The only solution I can find is to do a square root approximation, but this doesn't work symbolically so I can't use it for proving.
How do I get symbolic square root and logarithm functions in SBV?
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SBV already supports square-root for the floating-point types:
Single precision:
Double precision:
Note that you need to provide a rounding-mode, in the above I used
sRNE
which stands forround-nearest-towards-even
which is the default rounding-mode used in Haskell. SBV supports all 5 IEEE rounding modes, if needed.You can also use reals (arbitrary-precision algebraic real numbers):
In this case, you get an algebraic equation, and an approximation of the real-result. (Note in the above that
x*x == 4.2
is the same as5*x^2 = 21
). Both forms are available from the programmatic API.There's no single function for integer-square-roots; nor for logarithms. These latter ones can be expressed using quantifiers, but SMT solvers are unlikely to produce good results for them since they will involve both non-linear arithmetic and quantification.
Note in general that neither SBV nor SMT solvers are good for "simplifying" symbolic expressions. You will always get a concrete answer for your query: If you ask for
sqrt 50
, you will get7.07106
(in the correct type/precision), instead of things like5 * sqrt 2
, for instance.