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    • 2. 发明授权
    • Enhanced fused multiply-add operation
    • 增强融合乘法运算
    • US07499962B2
    • 2009-03-03
    • US11019921
    • 2004-12-21
    • Ping T. TangDavid D. Donofrio
    • Ping T. TangDavid D. Donofrio
    • G06F7/483
    • G06F7/5443G06F7/483
    • An apparatus, method, and system for performing an enhanced fused multiply-add operation is disclosed. In one embodiment, an apparatus includes an exponent unit. The exponent unit includes a first adder to generate S1, where S1 is the sum of an integer k, the exponent of a floating point value A, and the exponent of a floating point value B. The exponent unit also includes a comparator to generate E1, where E1 is the greater of S1 and the exponent of a floating point value C. The apparatus also includes a partial multiplier, a shifter, and a second adder. The partial multiplier generates the partial products of the mantissas of A and B. The shifter aligns the partial products and the mantissa of C, based on E1. The second adder adds the aligned partial products and the mantissa of C. The apparatus is able to generate not only (A*B+C), but is enhanced to also be able to generate (2k*A*B+C) and the closest integer to (2k*A*B) in two's complement or floating point format.
    • 公开了一种用于执行增强的融合乘法运算的装置,方法和系统。 在一个实施例中,装置包括指数单元。 指数单元包括产生S1的第一加法器,其中S1是整数k,浮点值A的指数和浮点值B的指数之和。指数单元还包括产生E1的比较器 其中E1是S1中的较大者和浮点值C的指数。该装置还包括部分乘法器,移位器和第二加法器。 部分乘法器产生A和B的尾数的部分乘积。移位器基于E1对齐部分乘积和C的尾数。 第二个加法器将对齐的部分积和C的尾数相加。该装置能够不仅产生(A * B + C),而且能够增强也能够生成(2k * A * B + C)和 最接近的整数(2k * A * B)为二进制补码或浮点格式。
    • 5. 发明授权
    • Narrow data path for very high radix division
    • 狭窄的数据路径,用于非常高的基数
    • US07167891B2
    • 2007-01-23
    • US10394952
    • 2003-03-21
    • Ping T. TangWarren E. Ferguson
    • Ping T. TangWarren E. Ferguson
    • G06F7/535
    • G06F7/535
    • Methods, machines, and systems are provided for very high radix division using narrow data paths. A numerator and denominator are received for a very high radix division calculation. An approximate reciprocal of the denominator is obtained from a data structure. The numerator and denominator are pre-scaled by the reciprocal. The denominator is decomposed to an equivalent expression that results in a number of leading insignificant values. Next, modifying a current remainder by forming a first product and subtracting the equivalent expression iteratively assembles a quotient.
    • 提供了使用窄数据路径进行非常高的基数分割的方法,机器和系统。 接收到一个非常高的基数分数计算的分子和分母。 从数据结构获得分母的近似倒数。 分子和分母通过倒数进行预缩放。 分母被分解成等效的表达式,导致许多领先的无关紧要的值。 接下来,通过形成第一乘积来修改当前的余数并减去等价表达式迭代地组合商。
    • 7. 发明授权
    • Methods and apparatus for extracting integer remainders
    • 用于提取整数余数的方法和装置
    • US07979486B2
    • 2011-07-12
    • US11946593
    • 2007-11-28
    • John R. HarrisonPing T. Tang
    • John R. HarrisonPing T. Tang
    • G06F7/535
    • G06F7/535G06F7/72G06F2207/5356
    • Methods and apparatus to determine a remainder value are disclosed. A disclosed example method involves, during a compilation phase, causing a processor to multiply a dividend value by a first value to generate a second value associated with a product. The first value is associated with a scaled approximate reciprocal of a divisor value, and the scaled approximate reciprocal of the divisor value is determined using a compound exponent value. During a runtime phase, the processor is caused to multiply a third value from the second value. The third value is generated using at least a subset bitfield of the second value. During the runtime phase, the processor is caused to determine a remainder value based on the third value. The processor is caused to store the remainder value in a memory.
    • 公开了确定余数值的方法和装置。 所公开的示例性方法涉及在编译阶段期间使处理器将分红值乘以第一值以生成与产品相关联的第二值。 第一个值与除数值的缩放近似倒数相关联,并且使用复合指数值确定除数值的缩放近似倒数。 在运行阶段期间,使处理器从第二个值乘以第三个值。 使用第二值的至少子集位字段来生成第三值。 在运行阶段期间,使处理器基于第三值来确定余数值。 使处理器将余数值存储在存储器中。