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公开(公告)号:US20210075665A1
公开(公告)日:2021-03-11
申请号:US17100894
申请日:2020-11-22
Applicant: NetApp Inc.
Abstract: One or more techniques and/or computing devices are provided for determining whether to perform a switchover operation between computing nodes. A first computing node and a second computing node, configured as disaster recovery partners, may be deployed within a computing environment. The first computing node and the second computing node may be configured to provide operational state information (e.g., normal operation, a failure, etc.) to a cloud environment node state provider and/or cloud persistent storage accessible through a cloud storage service. Accordingly, a computing node may obtain operational state information of a partner node from the cloud environment node state provider and/or the cloud storage service notwithstanding a loss of internode communication and/or an infrastructure failure that may otherwise appear as a failure of the partner node. In this way, the computing node may accurately determine whether the partner node has failed.
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公开(公告)号:US20250004893A1
公开(公告)日:2025-01-02
申请号:US18766613
申请日:2024-07-08
Applicant: NetApp, Inc.
Inventor: Sasidharan Krishnan , Kalaivani Arumugham , Preksha Bansal , Vijay Kumar Chakravarthy Ekkaladevi , Ryan Edward Bartlett
Abstract: Techniques are provided for metadata management for enabling automated switchover in accordance with a configuration of storage solution that expresses a preference for either maintaining availability (e.g., a non-zero RPO mode) of the storage solution or avoiding data loss (e.g., a zero RPO mode). In one example, responsive to detecting a switchover trigger event, a node of a local cluster of a cross-site storage solution determines whether performance of an automated switchover from a failed cluster to a surviving cluster of the cross-site storage solution is enabled. Responsive to an affirmative determination, the node selectively proceeds with the automated switchover based on the configuration.
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公开(公告)号:US20220292004A1
公开(公告)日:2022-09-15
申请号:US17748277
申请日:2022-05-19
Applicant: NetApp, Inc.
Inventor: Sasidharan Krishnan , Kalaivani Arumugham , Preksha Bansal , Vijay Kumar Chakravarthy Ekkaladevi , Ryan Edward Bartlett
Abstract: Techniques are provided for metadata management for enabling automated switchover in accordance with a configuration of storage solution that expresses a preference for either maintaining availability (e.g., a non-zero RPO mode) of the storage solution or avoiding data loss (e.g., a zero RPO mode). In one example, responsive to detecting a switchover trigger event, a node of a local cluster of a cross-site storage solution determines whether performance of an automated switchover from a failed cluster to a surviving cluster of the cross-site storage solution is enabled. Responsive to an affirmative determination, the node selectively proceeds with the automated switchover based on the configuration.
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公开(公告)号:US20170126479A1
公开(公告)日:2017-05-04
申请号:US14928137
申请日:2015-10-30
Applicant: NetApp Inc.
IPC: H04L12/24
CPC classification number: H04L41/0654 , G06F11/0727 , G06F11/0757 , G06F11/2092 , G06F2201/815
Abstract: One or more techniques and/or computing devices are provided for determining whether to perform a switchover operation between computing nodes. A first computing node and a second computing node, configured as disaster recovery partners, may be deployed within a computing environment. The first computing node and the second computing node may be configured to provide operational state information (e.g., normal operation, a failure, etc.) to a cloud environment node state provider and/or cloud persistent storage accessible through a cloud storage service. Accordingly, a computing node may obtain operational state information of a partner node from the cloud environment node state provider and/or the cloud storage service notwithstanding a loss of internode communication and/or an infrastructure failure that may otherwise appear as a failure of the partner node. In this way, the computing node may accurately determine whether the partner node has failed.
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公开(公告)号:US12032459B2
公开(公告)日:2024-07-09
申请号:US17748277
申请日:2022-05-19
Applicant: NetApp, Inc.
Inventor: Sasidharan Krishnan , Kalaivani Arumugham , Preksha Bansal , Vijay Kumar Chakravarthy Ekkaladevi , Ryan Edward Bartlett
CPC classification number: G06F11/2033 , G06F11/1435 , G06F11/1658 , G06F11/2028 , G06F11/203
Abstract: Techniques are provided for metadata management for enabling automated switchover in accordance with a configuration of storage solution that expresses a preference for either maintaining availability (e.g., a non-zero RPO mode) of the storage solution or avoiding data loss (e.g., a zero RPO mode). In one example, responsive to detecting a switchover trigger event, a node of a local cluster of a cross-site storage solution determines whether performance of an automated switchover from a failed cluster to a surviving cluster of the cross-site storage solution is enabled. Responsive to an affirmative determination, the node selectively proceeds with the automated switchover based on the configuration.
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公开(公告)号:US10855515B2
公开(公告)日:2020-12-01
申请号:US14928137
申请日:2015-10-30
Applicant: NetApp Inc.
Abstract: One or more techniques and/or computing devices are provided for determining whether to perform a switchover operation between computing nodes. A first computing node and a second computing node, configured as disaster recovery partners, may be deployed within a computing environment. The first computing node and the second computing node may be configured to provide operational state information (e.g., normal operation, a failure, etc.) to a cloud environment node state provider and/or cloud persistent storage accessible through a cloud storage service. Accordingly, a computing node may obtain operational state information of a partner node from the cloud environment node state provider and/or the cloud storage service notwithstanding a loss of internode communication and/or an infrastructure failure that may otherwise appear as a failure of the partner node. In this way, the computing node may accurately determine whether the partner node has failed.
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