This should cover most of the remaining linting errors. After this, I expect fewer than ten linting errors.
		
			
				
	
	
		
			81 lines
		
	
	
	
		
			2.6 KiB
		
	
	
	
		
			EmacsLisp
		
	
	
	
	
	
			
		
		
	
	
			81 lines
		
	
	
	
		
			2.6 KiB
		
	
	
	
		
			EmacsLisp
		
	
	
	
	
	
;;; random.el --- Functions for working with randomness -*- 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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;; Package-Requires: ((emacs "24"))
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;; Homepage: https://user.git.corp.google.com/wpcarro/briefcase
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;;; Commentary:
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;; Functions for working with randomness.  Some of this code is not as
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;; functional as I'd like from.
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;;; Code:
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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;; Dependencies
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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(require 'prelude)
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(require 'number)
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(require 'math)
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(require 'series)
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(require 'list)
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(require 'set)
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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;; Library
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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(defun random-int (x)
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  "Return a random integer from 0 to `X'."
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  (random x))
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;; TODO: Make this work with sequences instead of lists.
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(defun random-choice (xs)
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  "Return a random element of `XS'."
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  (let ((ct (list-length xs)))
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    (list-get
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     (random-int ct)
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     xs)))
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(defun random-boolean? ()
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  "Randonly return t or nil."
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  (random-choice (list t nil)))
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;; TODO: This may not work if any of these generate numbers like 0, 1, etc.
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(defun random-uuid ()
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  "Return a generated UUID string."
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  (let ((eight  (number-dec (math-triangle-of-power :base 16 :power 8)))
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        (four   (number-dec (math-triangle-of-power :base 16 :power 4)))
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        (twelve (number-dec (math-triangle-of-power :base 16 :power 12))))
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    (format "%x-%x-%x-%x-%x"
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            (random-int eight)
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            (random-int four)
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            (random-int four)
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            (random-int four)
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            (random-int twelve))))
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(defun random-token (length)
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  "Return a randomly generated hexadecimal string of LENGTH."
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  (->> (series/range 0 (number-dec length))
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       (list-map (lambda (_) (format "%x" (random-int 15))))
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       (list-join "")))
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;; TODO: Support random-sample
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;; (defun random-sample (n xs)
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;;   "Return a randomly sample of list XS of size N."
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;;   (prelude-assert (and (>= n 0) (< n (list-length xs))))
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;;   (cl-labels ((do-sample
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;;                (n xs y ys)
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;;                (if (= n (set-count ys))
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;;                    (->> ys
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;;                         set-to-list
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;;                         (list-map (lambda (i)
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;;                                     (list-get i xs))))
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;;                  (if (set-contains? y ys)
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;;                      (do-sample n xs (random-int (list-length xs)) ys)
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;;                    (do-sample n xs y (set-add y ys))))))
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;;     (do-sample n xs (random-int (list-length xs)) (set-new))))
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(provide 'random)
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;;; random.el ends here
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