629 lines
18 KiB
Scheme
629 lines
18 KiB
Scheme
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; COPIED FROM: https://mitpress.mit.edu/sites/default/files/sicp/code/index.html
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;;;;METACIRCULAR EVALUATOR FROM CHAPTER 4 (SECTIONS 4.1.1-4.1.4) of
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;;;; STRUCTURE AND INTERPRETATION OF COMPUTER PROGRAMS
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;;;;Matches code in ch4.scm
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;;;;This file can be loaded into Scheme as a whole.
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;;;;Then you can initialize and start the evaluator by evaluating
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;;;; the two commented-out lines at the end of the file (setting up the
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;;;; global environment and starting the driver loop).
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;;;;**WARNING: Don't load this file twice (or you'll lose the primitives
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;;;; interface, due to renamings of apply).
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;;;from section 4.1.4 -- must precede def of metacircular apply
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(define apply-in-underlying-scheme apply)
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;;;SECTION 4.1.1
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(define (eval exp env)
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(cond ((self-evaluating? exp) exp)
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((variable? exp) (lookup-variable-value exp env))
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((quoted? exp) (text-of-quotation exp))
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((assignment? exp) (eval-assignment exp env))
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((definition? exp) (eval-definition exp env))
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((if? exp) (eval-if exp env))
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((lambda? exp)
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(make-procedure (lambda-parameters exp)
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(lambda-body exp)
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env))
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((begin? exp)
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(eval-sequence (begin-actions exp) env))
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((cond? exp) (eval (cond->if exp) env))
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((application? exp)
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(apply (eval (operator exp) env)
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(list-of-values (operands exp) env)))
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(else
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(error "Unknown expression type -- EVAL" exp))))
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(define (apply procedure arguments)
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(cond ((primitive-procedure? procedure)
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(apply-primitive-procedure procedure arguments))
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((compound-procedure? procedure)
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(eval-sequence
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(procedure-body procedure)
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(extend-environment
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(procedure-parameters procedure)
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arguments
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(procedure-environment procedure))))
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(else
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(error
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"Unknown procedure type -- APPLY" procedure))))
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(define (list-of-values exps env)
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(if (no-operands? exps)
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'()
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(cons (eval (first-operand exps) env)
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(list-of-values (rest-operands exps) env))))
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(define (eval-if exp env)
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(if (true? (eval (if-predicate exp) env))
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(eval (if-consequent exp) env)
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(eval (if-alternative exp) env)))
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(define (eval-sequence exps env)
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(cond ((last-exp? exps) (eval (first-exp exps) env))
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(else (eval (first-exp exps) env)
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(eval-sequence (rest-exps exps) env))))
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(define (eval-assignment exp env)
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(set-variable-value! (assignment-variable exp)
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(eval (assignment-value exp) env)
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env)
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'ok)
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(define (eval-definition exp env)
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(define-variable! (definition-variable exp)
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(eval (definition-value exp) env)
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env)
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'ok)
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;;;SECTION 4.1.2
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(define (self-evaluating? exp)
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(cond ((number? exp) true)
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((string? exp) true)
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((eq? exp #t) true)
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((eq? exp #f) true)
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(else false)))
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(define (quoted? exp)
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(tagged-list? exp 'quote))
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(define (text-of-quotation exp) (cadr exp))
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(define (tagged-list? exp tag)
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(if (pair? exp)
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(eq? (car exp) tag)
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false))
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(define (variable? exp) (symbol? exp))
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(define (assignment? exp)
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(tagged-list? exp 'set!))
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(define (assignment-variable exp) (cadr exp))
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(define (assignment-value exp) (caddr exp))
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(define (definition? exp)
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(tagged-list? exp 'define))
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(define (definition-variable exp)
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(if (symbol? (cadr exp))
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(cadr exp)
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(caadr exp)))
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(define (definition-value exp)
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(if (symbol? (cadr exp))
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(caddr exp)
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(make-lambda (cdadr exp)
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(cddr exp))))
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(define (lambda? exp) (tagged-list? exp 'lambda))
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(define (lambda-parameters exp) (cadr exp))
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(define (lambda-body exp) (cddr exp))
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(define (make-lambda parameters body)
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(cons 'lambda (cons parameters body)))
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(define (if? exp) (tagged-list? exp 'if))
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(define (if-predicate exp) (cadr exp))
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(define (if-consequent exp) (caddr exp))
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(define (if-alternative exp)
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(if (not (null? (cdddr exp)))
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(cadddr exp)
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'false))
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(define (make-if predicate consequent alternative)
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(list 'if predicate consequent alternative))
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(define (begin? exp) (tagged-list? exp 'begin))
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(define (begin-actions exp) (cdr exp))
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(define (last-exp? seq) (null? (cdr seq)))
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(define (first-exp seq) (car seq))
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(define (rest-exps seq) (cdr seq))
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(define (sequence->exp seq)
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(cond ((null? seq) seq)
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((last-exp? seq) (first-exp seq))
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(else (make-begin seq))))
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(define (make-begin seq) (cons 'begin seq))
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(define (application? exp) (pair? exp))
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(define (operator exp) (car exp))
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(define (operands exp) (cdr exp))
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(define (no-operands? ops) (null? ops))
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(define (first-operand ops) (car ops))
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(define (rest-operands ops) (cdr ops))
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(define (cond? exp) (tagged-list? exp 'cond))
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(define (cond-clauses exp) (cdr exp))
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(define (cond-else-clause? clause)
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(eq? (cond-predicate clause) 'else))
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(define (cond-predicate clause) (car clause))
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(define (cond-actions clause) (cdr clause))
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(define (cond->if exp)
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(expand-clauses (cond-clauses exp)))
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(define (expand-clauses clauses)
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(if (null? clauses)
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'false ; no else clause
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(let ((first (car clauses))
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(rest (cdr clauses)))
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(if (cond-else-clause? first)
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(if (null? rest)
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(sequence->exp (cond-actions first))
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(error "ELSE clause isn't last -- COND->IF"
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clauses))
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(make-if (cond-predicate first)
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(sequence->exp (cond-actions first))
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(expand-clauses rest))))))
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;;;SECTION 4.1.3
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(define (true? x)
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(not (eq? x false)))
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(define (false? x)
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(eq? x false))
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(define (make-procedure parameters body env)
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(list 'procedure parameters body env))
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(define (compound-procedure? p)
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(tagged-list? p 'procedure))
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(define (procedure-parameters p) (cadr p))
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(define (procedure-body p) (caddr p))
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(define (procedure-environment p) (cadddr p))
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(define (enclosing-environment env) (cdr env))
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(define (first-frame env) (car env))
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(define the-empty-environment '())
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(define (make-frame variables values)
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(cons variables values))
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(define (frame-variables frame) (car frame))
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(define (frame-values frame) (cdr frame))
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(define (add-binding-to-frame! var val frame)
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(set-car! frame (cons var (car frame)))
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(set-cdr! frame (cons val (cdr frame))))
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(define (extend-environment vars vals base-env)
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(if (= (length vars) (length vals))
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(cons (make-frame vars vals) base-env)
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(if (< (length vars) (length vals))
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(error "Too many arguments supplied" vars vals)
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(error "Too few arguments supplied" vars vals))))
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(define (lookup-variable-value var env)
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(define (env-loop env)
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(define (scan vars vals)
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(cond ((null? vars)
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(env-loop (enclosing-environment env)))
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((eq? var (car vars))
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(car vals))
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(else (scan (cdr vars) (cdr vals)))))
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(if (eq? env the-empty-environment)
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(error "Unbound variable" var)
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(let ((frame (first-frame env)))
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(scan (frame-variables frame)
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(frame-values frame)))))
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(env-loop env))
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(define (set-variable-value! var val env)
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(define (env-loop env)
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(define (scan vars vals)
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(cond ((null? vars)
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(env-loop (enclosing-environment env)))
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((eq? var (car vars))
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(set-car! vals val))
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(else (scan (cdr vars) (cdr vals)))))
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(if (eq? env the-empty-environment)
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(error "Unbound variable -- SET!" var)
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(let ((frame (first-frame env)))
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(scan (frame-variables frame)
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(frame-values frame)))))
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(env-loop env))
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(define (define-variable! var val env)
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(let ((frame (first-frame env)))
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(define (scan vars vals)
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(cond ((null? vars)
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(add-binding-to-frame! var val frame))
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((eq? var (car vars))
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(set-car! vals val))
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(else (scan (cdr vars) (cdr vals)))))
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(scan (frame-variables frame)
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(frame-values frame))))
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;;;SECTION 4.1.4
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(define (setup-environment)
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(let ((initial-env
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(extend-environment (primitive-procedure-names)
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(primitive-procedure-objects)
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the-empty-environment)))
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(define-variable! 'true true initial-env)
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(define-variable! 'false false initial-env)
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initial-env))
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;[do later] (define the-global-environment (setup-environment))
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(define (primitive-procedure? proc)
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(tagged-list? proc 'primitive))
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(define (primitive-implementation proc) (cadr proc))
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(define primitive-procedures
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(list (list 'car car)
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(list 'cdr cdr)
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(list 'cons cons)
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(list 'null? null?)
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;; more primitives
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))
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(define (primitive-procedure-names)
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(map car
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primitive-procedures))
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(define (primitive-procedure-objects)
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(map (lambda (proc) (list 'primitive (cadr proc)))
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primitive-procedures))
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;[moved to start of file] (define apply-in-underlying-scheme apply)
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(define (apply-primitive-procedure proc args)
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(apply-in-underlying-scheme
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(primitive-implementation proc) args))
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(define input-prompt ";;; M-Eval input:")
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(define output-prompt ";;; M-Eval value:")
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(define (driver-loop)
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(prompt-for-input input-prompt)
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(let ((input (read)))
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(let ((output (eval input the-global-environment)))
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(announce-output output-prompt)
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(user-print output)))
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(driver-loop))
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(define (prompt-for-input string)
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(newline) (newline) (display string) (newline))
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(define (announce-output string)
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(newline) (display string) (newline))
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(define (user-print object)
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|||
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(if (compound-procedure? object)
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|
(display (list 'compound-procedure
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(procedure-parameters object)
|
|||
|
(procedure-body object)
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|||
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'<procedure-env>))
|
|||
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(display object)))
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|||
|
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|||
|
;;;Following are commented out so as not to be evaluated when
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|||
|
;;; the file is loaded.
|
|||
|
;;(define the-global-environment (setup-environment))
|
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|
;;(driver-loop)
|
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|
|||
|
'METACIRCULAR-EVALUATOR-LOADED
|
|||
|
|
|||
|
|
|||
|
;;;Code from SECTION 4.3.3, modified as needed to run it
|
|||
|
|
|||
|
(define (amb? exp) (tagged-list? exp 'amb))
|
|||
|
(define (amb-choices exp) (cdr exp))
|
|||
|
|
|||
|
;; analyze from 4.1.6, with clause from 4.3.3 added
|
|||
|
;; and also support for Let
|
|||
|
(define (analyze exp)
|
|||
|
(cond ((self-evaluating? exp)
|
|||
|
(analyze-self-evaluating exp))
|
|||
|
((quoted? exp) (analyze-quoted exp))
|
|||
|
((variable? exp) (analyze-variable exp))
|
|||
|
((assignment? exp) (analyze-assignment exp))
|
|||
|
((definition? exp) (analyze-definition exp))
|
|||
|
((if? exp) (analyze-if exp))
|
|||
|
((lambda? exp) (analyze-lambda exp))
|
|||
|
((begin? exp) (analyze-sequence (begin-actions exp)))
|
|||
|
((cond? exp) (analyze (cond->if exp)))
|
|||
|
((let? exp) (analyze (let->combination exp))) ;**
|
|||
|
((amb? exp) (analyze-amb exp)) ;**
|
|||
|
((application? exp) (analyze-application exp))
|
|||
|
(else
|
|||
|
(error "Unknown expression type -- ANALYZE" exp))))
|
|||
|
|
|||
|
(define (ambeval exp env succeed fail)
|
|||
|
((analyze exp) env succeed fail))
|
|||
|
|
|||
|
;;;Simple expressions
|
|||
|
|
|||
|
(define (analyze-self-evaluating exp)
|
|||
|
(lambda (env succeed fail)
|
|||
|
(succeed exp fail)))
|
|||
|
|
|||
|
(define (analyze-quoted exp)
|
|||
|
(let ((qval (text-of-quotation exp)))
|
|||
|
(lambda (env succeed fail)
|
|||
|
(succeed qval fail))))
|
|||
|
|
|||
|
(define (analyze-variable exp)
|
|||
|
(lambda (env succeed fail)
|
|||
|
(succeed (lookup-variable-value exp env)
|
|||
|
fail)))
|
|||
|
|
|||
|
(define (analyze-lambda exp)
|
|||
|
(let ((vars (lambda-parameters exp))
|
|||
|
(bproc (analyze-sequence (lambda-body exp))))
|
|||
|
(lambda (env succeed fail)
|
|||
|
(succeed (make-procedure vars bproc env)
|
|||
|
fail))))
|
|||
|
|
|||
|
;;;Conditionals and sequences
|
|||
|
|
|||
|
(define (analyze-if exp)
|
|||
|
(let ((pproc (analyze (if-predicate exp)))
|
|||
|
(cproc (analyze (if-consequent exp)))
|
|||
|
(aproc (analyze (if-alternative exp))))
|
|||
|
(lambda (env succeed fail)
|
|||
|
(pproc env
|
|||
|
;; success continuation for evaluating the predicate
|
|||
|
;; to obtain pred-value
|
|||
|
(lambda (pred-value fail2)
|
|||
|
(if (true? pred-value)
|
|||
|
(cproc env succeed fail2)
|
|||
|
(aproc env succeed fail2)))
|
|||
|
;; failure continuation for evaluating the predicate
|
|||
|
fail))))
|
|||
|
|
|||
|
(define (analyze-sequence exps)
|
|||
|
(define (sequentially a b)
|
|||
|
(lambda (env succeed fail)
|
|||
|
(a env
|
|||
|
;; success continuation for calling a
|
|||
|
(lambda (a-value fail2)
|
|||
|
(b env succeed fail2))
|
|||
|
;; failure continuation for calling a
|
|||
|
fail)))
|
|||
|
(define (loop first-proc rest-procs)
|
|||
|
(if (null? rest-procs)
|
|||
|
first-proc
|
|||
|
(loop (sequentially first-proc (car rest-procs))
|
|||
|
(cdr rest-procs))))
|
|||
|
(let ((procs (map analyze exps)))
|
|||
|
(if (null? procs)
|
|||
|
(error "Empty sequence -- ANALYZE"))
|
|||
|
(loop (car procs) (cdr procs))))
|
|||
|
|
|||
|
;;;Definitions and assignments
|
|||
|
|
|||
|
(define (analyze-definition exp)
|
|||
|
(let ((var (definition-variable exp))
|
|||
|
(vproc (analyze (definition-value exp))))
|
|||
|
(lambda (env succeed fail)
|
|||
|
(vproc env
|
|||
|
(lambda (val fail2)
|
|||
|
(define-variable! var val env)
|
|||
|
(succeed 'ok fail2))
|
|||
|
fail))))
|
|||
|
|
|||
|
(define (analyze-assignment exp)
|
|||
|
(let ((var (assignment-variable exp))
|
|||
|
(vproc (analyze (assignment-value exp))))
|
|||
|
(lambda (env succeed fail)
|
|||
|
(vproc env
|
|||
|
(lambda (val fail2) ; *1*
|
|||
|
(let ((old-value
|
|||
|
(lookup-variable-value var env)))
|
|||
|
(set-variable-value! var val env)
|
|||
|
(succeed 'ok
|
|||
|
(lambda () ; *2*
|
|||
|
(set-variable-value! var
|
|||
|
old-value
|
|||
|
env)
|
|||
|
(fail2)))))
|
|||
|
fail))))
|
|||
|
|
|||
|
;;;Procedure applications
|
|||
|
|
|||
|
(define (analyze-application exp)
|
|||
|
(let ((fproc (analyze (operator exp)))
|
|||
|
(aprocs (map analyze (operands exp))))
|
|||
|
(lambda (env succeed fail)
|
|||
|
(fproc env
|
|||
|
(lambda (proc fail2)
|
|||
|
(get-args aprocs
|
|||
|
env
|
|||
|
(lambda (args fail3)
|
|||
|
(execute-application
|
|||
|
proc args succeed fail3))
|
|||
|
fail2))
|
|||
|
fail))))
|
|||
|
|
|||
|
(define (get-args aprocs env succeed fail)
|
|||
|
(if (null? aprocs)
|
|||
|
(succeed '() fail)
|
|||
|
((car aprocs) env
|
|||
|
;; success continuation for this aproc
|
|||
|
(lambda (arg fail2)
|
|||
|
(get-args (cdr aprocs)
|
|||
|
env
|
|||
|
;; success continuation for recursive
|
|||
|
;; call to get-args
|
|||
|
(lambda (args fail3)
|
|||
|
(succeed (cons arg args)
|
|||
|
fail3))
|
|||
|
fail2))
|
|||
|
fail)))
|
|||
|
|
|||
|
(define (execute-application proc args succeed fail)
|
|||
|
(cond ((primitive-procedure? proc)
|
|||
|
(succeed (apply-primitive-procedure proc args)
|
|||
|
fail))
|
|||
|
((compound-procedure? proc)
|
|||
|
((procedure-body proc)
|
|||
|
(extend-environment (procedure-parameters proc)
|
|||
|
args
|
|||
|
(procedure-environment proc))
|
|||
|
succeed
|
|||
|
fail))
|
|||
|
(else
|
|||
|
(error
|
|||
|
"Unknown procedure type -- EXECUTE-APPLICATION"
|
|||
|
proc))))
|
|||
|
|
|||
|
;;;amb expressions
|
|||
|
|
|||
|
(define (analyze-amb exp)
|
|||
|
(let ((cprocs (map analyze (amb-choices exp))))
|
|||
|
(lambda (env succeed fail)
|
|||
|
(define (try-next choices)
|
|||
|
(if (null? choices)
|
|||
|
(fail)
|
|||
|
((car choices) env
|
|||
|
succeed
|
|||
|
(lambda ()
|
|||
|
(try-next (cdr choices))))))
|
|||
|
(try-next cprocs))))
|
|||
|
|
|||
|
;;;Driver loop
|
|||
|
|
|||
|
(define input-prompt ";;; Amb-Eval input:")
|
|||
|
(define output-prompt ";;; Amb-Eval value:")
|
|||
|
|
|||
|
(define (driver-loop)
|
|||
|
(define (internal-loop try-again)
|
|||
|
(prompt-for-input input-prompt)
|
|||
|
(let ((input (read)))
|
|||
|
(if (eq? input 'try-again)
|
|||
|
(try-again)
|
|||
|
(begin
|
|||
|
(newline)
|
|||
|
(display ";;; Starting a new problem ")
|
|||
|
(ambeval input
|
|||
|
the-global-environment
|
|||
|
;; ambeval success
|
|||
|
(lambda (val next-alternative)
|
|||
|
(announce-output output-prompt)
|
|||
|
(user-print val)
|
|||
|
(internal-loop next-alternative))
|
|||
|
;; ambeval failure
|
|||
|
(lambda ()
|
|||
|
(announce-output
|
|||
|
";;; There are no more values of")
|
|||
|
(user-print input)
|
|||
|
(driver-loop)))))))
|
|||
|
(internal-loop
|
|||
|
(lambda ()
|
|||
|
(newline)
|
|||
|
(display ";;; There is no current problem")
|
|||
|
(driver-loop))))
|
|||
|
|
|||
|
|
|||
|
|
|||
|
;;; Support for Let (as noted in footnote 56, p.428)
|
|||
|
|
|||
|
(define (let? exp) (tagged-list? exp 'let))
|
|||
|
(define (let-bindings exp) (cadr exp))
|
|||
|
(define (let-body exp) (cddr exp))
|
|||
|
|
|||
|
(define (let-var binding) (car binding))
|
|||
|
(define (let-val binding) (cadr binding))
|
|||
|
|
|||
|
(define (make-combination operator operands) (cons operator operands))
|
|||
|
|
|||
|
(define (let->combination exp)
|
|||
|
;;make-combination defined in earlier exercise
|
|||
|
(let ((bindings (let-bindings exp)))
|
|||
|
(make-combination (make-lambda (map let-var bindings)
|
|||
|
(let-body exp))
|
|||
|
(map let-val bindings))))
|
|||
|
|
|||
|
|
|||
|
|
|||
|
;; A longer list of primitives -- suitable for running everything in 4.3
|
|||
|
;; Overrides the list in ch4-mceval.scm
|
|||
|
;; Has Not to support Require; various stuff for code in text (including
|
|||
|
;; support for Prime?); integer? and sqrt for exercise code;
|
|||
|
;; eq? for ex. solution
|
|||
|
|
|||
|
(define primitive-procedures
|
|||
|
(list (list 'car car)
|
|||
|
(list 'cdr cdr)
|
|||
|
(list 'cons cons)
|
|||
|
(list 'null? null?)
|
|||
|
(list 'list list)
|
|||
|
(list 'memq memq)
|
|||
|
(list 'member member)
|
|||
|
(list 'not not)
|
|||
|
(list 'display display)
|
|||
|
(list '+ +)
|
|||
|
(list '- -)
|
|||
|
(list '* *)
|
|||
|
(list '= =)
|
|||
|
(list '> >)
|
|||
|
(list '>= >=)
|
|||
|
(list '<= <=)
|
|||
|
(list 'abs abs)
|
|||
|
(list 'remainder remainder)
|
|||
|
(list 'integer? integer?)
|
|||
|
(list 'sqrt sqrt)
|
|||
|
(list 'eq? eq?)
|
|||
|
;; more primitives
|
|||
|
))
|
|||
|
|
|||
|
|
|||
|
'AMB-EVALUATOR-LOADED
|