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公开(公告)号:US20220138133A1
公开(公告)日:2022-05-05
申请号:US17462975
申请日:2021-08-31
Applicant: Intel Corporation
Inventor: Gilbert Neiger , Rajesh M. Sankaran
IPC: G06F13/34
Abstract: Systems and methods for delivering interrupts to user-level applications. An example processing system comprises: a memory configured to store a plurality of user-level APIC data structures and a plurality of user-level interrupt handler address data structures corresponding to a plurality of user-level applications being executed by the processing system; and a processing core configured, responsive to receiving a notification of a user-level interrupt, to: set a pending interrupt bit flag having a position defined by an identifier of the user-level interrupt in a user-level APIC data structure associated with a user-level application that is currently being executed by the processing core, and invoke a user-level interrupt handler identified by a user-level interrupt handler address data structure associated with the user-level application, for a pending user-level interrupt having a highest priority among one or more pending user-level interrupts identified by the user-level APIC data structure.
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公开(公告)号:US20210382836A1
公开(公告)日:2021-12-09
申请号:US17410063
申请日:2021-08-24
Applicant: Intel Corporation
Inventor: Philip R. Lantz , Sanjay Kumar , Rajesh M. Sankaran , Saurabh Gayen
IPC: G06F13/364 , G06F13/24 , G06F9/50
Abstract: Embodiments of apparatuses, methods, and systems for highly scalable accelerators are described. In an embodiment, an apparatus includes an interface to receive a plurality of work requests from a plurality of clients and a plurality of engines to perform the plurality of work requests. The work requests are to be dispatched to the plurality of engines from a plurality of work queues. The work queues are to store a work descriptor per work request. Each work descriptor is to include all information needed to perform a corresponding work request.
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公开(公告)号:US11113217B2
公开(公告)日:2021-09-07
申请号:US16778227
申请日:2020-01-31
Applicant: Intel Corporation
Inventor: Gilbert Neiger , Rajesh M. Sankaran
IPC: G06F13/34
Abstract: Systems and methods for delivering interrupts to user-level applications. An example processing system comprises: a memory configured to store a plurality of user-level APIC data structures and a plurality of user-level interrupt handler address data structures corresponding to a plurality of user-level applications being executed by the processing system; and a processing core configured, responsive to receiving a notification of a user-level interrupt, to: set a pending interrupt bit flag having a position defined by an identifier of the user-level interrupt in a user-level APIC data structure associated with a user-level application that is currently being executed by the processing core, and invoke a user-level interrupt handler identified by a user-level interrupt handler address data structure associated with the user-level application, for a pending user-level interrupt having a highest priority among one or more pending user-level interrupts identified by the user-level APIC data structure.
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公开(公告)号:US10769078B2
公开(公告)日:2020-09-08
申请号:US16453995
申请日:2019-06-26
Applicant: Intel Corporation
Inventor: Niranjan L. Cooray , Abhishek R. Appu , Altug Koker , Joydeep Ray , Balaji Vembu , Pattabhiraman K , David Puffer , David J. Cowperthwaite , Rajesh M. Sankaran , Satyeshwar Singh , Sameer Kp , Ankur N. Shah , Kun Tian
IPC: G06F12/109 , G06F11/07 , G06F13/16 , G06F12/1009 , G06F12/1027 , G06F12/1036 , G06F12/0802 , G06F13/40
Abstract: An apparatus and method are described for implementing memory management in a graphics processing system. For example, one embodiment of an apparatus comprises: a first plurality of graphics processing resources to execute graphics commands and process graphics data; a first memory management unit (MMU) to communicatively couple the first plurality of graphics processing resources to a system-level MMU to access a system memory; a second plurality of graphics processing resources to execute graphics commands and process graphics data; a second MMU to communicatively couple the second plurality of graphics processing resources to the first MMU; wherein the first MMU is configured as a master MMU having a direct connection to the system-level MMU and the second MMU comprises a slave MMU configured to send memory transactions to the first MMU, the first MMU either servicing a memory transaction or sending the memory transaction to the system-level MMU on behalf of the second MMU.
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公开(公告)号:US10572415B2
公开(公告)日:2020-02-25
申请号:US15900771
申请日:2018-02-20
Applicant: Intel Corporation
Inventor: Gilbert Neiger , Rajesh M. Sankaran
Abstract: Systems and methods for delivering interrupts to user-level applications. An example processing system comprises: a memory configured to store a plurality of user-level APIC data structures and a plurality of user-level interrupt handler address data structures corresponding to a plurality of user-level applications being executed by the processing system; and a processing core configured, responsive to receiving a notification of a user-level interrupt, to: set a pending interrupt bit flag having a position defined by an identifier of the user-level interrupt in a user-level APIC data structure associated with a user-level application that is currently being executed by the processing core, and invoke a user-level interrupt handler identified by a user-level interrupt handler address data structure associated with the user-level application, for a pending user-level interrupt having a highest priority among one or more pending user-level interrupts identified by the user-level APIC data structure.
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公开(公告)号:US10048881B2
公开(公告)日:2018-08-14
申请号:US15207218
申请日:2016-07-11
Applicant: INTEL CORPORATION
Inventor: Rajesh M. Sankaran , Prashant Sethi , Asit K. Mallick , David Woodhouse , Rupin H. Vakharwala
IPC: G06F3/06 , G06F12/1009 , G06F12/1081 , G06F12/14
Abstract: An apparatus includes an extended capability register and an input/output (I/O) memory management circuitry. The I/O memory management circuitry is to receive, from an I/O device, an address translation request referencing a guest virtual address associated with a guest virtual address space of a virtual machine. The I/O memory management circuitry may translate the guest virtual address to a guest physical address associated with a guest physical address space of the virtual machine, and, responsive to determining that a value stored by the extended capability register indicates a restrict-translation-request-response (RTRR) mode, transmit, to the I/O device, a translation response having the guest physical address.
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公开(公告)号:US09880932B2
公开(公告)日:2018-01-30
申请号:US15688209
申请日:2017-08-28
Applicant: Intel Corporation
Inventor: Sanjay K. Kumar , Rajesh M. Sankaran , Subramanya R. Dulloor , Andrew V. Anderson
IPC: G06F12/00 , G06F13/00 , G06F12/0804 , G06F11/14
CPC classification number: G06F12/0804 , G06F9/467 , G06F11/07 , G06F11/073 , G06F11/0778 , G06F11/0793 , G06F11/14 , G06F11/1482 , G06F12/0868 , G06F2201/805 , G06F2201/82 , G06F2212/1032 , G06F2212/608
Abstract: A processor includes a memory management unit and a front end including a decoder. The decoder includes logic to receive a flush-on-commit (FoC) instruction to flush dirty data from a volatile cache to a persistent memory upon commitment of a store associated with the FoC instruction. The memory management unit includes logic to, based upon a flush-on-fail (FoF) mode, skip execution of the flush-on-commit instruction and to flush the dirty data from the volatile cache upon a subsequent FoF operation.
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公开(公告)号:US20170199827A1
公开(公告)日:2017-07-13
申请号:US14994393
申请日:2016-01-13
Applicant: Intel Corporation
Inventor: Rajesh M. Sankaran , Randolph L. Campbell , Prashant Sethi , David J. Harriman
Abstract: Embodiments of an invention for address translation for scalable I/O device virtualization are disclosed. In one embodiment, an apparatus includes PASID table lookup circuitry. The PASID table lookup circuitry is to find a PASID-entry in a PASID table. The PASID-entry is to include a PASID processing mode (PPM) indicator and a first pointer to a first translation structure. The PPM indicator is to specify one of a plurality of translation types, the one of the plurality of translation types to use the first translation structure.
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公开(公告)号:US09298641B2
公开(公告)日:2016-03-29
申请号:US14867023
申请日:2015-09-28
Applicant: Intel Corporation
Inventor: Steven M. Bennett , Andrew V. Anderson , Gilbert Neiger , Richard Uhlig , Scott Dion Rodgers , Rajesh M. Sankaran , Camron Rust , Sebastian Schoenberg
CPC classification number: G06F12/1027 , G06F9/3004 , G06F9/30076 , G06F9/45558 , G06F12/0246 , G06F12/0875 , G06F12/1009 , G06F12/1036 , G06F12/1054 , G06F2009/45583 , G06F2212/152 , G06F2212/2022 , G06F2212/452 , G06F2212/50 , G06F2212/65 , G06F2212/657 , G06F2212/68 , G06F2212/683 , G06F2212/7201
Abstract: A processor including logic to execute an instruction to synchronize a mapping from a physical address of a guest of a virtualization based system (guest physical address) to a physical address of the host of the virtualization based system (host physical address), and stored in a translation lookaside buffer (TLB), with a corresponding mapping stored in an extended paging table (EPT) of the virtualization based system.
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公开(公告)号:US09298640B2
公开(公告)日:2016-03-29
申请号:US14867018
申请日:2015-09-28
Applicant: Intel Corporation
Inventor: Steven M. Bennett , Andrew V. Anderson , Gilbert Neiger , Richard A Uhlig , Scott Dion Rodgers , Rajesh M. Sankaran , Camron Rust , Sebastian Schoenberg
CPC classification number: G06F12/1027 , G06F9/3004 , G06F9/30076 , G06F9/45558 , G06F12/0246 , G06F12/0875 , G06F12/1009 , G06F12/1036 , G06F12/1054 , G06F2009/45583 , G06F2212/152 , G06F2212/2022 , G06F2212/452 , G06F2212/50 , G06F2212/65 , G06F2212/657 , G06F2212/68 , G06F2212/683 , G06F2212/7201
Abstract: A processor including logic to execute an instruction to synchronize a mapping from a physical address of a guest of a virtualization based system (guest physical address) to a physical address of the host of the virtualization based system (host physical address), and stored in a translation lookaside buffer (TLB), with a corresponding mapping stored in an extended paging table (EPT) of the virtualization based system.
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