摘要:
An apparatus and method for hardware protection of a virtual machine monitor (VMM) runtime integrity watcher is described. A set of one or more hardware range registers that protect a contiguous memory space that is to store the VMM runtime integrity watcher. The set of hardware range registers are to protect the VMM runtime integrity watcher from being modified when loaded into the contiguous memory space. The VMM runtime integrity watcher, when executed, performs an integrity check on a VMM during runtime of the VMM. Execution of the VMM runtime integrity watcher is triggered by a timer event generated based on multiple frequency bands.
摘要:
An apparatus and method for hardware protection of a virtual machine monitor (VMM) runtime integrity watcher is described. A set of one or more hardware range registers that protect a contiguous memory space that is to store the VMM runtime integrity watcher. The set of hardware range registers are to protect the VMM runtime integrity watcher from being modified when loaded into the contiguous memory space. The VMM runtime integrity watcher, when executed, performs an integrity check on a VMM during runtime of the VMM. Execution of the VMM runtime integrity watcher is triggered by a timer event generated based on multiple frequency bands.
摘要:
In some embodiments a Trusted Platform Module (TPM) manages a first flag that identifies whether a secure environment has ever been established. A chipset manages a second flag that identifies that there might have been secrets in memory and a reset or power failure occurred. At least one processor and/or the chipset lock, maintain a lock, and/or unlock a memory in response to the second flag. Other embodiments are described and claimed.
摘要:
A technique to verify firmware. One embodiment of the invention uses a processor's micro-code to verify a system's firmware, such that the firmware can be included in a trusted chain of code along with the operating system.
摘要:
In some embodiments, the invention involves extending trusted computing environments to the boot firmware. In at least one embodiment, the present invention is intended to enable the trusted environment to be extended forward to the pre-boot environment in addition to post-OS load environment. Embodiments of the present invention enable the trusted environment to extend to the firmware at power-on. The firmware is integrated within the secure perimeter which was previously only available to the OS. In other words, the BIOS is made to be a trusted entity, as well as the OS. Extensible firmware interface (EFI) modules are signed with a public key. The processor has an embedded private key. EFI modules are verified using the keys to ensure a trusted environment from boot to OS launch. Other embodiments are described and claimed.
摘要:
In some embodiments a Trusted Platform Module (TPM) manages a first flag that identifies whether a secure environment has ever been established. A chipset manages a second flag that identifies that there might have been secrets in memory and a reset or power failure occurred. At least one processor and/or the chipset lock, maintain a lock, and/or unlock a memory in response to the second flag. Other embodiments are described and claimed.
摘要:
A method and apparatus for limiting the exposure of hardware failure information is described. In one embodiment, an error reporting system of a processor may log various status and error address data into registers that retain their contents through a warm reset event. But the error reporting system of the processor may then determine whether the processor is operating in a trusted or secure mode. If not, then the processor's architectural state variables may also be logged into registers. But if the processor is operating in a trusted or secure mode, then the logging of the architectural state variables may be inhibited, or flagged as invalid.