# How to use fromInteger in Haskell?

One way to calculate 2^8 in haskell is by writing

``````product(replicate 8 2)
``````

When trying to create a function for this, defined as follows...

``````power1 :: Integer →  Integer → Integer
power1 n k | k < 0 = error errorText
power1 n 0 = 1
power1 n k = product(replicate k n)
``````

i get the following error:

``````Couldn't match expected type 'Int' against inferred type 'Integer'
``````

My guess is that I must use the fromInteger function somewhere... I'm just not sure where or how? Is it an interface or what is fromInteger, and how should I use it?

Thanks

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It's worth noting that `product [] = 1`, so you don't actually need your special case for `k = 0` (because `replicate 0 x = []`). –  copumpkin Nov 3 '09 at 23:03

Firstly, never use fromInteger. Use fromIntegral.

You can see where the type error is by looking at the type of replicate:

``````replicate :: Int -> a -> [a]
``````

so when you giv it 'k' as an argument, which you've asserted is an Integer via the type declaration, we have a type error.

A better approach for this would be to use genericReplicate:

``````genericReplicate :: (Integral i) => i -> a -> [a]
``````

So then:

``````power1 n k = product (genericReplicate k n)
``````
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you should mention that `genericReplicate` is in `Data.List` module –  newacct Nov 2 '09 at 19:42
why not use fromInteger? –  Mickel Nov 2 '09 at 20:16
@Mickel There is no need for the function seeing as `forall (Integral x, Eq x) => x. fromInteger x == fromIntegral x` –  alternative Jul 14 '11 at 14:00
Can you backup `Firstly, never use fromInteger`? Why? –  Imray Apr 26 '13 at 3:47

Maybe a simpler solution is to change the function's type definition to:

``````power1 :: Integer -> Int -> Integer
``````
-

You should look at the rest of the error message as well, it tells you exactly the answer to your question:

``````Couldnt match expected type 'Int' against inferred type 'Integer'
In the first argument of 'replicate', namely 'k'
In the first argument of 'product', namely '(replicate k n)'
In the expression: product (replicate k n)
``````

"In the first argument of replicate". That's the place to add the `fromIntegral`.

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