Add remove-complex-opera* implementation
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#lang racket
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(require "uniquify.scm")
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(provide remove-complex-opera*)
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(define (remove-complex-opera* p)
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(let ([uniq-res (uniquify p)])
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(match (cadr uniq-res)
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[`(program ,data ,exp)
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(begin
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(define initial-tmpcount (hash-ref (car uniq-res) `tmp 0))
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(define-values (new-exp bla) (rco-exp exp initial-tmpcount))
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`(program ,data ,new-exp))])))
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(define (let-binding var val exp)
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`(let ([,var ,val]) ,exp))
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(define (wrap-associations assoc-list exp)
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(if (empty? assoc-list)
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exp
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(let ([binding (car assoc-list)])
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(let-binding (car binding) (cadr binding)
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(wrap-associations (cdr assoc-list) exp)))))
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(define (rco-exp exp tmpcount)
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(match exp
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[(? fixnum?) (values exp tmpcount)]
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[(? symbol?) (values exp tmpcount)]
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[`(read) (values exp tmpcount)]
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[`(- ,e)
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(begin
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(define-values (new-exp assoc-list new-tmpcount) (rco-arg e tmpcount))
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(values (wrap-associations assoc-list `(- ,new-exp)) new-tmpcount))]
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[`(,op ,e1 ,e2)
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#:when (or (eq? op `+) (eq? op `-))
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(begin
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(define-values (new-exp1 assoc-list1 new-tmpcount1) (rco-arg e1 tmpcount))
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(define-values (new-exp2 assoc-list2 new-tmpcount) (rco-arg e2 new-tmpcount1))
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(values (wrap-associations (append assoc-list1 assoc-list2)
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`(,op ,new-exp1 ,new-exp2)) new-tmpcount))]
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[`(let ([,var ,e]) ,body)
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(define-values (new-exp assoc-list exp-tmpcount) (rco-arg e tmpcount))
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(define-values (new-body new-tmpcount) (rco-exp body exp-tmpcount))
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(values (wrap-associations assoc-list
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`(let ([,var ,new-exp]) ,new-body)) new-tmpcount)]))
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(define (get-unique-symbol tmpcount)
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(string->symbol (format "tmp.~a" tmpcount)))
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(define (let-unique-exp tmpcount value)
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(let-binding (get-unique-symbol tmpcount)
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exp
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(get-unique-symbol tmpcount)))
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(define (rco-arg exp tmpcount)
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(match exp
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[(? fixnum?) (values exp '() tmpcount)]
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[(? symbol?) (values exp '() tmpcount)]
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[`(read) (values exp '() tmpcount)]
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[`(- ,e)
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(begin
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(define-values (new-exp exp-tmpcount) (rco-exp e tmpcount))
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(define new-tmpcount (+ exp-tmpcount 1))
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(define tmpname (get-unique-symbol new-tmpcount))
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(values tmpname
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`((,tmpname (- ,new-exp)))
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new-tmpcount))]
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[`(,op ,e1 ,e2)
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#:when (or (eq? op `+) (eq? op `-))
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(begin
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(define-values (new-exp1 exp1-tmpcount) (rco-exp e1 tmpcount))
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(define-values (new-exp2 exp2-tmpcount) (rco-exp e2 exp1-tmpcount))
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(define new-tmpcount (+ exp2-tmpcount 1))
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(define tmpname (get-unique-symbol new-tmpcount))
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(values tmpname
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`((,tmpname (,op ,new-exp1 ,new-exp2)))
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new-tmpcount))]
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[`(let ([,var ,rexp]) ,body)
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(begin
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(define-values (new-exp exp-tmpcount) (rco-exp rexp tmpcount))
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(define-values (new-body body-tmpcount) (rco-exp body exp-tmpcount))
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(define new-tmpcount (+ body-tmpcount 1))
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(define tmpname (get-unique-symbol new-tmpcount))
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(values tmpname
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`((,tmpname (let ([,var ,new-exp]) ,new-body)))
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new-tmpcount))]))
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;(require racket/trace)
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;(trace rco-exp)
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;(trace rco-arg)
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@ -0,0 +1,62 @@
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#lang racket
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(require "test-util.scm")
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(require "remove-complex-oper.scm")
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(require "c2.scm")
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(define programs
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(list
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`(program ()
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(- 20))
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`(program () (+ 3 (- 20)))
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`(program () (+ (+ 3 2) (+ 4 5)))
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`(program () (let ([x (+ (- 2) 3)]) (+ x (+ 2 3))))
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`(program () (+ (let ([x (+ (- 1) 2)]) (+ x 2)) (+ 4 5)))
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`(program ()
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(let ([a 42])
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(let ([b a])
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b)))
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`(program () (let ([tmp (- 1)]) tmp))))
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(test-eq
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(remove-complex-opera* (list-ref programs 0))
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`(program () (- 20)))
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(test-eq
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(remove-complex-opera* (list-ref programs 1))
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`(program () (let ((tmp.1 (- 20))) (+ 3 tmp.1))))
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(test-eq
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(remove-complex-opera* (list-ref programs 2))
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`(program () (let ((tmp.1 (+ 3 2))) (let ((tmp.2 (+ 4 5))) (+ tmp.1 tmp.2)))))
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(test-eq
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(remove-complex-opera* (list-ref programs 3))
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`(program ()
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(let ((tmp.1 (+ (- 2) 3)))
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(let ((x.1 tmp.1))
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(let ((tmp.2 (+ 2 3)))
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(+ x.1 tmp.2))))))
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(test-eq
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(remove-complex-opera* (list-ref programs 4))
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`(program ()
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(let ((tmp.2
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(let ((x.1
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(let ((tmp.1 (- 1)))
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(+ tmp.1 2))))
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(+ x.1 2))))
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(let ((tmp.3 (+ 4 5)))
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(+ tmp.2 tmp.3)))))
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(test-eq
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(remove-complex-opera* (list-ref programs 5))
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`(program () (let([a.1 42]) (let ([b.1 a.1]) b.1))))
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(test-eq
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(remove-complex-opera* (list-ref programs 6))
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`(program () (let ((tmp.2 (- 1))) (let ((tmp.1 tmp.2)) tmp.1))))
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(for/list ([program programs] [env (build-list (length programs) (lambda (_) '()))])
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(test-eq ((interp-R1 env) program)
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((interp-R1 env) (remove-complex-opera* program))))
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