map may take multiple list
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@ -131,11 +131,27 @@
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(cons (car obj)
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(cons (car obj)
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(list-copy (cdr obj)))))
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(list-copy (cdr obj)))))
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(define (map f list)
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(define (every pred list)
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(if (null? list)
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#t
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(if (pred (car list))
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(every pred (cdr list))
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#f)))
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(define (map f list . lists)
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(define (single-map f list)
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(if (null? list)
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(if (null? list)
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'()
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'()
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(cons (f (car list))
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(cons (f (car list))
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(map f (cdr list)))))
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(map f (cdr list)))))
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(define (multiple-map f lists)
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(if (every pair? lists)
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(cons (apply f (single-map car lists))
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(multiple-map f (single-map cdr lists)))
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'()))
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(if (null? lists)
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(single-map f list)
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(multiple-map f (cons list lists))))
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(define-macro (let bindings . body)
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(define-macro (let bindings . body)
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(if (symbol? bindings)
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(if (symbol? bindings)
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@ -331,24 +347,12 @@
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;;; 6.3 Booleans
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;;; 6.3 Booleans
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(define (boolean=? . objs)
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(define (boolean=? . objs)
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(define (every pred list)
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(if (null? list)
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#t
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(if (pred (car list))
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(every pred (cdr list))
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#f)))
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(or (every (lambda (x) (eq? x #t)) objs)
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(or (every (lambda (x) (eq? x #t)) objs)
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(every (lambda (x) (eq? x #f)) objs)))
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(every (lambda (x) (eq? x #f)) objs)))
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;;; 6.5. Symbols
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;;; 6.5. Symbols
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(define (symbol=? . objs)
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(define (symbol=? . objs)
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(define (every pred list)
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(if (null? list)
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#t
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(if (pred (car list))
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(every pred (cdr list))
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#f)))
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(let ((sym (car objs)))
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(let ((sym (car objs)))
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(if (symbol? sym)
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(if (symbol? sym)
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(every (lambda (x)
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(every (lambda (x)
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