224 lines
		
	
	
	
		
			7.7 KiB
		
	
	
	
		
			EmacsLisp
		
	
	
	
	
	
			
		
		
	
	
			224 lines
		
	
	
	
		
			7.7 KiB
		
	
	
	
		
			EmacsLisp
		
	
	
	
	
	
;;; cycle.el --- Simple module for working with cycles -*- lexical-binding: t -*-
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;; Author: William Carroll <wpcarro@gmail.com>
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;; Version: 0.0.1
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;; URL: https://git.wpcarro.dev/wpcarro/briefcase
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;; Package-Requires: ((emacs "24.3"))
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;;; Commentary:
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;; Something like this may already exist, but I'm having trouble finding it, and
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;; I think writing my own is a nice exercise for learning more Elisp.
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;;; Code:
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;; Dependencies
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(require 'prelude)
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(require 'math)
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(require 'maybe)
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(require 'struct)
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(require 'cl-lib)
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;; Wish list
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;; - TODO: Provide immutable variant.
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;; - TODO: Replace mutable consumption with immutable variant.
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;; - TODO: Replace indexing with (math-mod current cycle).
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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;; Library
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;; `current-index' tracks the current index
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;; `xs' is the original list
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(cl-defstruct cycle current-index previous-index xs)
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(defconst cycle-enable-tests? t
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  "When t, run the tests defined herein.")
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(defun cycle-from-list (xs)
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  "Create a cycle from a list of `XS'."
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  (if (= 0 (length xs))
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      (make-cycle :current-index nil
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                  :previous-index nil
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                  :xs xs)
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    (make-cycle :current-index 0
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                :previous-index nil
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                :xs xs)))
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(defun cycle-new (&rest xs)
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  "Create a cycle with XS as the values."
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  (cycle-from-list xs))
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(defun cycle-to-list (xs)
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  "Return the list representation of a cycle, XS."
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  (cycle-xs xs))
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(defun cycle--next-index<- (lo hi x)
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  "Return the next index in a cycle when moving downwards.
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- `LO' is the lower bound.
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- `HI' is the upper bound.
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- `X' is the current index."
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  (if (< (- x 1) lo)
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      (- hi 1)
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    (- x 1)))
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(defun cycle--next-index-> (lo hi x)
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  "Return the next index in a cycle when moving upwards.
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- `LO' is the lower bound.
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- `HI' is the upper bound.
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- `X' is the current index."
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  (if (>= (+ 1 x) hi)
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      lo
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    (+ 1 x)))
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(defun cycle-previous-focus (cycle)
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  "Return the previously focused entry in CYCLE."
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  (let ((i (cycle-previous-index cycle)))
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    (if (maybe-some? i)
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        (nth i (cycle-xs cycle))
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      nil)))
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;; TODO: Consider adding "!" to the function name herein since many of them
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;; mutate the collection, and the APIs are beginning to confuse me.
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(defun cycle-focus-previous! (xs)
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  "Jump to the item in XS that was most recently focused; return the cycle.
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This will error when previous-index is nil.  This function mutates the
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underlying struct."
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  (let ((i (cycle-previous-index xs)))
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    (if (maybe-some? i)
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        (progn
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          (cycle-jump i xs)
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          (cycle-current xs))
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      (error "Cannot focus the previous element since cycle-previous-index is nil"))))
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(defun cycle-next (xs)
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  "Return the next value in `XS' and update `current-index'."
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  (let* ((current-index (cycle-current-index xs))
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         (next-index (cycle--next-index-> 0 (cycle-count xs) current-index)))
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    (struct-set! cycle previous-index current-index xs)
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    (struct-set! cycle current-index next-index xs)
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    (nth next-index (cycle-xs xs))))
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(defun cycle-prev (xs)
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  "Return the previous value in `XS' and update `current-index'."
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  (let* ((current-index (cycle-current-index xs))
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         (next-index (cycle--next-index<- 0 (cycle-count xs) current-index)))
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    (struct-set! cycle previous-index current-index xs)
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    (struct-set! cycle current-index next-index xs)
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    (nth next-index (cycle-xs xs))))
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(defun cycle-current (cycle)
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  "Return the current value in `CYCLE'."
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  (nth (cycle-current-index cycle) (cycle-xs cycle)))
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(defun cycle-count (cycle)
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  "Return the length of `xs' in `CYCLE'."
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  (length (cycle-xs cycle)))
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(defun cycle-jump (i xs)
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  "Jump to the I index of XS."
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  (let ((current-index (cycle-current-index xs))
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        (next-index (math-mod i (cycle-count xs))))
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    (struct-set! cycle previous-index current-index xs)
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    (struct-set! cycle current-index next-index xs))
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  xs)
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(defun cycle-focus (p cycle)
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  "Focus the element in CYCLE for which predicate, P, is t."
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  (let ((i (->> cycle
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                cycle-xs
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                (-find-index p))))
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    (if i
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        (cycle-jump i cycle)
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      (error "No element in cycle matches predicate"))))
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(defun cycle-focus-item (x xs)
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  "Focus item, X, in cycle XS.
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ITEM is the first item in XS that t for `equal'."
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  (cycle-focus (lambda (y) (equal x y)) xs))
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(defun cycle-contains? (x xs)
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  "Return t if cycle, XS, has member X."
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  (->> xs
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       cycle-xs
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       (list-contains? x)))
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(defun cycle-empty? (xs)
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  "Return t if cycle XS has no elements."
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  (= 0 (length (cycle-xs xs))))
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(defun cycle-focused? (xs)
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  "Return t if cycle XS has a non-nil value for current-index."
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  (maybe-some? (cycle-current-index xs)))
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(defun cycle-append (x xs)
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  "Add X to the left of the focused element in XS.
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If there is no currently focused item, add X to the beginning of XS."
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  (if (cycle-empty? xs)
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      (progn
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        (struct-set! cycle xs (list x) xs)
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        (struct-set! cycle current-index 0 xs)
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        (struct-set! cycle previous-index nil xs))
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    (let ((curr-i (cycle-current-index xs))
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          (prev-i (cycle-previous-index xs)))
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      (if curr-i
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          (progn
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            (struct-set! cycle xs (-insert-at curr-i x (cycle-xs xs)) xs)
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            (when (>= prev-i curr-i) (struct-set! cycle previous-index (1+ prev-i) xs))
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            (when curr-i (struct-set! cycle current-index (1+ curr-i) xs)))
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        (progn
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          (struct-set! cycle xs (cons x (cycle-xs xs)) xs)
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          (when prev-i (struct-set! cycle previous-index (1+ prev-i) xs))))
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      xs)))
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(defun cycle-remove (x xs)
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  "Attempt to remove X from XS.
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X is found using `equal'.
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If X is the currently focused value, after it's deleted, current-index will be
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  nil.  If X is the previously value, after it's deleted, previous-index will be
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  nil."
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  (let ((curr-i (cycle-current-index xs))
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        (prev-i (cycle-previous-index xs))
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        (rm-i (-elem-index x (cycle-xs xs))))
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    (struct-set! cycle xs (-remove-at rm-i (cycle-xs xs)) xs)
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    (when prev-i
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      (when (> prev-i rm-i) (struct-set! cycle previous-index (1- prev-i) xs))
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      (when (= prev-i rm-i) (struct-set! cycle previous-index nil xs)))
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    (when curr-i
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      (when (> curr-i rm-i) (struct-set! cycle current-index (1- curr-i) xs))
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      (when (= curr-i rm-i) (struct-set! cycle current-index nil xs)))
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    xs))
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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;; Tests
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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(when cycle-enable-tests?
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  (let ((xs (cycle-new 1 2 3)))
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    (prelude-assert (maybe-nil? (cycle-previous-focus xs)))
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    (prelude-assert (= 1 (cycle-current xs)))
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    (prelude-assert (= 2 (cycle-next xs)))
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    (prelude-assert (= 1 (cycle-previous-focus xs)))
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    (prelude-assert (= 1 (->> xs (cycle-jump 0) cycle-current)))
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    (prelude-assert (= 2 (->> xs (cycle-jump 1) cycle-current)))
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    (prelude-assert (= 3 (->> xs (cycle-jump 2) cycle-current)))
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    (prelude-assert (= 2 (cycle-previous-focus xs)))
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    (prelude-assert (= 2 (cycle-focus-previous! xs)))
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    (prelude-assert (equal '(1 4 2 3) (cycle-xs (cycle-append 4 xs))))
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    (prelude-assert (equal '(1 2 3) (cycle-xs (cycle-remove 4 xs))))
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    (progn
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      (cycle-focus-item 3 xs)
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      (cycle-focus-item 2 xs)
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      (cycle-remove 1 xs)
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      (prelude-assert (= 2 (cycle-current xs)))
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      (prelude-assert (= 3 (cycle-previous-focus xs))))))
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(provide 'cycle)
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;;; cycle.el ends here
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