Patents by Inventor Zeev Sperber

Zeev Sperber has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11068263
    Abstract: Disclosed embodiments relate to systems and methods for performing instructions to convert to 16-bit floating-point format. In one example, a processor includes fetch circuitry to fetch an instruction having fields to specify an opcode and locations of a first source vector comprising N single-precision elements, and a destination vector comprising at least N 16-bit floating-point elements, the opcode to indicate execution circuitry is to convert each of the elements of the specified source vector to 16-bit floating-point, the conversion to include truncation and rounding, as necessary, and to store each converted element into a corresponding location of the specified destination vector, decode circuitry to decode the fetched instruction, and execution circuitry to respond to the decoded instruction as specified by the opcode.
    Type: Grant
    Filed: December 23, 2020
    Date of Patent: July 20, 2021
    Assignee: Intel Corporation
    Inventors: Alexander F. Heinecke, Robert Valentine, Mark J. Charney, Raanan Sade, Menachem Adelman, Zeev Sperber, Amit Gradstein, Simon Rubanovich
  • Patent number: 11048587
    Abstract: An apparatus and method are described for detecting and correcting data fetch errors within a processor core. For example, one embodiment of an instruction processing apparatus for detecting and recovering from data fetch errors comprises: at least one processor core having a plurality of instruction processing stages including a data fetch stage and a retirement stage; and error processing logic in communication with the processing stages to perform the operations of: detecting an error associated with data in response to a data fetch operation performed by the data fetch stage; and responsively performing one or more operations to ensure that the error does not corrupt an architectural state of the processor core within the retirement stage.
    Type: Grant
    Filed: March 4, 2019
    Date of Patent: June 29, 2021
    Assignee: Intel Corporation
    Inventors: Theodros Yigzaw, Geeyarpuram N. Santhanakrishnan, Ganapati N. Srinivasa, Jose A. Vargas, Hisham Shafi, Michael Mishaeli, Ehud Cohen, Zeev Sperber, Shlomo Raikin, Mohan J. Kumar, Julius Y. Mandelblat
  • Patent number: 11036504
    Abstract: Disclosed embodiments relate to systems and methods for performing 16-bit floating-point vector dot product instructions. In one example, a processor includes fetch circuitry to fetch an instruction having fields to specify an opcode and locations of first source, second source, and destination vectors, the opcode to indicate execution circuitry is to multiply N pairs of 16-bit floating-point formatted elements of the specified first and second sources, and accumulate the resulting products with previous contents of a corresponding single-precision element of the specified destination, decode circuitry to decode the fetched instruction, and execution circuitry to respond to the decoded instruction as specified by the opcode.
    Type: Grant
    Filed: December 23, 2020
    Date of Patent: June 15, 2021
    Assignee: Intel Corporation
    Inventors: Alexander F. Heinecke, Robert Valentine, Mark J. Charney, Raanan Sade, Menachem Adelman, Zeev Sperber, Amit Gradstein, Simon Rubanovich
  • Patent number: 11036509
    Abstract: In one embodiment, a processor includes a fetch logic to fetch instructions, a decode logic to decode the fetched instructions, and an execution logic to execute at least some of the instructions. The decode logic may determine whether a flag portion of a first instruction to be folded is to be performed, and if not, accumulate a first immediate value of the first instruction with a folded immediate value obtained from an entry of an immediate buffer. Other embodiments are described and claimed.
    Type: Grant
    Filed: November 3, 2015
    Date of Patent: June 15, 2021
    Assignee: INTEL CORPORATION
    Inventors: Zeev Sperber, Tomer Weiner, Amit Gradstein, Simon Rubanovich, Alex Gerber, Itai Ravid
  • Patent number: 11023235
    Abstract: Embodiments detailed herein relate to systems and methods to zero a tile register pair. In one example, a processor includes decode circuitry to decode a matrix pair zeroing instruction having fields for an opcode and an identifier to identify a destination matrix having a PAIR parameter equal to TRUE; and execution circuitry to execute the decoded matrix pair zeroing instruction to zero every element of a left matrix and a right matrix of the identified destination matrix.
    Type: Grant
    Filed: December 29, 2017
    Date of Patent: June 1, 2021
    Assignee: Intel Corporation
    Inventors: Raanan Sade, Simon Rubanovich, Amit Gradstein, Zeev Sperber, Alexander Heinecke, Robert Valentine, Mark J. Charney, Bret Toll, Jesus Corbal, Elmoustapha Ould-Ahmed-Vall, Menachem Adelman, Eyal Hadas
  • Publication number: 20210157589
    Abstract: Disclosed embodiments relate to systems and methods for performing 16-bit floating-point vector dot product instructions. In one example, a processor includes fetch circuitry to fetch an instruction having fields to specify an opcode and locations of first source, second source, and destination vectors, the opcode to indicate execution circuitry is to multiply N pairs of 16-bit floating-point formatted elements of the specified first and second sources, and accumulate the resulting products with previous contents of a corresponding single-precision element of the specified destination, decode circuitry to decode the fetched instruction, and execution circuitry to respond to the decoded instruction as specified by the opcode.
    Type: Application
    Filed: February 4, 2021
    Publication date: May 27, 2021
    Inventors: Alexander F. HEINECKE, Robert VALENTINE, Mark J. CHARNEY, Raanan SADE, Menachem ADELMAN, Zeev SPERBER, Amit GRADSTEIN, Simon RUBANOVICH
  • Patent number: 11016731
    Abstract: Disclosed embodiments relate to performing floating-point (FP) arithmetic. In one example, a processor is to decode an instruction specifying locations of first, second, and third floating-point (FP) operands and an opcode calling for accumulating a FP product of the first and second FP operands with the third FP operand, and execution circuitry to, in a first cycle, generate the FP product having a Fuzzy-Jbit format comprising a sign bit, a 9-bit exponent, and a 25-bit mantissa having two possible positions for a JBit and, in a second cycle, to accumulate the FP product with the third FP operand, while concurrently, based on Jbit positions of the FP product and the third FP operand, determining an exponent adjustment and a mantissa shift control of a result of the accumulation, wherein performing the exponent adjustment concurrently enhances an ability to perform the accumulation in one cycle.
    Type: Grant
    Filed: March 29, 2019
    Date of Patent: May 25, 2021
    Assignee: Intel Corporation
    Inventors: Amit Gradstein, Simon Rubanovich, Zeev Sperber
  • Publication number: 20210132943
    Abstract: Embodiments detailed herein relate to matrix operations. For example, embodiments of instruction support for matrix (tile) dot product operations are detailed. Exemplary instructions including computing a dot product of signed words and accumulating in a double word with saturation; computing a dot product of bytes and accumulating in to a dword with saturation, where the input bytes can be signed or unsigned and the dword accumulation has output saturation; etc.
    Type: Application
    Filed: July 1, 2017
    Publication date: May 6, 2021
    Applicant: Intel Corporation
    Inventors: Robert VALENTINE, Dan BAUM, Zeev SPERBER, Jesus CORBAL, Elmoustapha OULD-AHMED-VALL, Bret L. TOLL, Mark J. CHARNEY, Menachem ADELMAN, Barukh ZIV, Alexander HEINECKE, Simon RUBANOVICH
  • Publication number: 20210124580
    Abstract: Disclosed embodiments relate to systems and methods for performing instructions to convert to 16-bit floating-point format. In one example, a processor includes fetch circuitry to fetch an instruction having fields to specify an opcode and locations of a first source vector comprising N single-precision elements, and a destination vector comprising at least N 16-bit floating-point elements, the opcode to indicate execution circuitry is to convert each of the elements of the specified source vector to 16-bit floating-point, the conversion to include truncation and rounding, as necessary, and to store each converted element into a corresponding location of the specified destination vector, decode circuitry to decode the fetched instruction, and execution circuitry to respond to the decoded instruction as specified by the opcode.
    Type: Application
    Filed: December 23, 2020
    Publication date: April 29, 2021
    Inventors: Alexander F. HEINECKE, Robert VALENTINE, Mark J. CHARNEY, Raanan SADE, Menachem ADELMAN, Zeev SPERBER, Amit GRADSTEIN, Simon RUBANOVICH
  • Publication number: 20210124581
    Abstract: Disclosed embodiments relate to systems and methods for performing instructions to convert to 16-bit floating-point format. In one example, a processor includes fetch circuitry to fetch an instruction having fields to specify an opcode and locations of a first source vector comprising N single-precision elements, and a destination vector comprising at least N 16-bit floating-point elements, the opcode to indicate execution circuitry is to convert each of the elements of the specified source vector to 16-bit floating-point, the conversion to include truncation and rounding, as necessary, and to store each converted element into a corresponding location of the specified destination vector, decode circuitry to decode the fetched instruction, and execution circuitry to respond to the decoded instruction as specified by the opcode.
    Type: Application
    Filed: December 23, 2020
    Publication date: April 29, 2021
    Inventors: Alexander F. HEINECKE, Robert VALENTINE, Mark J. CHARNEY, Raanan SADE, Menachem ADELMAN, Zeev SPERBER, Amit GRADSTEIN, Simon RUBANOVICH
  • Patent number: 10990397
    Abstract: Systems, methods, and apparatuses relating to a matrix operations accelerator are described. In one embodiment, a processor includes a matrix operations accelerator circuit that includes a two-dimensional grid of fused multiply accumulate circuits; a first plurality of registers that represents an input two-dimensional matrix coupled to the matrix operations accelerator circuit; a decoder, of a core coupled to the matrix operations accelerator circuit, to decode an instruction into a decoded instruction; and an execution circuit of the core to execute the decoded instruction to cause the two-dimensional grid of fused multiply accumulate circuits to form a transpose of the input two-dimensional matrix when the matrix operations accelerator circuit is in a transpose mode.
    Type: Grant
    Filed: March 30, 2019
    Date of Patent: April 27, 2021
    Assignee: Intel Corporation
    Inventors: Amit Gradstein, Simon Rubanovich, Sagi Meller, Zeev Sperber, Jose Yallouz, Robert Valentine
  • Publication number: 20210117194
    Abstract: Disclosed embodiments relate to systems and methods for performing 16-bit floating-point vector dot product instructions. In one example, a processor includes fetch circuitry to fetch an instruction having fields to specify an opcode and locations of first source, second source, and destination vectors, the opcode to indicate execution circuitry is to multiply N pairs of 16-bit floating-point formatted elements of the specified first and second sources, and accumulate the resulting products with previous contents of a corresponding single-precision element of the specified destination, decode circuitry to decode the fetched instruction, and execution circuitry to respond to the decoded instruction as specified by the opcode.
    Type: Application
    Filed: December 23, 2020
    Publication date: April 22, 2021
    Inventors: Alexander F. HEINECKE, Robert VALENTINE, Mark J. CHARNEY, Raanan SADE, Menachem ADELMAN, Zeev SPERBER, Amit GRADSTEIN, Simon RUBANOVICH
  • Publication number: 20210109839
    Abstract: A processor comprises a microarchitectural feature and dynamic tuning unit (DTU) circuitry. The processor executes a program for first and second execution windows with the microarchitectural feature disabled and enabled, respectively. The DTU circuitry automatically determines whether the processor achieved worse performance in the second execution window. In response to determining that the processor achieved worse performance in the second execution window, the DTU circuitry updates a usefulness state for a selected address of the program to denote worse performance. In response to multiple consecutive determinations that the processor achieved worse performance with the microarchitectural feature enabled, the DTU circuitry automatically updates the usefulness state to denote a confirmed bad state.
    Type: Application
    Filed: December 21, 2020
    Publication date: April 15, 2021
    Inventors: Adarsh Chauhan, Jayesh Gaur, Franck Sala, Lihu Rappoport, Zeev Sperber, Adi Yoaz, Sreenivas Subramoney
  • Publication number: 20210096822
    Abstract: Disclosed embodiments relate to systems and methods for performing instructions to transpose rectangular tiles. In one example, a processor includes fetch circuitry to fetch an instruction having fields to specify an opcode and locations of first destination, second destination, first source, and second source matrices, the specified opcode to cause the processor to process each of the specified source and destination matrices as a rectangular matrix, decode circuitry to decode the fetched rectangular matrix transpose instruction, and execution circuitry to respond to the decoded rectangular matrix transpose instruction by transposing each row of elements of the specified first source matrix into a corresponding column of the specified first destination matrix and transposing each row of elements of the specified second source matrix into a corresponding column of the specified second destination matrix.
    Type: Application
    Filed: December 14, 2020
    Publication date: April 1, 2021
    Inventors: Raanan SADE, Robert VALENTINE, Mark J. CHARNEY, Simon RUBANOVICH, Amit GRADSTEIN, Zeev SPERBER, Bret TOLL, Jesus CORBAL, Christopher J. HUGHES, Alexander F. HEINECKE, Elmoustapha OULD-AHMED-VALL
  • Patent number: 10963246
    Abstract: Disclosed embodiments relate to computing dot products of nibbles in tile operands. In one example, a processor includes decode circuitry to decode a tile dot product instruction having fields for an opcode, a destination identifier to identify a M by N destination matrix, a first source identifier to identify a M by K first source matrix, and a second source identifier to identify a K by N second source matrix, each of the matrices containing doubleword elements, and execution circuitry to execute the decoded instruction to perform a flow K times for each element (m, n) of the specified destination matrix to generate eight products by multiplying each nibble of a doubleword element (M,K) of the specified first source matrix by a corresponding nibble of a doubleword element (K,N) of the specified second source matrix, and to accumulate and saturate the eight products with previous contents of the doubleword element.
    Type: Grant
    Filed: November 9, 2018
    Date of Patent: March 30, 2021
    Assignee: Intel Corporation
    Inventors: Alexander F. Heinecke, Robert Valentine, Mark J. Charney, Raanan Sade, Menachem Adelman, Zeev Sperber, Amit Gradstein, Simon Rubanovich
  • Patent number: 10942738
    Abstract: The present disclosure is directed to systems and methods for performing one or more operations on a two dimensional tile register using an accelerator that includes a tiled matrix multiplication unit (TMU). The processor circuitry includes reservation station (RS) circuitry to communicatively couple the processor circuitry to the TMU. The RS circuitry coordinates the operations performed by the TMU. TMU dispatch queue (TDQ) circuitry in the TMU maintains the operations received from the RS circuitry in the order that the operations are received from the RS circuitry. Since the duration of each operation is not known prior to execution by the TMU, the RS circuitry maintains shadow dispatch queue (RS-TDQ) circuitry that mirrors the operations in the TDQ circuitry.
    Type: Grant
    Filed: March 29, 2019
    Date of Patent: March 9, 2021
    Assignee: Intel Corporation
    Inventors: Zeev Sperber, Amit Gradstein, Simon Rubanovich, Igor Yanover, Gavri Berger, Eyal Hadas, Saeed Kharouf, Ron Schneider, Sagi Meller, Jose Yallouz
  • Publication number: 20210049013
    Abstract: Systems, methods, and apparatuses relating to performing hashing operations on packed data elements are described.
    Type: Application
    Filed: November 2, 2020
    Publication date: February 18, 2021
    Inventors: Regev Shemy, Zeev Sperber, Wajdi Feghali, Vinodh Gopal, Amit Gradstein, Simon Rubanovich, Sean Gulley, Ilya Albrekht, Jacob Doweck, Jose Yallouz, Ittai Anati
  • Patent number: 10915421
    Abstract: A processor comprises a microarchitectural feature and dynamic tuning unit (DTU) circuitry. The processor executes a program for first and second execution windows with the microarchitectural feature disabled and enabled, respectively. The DTU circuitry automatically determines whether the processor achieved worse performance in the second execution window. In response to determining that the processor achieved worse performance in the second execution window, the DTU circuitry updates a usefulness state for a selected address of the program to denote worse performance. In response to multiple consecutive determinations that the processor achieved worse performance with the microarchitectural feature enabled, the DTU circuitry automatically updates the usefulness state to denote a confirmed bad state.
    Type: Grant
    Filed: September 19, 2019
    Date of Patent: February 9, 2021
    Assignee: Intel Corporation
    Inventors: Adarsh Chauhan, Jayesh Gaur, Franck Sala, Lihu Rappoport, Zeev Sperber, Adi Yoaz, Sreenivas Subramoney
  • Publication number: 20210019149
    Abstract: Systems, methods, and apparatuses relating to hardware for auto-predication of critical branches. In one embodiment, a processor core includes a decoder to decode instructions into decoded instructions, an execution unit to execute the decoded instructions, a branch predictor circuit to predict a future outcome of a branch instruction, and a branch predication manager circuit to disable use of the predicted future outcome for a conditional critical branch comprising the branch instruction.
    Type: Application
    Filed: December 28, 2019
    Publication date: January 21, 2021
    Inventors: ADARSH CHAUHAN, Franck SALA, Jayesh GAUR, Zeev SPERBER, Lihu RAPPOPORT, Adi YOAZ, Sreenivas SUBRAMONEY
  • Patent number: 10877756
    Abstract: Embodiments detailed herein relate to matrix operations. In particular, tile diagonal support is described. For example, a processor is detailed having decode circuitry to decode an instruction having fields for an opcode, a source operand identifier, and a destination matrix operand identifier; and execution circuitry to execute the decoded instruction to write the identified source operand to each element along a main diagonal of the identified destination matrix operand.
    Type: Grant
    Filed: July 1, 2017
    Date of Patent: December 29, 2020
    Assignee: Intel Corporation
    Inventors: Robert Valentine, Dan Baum, Zeev Sperber, Jesus Corbal, Elmoustapha Ould-Ahmed-Vall, Bret L. Toll, Mark J. Charney, Alexander Heinecke