Hopf algebras
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@ -17,6 +17,7 @@
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+ ui:
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- graphical module manager tool
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- add some handy services:
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- base conversion
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- search help for selection
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@ -0,0 +1,139 @@
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! Finitely generated Hopf algebras.
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! Making this efficient is left as an exercise for the reader.
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USING: arrays errors hashtables io kernel math namespaces parser
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prettyprint sequences words ;
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IN: hopf
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! An element is represented as a hashtable mapping basis
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! elements to scalars.
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! A generator is a pair of arrays, odd/even generators.
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! Example:
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SYMBOLS: a b c ;
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: SYMBOLS:
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string-mode on
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[ string-mode off [ create-in define-symbol ] each ] f ;
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parsing
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: canonicalize
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[ nip zero? not ] hash-subset ;
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SYMBOL: degrees
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H{ } clone degrees set
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: deg= degrees get set-hash ;
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: deg degrees get hash ;
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: <basis-elt> ( generators -- { odd even } )
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V{ } clone V{ } clone
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rot [
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3dup deg odd? [ drop ] [ nip ] if push
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] each [ >array ] 2apply 2array ;
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: >h ( obj -- vec )
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{
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{ [ dup not ] [ drop 0 >h ] }
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{ [ dup number? ] [ { { } { } } associate ] }
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{ [ dup array? ] [ <basis-elt> 1 swap associate ] }
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{ [ dup hashtable? ] [ ] }
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{ [ t ] [ 1array >h ] }
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} cond ;
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: (h+) ( x -- )
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>h [ swap +@ ] hash-each ;
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: h+ ( x y -- x+y )
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[ (h+) (h+) ] make-hash canonicalize ;
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: hsum ( seq -- vec )
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[ [ (h+) ] each ] make-hash canonicalize ;
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: num-h. ( n -- str )
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{
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{ [ dup 1 = ] [ drop " + " ] }
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{ [ dup -1 = ] [ drop " - " ] }
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{ [ t ] [ number>string " + " swap append ] }
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} cond ;
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: h. ( vec -- )
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dup hash-empty? [
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drop 0 .
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] [
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[
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[
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num-h.
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swap concat [ unparse ] map "/\\" join
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append ,
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] hash-each
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] { } make concat " + " ?head drop print
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] if ;
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: permutation ( seq -- perm )
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dup natural-sort [ swap index ] map-with ;
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: (inversions) ( n seq -- n )
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[ > ] subset-with length ;
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: inversions ( seq -- n )
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0 swap dup length [
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swap [ nth ] 2keep >r 1+ r> tail-slice (inversions) +
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] each-with ;
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: -1^ odd? -1 1 ? ;
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: duplicates? ( seq -- ? )
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dup prune [ length ] 2apply > ;
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: odd/\ ( n terms1 terms2 -- n terms )
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append dup duplicates? [
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2drop 0 { }
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] [
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dup permutation inversions -1^ rot *
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swap natural-sort
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] if ;
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: even/\ ( terms1 terms2 -- terms )
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append natural-sort ;
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: (/\) ( n basis1 basis2 -- n basis )
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[
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[ first ] 2apply odd/\
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] 2keep [ second ] 2apply even/\ 2array ;
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: /\ ( x y -- x/\y )
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[ >h ] 2apply [
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[
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rot [
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2swap [
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swapd * -rot (/\) +@
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] 2keep
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] hash-each 2drop
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] hash-each-with
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] make-hash canonicalize ;
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SYMBOL: boundaries
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H{ } clone boundaries set
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: d= ( value basis -- ) boundaries get set-hash ;
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: ((d)) ( basis -- value ) boundaries get hash ;
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: dx/\y ( x y -- vec ) >r ((d)) r> /\ ;
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DEFER: (d)
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: x/\dy ( x y -- vec ) [ (d) /\ ] keep [ deg ] map sum -1^ /\ ;
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: (d) ( product -- value )
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#! d(x/\y)=dx/\y + (-1)^deg y x/\dy
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dup empty?
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[ drop 0 ] [ unclip swap [ x/\dy ] 2keep dx/\y h+ ] if ;
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: d ( x -- dx )
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>h [ [ swap concat (d) /\ , ] hash-each ] { } make hsum ;
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