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US Patent 10528390 Idempotent task execution in on-demand network code execution systems

Patent 10528390 was granted and assigned to Amazon on January, 2020 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Amazon
Amazon
Current Assignee
Amazon
Amazon
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10528390
Date of Patent
January 7, 2020
Patent Application Number
16113887
Date Filed
August 27, 2018
Patent Citations
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US Patent 10013267 Pre-triggers for code execution environments
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US Patent 10048974 Message-based computation request scheduling
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US Patent 10061613 Idempotent task execution in on-demand network code execution systems
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US Patent 10002026 Acquisition and maintenance of dedicated, reserved, and variable compute capacity
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US Patent 10042660 Management of periodic requests for compute capacity
Patent Citations Received
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US Patent 12015603 Multi-tenant mode for serverless code execution
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US Patent 11467890 Processing event messages for user requests to execute program code
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US Patent 11860879 On-demand execution of object transformation code in output path of object storage service
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US Patent 11943093 Network connection recovery after virtual machine transition in an on-demand network code execution system
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US Patent 11461124 Security protocols for low latency execution of program code
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US Patent 11550713 Garbage collection in distributed systems using life cycled storage roots
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US Patent 11550944 Code execution environment customization system for object storage service
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US Patent 10725752 Dependency handling in an on-demand network code execution system
...
Patent Primary Examiner
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Dong U Kim
Patent abstract

Systems and methods are described for handling requests to execute idempotent code in an on-demand code execution system or other distributed code execution environment. Idempotent code can generally include code that produces the same outcome even when executed multiple times, so long as dependencies for the code are in the same state as during a prior execution. Due to this feature, multiple executions of idempotent code may inefficiently use computing resources, particularly in on-demand code execution system (which may require, for example, generation and provisioning of an appropriate execution environment for the code). Aspects of the present disclosure enable the on-demand code execution system to process requests to execute code by verifying whether dependency states associated with the code have changed since a prior execution. If dependency states have not changed, no execution need occur, and the overall computing resource us of the on-demand code execution system is decreased.

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