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3
votes
2answers
40 views

In J, how can I find the extended precision integer floor of a square root

I understand that when I take the square root (%:) of a number that does not result in an integer, my answer is a float. I'm looking to find the floor (<.) of the square root in order to get an ...
2
votes
1answer
85 views

Convert extended value to Time

I want to convert a extended value to time. before the DecimalSeparator is hours after the decimalseparator are minutes digital 8,62944444444444 --> 8:37 1,41666666666667 --> 1:25 I've made ...
0
votes
0answers
74 views

Precision problems with very large reals - Fortran

The problem I'm attempting to tackle at the moment involves computing the order of 10 modulo(n), where n could be any number less than 1000. I have a function to do exactly that, however, I am unable ...
8
votes
2answers
520 views

C++ handling of excess precision

I'm currently looking at code which does multi-precision floating-point arithmetic. To work correctly, that code requires values to be reduced to their final precision at well-defined points. So even ...
1
vote
1answer
180 views

Floating-point NaN depending on uncorrelated exception handling in C++

Really weird: double *data; // uncorrelated double a,b,c; double sigma = 1e-309; // denormalized number try { data = new double[10]; } // uncorrelated catch(...) { cout << "error"; return 1; } ...
45
votes
2answers
2k views

Is there a document describing how Clang handles excess floating-point precision?

It is nearly impossible(*) to provide strict IEEE 754 semantics at reasonable cost when the only floating-point instructions one is allowed to used are the 387 ones. It is particularly hard when one ...
14
votes
1answer
1k views

Is it possible to use extended precision (80-bit) floating point arithmetic in GHC/Haskell?

The standard Haskell's Double uses the standard double-precision arithmetic: data Double Double-precision floating point numbers. It is desirable that this type be at least equal in range and ...
11
votes
2answers
434 views

Properties of 80-bit extended precision computations starting from double precision arguments

Here are two implementations of interpolation functions. Argument u1 is always between 0. and 1.. #include <stdio.h> double interpol_64(double u1, double u2, double u3) { return u2 * (1.0 - ...
42
votes
1answer
924 views

80-bit extended precision floating-point in OCaml

Is there an OCaml library to take advantage of the 80-bit extended precision floating-point type on the IA-32 and x86-64 architectures? I know about the MPFR bindings but my ideal library would be ...