356 lines
11 KiB
Plaintext
356 lines
11 KiB
Plaintext
(def reserved-words
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"List of Ludus reserved words."
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## see ludus-spec repo for more info
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{"as" :as ## impl
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"box" :ref
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"do" :do ## impl
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"else" :else ## impl
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"false" :false ## impl -> literal word
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"fn" :fn ## impl
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"if" :if ## impl
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"import" :import ## impl
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"let" :let ## impl
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"loop" :loop ## impl
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"match" :match ## impl
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"nil" :nil ## impl -> literal word
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"ns" :ns ## impl
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"panic!" :panic ## impl (should _not_ be a function)
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"pkg" :pkg
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"recur" :recur ## impl
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"then" :then ## impl
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"true" :true ## impl -> literal word
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"use" :use ## wip
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"with" :with ## impl
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"when" :when ## impl, replaces cond
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"repeat" :repeat ## syntax sugar over "loop": still unclear what this syntax could be
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"test" :test
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})
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(def literal-words {"true" true
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"false" false
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"nil" nil
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})
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(defn- new-scanner
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"Creates a new scanner."
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[source input]
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@{:source source
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:input input
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:length (length source)
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:errors @[]
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:start 0
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:current 0
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:line 1
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:tokens @[]})
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(defn- at-end?
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"Tests if a scanner is at end of input."
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[scanner]
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(>= (get scanner :current) (get scanner :length)))
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(defn- current-char
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"Gets the current character of the scanner."
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[scanner]
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(let [source (get scanner :source)
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current (get scanner :current)
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length (length source)]
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(if (>= current length)
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nil
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(string/from-bytes (get source current)))))
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(defn- advance
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"Advances the scanner by a single character."
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[scanner]
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(update scanner :current inc))
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(defn- next-char
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"Gets the next character from the scanner."
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[scanner]
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(let [source (get scanner :source)
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current (get scanner :current)
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next (inc current)
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length (length source)]
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(if (>= next length)
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nil
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(string/from-bytes (get source next)))))
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(defn- current-lexeme
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[scanner]
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(slice (get scanner :source) (get scanner :start) (get scanner :current)))
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(defn- char-code [char] (get char 0))
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(defn- char-in-range? [start end char]
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(and char
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(>= (char-code char) (char-code start))
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(<= (char-code char) (char-code end))))
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(defn- digit? [c]
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(char-in-range? "0" "9" c))
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(defn- nonzero-digit? [c]
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(char-in-range? "1" "9" c))
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## for now, use very basic ASCII charset in words
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## TODO: research the implications of using the whole
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## (defn- alpha? [c] (boolean (re-find #"\p{L}" (string c))))
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(defn- alpha? [c]
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(or (char-in-range? "a" "z" c) (char-in-range? "A" "Z" c)))
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(defn- lower? [c] (char-in-range? "a" "z" c))
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(defn- upper? [c] (char-in-range? "A" "Z" c))
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## legal characters in words
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(def word-chars {"_" true "?" true "!" true "*" true "/" true})
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(defn- word-char? [c]
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(or (alpha? c) (digit? c) (get word-chars c)))
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(defn- whitespace? [c]
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(or (= c " ") (= c "\t")))
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(def terminators {
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":" true
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";" true
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"\n" true
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"{" true
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"}" true
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"(" true
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")" true
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"[" true
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"]" true
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"$" true
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"#" true
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"-" true
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"=" true
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"&" true
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"," true
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">" true
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"\"" true})
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(defn- terminates? [c]
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(or (nil? c) (whitespace? c) (get terminators c)))
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(defn- add-token
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[scanner token-type &opt literal]
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(update scanner :tokens array/push
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{:type token-type
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:lexeme (current-lexeme scanner)
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:literal literal
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:line (get scanner :line)
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:start (get scanner :start)
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:source (get scanner :source)
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:input (get scanner :input)}))
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## TODO: errors should also be in the vector of tokens
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## The goal is to be able to be able to hand this to an LSP?
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## Do we need a different structure
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(defn- add-error [scanner msg]
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(let [token {:type :error
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:lexeme (current-lexeme scanner)
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:literal nil
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:line (get scanner :line)
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:start (get scanner :start)
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:source (get scanner :source)
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:input (get scanner :input)
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:msg msg}]
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(-> scanner
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(update :errors array/push token)
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(update :tokens array/push token))))
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(defn- add-keyword
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[scanner]
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(defn recur [scanner key]
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(let [char (current-char scanner)]
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(cond
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(terminates? char) (add-token scanner :keyword (keyword key))
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(word-char? char) (recur (advance scanner) (string key char))
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:else (add-error scanner (string "Unexpected " char "after keyword :" key)))))
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(recur scanner ""))
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(defn- add-pkg-kw [scanner]
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(defn recur [scanner key]
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(let [char (current-char scanner)]
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(cond
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(terminates? char) (add-token scanner :pkg-kw (keyword key))
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(word-char? char) (recur (advance scanner) (string key char))
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:else (add-error scanner (string "Unexpected " char " after pkg keyword :" key)))))
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(recur scanner ""))
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(defn- read-literal [lit] (-> lit parse-all first))
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### TODO: consider whether Janet's number rules are right for Ludus
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(defn- add-number [char scanner]
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(defn recur [scanner num float?]
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(let [curr (current-char scanner)]
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(cond
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(= curr "_") (recur (advance scanner) num float?) ## consume underscores unharmed
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(= curr ".") (if float?
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(add-error scanner (string "Unexpected second decimal point after " num "."))
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(recur (advance scanner) (buffer/push num curr) true))
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(terminates? curr) (add-token scanner :number (read-literal num))
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(digit? curr) (recur (advance scanner) (buffer/push num curr) float?)
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:else (add-error scanner (string "Unexpected " curr " after number " num ".")))))
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(recur scanner (buffer char) false))
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(def escape {
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"\"" "\""
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"n" "\n"
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"{" "{"
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"t" "\t"
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"r" "\r"
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"\\" "\\"
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})
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(defn- add-string
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[scanner]
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(defn recur [scanner buff interpolate?]
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(let [char (current-char scanner)]
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(case char
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"{" (recur (advance scanner) (buffer/push buff char) true)
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# allow multiline strings
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"\n" (recur (update (advance scanner) :line inc) (buffer/push buff char) interpolate?)
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"\"" (add-token (advance scanner) (if interpolate? :interpolated :string) (string buff))
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"\\" (let [next (next-char scanner)]
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(recur
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(advance (advance scanner))
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(buffer/push buff (get escape next next))
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interpolate?))
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(if (at-end? scanner)
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(add-error scanner "Unterminated string.")
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(recur (advance scanner) (buffer/push buff char) interpolate?)))))
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(recur scanner @"" false))
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(defn- add-word
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[char scanner]
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(defn recur [scanner word]
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(let [curr (current-char scanner)]
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(cond
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(terminates? curr) (add-token scanner
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(get reserved-words (string word) :word)
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(get literal-words (string word) :none))
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(word-char? curr) (recur (advance scanner) (buffer/push word curr))
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:else (add-error scanner (string "Unexpected " curr " after word " word ".")))))
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(recur scanner (buffer char)))
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(defn- add-pkg
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[char scanner]
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(defn recur [scanner pkg]
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(let [curr (current-char scanner)]
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(cond
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(terminates? curr) (add-token scanner :pkg-name :none)
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(word-char? curr) (recur (advance scanner) (buffer/push pkg curr))
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:else (add-error scanner (string "unexpected " curr " after pkg name " pkg)))))
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(recur scanner (buffer char)))
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(defn- add-ignored
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[scanner]
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(defn recur [scanner ignored]
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(let [char (current-char scanner)]
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(cond
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(terminates? char) (add-token scanner :ignored)
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(word-char? char) (recur (advance scanner) (buffer/push ignored char))
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:else (add-error scanner (string "Unexpected " char " after word " ignored ".")))))
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(recur scanner @"_"))
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(defn- add-comment [char scanner]
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(defn recur [scanner comm]
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(let [char (current-char scanner)]
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(if (or (= "\n" char) (at-end? scanner))
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scanner # for now, we don't do anything with comments; can be added later
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(recur (advance scanner) (buffer/push comm char)))))
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(recur scanner (buffer char)))
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(defn- scan-token [scanner]
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(let [char (current-char scanner)
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scanner (advance scanner)
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next (current-char scanner)]
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(case char
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## one-character tokens
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## :break is a special zero-char token before closing braces
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## it makes parsing much simpler
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"(" (add-token scanner :lparen)
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")" (add-token (add-token scanner :break) :rparen)
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"{" (add-token scanner :lbrace)
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"}" (add-token (add-token scanner :break) :rbrace)
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"[" (add-token scanner :lbracket)
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"]" (add-token (add-token scanner :break) :rbracket)
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";" (add-token scanner :semicolon)
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"," (add-token scanner :comma)
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"\n" (add-token (update scanner :line inc) :newline)
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"\\" (add-token scanner :backslash)
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"=" (add-token scanner :equals)
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">" (add-token scanner :pipeline)
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## two-character tokens
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## ->
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"-" (cond
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(= next ">") (add-token (advance scanner) :arrow)
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(digit? next) (add-number char scanner)
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:else (add-error scanner (string "Expected > or negative number after `-`. Got `" char next "`")))
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## dict #{
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"#" (if (= next "{")
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(add-token (advance scanner) :startdict)
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(add-error scanner (string "Expected beginning of dict: #{. Got " char next)))
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## set ${
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"$" (if (= next "{")
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(add-token (advance scanner) :startset)
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(add-error scanner (string "Expected beginning of set: ${. Got " char next)))
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## placeholders
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## there's a flat _, and then ignored words
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"_" (cond
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(terminates? next) (add-token scanner :placeholder)
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(alpha? next) (add-ignored scanner)
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:else (add-error scanner (string "Expected placeholder: _. Got " char next)))
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## comments
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## & starts an inline comment
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"&" (add-comment char scanner)
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## keywords
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# XXX: make sure we want only lower-only keywords
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":" (cond
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(lower? next) (add-keyword scanner)
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(upper? next) (add-pkg-kw scanner)
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:else (add-error scanner (string "Expected keyword or pkg keyword. Got " char next)))
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## splats
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"." (let [after_next (current-char (advance scanner))]
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(if (= ".." (string next after_next))
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(add-token (advance scanner) :splat)
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(add-error scanner (string "Expected splat: ... . Got " (string "." next after_next)))))
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## strings
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"\"" (add-string scanner)
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## word matches
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(cond
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(whitespace? char) scanner ## for now just skip whitespace characters
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(digit? char) (add-number char scanner)
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(upper? char) (add-pkg char scanner)
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(lower? char) (add-word char scanner)
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:else (add-error scanner (string "Unexpected character: " char))))))
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(defn- next-token [scanner]
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(put scanner :start (get scanner :current)))
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(defn scan [source &opt input]
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(default input :input)
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(defn recur [scanner]
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(if (at-end? scanner)
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(let [scanner (add-token (add-token scanner :break) :eof)]
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{:tokens (get scanner :tokens)
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:errors (get scanner :errors [])})
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(recur (-> scanner (scan-token) (next-token)))))
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(recur (new-scanner source input)))
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(comment
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# (do
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(def source "add 1 2 () four")
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(scan source)
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)
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