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authorGabor Greif <ggreif@gmail.com>2016-02-11 12:38:21 +0100
committerGabor Greif <ggreif@gmail.com>2016-02-11 17:11:20 +0100
commitefba41e2b3b42b7f83e9832b1102f6585cd4ca44 (patch)
tree146aede94566f0c2b4ca6579b86c56244b55b881 /compiler/specialise
parent46af6835ac68d104ee56c29afdfa523c165db2fb (diff)
downloadhaskell-efba41e2b3b42b7f83e9832b1102f6585cd4ca44.tar.gz
Another batch of typo fixes in non-code
Diffstat (limited to 'compiler/specialise')
-rw-r--r--compiler/specialise/Specialise.hs2
1 files changed, 1 insertions, 1 deletions
diff --git a/compiler/specialise/Specialise.hs b/compiler/specialise/Specialise.hs
index a0c8938d70..bccf600c10 100644
--- a/compiler/specialise/Specialise.hs
+++ b/compiler/specialise/Specialise.hs
@@ -1664,7 +1664,7 @@ have the big, un-optimised of f (albeit specialised) captured in an
INLINABLE pragma for f_spec, we won't get that optimisation.
So we simply drop INLINABLE pragmas when specialising. It's not really
-a complete solution; ignoring specalisation for now, INLINABLE functions
+a complete solution; ignoring specialisation for now, INLINABLE functions
don't get properly strictness analysed, for example. But it works well
for examples involving specialisation, which is the dominant use of
INLINABLE. See Trac #4874.