Abstract:
At least one input/output (I/O) firmware partition is provided in a partitioned environment to facilitate access to I/O resources owned by the at least one I/O firmware partition. The I/O resources of an I/0 firmware partition are shared by one or more other partitions of the environment, referred to as consumer partitions. The consumer partitions use the I/O firmware partition to access the I/O resources. Since the I/O firmware partitions are responsible for providing access to the I/O resources owned by those partitions, the consumer partitions are relieved of this task, reducing complexity and costs in the consumer partitions.
Abstract:
At least one input/output (I/O) firmware partition is provided in a partitioned environment to facilitate access to I/O resources owned by the at least one I/O firmware partition. The I/O resources of an I/0 firmware partition are shared by one or more other partitions of the environment, referred to as consumer partitions. The consumer partitions use the I/O firmware partition to access the I/O resources. Since the I/O firmware partitions are responsible for providing access to the I/O resources owned by those partitions, the consumer partitions are relieved of this task, reducing complexity and costs in the consumer partitions.
Abstract:
At least one input/output (I/O) firmware partition is provided in a partitioned environment to facilitate access to I/O resources owned by the at least one I/O firmware partition. The I/O resources of an I/O firmware partition are shared by one or more other partitions of the environment, referred to as consumer partitions. The consumer partitions use the I/O firmware partition to access the I/O resources. Since the I/O firmware partitions are responsible for providing access to the I/O resources owned by those partitions, the consumer partitions are relieved of this task, reducing complexity and costs in the consumer partitions.
Abstract:
The method involves using a computer system having a host processor executing applications programs, and interconnected through a number of communications controllers each connected to a number of non-programmable and programmable terminals. The processing steps required for windowing may be distributed between the host processor and the controllers. The host processor generates and sends to the controllers (USC) a data stream defining the window parameters. Each controller is adapted to construct and display the window on the display screen(s) which it controls.
Abstract:
A method and apparatus for incorporating windowing techniques into computer systems having a host processor executing applications programs, and interconnected through a plurality of controllers (WSC) to a number of non-programmable (DWS) and programmable terminals, by distributing the processing steps required for windowing between the host processor and the controllers; the host processor generates a data stream defining the window parameters, the data stream is receivable by controllers for either programmable or non-programmable terminals, each controller being adapted to construct and display the window on the display screen(s) which it controls.
Abstract:
A process for controlling cursor-scrollable display information for a plurality of dependent workstations from a single workstation controller, including the steps of prestoring format tables and scrollable panel areas for each dependent workstation in the workstation controller, processing cursor movement keystroke signals within the workstation controller to cause scrolling to occur for any dependent workstation when a cursor movement keystroke is made in that workstation when the cursor is displayed at a beginning or an end position of a scrollable area.