compiler.tree.modular-arithmetic: revert strict patch so we can investigate further.
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e137cde7f8
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ec8377e125
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@ -21,12 +21,10 @@ IN: compiler.tree.modular-arithmetic.tests
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TUPLE: declared-fixnum { x fixnum } ;
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! XXX: As of .97, we do a bounds check and throw an error on overflow, so we can't
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! use fixnum+ here. If this is too big a regression, we can revert it.
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! [ t ] [
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! [ { declared-fixnum } declare [ 1 + ] change-x ]
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! { + fixnum+ >fixnum } inlined?
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! ] unit-test
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[ t ] [
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[ { declared-fixnum } declare [ 1 + ] change-x ]
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{ + fixnum+ >fixnum } inlined?
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] unit-test
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[ t ] [
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[ { declared-fixnum } declare x>> drop ]
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@ -39,7 +39,9 @@ IN: compiler.tree.modular-arithmetic
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! is a modular arithmetic word, then the input can be converted into
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! a form that is cheaper to compute.
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{
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>fixnum bignum>fixnum integer>fixnum
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>fixnum
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bignum>fixnum bignum>fixnum-strict
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integer>fixnum integer>fixnum-strict
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float>fixnum
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set-alien-unsigned-1 set-alien-signed-1
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set-alien-unsigned-2 set-alien-signed-2
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@ -1,7 +1,7 @@
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USING: accessors effects eval kernel layouts math namespaces
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quotations tools.test typed words words.symbol combinators.short-circuit
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compiler.tree.debugger prettyprint definitions compiler.units sequences
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classes.intersection strings classes.union ;
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classes.intersection strings classes.union kernel.private ;
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IN: typed.tests
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TYPED: f+ ( a: float b: float -- c: float )
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@ -13,12 +13,8 @@ TYPED: f+ ( a: float b: float -- c: float )
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TYPED: fix+ ( a: fixnum b: fixnum -- c: fixnum )
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+ ;
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! XXX: As of .97, we don't require that the output is a fixnum.
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! most-positive-fixnum neg 1 - 1quotation
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! [ most-positive-fixnum 1 fix+ ] unit-test
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! XXX: Check that we throw an error. This used to underflow to the least-positive-fixnum.
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[ most-positive-fixnum 1 fix+ ] [ { "kernel-error" 7 } head? ] must-fail-with
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most-positive-fixnum neg 1 - 1quotation
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[ most-positive-fixnum 1 fix+ ] unit-test
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TUPLE: tweedle-dee ; final
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TUPLE: tweedle-dum ; final
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