Abstract:
Embodiments of the present disclosure provide arrangements for aggregating network traffic of compute nodes of various computing sleds of computing trays of a computing rack assembly in a data center. In one embodiment, a computing rack assembly may include a plurality of computing trays. A computing tray may removably include a number of sleds. Each sled may include a number of compute nodes. The computing tray may further include an optical network aggregation component to aggregate network traffic of the compute nodes of various sleds of a computing tray. Other embodiments may be described and/or claimed.
Abstract:
An apparatus for compute module management is described herein. The apparatus includes a host system and a logic solution. The host system includes a central processing unit and a plurality of sensors that collect system management data from multiple interfaces. The logic solution consolidates the system management data to a single format for a single interface and transmits the system management data to a central authority. The central authority includes system management firmware for managing each compute module using the consolidated system management data.
Abstract:
A system includes a host processor (105) and a peripheral device (708). The host processor (105) is coupled to the peripheral device (708) by a Peripheral Component Interconnect Express (PCIe) compliant link. The peripheral device (708) can include logic circuitry to identify, based on an application using the device and the host processor (105), a read to write ratio utilized by the application; and provide the read to write ratio to the host processor (105). The host processor (105) comprising logic circuitry to send a command signal to a device in communication with the hardware processor across a peripheral component interconnect express (PCIe) compliant link, the command signal indicating a transmission (TX) lane to receive (RX) lane ratio, the TX lane to RX lane ratio corresponding to the read to write ratio identified by the peripheral device (708); and receive an indication that the device is capable of supporting asymmetric TX and RX ratios.
Abstract:
An apparatus for compute module management is described herein. The apparatus includes a host system and a logic solution. The host system includes a central processing unit and a plurality of sensors that collect system management data from multiple interfaces. The logic solution consolidates the system management data to a single format for a single interface and transmits the system management data to a central authority. The central authority includes system management firmware for managing each compute module using the consolidated system management data.
Abstract:
A system includes a host processor (105) and a peripheral device (708). The host processor (105) is coupled to the peripheral device (708) by a Peripheral Component Interconnect Express (PCIe) compliant link. The peripheral device (708) can include logic circuitry to identify, based on an application using the device and the host processor (105), a read to write ratio utilized by the application; and provide the read to write ratio to the host processor (105). The host processor (105) comprising logic circuitry to send a command signal to a device in communication with the hardware processor across a peripheral component interconnect express compliant link, the command signal indicating a transmission (TX) lane to receive (RX) lane ratio, the TX lane to RX lane ratio corresponding to the read to write ratio identified by the peripheral device (708); and receive an indication that the device is capable of supporting asymmetric TX and RX ratios.