Add shadow functions for comparison operators
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@ -61,4 +61,33 @@
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(reduce operator.truediv args)))))
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(setv *exports* ['+ '- '* '/])
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(defn comp-op [op args]
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"Helper for shadow comparison operators"
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(if (< (len args) 2)
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(raise (TypeError "Need at least 2 arguments to compare"))
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(reduce operator.and_
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(list-comp (op x y)
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[(, x y) (zip args (slice args 1))]))))
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(defn < [&rest args]
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"Shadow < operator for when we need to import / map it against something"
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(comp-op operator.lt args))
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(defn <= [&rest args]
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"Shadow <= operator for when we need to import / map it against something"
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(comp-op operator.le args))
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(defn = [&rest args]
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"Shadow = operator for when we need to import / map it against something"
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(comp-op operator.eq args))
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(defn != [&rest args]
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"Shadow != operator for when we need to import / map it against something"
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(comp-op operator.ne args))
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(defn >= [&rest args]
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"Shadow >= operator for when we need to import / map it against something"
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(comp-op operator.ge args))
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(defn > [&rest args]
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"Shadow > operator for when we need to import / map it against something"
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(comp-op operator.gt args))
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; TODO figure out a way to shadow "is", "is_not", "and", "or"
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(setv *exports* ['+ '- '* '/ '< '<= '= '!= '>= '>])
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@ -50,3 +50,42 @@
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(assert (= (x 8 2) 4))
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(assert (= (x 8 2 2) 2))
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(assert (= (x 8 2 2 2) 1))))
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(defn test-shadow-compare []
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"NATIVE: test shadow compare"
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(for [x [< <= = != >= >]]
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(assert (try
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(x)
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(catch [TypeError] True)
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(else (throw AssertionError))))
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(assert (try
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(x 1)
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(catch [TypeError] True)
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(else (throw AssertionError)))))
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(for [(, x y) [[< >=]
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[<= >]
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[= !=]]]
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(for [args [[1 2]
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[2 1]
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[1 1]
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[2 2]]]
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(assert (= (apply x args) (not (apply y args))))))
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(let [[s-lt <]
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[s-gt >]
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[s-le <=]
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[s-ge >=]
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[s-eq =]
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[s-ne !=]]
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(assert (apply s-lt [1 2 3]))
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(assert (not (apply s-lt [3 2 1])))
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(assert (apply s-gt [3 2 1]))
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(assert (not (apply s-gt [1 2 3])))
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(assert (apply s-le [1 1 2 2 3 3]))
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(assert (not (apply s-le [1 1 2 2 1 1])))
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(assert (apply s-ge [3 3 2 2 1 1]))
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(assert (not (apply s-ge [3 3 2 2 3 3])))
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(assert (apply s-eq [1 1 1 1 1]))
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(assert (not (apply s-eq [1 1 2 1 1])))
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(assert (apply s-ne [1 2 3 4 5]))
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(assert (not (apply s-ne [1 1 2 3 4])))))
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