A p×p bit fraction model of binary floating point division and extremal rounding cases

Author:

Matula David W.,McFearin Lee D.

Publisher

Elsevier BV

Subject

General Computer Science,Theoretical Computer Science

Reference25 articles.

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2. M. Cornea-Hasegan, Proving the IEEE correctness of iterative floating-point square root, divide, and remainder algorithms, Intel Technol. J. (Intel Corporation) (April 1998).

3. M. Cornea-Hasegan, R. Golliver, P. Markstein, Correctness proofs outline for Newton–Raphson based floating-point divide and square root algorithms, Proc. 14th IEEE Symp. on Computer Arithmetic, IEEE, New York, 1999, pp. 96–105.

4. R.W. Gosper, Item 101 in Hakmem, AIM239, MIT, Cambridge, MA, February 1972, pp. 37–44.

5. An Introduction to the Theory of Numbers;Hardy,1979

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