【问题标题】:Clojure core match error with variantClojure核心与变体匹配错误
【发布时间】:2015-07-28 14:57:39
【问题描述】:

我正在尝试使用带有 core/match 和 core/typed 的 clojure 解决 this SICP 练习。

我有点关注 Jeanine Adkisson 的 "Variants are Not Unions" 谈话。

这是我目前得到的:

(ns sicp.chapter2_ex29
  (:require [clojure.core.typed :as t]
            [clojure.core.match :refer [match]]))

; Type definitions
(t/defalias Mobile '{:left Branch, :right Branch})

(t/defalias Weight Number)

(t/defalias Structure
  (t/U '[(t/Value :weight) Weight]
       '[(t/Value :mobile) Mobile]))

(t/defalias Branch '{:length Number, :structure Structure})

; Constructors
(t/ann make-mobile [Branch Branch -> Mobile])
(defn make-mobile [left right]
  {:left left :right right})

(t/ann make-branch [Number Structure -> Branch])
(defn make-branch [length structure]
  {:length length :structure structure})

; Getters
(t/ann left-branch [Mobile -> Branch])
(defn left-branch [mobile]
  (:left mobile))

(t/ann right-branch [Mobile -> Branch])
(defn right-branch [mobile]
  (:right mobile))

(t/ann branch-length [Branch -> Number])
(defn branch-length [branch]
  (:length branch))

(t/ann branch-structure [Branch -> Structure])
(defn branch-structure [branch]
  (:structure branch))

; Total weight
(t/ann total-weight [Mobile -> Number])
(defn total-weight [mobile]
  (t/letfn> [structure-weight :- [Structure -> Number]
             (structure-weight [structure]
                               (do
                                 (println (str "structure -> " structure))
                                 (println (str "structure0 -> " (get structure 0)))
                                 (println (str "structure1 -> " (get structure 1)))
                                 (match structure
                                        [:weight weight] weight
                                        [:mobile mobile] (total-weight mobile))))
             branch-weight :- [Branch -> Number]
             (branch-weight [branch]
                            (structure-weight (branch-structure branch)))]
            (let
              [left (branch-weight (left-branch mobile))
               right (branch-weight (right-branch mobile))]
              (do
                (println (str "left ->" left))
                (println (str "right ->" right))
                (+ left right)))))

(t/ann mobile1 Mobile)
(def mobile1 (make-mobile
              (make-branch 3 [:weight 4])
              (make-branch 5 [:weight 2])))

(total-weight mobile1) ; <- works as expected = 6

(t/ann mobile2 Mobile)
(def mobile2 (make-mobile
              (make-branch 3 [:weight 4])
              (make-branch 5 [:mobile (make-mobile
                                       (make-branch 2 [:weight 3])
                                       (make-branch 4 [:weight 2]))])))

(total-weight mobile2) ; <- throws java.lang.IllegalArgumentException: No matching clause: [:mobile {:left {:length 2, :structure [:weight 3]}, :right {:length 4, :structure [:weight 2]}}]

Structure 类型是一个变体:要么是权重,即简单的数字(其形式为 [:weight weight],其中权重是数字),要么是移动设备(形式为 [:mobile mobile],其中 mobile 是 Mobile 类型的东西)。

它类型检查和总权重函数适用于一个简单的输入:一个由两个权重组成的移动设备。

但正如您所看到的,对于具有移动分支的移动来说,它会失败。

由于某种原因,它与 [:mobile mobile] 案例不匹配。知道我做错了什么吗?

【问题讨论】:

    标签: clojure clojure-core.typed clojure-core.match


    【解决方案1】:

    问题似乎是标识符mobile

    (match structure
           [:weight weight] weight
           [:mobile mobile] (total-weight mobile))))
    

    ... 已经绑定为封闭函数定义中的参数:

    (defn total-weight [mobile]
      ... )
    

    match 表单更改为

    (match structure
           [:weight w] w
           [:mobile m] (total-weight m))))
    

    ... 删除错误。

    规则似乎是:

    如果绑定了match 模式中的名称,则不会在本地反弹。它 被解释为其现行价值。

    我不得不说我只是偶然发现了错误。我希望本地绑定优先,但事实并非如此。


    备注

    match 表达式的语法不遵循the documentation,这需要...

    (match [structure]
             [[:weight w]] w
             [[:mobile m]] (total-weight m))
    

    ...但是您的缩写版本也可以。


    Clojure 习惯用法是尽可能使用标准数据结构 - 尤其是映射 - 避免访问函数和构造函数。这样,我们就可以写出类似

    ; Total weight
    
    (declare structure-weight)
    
    (t/ann total-weight [Mobile -> Number])
    (defn total-weight [mobile]
      (match [mobile]
             [{:left bl, :right br}]
               (apply + (map
                          (comp structure-weight :structure)
                          [bl br]))))
    
    (t/ann structure-weight [Structure -> Number])
    (defn structure-weight [structure]
      (match [structure]
             [[:weight w]] w
             [[:mobile m]] (total-weight m)))
    

    【讨论】:

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