(.module: lux (lux (control [monad #+ do] ["ex" exception #+ exception:] ["p" parser]) (data ["e" error] [text] text/format [number] (coll [list "list/" Functor] [dict #+ Dict])) [macro #+ with-gensyms] (macro [code] ["s" syntax #+ syntax:]) [host]) (luxc ["&" lang] (lang ["la" analysis] ["ls" synthesis] (host [r #+ Expression Statement]))) [///] (/// [".T" runtime] [".T" case] [".T" function] [".T" loop])) ## [Types] (type: #export Translator (-> ls.Synthesis (Meta Expression))) (type: #export Proc (-> Translator (List ls.Synthesis) (Meta Expression))) (type: #export Bundle (Dict Text Proc)) (syntax: (Vector [size s.nat] elemT) (wrap (list (` [(~+ (list.repeat size elemT))])))) (type: #export Nullary (-> (Vector +0 Expression) Expression)) (type: #export Unary (-> (Vector +1 Expression) Expression)) (type: #export Binary (-> (Vector +2 Expression) Expression)) (type: #export Trinary (-> (Vector +3 Expression) Expression)) (type: #export Variadic (-> (List Expression) Expression)) ## [Utils] (def: #export (install name unnamed) (-> Text (-> Text Proc) (-> Bundle Bundle)) (dict.put name (unnamed name))) (def: #export (prefix prefix bundle) (-> Text Bundle Bundle) (|> bundle dict.entries (list/map (function (_ [key val]) [(format prefix " " key) val])) (dict.from-list text.Hash))) (def: (wrong-arity proc expected actual) (-> Text Nat Nat Text) (format "Wrong number of arguments for " (%t proc) "\n" "Expected: " (|> expected nat-to-int %i) "\n" " Actual: " (|> actual nat-to-int %i))) (syntax: (arity: [name s.local-symbol] [arity s.nat]) (with-gensyms [g!_ g!proc g!name g!translate g!inputs] (do @ [g!input+ (monad.seq @ (list.repeat arity (macro.gensym "input")))] (wrap (list (` (def: #export ((~ (code.local-symbol name)) (~ g!proc)) (-> (-> (..Vector (~ (code.nat arity)) Expression) Expression) (-> Text ..Proc)) (function ((~ g!_) (~ g!name)) (function ((~ g!_) (~ g!translate) (~ g!inputs)) (case (~ g!inputs) (^ (list (~+ g!input+))) (do macro.Monad [(~+ (|> g!input+ (list/map (function (_ g!input) (list g!input (` ((~ g!translate) (~ g!input)))))) list.concat))] ((~' wrap) ((~ g!proc) [(~+ g!input+)]))) (~' _) (macro.fail (wrong-arity (~ g!name) +1 (list.size (~ g!inputs)))))))))))))) (arity: nullary +0) (arity: unary +1) (arity: binary +2) (arity: trinary +3) (def: #export (variadic proc) (-> Variadic (-> Text Proc)) (function (_ proc-name) (function (_ translate inputsS) (do macro.Monad [inputsI (monad.map @ translate inputsS)] (wrap (proc inputsI)))))) ## [Procedures] ## [[Lux]] (def: (lux//is [leftO rightO]) Binary (r.apply (list leftO rightO) (r.global "identical"))) (def: (lux//if [testO thenO elseO]) Trinary (caseT.translate-if testO thenO elseO)) (def: (lux//try riskyO) Unary (runtimeT.lux//try riskyO)) (def: (lux//noop valueO) Unary valueO) (exception: #export (Wrong-Syntax {message Text}) message) (def: #export (wrong-syntax procedure args) (-> Text (List ls.Synthesis) Text) (format "Procedure: " procedure "\n" "Arguments: " (%code (code.tuple args)))) (def: lux//loop (-> Text Proc) (function (_ proc-name) (function (_ translate inputsS) (case (s.run inputsS ($_ p.seq s.nat (s.tuple (p.many s.any)) s.any)) (#e.Success [offset initsS+ bodyS]) (loopT.translate-loop translate offset initsS+ bodyS) (#e.Error error) (&.throw Wrong-Syntax (wrong-syntax proc-name inputsS))) ))) (def: lux//recur (-> Text Proc) (function (_ proc-name) (function (_ translate inputsS) (loopT.translate-recur translate inputsS)))) (def: lux-procs Bundle (|> (dict.new text.Hash) (install "noop" (unary lux//noop)) (install "is" (binary lux//is)) (install "try" (unary lux//try)) (install "if" (trinary lux//if)) (install "loop" lux//loop) (install "recur" lux//recur) )) ## [[Bits]] (do-template [ ] [(def: ( [subjectO paramO]) Binary ( paramO subjectO))] [bit//and runtimeT.bit//and] [bit//or runtimeT.bit//or] [bit//xor runtimeT.bit//xor] ) (do-template [ ] [(def: ( [subjectO paramO]) Binary ( paramO subjectO))] [bit//shift-left runtimeT.bit//shift-left] [bit//signed-shift-right runtimeT.bit//signed-shift-right] [bit//shift-right runtimeT.bit//shift-right] ) (def: bit-procs Bundle (<| (prefix "bit") (|> (dict.new text.Hash) (install "count" (unary runtimeT.bit//count)) (install "and" (binary bit//and)) (install "or" (binary bit//or)) (install "xor" (binary bit//xor)) (install "shift-left" (binary bit//shift-left)) (install "unsigned-shift-right" (binary bit//shift-right)) (install "shift-right" (binary bit//signed-shift-right)) ))) ## [[Arrays]] (def: (array//get [arrayO idxO]) Binary (runtimeT.array//get arrayO idxO)) (def: (array//put [arrayO idxO elemO]) Trinary (runtimeT.array//put arrayO idxO elemO)) (def: (array//remove [arrayO idxO]) Binary (runtimeT.array//put arrayO idxO r.null)) (def: array-procs Bundle (<| (prefix "array") (|> (dict.new text.Hash) (install "new" (unary runtimeT.array//new)) (install "get" (binary array//get)) (install "put" (trinary array//put)) (install "remove" (binary array//remove)) (install "size" (unary r.length)) ))) ## [[Numbers]] (host.import java/lang/Double (#static MIN_VALUE Double) (#static MAX_VALUE Double)) (do-template [ ] [(def: ( _) Nullary ( ))] [frac//smallest Double::MIN_VALUE r.float] [frac//min (f/* -1.0 Double::MAX_VALUE) r.float] [frac//max Double::MAX_VALUE r.float] ) (do-template [ ] [(def: ( _) Nullary )] [nat//min runtimeT.int//zero] [nat//max runtimeT.int//-one] [int//min runtimeT.int//min] [int//max runtimeT.int//max] [deg//min runtimeT.int//zero] [deg//max runtimeT.int//-one] ) (do-template [ ] [(def: ( _) Nullary (r.float ))] [frac//not-a-number number.not-a-number] [frac//positive-infinity number.positive-infinity] [frac//negative-infinity number.negative-infinity] ) (do-template [ ] [(def: ( [subjectO paramO]) Binary (|> subjectO ( paramO)))] [int//add runtimeT.int//+] [int//sub runtimeT.int//-] [int//mul runtimeT.int//*] [int//div runtimeT.int///] [int//rem runtimeT.int//%] [nat//add runtimeT.int//+] [nat//sub runtimeT.int//-] [nat//mul runtimeT.int//*] [nat//div runtimeT.nat///] [nat//rem runtimeT.nat//%] [deg//add runtimeT.int//+] [deg//sub runtimeT.int//-] [deg//rem runtimeT.int//-] [deg//scale runtimeT.int//*] [deg//mul runtimeT.deg//*] [deg//div runtimeT.deg///] [deg//reciprocal runtimeT.int///] ) (do-template [ ] [(def: ( [subjectO paramO]) Binary ( paramO subjectO))] [frac//add r.+] [frac//sub r.-] [frac//mul r.*] [frac//div r./] [frac//rem r.%%] [frac//= r.=] [frac//< r.<] [text//= r.=] [text//< r.<] ) (do-template [ ] [(def: ( [subjectO paramO]) Binary ( paramO subjectO))] [nat//= runtimeT.int//=] [nat//< runtimeT.nat//<] [int//= runtimeT.int//=] [int//< runtimeT.int//<] [deg//= runtimeT.int//=] [deg//< runtimeT.nat//<] ) (def: (apply1 func) (-> Expression (-> Expression Expression)) (function (_ value) (r.apply (list value) func))) (def: nat-procs Bundle (<| (prefix "nat") (|> (dict.new text.Hash) (install "+" (binary nat//add)) (install "-" (binary nat//sub)) (install "*" (binary nat//mul)) (install "/" (binary nat//div)) (install "%" (binary nat//rem)) (install "=" (binary nat//=)) (install "<" (binary nat//<)) (install "min" (nullary nat//min)) (install "max" (nullary nat//max)) (install "to-int" (unary id)) (install "char" (unary (apply1 (r.global "intToUtf8"))))))) (def: int-procs Bundle (<| (prefix "int") (|> (dict.new text.Hash) (install "+" (binary int//add)) (install "-" (binary int//sub)) (install "*" (binary int//mul)) (install "/" (binary int//div)) (install "%" (binary int//rem)) (install "=" (binary int//=)) (install "<" (binary int//<)) (install "min" (nullary int//min)) (install "max" (nullary int//max)) (install "to-nat" (unary id)) (install "to-frac" (unary runtimeT.int//to-float))))) (def: deg-procs Bundle (<| (prefix "deg") (|> (dict.new text.Hash) (install "+" (binary deg//add)) (install "-" (binary deg//sub)) (install "*" (binary deg//mul)) (install "/" (binary deg//div)) (install "%" (binary deg//rem)) (install "=" (binary deg//=)) (install "<" (binary deg//<)) (install "scale" (binary deg//scale)) (install "reciprocal" (binary deg//reciprocal)) (install "min" (nullary deg//min)) (install "max" (nullary deg//max)) (install "to-frac" (unary runtimeT.deg//to-frac))))) (def: (frac//encode value) (-> Expression Expression) (r.apply (list (r.string "%f") value) (r.global "sprintf"))) (def: frac-procs Bundle (<| (prefix "frac") (|> (dict.new text.Hash) (install "+" (binary frac//add)) (install "-" (binary frac//sub)) (install "*" (binary frac//mul)) (install "/" (binary frac//div)) (install "%" (binary frac//rem)) (install "=" (binary frac//=)) (install "<" (binary frac//<)) (install "smallest" (nullary frac//smallest)) (install "min" (nullary frac//min)) (install "max" (nullary frac//max)) (install "not-a-number" (nullary frac//not-a-number)) (install "positive-infinity" (nullary frac//positive-infinity)) (install "negative-infinity" (nullary frac//negative-infinity)) (install "to-deg" (unary runtimeT.deg//from-frac)) (install "to-int" (unary (apply1 (r.global "as.integer")))) (install "encode" (unary frac//encode)) (install "decode" (unary runtimeT.frac//decode))))) ## [[Text]] (def: (text//concat [subjectO paramO]) Binary (r.apply (list subjectO paramO) (r.global "paste0"))) (def: (text//char [subjectO paramO]) Binary (runtimeT.text//char subjectO paramO)) (def: (text//replace-all [textO patternO replacementO]) Trinary (r.apply (list patternO replacementO textO) (r.global "gsub"))) (def: (text//replace-once [textO patternO replacementO]) Trinary (r.apply (list patternO replacementO textO) (r.global "sub"))) (def: (text//clip [subjectO paramO extraO]) Trinary (runtimeT.text//clip subjectO paramO extraO)) (def: (text//index [textO partO startO]) Trinary (runtimeT.text//index textO partO startO)) (def: text-procs Bundle (<| (prefix "text") (|> (dict.new text.Hash) (install "=" (binary text//=)) (install "<" (binary text//<)) (install "concat" (binary text//concat)) (install "index" (trinary text//index)) (install "size" (unary (|>> (apply1 (r.global "nchar")) runtimeT.int//from-float))) (install "hash" (unary runtimeT.text//hash)) (install "replace-once" (trinary text//replace-once)) (install "replace-all" (trinary text//replace-all)) (install "char" (binary text//char)) (install "clip" (trinary text//clip)) (install "upper" (unary (apply1 (r.global "toupper")))) (install "lower" (unary (apply1 (r.global "tolower")))) ))) ## [[Math]] (def: (math//pow [subject param]) Binary (|> subject (r.** param))) (def: (math-func name) (-> Text (-> Expression Expression)) (function (_ input) (r.apply (list input) (r.global name)))) (def: math-procs Bundle (<| (prefix "math") (|> (dict.new text.Hash) (install "cos" (unary (math-func "cos"))) (install "sin" (unary (math-func "sin"))) (install "tan" (unary (math-func "tan"))) (install "acos" (unary (math-func "acos"))) (install "asin" (unary (math-func "asin"))) (install "atan" (unary (math-func "atan"))) (install "exp" (unary (math-func "exp"))) (install "log" (unary (math-func "log"))) (install "ceil" (unary (math-func "ceiling"))) (install "floor" (unary (math-func "floor"))) (install "pow" (binary math//pow)) ))) ## [[IO]] (def: (io//exit input) (-> Expression Expression) (r.apply-kw (list) (list ["status" (runtimeT.int//to-float input)]) (r.global "quit"))) (def: io-procs Bundle (<| (prefix "io") (|> (dict.new text.Hash) (install "log" (unary (apply1 (r.global "print")))) (install "error" (unary (apply1 (r.global "stop")))) (install "exit" (unary io//exit)) (install "current-time" (nullary (function (_ _) (runtimeT.io//current-time! runtimeT.unit))))))) ## [[Atoms]] (def: atom//new Unary (|>> [runtimeT.atom//field] (list) r.named-list)) (def: atom//read Unary (r.nth (r.string runtimeT.atom//field))) (def: (atom//compare-and-swap [atomO oldO newO]) Trinary (runtimeT.atom//compare-and-swap atomO oldO newO)) (def: atom-procs Bundle (<| (prefix "atom") (|> (dict.new text.Hash) (install "new" (unary atom//new)) (install "read" (unary atom//read)) (install "compare-and-swap" (trinary atom//compare-and-swap))))) ## [[Box]] (def: box//new Unary (|>> (list) r.list)) (def: box//read Unary (r.nth (r.int 1))) (def: (box//write [valueO boxO]) Binary (runtimeT.box//write valueO boxO)) (def: box-procs Bundle (<| (prefix "box") (|> (dict.new text.Hash) (install "new" (unary box//new)) (install "read" (unary box//read)) (install "write" (binary box//write))))) ## [[Processes]] (def: (process//concurrency-level []) Nullary (r.int 1)) (def: (process//schedule [milli-secondsO procedureO]) Binary (runtimeT.process//schedule milli-secondsO procedureO)) (def: process-procs Bundle (<| (prefix "process") (|> (dict.new text.Hash) (install "concurrency-level" (nullary process//concurrency-level)) (install "future" (unary runtimeT.process//future)) (install "schedule" (binary process//schedule)) ))) ## [Bundles] (def: #export procedures Bundle (<| (prefix "lux") (|> lux-procs (dict.merge bit-procs) (dict.merge nat-procs) (dict.merge int-procs) (dict.merge deg-procs) (dict.merge frac-procs) (dict.merge text-procs) (dict.merge array-procs) (dict.merge math-procs) (dict.merge io-procs) (dict.merge atom-procs) (dict.merge box-procs) (dict.merge process-procs) )))