2017-11-10 20:58 GMT+01:00 Martin McClure <martin@hand2mouse.com>:
On 11/10/2017 11:33 AM, raffaello.giulietti@lifeware.ch wrote:
Doing only Fraction->Float conversions in mixed mode won't preserve = asGood point. I agree that Float -> Fraction is the more desirable mode for implicit conversion, since it can always be done without changing the value.
an equivalence relation and won't enable a consistent ordering with <=,
which probably most Smalltalkers consider important and enjoyable
properties.
Nicolas gave some convincing examples on why mostOne problem is that we make it easy to create Floats in source code (0.1), and we print Floats in a nice decimal format but by default print Fractions in their reduced fractional form. If we didn't do this, Smalltalkers might not be working with Floats in the first place, and if they did not have any Floats in their computation they would never run into an implicit conversion to *or* from Float.
programmers might want to rely on them.
Also, as I mentioned, most Smalltalkers might prefer keeping away from
the complex properties of Floats. Doing automatic, implicit
Fraction->Float conversions behind the scenes only exacerbates the
probability of encountering Floats and of having to deal with their
weird and unfamiliar arithmetic.
As it is, if we were to uniformly do Float -> Fraction conversion on mixed-mode operations, we would get things like
(0.1 * (1/1)) printString�������������������������������������������� -->
'3602879701896397/36028797018963968'
Not incredibly friendly.
For those not practicing the litote: definitely a no go.
Regards,
-Martin
At the risk of repeating myself, unique choice for all operations is a nice to have but not a goal per se.
I mostly agree with Florin: having 0.1 representing a decimal rather than a Float might be a better path meeting more expectations.
But thinking that it will magically eradicate the problems is a myth.
Shall precision be limited or shall we use ScaledDecimals ?
With limited precision, we'll be back to having several Fraction converting to same LimitedDecimal, so it won't solve anything wrt original problem.
With illimted precision we'll have the bad property that what we print does not re-interpret to the same ScaledDecimal (0.1s / 0.3s), but that's a detail.
The worse thing is that long chain of operations will tend to produce monster numerators denominators.And we will all have long chain when resizing a morph with proportional layout in scalable graphics.
We will then have to insert rounding operations manually for mitigating the problem, and somehow reinvent a more inconvenient Float...
It's boring to allways play the role of Cassandra, but why do you think that Scheme and Lisp did not choose that path?
Oh. come on, if Scheme and Lisp did it all already, why are we
all here? :)