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* module/ice-9/eval.scm (primitive-eval): Return #<unspecified> for definitions. Previously the variable object was returned. * test-suite/tests/eval.test (evaluator): Add test. * NEWS: Add news entry.
522 lines
15 KiB
Scheme
522 lines
15 KiB
Scheme
;;;; eval.test --- tests guile's evaluator -*- scheme -*-
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;;;; Copyright (C) 2000, 2001, 2006, 2007, 2009, 2010, 2011, 2012 Free Software Foundation, Inc.
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;;;;
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;;;; This library is free software; you can redistribute it and/or
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;;;; modify it under the terms of the GNU Lesser General Public
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;;;; License as published by the Free Software Foundation; either
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;;;; version 3 of the License, or (at your option) any later version.
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;;;;
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;;;; This library is distributed in the hope that it will be useful,
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;;;; but WITHOUT ANY WARRANTY; without even the implied warranty of
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;;;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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;;;; Lesser General Public License for more details.
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;;;;
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;;;; You should have received a copy of the GNU Lesser General Public
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;;;; License along with this library; if not, write to the Free Software
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;;;; Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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(define-module (test-suite test-eval)
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:use-module (test-suite lib)
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:use-module ((srfi srfi-1) :select (unfold count))
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:use-module ((system vm vm) :select (make-vm call-with-vm))
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:use-module (ice-9 documentation)
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:use-module (ice-9 local-eval))
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(define exception:bad-expression
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(cons 'syntax-error "Bad expression"))
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(define exception:failed-match
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(cons 'syntax-error "failed to match any pattern"))
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(define exception:not-a-list
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(cons 'wrong-type-arg "Not a list"))
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(define exception:wrong-length
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(cons 'wrong-type-arg "wrong length"))
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;;;
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;;; miscellaneous
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;;;
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(define (documented? object)
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(not (not (object-documentation object))))
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;;;
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;;; memoization
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;;;
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(with-test-prefix "memoization"
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(with-test-prefix "copy-tree"
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(pass-if "(#t . #(#t))"
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(let* ((foo (cons #t (vector #t)))
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(bar (copy-tree foo)))
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(vector-set! (cdr foo) 0 #f)
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(equal? bar '(#t . #(#t)))))
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(pass-if-exception "circular lists in forms"
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exception:wrong-type-arg
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(let ((foo (list #f)))
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(set-cdr! foo foo)
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(copy-tree foo))))
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(pass-if "transparency"
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(let ((x '(begin 1)))
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(eval x (current-module))
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(equal? '(begin 1) x))))
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;;;
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;;; eval
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;;;
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(with-test-prefix "evaluator"
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(pass-if "definitions return #<unspecified>"
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(eq? (primitive-eval '(define test-var 'foo))
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(if #f #f)))
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(with-test-prefix "symbol lookup"
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(with-test-prefix "top level"
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(with-test-prefix "unbound"
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(pass-if-exception "variable reference"
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exception:unbound-var
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x)
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(pass-if-exception "procedure"
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exception:unbound-var
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(x)))))
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(with-test-prefix "parameter error"
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;; This is currently a bug in guile:
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;; Macros are accepted as function parameters.
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;; Functions that 'apply' macros are rewritten!!!
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(pass-if-exception "macro as argument"
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exception:failed-match
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(primitive-eval
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'(let ((f (lambda (p a b) (p a b))))
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(f and #t #t))))
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(pass-if-exception "passing macro as parameter"
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exception:failed-match
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(primitive-eval
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'(let* ((f (lambda (p a b) (p a b)))
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(foo (procedure-source f)))
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(f and #t #t)
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(equal? (procedure-source f) foo))))
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))
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;;;
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;;; call
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;;;
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(with-test-prefix "call"
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(with-test-prefix "wrong number of arguments"
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(pass-if-exception "((lambda () #f) 1)"
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exception:wrong-num-args
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((lambda () #f) 1))
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(pass-if-exception "((lambda (x) #f))"
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exception:wrong-num-args
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((lambda (x) #f)))
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(pass-if-exception "((lambda (x) #f) 1 2)"
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exception:wrong-num-args
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((lambda (x) #f) 1 2))
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(pass-if-exception "((lambda (x y) #f))"
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exception:wrong-num-args
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((lambda (x y) #f)))
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(pass-if-exception "((lambda (x y) #f) 1)"
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exception:wrong-num-args
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((lambda (x y) #f) 1))
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(pass-if-exception "((lambda (x y) #f) 1 2 3)"
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exception:wrong-num-args
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((lambda (x y) #f) 1 2 3))
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(pass-if-exception "((lambda (x . rest) #f))"
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exception:wrong-num-args
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((lambda (x . rest) #f)))
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(pass-if-exception "((lambda (x y . rest) #f))"
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exception:wrong-num-args
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((lambda (x y . rest) #f)))
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(pass-if-exception "((lambda (x y . rest) #f) 1)"
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exception:wrong-num-args
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((lambda (x y . rest) #f) 1))))
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;;;
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;;; apply
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;;;
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(with-test-prefix "apply"
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(with-test-prefix "scm_tc7_subr_2o"
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;; prior to guile 1.6.9 and 1.8.1 this called the function with
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;; SCM_UNDEFINED, which in the case of make-vector resulted in
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;; wrong-type-arg, instead of the intended wrong-num-args
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(pass-if-exception "0 args" exception:wrong-num-args
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(apply make-vector '()))
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(pass-if "1 arg"
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(vector? (apply make-vector '(1))))
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(pass-if "2 args"
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(vector? (apply make-vector '(1 2))))
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;; prior to guile 1.6.9 and 1.8.1 this error wasn't detected
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(pass-if-exception "3 args" exception:wrong-num-args
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(apply make-vector '(1 2 3)))))
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;;;
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;;; map
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;;;
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(with-test-prefix "map"
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;; Is documentation available?
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(expect-fail "documented?"
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(documented? map))
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(with-test-prefix "argument error"
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(with-test-prefix "non list argument"
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#t)
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(with-test-prefix "different length lists"
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(pass-if-exception "first list empty"
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exception:wrong-length
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(map + '() '(1)))
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(pass-if-exception "second list empty"
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exception:wrong-length
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(map + '(1) '()))
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(pass-if-exception "first list shorter"
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exception:wrong-length
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(map + '(1) '(2 3)))
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(pass-if-exception "second list shorter"
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exception:wrong-length
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(map + '(1 2) '(3)))
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)))
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;;;
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;;; define with procedure-name
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;;;
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;; names are only set on top-level procedures (currently), so these can't be
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;; hidden in a let
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;;
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(define foo-closure (lambda () "hello"))
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(define bar-closure foo-closure)
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;; make sure that make-procedure-with-setter returns an anonymous
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;; procedure-with-setter by passing it an anonymous getter.
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(define foo-pws (make-procedure-with-setter
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(lambda (x) (car x))
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(lambda (x y) (set-car! x y))))
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(define bar-pws foo-pws)
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(with-test-prefix "define set procedure-name"
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(pass-if "closure"
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(eq? 'foo-closure (procedure-name bar-closure)))
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(expect-fail "procedure-with-setter" ; FIXME: `pass-if' when it's supported
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(eq? 'foo-pws (procedure-name bar-pws))))
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;;;
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;;; promises
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;;;
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(with-test-prefix "promises"
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(with-test-prefix "basic promise behaviour"
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(pass-if "delay gives a promise"
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(promise? (delay 1)))
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(pass-if "force evaluates a promise"
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(eqv? (force (delay (+ 1 2))) 3))
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(pass-if "a forced promise is a promise"
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(let ((p (delay (+ 1 2))))
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(force p)
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(promise? p)))
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(pass-if "forcing a forced promise works"
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(let ((p (delay (+ 1 2))))
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(force p)
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(eqv? (force p) 3)))
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(pass-if "a promise is evaluated once"
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(let* ((x 1)
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(p (delay (+ x 1))))
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(force p)
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(set! x (+ x 1))
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(eqv? (force p) 2)))
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(pass-if "a promise may call itself"
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(define p
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(let ((x 0))
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(delay
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(begin
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(set! x (+ x 1))
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(if (> x 1) x (force p))))))
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(eqv? (force p) 2))
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(pass-if "a promise carries its environment"
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(let* ((x 1) (p #f))
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(let* ((x 2))
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(set! p (delay (+ x 1))))
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(eqv? (force p) 3)))
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(pass-if "a forced promise does not reference its environment"
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(let* ((g (make-guardian))
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(p #f))
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(let* ((x (cons #f #f)))
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(g x)
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(set! p (delay (car x))))
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(force p)
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(gc)
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(if (not (equal? (g) (cons #f #f)))
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(throw 'unresolved)
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#t))))
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(with-test-prefix "extended promise behaviour"
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(pass-if-exception "forcing a non-promise object is not supported"
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exception:wrong-type-arg
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(force 1))
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(pass-if "unmemoizing a promise"
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(display-backtrace
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(let ((stack #f))
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(false-if-exception
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(with-throw-handler #t
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(lambda ()
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(let ((f (lambda (g) (delay (g)))))
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(force (f error))))
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(lambda _
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(set! stack (make-stack #t)))))
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stack)
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(%make-void-port "w"))
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#t)))
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;;;
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;;; stacks
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;;;
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(define (stack->frames stack)
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;; Return the list of frames comprising STACK.
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(unfold (lambda (i)
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(>= i (stack-length stack)))
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(lambda (i)
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(stack-ref stack i))
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1+
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0))
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(with-test-prefix "stacks"
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(pass-if "stack involving a primitive"
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;; The primitive involving the error must appear exactly once on the
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;; stack.
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(catch 'result
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(lambda ()
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(start-stack 'foo
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(with-throw-handler 'wrong-type-arg
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(lambda ()
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;; Trigger a `wrong-type-arg' exception.
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(hashq-ref 'wrong 'type 'arg))
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(lambda _
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(let* ((stack (make-stack #t))
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(frames (stack->frames stack)))
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(throw 'result
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(count (lambda (frame)
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(eq? (frame-procedure frame)
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hashq-ref))
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frames)))))))
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(lambda (key result)
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(= 1 result))))
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(pass-if "arguments of a primitive stack frame"
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;; Create a stack with two primitive frames and make sure the
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;; arguments are correct.
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(catch 'result
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(lambda ()
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(start-stack 'foo
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(with-throw-handler 'wrong-type-arg
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(lambda ()
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;; Trigger a `wrong-type-arg' exception.
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(substring 'wrong 'type 'arg))
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(lambda _
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(let* ((stack (make-stack #t))
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(frames (stack->frames stack)))
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(throw 'result
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(map (lambda (frame)
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(cons (frame-procedure frame)
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(frame-arguments frame)))
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frames)))))))
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(lambda (key result)
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(and (equal? (car result) `(,make-stack #t))
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(pair? (member `(,substring wrong type arg)
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(cdr result))))))))
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;;;
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;;; letrec init evaluation
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;;;
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(with-test-prefix "letrec init evaluation"
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(pass-if "lots of inits calculated in correct order"
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(equal? (letrec ((a 'a) (b 'b) (c 'c) (d 'd)
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(e 'e) (f 'f) (g 'g) (h 'h)
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(i 'i) (j 'j) (k 'k) (l 'l)
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(m 'm) (n 'n) (o 'o) (p 'p)
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(q 'q) (r 'r) (s 's) (t 't)
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(u 'u) (v 'v) (w 'w) (x 'x)
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(y 'y) (z 'z))
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(list a b c d e f g h i j k l m
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n o p q r s t u v w x y z))
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'(a b c d e f g h i j k l m
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n o p q r s t u v w x y z))))
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;;;
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;;; values
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;;;
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(with-test-prefix "values"
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(pass-if "single value"
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(equal? 1 (values 1)))
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(pass-if "call-with-values"
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(equal? (call-with-values (lambda () (values 1 2 3 4)) list)
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'(1 2 3 4)))
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(pass-if "equal?"
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(equal? (values 1 2 3 4) (values 1 2 3 4))))
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;;;
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;;; stack overflow handling
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;;;
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(with-test-prefix "stack overflow"
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;; FIXME: this test does not test what it is intending to test
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(pass-if-exception "exception raised"
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exception:vm-error
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(let ((vm (make-vm))
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(thunk (let loop () (cons 's (loop)))))
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(call-with-vm vm thunk))))
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;;;
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;;; local-eval
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;;;
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(with-test-prefix "local evaluation"
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(pass-if "local-eval"
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(let* ((env1 (local-eval '(let ((x 1) (y 2) (z 3))
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(define-syntax-rule (foo x) (quote x))
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(the-environment))
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(current-module)))
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(env2 (local-eval '(let ((x 111) (a 'a))
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(define-syntax-rule (bar x) (quote x))
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(the-environment))
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env1)))
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(local-eval '(set! x 11) env1)
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(local-eval '(set! y 22) env1)
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(local-eval '(set! z 33) env2)
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(and (equal? (local-eval '(list x y z) env1)
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'(11 22 33))
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(equal? (local-eval '(list x y z a) env2)
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'(111 22 33 a)))))
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(pass-if "local-compile"
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(let* ((env1 (local-compile '(let ((x 1) (y 2) (z 3))
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(define-syntax-rule (foo x) (quote x))
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(the-environment))
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(current-module)))
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(env2 (local-compile '(let ((x 111) (a 'a))
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(define-syntax-rule (bar x) (quote x))
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(the-environment))
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env1)))
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(local-compile '(set! x 11) env1)
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(local-compile '(set! y 22) env1)
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(local-compile '(set! z 33) env2)
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(and (equal? (local-compile '(list x y z) env1)
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'(11 22 33))
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(equal? (local-compile '(list x y z a) env2)
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'(111 22 33 a)))))
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(pass-if "the-environment within a macro"
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(let ((module-a-name '(test module the-environment a))
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(module-b-name '(test module the-environment b)))
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(let ((module-a (resolve-module module-a-name))
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(module-b (resolve-module module-b-name)))
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(module-use! module-a (resolve-interface '(guile)))
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(module-use! module-a (resolve-interface '(ice-9 local-eval)))
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(eval '(begin
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(define z 3)
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(define-syntax-rule (test)
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(let ((x 1) (y 2))
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(the-environment))))
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module-a)
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(module-use! module-b (resolve-interface '(guile)))
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(let ((env (local-eval `(let ((x 111) (y 222))
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((@@ ,module-a-name test)))
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module-b)))
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(equal? (local-eval '(list x y z) env)
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'(1 2 3))))))
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(pass-if "capture pattern variables"
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(let ((env (syntax-case #'(((a 1) (b 2) (c 3))
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((d 4) (e 5) (f 6))) ()
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((((k v) ...) ...) (the-environment)))))
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(equal? (syntax->datum (local-eval '#'((k ... v ...) ...) env))
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'((a b c 1 2 3) (d e f 4 5 6)))))
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(pass-if "mixed primitive-eval, local-eval and local-compile"
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(let* ((env1 (primitive-eval '(let ((x 1) (y 2) (z 3))
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(define-syntax-rule (foo x) (quote x))
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(the-environment))))
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(env2 (local-eval '(let ((x 111) (a 'a))
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(define-syntax-rule (bar x) (quote x))
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(the-environment))
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env1))
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(env3 (local-compile '(let ((y 222) (b 'b))
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(the-environment))
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env2)))
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(local-eval '(set! x 11) env1)
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(local-compile '(set! y 22) env2)
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(local-eval '(set! z 33) env2)
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(local-compile '(set! a (* y 2)) env3)
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(and (equal? (local-compile '(list x y z) env1)
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'(11 22 33))
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(equal? (local-eval '(list x y z a) env2)
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'(111 22 33 444))
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(equal? (local-eval '(list x y z a b) env3)
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'(111 222 33 444 b))))))
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;;; eval.test ends here
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