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(define-module (srfi srfi-41) |
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#:use-module (srfi srfi-1) |
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#:use-module (srfi srfi-8) |
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#:use-module (srfi srfi-9) |
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#:use-module (srfi srfi-9 gnu) |
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#:use-module (srfi srfi-26) |
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#:use-module (ice-9 match) |
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#:export (stream-null stream-cons stream? stream-null? stream-pair? |
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stream-car stream-cdr stream-lambda define-stream |
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list->stream port->stream stream stream->list stream-append |
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stream-concat stream-constant stream-drop stream-drop-while |
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stream-filter stream-fold stream-for-each stream-from |
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stream-iterate stream-length stream-let stream-map |
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stream-match stream-of stream-range stream-ref stream-reverse |
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stream-scan stream-take stream-take-while stream-unfold |
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stream-unfolds stream-zip)) |
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(cond-expand-provide (current-module) '(srfi-41)) |
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(define-syntax-rule (must pred obj func msg args ...) |
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(let ((item obj)) |
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(unless (pred item) |
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(throw 'wrong-type-arg func msg (list args ...) (list item))))) |
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(define-syntax-rule (must-not pred obj func msg args ...) |
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(let ((item obj)) |
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(when (pred item) |
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(throw 'wrong-type-arg func msg (list args ...) (list item))))) |
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(define-syntax-rule (must-every pred objs func msg args ...) |
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(let ((flunk (remove pred objs))) |
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(unless (null? flunk) |
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(throw 'wrong-type-arg func msg (list args ...) flunk)))) |
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(define-syntax-rule (first-value expr) |
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(receive (first . _) expr |
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first)) |
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(define-syntax-rule (second-value expr) |
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(receive (first second . _) expr |
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second)) |
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(define-syntax-rule (third-value expr) |
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(receive (first second third . _) expr |
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third)) |
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(define-syntax define-syntax* |
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(syntax-rules () |
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((_ (name . args) body ...) |
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(define-syntax name (lambda* args body ...))) |
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((_ name syntax) |
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(define-syntax name syntax)))) |
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(define-record-type stream-promise (make-stream-promise val) stream-promise? |
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(val stream-promise-val stream-promise-val-set!)) |
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(define-record-type stream-value (make-stream-value tag proc) stream-value? |
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(tag stream-value-tag stream-value-tag-set!) |
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(proc stream-value-proc stream-value-proc-set!)) |
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(define-syntax-rule (stream-lazy exp) |
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(make-stream-promise (make-stream-value 'lazy (lambda () exp)))) |
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(define (stream-eager x) |
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(make-stream-promise (make-stream-value 'eager x))) |
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(define-syntax-rule (stream-delay exp) |
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(stream-lazy (stream-eager exp))) |
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(define (stream-force promise) |
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(let ((content (stream-promise-val promise))) |
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(case (stream-value-tag content) |
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((eager) (stream-value-proc content)) |
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((lazy) (let* ((promise* ((stream-value-proc content))) |
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(content (stream-promise-val promise))) |
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(if (not (eqv? (stream-value-tag content) 'eager)) |
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(begin (stream-value-tag-set! content |
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(stream-value-tag (stream-promise-val promise*))) |
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(stream-value-proc-set! content |
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(stream-value-proc (stream-promise-val promise*))) |
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(stream-promise-val-set! promise* content))) |
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(stream-force promise)))))) |
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(define stream? stream-promise?) |
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(define %stream-null (cons 'stream 'null)) |
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(define stream-null (stream-eager %stream-null)) |
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(define (stream-null? obj) |
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(and (stream-promise? obj) |
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(eqv? (stream-force obj) %stream-null))) |
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(define-record-type stream-pare (make-stream-pare kar kdr) stream-pare? |
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(kar stream-kar) |
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(kdr stream-kdr)) |
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(define (stream-pair? obj) |
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(and (stream-promise? obj) (stream-pare? (stream-force obj)))) |
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(define-syntax-rule (stream-cons obj strm) |
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(stream-eager (make-stream-pare (stream-delay obj) (stream-lazy strm)))) |
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(define (stream-car strm) |
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(must stream? strm 'stream-car "non-stream") |
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(let ((pare (stream-force strm))) |
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(must stream-pare? pare 'stream-car "null stream") |
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(stream-force (stream-kar pare)))) |
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(define (stream-cdr strm) |
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(must stream? strm 'stream-cdr "non-stream") |
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(let ((pare (stream-force strm))) |
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(must stream-pare? pare 'stream-cdr "null stream") |
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(stream-kdr pare))) |
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(define-syntax-rule (stream-lambda formals body0 body1 ...) |
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(lambda formals (stream-lazy (begin body0 body1 ...)))) |
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(define* (stream-promise-visit promise #:key on-eager on-lazy) |
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(define content (stream-promise-val promise)) |
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(case (stream-value-tag content) |
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((eager) (on-eager (stream-value-proc content))) |
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((lazy) (on-lazy (stream-value-proc content))))) |
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(set-record-type-printer! stream-promise |
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(lambda (strm port) |
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(display "#<stream" port) |
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(let loop ((strm strm)) |
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(stream-promise-visit strm |
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#:on-eager (lambda (pare) |
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(cond ((eq? pare %stream-null) |
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(write-char #\> port)) |
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(else |
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(write-char #\space port) |
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(stream-promise-visit (stream-kar pare) |
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#:on-eager (cut write <> port) |
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#:on-lazy (lambda (_) (write-char #\? port))) |
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(loop (stream-kdr pare))))) |
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#:on-lazy (lambda (_) (display " ...>" port)))))) |
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(define-syntax-rule (define-stream (name . formal) body0 body1 ...) |
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(define name (stream-lambda formal body0 body1 ...))) |
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(define-syntax-rule (stream-let tag ((name val) ...) body1 body2 ...) |
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((letrec ((tag (stream-lambda (name ...) body1 body2 ...))) tag) val ...)) |
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(define (list->stream objs) |
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(define (list? x) |
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(or (proper-list? x) (circular-list? x))) |
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(must list? objs 'list->stream "non-list argument") |
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(stream-let recur ((objs objs)) |
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(if (null? objs) stream-null |
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(stream-cons (car objs) (recur (cdr objs)))))) |
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(define* (port->stream #:optional (port (current-input-port))) |
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(must input-port? port 'port->stream "non-input-port argument") |
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(stream-let recur () |
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(let ((c (read-char port))) |
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(if (eof-object? c) stream-null |
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(stream-cons c (recur)))))) |
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(define-syntax stream |
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(syntax-rules () |
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((_) stream-null) |
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((_ x y ...) (stream-cons x (stream y ...))))) |
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(define-inlinable (stream-fold-aux proc base strm limit) |
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(do ((val base (and proc (proc val (stream-car strm)))) |
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(strm strm (stream-cdr strm)) |
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(limit limit (and limit (1- limit)))) |
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((or (and limit (zero? limit)) (stream-null? strm)) |
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(values val strm limit)))) |
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(define stream->list |
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(case-lambda |
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((strm) (stream->list #f strm)) |
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((n strm) |
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(must stream? strm 'stream->list "non-stream argument") |
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(when n |
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(must integer? n 'stream->list "non-integer count") |
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(must exact? n 'stream->list "inexact count") |
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(must-not negative? n 'stream->list "negative count")) |
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(reverse! (first-value (stream-fold-aux xcons '() strm n)))))) |
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(define (stream-append . strms) |
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(must-every stream? strms 'stream-append "non-stream argument") |
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(stream-let recur ((strms strms)) |
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(if (null? strms) stream-null |
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(let ((strm (car strms))) |
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(if (stream-null? strm) (recur (cdr strms)) |
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(stream-cons (stream-car strm) |
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(recur (cons (stream-cdr strm) (cdr strms))))))))) |
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(define (stream-concat strms) |
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(must stream? strms 'stream-concat "non-stream argument") |
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(stream-let recur ((strms strms)) |
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(if (stream-null? strms) stream-null |
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(let ((strm (stream-car strms))) |
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(must stream? strm 'stream-concat "non-stream object in input stream") |
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(if (stream-null? strm) (recur (stream-cdr strms)) |
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(stream-cons (stream-car strm) |
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(recur (stream-cons (stream-cdr strm) |
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(stream-cdr strms))))))))) |
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(define stream-constant |
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(case-lambda |
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(() stream-null) |
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(objs (list->stream (apply circular-list objs))))) |
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(define-syntax* (stream-do x) |
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(define (end x) |
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(syntax-case x () |
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(() #'(if #f #f)) |
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((result) #'result) |
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((result ...) #'(begin result ...)))) |
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(define (var-step v s) |
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(syntax-case s () |
|
(() v) |
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((e) #'e) |
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(_ (syntax-violation 'stream-do "bad step expression" x s)))) |
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(syntax-case x () |
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((_ ((var init . step) ...) |
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(test result ...) |
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expr ...) |
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(with-syntax ((result (end #'(result ...))) |
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((step ...) (map var-step #'(var ...) #'(step ...)))) |
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#'(stream-let loop ((var init) ...) |
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(if test result |
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(begin |
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expr ... |
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(loop step ...)))))))) |
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(define (stream-drop n strm) |
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(must integer? n 'stream-drop "non-integer argument") |
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(must exact? n 'stream-drop "inexact argument") |
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(must-not negative? n 'stream-drop "negative argument") |
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(must stream? strm 'stream-drop "non-stream argument") |
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(second-value (stream-fold-aux #f #f strm n))) |
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(define (stream-drop-while pred? strm) |
|
(must procedure? pred? 'stream-drop-while "non-procedural argument") |
|
(must stream? strm 'stream-drop-while "non-stream argument") |
|
(stream-do ((strm strm (stream-cdr strm))) |
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((or (stream-null? strm) (not (pred? (stream-car strm)))) strm))) |
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(define (stream-filter pred? strm) |
|
(must procedure? pred? 'stream-filter "non-procedural argument") |
|
(must stream? strm 'stream-filter "non-stream argument") |
|
(stream-let recur ((strm strm)) |
|
(cond ((stream-null? strm) stream-null) |
|
((pred? (stream-car strm)) |
|
(stream-cons (stream-car strm) (recur (stream-cdr strm)))) |
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(else (recur (stream-cdr strm)))))) |
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(define (stream-fold proc base strm) |
|
(must procedure? proc 'stream-fold "non-procedural argument") |
|
(must stream? strm 'stream-fold "non-stream argument") |
|
(first-value (stream-fold-aux proc base strm #f))) |
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|
(define stream-for-each |
|
(case-lambda |
|
((proc strm) |
|
(must procedure? proc 'stream-for-each "non-procedural argument") |
|
(must stream? strm 'stream-for-each "non-stream argument") |
|
(do ((strm strm (stream-cdr strm))) |
|
((stream-null? strm)) |
|
(proc (stream-car strm)))) |
|
((proc strm . rest) |
|
(let ((strms (cons strm rest))) |
|
(must procedure? proc 'stream-for-each "non-procedural argument") |
|
(must-every stream? strms 'stream-for-each "non-stream argument") |
|
(do ((strms strms (map stream-cdr strms))) |
|
((any stream-null? strms)) |
|
(apply proc (map stream-car strms))))))) |
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|
(define* (stream-from first #:optional (step 1)) |
|
(must number? first 'stream-from "non-numeric starting number") |
|
(must number? step 'stream-from "non-numeric step size") |
|
(stream-let recur ((first first)) |
|
(stream-cons first (recur (+ first step))))) |
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|
(define (stream-iterate proc base) |
|
(must procedure? proc 'stream-iterate "non-procedural argument") |
|
(stream-let recur ((base base)) |
|
(stream-cons base (recur (proc base))))) |
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|
(define (stream-length strm) |
|
(must stream? strm 'stream-length "non-stream argument") |
|
(- -1 (third-value (stream-fold-aux #f #f strm -1)))) |
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|
(define stream-map |
|
(case-lambda |
|
((proc strm) |
|
(must procedure? proc 'stream-map "non-procedural argument") |
|
(must stream? strm 'stream-map "non-stream argument") |
|
(stream-let recur ((strm strm)) |
|
(if (stream-null? strm) stream-null |
|
(stream-cons (proc (stream-car strm)) |
|
(recur (stream-cdr strm)))))) |
|
((proc strm . rest) |
|
(let ((strms (cons strm rest))) |
|
(must procedure? proc 'stream-map "non-procedural argument") |
|
(must-every stream? strms 'stream-map "non-stream argument") |
|
(stream-let recur ((strms strms)) |
|
(if (any stream-null? strms) stream-null |
|
(stream-cons (apply proc (map stream-car strms)) |
|
(recur (map stream-cdr strms))))))))) |
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|
(define-syntax* (stream-match x) |
|
(define (make-matcher x) |
|
(syntax-case x () |
|
(() #'(? stream-null?)) |
|
(rest (identifier? #'rest) #'rest) |
|
((var . rest) (identifier? #'var) |
|
(with-syntax ((next (make-matcher #'rest))) |
|
#'(? (negate stream-null?) |
|
(= stream-car var) |
|
(= stream-cdr next)))))) |
|
(define (make-guarded x fail) |
|
(syntax-case (list x fail) () |
|
(((expr) _) #'expr) |
|
(((guard expr) fail) #'(if guard expr (fail))))) |
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|
|
(syntax-case x () |
|
((_ strm-expr (pat . expr) ...) |
|
(with-syntax (((fail ...) (generate-temporaries #'(pat ...)))) |
|
(with-syntax (((matcher ...) (map make-matcher #'(pat ...))) |
|
((expr ...) (map make-guarded #'(expr ...) #'(fail ...)))) |
|
#'(let ((strm strm-expr)) |
|
(must stream? strm 'stream-match "non-stream argument") |
|
(match strm (matcher (=> fail) expr) ...))))))) |
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|
(define-syntax-rule (stream-of expr rest ...) |
|
(stream-of-aux expr stream-null rest ...)) |
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|
|
(define-syntax stream-of-aux |
|
(syntax-rules (in is) |
|
((_ expr base) |
|
(stream-cons expr base)) |
|
((_ expr base (var in stream) rest ...) |
|
(stream-let recur ((strm stream)) |
|
(if (stream-null? strm) base |
|
(let ((var (stream-car strm))) |
|
(stream-of-aux expr (recur (stream-cdr strm)) rest ...))))) |
|
((_ expr base (var is exp) rest ...) |
|
(let ((var exp)) (stream-of-aux expr base rest ...))) |
|
((_ expr base pred? rest ...) |
|
(if pred? (stream-of-aux expr base rest ...) base)))) |
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|
(define* (stream-range first past #:optional step) |
|
(must number? first 'stream-range "non-numeric starting number") |
|
(must number? past 'stream-range "non-numeric ending number") |
|
(when step |
|
(must number? step 'stream-range "non-numeric step size")) |
|
(let* ((step (or step (if (< first past) 1 -1))) |
|
(lt? (if (< 0 step) < >))) |
|
(stream-let recur ((first first)) |
|
(if (lt? first past) |
|
(stream-cons first (recur (+ first step))) |
|
stream-null)))) |
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|
|
(define (stream-ref strm n) |
|
(must stream? strm 'stream-ref "non-stream argument") |
|
(must integer? n 'stream-ref "non-integer argument") |
|
(must exact? n 'stream-ref "inexact argument") |
|
(must-not negative? n 'stream-ref "negative argument") |
|
(let ((res (stream-drop n strm))) |
|
(must-not stream-null? res 'stream-ref "beyond end of stream") |
|
(stream-car res))) |
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|
|
(define (stream-reverse strm) |
|
(must stream? strm 'stream-reverse "non-stream argument") |
|
(stream-do ((strm strm (stream-cdr strm)) |
|
(rev stream-null (stream-cons (stream-car strm) rev))) |
|
((stream-null? strm) rev))) |
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|
|
(define (stream-scan proc base strm) |
|
(must procedure? proc 'stream-scan "non-procedural argument") |
|
(must stream? strm 'stream-scan "non-stream argument") |
|
(stream-let recur ((base base) (strm strm)) |
|
(if (stream-null? strm) (stream base) |
|
(stream-cons base (recur (proc base (stream-car strm)) |
|
(stream-cdr strm)))))) |
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|
(define (stream-take n strm) |
|
(must stream? strm 'stream-take "non-stream argument") |
|
(must integer? n 'stream-take "non-integer argument") |
|
(must exact? n 'stream-take "inexact argument") |
|
(must-not negative? n 'stream-take "negative argument") |
|
(stream-let recur ((n n) (strm strm)) |
|
(if (or (zero? n) (stream-null? strm)) stream-null |
|
(stream-cons (stream-car strm) (recur (1- n) (stream-cdr strm)))))) |
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|
|
(define (stream-take-while pred? strm) |
|
(must procedure? pred? 'stream-take-while "non-procedural argument") |
|
(must stream? strm 'stream-take-while "non-stream argument") |
|
(stream-let recur ((strm strm)) |
|
(cond ((stream-null? strm) stream-null) |
|
((pred? (stream-car strm)) |
|
(stream-cons (stream-car strm) (recur (stream-cdr strm)))) |
|
(else stream-null)))) |
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|
(define (stream-unfold mapper pred? generator base) |
|
(must procedure? mapper 'stream-unfold "non-procedural mapper") |
|
(must procedure? pred? 'stream-unfold "non-procedural pred?") |
|
(must procedure? generator 'stream-unfold "non-procedural generator") |
|
(stream-let recur ((base base)) |
|
(if (pred? base) |
|
(stream-cons (mapper base) (recur (generator base))) |
|
stream-null))) |
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|
|
(define (stream-unfolds gen seed) |
|
(define-stream (generator-stream seed) |
|
(receive (next . items) (gen seed) |
|
(stream-cons (list->vector items) (generator-stream next)))) |
|
(define-stream (make-result-stream genstrm index) |
|
(define head (vector-ref (stream-car genstrm) index)) |
|
(define-stream (tail) (make-result-stream (stream-cdr genstrm) index)) |
|
(match head |
|
(() stream-null) |
|
(#f (tail)) |
|
((item) (stream-cons item (tail))) |
|
((? list? items) (stream-append (list->stream items) (tail))))) |
|
|
|
(must procedure? gen 'stream-unfolds "non-procedural argument") |
|
(let ((genstrm (generator-stream seed))) |
|
(apply values (list-tabulate (vector-length (stream-car genstrm)) |
|
(cut make-result-stream genstrm <>))))) |
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|
(define (stream-zip strm . rest) |
|
(let ((strms (cons strm rest))) |
|
(must-every stream? strms 'stream-zip "non-stream argument") |
|
(stream-let recur ((strms strms)) |
|
(if (any stream-null? strms) stream-null |
|
(stream-cons (map stream-car strms) (recur (map stream-cdr strms))))))) |
|
|