Files
sex/semen.scm
alex-eg 6ac58926d9 add initial lambda support
No closures for now, but solid groundwork is laid.
2025-09-29 16:04:05 +03:00

215 lines
6.7 KiB
Scheme

;;; Sex semantic engine
(declare (unit semen)
(uses sex-macros
sex-modules))
(import
(chicken string)
fmt
matchable ; pattern matching
srfi-1 ; list routines
srfi-69 ; hash tables
)
;;; for lambda extraction, docstring processing, macro expansion,
;;; injection of module headers, i.e. all things that rearrange code
;;; structurally, add or remove forms
;;;
;;; The algorithm: feed toplevel forms to appropriate handlers, then
;;; append their return to the resulting list. Each handler can return
;;; multiple forms, e.g. lambdas collected from a function may result
;;; in auxiliary structures and functions.
(define (semen-process raw-sex-forms)
(semen-process-rec raw-sex-forms (list)))
(define (semen-process-rec forms acc)
(cond
((null? forms) (reverse acc))
((sex-macro? (car forms))
(semen-process-rec
(semen-apply-macro (car forms) (cdr forms))
acc))
(else
(semen-process-rec (cdr forms)
(match-sex-form (car forms) acc)))))
(define (semen-apply-macro macro-form rest-forms)
;; We want to replace macro with its expansion. The problem is,
;; top-level macro can return either a single form, or a list of
;; forms, when it for example generates some aux
;; structures/functions/typedefs.
;;
;; Single form we just cons to the top of rest-forms, but multiple
;; forms have to be appended to the rest-forms.
(let ((res (apply-macro macro-form)))
(if (list? (car res))
(append res rest-forms)
(cons res rest-forms))))
(define (match-sex-form sex-form acc)
(match sex-form
((or ('fn . _)
('pub 'fn . _)
('extern 'fn . _)) (process-fn sex-form acc))
((or ('struct . _)
('pub 'struct . _)) (process-struct sex-form acc))
((or ('union . _)
('pub 'union . _)) (process-struct sex-form acc))
((or ('var . _)
('pub 'var . _)
('extern 'var . _)) (process-global-var sex-form acc))
(('include _) (cons sex-form acc))
(('import . modules)
(semen-process-imports (get-public-forms modules) acc))
((or ('defmacro . rest)
('pub 'defmacro . rest)) (defmacro rest) acc)
(else (assert #f (fmt #f "Unknown top level form " sex-form)))))
(define (semen-process-imports module-public-forms acc)
;; Recursively process imports: register public macros, cons all
;; other public things to our acc
(if (null? module-public-forms) acc
(match (car module-public-forms)
(('defmacro . rest)
(defmacro rest)
(semen-process-imports (cdr module-public-forms) acc))
(else
(semen-process-imports (cdr module-public-forms)
(cons (car module-public-forms)
acc))))))
(define (semen-macro-expand form)
"Walk the form recursively and expand all macros, until none is left."
(semen-walk-form
form
(lambda (subform env)
(if (sex-macro? subform)
(apply-macro subform)
subform))
#f))
;;; TODO: for greater inspiration, see SBCL's walk.lisp and their
;;; template system. Maybe it is worth it to implement something
;;; similar here
(define (semen-walk-form form walk-fn env)
(if (atom? form) form
(let ((new-form (walk-fn form env)))
(cond ((not (eq? form new-form))
(semen-walk-form new-form walk-fn env))
(else (recons
new-form
(semen-walk-form (car new-form) walk-fn env)
(semen-walk-form (cdr new-form) walk-fn env)))))))
(define (recons old-cons new-car new-cdr)
(if (and (eq? new-car (car old-cons))
(eq? new-cdr (cdr old-cons)))
old-cons
(cons new-car new-cdr)))
;;; Fn processing
(define (process-fn sex-fn acc)
(let* ((expanded (semen-macro-expand sex-fn))
(env (make-hash-table))
(processed
(semen-walk-form
expanded
semen-fn-walker
(begin
(set! (hash-table-ref env :fn-name) (sex-fn-name expanded))
(set! (hash-table-ref env :lambda-counter) 0)
(set! (hash-table-ref env :lambda-aux-code) (list))
env))))
(cons processed
(append (hash-table-ref env :lambda-aux-code) acc))))
(define (semen-fn-walker form env)
(if (eq? 'lambda (car form))
(let ((lambda-name (semen-make-lambda-name (hash-table-ref env :fn-name)
(hash-table-ref env :lambda-counter))))
(set! (hash-table-ref env :lambda-aux-code)
(cons (semen-make-aux-lambda-struct lambda-name form)
(hash-table-ref env :lambda-aux-code)))
(set! (hash-table-ref env :lambda-counter)
(+ (hash-table-ref env :lambda-counter) 1))
lambda-name)
form))
(define (semen-make-lambda-name enclosing-fn-name counter)
(string->symbol
(fmt #f "__lambda_" counter "_" enclosing-fn-name)))
(define (semen-make-aux-lambda-struct name form)
(match form
(('lambda ret-type arglist captures . body)
;; Captures are ignored for now, but
;; we'll need them for TODO: closures support
`(fn ,ret-type ,name ,arglist ,@body))
(else (assert #f (fmt #f "Malformed lambda " form)))))
;;; Struct
(define (process-struct sex-struct acc)
(cons sex-struct acc))
(define (process-global-var sex-var acc)
(cons sex-var acc))
;;; Utils
(define (non-empty-list? form)
(and (list? form)
(not (null? form))))
(define (sex-fn? form)
"The `form` must be toplevel.
Returns #f if the form is not a function, returns the form otherwise"
(match form
((fn . _) form)
((pub fn . _) form)
(else #f)))
(define (sex-fn-public? fn-form)
(eq? (car fn-form) 'pub))
(define (sex-fn-return-type fn-form)
(assert (sex-fn? fn-form)
(fmt #f "Form " fn-form " is not a function"))
(if (sex-fn-public? fn-form)
(third fn-form)
(second fn-form)))
(define (sex-fn-name fn-form)
(assert (sex-fn? fn-form)
(fmt #f "Form " fn-form " is not a function"))
(if (sex-fn-public? fn-form)
(fourth fn-form)
(third fn-form)))
(define (sex-fn-arglist fn-form)
(assert (sex-fn? fn-form)
(fmt #f "Form " fn-form " is not a function"))
(if (sex-fn-public? fn-form)
(fifth fn-form)
(fourth fn-form)))
(define (sex-fn-prototype fn-form)
"Returns all except body"
(assert (sex-fn? fn-form)
(fmt #f "Form " fn-form " is not a function"))
(if (sex-fn-public? fn-form)
(take fn-form 5)
(take fn-form 4)))
(define (sex-fn-body fn-form)
(assert (sex-fn? fn-form)
(fmt #f "Form " fn-form " is not a function"))
(if (sex-fn-public? fn-form)
(drop fn-form 5)
(drop fn-form 4)))