Basically wire the things up!
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17592149f1
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@ -1 +1,2 @@
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(ns ludus.data)
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(ns ludus.data)
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@ -895,7 +895,7 @@
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interpreted (interpret-ast parsed base-ctx)
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interpreted (interpret-ast parsed base-ctx)
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namespace (dissoc interpreted ::data/type ::data/name ::data/struct)
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namespace (dissoc interpreted ::data/type ::data/name ::data/struct)
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context (ns->ctx namespace)]
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context (ns->ctx namespace)]
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;(println context)
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(println "Prelude fully loaded.")
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context))
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context))
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; ;; TODO: update this to use new parser pipeline & new AST representation
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; ;; TODO: update this to use new parser pipeline & new AST representation
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@ -939,17 +939,18 @@
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{:result :error :ctx (volatile! orig-ctx)})))))
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{:result :error :ctx (volatile! orig-ctx)})))))
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(defn interpret-safe [source parsed ctx]
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(defn interpret-safe [source parsed ctx]
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(try
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(let [base-ctx (volatile! {::parent (volatile! (merge ludus-prelude ctx))})]
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(let [base-ctx (volatile! {::parent (volatile! (merge ludus-prelude ctx))})]
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(try
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(interpret-ast parsed base-ctx))
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(println "Running source: " source)
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(catch #?(:clj Throwable :cljs js/Object) e
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(interpret-ast parsed base-ctx)
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(println "Ludus panicked!")
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(catch #?(:clj Throwable :cljs js/Object) e
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(println "On line" (get-in (ex-data e) [:ast :token :line]))
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(println "Ludus panicked!")
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(println ">>> " (get-line source (get-in (ex-data e) [:ast :token :line])))
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(println "On line" (get-in (ex-data e) [:ast :token :line]))
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(println (ex-message e))
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(println ">>> " (get-line source (get-in (ex-data e) [:ast :token :line])))
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(pp/pprint (ex-data e))
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(println (ex-message e))
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(throw e)
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(pp/pprint (ex-data e))
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)))
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(throw e)
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))))
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;; repl
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;; repl
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(comment
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(comment
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42
src/ludus/node.cljc
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42
src/ludus/node.cljc
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@ -0,0 +1,42 @@
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(ns ludus.node
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(:require [ludus.interpreter :as i]
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[ludus.grammar :as g]
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[ludus.parser :as p]
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[ludus.scanner :as s]
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[ludus.prelude :as pre]
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[ludus.show :as show]
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[ludus.base :as base]
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[ludus.data :as data]
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)
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)
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(declare ld->clj)
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(defn cljify [[k v]] [k (ld->clj v)])
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(defn ld->clj [value]
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(case (base/get-type value)
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(:nil :number :string :boolean :keyword :set) value
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(:list :tuple) (into [] (map ld->clj) (rest value))
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(:dict :struct :ns) (into {} (map cljify) (dissoc value ::data/dict ::data/struct ::data/type ::data/name))
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:ref (ld->clj @(::value value))
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:fn (throw (ex-info (str "Cannot export functions from Ludus to Clojure. You tried exporting " (show/show value)) {}))))
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(defn run [source]
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(let [user_scanned (s/scan source)
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user_tokens (:tokens user_scanned)
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user_parsed (p/apply-parser g/script user_tokens)
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user_result (i/interpret-safe source user_parsed {})
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post_scanned (s/scan pre/postlude)
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post_tokens (:tokens post_scanned)
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post_parsed (p/apply-parser g/script post_tokens)
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post_result (i/interpret-safe source post_parsed {})
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ludus_result (assoc post_result :result user_result)
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clj_result (ld->clj ludus_result)
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]
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#?(:clj clj_result :cljs (clj->js clj_result))
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))
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@ -1,16 +0,0 @@
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(ns ludus.node
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(:require [ludus.interpreter :as i]
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[ludus.grammar :as g]
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[ludus.parser :as p]
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[ludus.scanner :as s])
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)
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(defn run [source]
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(let [scanned (s/scan source)
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tokens (:tokens scanned)
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parsed (p/apply-parser g/script tokens)
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result (i/interpret-safe source parsed {})]
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(clj->js {:result result
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:errors []
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:console []
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:draw []})))
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11
src/ludus/postlude.ld
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11
src/ludus/postlude.ld
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@ -0,0 +1,11 @@
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& this file runs after any given interpretation
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& the goal is to output any global state
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if turtle_state() :visible? then render_turtle! () else nil
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#{
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& :result result is provided elsewhere
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:errors [] & if we get here there are no errors
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:console deref (console)
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:draw deref (p5_calls)
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}
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@ -6,4 +6,10 @@
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#?(
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#?(
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:clj (slurp "src/ludus/prelude.ld")
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:clj (slurp "src/ludus/prelude.ld")
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:cljs (r/inline "./prelude.ld")
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:cljs (r/inline "./prelude.ld")
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))
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))
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(def postlude
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#?(
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:clj (slurp "src/ludus/postlude.ld")
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:cljs (r/inline "./postlude.ld")
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))
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@ -125,9 +125,24 @@ fn append {
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(xs as :set, x) -> base :conj (xs, x)
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(xs as :set, x) -> base :conj (xs, x)
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}
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}
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ref console = []
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fn add_msg! {
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"Adds a message to the console."
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(msgs) -> {
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let strs = map (show, msgs)
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let msg = fold (concat, strs, "")
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update! (console, append (_, msg))
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:ok
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}
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}
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fn print! {
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fn print! {
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"Sends a text representation of Ludus values to the console."
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"Sends a text representation of Ludus values to the console."
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(...args) -> base :print (args)
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(...args) -> {
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base :print (args)
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add_msg! (args)
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}
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}
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}
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fn show {
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fn show {
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@ -694,23 +709,26 @@ let turtle_angle = 0.375
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let turtle_color = (100, 100, 100, 100)
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let turtle_color = (100, 100, 100, 100)
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fn render_turtle! () -> {
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fn render_turtle! () -> {
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let state = do turtle_state > deref > last
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let state = do turtle_states > deref > last
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if state :visible?
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if state :visible?
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then {
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then {
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add_call! ((:push))
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add_call! ((:push))
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let (r, g, b, a) = turtle_color
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let (r, g, b, a) = turtle_color
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add_call! ((:fill, r, g, b, a))
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add_call! ((:fill, r, g, b, a))
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add_call! ((:noStroke))
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add_call! ((:noStroke))
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let #{heading, position} = state
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let #{heading, :position (x, y)} = state
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add_call! ((:translate, x, y))
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add_call! ((:rotate, turn/deg (heading)))
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add_call! ((:rotate, turn/deg (heading)))
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add_call! ((:beginShape))
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add_call! ((:beginShape))
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let head_unit = heading/vec (heading)
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let head_unit = heading/vector (heading)
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let first = mult (head_unit, turtle_radius)
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let first = mult (head_unit, turtle_radius)
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let second = rotate (first, turtle_angle)
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let (x1, y1) = first
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let third = rotate (first, neg (turtle_angle))
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let (x2, y2) = rotate (first, turtle_angle)
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add_call! ((:vertex, first))
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let (x3, y3) = rotate (first, neg (turtle_angle))
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add_call! ((:vertex, second))
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add_call! ((:vertex, x1, y1))
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add_call! ((:vertx, third))
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add_call! ((:vertex, x2, y2))
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add_call! ((:vertex, x3, y3))
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add_call! ((:endShape))
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add_call! ((:pop))
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add_call! ((:pop))
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:ok
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:ok
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}
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}
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@ -911,6 +929,7 @@ ns prelude {
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inc
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inc
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dec
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dec
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print!
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print!
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console
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show
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show
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prn!
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prn!
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type
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type
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heading/vector
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heading/vector
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turtle_state
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turtle_state
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p5_calls, turtle_states, turtle_commands
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p5_calls, turtle_states, turtle_commands
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}
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render_turtle!
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}
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