured to generate a third topology according to the current RAS configuration information returned by the BMC;
  • the processor 51 is configured to obtain the RAS configuration information set by the user, and specifically includes: acquiring RAS configuration information that is obtained by the user according to the current RAS configuration information indicated by the third topology map.
  • the processor 51 is configured to acquire RAS configuration information set by the user, including: receiving an acknowledgment instruction returned by the user based on the current RAS configuration information; and configured to use the acknowledgment command received by the receiving unit to The current RAS configuration information is used as the RAS configuration information set by the user.
  • the receiver 53 is further configured to: after receiving the parameter setting response returned by the BMC, receive a setting success message sent by the BMC after the BIOS sets the RAS configuration parameter; A display may be included for prompting the user that the setting of the RAS configuration parameter has been completed; typically, the setup success message may carry the set RAS configuration parameter; accordingly, the processor 51 is further configured to After the user prompts that the setting of the RAS configuration parameter has been completed, generating a fourth topology map for the set RAS configuration parameter; then the display is further configured to return the fourth topology map to the user to indicate the completed setup RAS Configuration parameters.
  • the receiver 53 may receive the RAS configuration cancellation command input by the user before the transmitter 52 sends a parameter setting request to the BMC according to the RAS configuration information set by the user acquired by the processor 51.
  • the transmitter 52 is further configured to send the RAS configuration cancel instruction to the BMC, so that the BMC disconnects the RAS configuration interface connected to the BIOS according to the RAS configuration cancel command, so that the BIOS is configured according to the RAS saved by itself.
  • Information sets the RAS configuration parameters.
  • FIG. 17 is a schematic structural diagram of a terminal device according to Embodiment 13 of the present invention.
  • the terminal device provided in this embodiment specifically includes: a transmitter 61, a receiver 62, and a processor 63.
  • the transmitter 61 is configured to send a RAS configuration acquisition request to the BMC, where the BIOS is connected to the BMC through a RAS configuration interface.
  • the receiver 62 is configured to receive a RAS configuration acquisition response returned by the BMC, where the RAS configuration acquisition response includes current RAS configuration information saved in the BMC.
  • the processor 63 is configured to set the RAS configuration parameter according to the current RAS configuration information received by the receiver 62.
  • the terminal device provided by the embodiment of the present invention is configured to perform the setting method of the RAS configuration provided by the fifth embodiment of the present invention, and has a corresponding physical device, and the implementation principle and the technical effect thereof are similar, and details are not described herein again.
  • the transmitter 61 is further configured to: at the processor 63, set the RAS configuration according to the current RAS configuration information received by the receiver 62. After the parameter, sending a setup success message to the BMC, so that the BMC prompts the user to complete the setting of the RAS configuration parameter; if the RAS configuration information is set by the user in the upper management node, the transmitter 61, And after the processor 63 sets the RAS configuration parameter according to the current RAS configuration information received by the receiver 62, sending a setup success message to the BMC, so that the BMC forwards the setup success information to the upper layer node node, so that The upper The layer management node prompts the user to complete the setting of the RAS configuration parameters.
  • the transmitter 61 is further configured to: before sending the RAS configuration acquisition request to the BMC, send an information reporting request to the BMC, where the information reporting request includes RAS configuration information in the BIOS;
  • the receiver 62 is further configured to receive an information report response returned by the BMC through the RAS configuration interface, where the information report response is used to indicate to the BIOS that the BMC has saved the RAS configuration information in the BIOS.
  • the BRAS when the BMC can receive the RAS configuration cancellation command input by the user, the BRAS disconnects the RAS configuration interface connected to the BIOS according to the RAS configuration cancellation command, so that the BIOS saves the RAS according to the RAS.
  • the configuration information sets the RAS configuration parameters.
  • the aforementioned program can be stored in a computer readable storage medium.
  • the program when executed, performs the steps including the foregoing method embodiments; and the foregoing storage medium includes various media that can store program codes, such as a ROM, a RAM, a magnetic disk, or an optical disk.

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Abstract

一种RAS配置的设置方法及装置。RAS配置的设置方法,包括:获取用户设置的可靠性、可用性、可服务性RAS配置信息,并存储在基板管理控制器BMC中;接收基本输入输出系统BIOS发送的RAS配置获取请求,所述BMC与所述BIOS通过RAS配置接口连接;向所述BIOS返回包含所述RAS配置信息的RAS配置获取响应,以使所述BIOS根据所述RAS配置信息设置RAS配置参数。解决了现有技术中无法随时对终端设备的操作系统中RAS配置参数进行设置,使得设置RAS配置参数的方法限制性较大的问题,提高了RAS配置的安全性。

Description

RAS配置的设置方法及装置
本申请要求于2013年11月29日提交中国专利局、申请号201310633339.0、发明名称为“RAS配置的设置方法及装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及通信技术,尤其涉及一种RAS配置的设置方法及装置。
背景技术
随着终端设备操作系统的高速发展,对操作系统性能的优化配置,已经得到更多用户的关注。
在对终端设备的操作系统性能进行优化配置时,通常地,通过对终端设备的操作系统中可靠性、可用性、可服务性(Reliability,Availability and Serviceability,简称为:RAS)配置参数的设置进行优化配置。目前,在设置终端设备的操作系统中RAS配置参数时,通常需要在开机或重启时通过基本输入输出系统(Basic Input Output System,简称:BIOS)程序进入RAS配置的设置界面,进而完成对RAS配置参数的设置。
现有技术中的终端设备,无法随时对终端设备的操作系统中RAS配置参数进行设置,使得设置RAS配置参数的方法限制性较大,降低了RAS配置的安全性。
发明内容
本发明实施例提供一种RAS配置的设置方法及装置,以解决现有技术中无法随时对终端设备的操作系统中RAS配置参数进行设置,使得设置RAS配置参数的方法限制性较大的问题。
第一方面,本发明实施例提供一种可靠性、可用性、可服务性配置的设置方法,包括:
获取用户设置的可靠性、可用性、可服务性RAS配置信息,并存储在基板管理控制器BMC中;
接收基本输入输出系统BIOS发送的RAS配置获取请求,所述BMC与所述BIOS通过RAS配置接口连接;
向所述BIOS返回包含所述RAS配置信息的RAS配置获取响应,以使所述BIOS根据所述RAS配置信息设置RAS配置参数。
在第一方面的第一种可能实现方式中,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,包括:
获取用户通过上层管理节点Node设置的RAS配置信息。
根据第一方面或第一方面的第一种可能的实现方式,在第二种可能的实现方式中,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之后,还包括:
根据所述用户设置的RAS配置信息生成第一拓扑图;
所述向所述BIOS返回包含所述RAS配置信息的RAS配置获取响应,包括:
向所述BIOS返回包含所述第一拓扑图的RAS配置获取响应,以使所述BIOS根据所述第一拓扑图所指示的RAS配置信息设置RAS配置参数。
根据第一方面、第一方面的第一种和第二种可能的实现方式的任意一种,在第三种可能的实现方式中,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之前,还包括:
接收所述用户输入的信息查看指令;
根据所述信息查看指令获取所述BMC中保存的当前RAS配置信息;
所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,包括:
获取所述用户基于所述当前RAS配置信息进行设置得到的RAS配置信息;
所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之后,还包括:
根据所述用户设置的RAS配置信息更新所述BMC中保存的RAS配置信息。
根据第一方面的第三种可能的实现方式,在第四种可能的实现方式中,所述接收所述用户输入的信息查看指令之前,还包括:
接收所述BIOS发送的信息上报请求,所述信息上报请求包括所述BIOS中的RAS配置信息;
保存所述信息上报请求中的所述RAS配置信息;
向所述BIOS返回信息上报响应,所述信息上报响应用于向所述BIOS指示所述BMC已保存所述BIOS上报的RAS配置信息。
根据第一方面的第三种或第四种可能的实现方式,在第五种可能的实现方式中,所述根据所述信息查看指令获取所述BMC中保存的当前RAS配置信息之后,还包括:
根据所述当前RAS配置信息生成第二拓扑图;
所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,具体包括:
获取所述用户基于所述第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
根据第一方面的第三种到第五种可能的实现方式的任意一种,在第六种可能的实现方式中,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,包括:
接收所述用户基于所述当前RAS配置信息返回的确认指令;
根据所述确认指令,将所述当前RAS配置信息作为所述用户设置的RAS配置信息。
根据第一方面、第一方面的第一种到第六种可能的实现方式的任意一种,在第七种可能的实现方式中,所述向所述BIOS返回包含所述RAS配置信息的RAS配置获取响应,以使所述BIOS根据所述RAS配置信息设置RAS配置参数之后,还包括:
接收所述BIOS发送的设置成功消息;
向所述用户提示已完成所述RAS配置参数的设置。
根据第一方面的第七种可能的实现方式,在第八种可能的实现方式中,所述设置成功消息携带已设置的RAS配置参数;所述向所述用户提示已完成所述RAS配置参数的设置之后,还包括:
生成针对所述已设置的RAS配置参数的第三拓扑图;
向所述用户返回所述第三拓扑图以指示的已完成设置的RAS配置参数。
根据第一方面、第一方面的第一种到第八种可能的实现方式的任意一种,在第九种可能的实现方式中,所述接收基本输入输出系统BIOS发送的RAS配置获取请求之前,还包括:
接收用户输入的RAS配置取消指令;
根据所述RAS配置取消指令断开与所述BIOS连接的RAS配置接口,以使所述BIOS根据自身保存的RAS配置信息设置所述RAS配置参数。
第二方面,本发明实施例提供一种可靠性、可用性、可服务性配置的设置方法,包括:
获取用户设置的可靠性、可用性、可服务性RAS配置信息;
根据所述用户设置的RAS配置信息向基板管理控制器BMC发送参数设置请求,以使所述BMC根据所述用户设置的RAS配置信息替换当前保存的RAS配置信息,并指示基本输入输出系统BIOS通过与所述BMC连接的RAS配置接口获取所述BMC中已替换的RAS配置信息,进而根据所述已替换的RAS配置信息设置RAS配置参数;
接收所述BMC返回的参数设置响应,所述参数设置响应用于向所述用户指示所述BMC已根据所述用户设置的RAS配置信息替换当前保存的RAS配置信息。
在第二方面的第一种可能实现方式中,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之后,还包括:
根据所述用户设置的RAS配置信息生成第一拓扑图;
所述根据所述用户设置的RAS配置信息向基板管理控制器BMC发送参数设置请求,包括:
根据所述第一拓扑图向所述BMC发送参数设置请求,以使所述BMC根据所述第一拓扑图所指示的RAS配置信息替换当前保存的RAS配置信息。
根据第二方面或第二方面的第一种可能的实现方式,在第二种可能的实现方式中,若上层管理节点Node中具有已保存的RAS配置信息;则所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之前,还包括:
接收所述用户输入的第一查看指令;
根据所述第一信息查看指令获取所述上层管理Node中保存的当前RAS配置信息;
所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,包括:
获取所述用户基于所述当前RAS配置信息进行设置得到的RAS配置信息;
所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之后,还包括:
根据所述用户设置的RAS配置信息更新所述上层管理Node中保存的RAS配置信息。
根据第二方面的第二种可能的实现方式,在第三种可能的实现方式中,所述根据所述第一信息查看指令获取所述上层管理Node中保存的当前RAS配置信息之后,还包括:
根据所述当前RAS配置信息生成第二拓扑图;
所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,具体包括:
获取所述用户基于所述第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
根据第二方面或第二方面的第一种可能的实现方式,在第四种可能的实现方式中,所述RAS配置信息包括从所述BMC中获取的RAS配置信息;则所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之前,包括:
接收所述用户输入的第二查看指令;
根据所述第二查看指令向所述BMC发送RAS配置获取请求;
接收所述BMC返回的包括所述BMC中保存的当前RAS配置信息的RAS配置获取响应;
根据所述BMC返回的当前RAS配置信息生成第三拓扑图;
所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,具体包括:
获取所述用户基于所述第三拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
根据第二方面的第二种到第四种可能的实现方式的任意一种,在第五种可能的实现方式中,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,包括:
接收所述用户基于所述当前RAS配置信息返回的确认指令;
根据所述确认指令,将所述当前RAS配置信息作为所述用户设置的RAS配置信息。
根据第二方面、第二方面的第一种到第五种可能的实现方式的任意一种,在第六种可能的实现方式中,所述接收所述BMC返回的参数设置响应之后,还包括:
接收所述BMC在所述BIOS设置RAS配置参数之后发送的设置成功消息;
向所述用户提示已完成所述RAS配置参数的设置。
根据第二方面的第六种可能的实现方式,在第七种可能的实现方式中,所述设置成功消息携带已设置的RAS配置参数;所述向所述用户提示已完成所述RAS配置参数的设置之后,还包括:
生成针对所述已设置的RAS配置参数的第四拓扑图;
向所述用户返回所述第四拓扑图以指示的已完成设置的RAS配置参数。
根据第二方面、第二方面的第一种到第七种可能的实现方式的任意一种,在第八种可能的实现方式中,所述根据所述用户设置的RAS配置信息向基板管理控制器BMC发送参数设置请求之前,还包括:
接收用户输入的RAS配置取消指令;
向所述BMC发送所述RAS配置取消指令,以使所述BMC根据所述RAS配置取消指令断开与所述BIOS连接的RAS配置接口,使得所述BIOS根据自身保存的RAS配置信息设置RAS配置参数。
第三方面,本发明实施例提供一种可靠性、可用性、可服务性配置的设置 方法,包括:
向基板管理控制器BMC发送RAS配置获取请求,基本输入输出系统BIOS通过RAS配置接口与所述BMC连接;
接收所述BMC返回的RAS配置获取响应,所述RAS配置获取响应中包含所述BMC中保存的当前RAS配置信息;
根据所述当前RAS配置信息设置RAS配置参数。
在第三方面的第一种可能实现方式中,所述根据所述当前RAS配置信息设置RAS配置参数之后,还包括:
向所述BMC发送设置成功消息,以使所述BMC向所述用户提示已完成所述RAS配置参数的设置。
在第三方面的第二种可能实现方式中,所述根据所述当前RAS配置信息设置RAS配置参数之后,还包括:
向所述BMC发送设置成功消息,以使所述BMC向管上层理节点Node转发所述设置成功信息,使得所述上层管理Node向所述用户提示已完成所述RAS配置参数的设置。
根据第三方面、第三方面的第一种和第二种可能的实现方式的任意一种,在第三种可能的实现方式中,所述向基板管理控制器BMC发送RAS配置获取请求之前,还包括:
向所述BMC发送信息上报请求,所述信息上报请求包括所述BIOS中的RAS配置信息;
接收所述BMC通过所述RAS配置接口返回的信息上报响应,所述信息上报响应用于向所述BIOS指示所述BMC已保存所述BIOS中的RAS配置信息。
第四方面,本发明实施例提供一种可靠性、可用性、可服务性配置的设置装置,设置在基板管理控制器BMC中,包括:
获取模块,用于获取用户设置的可靠性、可用性、可服务性RAS配置信息,并存储在所述BMC中;
接收模块,用于接收基本输入输出系统BIOS发送的RAS配置获取请求,所述BMC与所述BIOS通过RAS配置接口连接;
发送模块,用于向所述BIOS返回包含所述获取模块获取的RAS配置信息的RAS配置获取响应,以使所述BIOS根据所述RAS配置信息设置RAS配置参数。
在第四方面的第一种可能实现方式中,所述获取模块,还用于获取用户通过上层管理节点Node设置的RAS配置信息。
根据第四方面或第四方面的第一种可能的实现方式,在第二种可能的实现方式中,所述装置还包括:图像生成模块,用于在所述获取模块获取用户设置的RAS配置信息之后,根据所述用户设置的RAS配置信息生成第一拓扑图;
所述发送模块,具体用于向所述BIOS返回包含所述第一拓扑图的RAS配置获取响应,以使所述BIOS根据所述第一拓扑图所指示的RAS配置信息设置RAS配置参数。
根据第四方面、第四方面的第一种和第二种可能的实现方式的任意一种,在第三种可能的实现方式中,所述接收模块,还用于在所述获取模块获取用户设置的RAS配置信息之前,接收所述用户输入的信息查看指令;
所述获取模块,还用于根据所述接收模块接收的信息查看指令获取所述BMC中保存的当前RAS配置信息;
所述获取模块用于获取用户设置的RAS配置信息,具体包括:获取所述用户基于所述当前RAS配置信息进行设置得到的RAS配置信息;
则所述装置还包括:更新模块,用于在所述获取模块获取用户设置的RAS配置信息之后,根据所述用户设置的RAS配置信息更新所述BMC中保存的 RAS配置信息。
根据第四方面的第三种可能的实现方式,在第四种可能的实现方式中,所述接收模块,还用于在接收所述用户输入的信息查看指令之前,接收所述BIOS发送的信息上报请求,所述信息上报请求包括所述BIOS中的RAS配置信息;
则所述装置还包括:存储模块,用于保存所述接收模块接收的信息上报请求中的所述RAS配置信息;
所述发送模块,还用于向所述BIOS返回信息上报响应,所述信息上报响应用于向所述BIOS指示所述BMC已保存所述BIOS上报的RAS配置信息。
根据第四方面的第三种或第四种可能的实现方式,在第五种可能的实现方式中,所述图像生成模块,还用于在所述获取模块根据所述接收模块接收的信息查看指令获取所述BMC中保存的当前RAS配置信息之后,根据所述当前RAS配置信息生成第二拓扑图;
所述获取模块用于获取用户设置的RAS配置信息,具体包括:获取所述用户基于所述第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
根据第四方面的第三种到第五种可能的实现方式的任意一种,在第六种可能的实现方式中,所述获取模块用于获取用户设置的RAS配置信息,包括:用于接收所述用户基于所述当前RAS配置信息返回的确认指令;并根据所述确认指令,将所述当前RAS配置信息作为所述用户设置的RAS配置信息。
根据第四方面、第四方面的第一种到第六种可能的实现方式的任意一种,在第七种可能的实现方式中,所述接收模块,还用于在向所述BIOS返回包含所述RAS配置信息的RAS配置获取响应,以使所述BIOS根据所述RAS配置信息设置RAS配置参数之后,接收所述BIOS发送的设置成功消息;
则所述装置还包括:提示模块,用于向所述用户提示已完成所述RAS配 置参数的设置。
根据第四方面的第七种可能的实现方式,在第八种可能的实现方式中,所述设置成功消息携带已设置的RAS配置参数;所述图像生成模块,还用于在所述提示模块向所述用户提示已完成所述RAS配置参数的设置之后,生成针对所述已设置的RAS配置参数的第三拓扑图;
所述提示模块,还用于向所述用户返回所述第三拓扑图以指示的已完成设置的RAS配置参数。
根据第四方面、第四方面的第一种到第八种可能的实现方式的任意一种,在第九种可能的实现方式中,所述接收模块,还用于在接收所述BIOS发送的RAS配置获取请求之前,接收用户输入的RAS配置取消指令;
则所述装置还包括:取消模块,用于根据所述接收模块接收的RAS配置取消指令断开与所述BIOS连接的RAS配置接口,以使所述BIOS根据自身保存的RAS配置信息设置所述RAS配置参数。
第五方面,本发明实施例提供一种可靠性、可用性、可服务性配置的设置装置,设置在上层管理节点Node中,包括:
获取模块,用于获取用户设置的可靠性、可用性、可服务性RAS配置信息;
发送模块,用于根据所述获取模块获取的用户设置的RAS配置信息向基板管理控制器BMC发送参数设置请求,以使所述BMC根据所述用户设置的RAS配置信息替换当前保存的RAS配置信息,并指示基本输入输出系统BIOS通过与所述BMC连接的RAS配置接口获取所述BMC中已替换的RAS配置信息,进而根据所述已替换的RAS配置信息设置RAS配置参数;
接收模块,用于接收所述BMC返回的参数设置响应,所述参数设置响应用于向所述用户指示所述BMC已根据所述用户设置的RAS配置信息替换当前 保存的RAS配置信息。
在第五方面的第一种可能实现方式中,所述装置还包括:图像生成模块,用于在所述获取模块获取用户设置的RAS配置信息之后,根据所述用户设置的RAS配置信息生成第一拓扑图;
所述发送模块,具体用于根据所述第一拓扑图向所述BMC发送参数设置请求,以使所述BMC根据所述第一拓扑图所指示的RAS配置信息替换当前保存的RAS配置信息。
根据第五方面或第五方面的第一种可能的实现方式,在第二种可能的实现方式中,若所述上层管理Node中具有已保存的RAS配置信息;则所述接收模块,还用于在所述获取模块获取用户设置的RAS配置信息之前,接收所述用户输入的第一查看指令;
则所述获取模块,还用于根据所述接收模块接收的第一信息查看指令获取所述上层管理Node中保存的当前RAS配置信息;
所述获取模块用于获取用户设置的RAS配置信息,具体包括:获取所述用户基于所述当前RAS配置信息进行设置得到的RAS配置信息;
所述装置还包括:更新模块,用于在所述获取模块获取用户设置的RAS配置信息之后,根据所述用户设置的RAS配置信息更新所述上层管理Node中保存的RAS配置信息。
根据第五方面的第二种可能的实现方式,在第三种可能的实现方式中,所述图像生成模块,还用于在所述获取模块根据所述接收模块接收的第一信息查看指令获取所述上层管理Node中保存的当前RAS配置信息之后,根据所述当前RAS配置信息生成第二拓扑图;
所述获取模块用于获取用户设置的RAS配置信息,具体包括:获取所述用户基于所述第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配 置信息。
根据第五方面或第五方面的第一种可能的实现方式,在第四种可能的实现方式中,所述RAS配置信息包括从所述BMC中获取的RAS配置信息;则所述接收模块,还用于在所述获取模块获取用户设置的RAS配置信息之前,接收所述用户输入的第二查看指令;
所述获取模块,还用于根据所述接收模块接收的第二查看指令向所述BMC发送RAS配置获取请求;
所述接收模块,还用于接收所述BMC返回的包括所述BMC中保存的当前RAS配置信息的RAS配置获取响应;
所述图像生成模块,还用于根据所述BMC返回的当前RAS配置信息生成第三拓扑图;
则所述获取模块用于获取用户设置的RAS配置信息,具体包括:获取所述用户基于所述第三拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
根据第五方面的第二种到第四种可能的实现方式的任意一种,在第五种可能的实现方式中,所述获取模块用于获取用户设置的RAS配置信息,包括:用于接收所述用户基于所述当前RAS配置信息返回的确认指令;并根据所述确认指令,将所述当前RAS配置信息作为所述用户设置的RAS配置信息。
根据第五方面、第五方面的第一种到第五种可能的实现方式的任意一种,在第六种可能的实现方式中,所述接收模块,还用于在接收所述BMC返回的参数设置响应之后,接收所述BMC在所述BIOS设置RAS配置参数之后发送的设置成功消息;
所述装置还包括:提示模块,用于向所述用户提示已完成所述RAS配置参数的设置。
根据第五方面的第六种可能的实现方式,在第七种可能的实现方式中,所述设置成功消息携带已设置的RAS配置参数;所述图像生成模块,还用于在所述提示模块向所述用户提示已完成所述RAS配置参数的设置之后,生成针对所述已设置的RAS配置参数的第四拓扑图;
所述提示模块,还用于向所述用户返回所述第四拓扑图以指示的已完成设置的RAS配置参数。
根据第五方面、第五方面的第一种到第七种可能的实现方式的任意一种,在第八种可能的实现方式中,所述接收模块,还用于在所述发送模块根据所述获取模块获取的用户设置的RAS配置信息向基板管理控制器BMC发送参数设置请求之前,接收用户输入的RAS配置取消指令;
所述发送模块,还用于向所述BMC发送所述RAS配置取消指令,以使所述BMC根据所述RAS配置取消指令断开与所述BIOS连接的RAS配置接口,使得所述BIOS根据自身保存的RAS配置信息设置RAS配置参数。
第六方面,本发明实施例提供一种可靠性、可用性、可服务性配置的设置装置,设置在基本输入输出系统BIOS中,包括:
发送模块,用于向基板管理控制器BMC发送RAS配置获取请求,所述BIOS通过RAS配置接口与所述BMC连接;
接收模块,用于接收所述BMC返回的RAS配置获取响应,所述RAS配置获取响应中包含所述BMC中保存的当前RAS配置信息;
设置模块,用于根据所述接收模块接收的当前RAS配置信息设置RAS配置参数。
在第六方面的第一种可能实现方式中,所述发送模块,还用于在所述设置模块根据所述接收模块接收的当前RAS配置信息设置RAS配置参数之后,向所述BMC发送设置成功消息,以使所述BMC向所述用户提示已完成所述RAS 配置参数的设置。
在第六方面的第二种可能实现方式中,所述发送模块,还用于在所述设置模块根据所述接收模块接收的当前RAS配置信息设置RAS配置参数之后,向所述BMC发送设置成功消息,以使所述BMC向管上层理节点Node转发所述设置成功信息,使得所述上层管理Node向所述用户提示已完成所述RAS配置参数的设置。
根据第六方面、第六方面的第一种和第二种可能的实现方式的任意一种,在第三种可能的实现方式中,所述发送模块,还用于在向所述BMC发送RAS配置获取请求之前,向所述BMC发送信息上报请求,所述信息上报请求包括所述BIOS中的RAS配置信息;
所述接收模块,还用于接收所述BMC通过所述RAS配置接口返回的信息上报响应,所述信息上报响应用于向所述BIOS指示所述BMC已保存所述BIOS中的RAS配置信息。
本发明实施例所提供的RAS配置的设置方法及装置,通过BMC获取用户设置的RAS配置信息并存储在该BMC中,并且该BMC与BIOS之间通过RAS配置接口连接,使得BIOS从BMC中获取用户设置的RAS配置信息,实现了用户在终端设备正常运行的状态下对操作系统中RAS配置信息进行设置,解决了现有技术中无法随时对终端设备的操作系统中RAS配置参数进行设置,使得设置RAS配置参数的方法限制性较大的问题,提高了RAS配置的安全性。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作一简单地介绍,显而易见地,下面描述中的附图是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本发明实施例一所提供的一种RAS配置的设置方法的流程图;
图2为图1所示RAS配置的设置方法中一种操作系统的结构示意图;
图3为本发明实施例所提供的一种RAS配置的设置方法中第一拓扑图的示意图;
图4为本发明实施例二所提供的一种RAS配置的设置方法的流程图;
图5为本发明实施例三所提供的一种RAS配置的设置方法的流程图;
图6为本发明实施例四所提供的一种RAS配置的设置方法的流程图;
图7为本发明实施例五所提供的一种RAS配置的设置方法的流程图;
图8为本发明实施例六所提供的一种RAS配置的设置方法的信令流程图;
图9为本发明实施例七所提供的一种RAS配置的设置方法的信令流程图;
图10为本发明实施例八所提供的一种RAS配置的设置装置的结构示意图;
图11为本发明实施例所提供的另一种RAS配置的设置装置的结构示意图;
图12为本发明实施例九所提供的一种RAS配置的设置装置的结构示意图;
图13为本发明实施例所提供的又一种RAS配置的设置装置的结构示意图;
图14为本发明实施例十所提供的一种RAS配置的设置装置的结构示意图;
图15为本发明实施例十一所提供的一种终端设备的结构示意图;
图16为本发明实施例十二所提供的一种终端设备的结构示意图;
图17为本发明实施例十三所提供的一种终端设备的结构示意图。
具体实施方式
为使本发明实施例的目的、技术方案和优点更加清楚,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
实施例一
图1为本发明实施例一所提供的一种RAS配置的设置方法的流程图。本实施例的方法适用于对终端设备的操作系统中RAS配置参数进行设置的情况,该方法可以由基板管理控制器(Baseboard Management Controller,简称:BMC)或RAS配置的设置装置执行,该装置通常以硬件和/或软件的方法来实现,并集成在终端设备中。如图1所示,本实施例的方法可以包括:
S110,获取用户设置的RAS配置信息,并存储在BMC中。
目前,对终端设备的操作系统中RAS配置信息的设置,通常是在开机或重启时,即BIOS程序启动时,进入RAS配置的设置界面进行RAS配置参数的设置,并在设置后立即生效,该设置界面通常基于磁盘操作系统(Disk Operating System,简称:DOS),具体通过系统指令进行设置,其界面显示较为单一;与现有技术不同的是,本实施例中,用户可以在终端设备正常运行的状态下对RAS配置参数进行设置,具体可以通过终端设备操作系统的BMC进行RAS参数设置,在具体实现中,该终端设备的操作系统可以使用智能平台管理接口(Intelligent Platform Management Interface,简称:IPMI)协议进行管理,上层管理节点(Node)和各Node之间可以通过以太网或其它网络形式连接,并且可以通过IPMI原厂委托制造(Original Equipment Manufacturer,简称:OEM)命令实现上层管理Node对操作系统中各Node的管理,如图2所示,为图1所示RAS配置的设置方法中一种操作系统的结构示意图,该操作系统中的一个Node通常包括BIOS和BMC,并且BMC与BIOS之间通过IPMI系 统接口连接,该IPMI系统接口例如可以是硬件通道(Keyboard Controller Style,简称:KCS)或块传输(Block Transfer,简称:BT),该Node中的BMC具体和上层管理Node连接,接收该上层管理Node发送的IPMI OEM命令;本实施例提供的方法,BMC获取并存储用户设置的RAS配置信息,用户对RAS配置参数的设置可以是在操作系统的接口界面中实现的,该接口界面例如可以是内置于终端设备中的Web系统,用户可以通过页面浏览器访问该BMC,并将设置的RAS配置信息储存在BMC中。
S120,接收BIOS发送的RAS配置获取请求,该BMC与该BIOS通过RAS配置接口连接。
在本实施例中,在用户已完成对RAS配置信息的设置并存储在BMC中后,当系统开机或重启时BIOS向BMC发送RAS配置获取请求,通常地,系统每次开机或重启时,BIOS都会重新刷新RAS配置参数;在现有技术中,若用户没有主动进入BIOS程序设置RAS配置参数,系统则会以上次开机时的设置重新刷新一次;不同于现有技术的是,本实施例中,BMC与BIOS通过RAS配置接口连接,并且在系统中预置该RAS配置接口连接为BIOS获取RAS配置信息的优选方式,则系统开机或重启时BIOS会向BMC发送RAS配置获取请求。
S130,向该BIOS返回包含该RAS配置信息的RAS配置获取响应,以使该BIOS根据该RAS配置信息设置RAS配置参数。
在本实施例中,BMC接收到BIOS发送的RAS配置获取请求,会将用户已设置的RAS配置信息携带在RAS配置获取响应中返回给BIOS,BIOS则以BMC反馈的RAS配置信息进行参数的设置。
本实施例所提供的RAS配置的设置方法,通过BMC获取用户设置的RAS配置信息并存储在该BMC中,并且该BMC与BIOS之间通过RAS配置接口连接,使得BIOS从BMC中获取用户设置的RAS配置信息,实现了用户在终 端设备正常运行的状态下对操作系统中RAS配置信息进行设置,解决了现有技术中无法随时对终端设备的操作系统中RAS配置参数进行设置,使得设置RAS配置参数的方法限制性较大的问题,提高了RAS配置的安全性。
可选地,本实施例提供的RAS配置的设置方法,用户对RAS配置信息的设置还可以通过上层管理Node来实现,类似地,用户对RAS配置参数的设置也可以是在操作系统的接口界面中实现的,用户通过页面浏览器访问上层管理Node,实现通过上层管理Node设置RAS配置信息。
进一步地,本实施例中,在BMC获取到用户设置的RAS配置信息之后,还可以根据用户设置的RAS配置信息生成第一拓扑图;相应地,S130替换为:向该BIOS返回包含该第一拓扑图的RAS配置获取响应,以使该BIOS根据该第一拓扑图所指示的RAS配置信息设置RAS配置参数。
本实施例提供的RAS配置的设置方法,BMC将获取的RAS配置信息的数据形成转换为拓扑图的形式,以拓扑图表示的RAS配置信息更加直观,并且可以更好地体现RAS配置信息的内容和效果;举例来说,该第一拓扑图包含配置区和图形显示区;配置区包括RAS配置信息,如微通道体系结构(Micro Channel Architecture,简称:MCA),镜像(Mirror),阈值(Threshold)等,该图形显示区自动根据RAS配置信息,结合当前系统的拓扑方式,可视化呈现RAS配置效果,例如:配置区中第一对Mirror在CPU0和1之间,则拓扑中可用高亮同色的形式告知用户Mirror效果,如图3所示,为本发明实施例所提供的一种RAS配置的设置方法中第一拓扑图的示意图,图3中DIMM11~DIMM88是指对内存条的编号,本实施例中的内存条例如可以为双列直插式存储模块(Dual Inline Memory Modules,简称:DIMM)。
实施例二
图4为本发明实施例二所提供的一种RAS配置的设置方法的流程图。如图4所示,本实施例的方法可以包括:
S210,接收用户输入的信息查看指令。
S220,根据该信息查看指令获取BMC中保存的当前RAS配置信息。
在本实施例中,用户可以通过接口界面访问BMC,并输入信息查看指令,BMC根据用户输入的信息查看指令获取自身保存的当前RAS配置信息;具体地,BMC每次获取用户设置的RAS配置信息后都会将其保存在BMC中的存储模块中,因此,用户在通过接口界面在BMC中设置RAS配置信息时,可以先行获取该BMC中已存储的RAS配置信息。
需要说明的是,本实施例中,用户可以查看BMC中已保存的RAS配置信息,在用户未进行过RAS配置信息的设置前,BMC可以通过与BIOS连接的RAS配置接口获取到BIOS中的RAS配置信息;具体地,BMC接收BIOS发送的信息上报请求,该信息上报请求包括该BIOS中的RAS配置信息;并保存该信息上报请求中的该RAS配置信息;进而向该BIOS返回信息上报响应,该信息上报响应用于向该BIOS指示该BMC已保存该BIOS上报的RAS配置信息。
在本实施例中,终端设备的操作系统在开机时处于上电自检(Power On Self Test,简称:POST)阶段,此时,与BIOS通过RAS配置接口连接的BMC接收BIOS发送的信息上报请求,该信息上报请求包括BIOS中已存在的RAS配置信息,用于将其提供给BMC,该BMC接收到BIOS发送的信息上报请求后,保存该请求中包含的RAS配置信息;相应地,BMC在接收并保存由BIOS发送的RAS配置信息后,进而向该BIOS返回与信息上报请求对应的信息上报响应,用于向该BIOS通知该BMC已保存其上报的RAS配置信息。
举例来说,在POST阶段,BIOS可以通过IPMI OEM命令来发送信息上报请求,若该请求中包含的RAS配置信息为内存镜像信息,则该IPMI OEM命令的具体内容可以参考以下表1:
Figure PCTCN2014086134-appb-000001
Figure PCTCN2014086134-appb-000002
Figure PCTCN2014086134-appb-000003
表1
S230,获取该用户基于该当前RAS配置信息进行设置得到的RAS配置信息。
在本实施例中,BMC根据用户的信息查看指令获取到自身保存的当前RAS配置信息,并可以通过接口向该用户显示该当前RAS配置信息,因此,用户在进行RAS配置信息的设置时,可以基于该BMC提供的当前RAS配置信息进行设置,可以只对RAS相关配置的参数进行改变,简化了用户在进行RAS配置信息设置的内容。
在具体实现时,本实施例中S230可以包括:接收该用户基于该当前RAS配置信息返回的确认指令;并根据该确认指令,将该当前RAS配置信息作为该用户设置的RAS配置信息。
S240,根据该用户设置的RAS配置信息更新该BMC中保存的RAS配置信息。
在本实施例中,BMC获取到用户重新设置的RAS配置信息后,会以用户本次设置的RAS配置信息替换之前保存的RAS配置信息,即BMC中保存用户最后一次设置的RAS配置信息。
S250,接收BIOS发送的RAS配置获取请求,该BMC与该BIOS通过RAS配置接口连接。
S260,向该BIOS返回包含该RAS配置信息的RAS配置获取响应,以使该BIOS根据该RAS配置信息设置RAS配置参数。
具体地,S250~S260的具体实现参照实施例一中的S120~S130。
在本实施例中,BMC向BIOS返回包含RAS配置信息的响应,即BIOS读取BMC中获取的RAS配置信息,例如,BIOS通过IPMI OEM命令读取BMC发送的RAS配置信息中的内存镜像信息,则该IPMI OEM命令的具体内容可以参考以下表2:
Figure PCTCN2014086134-appb-000004
Figure PCTCN2014086134-appb-000005
表2
本实施例所提供的RAS配置的设置方法,通过BMC获取用户设置的RAS配置信息并存储在该BMC中,并且该BMC与BIOS之间通过RAS配置接口连接,使得BIOS从BMC中获取用户设置的RAS配置信息,实现了用户在终端设备正常运行的状态下对操作系统中RAS配置信息进行设置,解决了现有技术中无法随时对终端设备的操作系统中RAS配置参数进行设置,使得设置RAS配置参数的方法限制性较大的问题,提高了RAS配置的安全性。另外,用户在进行RAS配置信息的设置前,可以先由BMC向用户提供其自身保存的 RAS配置信息,简化了用户在进行RAS配置信息设置的内容。
可选地,本实施例提供的方法,在S220之后还包括:根据该当前RAS配置信息生成第二拓扑图;相应地,S230替换为:获取该用户基于该第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
在本实施例中,BMC根据用户输入的信息查看指令获取到其自身所保存的当前RAS配置信息之后,可以依照系统中预置的拓扑形式将该当前RAS配置信息转换为第二拓扑图,以该第二拓扑图的形式向用户显示BMC中的当前RAS配置信息,使得用户可以更直观的查看并基于该第二拓扑图的内容对RAS配置信息进行更改。
进一步地,本实施例提供的方法,在S260之后,BMC还可以接收BIOS发送的设置成功消息,并向用户提示已完成该RAS配置参数的设置;该设置成功消息中可以携带已设置的RAS配置参数,相应地,本实施例提供的方法还包括:生成针对该已设置的RAS配置参数的第三拓扑图;因此,向用户返回该第三拓扑图用以指示的已设置的RAS配置参数。
需要说明的是,在本实施例中,当BMC接收到用户输入的RAS配置取消指令时,根据该RAS配置取消指令断开该BMC与BIOS连接的RAS配置接口,使得该BIOS根据自身保存的RAS配置信息设置该RAS配置参数。
实施例三
图5为本发明实施例三所提供的一种RAS配置的设置方法的流程图。本实施例的方法适用于对终端设备的操作系统中RAS配置参数进行设置的情况,该方法可以由上层管理Node或RAS配置的设置装置执行,该装置通常以硬件和/或软件的方法来实现,并集成在终端设备中。如图5所示,本实施例的方法可以包括:
S310,获取用户设置的RAS配置信息。
与上述实施例类似地,用户可以在终端设备正常运行的状态下对RAS配置参数进行设置;不同的是,本实施例中,用户具体通过终端设备操作系统的上层管理Node进行RAS参数设置,同样以该终端设备的操作系统使用IPMI协议进行管理为例进行说明,上层管理Node和各Node之间通过以太网或其它网络形式连接,并且可以通过IPMI OEM命令实现上层管理Node对操作系统中各Node的管理,如图2所示,也可以为图5所示RAS配置的设置方法中提供的一种操作系统的结果示意图,该操作系统的一个Node通常包括BIOS和BMC,BMC与BIOS之间通过IPMI系统接口连接,该IPMI系统接口例如可以KCS或BT,与实施例一不同的是,该Node中的BMC和上层管理Node可以通过RAS配置接口连接,实现RAS配置信息的交互,并且接收该上层管理Node还可以通过发送的IPMI OEM命令的形式设置RAS配置信息;本实施例提供的方法,上层管理Node获取用户设置的RAS配置信息,用户对RAS配置参数的设置可以是在操作系统的接口界面中实现的,该接口界面例如可以是内置于终端设备中的Web系统,用户可以通过页面浏览器访问该上层管理Node进行RAS配置信息的设置。
S320,根据该用户设置的RAS配置信息向BMC发送参数设置请求,以使该BMC根据该用户设置的RAS配置信息替换当前保存的RAS配置信息,并指示BIOS通过与该BMC连接的RAS配置接口获取该BMC中已替换的RAS配置信息,进而根据该已替换的RAS配置信息设置RAS配置参数。
在本实施例中,上层管理Node不能直接向BIOS发送用户设置的RAS配置信息,可以通过其连接的BMC向BIOS发送设置的RAS配置信息,具体地,该BMC中有当前保存的RAS配置信息,在收到上层管理Node发送的参数设置请求时,以该请求中包含的用户设置的RAS配置信息替换当前保存的RAS配置信息,进而由BMC通过与BIOS连接的RAS配置接口向其发送已替换的RAS配置信息,从而使得BIOS根据接收的RAS配置信息进行参数设置。
S330,接收该BMC返回的参数设置响应,该参数设置响应用于向该用户指示该BMC已根据该用户设置的RAS配置信息替换当前保存的RAS配置信息。
在本实施例中,BMC在接收到上层管理Node发送的参数设置请求,并根据该请求中的RAS配置信息替换器当前保存的RAS配置信息时,还可以向上层管理Node发送参数设置响应,用于向该上层管理Node通知该BMC已保存接收到的RAS配置信息。
本实施例所提供的RAS配置的设置方法,通过上层管理Node获取用户设置的RAS配置信息并发送到BMC中,使得该BMC以用户设置的RAS配置信息替换当前保存的RAS配置信息,该BMC与BIOS之间通过RAS配置接口连接,可以使得BIOS从BMC中获取用户设置的RAS配置信息,实现了用户在终端设备正常运行的状态下对操作系统中RAS配置信息进行设置,解决了现有技术中无法随时对终端设备的操作系统中RAS配置参数进行设置,使得设置RAS配置参数的方法限制性较大的问题,提高了RAS配置的安全性。
进一步地,本实施例中,在上层管理Node获取到用户设置的RAS配置信息之后,还可以根据用户设置的RAS配置信息生成第一拓扑图;相应地,上层管理Node还可以根据该第一拓扑图向该BMC发送参数设置请求,以使该BMC具体根据该第一拓扑图所指示的RAS配置信息替换当前保存的RAS配置信息。
本实施例提供的RAS配置的设置方法,上层管理Node将获取的RAS配置信息的数据形成转换为拓扑图的形式,以拓扑图表示的RAS配置信息更加直观,并且可以更好地体现RAS配置信息的内容和效果。
实施例四
图6为本发明实施例四所提供的一种RAS配置的设置方法的流程图。如图6所示,本实施例的方法可以包括:
S410,接收该用户输入的第一查看指令。
S420,根据该第一信息查看指令获取该上层管理Node中保存的当前RAS配置信息。
在本实施例中,用户可以通过接口界面访问上层管理Node,并输入第一信息查看指令,上层管理Node根据用户输入的第一信息查看指令获取自身保存的当前RAS配置信息;具体地,上层管理Node每次获取用户设置的RAS配置信息后都会将其保存在上层管理Node中的存储模块中,因此,用户在通过接口界面在上层管理Node中设置RAS配置信息时,可以先行获取该上层管理Node中已存储的RAS配置信息。
S430,获取该用户基于该当前RAS配置信息进行设置得到的RAS配置信息。
在本实施例中,上层管理Node根据用户的第一信息查看指令获取到自身保存的当前RAS配置信息,并可以通过接口向该用户显示该当前RAS配置信息,因此,用户在进行RAS配置信息的设置时,可以基于该上层管理Node提供的当前RAS配置信息进行设置,可以只对RAS相关配置的参数进行改变,简化了用户在进行RAS配置信息设置的内容。
在具体实现时,本实施例中S430可以包括:接收该用户基于该当前RAS配置信息返回的确认指令;并根据该确认指令,将该当前RAS配置信息作为该用户设置的RAS配置信息。
S440,根据该用户设置的RAS配置信息更新该上层管理Node中保存的RAS配置信息。
在本实施例中,上层管理Node获取到用户重新设置的RAS配置信息后,会以用户本次设置的RAS配置信息替换之前保存的RAS配置信息,即上层管理Node中保存用户最后一次设置的RAS配置信息。
S450,根据该用户设置的RAS配置信息向BMC发送参数设置请求,以使该BMC根据该用户设置的RAS配置信息替换当前保存的RAS配置信息,并指示BIOS通过与该BMC连接的RAS配置接口获取该BMC中已替换的RAS配置信息,进而根据该已替换的RAS配置信息设置RAS配置参数。
S460,接收该BMC返回的参数设置响应,该参数设置响应用于向该用户指示该BMC已根据该用户设置的RAS配置信息替换当前保存的RAS配置信息。
在本实施例中,上层管理Node已将用户设置的RAS配置信息替换当前保存的RAS配置信息,因此,本实施例中所述的用户设置的RAS配置信息也可以理解为上层管理Node中已替换的RAS配置信息。具体地,S450~S460的具体实现参照实施例三中的S320~S330。
本实施例所提供的RAS配置的设置方法,通过上层管理Node获取用户设置的RAS配置信息并发送到BMC中,使得该BMC以用户设置的RAS配置信息替换当前保存的RAS配置信息,该BMC与BIOS之间通过RAS配置接口连接,可以使得BIOS从BMC中获取用户设置的RAS配置信息,实现了用户在终端设备正常运行的状态下对操作系统中RAS配置信息进行设置,解决了现有技术中无法随时对终端设备的操作系统中RAS配置参数进行设置,使得设置RAS配置参数的方法限制性较大的问题,提高了RAS配置的安全性。另外,用户在进行RAS配置信息的设置前,可以先由上层管理Node向用户提供其自身保存的RAS配置信息,简化了用户在进行RAS配置信息设置的内容。
进一步地,本实施例提供的方法,在S420之后还包括:根据该当前RAS配置信息生成第二拓扑图;相应地,S430替换为:获取该用户基于该第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
在本实施例中,上层管理Node根据用户输入的第一信息查看指令获取到其自身所保存的当前RAS配置信息之后,可以依照系统中预置的拓扑形式将 该当前RAS配置信息转换为第二拓扑图,以该第二拓扑图的形式向用户显示上层管理Node中的当前RAS配置信息,使得用户可以更直观的查看并基于该第二拓扑图的内容对RAS配置信息进行更改。
可选地,在本实施例的另一种实现方式中,若上层管理Node中没有存储用户设置的RAS配置信息,则上层管理Node接收用户输入的第二查看指令,并根据该第二查看指令向BMC发送RAS配置获取请求;进而接收该BMC返回的包括BMC中保存的当前RAS配置信息的RAS配置获取响应,使得用户可以基于该BMC中保存的当前RAS配置信息进行设置;类似地,本实施例中,上层管理Node还可以根据BMC返回的当前RAS配置信息生成第三拓扑图;相应地,用户可以基于该第三拓扑图所指示的当前RAS配置信息进行设置。
在具体实现时,BMC中保存的RAS配置信息,可以是通过与BIOS连接的RAS配置接口从该BIOS中获取的;具体地,BMC接收BIOS发送的信息上报请求,该信息上报请求包括该BIOS中的RAS配置信息;并保存该信息上报请求中的该RAS配置信息;进而向该BIOS返回信息上报响应,该信息上报响应用于向该BIOS指示该BMC已保存该BIOS上报的RAS配置信息。
更进一步地,本实施例提供的方法,在S460之后,上层管理Node还可以接收BMC在BIOS设置RAS配置参数之后发送的设置成功消息,该成功提示消息是BIOS设置RAS配置参数后发送给BMC的,由BMC转发给上层管理Node,具体用于向用户提示已完成该RAS配置参数的设置;在具体实现中,该设置成功消息中可以携带已设置的RAS配置参数,相应地,本实施例提供的方法还包括:生成针对该已设置的RAS配置参数的第四拓扑图;因此,向用户返回该第四拓扑图用以指示已设置的RAS配置参数。
需要说明的是,在本实施例中,当上层管理Node接收到用户输入的RAS配置取消指令时,向BMC发送该RAS配置取消指令,以使该BMC根据该RAS配置取消指令断开与BIOS连接的RAS配置接口,使得该BIOS根据自身保存 的RAS配置信息设置该RAS配置参数。
实施例五
图7为本发明实施例五所提供的一种RAS配置的设置方法的流程图。本实施例的方法适用于对终端设备的操作系统中RAS配置参数进行设置的情况,该方法可以由BIOS或RAS配置的设置装置执行,该装置通常以硬件和/或软件的方法来实现,并集成在终端设备中。如图7所示,本实施例的方法可以包括:
S510,向BMC发送RAS配置获取请求,BIOS通过RAS配置接口与该BMC连接。
通常地,在终端设备开机或重启时,即POST阶段,通过BIOS进入到RAS配置的设置界面进行RAS配置信息的设置;在本实施例中,该BIOS与BMC之间具有RAS配置接口,因此,在POST阶段BIOS可以通过该RAS配置接口向BMC发送RAS配置获取请求以获取该BMC中的RAS配置信息;需要说明的是,BMC中的RAS配置信息可以是用户在终端设备的正常运行的状态下设置的,具体地,该RAS配置信息可以是用户通过接口界面访问到BMC,直接在该BMC中进行设置并保存,该RAS配置信息也可以是用户通过接口界面访问到上层管理Node,在该上层管理Node中设置后发送给BMC,并存储在BMC中。
S520,接收该BMC返回的RAS配置获取响应,该RAS配置获取响应中包含该BMC中保存的当前RAS配置信息。
在本实施中,于BIOS直接相连的为BMC,无论用户在BMC中,还是在上层管理Node中对RAS配置信息进行设置,该用户设置的RAS配置信息都保存在BMC中,并由该BMC与BIOS完成RAS配置信息的交互,因此,BIOS接收由BMC返回的包含已保存的RAS配置信息的RAS配置获取响应,实现了BIOS获取到用户在终端设备在正常状态下设置的RAS配置信息。
S530,根据该当前RAS配置信息设置RAS配置参数。
在本实施中,BIOS在POST阶段获取到BMC中保存的当前RAS配置信息后,可以根据该当前RAS配置信息设置RAS配置参数,实现系统开机或重启时RAS配置信息的刷新。
本实施例所提供的RAS配置的设置方法,通过BMC与BIOS连接的RAS配置接口,在系统开机或重启时BIOS可以向BMC发送RAS配置获取请求,获取BMC中保存的当前RAS配置信息,实现了BIOS从BMC中获取用户在终端设备正常运行的状态下设置的RAS配置信息,解决了现有技术中无法随时对终端设备的操作系统中RAS配置参数进行设置,使得设置RAS配置参数的方法限制性较大的问题,提高了RAS配置的安全性。
可选地,本实施例提供的RAS配置的设置方法中,若该RAS配置信息是用户通过接口界面访问到BMC,在BMC中进行设置的,则S530后,BIOS还向该BMC发送设置成功消息,以使该BMC向该用户提示已完成该RAS配置参数的设置;若该RAS配置信息是用户通过接口界面访问到上层管理Node,在该上层管理Node进行设置的,在S530后,BIOS向该BMC发送设置成功消息,则用于使得该BMC向上层管理节点Node转发该设置成功信息,以使该上层管理Node向该用户提示已完成该RAS配置参数的设置。
进一步地,本实施例中,在用户未进行过RAS配置信息的设置前,BIOS可以通过与BMC连接的RAS配置接口向BMC上报RAS配置信息;具体地,BIOS向该BMC发送信息上报请求,该信息上报请求包括该BIOS中的RAS配置信息;进而接收该BMC通过RAS配置接口返回的信息上报响应,该信息上报响应用于向该BIOS指示该BMC已保存该BIOS中的RAS配置信息。
实施例六
图8为本发明实施例六所提供的一种RAS配置的设置方法的信令流程图。如图8所示,本实施例的方法可以包括:
S601,BMC接收用户输入的信息查看指令;
S602,BMC根据该信息查看指令获取BMC中保存的当前RAS配置信息;
S603,获取该用户基于该当前RAS配置信息进行设置得到的RAS配置信息;
S604,BMC根据该用户设置的RAS配置信息更新该BMC中保存的RAS配置信息;
S605,BIOS向BMC发送RAS配置获取请求,BIOS通过RAS配置接口与该BMC连接;
在本实施例中,终端设备重启或重新开机时,BIOS向BMC发送RAS配置获取请求,以获取BMC中最后保存的RAS配置信息。
S606,BMC向该BIOS返回包含该RAS配置信息的RAS配置获取响应;S607,BIOS根据该RAS配置信息设置RAS配置参数。
本实施例所提供的RAS配置的设置方法,通过BMC获取用户设置的RAS配置信息并存储在该BMC中,并且该BMC与BIOS之间通过RAS配置接口连接,可以使得BIOS从BMC中获取用户设置的RAS配置信息,实现了用户在终端设备正常运行的状态下对操作系统中RAS配置信息进行设置,解决了现有技术中无法随时对终端设备的操作系统中RAS配置参数进行设置,使得设置RAS配置参数的方法限制性较大的问题,提高了RAS配置的安全性。另外,用户在进行RAS配置信息的设置前,可以先由BMC向用户提供其自身保存的RAS配置信息,简化了用户在进行RAS配置信息设置的内容。
在具体实现时,本实施例所提供的方法,在BMC获取到用户设置的RAS配置信息之后,还可以根据用户设置的RAS配置信息生成第一拓扑图;相应地,S606替换为:向该BIOS返回包含该第一拓扑图的RAS配置获取响应,以使该BIOS根据该第一拓扑图所指示的RAS配置信息设置RAS配置参数; 类似地,在BMC获取到当前RAS配置信息后,还可以根据该当前RAS配置信息生成第二拓扑图;相应地,S603具体为:BMC获取该用户基于该第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
进一步地,本实施例所提供的方法,在S607之后还包括:S608,BIOS向该BMC发送设置成功消息;
S609,BMC向用户提示已完成该RAS配置参数的设置。
本实施例在具体实现中,BIOS发送的设置成功消息中携带已设置的RAS配置参数,则S609之前还包括:生成针对该已设置的RAS配置参数的第三拓扑图;相应地,S609具体包括:向用户返回该第三拓扑图用以指示的已设置的RAS配置参数。
本实施例提供的RAS配置的设置方法,将BMC获取的RAS配置信息,BMC中保存的当前RAS配置信息和已设置的RAS配置参数的数据形成转换为拓扑图的形式,以拓扑图表示的RAS配置信息更加直观,并且可以更好地体现RAS配置信息的内容和效果。
更进一步地,本实施例提供的方法,在S601之前,终端设备处于POST阶段时,还包括:S610,BIOS向BMC发送信息上报请求,该信息上报请求包括BIOS中已存在的RAS配置信息;
S611,BMC保存该信息上报请求中包含的RAS配置信息;
S612,BMC向该BIOS返回信息上报响应,用于向该BIOS通知该BMC已保存其上报的RAS配置信息。
需要说明的是,在本实施例中,BMC还可以接收用户输入的RAS配置取消指令时,根据该RAS配置取消指令断开该BMC与BIOS连接的RAS配置接口,使得该BIOS根据自身保存的RAS配置信息设置该RAS配置参数。
实施例七
图9为本发明实施例七所提供的一种RAS配置的设置方法的信令流程图。如图9所示,本实施例的方法可以包括:
S701,上层管理Node接收该用户输入的第一查看指令;
S702,上层管理Node根据该第一信息查看指令获取该上层管理Node中保存的当前RAS配置信息;
S703,上层管理Node获取该用户基于该当前RAS配置信息进行设置得到的RAS配置信息;
S704,上层管理Node根据该用户设置的RAS配置信息更新该上层管理Node中保存的RAS配置信息;
S705,上层管理Node向BMC发送参数设置请求,该参数设置请求中包含用户设置的RAS配置信息;
S706,BMC根据该用户设置的RAS配置信息替换当前保存的RAS配置信息;
S707,BMC向上层管理Node返回该参数设置响应;
S708,上层管理Node向用户指示该BMC已根据该用户设置的RAS配置信息替换当前保存的RAS配置信息;
S709,BIOS向BMC发送RAS配置获取请求,BIOS通过RAS配置接口与该BMC连接;
在本实施例中,终端设备重启或重新开机时,BIOS向BMC发送RAS配置获取请求,以获取BMC中最后保存的RAS配置信息。
S710,BMC向该BIOS返回包含该RAS配置信息的RAS配置获取响应,向BIOS返回该BMC中已替换的RAS配置信息;
S711,BIOS根据该已替换的RAS配置信息设置RAS配置参数。
本实施例所提供的RAS配置的设置方法,通过上层管理Node获取用户设置的RAS配置信息并发送到BMC中,使得该BMC以用户设置的RAS配置信息替换当前保存的RAS配置信息,该BMC与BIOS之间通过RAS配置接口连接,使得BIOS可以从BMC中获取用户设置的RAS配置信息,实现了用户在终端设备正常运行的状态下对操作系统中RAS配置信息进行设置,解决了现有技术中无法随时对终端设备的操作系统中RAS配置参数进行设置,使得设置RAS配置参数的方法限制性较大的问题,提高了RAS配置的安全性。另外,用户在进行RAS配置信息的设置前,可以先由上层管理Node向用户提供其自身保存的RAS配置信息,简化了用户在进行RAS配置信息设置的内容。
在具体实现时,本实施例所提供的方法,在上层管理Node获取到用户设置的RAS配置信息之后,还可以根据用户设置的RAS配置信息生成第一拓扑图;相应地,S705替换为:上层管理Node根据该第一拓扑图向该BMC发送参数设置请求;S706替换为:BMC根据该第一拓扑图所指示的RAS配置信息替换当前保存的RAS配置信息;类似地,在上层管理Node获取到当前RAS配置信息后,还可以根据该当前RAS配置信息生成第二拓扑图;相应地,S703具体为:上层管理Node获取该用户基于该第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
可选地,本实施例提供的方法,若上层管理Node中没有存储用户设置的RAS配置信息,则S701~S704替换为:
S712,上层管理Node接收该用户输入的第二查看指令;
S713,上层管理Node根据该第二查看指令向BMC发送RAS配置获取请求;
S714,BMC向上层管理Node返回RAS配置获取响应,该响应中包含BMC 中保存的当前RAS配置信息;
S715,上层管理Node指示用户基于该BMC中保存的当前RAS配置信息对RAS配置信息进行设置。
类似地,本实施例中,在S714之后,上层管理Node还可以根据BMC返回的当前RAS配置信息生成第三拓扑图;相应地,S715具体包括:用户基于该第三拓扑图所指示的当前RAS配置信息进行设置。
进一步地,本实施例所提供的方法,在S711之后还包括:
S716,BIOS向该BMC发送设置成功消息;
S717,BMC向上层管理Node发送设置成功消息;
S718,上层管理Node向用户提示已完成该RAS配置参数的设置。
本实施例在具体实现中,BIOS发送的设置成功消息中携带已设置的RAS配置参数,则S718之前还包括:生成针对该已设置的RAS配置参数的第四拓扑图;相应地,S718具体包括:向用户返回该第四拓扑图用以指示已设置的RAS配置参数。
本实施例提供的RAS配置的设置方法,将上层管理Node获取的用户设置的RAS配置信息,上层管理Node中保存的当前RAS配置信息,BMC向上层管理Node返回RAS配置信息和已设置的RAS配置参数的数据形成转换为拓扑图的形式,以拓扑图表示的RAS配置信息更加直观,并且可以更好地体现RAS配置信息的内容和效果。
更进一步地,本实施例提供的方法,在S701或S712之前,终端设备处于POST阶段时,还包括:S719,BIOS向BMC发送信息上报请求,该信息上报请求包括BIOS中已存在的RAS配置信息;
S720,BMC保存该信息上报请求中包含的RAS配置信息;
S721,BMC向该BIOS返回信息上报响应,用于向该BIOS通知该BMC 已保存其上报的RAS配置信息。
实施例八
图10为本发明实施例八所提供的一种RAS配置的设置装置的结构示意图。如图10所示,本实施例提供的RAS配置的设置装置,设置在基板管理控制器BMC中,具体包括:获取模块11、接收模块12和发送模块13。
其中,获取模块11,用于获取用户设置的RAS配置信息,并存储在该BMC中。
接收模块12,用于接收BIOS发送的RAS配置获取请求,该BMC与该BIOS通过RAS配置接口连接。
发送模块13,用于向该BIOS返回包含该获取模块11获取的RAS配置信息的RAS配置获取响应,以使该BIOS根据该RAS配置信息设置RAS配置参数。
本发明实施例提供的RAS配置的设置装置用于执行本发明实施例一提供的RAS配置的设置方法,具备相应的功能模块,其实现原理和技术效果类似,此处不再赘述。
可选地,本实施例提供的RAS配置的设置装置,用户对RAS配置信息的设置还可以通过上层管理Node来实现,相应地,所述获取模块11,还用于获取用户通过上层管理节点Node设置的RAS配置信息。
图11为本发明实施例所提供的另一种RAS配置的设置装置的结构示意图。在上述图10的基础上,本实施例提供的RAS配置的设置装置还包括:图像生成模块14,用于在获取模块11获取用户设置的RAS配置信息之后,根据该用户设置的RAS配置信息生成第一拓扑图;相应地,发送模块13,具体用于向BIOS返回包含该第一拓扑图的RAS配置获取响应,以使该BIOS根据该第一拓扑图所指示的RAS配置信息设置RAS配置参数。
进一步地,在本实施例中,接收模块12,还用于在获取模块11获取用户设置的RAS配置信息之前,接收该用户输入的信息查看指令;相应地,该获取模块11,还用于根据接收模块12接收的信息查看指令获取该BMC中保存的当前RAS配置信息;则获取模块11用于获取用户设置的RAS配置信息,具体包括:获取该用户基于该当前RAS配置信息进行设置得到的RAS配置信息;本实施例提供的装置还包括:更新模块15,用于在该获取模块11获取用户设置的RAS配置信息之后,根据该用户设置的RAS配置信息更新该BMC中保存的RAS配置信息。
在本实施例中,终端设备的操作系统在POST阶段时,该接收模块12,还用于在接收该用户输入的信息查看指令之前,接收该BIOS发送的信息上报请求,该信息上报请求包括该BIOS中的RAS配置信息;相应地,该装置还包括:存储模块16,用于保存该接收模块12接收的信息上报请求中的该RAS配置信息;则该发送模块13,还用于向该BIOS返回信息上报响应,该信息上报响应用于向该BIOS指示该BMC已保存该BIOS上报的RAS配置信息。
本发明实施例提供的RAS配置的设置装置用于执行本发明实施例二提供的RAS配置的设置方法,具备相应的功能模块,其实现原理和技术效果类似,此处不再赘述。
类似地,本实施例提供的装置中,图像生成模块14,还用于在该获取模块11根据接收模块12接收的信息查看指令获取该BMC中保存的当前RAS配置信息之后,根据该当前RAS配置信息生成第二拓扑图;相应地,该获取模块11用于获取用户设置的RAS配置信息,具体包括:获取该用户基于该第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
在具体实现时,该获取模块11获取模块用于获取用户设置的RAS配置信息,包括:用于接收该用户基于该当前RAS配置信息返回的确认指令;并根据该确认指令,将该当前RAS配置信息作为该用户设置的RAS配置信息。
更进一步地,本实施例提供的装置中,接收模块12,还用于在向该BIOS返回包含该RAS配置信息的RAS配置获取响应,以使该BIOS根据该RAS配置信息设置RAS配置参数之后,接收该BIOS发送的设置成功消息;相应地,该装置还可以包括:提示模块17,用于向该用户提示已完成该RAS配置参数的设置;通常地,该设置成功消息可以携带已设置的RAS配置参数;类似地,图像生成模块14,还用于在该提示模块17向该用户提示已完成该RAS配置参数的设置之后,生成针对该已设置的RAS配置参数的第三拓扑图;则该提示模块17,还用于向该用户返回该第三拓扑图以指示的已完成设置的RAS配置参数。
需要说明的是,在本实施例中,接收模块12,还可以在接收该BIOS发送的RAS配置获取请求之前,接收用户输入的RAS配置取消指令;相应地,该装置还可以包括:取消模块,用于根据接收模块12接收的RAS配置取消指令断开与该BIOS连接的RAS配置接口,以使该BIOS根据自身保存的RAS配置信息设置该RAS配置参数。
实施例九
图12为本发明实施例九所提供的一种RAS配置的设置装置的结构示意图。如图12所示,本实施例提供的RAS配置的设置装置,设置在上层管理节点Node中,具体包括:获取模块21、发送模块22和接收模块23。
其中,获取模块21,用于获取用户设置的RAS配置信息。
发送模块22,用于根据该获取模块21获取的用户设置的RAS配置信息向基板管理控制器BMC发送参数设置请求,以使该BMC根据该用户设置的RAS配置信息替换当前保存的RAS配置信息,并指示基本输入输出系统BIOS通过与该BMC连接的RAS配置接口获取该BMC中已替换的RAS配置信息,进而根据该已替换的RAS配置信息设置RAS配置参数。
接收模块23,用于接收该BMC返回的参数设置响应,该参数设置响应用 于向该用户指示该BMC已根据该用户设置的RAS配置信息替换当前保存的RAS配置信息。
本发明实施例提供的RAS配置的设置装置用于执行本发明实施例三提供的RAS配置的设置方法,具备相应的功能模块,其实现原理和技术效果类似,此处不再赘述。
图13为本发明实施例所提供的又一种RAS配置的设置装置的结构示意图。在上述图12的基础上,本实施例提供的RAS配置的设置装置还包括:图像生成模块24,用于在该获取模块21获取用户设置的RAS配置信息之后,根据该用户设置的RAS配置信息生成第一拓扑图;相应地,该发送模块22,具体用于根据该第一拓扑图向该BMC发送参数设置请求,以使该BMC根据该第一拓扑图所指示的RAS配置信息替换当前保存的RAS配置信息。
可选地,在本实施例中,若该上层管理Node中具有已保存的RAS配置信息;则该接收模块23,还用于在该获取模块21获取用户设置的RAS配置信息之前,接收该用户输入的第一查看指令;则该获取模块21,还用于根据该接收模块23接收的第一信息查看指令获取该上层管理Node中保存的当前RAS配置信息;该获取模块21用于获取用户设置的RAS配置信息,具体包括:获取该用户基于该当前RAS配置信息进行设置得到的RAS配置信息;相应地,该装置还包括:更新模块25,用于在该获取模块21获取用户设置的RAS配置信息之后,根据该用户设置的RAS配置信息更新该上层管理Node中保存的RAS配置信息。
本发明实施例提供的RAS配置的设置装置用于执行本发明实施例四提供的RAS配置的设置方法,具备相应的功能模块,其实现原理和技术效果类似,此处不再赘述。
类似地,本实施例提供的装置中,图像生成模块24,还用于在该获取模块21根据该接收模块23接收的第一信息查看指令获取该上层管理Node中保存 的当前RAS配置信息之后,根据该当前RAS配置信息生成第二拓扑图;相应地,该获取模块21用于获取用户设置的RAS配置信息,具体包括:获取该用户基于该第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
在本实施例的另一种可能的实现方式中,若该RAS配置信息包括从该BMC中获取的RAS配置信息;则该接收模块23,还用于在该获取模块21获取用户设置的RAS配置信息之前,接收该用户输入的第二查看指令;相应地,该获取模块21,还用于根据该接收模块23接收的第二查看指令向该BMC发送RAS配置获取请求;进而,该接收模块23,还用于接收该BMC返回的包括该BMC中保存的当前RAS配置信息的RAS配置获取响应;类似地,该图像生成模块24,还用于根据该BMC返回的当前RAS配置信息生成第三拓扑图;相应地,该获取模块21用于获取用户设置的RAS配置信息,具体包括:获取该用户基于该第三拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
在具体实现时,该获取模块21用于获取用户设置的RAS配置信息,包括:用于接收该用户基于该当前RAS配置信息返回的确认指令;并用于根据该接收单元接收的确认指令,将该当前RAS配置信息作为该用户设置的RAS配置信息。
更进一步地,本实施例提供的装置中,接收模块23,还用于在接收该BMC返回的参数设置响应之后,接收该BMC在该BIOS设置RAS配置参数之后发送的设置成功消息;则该装置还包括:提示模块26,用于向该用户提示已完成该RAS配置参数的设置;通常地,该设置成功消息可以携带已设置的RAS配置参数;相应地,该图像生成模块24,还用于在该提示模块26向该用户提示已完成该RAS配置参数的设置之后,生成针对该已设置的RAS配置参数的第四拓扑图;则该提示模块26,还用于向该用户返回该第四拓扑图以指示的已完 成设置的RAS配置参数。
需要说明的是,在本实施例中,接收模块23,还可以在该发送模块22根据该获取模块21获取的用户设置的RAS配置信息向BMC发送参数设置请求之前,接收用户输入的RAS配置取消指令;相应地,发送模块22,还用于向该BMC发送该RAS配置取消指令,以使该BMC根据该RAS配置取消指令断开与该BIOS连接的RAS配置接口,使得该BIOS根据自身保存的RAS配置信息设置RAS配置参数。
实施例十
图14为本发明实施例十所提供的一种RAS配置的设置装置的结构示意图。如图14所示,本实施例提供的RAS配置的设置装置,设置在基本输入输出系统BIOS中,具体包括:发送模块31、接收模块32和设置模块33。
其中,发送模块31,用于向BMC发送RAS配置获取请求,该BIOS通过RAS配置接口与该BMC连接。
接收模块32,用于接收该BMC返回的RAS配置获取响应,该RAS配置获取响应中包含该BMC中保存的当前RAS配置信息。
设置模块33,用于根据该接收模块32接收的当前RAS配置信息设置RAS配置参数。
本发明实施例提供的RAS配置的设置装置用于执行本发明实施例五提供的RAS配置的设置方法,具备相应的功能模块,其实现原理和技术效果类似,此处不再赘述。
可选地,在本实施中,若RAS配置信息是用户在BMC中进行设置的,则该发送模块31,还用于在该设置模块33根据该接收模块32接收的当前RAS配置信息设置RAS配置参数之后,向该BMC发送设置成功消息,以使该BMC向该用户提示已完成该RAS配置参数的设置;若该RAS配置信息是用户在该 上层管理Node进行设置的,则该发送模块31,还用于在该设置模块33根据该接收模块32接收的当前RAS配置信息设置RAS配置参数之后,向该BMC发送设置成功消息,以使该BMC向管上层理节点Node转发该设置成功信息,使得该上层管理Node向该用户提示已完成该RAS配置参数的设置。
进一步地,本实施例中,该发送模块31,还用于在向该BMC发送RAS配置获取请求之前,向该BMC发送信息上报请求,该信息上报请求包括该BIOS中的RAS配置信息;相应地,该接收模块32,还用于接收该BMC通过该RAS配置接口返回的信息上报响应,该信息上报响应用于向该BIOS指示该BMC已保存该BIOS中的RAS配置信息。
实施例十一
图15为本发明实施例十一所提供的一种终端设备的结构示意图。如图15所示,本实施例的提供的终端设备具体包括:处理器41、接收器42和发送器43。
其中,处理器41,用于获取用户设置的RAS配置信息,并存储在该BMC中。
接收器42,用于接收BIOS发送的RAS配置获取请求,该BMC与该BIOS通过RAS配置接口连接。
发送器43,用于向该BIOS返回包含该处理器41获取的RAS配置信息的RAS配置获取响应,以使该BIOS根据该RAS配置信息设置RAS配置参数。
本发明实施例提供的终端设备用于执行本发明实施例一提供的RAS配置的设置方法,具备相应的实体装置,其实现原理和技术效果类似,此处不再赘述。
可选地,本实施例提供的终端设备,用户对RAS配置信息的设置还可以通过上层管理Node来实现,相应地,该处理器41,还用于获取用户通过上层 管理节点Node设置的RAS配置信息。
在本实施例提供的终端设备中,该处理器41,还用于在获取用户设置的RAS配置信息之后,根据该用户设置的RAS配置信息生成第一拓扑图;相应地,发送器43,具体用于向BIOS返回包含该第一拓扑图的RAS配置获取响应,以使该BIOS根据该第一拓扑图所指示的RAS配置信息设置RAS配置参数。
进一步地,在本实施例中,接收器42,还用于在处理器41获取用户设置的RAS配置信息之前,接收该用户输入的信息查看指令;相应地,该处理器41,还用于根据接收器42接收的信息查看指令获取该BMC中保存的当前RAS配置信息;则该处理器41用于获取用户设置的RAS配置信息,具体包括:获取该用户基于该当前RAS配置信息进行设置得到的RAS配置信息;在本实施例中,还包括:该处理器41,还用于在获取用户设置的RAS配置信息之后,根据该用户设置的RAS配置信息更新该BMC中保存的RAS配置信息。
在本实施例中,终端设备的操作系统在POST阶段时,该接收器42,还用于在接收该用户输入的信息查看指令之前,接收该BIOS发送的信息上报请求,该信息上报请求包括该BIOS中的RAS配置信息;相应地,该设备还包括:存储器44,用于保存该接收器42接收的信息上报请求中的该RAS配置信息;则发送器43,还用于向该BIOS返回信息上报响应,该信息上报响应用于向该BIOS指示该BMC已保存该BIOS上报的RAS配置信息。
本发明实施例提供的终端设备用于执行本发明实施例二提供的RAS配置的设置方法,具备相应的实体装置,其实现原理和技术效果类似,此处不再赘述。
类似地,本实施例提供的设备中,处理器41还用于在根据接收器42接收的信息查看指令获取该BMC中保存的当前RAS配置信息之后,根据该当前RAS配置信息生成第二拓扑图;相应地,该处理器41用于获取用户设置的RAS 配置信息,具体包括:获取该用户基于该第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
在具体实现时,该处理器41用于获取用户设置的RAS配置信息,包括:用于接收该用户基于该当前RAS配置信息返回的确认指令;并根据该确认指令,将该当前RAS配置信息作为该用户设置的RAS配置信息。
更进一步地,本实施例提供的设备中,接收器42还用于在向该BIOS返回包含该RAS配置信息的RAS配置获取响应,以使该BIOS根据该RAS配置信息设置RAS配置参数之后,接收该BIOS发送的设置成功消息;相应地,该设备还可以包括显示器,用于向该用户提示已完成该RAS配置参数的设置;通常地,该设置成功消息可以携带已设置的RAS配置参数;类似地,处理器41还用于在该显示器向该用户提示已完成该RAS配置参数的设置之后,生成针对该已设置的RAS配置参数的第三拓扑图;则该显示器,还用于向该用户返回该第三拓扑图以指示的已完成设置的RAS配置参数。
需要说明的是,在本实施例中,接收器42还可以在接收该BIOS发送的RAS配置获取请求之前,接收用户输入的RAS配置取消指令;相应地,该处理器41还用于根据接收器42接收的RAS配置取消指令断开与该BIOS连接的RAS配置接口,以使该BIOS根据自身保存的RAS配置信息设置该RAS配置参数。
实施例十二
图16为本发明实施例十二所提供的一种终端设备的结构示意图。如图16所示,本实施例提供的终端设备具体包括:处理器51、发送器52和接收器53。
其中,处理器51,用于获取用户设置的RAS配置信息。
发送器52,用于根据该处理器51获取的用户设置的RAS配置信息向基板管理控制器BMC发送参数设置请求,以使该BMC根据该用户设置的RAS配置信息替换当前保存的RAS配置信息,并指示基本输入输出系统BIOS通过与 该BMC连接的RAS配置接口获取该BMC中已替换的RAS配置信息,进而根据该已替换的RAS配置信息设置RAS配置参数。
接收器53,用于接收该BMC返回的参数设置响应,该参数设置响应用于向该用户指示该BMC已根据该用户设置的RAS配置信息替换当前保存的RAS配置信息。
本发明实施例提供的终端设备用于执行本发明实施例三提供的RAS配置的设置方法,具备相应的实体装置,其实现原理和技术效果类似,此处不再赘述。
在本实施例提供的终端设备中,处理器51还用于在获取用户设置的RAS配置信息之后,根据该用户设置的RAS配置信息生成第一拓扑图;相应地,该发送器52,具体用于根据该第一拓扑图向该BMC发送参数设置请求,以使该BMC根据该第一拓扑图所指示的RAS配置信息替换当前保存的RAS配置信息。
可选地,在本实施例中,若该上层管理Node中具有已保存的RAS配置信息;则接收器53,还用于在该处理器51获取用户设置的RAS配置信息之前,接收该用户输入的第一查看指令;则该处理器51,还用于根据该接收器53接收的第一信息查看指令获取该上层管理Node中保存的当前RAS配置信息;则该处理器51用于获取用户设置的RAS配置信息,具体包括:获取该用户基于该当前RAS配置信息进行设置得到的RAS配置信息;相应地,在该设备中,处理器51还用于在获取用户设置的RAS配置信息之后,根据该用户设置的RAS配置信息更新该上层管理Node中保存的RAS配置信息。
本发明实施例提供的终端设备用于执行本发明实施例四提供的RAS配置的设置方法,具备相应的实体装置,其实现原理和技术效果类似,此处不再赘述。
类似地,本实施例提供的设备中,处理器51还用于在根据接收器53接收 的第一信息查看指令获取该上层管理Node中保存的当前RAS配置信息之后,根据该当前RAS配置信息生成第二拓扑图;相应地,该处理器51用于获取用户设置的RAS配置信息,具体包括:获取该用户基于该第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
在本实施例的另一种可能的实现方式中,若该RAS配置信息包括从该BMC中获取的RAS配置信息;则该接收器53,还用于在该处理器51获取用户设置的RAS配置信息之前,接收该用户输入的第二查看指令;相应地,该处理器51还用于根据该接收器53接收的第二查看指令向该BMC发送RAS配置获取请求;进而,该接收器53还用于接收该BMC返回的包括该BMC中保存的当前RAS配置信息的RAS配置获取响应;类似地,该处理器51还用于根据该BMC返回的当前RAS配置信息生成第三拓扑图;相应地,该处理器51用于获取用户设置的RAS配置信息,具体包括:获取该用户基于该第三拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
在具体实现时,该处理器51用于获取用户设置的RAS配置信息,包括:用于接收该用户基于该当前RAS配置信息返回的确认指令;并用于根据该接收单元接收的确认指令,将该当前RAS配置信息作为该用户设置的RAS配置信息。
更进一步地,本实施例提供的设备中,接收器53还用于在接收该BMC返回的参数设置响应之后,接收该BMC在该BIOS设置RAS配置参数之后发送的设置成功消息;则该设备还可以包括显示器,用于向该用户提示已完成该RAS配置参数的设置;通常地,该设置成功消息可以携带已设置的RAS配置参数;相应地,该处理器51还用于在该显示器向该用户提示已完成该RAS配置参数的设置之后,生成针对该已设置的RAS配置参数的第四拓扑图;则该显示器还用于向该用户返回该第四拓扑图以指示的已完成设置的RAS配置参数。
需要说明的是,在本实施例中,接收器53还可以在该发送器52根据该处理器51获取的用户设置的RAS配置信息向BMC发送参数设置请求之前,接收用户输入的RAS配置取消指令;相应地,发送器52还用于向该BMC发送该RAS配置取消指令,以使该BMC根据该RAS配置取消指令断开与该BIOS连接的RAS配置接口,使得该BIOS根据自身保存的RAS配置信息设置RAS配置参数。
实施例十三
图17为本发明实施例十三所提供的一种终端设备的结构示意图。如图17所示,本实施例提供的终端设备具体包括:发送器61、接收器62和处理器63。
其中,发送器61,用于向BMC发送RAS配置获取请求,该BIOS通过RAS配置接口与该BMC连接。
接收器62,用于接收该BMC返回的RAS配置获取响应,该RAS配置获取响应中包含该BMC中保存的当前RAS配置信息。
处理器63,用于根据该接收器62接收的当前RAS配置信息设置RAS配置参数。
本发明实施例提供的终端设备用于执行本发明实施例五提供的RAS配置的设置方法,具备相应的实体装置,其实现原理和技术效果类似,此处不再赘述。
可选地,在本实施中,若RAS配置信息是用户在BMC中进行设置的,则该发送器61,还用于在该处理器63根据该接收器62接收的当前RAS配置信息设置RAS配置参数之后,向该BMC发送设置成功消息,以使该BMC向该用户提示已完成该RAS配置参数的设置;若该RAS配置信息是用户在该上层管理Node进行设置的,则该发送器61,还用于在该处理器63根据该接收器62接收的当前RAS配置信息设置RAS配置参数之后,向该BMC发送设置成功消息,以使该BMC向管上层理节点Node转发该设置成功信息,使得该上 层管理Node向该用户提示已完成该RAS配置参数的设置。
进一步地,本实施例中,该发送器61还用于在向该BMC发送RAS配置获取请求之前,向该BMC发送信息上报请求,该信息上报请求包括该BIOS中的RAS配置信息;相应地,该接收器62还用于接收该BMC通过该RAS配置接口返回的信息上报响应,该信息上报响应用于向该BIOS指示该BMC已保存该BIOS中的RAS配置信息。
需要说明的是,在本实施例中,BMC还可以接收用户输入的RAS配置取消指令时,根据该RAS配置取消指令断开该BMC与BIOS连接的RAS配置接口,使得该BIOS根据自身保存的RAS配置信息设置该RAS配置参数。
本领域普通技术人员可以理解:实现上述各方法实施例的全部或部分步骤可以通过程序指令相关的硬件来完成。前述的程序可以存储于一计算机可读取存储介质中。该程序在执行时,执行包括上述各方法实施例的步骤;而前述的存储介质包括:ROM、RAM、磁碟或者光盘等各种可以存储程序代码的介质。
最后应说明的是:以上各实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述各实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的范围。

Claims (46)

  1. 一种可靠性、可用性、可服务性配置的设置方法,其特征在于,包括:
    获取用户设置的可靠性、可用性、可服务性RAS配置信息,并存储在基板管理控制器BMC中;
    接收基本输入输出系统BIOS发送的RAS配置获取请求,所述BMC与所述BIOS通过RAS配置接口连接;
    向所述BIOS返回包含所述RAS配置信息的RAS配置获取响应,以使所述BIOS根据所述RAS配置信息设置RAS配置参数。
  2. 根据权利要求1所述的方法,其特征在于,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,包括:
    获取用户通过上层管理节点Node设置的RAS配置信息。
  3. 根据权利要求1或2所述的方法,其特征在于,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之后,还包括:
    根据所述用户设置的RAS配置信息生成第一拓扑图;
    所述向所述BIOS返回包含所述RAS配置信息的RAS配置获取响应,包括:
    向所述BIOS返回包含所述第一拓扑图的RAS配置获取响应,以使所述BIOS根据所述第一拓扑图所指示的RAS配置信息设置RAS配置参数。
  4. 根据权利要求1~3中任一所述的方法,其特征在于,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之前,还包括:
    接收所述用户输入的信息查看指令;
    根据所述信息查看指令获取所述BMC中保存的当前RAS配置信息;
    所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,包括:
    获取所述用户基于所述当前RAS配置信息进行设置得到的RAS配置信息;
    所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之后,还包括:
    根据所述用户设置的RAS配置信息更新所述BMC中保存的RAS配置信息。
  5. 根据权利要求4所述的方法,其特征在于,所述接收所述用户输入的信息查看指令之前,还包括:
    接收所述BIOS发送的信息上报请求,所述信息上报请求包括所述BIOS中的RAS配置信息;
    保存所述信息上报请求中的所述RAS配置信息;
    向所述BIOS返回信息上报响应,所述信息上报响应用于向所述BIOS指示所述BMC已保存所述BIOS上报的RAS配置信息。
  6. 根据权利要求4或5所述的方法,其特征在于,所述根据所述信息查看指令获取所述BMC中保存的当前RAS配置信息之后,还包括:
    根据所述当前RAS配置信息生成第二拓扑图;
    所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,具体包括:
    获取所述用户基于所述第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
  7. 根据权利要求4~6中任一所述的方法,其特征在于,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,包括:
    接收所述用户基于所述当前RAS配置信息返回的确认指令;
    根据所述确认指令,将所述当前RAS配置信息作为所述用户设置的RAS配置信息。
  8. 根据权利要求1~7中任一所述的方法,其特征在于,所述向所述BIOS返回包含所述RAS配置信息的RAS配置获取响应,以使所述BIOS根据所述RAS配置信息设置RAS配置参数之后,还包括:
    接收所述BIOS发送的设置成功消息;
    向所述用户提示已完成所述RAS配置参数的设置。
  9. 根据权利要求8所述的方法,其特征在于,所述设置成功消息携带已设置的RAS配置参数;所述向所述用户提示已完成所述RAS配置参数的设置之后,还包括:
    生成针对所述已设置的RAS配置参数的第三拓扑图;
    向所述用户返回所述第三拓扑图以指示的已完成设置的RAS配置参数。
  10. 根据权利要求1~9中任一所述的方法,其特征在于,所述接收基本输入输出系统BIOS发送的RAS配置获取请求之前,还包括:
    接收用户输入的RAS配置取消指令;
    根据所述RAS配置取消指令断开与所述BIOS连接的RAS配置接口,以使所述BIOS根据自身保存的RAS配置信息设置所述RAS配置参数。
  11. 一种可靠性、可用性、可服务性配置的设置方法,其特征在于,包括:
    获取用户设置的可靠性、可用性、可服务性RAS配置信息;
    根据所述用户设置的RAS配置信息向基板管理控制器BMC发送参数 设置请求,以使所述BMC根据所述用户设置的RAS配置信息替换当前保存的RAS配置信息,并指示基本输入输出系统BIOS通过与所述BMC连接的RAS配置接口获取所述BMC中已替换的RAS配置信息,进而根据所述已替换的RAS配置信息设置RAS配置参数;
    接收所述BMC返回的参数设置响应,所述参数设置响应用于向所述用户指示所述BMC已根据所述用户设置的RAS配置信息替换当前保存的RAS配置信息。
  12. 根据权利要求11所述的方法,其特征在于,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之后,还包括:
    根据所述用户设置的RAS配置信息生成第一拓扑图;
    所述根据所述用户设置的RAS配置信息向基板管理控制器BMC发送参数设置请求,包括:
    根据所述第一拓扑图向所述BMC发送参数设置请求,以使所述BMC根据所述第一拓扑图所指示的RAS配置信息替换当前保存的RAS配置信息。
  13. 根据权利要求11或12所述的方法,其特征在于,若上层管理节点Node中具有已保存的RAS配置信息;则所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之前,还包括:
    接收所述用户输入的第一查看指令;
    根据所述第一信息查看指令获取所述上层管理Node中保存的当前RAS配置信息;
    所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,包括:
    获取所述用户基于所述当前RAS配置信息进行设置得到的RAS配置信息;
    所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之后,还包括:
    根据所述用户设置的RAS配置信息更新所述上层管理Node中保存的RAS配置信息。
  14. 根据权利要求13所述的方法,其特征在于,所述根据所述第一信息查看指令获取所述上层管理Node中保存的当前RAS配置信息之后,还包括:
    根据所述当前RAS配置信息生成第二拓扑图;
    所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,具体包括:
    获取所述用户基于所述第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
  15. 根据权利要求11或12所述的方法,其特征在于,所述RAS配置信息包括从所述BMC中获取的RAS配置信息;则所述获取用户设置的可靠性、可用性、可服务性RAS配置信息之前,包括:
    接收所述用户输入的第二查看指令;
    根据所述第二查看指令向所述BMC发送RAS配置获取请求;
    接收所述BMC返回的包括所述BMC中保存的当前RAS配置信息的RAS配置获取响应;
    根据所述BMC返回的当前RAS配置信息生成第三拓扑图;
    所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,具体包括:
    获取所述用户基于所述第三拓扑图所指示的当前RAS配置信息进行设 置得到的RAS配置信息。
  16. 根据权利要求13~15中任一所述的方法,其特征在于,所述获取用户设置的可靠性、可用性、可服务性RAS配置信息,包括:
    接收所述用户基于所述当前RAS配置信息返回的确认指令;
    根据所述确认指令,将所述当前RAS配置信息作为所述用户设置的RAS配置信息。
  17. 根据权利要求11~16中任一所述的方法,其特征在于,所述接收所述BMC返回的参数设置响应之后,还包括:
    接收所述BMC在所述BIOS设置RAS配置参数之后发送的设置成功消息;
    向所述用户提示已完成所述RAS配置参数的设置。
  18. 根据权利要求17所述的方法,其特征在于,所述设置成功消息携带已设置的RAS配置参数;所述向所述用户提示已完成所述RAS配置参数的设置之后,还包括:
    生成针对所述已设置的RAS配置参数的第四拓扑图;
    向所述用户返回所述第四拓扑图以指示的已完成设置的RAS配置参数。
  19. 根据权利要求11~18中任一所述的方法,其特征在于,所述根据所述用户设置的RAS配置信息向基板管理控制器BMC发送参数设置请求之前,还包括:
    接收用户输入的RAS配置取消指令;
    向所述BMC发送所述RAS配置取消指令,以使所述BMC根据所述RAS配置取消指令断开与所述BIOS连接的RAS配置接口,使得所述BIOS 根据自身保存的RAS配置信息设置RAS配置参数。
  20. 一种可靠性、可用性、可服务性配置的设置方法,其特征在于,包括:
    向基板管理控制器BMC发送RAS配置获取请求,基本输入输出系统BIOS通过RAS配置接口与所述BMC连接;
    接收所述BMC返回的RAS配置获取响应,所述RAS配置获取响应中包含所述BMC中保存的当前RAS配置信息;
    根据所述当前RAS配置信息设置RAS配置参数。
  21. 根据权利要求20所述的方法,其特征在于,所述根据所述当前RAS配置信息设置RAS配置参数之后,还包括:
    向所述BMC发送设置成功消息,以使所述BMC向所述用户提示已完成所述RAS配置参数的设置。
  22. 根据权利要求20所述的方法,其特征在于,所述根据所述当前RAS配置信息设置RAS配置参数之后,还包括:
    向所述BMC发送设置成功消息,以使所述BMC向管上层理节点Node转发所述设置成功信息,使得所述上层管理Node向所述用户提示已完成所述RAS配置参数的设置。
  23. 根据权利要求20~22中任一所述的方法,其特征在于,所述向基板管理控制器BMC发送RAS配置获取请求之前,还包括:
    向所述BMC发送信息上报请求,所述信息上报请求包括所述BIOS中的RAS配置信息;
    接收所述BMC通过所述RAS配置接口返回的信息上报响应,所述信息上报响应用于向所述BIOS指示所述BMC已保存所述BIOS中的RAS配置信息。
  24. 一种可靠性、可用性、可服务性配置的设置装置,其特征在于,设置在基板管理控制器BMC中,包括:
    获取模块,用于获取用户设置的可靠性、可用性、可服务性RAS配置信息,并存储在所述BMC中;
    接收模块,用于接收基本输入输出系统BIOS发送的RAS配置获取请求,所述BMC与所述BIOS通过RAS配置接口连接;
    发送模块,用于向所述BIOS返回包含所述获取模块获取的RAS配置信息的RAS配置获取响应,以使所述BIOS根据所述RAS配置信息设置RAS配置参数。
  25. 根据权利要求24所述的装置,其特征在于,所述获取模块,还用于获取用户通过上层管理节点Node设置的RAS配置信息。
  26. 根据权利要求24或25所述的装置,其特征在于,还包括:图像生成模块,用于在所述获取模块获取用户设置的RAS配置信息之后,根据所述用户设置的RAS配置信息生成第一拓扑图;
    所述发送模块,具体用于向所述BIOS返回包含所述第一拓扑图的RAS配置获取响应,以使所述BIOS根据所述第一拓扑图所指示的RAS配置信息设置RAS配置参数。
  27. 根据权利要求24~26中任一所述的装置,其特征在于,所述接收模块,还用于在所述获取模块获取用户设置的RAS配置信息之前,接收所述用户输入的信息查看指令;
    所述获取模块,还用于根据所述接收模块接收的信息查看指令获取所述BMC中保存的当前RAS配置信息;
    所述获取模块用于获取用户设置的RAS配置信息,具体包括:获取所述用户基于所述当前RAS配置信息进行设置得到的RAS配置信息;
    则所述装置还包括:更新模块,用于在所述获取模块获取用户设置的RAS配置信息之后,根据所述用户设置的RAS配置信息更新所述BMC中保存的RAS配置信息。
  28. 根据权利要求27所述的装置,其特征在于,所述接收模块,还用于在接收所述用户输入的信息查看指令之前,接收所述BIOS发送的信息上报请求,所述信息上报请求包括所述BIOS中的RAS配置信息;
    则所述装置还包括:存储模块,用于保存所述接收模块接收的信息上报请求中的所述RAS配置信息;
    所述发送模块,还用于向所述BIOS返回信息上报响应,所述信息上报响应用于向所述BIOS指示所述BMC已保存所述BIOS上报的RAS配置信息。
  29. 根据权利要求27或28所述的装置,其特征在于,所述图像生成模块,还用于在所述获取模块根据所述接收模块接收的信息查看指令获取所述BMC中保存的当前RAS配置信息之后,根据所述当前RAS配置信息生成第二拓扑图;
    所述获取模块用于获取用户设置的RAS配置信息,具体包括:获取所述用户基于所述第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
  30. 根据权利要求27~29中任一所述的装置,其特征在于,所述获取模块用于获取用户设置的RAS配置信息,包括:用于接收所述用户基于所述当前RAS配置信息返回的确认指令;并根据所述确认指令,将所述当前RAS配置信息作为所述用户设置的RAS配置信息。
  31. 根据权利要求24~30中任一所述的装置,其特征在于,所述接收模块,还用于在向所述BIOS返回包含所述RAS配置信息的RAS配置获取 响应,以使所述BIOS根据所述RAS配置信息设置RAS配置参数之后,接收所述BIOS发送的设置成功消息;
    则所述装置还包括:提示模块,用于向所述用户提示已完成所述RAS配置参数的设置。
  32. 根据权利要求31所述的装置,其特征在于,所述设置成功消息携带已设置的RAS配置参数;所述图像生成模块,还用于在所述提示模块向所述用户提示已完成所述RAS配置参数的设置之后,生成针对所述已设置的RAS配置参数的第三拓扑图;
    所述提示模块,还用于向所述用户返回所述第三拓扑图以指示的已完成设置的RAS配置参数。
  33. 根据权利要求24~32中任一所述的装置,其特征在于,所述接收模块,还用于在接收所述BIOS发送的RAS配置获取请求之前,接收用户输入的RAS配置取消指令;
    则所述装置还包括:取消模块,用于根据所述接收模块接收的RAS配置取消指令断开与所述BIOS连接的RAS配置接口,以使所述BIOS根据自身保存的RAS配置信息设置所述RAS配置参数。
  34. 一种可靠性、可用性、可服务性配置的设置装置,其特征在于,设置在上层管理节点Node中,包括:
    获取模块,用于获取用户设置的可靠性、可用性、可服务性RAS配置信息;
    发送模块,用于根据所述获取模块获取的用户设置的RAS配置信息向基板管理控制器BMC发送参数设置请求,以使所述BMC根据所述用户设置的RAS配置信息替换当前保存的RAS配置信息,并指示基本输入输出系统BIOS通过与所述BMC连接的RAS配置接口获取所述BMC中已替换的 RAS配置信息,进而根据所述已替换的RAS配置信息设置RAS配置参数;
    接收模块,用于接收所述BMC返回的参数设置响应,所述参数设置响应用于向所述用户指示所述BMC已根据所述用户设置的RAS配置信息替换当前保存的RAS配置信息。
  35. 根据权利要求34所述的装置,其特征在于,还包括:图像生成模块,用于在所述获取模块获取用户设置的RAS配置信息之后,根据所述用户设置的RAS配置信息生成第一拓扑图;
    所述发送模块,具体用于根据所述第一拓扑图向所述BMC发送参数设置请求,以使所述BMC根据所述第一拓扑图所指示的RAS配置信息替换当前保存的RAS配置信息。
  36. 根据权利要求34或35所述的装置,其特征在于,若所述上层管理Node中具有已保存的RAS配置信息;则所述接收模块,还用于在所述获取模块获取用户设置的RAS配置信息之前,接收所述用户输入的第一查看指令;
    则所述获取模块,还用于根据所述接收模块接收的第一信息查看指令获取所述上层管理Node中保存的当前RAS配置信息;
    所述获取模块用于获取用户设置的RAS配置信息,具体包括:获取所述用户基于所述当前RAS配置信息进行设置得到的RAS配置信息;
    所述装置还包括:更新模块,用于在所述获取模块获取用户设置的RAS配置信息之后,根据所述用户设置的RAS配置信息更新所述上层管理Node中保存的RAS配置信息。
  37. 根据权利要求36所述的装置,其特征在于,所述图像生成模块,还用于在所述获取模块根据所述接收模块接收的第一信息查看指令获取所述上层管理Node中保存的当前RAS配置信息之后,根据所述当前RAS配 置信息生成第二拓扑图;
    所述获取模块用于获取用户设置的RAS配置信息,具体包括:获取所述用户基于所述第二拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
  38. 根据权利要求34或35所述的装置,其特征在于,所述RAS配置信息包括从所述BMC中获取的RAS配置信息;则所述接收模块,还用于在所述获取模块获取用户设置的RAS配置信息之前,接收所述用户输入的第二查看指令;
    所述获取模块,还用于根据所述接收模块接收的第二查看指令向所述BMC发送RAS配置获取请求;
    所述接收模块,还用于接收所述BMC返回的包括所述BMC中保存的当前RAS配置信息的RAS配置获取响应;
    所述图像生成模块,还用于根据所述BMC返回的当前RAS配置信息生成第三拓扑图;
    则所述获取模块用于获取用户设置的RAS配置信息,具体包括:获取所述用户基于所述第三拓扑图所指示的当前RAS配置信息进行设置得到的RAS配置信息。
  39. 根据权利要求36~38中任一所述的装置,其特征在于,所述获取模块用于获取用户设置的RAS配置信息,包括:用于接收所述用户基于所述当前RAS配置信息返回的确认指令;并根据所述确认指令,将所述当前RAS配置信息作为所述用户设置的RAS配置信息。
  40. 根据权利要求34~39中任一所述的装置,其特征在于,所述接收模块,还用于在接收所述BMC返回的参数设置响应之后,接收所述BMC在所述BIOS设置RAS配置参数之后发送的设置成功消息;
    所述装置还包括:提示模块,用于向所述用户提示已完成所述RAS配置参数的设置。
  41. 根据权利要求40所述的装置,其特征在于,所述设置成功消息携带已设置的RAS配置参数;所述图像生成模块,还用于在所述提示模块向所述用户提示已完成所述RAS配置参数的设置之后,生成针对所述已设置的RAS配置参数的第四拓扑图;
    所述提示模块,还用于向所述用户返回所述第四拓扑图以指示的已完成设置的RAS配置参数。
  42. 根据权利要求34~41中任一所述的装置,其特征在于,所述接收模块,还用于在所述发送模块根据所述获取模块获取的用户设置的RAS配置信息向基板管理控制器BMC发送参数设置请求之前,接收用户输入的RAS配置取消指令;
    所述发送模块,还用于向所述BMC发送所述RAS配置取消指令,以使所述BMC根据所述RAS配置取消指令断开与所述BIOS连接的RAS配置接口,使得所述BIOS根据自身保存的RAS配置信息设置RAS配置参数。
  43. 一种可靠性、可用性、可服务性配置的设置装置,其特征在于,设置在基本输入输出系统BIOS中,包括:
    发送模块,用于向基板管理控制器BMC发送RAS配置获取请求,所述BIOS通过RAS配置接口与所述BMC连接;
    接收模块,用于接收所述BMC返回的RAS配置获取响应,所述RAS配置获取响应中包含所述BMC中保存的当前RAS配置信息;
    设置模块,用于根据所述接收模块接收的当前RAS配置信息设置RAS配置参数。
  44. 根据权利要求43所述的装置,其特征在于,所述发送模块,还用 于在所述设置模块根据所述接收模块接收的当前RAS配置信息设置RAS配置参数之后,向所述BMC发送设置成功消息,以使所述BMC向所述用户提示已完成所述RAS配置参数的设置。
  45. 根据权利要求43所述的装置,其特征在于,所述发送模块,还用于在所述设置模块根据所述接收模块接收的当前RAS配置信息设置RAS配置参数之后,向所述BMC发送设置成功消息,以使所述BMC向管上层理节点Node转发所述设置成功信息,使得所述上层管理Node向所述用户提示已完成所述RAS配置参数的设置。
  46. 根据权利要求43~45中任一所述的装置,其特征在于,所述发送模块,还用于在向所述BMC发送RAS配置获取请求之前,向所述BMC发送信息上报请求,所述信息上报请求包括所述BIOS中的RAS配置信息;
    所述接收模块,还用于接收所述BMC通过所述RAS配置接口返回的信息上报响应,所述信息上报响应用于向所述BIOS指示所述BMC已保存所述BIOS中的RAS配置信息。
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