package tiny_languages
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Small languages from scratch: Scheme, Lisp, Smalltalk-80, Pascal, BASIC, JavaScript, HTML, CSS and more
Install
dune-project
Dependency
Authors
Maintainers
Sources
0.3.6.tar.gz
md5=7c636383d146d30ac6f2fa234a6253c8
sha512=c79f3823c5f8f57e5038eb640d487c61168b84aa07c61999d6622ef9fd0c890e2b03b4c6a7cdbbe9352a49e25dda00ac7bb14693cee8e3d7beeed251351a2af0
doc/src/tiny_languages.postscript/Ps_machine.ml.html
Source file Ps_machine.ml
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*) | Loop of array_ | Forall of value list list * array_ (* what each turn pushes *) type t = { text : string; host : host; operands : value list; (* top first *) exec : frame list; dicts : (string, value) Hashtbl.t list; (* userdict, then systemdict, at the bottom *) gs : gstate; saved : gstate list; painted : paint list; (* reversed *) finished : paint list list; (* reversed *) printed : string list; (* reversed *) state : status; last : (int * int) option; count : int; } (* an error's name, as the Red Book names them; [Offending] adds the command that raised it *) exception Error of string exception Offending of string * string let initial_gs = { ctm = G.identity; path = []; current = None; start = None; rgb = (0., 0., 0.); line_width = 1.; font = 0. } (*****************************************************************************) (* Values *) (*****************************************************************************) let number_text f = let s = Printf.sprintf "%g" f in if String.contains s '.' || String.contains s 'e' || String.contains s 'n' || String.contains s 'i' then s else s ^ ".0" let rec show v = match v with | Int n -> string_of_int n | Real f -> number_text f | Bool b -> string_of_bool b | Name n -> n | Literal n -> "/" ^ n | String s -> "(" ^ s ^ ")" | Array a -> let inside = String.concat " " (Array.to_list (Array.map show a.items)) in if a.exec then "{" ^ inside ^ "}" else "[" ^ inside ^ "]" | Dict _ -> "-dict-" | Operator n -> "--" ^ n ^ "--" | Font _ -> "-font-" | Mark -> "-mark-" | Null -> "null" (* what = prints: a string or a name as its characters *) let text_of v = match v with String s -> s | Name n | Literal n -> n | v -> show v let push v m = { m with operands = v :: m.operands } let pop m = match m.operands with v :: rest -> (v, { m with operands = rest }) | [] -> raise (Error "stackunderflow") let num = function Int n -> float_of_int n | Real f -> f | _ -> raise (Error "typecheck") let pop_num m = let v, m = pop m in (num v, m) let pop_int m = match pop m with Int n, m -> (n, m) | _ -> raise (Error "typecheck") let pop_bool m = match pop m with Bool b, m -> (b, m) | _ -> raise (Error "typecheck") let pop_proc m = match pop m with Array a, m -> (a, m) | _ -> raise (Error "typecheck") let pop_key m = match pop m with (Literal k | String k | Name k), m -> (k, m) | _ -> raise (Error "typecheck") let rec lookup dicts key = match dicts with [] -> None | d :: rest -> ( match Hashtbl.find_opt d key with Some v -> Some v | None -> lookup rest key) let run_frame a m = { m with exec = Run (a, 0) :: m.exec } let output s m = { m with printed = s :: m.printed } (*****************************************************************************) (* Operators *) (*****************************************************************************) (* integers stay integers when both are, as the Red Book's add does *) let arith fi ff m = let b, m = pop m in let a, m = pop m in match (a, b) with Int x, Int y -> push (Int (fi x y)) m | _ -> push (Real (ff (num a) (num b))) m let real1 f m = let x, m = pop_num m in push (Real (f x)) m let deg r = r *. 180. /. Float.pi let rad d = d *. Float.pi /. 180. let rec equal a b = match (a, b) with | (Int _ | Real _), (Int _ | Real _) -> num a = num b | (Name x | Literal x | String x), (Name y | Literal y | String y) -> x = y | Array x, Array y -> x.items == y.items | Dict x, Dict y -> x == y | _ -> a = b && equal_simple a and equal_simple = function Bool _ | Mark | Null | Operator _ | Font _ -> true | _ -> false let compare_op test m = let b, m = pop m in let a, m = pop m in let c = match (a, b) with String x, String y -> compare x y | _ -> compare (num a) (num b) in push (Bool (test c)) m let logic fb fi m = let b, m = pop m in let a, m = pop m in match (a, b) with Bool x, Bool y -> push (Bool (fb x y)) m | Int x, Int y -> push (Int (fi x y)) m | _ -> raise (Error "typecheck") (* the top [n] operands, top first, and the rest *) let rec take n l = if n = 0 then ([], l) else match l with x :: rest -> let a, b = take (n - 1) rest in (x :: a, b) | [] -> raise (Error "stackunderflow") (* what forall pushes at each turn: an item, a character's code, or a key and its value *) let turns_of v = match v with | Array a -> List.map (fun x -> [ x ]) (Array.to_list a.items) | String s -> List.init (String.length s) (fun i -> [ Int (Char.code s.[i]) ]) | Dict d -> Hashtbl.fold (fun k v acc -> [ Literal k; v ] :: acc) d [] | _ -> raise (Error "typecheck") let gs f m = { m with gs = f m.gs } let current m = match m.gs.current with Some p -> p | None -> raise (Error "nocurrentpoint") let add_segment s m = gs (fun g -> { g with path = s :: g.path }) m let move_to p m = gs (fun g -> { g with path = G.Move p :: g.path; current = Some p; start = Some p }) m let line_to p m = ignore (current m); gs (fun g -> { g with path = G.Line p :: g.path; current = Some p }) m let paint how m = let lines = G.flatten (List.rev m.gs.path) in let m = if lines = [] then m else { m with painted = { lines; rgb = m.gs.rgb; how } :: m.painted } in gs (fun g -> { g with path = []; current = None; start = None }) m let hsb h s b = let i = Float.to_int (Float.floor (h *. 6.)) mod 6 and f = (h *. 6.) -. Float.floor (h *. 6.) in let p = b *. (1. -. s) and q = b *. (1. -. (s *. f)) and t = b *. (1. -. (s *. (1. -. f))) in match i with 0 -> (b, t, p) | 1 -> (q, b, p) | 2 -> (p, b, t) | 3 -> (p, q, b) | 4 -> (t, p, b) | _ -> (b, p, q) (* a string's letters, stroked from the current point *) let show_text s m = let size = m.gs.font in if size = 0. then raise (Error "invalidfont"); let ux, uy = G.transform (G.invert m.gs.ctm) (current m) in let strokes, x = String.fold_left (fun (acc, x) ch -> let lines, advance = m.host.glyph ch in let placed = List.map (fun l -> (List.map (fun (gx, gy) -> G.transform m.gs.ctm (x +. (size *. gx), uy +. (size *. gy))) l, false)) lines in (placed @ acc, x +. (size *. advance))) ([], ux) s in let m = if strokes = [] then m else { m with painted = { lines = strokes; rgb = m.gs.rgb; how = Stroke (size *. 0.07 *. G.scale_of m.gs.ctm) } :: m.painted } in gs (fun g -> { g with current = Some (G.transform g.ctm (x, uy)) }) m let width_of s m = String.fold_left (fun w ch -> w +. (m.gs.font *. snd (m.host.glyph ch))) 0. s let apply (op : string) (m : t) : t = match op with (* the stack *) | "pop" -> snd (pop m) | "exch" -> let b, m = pop m in let a, m = pop m in push a (push b m) | "dup" -> let a, m = pop m in push a (push a m) | "copy" -> let n, m = pop_int m in let top, _ = take n m.operands in { m with operands = top @ m.operands } | "index" -> let n, m = pop_int m in ( match List.nth_opt m.operands n with Some v when n >= 0 -> push v m | _ -> raise (Error "rangecheck")) | "roll" -> let j, m = pop_int m in let n, m = pop_int m in if n = 0 then m else let top, rest = take n m.operands in (* bottom first, rotated j places toward the top *) let bottom_first = List.rev top in let j = ((j mod n) + n) mod n in let a, b = take (n - j) bottom_first in { m with operands = List.rev (b @ a) @ rest } | "clear" -> { m with operands = [] } | "count" -> push (Int (List.length m.operands)) m | "mark" | "[" -> push Mark m | "cleartomark" -> let rec drop = function Mark :: rest -> rest | _ :: rest -> drop rest | [] -> raise (Error "unmatchedmark") in { m with operands = drop m.operands } | "counttomark" -> let rec n i = function Mark :: _ -> i | _ :: rest -> n (i + 1) rest | [] -> raise (Error "unmatchedmark") in push (Int (n 0 m.operands)) m | "]" -> let rec gather acc = function Mark :: rest -> (acc, rest) | v :: rest -> gather (v :: acc) rest | [] -> raise (Error "unmatchedmark") in let items, rest = gather [] m.operands in push (Array { items = Array.of_list items; spans = [||]; exec = false }) { m with operands = rest } (* arithmetic *) | "add" -> arith ( + ) ( +. ) m | "sub" -> arith ( - ) ( -. ) m | "mul" -> arith ( * ) ( *. ) m | "div" -> let b, m = pop_num m in let a, m = pop_num m in if b = 0. then raise (Error "undefinedresult") else push (Real (a /. b)) m | "idiv" -> let b, m = pop_int m in let a, m = pop_int m in if b = 0 then raise (Error "undefinedresult") else push (Int (a / b)) m | "mod" -> let b, m = pop_int m in let a, m = pop_int m in if b = 0 then raise (Error "undefinedresult") else push (Int (a mod b)) m | "neg" -> ( match pop m with Int n, m -> push (Int (-n)) m | v, m -> push (Real (-.num v)) m) | "abs" -> ( match pop m with Int n, m -> push (Int (abs n)) m | v, m -> push (Real (Float.abs (num v))) m) | "sqrt" -> real1 Float.sqrt m | "sin" -> real1 (fun d -> Float.sin (rad d)) m | "cos" -> real1 (fun d -> Float.cos (rad d)) m | "atan" -> let den, m = pop_num m in let n, m = pop_num m in let a = deg (Float.atan2 n den) in push (Real (if a < 0. then a +. 360. else a)) m | "exp" -> let e, m = pop_num m in let b, m = pop_num m in push (Real (b ** e)) m | "ln" -> real1 Float.log m | "log" -> real1 Float.log10 m | "round" | "floor" | "ceiling" | "truncate" -> ( let f = match op with "round" -> Float.round | "floor" -> Float.floor | "ceiling" -> Float.ceil | _ -> Float.trunc in match pop m with Int n, m -> push (Int n) m | v, m -> push (Real (f (num v))) m) | "cvi" -> let x, m = pop_num m in push (Int (Float.to_int x)) m | "cvr" -> let x, m = pop_num m in push (Real x) m (* comparison and logic *) | "eq" -> let b, m = pop m in let a, m = pop m in push (Bool (equal a b)) m | "ne" -> let b, m = pop m in let a, m = pop m in push (Bool (not (equal a b))) m | "gt" -> compare_op (fun c -> c > 0) m | "ge" -> compare_op (fun c -> c >= 0) m | "lt" -> compare_op (fun c -> c < 0) m | "le" -> compare_op (fun c -> c <= 0) m | "and" -> logic ( && ) ( land ) m | "or" -> logic ( || ) ( lor ) m | "xor" -> logic ( <> ) ( lxor ) m | "not" -> ( match pop m with Bool b, m -> push (Bool (not b)) m | Int n, m -> push (Int (lnot n)) m | _ -> raise (Error "typecheck")) (* control: operators that take procedures *) | "exec" -> ( match pop m with Array a, m when a.exec -> run_frame a m | v, m -> push v m) | "if" -> let p, m = pop_proc m in let b, m = pop_bool m in if b then run_frame p m else m | "ifelse" -> let q, m = pop_proc m in let p, m = pop_proc m in let b, m = pop_bool m in run_frame (if b then p else q) m | "repeat" -> let p, m = pop_proc m in let n, m = pop_int m in { m with exec = Repeat (n, p) :: m.exec } | "for" -> let p, m = pop_proc m in let limit, m = pop_num m in let inc, m = pop m in let init, m = pop m in let ints = match (init, inc) with Int _, Int _ -> true | _ -> false in { m with exec = For (num init, num inc, limit, ints, p) :: m.exec } | "loop" -> let p, m = pop_proc m in { m with exec = Loop p :: m.exec } | "forall" -> let p, m = pop_proc m in let v, m = pop m in { m with exec = Forall (turns_of v, p) :: m.exec } | "exit" -> let rec out = function | (Repeat _ | For _ | Loop _ | Forall _) :: rest -> rest | Run _ :: rest -> out rest | _ -> raise (Error "invalidexit") in { m with exec = out m.exec } | "quit" -> { m with exec = []; state = Done } (* dictionaries *) | "def" -> let v, m = pop m in let k, m = pop_key m in Hashtbl.replace (List.hd m.dicts) k v; m | "dict" -> let _, m = pop_int m in push (Dict (Hashtbl.create 16)) m | "begin" -> ( match pop m with Dict d, m -> { m with dicts = d :: m.dicts } | _ -> raise (Error "typecheck")) | "end" -> if List.length m.dicts <= 2 then raise (Error "dictstackunderflow") else { m with dicts = List.tl m.dicts } | "currentdict" -> push (Dict (List.hd m.dicts)) m | "load" -> let k, m = pop_key m in ( match lookup m.dicts k with Some v -> push v m | None -> raise (Error "undefined")) | "store" -> let v, m = pop m in let k, m = pop_key m in let d = match List.find_opt (fun d -> Hashtbl.mem d k) m.dicts with Some d -> d | None -> List.hd m.dicts in Hashtbl.replace d k v; m | "known" -> let k, m = pop_key m in ( match pop m with Dict d, m -> push (Bool (Hashtbl.mem d k)) m | _ -> raise (Error "typecheck")) (* arrays and strings *) | "array" -> let n, m = pop_int m in push (Array { items = Array.make (max 0 n) Null; spans = [||]; exec = false }) m | "string" -> let n, m = pop_int m in push (String (String.make (max 0 n) ' ')) m | "length" -> ( match pop m with | Array a, m -> push (Int (Array.length a.items)) m | String s, m -> push (Int (String.length s)) m | Dict d, m -> push (Int (Hashtbl.length d)) m | (Name s | Literal s), m -> push (Int (String.length s)) m | _ -> raise (Error "typecheck")) | "get" -> ( let key, m = pop m in match (pop m, key) with | (Array a, m), Int i -> if i < 0 || i >= Array.length a.items then raise (Error "rangecheck") else push a.items.(i) m | (String s, m), Int i -> if i < 0 || i >= String.length s then raise (Error "rangecheck") else push (Int (Char.code s.[i])) m | (Dict d, m), (Literal k | Name k | String k) -> ( match Hashtbl.find_opt d k with Some v -> push v m | None -> raise (Error "undefined")) | _ -> raise (Error "typecheck")) | "put" -> ( let v, m = pop m in let key, m = pop m in match (pop m, key) with | (Array a, m), Int i -> if i < 0 || i >= Array.length a.items then raise (Error "rangecheck") else (a.items.(i) <- v; m) | (Dict d, m), (Literal k | Name k | String k) -> Hashtbl.replace d k v; m | _ -> raise (Error "typecheck")) | "aload" -> ( match pop m with Array a, m -> push (Array a) (Array.fold_left (fun m v -> push v m) m a.items) | _ -> raise (Error "typecheck")) | "cvx" -> ( match pop m with Literal n, m -> push (Name n) m | Array a, m -> push (Array { a with exec = true }) m | v, m -> push v m) | "cvlit" -> ( match pop m with Name n, m -> push (Literal n) m | Array a, m -> push (Array { a with exec = false }) m | v, m -> push v m) | "cvn" -> let k, m = pop_key m in push (Literal k) m | "cvs" -> let _, m = pop m in let v, m = pop m in push (String (text_of v)) m (* printing, to the transcript *) | "=" -> let v, m = pop m in output (text_of v) m | "==" -> let v, m = pop m in output (show v) m | "print" -> ( match pop m with String s, m -> output s m | _ -> raise (Error "typecheck")) | "pstack" -> List.fold_left (fun m v -> output (show v) m) m m.operands | "stack" -> List.fold_left (fun m v -> output (text_of v) m) m m.operands (* the path *) | "newpath" -> gs (fun g -> { g with path = []; current = None; start = None }) m | "moveto" -> let y, m = pop_num m in let x, m = pop_num m in move_to (G.transform m.gs.ctm (x, y)) m | "rmoveto" -> let dy, m = pop_num m in let dx, m = pop_num m in let cx, cy = current m and ddx, ddy = G.dtransform m.gs.ctm (dx, dy) in move_to (cx +. ddx, cy +. ddy) m | "lineto" -> let y, m = pop_num m in let x, m = pop_num m in line_to (G.transform m.gs.ctm (x, y)) m | "rlineto" -> let dy, m = pop_num m in let dx, m = pop_num m in let cx, cy = current m and ddx, ddy = G.dtransform m.gs.ctm (dx, dy) in line_to (cx +. ddx, cy +. ddy) m | "curveto" | "rcurveto" -> let ys, m = List.fold_left (fun (acc, m) _ -> let v, m = pop_num m in (v :: acc, m)) ([], m) [ 1; 2; 3; 4; 5; 6 ] in let cx, cy = current m in let point i = let x = List.nth ys (2 * i) and y = List.nth ys ((2 * i) + 1) in if op = "curveto" then G.transform m.gs.ctm (x, y) else let dx, dy = G.dtransform m.gs.ctm (x, y) in (cx +. dx, cy +. dy) in let p3 = point 2 in gs (fun g -> { g with path = G.Curve (point 0, point 1, p3) :: g.path; current = Some p3 }) m | "arc" | "arcn" -> let a2, m = pop_num m in let a1, m = pop_num m in let r, m = pop_num m in let y, m = pop_num m in let x, m = pop_num m in let p0, curves = G.arc (x, y) r a1 a2 ~clockwise:(op = "arcn") in let t = G.transform m.gs.ctm in let m = match m.gs.current with Some _ -> line_to (t p0) m | None -> move_to (t p0) m in List.fold_left (fun m (c1, c2, p) -> gs (fun g -> { g with path = G.Curve (t c1, t c2, t p) :: g.path; current = Some (t p) }) m) m curves | "closepath" -> ( match m.gs.current with None -> m | Some _ -> gs (fun g -> { g with current = g.start }) (add_segment G.Close m)) | "currentpoint" -> let x, y = G.transform (G.invert m.gs.ctm) (current m) in push (Real y) (push (Real x) m) (* painting *) | "fill" | "eofill" -> paint Fill m | "stroke" -> paint (Stroke (m.gs.line_width *. G.scale_of m.gs.ctm)) m | "setlinewidth" -> let w, m = pop_num m in gs (fun g -> { g with line_width = w }) m | "setgray" -> let v, m = pop_num m in gs (fun g -> { g with rgb = (v, v, v) }) m | "setrgbcolor" -> let b, m = pop_num m in let g', m = pop_num m in let r, m = pop_num m in gs (fun g -> { g with rgb = (r, g', b) }) m | "sethsbcolor" -> let b, m = pop_num m in let s, m = pop_num m in let h, m = pop_num m in gs (fun g -> { g with rgb = hsb h s b }) m | "gsave" -> { m with saved = m.gs :: m.saved } | "grestore" -> ( match m.saved with g :: rest -> { m with gs = g; saved = rest } | [] -> m) (* the coordinates *) | "translate" -> let y, m = pop_num m in let x, m = pop_num m in gs (fun g -> { g with ctm = G.concat (G.translation x y) g.ctm }) m | "scale" -> let y, m = pop_num m in let x, m = pop_num m in gs (fun g -> { g with ctm = G.concat (G.scaling x y) g.ctm }) m | "rotate" -> let a, m = pop_num m in gs (fun g -> { g with ctm = G.concat (G.rotation a) g.ctm }) m | "showpage" -> { m with finished = List.rev m.painted :: m.finished; painted = []; gs = initial_gs; saved = [] } (* text *) | "findfont" -> let _, m = pop_key m in push (Font 1.) m | "scalefont" -> let n, m = pop_num m in ( match pop m with Font s, m -> push (Font (s *. n)) m | _ -> raise (Error "typecheck")) | "setfont" -> ( match pop m with Font s, m -> gs (fun g -> { g with font = s }) m | _ -> raise (Error "typecheck")) | "show" -> ( match pop m with String s, m -> show_text s m | _ -> raise (Error "typecheck")) | "stringwidth" -> ( match pop m with String s, m -> push (Real 0.) (push (Real (width_of s m)) m) | _ -> raise (Error "typecheck")) | _ -> raise (Error "undefined") let operators = [ "pop"; "exch"; "dup"; "copy"; "index"; "roll"; "clear"; "count"; "mark"; "["; "]"; "cleartomark"; "counttomark"; "add"; "sub"; "mul"; "div"; "idiv"; "mod"; "neg"; "abs"; "sqrt"; "sin"; "cos"; "atan"; "exp"; "ln"; "log"; "round"; "floor"; "ceiling"; "truncate"; "cvi"; "cvr"; "eq"; "ne"; "gt"; "ge"; "lt"; "le"; "and"; "or"; "xor"; "not"; "exec"; "if"; "ifelse"; "repeat"; "for"; "loop"; "forall"; "exit"; "quit"; "def"; "dict"; "begin"; "end"; "currentdict"; "load"; "store"; "known"; "array"; "string"; "length"; "get"; "put"; "aload"; "cvx"; "cvlit"; "cvn"; "cvs"; "="; "=="; "print"; "pstack"; "stack"; "newpath"; "moveto"; "rmoveto"; "lineto"; "rlineto"; "curveto"; "rcurveto"; "arc"; "arcn"; "closepath"; "currentpoint"; "fill"; "eofill"; "stroke"; "setlinewidth"; "setgray"; "setrgbcolor"; "sethsbcolor"; "gsave"; "grestore"; "translate"; "scale"; "rotate"; "showpage"; "findfont"; "scalefont"; "setfont"; "show"; "stringwidth" ] (*****************************************************************************) (* Running *) (*****************************************************************************) (* a box for each letter, when no host gives the letters *) let boxes = { glyph = (fun _ -> ([ [ (0.1, 0.); (0.5, 0.); (0.5, 0.7); (0.1, 0.7); (0.1, 0.) ] ], 0.6)) } let start ?(host = boxes) text = let systemdict = Hashtbl.create 128 in List.iter (fun op -> Hashtbl.replace systemdict op (Operator op)) operators; Hashtbl.replace systemdict "true" (Bool true); Hashtbl.replace systemdict "false" (Bool false); Hashtbl.replace systemdict "null" Null; { text; host; operands = []; exec = [ Source 0 ]; dicts = [ Hashtbl.create 64; systemdict ]; gs = initial_gs; saved = []; painted = []; finished = []; printed = []; state = Running; last = None; count = 0; } let value_of (k : Ps_lexer.kind) : value = match k with | Int n -> Int n | Real f -> Real f | Name n -> Name n | Literal n -> Literal n | String s -> String s | Open_brace | Close_brace -> Null (* a procedure's body, from after its { to its }: kept, not run *) let rec read_proc text pos : array_ * int = let rec go pos items = match Ps_lexer.next text pos with | None -> raise (Offending ("syntaxerror", "{")) | Some (Error _) -> raise (Offending ("syntaxerror", "(")) | Some (Ok { kind = Close_brace; stop; _ }) -> let items = List.rev items in ({ items = Array.of_list (List.map fst items); spans = Array.of_list (List.map snd items); exec = true }, stop) | Some (Ok { kind = Open_brace; start; _ }) -> let inner, stop = read_proc text (start + 1) in go stop ((Array inner, (start, stop)) :: items) | Some (Ok t) -> go t.stop ((value_of t.kind, (t.start, t.stop)) :: items) in go pos [] (* an executable name: an operator runs, a procedure is entered, any other value is pushed *) let rec execute_name n m = match lookup m.dicts n with | None -> raise (Offending ("undefined", n)) | Some (Operator op) -> ( try apply op m with Error e -> raise (Offending (e, op))) | Some (Array a) when a.exec -> run_frame a m | Some (Name other) when other <> n -> execute_name other m | Some v -> push v m (* an object met in the text or in a procedure's body: a name is executed, anything else -- a procedure too -- is data *) let execute_direct v m = match v with Name n -> execute_name n m | v -> push v m let step m = if m.state <> Running then m else let m = { m with count = m.count + 1 } in try match m.exec with | [] -> { m with state = Done } | frame :: rest -> ( match frame with | Source pos -> ( match Ps_lexer.next m.text pos with | None -> { m with exec = rest } | Some (Error _) -> raise (Offending ("syntaxerror", "(")) | Some (Ok { kind = Close_brace; _ }) -> raise (Offending ("syntaxerror", "}")) | Some (Ok { kind = Open_brace; start; _ }) -> let proc, stop = read_proc m.text (start + 1) in push (Array proc) { m with exec = Source stop :: rest; last = Some (start, stop) } | Some (Ok t) -> execute_direct (value_of t.kind) { m with exec = Source t.stop :: rest; last = Some (t.start, t.stop) }) | Run (a, i) -> let n = Array.length a.items in if i >= n then { m with exec = rest } else (* the last item leaves the frame first: a procedure's last call is a jump, and recursion keeps no frame *) let exec = if i = n - 1 then rest else Run (a, i + 1) :: rest in let last = if i < Array.length a.spans then Some a.spans.(i) else m.last in execute_direct a.items.(i) { m with exec; last } | Repeat (k, p) -> if k <= 0 then { m with exec = rest } else run_frame p { m with exec = Repeat (k - 1, p) :: rest } | For (v, inc, limit, ints, p) -> if (inc >= 0. && v > limit) || (inc < 0. && v < limit) then { m with exec = rest } else let m = push (if ints then Int (Float.to_int v) else Real v) { m with exec = For (v +. inc, inc, limit, ints, p) :: rest } in run_frame p m | Loop p -> run_frame p m | Forall ([], _) -> { m with exec = rest } | Forall (turn :: more, p) -> run_frame p (List.fold_left (fun m v -> push v m) { m with exec = Forall (more, p) :: rest } turn)) with | Offending (e, cmd) -> { m with state = Failed (Printf.sprintf "%%%%[ Error: %s; OffendingCommand: %s ]%%%%" e cmd) } | Error e -> { m with state = Failed (Printf.sprintf "%%%%[ Error: %s ]%%%%" e) } let run ?(budget = max_int) m = let rec go m k = if k >= budget || m.state <> Running then m else go (step m) (k + 1) in go m 0 let status m = m.state let page m = List.rev m.painted let pages m = List.rev m.finished let stack m = List.map show m.operands let output m = List.rev m.printed let span m = m.last let steps m = m.count
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