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better_sta
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5c037ed46e | ||
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c2943e0ba7 |
33
justfile
33
justfile
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@ -1,6 +1,33 @@
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# start a repl
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set dotenv-load
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repl:
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clj -X:repl
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default:
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@just --list
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test:
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@echo $test
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# build clojurescript release
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build:
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build:
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shadow-cljs release module
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shadow-cljs release module
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# open a janet repl in a different os window
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repl:
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kitten @ launch --type=os-window --allow-remote-control --cwd=current --title=hx_repl:ludus
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kitten @ send-text -m "title:hx_repl:ludus" "lein repl"
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restart:
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kitten @ send-text -m "title:hx_repl:ludus" "\04"
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kitten @ send-text -m "title:hx_repl:ludus" "janet -s\n"
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# send what's selected to the repl and evaluate it
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eval:
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sd "$" "\n" | sd "\n\n" "\n" | kitten @ send-text -m "title:hx_repl:ludus" --stdin
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# send what's selected to a buffer, and then evaluate what's in the buffer
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buffer:
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sd "$" "\n" | sd "\n\n" "\n" > .repl-buffer.janet
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kitten @ send-text -m "title:hx_repl:ludus" "(import ./.repl-buffer :prefix \"\")"
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@ -664,16 +664,21 @@
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)
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)
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))
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))
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(def state (atom {})) ;; for now use a global state atom
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(defn- interpret-ref [ast ctx]
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(defn- interpret-ref [ast ctx]
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(let [data (:data ast)
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(let [data (:data ast)
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name (-> data first :data first)
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name (-> data first :data first)
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expr (-> data second)]
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expr (-> data second)]
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(when (contains? @ctx name)
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(when (contains? @ctx name)
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(throw (ex-info (str "Name " name " is already bound") {:ast ast})))
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(throw (ex-info (str "Name " name " is already bound") {:ast ast})))
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(when (contains? @state name)
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(throw (ex-info (str "A ref already has " name " name") {:ast ast})))
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(let [value (interpret-ast expr ctx)
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(let [value (interpret-ast expr ctx)
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box (atom value)
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box (atom value)
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ref {::data/ref true ::data/value box ::data/name name}]
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ref {::data/ref true ::data/value box ::data/name name ::data/state state}]
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(vswap! ctx update-ctx {name ref})
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(vswap! ctx update-ctx {name ref})
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(swap! state assoc name ref)
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ref)))
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ref)))
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(defn- interpret-loop [ast ctx]
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(defn- interpret-loop [ast ctx]
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@ -812,7 +817,7 @@
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(resolve-word times-expr ctx)
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(resolve-word times-expr ctx)
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(-> times-expr :data first))
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(-> times-expr :data first))
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expr (second data)]
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expr (second data)]
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(if (not (number? times)) (throw (ex-info (str "Repeat needs a number, not a " (base/get-type times)) {})))
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(when (not (number? times)) (throw (ex-info (str "Repeat needs a number, not a " (base/get-type times)) {})))
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(dotimes [_ times] (interpret-ast expr ctx))))
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(dotimes [_ times] (interpret-ast expr ctx))))
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(defn- interpret-literal [ast] (-> ast :data first))
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(defn- interpret-literal [ast] (-> ast :data first))
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@ -43,7 +43,7 @@
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post_tokens (:tokens post_scanned)
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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_parsed (p/apply-parser g/script post_tokens)
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post_result (i/interpret-safe source post_parsed {} false)
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post_result (i/interpret-safe source post_parsed {} false)
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ludus_result (assoc post_result :result result_str :test test_results)
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ludus_result (assoc post_result :result result_str :test test_results :state @i/state)
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clj_result (ld->clj ludus_result)
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clj_result (ld->clj ludus_result)
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]
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]
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(cond
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(cond
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@ -136,7 +136,7 @@ fn empty? {
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"Returns true if something is empty. Otherwise returns false (including for things that can't logically be empty, like numbers)."
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"Returns true if something is empty. Otherwise returns false (including for things that can't logically be empty, like numbers)."
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([]) -> true
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([]) -> true
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(#{}) -> true
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(#{}) -> true
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(s as :set) -> eq (s, ${})
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(s as :set) -> eq? (s, ${})
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(()) -> true
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(()) -> true
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("") -> true
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("") -> true
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(_) -> false
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(_) -> false
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@ -165,6 +165,8 @@ fn set? {
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(_) -> false
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(_) -> false
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}
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}
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& add a contains? or has? function
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fn fold {
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fn fold {
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"Folds a list."
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"Folds a list."
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(f as :fn, xs as :list) -> fold (f, xs, f ())
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(f as :fn, xs as :list) -> fold (f, xs, f ())
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@ -179,7 +181,7 @@ fn fold {
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}
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}
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fn map {
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fn map {
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"Maps over a list."
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"Maps a function over a list: returns a new list with elements that are the result of applying the function to each element in the original list. E.g., `map ([1, 2, 3], inc) &=> [2, 3, 4]`."
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(f as :fn, xs) -> {
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(f as :fn, xs) -> {
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fn mapper (prev, curr) -> append (prev, f (curr))
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fn mapper (prev, curr) -> append (prev, f (curr))
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fold (mapper, xs, [])
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fold (mapper, xs, [])
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@ -191,7 +193,7 @@ fn map {
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}
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}
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fn filter {
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fn filter {
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"Takes a list and a predicate function, and returns a new list with only the items that produce truthy values when the function is called on them."
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"Takes a list and a predicate function, and returns a new list with only the items that produce truthy values when the function is called on them. E.g., `filter ([1, 2, 3, 4], odd?) &=> [1, 3]`."
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(p? as :fn, xs) -> {
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(p? as :fn, xs) -> {
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fn filterer (filtered, x) -> if p? (x)
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fn filterer (filtered, x) -> if p? (x)
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then append (filtered, x)
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then append (filtered, x)
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@ -413,10 +415,20 @@ fn div/safe {
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}
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}
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}
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}
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fn inv {
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"Returns the inverse of a number: 1/n or `div (1, n)`. Panics on division by zero."
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(x as :number) -> div (1, x)
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}
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fn inv/0 {
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"Returns the inverse of a number: 1/n or `div/0 (1, n)`. Returns 0 on division by zero."
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(x as :number) -> div/0 (1, x)
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}
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fn abs {
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fn abs {
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"Returns the absolute value of a number."
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"Returns the absolute value of a number."
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(0) -> 0
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(0) -> 0
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(n) -> if neg? (n) then mult (-1, n) else n
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(n as :number) -> if neg? (n) then mult (-1, n) else n
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}
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}
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fn neg {
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fn neg {
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@ -483,6 +495,14 @@ fn lte? {
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}
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}
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}
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}
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fn between? {
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"Returns true if a number is in the range [lower, higher): greater than or equal to the lower number, less than the higher."
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(lower as :number, higher as :number, x as :number) -> and (
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gte? (x, lower)
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lt? (x, higher)
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)
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}
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fn neg? {
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fn neg? {
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"Returns true if a value is a negative number, otherwise returns false."
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"Returns true if a value is a negative number, otherwise returns false."
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(x as :number) if lt? (x, 0) -> true
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(x as :number) if lt? (x, 0) -> true
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@ -497,16 +517,30 @@ fn pos? {
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fn even? {
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fn even? {
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"Returns true if a value is an even number, otherwise returns false."
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"Returns true if a value is an even number, otherwise returns false."
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(x as :number) if eq (0, mod (x, 2)) -> true
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(x as :number) if eq? (0, mod (x, 2)) -> true
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(_) -> false
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(_) -> false
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}
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}
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fn odd? {
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fn odd? {
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"Returns true if a value is an odd number, otherwise returns false."
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"Returns true if a value is an odd number, otherwise returns false."
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(x as :number) if eq (1, mod (x, 2)) -> true
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(x as :number) if eq? (1, mod (x, 2)) -> true
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(_) -> false
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(_) -> false
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}
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}
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fn min {
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"Returns the number in its arguments that is closest to negative infinity."
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(x as :number) -> x
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(x as :number, y as :number) -> if lt? (x, y) then x else y
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(x, y, ...zs) -> fold (min, zs, min (x, y))
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}
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fn max {
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"Returns the number in its arguments that is closest to positive infinity."
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(x as :number) -> x
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(x as :number, y as :number) -> if gt? (x, y) then x else y
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(x, y, ...zs) -> fold (max, zs, max (x, y))
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}
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|
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&&& keywords: funny names
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&&& keywords: funny names
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fn keyword? {
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fn keyword? {
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"Returns true if a value is a keyword, otherwise returns false."
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"Returns true if a value is a keyword, otherwise returns false."
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@ -590,6 +624,7 @@ fn or {
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|
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&&& associative collections: dicts, structs, namespaces
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&&& associative collections: dicts, structs, namespaces
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& TODO?: get_in, update_in, merge
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& TODO?: get_in, update_in, merge
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& TODO?: consider renaming these: put & take, not assoc/dissoc
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fn assoc {
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fn assoc {
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"Takes a dict, key, and value, and returns a new dict with the key set to value."
|
"Takes a dict, key, and value, and returns a new dict with the key set to value."
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() -> #{}
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() -> #{}
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@ -677,6 +712,7 @@ fn assoc? {
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(_) -> false
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(_) -> false
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}
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}
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|
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& TODO: consider merging `get` and `at`
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fn get {
|
fn get {
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"Takes a dict or struct, key, and optional default value; returns the value at key. If the value is not found, returns nil or the default value. Returns nil or default if the first argument is not a dict or struct."
|
"Takes a dict or struct, key, and optional default value; returns the value at key. If the value is not found, returns nil or the default value. Returns nil or default if the first argument is not a dict or struct."
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(key as :keyword) -> get (key, _)
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(key as :keyword) -> get (key, _)
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||||||
|
@ -684,6 +720,7 @@ fn get {
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(key as :keyword, coll, default) -> base :get (key, coll, default)
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(key as :keyword, coll, default) -> base :get (key, coll, default)
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}
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}
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|
|
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|
& TODO: add sets to this?
|
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fn has? {
|
fn has? {
|
||||||
"Takes a key and a dict, and returns true if there is a non-`nil` value stored at the key."
|
"Takes a key and a dict, and returns true if there is a non-`nil` value stored at the key."
|
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(key as :keyword) -> has? (key, _)
|
(key as :keyword) -> has? (key, _)
|
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|
@ -691,8 +728,7 @@ fn has? {
|
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}
|
}
|
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|
|
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fn dict {
|
fn dict {
|
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"Takes a struct or ns, and returns it as a dict. Or, takes a list or tuple of (key, value) tuples and returns it as a dict. Returns dicts unharmed."
|
"Takes an ns, and returns it as a dict. Or, takes a list or tuple of (key, value) tuples and returns it as a dict. Returns dicts unharmed."
|
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(struct as :struct) -> base :to_dict (struct)
|
|
||||||
(ns_ as :ns) -> base :to_dict (ns_)
|
(ns_ as :ns) -> base :to_dict (ns_)
|
||||||
(dict as :dict) -> dict
|
(dict as :dict) -> dict
|
||||||
(list as :list) -> fold (assoc, list)
|
(list as :list) -> fold (assoc, list)
|
||||||
|
@ -829,12 +865,25 @@ fn dist {
|
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}
|
}
|
||||||
|
|
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&&& more number functions
|
&&& more number functions
|
||||||
& TODO: add max, min
|
|
||||||
fn random {
|
fn random {
|
||||||
"Returns a random number. With zero arguments, returns a random number between 0 (inclusive) and 1 (exclusive). With one argument, returns a random number between 0 and n. With two arguments, returns a random number between m and n."
|
"Returns a random number. With zero arguments, returns a random number between 0 (inclusive) and 1 (exclusive). With one argument, returns a random number between 0 and n. With two arguments, returns a random number between m and n. Alternately, given a list, it returns a random member of that list."
|
||||||
() -> base :random ()
|
() -> base :random ()
|
||||||
(n as :number) -> base :random (n)
|
(n as :number) -> base :random (n)
|
||||||
(m as :number, n as :number) -> add (m, random (n))
|
(m as :number, n as :number) -> add (m, random (n))
|
||||||
|
(l as :list) -> {
|
||||||
|
let i = do l > count > random > floor
|
||||||
|
at (l, i)
|
||||||
|
}
|
||||||
|
(d as :dict) -> {
|
||||||
|
let key = do d > keys > random
|
||||||
|
get (d, key)
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
fn random_int {
|
||||||
|
"Returns a random integer. With one argument, returns a random integer between 0 and that number. With two arguments, returns a random integer between them."
|
||||||
|
(n as :number) -> do n > random > floor
|
||||||
|
(m as :number, n as :number) -> floor (random (m, n))
|
||||||
}
|
}
|
||||||
|
|
||||||
fn floor {
|
fn floor {
|
||||||
|
@ -853,7 +902,7 @@ fn round {
|
||||||
}
|
}
|
||||||
|
|
||||||
fn range {
|
fn range {
|
||||||
"Returns the set of integers between start (inclusive) and end (exclusive) as a list. With one argument, starts at 0. If end is less than start, returns an empty list."
|
"Returns the set of integers between start (inclusive) and end (exclusive) as a list: [start, end). With one argument, starts at 0. If end is less than start, returns an empty list."
|
||||||
(end as :number) -> base :range (0, end)
|
(end as :number) -> base :range (0, end)
|
||||||
(start as :number, end as :number) -> base :range (start, end)
|
(start as :number, end as :number) -> base :range (start, end)
|
||||||
}
|
}
|
||||||
|
@ -906,15 +955,25 @@ fn assert! {
|
||||||
&&& Turtle & other graphics
|
&&& Turtle & other graphics
|
||||||
|
|
||||||
& some basic colors
|
& some basic colors
|
||||||
&&& TODO: add colors
|
& these are the "basic" css colors
|
||||||
|
& https://developer.mozilla.org/en-US/docs/Web/CSS/named-color
|
||||||
let colors = #{
|
let colors = #{
|
||||||
:white (255, 255, 255, 255)
|
|
||||||
:light_gray (150, 150, 150, 255)
|
|
||||||
:dark_gray (50, 50, 50, 255)
|
|
||||||
:red (255, 0, 0, 255)
|
|
||||||
:green (0, 255, 0, 255)
|
|
||||||
:blue (0, 0, 255, 255)
|
|
||||||
:black (0, 0, 0, 255)
|
:black (0, 0, 0, 255)
|
||||||
|
:silver (192, 192, 192, 255)
|
||||||
|
:gray (128, 128, 128, 255)
|
||||||
|
:white (255, 255, 255, 255)
|
||||||
|
:maroon (128, 0, 0, 255)
|
||||||
|
:red (255, 0, 0, 255)
|
||||||
|
:purple (128, 0, 128, 255)
|
||||||
|
:fuchsia (255, 0, 255, 255)
|
||||||
|
:green (0, 128, 0, 255)
|
||||||
|
:lime (0, 255, 0, 255)
|
||||||
|
:olive (128, 128, 0, 255)
|
||||||
|
:yellow (255, 255, 0, 255)
|
||||||
|
:navy (0, 0, 128, 255)
|
||||||
|
:blue (0, 0, 255, 255)
|
||||||
|
:teal (0, 128, 128, 255)
|
||||||
|
:aqua (0, 255, 25, 255)
|
||||||
}
|
}
|
||||||
|
|
||||||
& the initial turtle state
|
& the initial turtle state
|
||||||
|
@ -986,6 +1045,7 @@ fn render_turtle! () -> {
|
||||||
add_call! ((:vertex, x2, y2))
|
add_call! ((:vertex, x2, y2))
|
||||||
add_call! ((:vertex, x3, y3))
|
add_call! ((:vertex, x3, y3))
|
||||||
add_call! ((:endShape))
|
add_call! ((:endShape))
|
||||||
|
& there's a happy bug here: the stroke will be the same width as the pen width. Keep this for now. Consider also showing the pen colour here?
|
||||||
add_call! ((:stroke, 0))
|
add_call! ((:stroke, 0))
|
||||||
add_call! ((:line, 0, 0, x1, y1))
|
add_call! ((:line, 0, 0, x1, y1))
|
||||||
add_call! ((:pop))
|
add_call! ((:pop))
|
||||||
|
@ -1219,6 +1279,8 @@ ns prelude {
|
||||||
div
|
div
|
||||||
div/0
|
div/0
|
||||||
div/safe
|
div/safe
|
||||||
|
inv
|
||||||
|
inv/0
|
||||||
angle
|
angle
|
||||||
abs
|
abs
|
||||||
neg
|
neg
|
||||||
|
@ -1231,6 +1293,9 @@ ns prelude {
|
||||||
gte?
|
gte?
|
||||||
lt?
|
lt?
|
||||||
lte?
|
lte?
|
||||||
|
min
|
||||||
|
max
|
||||||
|
between?
|
||||||
keyword?
|
keyword?
|
||||||
nil?
|
nil?
|
||||||
some?
|
some?
|
||||||
|
@ -1269,6 +1334,7 @@ ns prelude {
|
||||||
sum_of_squares
|
sum_of_squares
|
||||||
dist
|
dist
|
||||||
random
|
random
|
||||||
|
random_int
|
||||||
pi
|
pi
|
||||||
tau
|
tau
|
||||||
floor
|
floor
|
||||||
|
|
Loading…
Reference in New Issue
Block a user