693 lines
22 KiB
EmacsLisp
693 lines
22 KiB
EmacsLisp
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;;; dash.el --- A modern list library for Emacs
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;; Copyright (C) 2012 Magnar Sveen
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;; Author: Magnar Sveen <magnars@gmail.com>
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;; Version: 1.0.3
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;; Keywords: lists
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;; This program is free software; you can redistribute it and/or modify
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;; it under the terms of the GNU General Public License as published by
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;; the Free Software Foundation, either version 3 of the License, or
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;; (at your option) any later version.
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;; This program 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
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;; GNU General Public License for more details.
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;; You should have received a copy of the GNU General Public License
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;; along with this program. If not, see <http://www.gnu.org/licenses/>.
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;;; Commentary:
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;; A modern list api for Emacs.
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;;
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;; See documentation on https://github.com/magnars/dash.el#functions
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;;; Code:
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(defmacro !cons (car cdr)
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"Destructive: Sets CDR to the cons of CAR and CDR."
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`(setq ,cdr (cons ,car ,cdr)))
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(defmacro !cdr (list)
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"Destructive: Sets LIST to the cdr of LIST."
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`(setq ,list (cdr ,list)))
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(defmacro --each (list &rest body)
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"Anaphoric form of `-each'."
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(let ((l (make-symbol "list")))
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`(let ((,l ,list)
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(it-index 0))
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(while ,l
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(let ((it (car ,l)))
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,@body)
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(setq it-index (1+ it-index))
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(!cdr ,l)))))
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(put '--each 'lisp-indent-function 1)
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(defun -each (list fn)
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"Calls FN with every item in LIST. Returns nil, used for side-effects only."
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(--each list (funcall fn it)))
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(defmacro --each-while (list pred &rest body)
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"Anaphoric form of `-each-while'."
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(let ((l (make-symbol "list"))
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(c (make-symbol "continue")))
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`(let ((,l ,list)
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(,c t))
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(while (and ,l ,c)
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(let ((it (car ,l)))
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(if (not ,pred) (setq ,c nil) ,@body))
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(!cdr ,l)))))
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(put '--each-while 'lisp-indent-function 2)
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(defun -each-while (list pred fn)
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"Calls FN with every item in LIST while (PRED item) is non-nil.
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Returns nil, used for side-effects only."
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(--each-while list (funcall pred it) (funcall fn it)))
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(defmacro --dotimes (num &rest body)
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"Repeatedly executes BODY (presumably for side-effects) with `it` bound to integers from 0 through n-1."
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`(let ((it 0))
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(while (< it ,num)
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,@body
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(setq it (1+ it)))))
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(put '--dotimes 'lisp-indent-function 1)
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(defun -dotimes (num fn)
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"Repeatedly calls FN (presumably for side-effects) passing in integers from 0 through n-1."
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(--dotimes num (funcall fn it)))
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(defun -map (fn list)
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"Returns a new list consisting of the result of applying FN to the items in LIST."
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(mapcar fn list))
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(defmacro --map (form list)
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"Anaphoric form of `-map'."
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`(mapcar (lambda (it) ,form) ,list))
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(defmacro --reduce-from (form initial-value list)
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"Anaphoric form of `-reduce-from'."
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`(let ((acc ,initial-value))
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(--each ,list (setq acc ,form))
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acc))
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(defun -reduce-from (fn initial-value list)
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"Returns the result of applying FN to INITIAL-VALUE and the
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first item in LIST, then applying FN to that result and the 2nd
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item, etc. If LIST contains no items, returns INITIAL-VALUE and
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FN is not called.
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In the anaphoric form `--reduce-from', the accumulated value is
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exposed as `acc`."
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(--reduce-from (funcall fn acc it) initial-value list))
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(defmacro --reduce (form list)
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"Anaphoric form of `-reduce'."
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(let ((lv (make-symbol "list-value")))
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`(let ((,lv ,list))
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(if ,lv
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(--reduce-from ,form (car ,lv) (cdr ,lv))
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(let (acc it) ,form)))))
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(defun -reduce (fn list)
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"Returns the result of applying FN to the first 2 items in LIST,
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then applying FN to that result and the 3rd item, etc. If LIST
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contains no items, FN must accept no arguments as well, and
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reduce returns the result of calling FN with no arguments. If
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LIST has only 1 item, it is returned and FN is not called.
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In the anaphoric form `--reduce', the accumulated value is
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exposed as `acc`."
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(if list
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(-reduce-from fn (car list) (cdr list))
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(funcall fn)))
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(defmacro --filter (form list)
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"Anaphoric form of `-filter'."
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(let ((r (make-symbol "result")))
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`(let (,r)
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(--each ,list (when ,form (!cons it ,r)))
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(nreverse ,r))))
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(defun -filter (pred list)
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"Returns a new list of the items in LIST for which PRED returns a non-nil value.
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Alias: `-select'"
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(--filter (funcall pred it) list))
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(defalias '-select '-filter)
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(defalias '--select '--filter)
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(defmacro --remove (form list)
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"Anaphoric form of `-remove'."
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`(--filter (not ,form) ,list))
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(defun -remove (pred list)
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"Returns a new list of the items in LIST for which PRED returns nil.
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Alias: `-reject'"
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(--remove (funcall pred it) list))
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(defalias '-reject '-remove)
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(defalias '--reject '--remove)
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(defmacro --keep (form list)
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"Anaphoric form of `-keep'."
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(let ((r (make-symbol "result"))
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(m (make-symbol "mapped")))
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`(let (,r)
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(--each ,list (let ((,m ,form)) (when ,m (!cons ,m ,r))))
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(nreverse ,r))))
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(defun -keep (fn list)
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"Returns a new list of the non-nil results of applying FN to the items in LIST."
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(--keep (funcall fn it) list))
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(defmacro --map-when (pred rep list)
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"Anaphoric form of `-map-when'."
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(let ((r (make-symbol "result")))
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`(let (,r)
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(--each ,list (!cons (if ,pred ,rep it) ,r))
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(nreverse ,r))))
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(defmacro --map-indexed (form list)
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"Anaphoric form of `-map-indexed'."
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(let ((r (make-symbol "result")))
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`(let (,r)
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(--each ,list
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(!cons ,form ,r))
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(nreverse ,r))))
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(defun -map-indexed (fn list)
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"Returns a new list consisting of the result of (FN index item) for each item in LIST.
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In the anaphoric form `--map-indexed', the index is exposed as `it-index`."
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(--map-indexed (funcall fn it-index it) list))
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(defun -map-when (pred rep list)
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"Returns a new list where the elements in LIST that does not match the PRED function
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are unchanged, and where the elements in LIST that do match the PRED function are mapped
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through the REP function."
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(--map-when (funcall pred it) (funcall rep it) list))
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(defalias '--replace-where '--map-when)
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(defalias '-replace-where '-map-when)
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(defun -flatten (l)
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"Takes a nested list L and returns its contents as a single, flat list."
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(if (listp l)
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(-mapcat '-flatten l)
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(list l)))
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(defun -concat (&rest lists)
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"Returns a new list with the concatenation of the elements in the supplied LISTS."
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(apply 'append lists))
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(defmacro --mapcat (form list)
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"Anaphoric form of `-mapcat'."
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`(apply 'append (--map ,form ,list)))
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(defun -mapcat (fn list)
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"Returns the result of applying concat to the result of applying map to FN and LIST.
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Thus function FN should return a collection."
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(--mapcat (funcall fn it) list))
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(defmacro --first (form list)
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"Anaphoric form of `-first'."
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(let ((n (make-symbol "needle")))
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`(let (,n)
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(--each-while ,list (not ,n)
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(when ,form (setq ,n it)))
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,n)))
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(defun -first (pred list)
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"Returns the first x in LIST where (PRED x) is non-nil, else nil.
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To get the first item in the list no questions asked, use `car'."
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(--first (funcall pred it) list))
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(defun ---truthy? (val)
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(not (null val)))
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(defmacro --any? (form list)
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"Anaphoric form of `-any?'."
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`(---truthy? (--first ,form ,list)))
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(defun -any? (pred list)
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"Returns t if (PRED x) is non-nil for any x in LIST, else nil.
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Alias: `-some?'"
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(--any? (funcall pred it) list))
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(defalias '-some? '-any?)
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(defalias '--some? '--any?)
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(defalias '-any-p '-any?)
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(defalias '--any-p '--any?)
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(defalias '-some-p '-any?)
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(defalias '--some-p '--any?)
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(defmacro --all? (form list)
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"Anaphoric form of `-all?'."
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(let ((a (make-symbol "all")))
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`(let ((,a t))
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(--each-while ,list ,a (setq ,a ,form))
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(---truthy? ,a))))
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(defun -all? (pred list)
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"Returns t if (PRED x) is non-nil for all x in LIST, else nil.
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Alias: `-every?'"
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(--all? (funcall pred it) list))
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(defalias '-every? '-all?)
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(defalias '--every? '--all?)
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(defalias '-all-p '-all?)
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(defalias '--all-p '--all?)
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(defalias '-every-p '-all?)
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(defalias '--every-p '--all?)
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(defmacro --none? (form list)
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"Anaphoric form of `-none?'."
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`(--all? (not ,form) ,list))
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(defun -none? (pred list)
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"Returns t if (PRED x) is nil for all x in LIST, else nil."
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(--none? (funcall pred it) list))
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(defalias '-none-p '-none?)
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(defalias '--none-p '--none?)
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(defmacro --only-some? (form list)
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"Anaphoric form of `-only-some?'."
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(let ((y (make-symbol "yes"))
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(n (make-symbol "no")))
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`(let (,y ,n)
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(--each-while ,list (not (and ,y ,n))
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(if ,form (setq ,y t) (setq ,n t)))
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(---truthy? (and ,y ,n)))))
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(defun -only-some? (pred list)
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"Returns `t` if there is a mix of items in LIST that matches and does not match PRED.
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Returns `nil` both if all items match the predicate, and if none of the items match the predicate."
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(--only-some? (funcall pred it) list))
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(defalias '-only-some-p '-only-some?)
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(defalias '--only-some-p '--only-some?)
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(defun -take (n list)
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"Returns a new list of the first N items in LIST, or all items if there are fewer than N."
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(let (result)
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(--dotimes n
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(when list
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(!cons (car list) result)
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(!cdr list)))
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(nreverse result)))
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(defun -drop (n list)
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"Returns the tail of LIST without the first N items."
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(--dotimes n (!cdr list))
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list)
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(defmacro --take-while (form list)
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"Anaphoric form of `-take-while'."
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(let ((r (make-symbol "result")))
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`(let (,r)
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(--each-while ,list ,form (!cons it ,r))
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(nreverse ,r))))
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(defun -take-while (pred list)
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"Returns a new list of successive items from LIST while (PRED item) returns a non-nil value."
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(--take-while (funcall pred it) list))
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(defmacro --drop-while (form list)
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"Anaphoric form of `-drop-while'."
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(let ((l (make-symbol "list")))
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`(let ((,l ,list))
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(while (and ,l (let ((it (car ,l))) ,form))
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(!cdr ,l))
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,l)))
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(defun -drop-while (pred list)
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"Returns the tail of LIST starting from the first item for which (PRED item) returns nil."
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(--drop-while (funcall pred it) list))
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(defun -split-at (n list)
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"Returns a list of ((-take N LIST) (-drop N LIST))"
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(list (-take n list)
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(-drop n list)))
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(defmacro --split-with (form list)
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"Anaphoric form of `-split-with'."
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`(list (--take-while ,form ,list)
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(--drop-while ,form ,list)))
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(defun -split-with (pred list)
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"Returns a list of ((-take-while PRED LIST) (-drop-while PRED LIST))"
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(--split-with (funcall pred it) list))
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(defmacro --separate (form list)
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"Anaphoric form of `-separate'."
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(let ((y (make-symbol "yes"))
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(n (make-symbol "no")))
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`(let (,y ,n)
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(--each ,list (if ,form (!cons it ,y) (!cons it ,n)))
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(list (nreverse ,y) (nreverse ,n)))))
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(defun -separate (pred list)
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"Returns a list of ((-filter PRED LIST) (-remove PRED LIST))."
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(--separate (funcall pred it) list))
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(defun -partition (n list)
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"Returns a new list with the items in LIST grouped into N-sized sublists.
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If there are not enough items to make the last group N-sized,
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those items are discarded."
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(let ((result nil)
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(sublist nil)
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(len 0))
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(while list
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(!cons (car list) sublist)
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(setq len (1+ len))
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(when (= len n)
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(!cons (nreverse sublist) result)
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(setq sublist nil)
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(setq len 0))
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(!cdr list))
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(nreverse result)))
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(defun -partition-all (n list)
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"Returns a new list with the items in LIST grouped into N-sized sublists.
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The last group may contain less than N items."
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(let (result)
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(while list
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(!cons (-take n list) result)
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(setq list (-drop n list)))
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(nreverse result)))
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(defmacro --partition-by (form list)
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"Anaphoric form of `-partition-by'."
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(let ((r (make-symbol "result"))
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(s (make-symbol "sublist"))
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(v (make-symbol "value"))
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(n (make-symbol "new-value"))
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(l (make-symbol "list")))
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`(let ((,l ,list))
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(when ,l
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(let* ((,r nil)
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(it (car ,l))
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(,s (list it))
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(,v ,form)
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(,l (cdr ,l)))
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(while ,l
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(let* ((it (car ,l))
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(,n ,form))
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(unless (equal ,v ,n)
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(!cons (nreverse ,s) ,r)
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(setq ,s nil)
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(setq ,v ,n))
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(!cons it ,s)
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(!cdr ,l)))
|
||
|
(!cons (nreverse ,s) ,r)
|
||
|
(nreverse ,r))))))
|
||
|
|
||
|
(defun -partition-by (fn list)
|
||
|
"Applies FN to each value in LIST, splitting it each time FN returns a new value."
|
||
|
(--partition-by (funcall fn it) list))
|
||
|
|
||
|
(defmacro --group-by (form list)
|
||
|
"Anaphoric form of `-group-by'."
|
||
|
(let ((l (make-symbol "list"))
|
||
|
(v (make-symbol "value"))
|
||
|
(k (make-symbol "key"))
|
||
|
(r (make-symbol "result")))
|
||
|
`(let ((,l ,list)
|
||
|
,r)
|
||
|
;; Convert `list' to an alist and store it in `r'.
|
||
|
(while ,l
|
||
|
(let* ((,v (car ,l))
|
||
|
(it ,v)
|
||
|
(,k ,form)
|
||
|
(kv (assoc ,k ,r)))
|
||
|
(if kv
|
||
|
(setcdr kv (cons ,v (cdr kv)))
|
||
|
(push (list ,k ,v) ,r))
|
||
|
(setq ,l (cdr ,l))))
|
||
|
;; Reverse lists in each group.
|
||
|
(let ((rest ,r))
|
||
|
(while rest
|
||
|
(let ((kv (car rest)))
|
||
|
(setcdr kv (nreverse (cdr kv))))
|
||
|
(setq rest (cdr rest))))
|
||
|
;; Reverse order of keys.
|
||
|
(nreverse ,r))))
|
||
|
|
||
|
(defun -group-by (fn list)
|
||
|
"Separate LIST into an alist whose keys are FN applied to the
|
||
|
elements of LIST. Keys are compared by `equal'."
|
||
|
(--group-by (funcall fn it) list))
|
||
|
|
||
|
(defun -interpose (sep list)
|
||
|
"Returns a new list of all elements in LIST separated by SEP."
|
||
|
(let (result)
|
||
|
(when list
|
||
|
(!cons (car list) result)
|
||
|
(!cdr list))
|
||
|
(while list
|
||
|
(setq result (cons (car list) (cons sep result)))
|
||
|
(!cdr list))
|
||
|
(nreverse result)))
|
||
|
|
||
|
(defun -interleave (&rest lists)
|
||
|
"Returns a new list of the first item in each list, then the second etc."
|
||
|
(let (result)
|
||
|
(while (-none? 'null lists)
|
||
|
(--each lists (!cons (car it) result))
|
||
|
(setq lists (-map 'cdr lists)))
|
||
|
(nreverse result)))
|
||
|
|
||
|
(defun -partial (fn &rest args)
|
||
|
"Takes a function FN and fewer than the normal arguments to FN,
|
||
|
and returns a fn that takes a variable number of additional ARGS.
|
||
|
When called, the returned function calls FN with ARGS first and
|
||
|
then additional args."
|
||
|
(apply 'apply-partially fn args))
|
||
|
|
||
|
(defun -rpartial (fn &rest args)
|
||
|
"Takes a function FN and fewer than the normal arguments to FN,
|
||
|
and returns a fn that takes a variable number of additional ARGS.
|
||
|
When called, the returned function calls FN with the additional
|
||
|
args first and then ARGS.
|
||
|
|
||
|
Requires Emacs 24 or higher."
|
||
|
`(closure (t) (&rest args)
|
||
|
(apply ',fn (append args ',args))))
|
||
|
|
||
|
(defun -applify (fn)
|
||
|
"Changes an n-arity function FN to a 1-arity function that
|
||
|
expects a list with n items as arguments"
|
||
|
(apply-partially 'apply fn))
|
||
|
|
||
|
(defmacro -> (x &optional form &rest more)
|
||
|
"Threads the expr through the forms. Inserts X as the second
|
||
|
item in the first form, making a list of it if it is not a list
|
||
|
already. If there are more forms, inserts the first form as the
|
||
|
second item in second form, etc."
|
||
|
(cond
|
||
|
((null form) x)
|
||
|
((null more) (if (listp form)
|
||
|
`(,(car form) ,x ,@(cdr form))
|
||
|
(list form x)))
|
||
|
(:else `(-> (-> ,x ,form) ,@more))))
|
||
|
|
||
|
(defmacro ->> (x form &rest more)
|
||
|
"Threads the expr through the forms. Inserts X as the last item
|
||
|
in the first form, making a list of it if it is not a list
|
||
|
already. If there are more forms, inserts the first form as the
|
||
|
last item in second form, etc."
|
||
|
(if (null more)
|
||
|
(if (listp form)
|
||
|
`(,(car form) ,@(cdr form) ,x)
|
||
|
(list form x))
|
||
|
`(->> (->> ,x ,form) ,@more)))
|
||
|
|
||
|
(defmacro --> (x form &rest more)
|
||
|
"Threads the expr through the forms. Inserts X at the position
|
||
|
signified by the token `it' in the first form. If there are more
|
||
|
forms, inserts the first form at the position signified by `it'
|
||
|
in in second form, etc."
|
||
|
(if (null more)
|
||
|
(if (listp form)
|
||
|
(--map-when (eq it 'it) x form)
|
||
|
(list form x))
|
||
|
`(--> (--> ,x ,form) ,@more)))
|
||
|
|
||
|
(put '-> 'lisp-indent-function 1)
|
||
|
(put '->> 'lisp-indent-function 1)
|
||
|
(put '--> 'lisp-indent-function 1)
|
||
|
|
||
|
(defun -distinct (list)
|
||
|
"Return a new list with all duplicates removed.
|
||
|
The test for equality is done with `equal',
|
||
|
or with `-compare-fn' if that's non-nil.
|
||
|
|
||
|
Alias: `-uniq'"
|
||
|
(let (result)
|
||
|
(--each list (unless (-contains? result it) (!cons it result)))
|
||
|
(nreverse result)))
|
||
|
|
||
|
(defun -union (list list2)
|
||
|
"Return a new list containing the elements of LIST1 and elements of LIST2 that are not in LIST1.
|
||
|
The test for equality is done with `equal',
|
||
|
or with `-compare-fn' if that's non-nil."
|
||
|
(let (result)
|
||
|
(--each list (!cons it result))
|
||
|
(--each list2 (unless (-contains? result it) (!cons it result)))
|
||
|
(nreverse result)))
|
||
|
|
||
|
(defalias '-uniq '-distinct)
|
||
|
|
||
|
(defun -intersection (list list2)
|
||
|
"Return a new list containing only the elements that are members of both LIST and LIST2.
|
||
|
The test for equality is done with `equal',
|
||
|
or with `-compare-fn' if that's non-nil."
|
||
|
(--filter (-contains? list2 it) list))
|
||
|
|
||
|
(defun -difference (list list2)
|
||
|
"Return a new list with only the members of LIST that are not in LIST2.
|
||
|
The test for equality is done with `equal',
|
||
|
or with `-compare-fn' if that's non-nil."
|
||
|
(--filter (not (-contains? list2 it)) list))
|
||
|
|
||
|
(defvar -compare-fn nil
|
||
|
"Tests for equality use this function or `equal' if this is nil.
|
||
|
It should only be set using dynamic scope with a let, like:
|
||
|
(let ((-compare-fn =)) (-union numbers1 numbers2 numbers3)")
|
||
|
|
||
|
(defun -contains? (list element)
|
||
|
"Return whether LIST contains ELEMENT.
|
||
|
The test for equality is done with `equal',
|
||
|
or with `-compare-fn' if that's non-nil."
|
||
|
(not
|
||
|
(null
|
||
|
(cond
|
||
|
((null -compare-fn) (member element list))
|
||
|
((eq -compare-fn 'eq) (memq element list))
|
||
|
((eq -compare-fn 'eql) (memql element list))
|
||
|
(t
|
||
|
(let ((lst list))
|
||
|
(while (and lst
|
||
|
(not (funcall -compare-fn element (car lst))))
|
||
|
(setq lst (cdr lst)))
|
||
|
lst))))))
|
||
|
|
||
|
(defalias '-contains-p '-contains?)
|
||
|
|
||
|
(eval-after-load "lisp-mode"
|
||
|
'(progn
|
||
|
(let ((new-keywords '(
|
||
|
"--each"
|
||
|
"-each"
|
||
|
"--each-while"
|
||
|
"-each-while"
|
||
|
"--dotimes"
|
||
|
"-dotimes"
|
||
|
"-map"
|
||
|
"--map"
|
||
|
"--reduce-from"
|
||
|
"-reduce-from"
|
||
|
"--reduce"
|
||
|
"-reduce"
|
||
|
"--filter"
|
||
|
"-filter"
|
||
|
"-select"
|
||
|
"--select"
|
||
|
"--remove"
|
||
|
"-remove"
|
||
|
"-reject"
|
||
|
"--reject"
|
||
|
"--keep"
|
||
|
"-keep"
|
||
|
"-flatten"
|
||
|
"-concat"
|
||
|
"--mapcat"
|
||
|
"-mapcat"
|
||
|
"--first"
|
||
|
"-first"
|
||
|
"--any?"
|
||
|
"-any?"
|
||
|
"-some?"
|
||
|
"--some?"
|
||
|
"-any-p"
|
||
|
"--any-p"
|
||
|
"-some-p"
|
||
|
"--some-p"
|
||
|
"--all?"
|
||
|
"-all?"
|
||
|
"-every?"
|
||
|
"--every?"
|
||
|
"-all-p"
|
||
|
"--all-p"
|
||
|
"-every-p"
|
||
|
"--every-p"
|
||
|
"--none?"
|
||
|
"-none?"
|
||
|
"-none-p"
|
||
|
"--none-p"
|
||
|
"-only-some?"
|
||
|
"--only-some?"
|
||
|
"-only-some-p"
|
||
|
"--only-some-p"
|
||
|
"-take"
|
||
|
"-drop"
|
||
|
"--take-while"
|
||
|
"-take-while"
|
||
|
"--drop-while"
|
||
|
"-drop-while"
|
||
|
"-split-at"
|
||
|
"--split-with"
|
||
|
"-split-with"
|
||
|
"-partition"
|
||
|
"-partition-all"
|
||
|
"-interpose"
|
||
|
"-interleave"
|
||
|
"--map-when"
|
||
|
"-map-when"
|
||
|
"--replace-where"
|
||
|
"-replace-where"
|
||
|
"-partial"
|
||
|
"-rpartial"
|
||
|
"->"
|
||
|
"->>"
|
||
|
"-->"
|
||
|
"-distinct"
|
||
|
"-intersection"
|
||
|
"-difference"
|
||
|
"-contains?"
|
||
|
"-contains-p"
|
||
|
))
|
||
|
(special-variables '(
|
||
|
"it"
|
||
|
"it-index"
|
||
|
"acc"
|
||
|
)))
|
||
|
(font-lock-add-keywords 'emacs-lisp-mode `((,(concat "\\<" (regexp-opt special-variables 'paren) "\\>")
|
||
|
1 font-lock-variable-name-face)) 'append)
|
||
|
(font-lock-add-keywords 'emacs-lisp-mode `((,(concat "(\\s-*" (regexp-opt new-keywords 'paren) "\\>")
|
||
|
1 font-lock-keyword-face)) 'append))
|
||
|
(--each (buffer-list)
|
||
|
(with-current-buffer it
|
||
|
(when (and (eq major-mode 'emacs-lisp-mode)
|
||
|
(boundp 'font-lock-mode)
|
||
|
font-lock-mode)
|
||
|
(font-lock-refresh-defaults))))))
|
||
|
|
||
|
(provide 'dash)
|
||
|
;;; dash.el ends here
|