factor/basis/classes/struct/struct.factor

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! (c)Joe Groff bsd license
USING: accessors alien alien.c-types alien.structs
alien.structs.fields arrays byte-arrays classes classes.parser
classes.tuple classes.tuple.parser classes.tuple.private
combinators combinators.short-circuit combinators.smart
definitions functors.backend fry generalizations generic.parser
kernel kernel.private lexer libc locals macros make math
math.order parser quotations sequences slots slots.private
specialized-arrays vectors words summary namespaces assocs
compiler.tree.propagation.transforms ;
FROM: slots => reader-word writer-word ;
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IN: classes.struct
SPECIALIZED-ARRAY: uchar
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ERROR: struct-must-have-slots ;
M: struct-must-have-slots summary
drop "Struct definitions must have slots" ;
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TUPLE: struct
{ (underlying) c-ptr read-only } ;
TUPLE: struct-slot-spec < slot-spec
c-type ;
PREDICATE: struct-class < tuple-class
superclass \ struct eq? ;
M: struct-class valid-superclass? drop f ;
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GENERIC: struct-slots ( struct-class -- slots )
M: struct-class struct-slots "struct-slots" word-prop ;
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! struct allocation
M: struct >c-ptr
2 slot { c-ptr } declare ; inline
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M: struct equal?
{
[ [ class ] bi@ = ]
[ [ >c-ptr ] [ [ >c-ptr ] [ byte-length ] bi ] bi* memory= ]
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} 2&& ; inline
M: struct hashcode*
[ >c-ptr ] [ byte-length ] bi <direct-uchar-array> hashcode* ; inline
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: struct-prototype ( class -- prototype ) "prototype" word-prop ; foldable
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: memory>struct ( ptr class -- struct )
! This is sub-optimal if the class is not literal, but gets
! optimized down to efficient code if it is.
'[ _ boa ] call( ptr -- struct ) ; inline
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<PRIVATE
: (init-struct) ( class with-prototype: ( prototype -- alien ) sans-prototype: ( class -- alien ) -- alien )
'[ dup struct-prototype _ _ ?if ] keep memory>struct ; inline
PRIVATE>
: (malloc-struct) ( class -- struct )
[ heap-size malloc ] keep memory>struct ; inline
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: malloc-struct ( class -- struct )
[ >c-ptr malloc-byte-array ] [ 1 swap heap-size calloc ] (init-struct) ; inline
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: (struct) ( class -- struct )
[ heap-size (byte-array) ] keep memory>struct ; inline
: <struct> ( class -- struct )
[ >c-ptr clone ] [ heap-size <byte-array> ] (init-struct) ; inline
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MACRO: <struct-boa> ( class -- quot: ( ... -- struct ) )
[
[ <wrapper> \ (struct) [ ] 2sequence ]
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[
struct-slots
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[ length \ ndip ]
[ [ name>> setter-word 1quotation ] map \ spread ] bi
] bi
] [ ] output>sequence ;
<PRIVATE
: pad-struct-slots ( values class -- values' class )
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[ struct-slots [ initial>> ] map over length tail append ] keep ;
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: (reader-quot) ( slot -- quot )
[ c-type>> c-type-getter-boxer ]
[ offset>> [ >c-ptr ] swap suffix ] bi prepend ;
: (writer-quot) ( slot -- quot )
[ c-type>> c-setter ]
[ offset>> [ >c-ptr ] swap suffix ] bi prepend ;
: (boxer-quot) ( class -- quot )
'[ _ memory>struct ] ;
: (unboxer-quot) ( class -- quot )
drop [ >c-ptr ] ;
PRIVATE>
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M: struct-class boa>object
swap pad-struct-slots
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[ <struct> ] [ struct-slots ] bi
[ [ (writer-quot) call( value struct -- ) ] with 2each ] curry keep ;
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! Struct slot accessors
GENERIC: struct-slot-values ( struct -- sequence )
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M: struct-class reader-quot
nip (reader-quot) ;
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M: struct-class writer-quot
nip (writer-quot) ;
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! c-types
<PRIVATE
: struct-slot-values-quot ( class -- quot )
struct-slots
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[ name>> reader-word 1quotation ] map
\ cleave [ ] 2sequence
\ output>array [ ] 2sequence ;
: define-inline-method ( class generic quot -- )
[ create-method-in ] dip [ define ] [ drop make-inline ] 2bi ;
: (define-struct-slot-values-method) ( class -- )
[ \ struct-slot-values ] [ struct-slot-values-quot ] bi
define-inline-method ;
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: clone-underlying ( struct -- byte-array )
[ >c-ptr ] [ byte-length ] bi memory>byte-array ; inline
: (define-clone-method) ( class -- )
[ \ clone ]
[ \ clone-underlying swap literalize \ memory>struct [ ] 3sequence ] bi
define-inline-method ;
: slot>field ( slot -- field )
field-spec new swap {
[ name>> >>name ]
[ offset>> >>offset ]
[ c-type>> >>type ]
[ name>> reader-word >>reader ]
[ name>> writer-word >>writer ]
} cleave ;
: define-struct-for-class ( class -- )
[
{
[ name>> ]
[ "struct-size" word-prop ]
[ "struct-align" word-prop ]
[ struct-slots [ slot>field ] map ]
} cleave
struct-type (define-struct)
] [
{
[ name>> c-type ]
[ (unboxer-quot) >>unboxer-quot ]
[ (boxer-quot) >>boxer-quot ]
[ >>boxed-class ]
} cleave drop
] bi ;
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: align-offset ( offset class -- offset' )
c-type-align align ;
: struct-offsets ( slots -- size )
0 [
[ c-type>> align-offset ] keep
[ (>>offset) ] [ c-type>> heap-size + ] 2bi
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] reduce ;
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: union-struct-offsets ( slots -- size )
[ 0 >>offset c-type>> heap-size ] [ max ] map-reduce ;
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: struct-align ( slots -- align )
[ c-type>> c-type-align ] [ max ] map-reduce ;
PRIVATE>
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M: struct-class c-type name>> c-type ;
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M: struct-class c-type-align c-type c-type-align ;
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M: struct-class c-type-getter c-type c-type-getter ;
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M: struct-class c-type-setter c-type c-type-setter ;
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M: struct-class c-type-boxer-quot c-type c-type-boxer-quot ;
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M: struct-class c-type-unboxer-quot c-type c-type-boxer-quot ;
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M: struct-class heap-size c-type heap-size ;
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M: struct byte-length class "struct-size" word-prop ; foldable
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! class definition
<PRIVATE
: make-struct-prototype ( class -- prototype )
[ "struct-size" word-prop <byte-array> ]
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[ memory>struct ]
[ struct-slots ] tri
[
[ initial>> ]
[ (writer-quot) ] bi
over [ swapd [ call( value struct -- ) ] curry keep ] [ 2drop ] if
] each ;
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: (struct-methods) ( class -- )
[ (define-struct-slot-values-method) ]
[ (define-clone-method) ]
bi ;
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: (struct-word-props) ( class slots size align -- )
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[
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[ "struct-slots" set-word-prop ]
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[ define-accessors ] 2bi
]
[ "struct-size" set-word-prop ]
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[ "struct-align" set-word-prop ] tri-curry*
[ tri ] 3curry
[ dup make-struct-prototype "prototype" set-word-prop ]
[ (struct-methods) ] tri ;
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: check-struct-slots ( slots -- )
[ c-type>> c-type drop ] each ;
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: redefine-struct-tuple-class ( class -- )
[ dup class? [ forget-class ] [ drop ] if ] [ struct f define-tuple-class ] bi ;
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: (define-struct-class) ( class slots offsets-quot -- )
[
empty?
[ struct-must-have-slots ]
[ redefine-struct-tuple-class ] if
]
swap '[
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make-slots dup
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[ check-struct-slots ] _ [ struct-align [ align ] keep ] tri
(struct-word-props)
]
[ drop define-struct-for-class ] 2tri ; inline
PRIVATE>
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: define-struct-class ( class slots -- )
[ struct-offsets ] (define-struct-class) ;
: define-union-struct-class ( class slots -- )
[ union-struct-offsets ] (define-struct-class) ;
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M: struct-class reset-class
[ call-next-method ] [ name>> c-types get delete-at ] bi ;
ERROR: invalid-struct-slot token ;
: struct-slot-class ( c-type -- class' )
c-type c-type-boxed-class
dup \ byte-array = [ drop \ c-ptr ] when ;
: <struct-slot-spec> ( name c-type attributes -- slot-spec )
[ struct-slot-spec new ] 3dip
[ >>name ]
[ [ >>c-type ] [ struct-slot-class >>class ] bi ]
[ [ dup empty? ] [ peel-off-attributes ] until drop ] tri* ;
<PRIVATE
: scan-c-type ( -- c-type )
scan dup "{" = [ drop \ } parse-until >array ] when ;
: parse-struct-slot ( -- slot )
scan scan-c-type \ } parse-until <struct-slot-spec> ;
: parse-struct-slots ( slots -- slots' more? )
scan {
{ ";" [ f ] }
{ "{" [ parse-struct-slot over push t ] }
{ f [ unexpected-eof ] }
[ invalid-struct-slot ]
} case ;
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: parse-struct-definition ( -- class slots )
CREATE-CLASS 8 <vector> [ parse-struct-slots ] [ ] while >array ;
PRIVATE>
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SYNTAX: STRUCT:
parse-struct-definition define-struct-class ;
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SYNTAX: UNION-STRUCT:
parse-struct-definition define-union-struct-class ;
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SYNTAX: S{
scan-word dup struct-slots parse-tuple-literal-slots parsed ;
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SYNTAX: S@
scan-word scan-object swap memory>struct parsed ;
! functor support
<PRIVATE
: scan-c-type` ( -- c-type/param )
scan dup "{" = [ drop \ } parse-until >array ] [ >string-param ] if ;
: parse-struct-slot` ( accum -- accum )
scan-string-param scan-c-type` \ } parse-until
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[ <struct-slot-spec> over push ] 3curry over push-all ;
: parse-struct-slots` ( accum -- accum more? )
scan {
{ ";" [ f ] }
{ "{" [ parse-struct-slot` t ] }
[ invalid-struct-slot ]
} case ;
PRIVATE>
FUNCTOR-SYNTAX: STRUCT:
scan-param parsed
[ 8 <vector> ] over push-all
[ parse-struct-slots` ] [ ] while
[ >array define-struct-class ] over push-all ;
USING: vocabs vocabs.loader ;
"prettyprint" vocab [ "classes.struct.prettyprint" require ] when