Abstract:
Management of storage used by pageable guests of a computing environment is facilitated. An enhanced suppression-on-protection facility is provided that enables the determination of which level of protection (host or guest) caused a fault condition, in response to an attempted storage access.
Abstract:
An abstraction for storage class memory is provided that hides the details of the implementation of storage class memory from a program, and provides a standard channel programming interface for performing certain actions, such as controlling movement of data between main storage and storage class memory or managing storage class memory.
Abstract:
Verfahren zum integrierten Bereitstellen eines Schlüssels, wobei das Verfahren aufweist:Verwenden einer Smartcard aus zwei oder mehreren Smartcards mit einem Support-Element aus zwei oder mehreren Support-Elementen zum Erstellen eines Verschlüsselungsschlüssels; undSpeichern des Verschlüsselungsschlüssels und eine Seriennummer des Support-Elements in einer verschlüsselten Datei, wobei das Speichern in einer Weise ausgeführt wird, dass der Verschlüsselungsschlüssel nur durch einen privaten Schlüssel der Smartcard und des Support-Elements, die zum Erstellen des durch die Seriennummer identifizierten Verschlüsselungsschlüssels verwendet wurden, entschlüsselt werden kann.
Abstract:
Provided is a method of executing an instruction to execute a Store Storage Class Memory Information command in a computing environment comprising main storage and storage class memory, the method comprising: obtaining by an input/output (I/O) subsystem a request block, the request block comprising a command code indicating the Store Storage Class Memory Information command; based on the command code, obtaining by the I/O subsystem information relating to the storage class memory; and storing the information in a response block, the response block configured to include a header area and a storage class memory address list of one or more entries representing one or more storage class memory increments that occupy one or more ranges of storage class memory addresses, and wherein the storing the information comprises storing header information in the header area and storing the one or more entries in the response block, wherein the header area includes parameters about the list of one or more entries including an indication of a size of storage class memory increments.
Abstract:
An abstraction for storage class memory is provided that hides the details of the implementation of storage class memory from a program, and provides a standard channel programming interface for performing certain actions, such as controlling movement of data between main storage and storage class memory or managing storage class memory.
Abstract:
A measurement facility is provided for capturing and presenting fine-grained usage information for adapter functions in an input/output subsystem. Adapter specific input/output traffic is tracked on a per function basis and the results are dynamically presented to the user. This information is useful for performance tuning, load balancing and usage based charging, as examples.
Abstract:
A measurement facility is provided for capturing and presenting fine-grained usage information for adapter functions in an input/output subsystem. Adapter specific input/output traffic is tracked on a per function basis and the results are dynamically presented to the user. This information is useful for performance tuning, load balancing and usage based charging, as examples.
Abstract:
An abstraction for storage class memory is provided that hides the details of the implementation of storage class memory from a program, and provides a standard channel programming interface for performing certain actions, such as controlling movement of data between main storage and storage class memory or managing storage class memory.
Abstract:
A measurement facility is provided for capturing and presenting fine-grained usage information for adapter functions in an input/output subsystem. Adapter specific input/output traffic is tracked on a per function basis and the results are dynamically presented to the user. This information is useful for performance tuning, load balancing and usage based charging, as examples.