Abstract:
In example implementations, mapping fields and respective operation fields may be stored in a translation lookaside buffer (TLB) of a central processing unit (CPU) that is communicatively coupled to a storage volume. The operation fields may be populated based on processes, running on the CPU, corresponding to the respective mapping fields. In response to a storage volume access request generated by one of the processes, and based on contents of one of the mapping fields that matches the storage volume access request, a memory address corresponding to a memory location in the storage volume may be identified. A translated address based on the identified memory address, and contents of the respective operation field, may be transmitted to a media controller communicatively coupled to the CPU and the storage volume.
Abstract:
A system includes byte-addressable non-volatile memory (NVM) modules. The system includes media controllers communicatively connected to one another over a memory semantic fabric. Each media controller is responsible for a corresponding NVM module to which the media controller is attached. The media controllers cooperatively provide redundant array of independent disks (RAID) functionality at a granularity at which the NVM modules are byte-addressable without employing a master RAID controller.
Abstract:
A security framework for a multi-tenant, multi-tier computer system with embedded processing is described. A multi-tenant security framework is created for a combined processing and storage hierarchy of multiple tiers. The multi-tenant security framework is applied to multiple execution levels of the memory device. The multi-tenant security framework is applied to multiple layers of application server software of the memory device. The multi-tenant security framework is also applied to multiple layers of storage server software of the memory device.
Abstract:
Example implementations relate to a method of tracking data in a non-volatile memory device (NVM) device. A meta-data block from the NVM device is obtained, where the meta-data block includes meta-data. The meta-data block from the NVM device is used to track an associated data object, meta-data in the data block, a user data block, a meta-data block, or an additional data block. The meta-data block from the NVM device is used to point to the associated data object, the meta-data in the data block, the user data block, the meta-data block, or the additional data block. The meta-data block from the NVM device is further used to link the associated data object, the meta-data in the data block, the user data block, the meta-data block, or the additional data block.
Abstract:
In example implementations, mapping fields and respective operation fields may be stored in a translation lookaside buffer (TLB) of a central processing unit (CPU) that is communicatively coupled to a storage volume. The operation fields may be populated based on processes, running on the CPU, corresponding to the respective mapping fields. In response to a storage volume access request generated by one of the processes, and based on contents of one of the mapping fields that matches the storage volume access request, a memory address corresponding to a memory location in the storage volume may be identified. A translated address based on the identified memory address, and contents of the respective operation field, may be transmitted to a media controller communicatively coupled to the CPU and the storage volume.
Abstract:
A computing system can include a processor and a persistent main memory including a fault tolerance capability. The computing system can also include a memory controller to store data in the persistent main memory and create redundant data. The memory controller can also store the redundant data remotely with respect to the persistent main memory. The memory controller can further access the redundant data during failure of the persistent main memory.