Added the '...neighbours within distance...' feature to the rule language.
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4 changed files with 172 additions and 29 deletions
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@ -34,6 +34,12 @@
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;; a regular expression which matches string representation of numbers
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(def re-number #"^[0-9.]*$")
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;; error thrown when an attempt is made to set a reserved property
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(def reserved-properties-error
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"The properties 'x' and 'y' of a cell are reserved and should not be set in rule actions")
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;; error thrown when a rule cannot be parsed
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(def bad-parse-error "I did not understand '%s'")
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(defn- keyword-or-numeric
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"If this token appears to represent an explicit number, return that number;
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otherwise, make a keyword of it and return that."
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@ -53,6 +59,7 @@
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;; In every case if the function cannot parse the desired construct from the
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;; front of the sequence of tokens it returns nil.
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(defn parse-numeric-value
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"Parse a number."
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[[value & remainder]]
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@ -86,6 +93,12 @@
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([tokens]
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(parse-simple-value tokens false)))
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(defn gen-token-value
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"Parse a single value from this single token and return just the generated
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code, not a pair."
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[token expect-int]
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(first (parse-simple-value (list token) expect-int)))
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(defn parse-disjunct-value
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"Parse a list of values from among these `tokens`. If `expect-int` is true, return
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integers or things which will evaluate to integers."
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@ -165,7 +178,8 @@
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([comp1 quantity property value remainder comp2 distance]
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[(list comp1
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(list 'count
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(list 'get-neighbours-with-property-value 'world '(cell :x) '(cell :y) 1
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(list 'get-neighbours-with-property-value 'world
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'(cell :x) '(cell :y) distance
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(keyword property) (keyword-or-numeric value) comp2))
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quantity)
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remainder])
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@ -174,27 +188,39 @@
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(defn parse-comparator-neighbours-condition
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"Parse conditions of the form '...more than 6 neighbours are [condition]'"
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[[MORE THAN n NEIGHBOURS have-or-are & rest]]
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[[MORE THAN n NEIGHBOURS WITHIN distance have-or-are & rest]]
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(let [quantity (first (parse-numeric-value (list n)))
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comparator (cond (= MORE "more") '>
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(member? MORE '("fewer" "less")) '<)]
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(cond
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(not (= WITHIN "within"))
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(parse-comparator-neighbours-condition
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(flatten
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;; two tokens were mis-parsed as 'within distance' that weren't
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;; actually 'within' and a distance. Splice in 'within 1' and try
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;; again.
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(list MORE THAN n NEIGHBOURS "within" "1" WITHIN distance have-or-are rest)))
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(and quantity
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comparator
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(= THAN "than")
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(= NEIGHBOURS "neighbours"))
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(cond
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(= have-or-are "are")
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(let [[value & remainder] rest]
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(gen-neighbours-condition comparator quantity :state value remainder =))
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(let [[value & remainder] rest
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dist (gen-token-value distance true)]
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(gen-neighbours-condition comparator quantity :state value remainder = dist))
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(= have-or-are "have")
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(let [[property comp1 comp2 value & remainder] rest]
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(let [[property comp1 comp2 value & remainder] rest
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dist (gen-token-value distance true)]
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(cond (and (= comp1 "equal") (= comp2 "to"))
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(gen-neighbours-condition comparator quantity property value remainder =)
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(gen-neighbours-condition comparator quantity property
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value remainder = dist)
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(and (= comp1 "more") (= comp2 "than"))
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(gen-neighbours-condition comparator quantity property value remainder >)
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(gen-neighbours-condition comparator quantity property
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value remainder > dist)
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(and (= comp1 "less") (= comp2 "than"))
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(gen-neighbours-condition comparator quantity property value remainder <)
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(gen-neighbours-condition comparator quantity property
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value remainder < dist)
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))))))
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(defn parse-some-neighbours-condition
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@ -205,22 +231,34 @@
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(defn parse-simple-neighbours-condition
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"Parse conditions of the form '...6 neighbours are [condition]'"
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[[n NEIGHBOURS have-or-are & rest]]
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[[n NEIGHBOURS WITHIN distance have-or-are & rest]]
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(let [quantity (first (parse-numeric-value (list n)))]
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(cond
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(and quantity (= NEIGHBOURS "neighbours"))
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(cond
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(not (= WITHIN "within"))
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(parse-simple-neighbours-condition
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(flatten
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;; two tokens were mis-parsed as 'within distance' that weren't
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;; actually 'within' and a distance. Splice in 'within 1' and try
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;; again.
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(list n NEIGHBOURS "within" "1" WITHIN distance have-or-are rest)))
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(= have-or-are "are")
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(let [[value & remainder] rest]
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(gen-neighbours-condition '= quantity :state value remainder =))
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(let [[value & remainder] rest
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dist (gen-token-value distance true)]
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(gen-neighbours-condition '= quantity :state value remainder = dist))
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(= have-or-are "have")
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(let [[property comp1 comp2 value & remainder] rest]
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(let [[property comp1 comp2 value & remainder] rest
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dist (gen-token-value distance true)]
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(cond (and (= comp1 "equal") (= comp2 "to"))
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(gen-neighbours-condition '= quantity property value remainder =)
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(gen-neighbours-condition '= quantity property value remainder =
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dist)
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(and (= comp1 "more") (= comp2 "than"))
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(gen-neighbours-condition '= quantity property value remainder >)
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(gen-neighbours-condition '= quantity property value remainder >
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dist)
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(and (= comp1 "less") (= comp2 "than"))
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(gen-neighbours-condition '= quantity property value remainder <)
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(gen-neighbours-condition '= quantity property value remainder <
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dist)
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))))))
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(defn parse-neighbours-condition
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@ -281,9 +319,13 @@
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(defn- parse-arithmetic-action
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"Parse actions of the form '[property] should be [property] [arithmetic-operator] [value]',
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e.g. 'fertility should be fertility + 1', or 'deer should be deer - wolves'."
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[previous [prop1 should be prop2 operator value & rest]]
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(if (and (= should "should")
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(= be "be")
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[previous [prop1 SHOULD BE prop2 operator value & rest]]
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(cond
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(member? prop2 '("x" "y"))
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(throw
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(Exception. reserved-properties-error))
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(and (= SHOULD "should")
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(= BE "be")
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(member? operator '("+" "-" "*" "/")))
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[(list 'merge (or previous 'cell)
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{(keyword prop1) (list 'int
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@ -294,8 +336,12 @@
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(defn- parse-set-action
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"Parse actions of the form '[property] should be [value].'"
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[previous [property should be value & rest]]
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(if (and (= should "should") (= be "be"))
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[previous [property SHOULD BE value & rest]]
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(cond
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(member? property '("x" "y"))
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(throw
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(Exception. reserved-properties-error))
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(and (= SHOULD "should") (= BE "be"))
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[(list 'merge (or previous 'cell)
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{(keyword property) (cond (re-matches re-number value) (read-string value) true (keyword value))}) rest]))
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@ -344,7 +390,7 @@
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(string? line)
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(let [rule (parse-rule (split (triml line) #"\s+"))]
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(cond rule rule
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true (throw (Exception. (str "I did not understand '" line "'")))))
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true (throw (Exception. (format bad-parse-error line)))))
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true
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(let [[left remainder] (parse-left-hand-side line)
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[right junk] (parse-right-hand-side remainder)]
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