package tiny_appkits
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Application engines from scratch: a spreadsheet, rich text, paint, draw, CAD, editors and more
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dune-project
Dependency
Authors
Maintainers
Sources
0.3.6.tar.gz
md5=7c636383d146d30ac6f2fa234a6253c8
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doc/src/tiny_appkits.appkit_cad/Cad_session.ml.html
Source file Cad_session.ml
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you can redistribute it and/or * modify it under the terms of the GNU Library General Public License * (LGPL) as published by the Free Software Foundation; either version * 2 of the License, or (at your option) any later version. *) (* See Cad_session.mli *) module G = Cad_geom module D = Cad_drawing type pt = G.pt type view = { center : pt; upp : float; w : float; h : float } type input = Text of string | Pick of pt | Cancel type want = Idle | Point | Objects | Other type io = Save of string * string | Load of string (*****************************************************************************) (* The states *) (*****************************************************************************) (* what a selection of objects is gathered for *) type after = For_erase | For_move of bool (* a copy? *) | For_block of string * pt | For_edges of bool (* EXTEND? *) (* each command's steps: where it is, and what it has been told *) type state = | Line_from | Line_to of { first : pt; last : pt; segs : (int * pt) list (* the lines drawn, newest first, and their starts *) } | Circle_center | Circle_radius of pt * bool (* the center; a diameter asked? *) | Arc_points of pt list | Select of { after : after; picked : int list; corner : pt option } | Base of bool * int list | Second of bool * int list * pt | Offset_distance | Offset_pick | Offset_side of int | Trim_pick of bool * int list (* EXTEND?, the edges *) | Fillet_first | Fillet_radius | Fillet_second of int * pt | Dim_points of pt list | Block_name | Block_base of string | Insert_name | Insert_point of string | Insert_scale of string * pt | Insert_rotation of string * pt * float | Layer_option | Layer_name of string (* the option: M, S, ON, OFF *) | Layer_color | Layer_color_name of int | Zoom_option | Zoom_corner of pt option | Pan_points of pt option | Id_point | Dist_points of pt option | File_name of bool (* writing? *) (* the drawing before the command: what U gives back *) type run = { name : string; state : state; before : D.t } type t = { drawing : D.t; view : view; previous_view : view option; run : run option; last_command : string option; last_point : pt option; undo : (string * D.t) list; redo : (string * D.t) list; log : string list; fillet_radius : float; offset_distance : float; file : string; io : io option; } let start drawing view = { drawing; view; previous_view = None; run = None; last_command = None; last_point = None; undo = []; redo = []; log = []; fillet_radius = 0.; offset_distance = 1.; file = "drawing"; io = None; } let drawing t = t.drawing let view t = t.view let log t = t.log let io t = t.io let running t = Option.map (fun r -> r.name) t.run let resize w h t = { t with view = { t.view with w; h } } (* AutoCAD's four decimals *) let fmt x = Printf.sprintf "%.4f" x let say line t = let log = t.log @ [ line ] in let n = List.length log in { t with log = (if n > 200 then List.filteri (fun i _ -> i >= n - 200) log else log) } (* the pick box: a click this near an entity picks it *) let pickbox t = 6. *. t.view.upp (*****************************************************************************) (* Prompts *) (*****************************************************************************) let prompt t = match t.run with | None -> "Command:" | Some r -> ( match r.state with | Line_from -> "From point:" | Line_to _ -> "To point:" | Circle_center -> "<Center point>:" | Circle_radius (_, false) -> "Diameter/<Radius>:" | Circle_radius (_, true) -> "Diameter:" | Arc_points [] -> "<Start point>:" | Arc_points [ _ ] -> "<Second point>:" | Arc_points _ -> "End point:" | Select { corner = None; _ } -> "Select objects:" | Select { corner = Some _; _ } -> "Other corner:" | Base _ -> "Base point or displacement:" | Second _ -> "Second point of displacement:" | Offset_distance -> Printf.sprintf "Offset distance <%s>:" (fmt t.offset_distance) | Offset_pick -> "Select object to offset:" | Offset_side _ -> "Side to offset?" | Trim_pick (false, _) -> "<Select object to trim>:" | Trim_pick (true, _) -> "<Select object to extend>:" | Fillet_first -> "Radius/<Select first object>:" | Fillet_radius -> Printf.sprintf "Enter fillet radius <%s>:" (fmt t.fillet_radius) | Fillet_second _ -> "Select second object:" | Dim_points [] -> "First extension line origin:" | Dim_points [ _ ] -> "Second extension line origin:" | Dim_points _ -> "Dimension line location:" | Block_name | Insert_name -> "Block name (or ?):" | Block_base _ -> "Insertion base point:" | Insert_point _ -> "Insertion point:" | Insert_scale _ -> "X scale factor <1>:" | Insert_rotation _ -> "Rotation angle <0>:" | Layer_option -> "?/Make/Set/ON/OFF/Color:" | Layer_name ("M" | "S") -> Printf.sprintf "New current layer <%s>:" t.drawing.current | Layer_name "ON" -> "Layer name(s) to turn On:" | Layer_name _ -> "Layer name(s) to turn Off:" | Layer_color -> "Color:" | Layer_color_name c -> Printf.sprintf "Layer name(s) for color %d <%s>:" c t.drawing.current | Zoom_option -> "All/Extents/Previous/Window/<Scale(X)>:" | Zoom_corner None -> "First corner:" | Zoom_corner (Some _) -> "Other corner:" | Pan_points None -> "Displacement:" | Pan_points (Some _) -> "Second point:" | Id_point -> "Point:" | Dist_points None -> "First point:" | Dist_points (Some _) -> "Second point:" | File_name _ -> Printf.sprintf "File name <%s>:" t.file) let wants t = match t.run with | None -> Idle | Some r -> ( match r.state with | Select _ | Offset_pick | Trim_pick _ | Fillet_first | Fillet_second _ -> Objects | Block_name | Insert_name | Layer_option | Layer_name _ | Layer_color | Layer_color_name _ | File_name _ | Offset_distance | Fillet_radius | Insert_scale _ | Zoom_option -> Other | _ -> Point) (*****************************************************************************) (* Points typed *) (*****************************************************************************) (* "x,y", "@dx,dy", "@d<a", "d<a"; a distance alone, towards the cursor from the last point *) let parse_point t ?cursor s = let s = String.trim s in let rel = String.length s > 0 && s.[0] = '@' in let s = if rel then String.sub s 1 (String.length s - 1) else s in let base = if rel then Option.value t.last_point ~default:(0., 0.) else (0., 0.) in let num x = float_of_string_opt (String.trim x) in match String.index_opt s '<' with | Some i -> ( match (num (String.sub s 0 i), num (String.sub s (i + 1) (String.length s - i - 1))) with | Some d, Some a -> Some (G.polar base d a) | _ -> None) | None -> ( match String.split_on_char ',' s with | [ x; y ] | [ x; y; _ ] -> ( match (num x, num y) with Some x, Some y -> Some (G.add base (x, y)) | _ -> None) | [ d ] when not rel -> ( match (num d, t.last_point, cursor) with | Some d, Some last, Some c when G.dist last c > 0. -> Some (G.polar last d (G.angle last c)) | _ -> None) | _ -> None) let point_of t ?cursor = function Pick p -> Some p | Text s -> parse_point t ?cursor s | Cancel -> None (* a number typed; or two points (the last and one picked): their distance *) let number_of t = function | Text s -> float_of_string_opt (String.trim s) | Pick p -> Option.map (fun l -> G.dist l p) t.last_point | Cancel -> None (*****************************************************************************) (* The view *) (*****************************************************************************) let fit t (ax, ay) (bx, by) = let w = Float.abs (bx -. ax) and h = Float.abs (by -. ay) in let upp = Float.max (w /. t.view.w) (h /. t.view.h) *. 1.1 in let upp = if upp > 0. then upp else t.view.upp in { t with previous_view = Some t.view; view = { t.view with center = ((ax +. bx) /. 2., (ay +. by) /. 2.); upp } } let zoom_extents t = match D.extents t.drawing with Some (a, b) -> fit t a b | None -> t (*****************************************************************************) (* Editing helpers *) (*****************************************************************************) (* an entity added on a given layer *) let add_on layer e (d : D.t) = let current = d.current in let d, id = D.add e { d with current = layer } in ({ d with current }, id) let entity t id = Option.map (fun (e : D.ent) -> e.entity) (D.get t.drawing id) let layer_of t id = match D.get t.drawing id with Some e -> e.layer | None -> t.drawing.current let circumcenter (ax, ay) (bx, by) (cx, cy) = let d = 2. *. ((ax *. (by -. cy)) +. (bx *. (cy -. ay)) +. (cx *. (ay -. by))) in if Float.abs d < 1e-12 then None else let a2 = (ax *. ax) +. (ay *. ay) and b2 = (bx *. bx) +. (by *. by) and c2 = (cx *. cx) +. (cy *. cy) in Some ( ((a2 *. (by -. cy)) +. (b2 *. (cy -. ay)) +. (c2 *. (ay -. by))) /. d, ((a2 *. (cx -. bx)) +. (b2 *. (ax -. cx)) +. (c2 *. (bx -. ax))) /. d ) (* the arc from a through b to c *) let arc3 a b c = match circumcenter a b c with | None -> None | Some o -> let s = G.angle o a and e = G.angle o c in if G.within s e (G.angle o b) then Some (D.Arc (o, G.dist o a, s, e)) else Some (D.Arc (o, G.dist o a, e, s)) let color_of s = match String.uppercase_ascii (String.trim s) with | "RED" -> Some 1 | "YELLOW" -> Some 2 | "GREEN" -> Some 3 | "CYAN" -> Some 4 | "BLUE" -> Some 5 | "MAGENTA" -> Some 6 | "WHITE" -> Some 7 | s -> ( match int_of_string_opt s with Some c when c >= 1 && c <= 255 -> Some c | _ -> None) (*****************************************************************************) (* Starting and ending commands *) (*****************************************************************************) let aliases = [ ("L", "LINE"); ("C", "CIRCLE"); ("A", "ARC"); ("E", "ERASE"); ("M", "MOVE"); ("CO", "COPY"); ("CP", "COPY"); ("O", "OFFSET"); ("TR", "TRIM"); ("EX", "EXTEND"); ("F", "FILLET"); ("DLI", "DIMLINEAR"); ("B", "BLOCK"); ("I", "INSERT"); ("LA", "LAYER"); ("Z", "ZOOM"); ("P", "PAN"); ("DI", "DIST"); ("UNDO", "U"); ("SAVE", "DXFOUT"); ("OPEN", "DXFIN"); ] let set t state = match t.run with Some r -> { t with run = Some { r with state } } | None -> t (* the command over: an undo step if it changed the drawing *) let finish t = match t.run with | None -> t | Some r -> let t = { t with run = None } in (* by value, but for the ids' counter: a line drawn then taken back by U changed nothing *) if { t.drawing with next = 0 } <> { r.before with next = 0 } then { t with undo = (r.name, r.before) :: t.undo; redo = [] } else t let begin_ name t = let name = String.uppercase_ascii (String.trim name) in let name = Option.value (List.assoc_opt name aliases) ~default:name in let run state = { t with run = Some { name; state; before = t.drawing }; last_command = Some name } in match name with | "LINE" -> run Line_from | "CIRCLE" -> run Circle_center | "ARC" -> run (Arc_points []) | "ERASE" -> run (Select { after = For_erase; picked = []; corner = None }) | "MOVE" -> run (Select { after = For_move false; picked = []; corner = None }) | "COPY" -> run (Select { after = For_move true; picked = []; corner = None }) | "OFFSET" -> run Offset_distance | "TRIM" -> say "Select cutting edges:" (run (Select { after = For_edges false; picked = []; corner = None })) | "EXTEND" -> say "Select boundary edges:" (run (Select { after = For_edges true; picked = []; corner = None })) | "FILLET" -> run Fillet_first | "DIMLINEAR" -> run (Dim_points []) | "BLOCK" -> run Block_name | "INSERT" -> run Insert_name | "LAYER" -> run Layer_option | "ZOOM" -> run Zoom_option | "PAN" -> run (Pan_points None) | "ID" -> run Id_point | "DIST" -> run (Dist_points None) | "DXFOUT" -> run (File_name true) | "DXFIN" -> run (File_name false) | "U" -> ( match t.undo with | (n, d) :: rest -> say n { t with drawing = d; undo = rest; redo = (n, t.drawing) :: t.redo; last_command = Some "U" } | [] -> say "Everything has been undone" t) | "REDO" -> ( match t.redo with | (n, d) :: rest -> say n { t with drawing = d; redo = rest; undo = (n, t.drawing) :: t.undo } | [] -> say "Previous command did not undo things" t) | _ -> say (Printf.sprintf "Unknown command \"%s\". Type ? for list of commands." name) t let commands = "LINE CIRCLE ARC ERASE MOVE COPY OFFSET TRIM EXTEND FILLET DIMLINEAR BLOCK INSERT LAYER ZOOM PAN ID DIST U REDO DXFOUT DXFIN" let command name t = let t = if t.run <> None then finish (say "*Cancel*" t) else t in begin_ name (say ("Command: " ^ String.uppercase_ascii name) t) (*****************************************************************************) (* The steps *) (*****************************************************************************) let selection_step t after picked corner i = let select picked = set t (Select { after; picked; corner = None }) in let found ids = let fresh = List.filter (fun id -> not (List.mem id picked)) ids in say (Printf.sprintf "%d found" (List.length ids)) (select (picked @ fresh)) in match (i, corner) with | Pick p, None -> ( match D.pick t.drawing (pickbox t) p with | Some id -> found [ id ] | None -> set t (Select { after; picked; corner = Some p })) | Pick q, Some p -> found (D.window t.drawing p q ~crossing:(fst q < fst p)) | Text s, None when String.uppercase_ascii (String.trim s) = "ALL" -> found (D.ids t.drawing) | Text s, None when String.uppercase_ascii (String.trim s) = "L" -> ( match List.rev (D.ids t.drawing) with id :: _ -> found [ id ] | [] -> t) | Text "", _ -> ( (* Enter: the selection is made *) match after with | For_erase -> finish { t with drawing = D.remove picked t.drawing } | For_move copy -> if picked = [] then finish t else set t (Base (copy, picked)) | For_block (name, base) -> if picked = [] then finish t else let es = List.filter_map (D.get t.drawing) picked in let blocks = List.remove_assoc name t.drawing.blocks @ [ (name, (base, es)) ] in finish { t with drawing = { (D.remove picked t.drawing) with blocks } } | For_edges extend -> set t (Trim_pick (extend, picked))) | Text _, _ -> say "*Invalid selection*" t | Cancel, _ -> t let move_objects t copy objs d = List.fold_left (fun (dr : D.t) id -> match D.get dr id with | Some e -> let moved = D.move_entity d e.entity in if copy then fst (add_on e.layer moved dr) else D.replace id [ moved ] dr | None -> dr) t.drawing objs let step ?cursor t r i = let point () = point_of t ?cursor i in let with_point f = match point () with Some p -> f p | None -> say "Invalid point." t in let remember p t = { t with last_point = Some p } in match r.state with | Line_from -> with_point (fun p -> remember p (set t (Line_to { first = p; last = p; segs = [] }))) | Line_to { first; last; segs } -> ( match i with | Text "" -> finish t | Text s when String.uppercase_ascii (String.trim s) = "C" -> if List.length segs < 2 then say "Invalid point." t else finish (remember first { t with drawing = fst (D.add (D.Line (last, first)) t.drawing) }) | Text s when String.uppercase_ascii (String.trim s) = "U" -> ( match segs with | (id, from) :: rest -> remember from (set { t with drawing = D.remove [ id ] t.drawing } (Line_to { first; last = from; segs = rest })) | [] -> say "All segments already undone." t) | _ -> with_point (fun p -> let drawing, id = D.add (D.Line (last, p)) t.drawing in remember p (set { t with drawing } (Line_to { first; last = p; segs = (id, last) :: segs })))) | Circle_center -> with_point (fun c -> remember c (set t (Circle_radius (c, false)))) | Circle_radius (c, diameter) -> ( match i with | Text s when String.uppercase_ascii (String.trim s) = "D" -> set t (Circle_radius (c, true)) | _ -> ( match (match i with Pick p -> Some (G.dist c p) | _ -> number_of t i) with | Some v when v > 0. -> finish { t with drawing = fst (D.add (D.Circle (c, if diameter then v /. 2. else v)) t.drawing) } | _ -> say "Requires numeric distance or second point." t)) | Arc_points ps -> with_point (fun p -> match ps @ [ p ] with | [ a; b; c ] -> ( match arc3 a b c with | Some arc -> finish (remember p { t with drawing = fst (D.add arc t.drawing) }) | None -> say "Points are collinear." t) | ps -> remember p (set t (Arc_points ps))) | Select { after; picked; corner } -> selection_step t after picked corner i | Base (copy, objs) -> with_point (fun p -> remember p (set t (Second (copy, objs, p)))) | Second (copy, objs, base) -> ( match i with | Text "" -> finish { t with drawing = move_objects t copy objs base } (* the base as the displacement *) | _ -> with_point (fun p -> finish (remember p { t with drawing = move_objects t copy objs (G.sub p base) }))) | Offset_distance -> ( match i with | Text "" -> set t Offset_pick | _ -> ( match number_of t i with | Some d when d > 0. -> set { t with offset_distance = d } Offset_pick | _ -> say "Requires a positive distance." t)) | Offset_pick -> ( match i with | Text "" -> finish t | Pick p -> ( match D.pick t.drawing (pickbox t) p with Some id -> set t (Offset_side id) | None -> say "No object found." t) | _ -> t) | Offset_side id -> with_point (fun side -> match entity t id with | Some e -> ( match Cad_edit.offset t.offset_distance e ~side with | Ok e' -> set { t with drawing = fst (add_on (layer_of t id) e' t.drawing) } Offset_pick | Error msg -> say msg (set t Offset_pick)) | None -> set t Offset_pick) | Trim_pick (extend, edges) -> ( match i with | Text "" -> finish t | Pick p -> ( match D.pick t.drawing (pickbox t) p with | None -> say "No object found." t | Some id -> ( (* no edges chosen: every other entity is one *) let edges = List.filter (( <> ) id) (if edges = [] then D.ids t.drawing else edges) in let curves = List.concat_map (fun e -> List.map fst (D.pieces t.drawing e)) (List.filter_map (D.get t.drawing) edges) in match entity t id with | None -> t | Some e -> ( let result = if extend then Result.map (fun e -> [ e ]) (Cad_edit.extend curves e ~at:p) else Cad_edit.trim curves e ~at:p in match result with | Ok es -> { t with drawing = D.replace id es t.drawing } | Error msg -> say msg t))) | _ -> t) | Fillet_first -> ( match i with | Text s when String.uppercase_ascii (String.trim s) = "R" -> set t Fillet_radius | Text "" -> finish t | Pick p -> ( match D.pick t.drawing (pickbox t) p with | Some id when (match entity t id with Some (D.Line _) -> true | _ -> false) -> set t (Fillet_second (id, p)) | Some _ -> say "Can only fillet lines." t | None -> say "No object found." t) | _ -> t) | Fillet_radius -> ( match i with | Text "" -> finish t | _ -> ( match number_of t i with Some r when r >= 0. -> finish { t with fillet_radius = r } | _ -> say "Requires a distance." t)) | Fillet_second (id1, q1) -> ( match i with | Pick q2 -> ( match D.pick t.drawing (pickbox t) q2 with | Some id2 when id2 <> id1 -> ( match (entity t id1, entity t id2) with | Some e1, Some e2 -> ( match Cad_edit.fillet t.fillet_radius (e1, q1) (e2, q2) with | Ok (l1, l2, arc) -> let d = D.replace id2 [ l2 ] (D.replace id1 [ l1 ] t.drawing) in let d = match arc with Some a -> fst (add_on (layer_of t id1) a d) | None -> d in finish { t with drawing = d } | Error msg -> finish (say msg t)) | _ -> finish t) | _ -> say "No object found." t) | Text "" -> finish t | _ -> t) | Dim_points ps -> with_point (fun p -> match ps @ [ p ] with | [ a; b; l ] -> finish { t with drawing = fst (D.add (D.Dimension (a, b, l)) t.drawing) } | ps -> remember p (set t (Dim_points ps))) | Block_name | Insert_name -> ( match i with | Text "" -> finish t | Text "?" -> say ("Defined blocks: " ^ String.concat " " (List.map fst t.drawing.blocks)) t | Text s -> let name = String.uppercase_ascii (String.trim s) in if r.state = Block_name then set t (Block_base name) else if List.mem_assoc name t.drawing.blocks then set t (Insert_point name) else finish (say (Printf.sprintf "Block %s not found." name) t) | _ -> t) | Block_base name -> with_point (fun p -> set t (Select { after = For_block (name, p); picked = []; corner = None })) | Insert_point name -> with_point (fun p -> remember p (set t (Insert_scale (name, p)))) | Insert_scale (name, p) -> ( match i with | Text "" -> set t (Insert_rotation (name, p, 1.)) | _ -> ( match number_of t i with Some s when s <> 0. -> set t (Insert_rotation (name, p, s)) | _ -> say "Requires a number." t)) | Insert_rotation (name, p, s) -> ( let place rot = finish { t with drawing = fst (D.add (D.Insert (name, p, s, rot)) t.drawing) } in match i with | Text "" -> place 0. | Pick q -> place (G.angle p q) | Text x -> ( match float_of_string_opt (String.trim x) with Some a -> place a | None -> say "Requires an angle." t) | Cancel -> t) | Layer_option -> ( match i with | Text "" -> finish t | Text s -> ( match String.uppercase_ascii (String.trim s) with | "?" -> List.fold_left (fun t (l : D.layer) -> say (Printf.sprintf "%-12s %-4s %d%s" l.name (if l.on then "On" else "Off") l.color (if l.name = t.drawing.current then " (current)" else "")) t) t t.drawing.layers | "M" | "MAKE" -> set t (Layer_name "M") | "S" | "SET" -> set t (Layer_name "S") | "ON" -> set t (Layer_name "ON") | "OFF" -> set t (Layer_name "OFF") | "C" | "COLOR" -> set t Layer_color | _ -> say "Invalid option keyword." t) | _ -> t) | Layer_name option -> ( match i with | Text s -> let name = String.uppercase_ascii (String.trim s) in let d = t.drawing in let t = if name = "" then t else match option with | "M" -> { t with drawing = { (D.ensure_layer name d) with current = name } } | "S" -> if List.exists (fun (l : D.layer) -> l.name = name) d.layers then { t with drawing = { d with current = name } } else say (Printf.sprintf "Cannot find layer %s." name) t | _ -> { t with drawing = D.set_layer { (D.layer d name) with on = option = "ON" } d } in set t Layer_option | _ -> t) | Layer_color -> ( match i with | Text s -> ( match color_of s with Some c -> set t (Layer_color_name c) | None -> say "Invalid color." t) | _ -> t) | Layer_color_name c -> ( match i with | Text s -> let name = if String.trim s = "" then t.drawing.current else String.uppercase_ascii (String.trim s) in set { t with drawing = D.set_layer { (D.layer t.drawing name) with color = c } t.drawing } Layer_option | _ -> t) | Zoom_option -> ( match i with | Pick p -> set t (Zoom_corner (Some p)) | Text s -> ( match String.uppercase_ascii (String.trim s) with | "A" | "ALL" | "E" | "EXTENTS" -> finish (zoom_extents t) | "W" | "WINDOW" -> set t (Zoom_corner None) | "P" | "PREVIOUS" -> finish (match t.previous_view with Some v -> { t with view = v; previous_view = Some t.view } | None -> t) | s -> ( let s = if String.ends_with ~suffix:"X" s then String.sub s 0 (String.length s - 1) else s in match float_of_string_opt s with | Some k when k > 0. -> finish { t with previous_view = Some t.view; view = { t.view with upp = t.view.upp /. k } } | _ -> say "Invalid option keyword." t)) | Cancel -> t) | Zoom_corner None -> with_point (fun p -> set t (Zoom_corner (Some p))) | Zoom_corner (Some a) -> with_point (fun b -> finish (fit t a b)) | Pan_points None -> with_point (fun p -> set t (Pan_points (Some p))) | Pan_points (Some a) -> with_point (fun b -> finish { t with previous_view = Some t.view; view = { t.view with center = G.sub t.view.center (G.sub b a) } }) | Id_point -> with_point (fun (x, y) -> finish (remember (x, y) (say (Printf.sprintf "X = %s Y = %s Z = %s" (fmt x) (fmt y) (fmt 0.)) t))) | Dist_points None -> with_point (fun p -> remember p (set t (Dist_points (Some p)))) | Dist_points (Some a) -> with_point (fun b -> let dx, dy = G.sub b a in finish (say (Printf.sprintf "Distance = %s, Angle in XY Plane = %s, Delta X = %s, Delta Y = %s" (fmt (G.dist a b)) (Printf.sprintf "%.0f" (G.angle a b)) (fmt dx) (fmt dy)) t)) | File_name writing -> ( match i with | Text s -> let base = if String.trim s = "" then t.file else String.trim s in let base = if Filename.check_suffix base ".dxf" then Filename.chop_suffix base ".dxf" else base in let name = base ^ ".dxf" in let t = { t with file = base } in if writing then finish (say ("Written " ^ name) { t with io = Some (Save (name, Dxf.to_string t.drawing)) }) else finish { t with io = Some (Load name) } | _ -> t) let input ?cursor t i = let t = { t with io = None } in match (t.run, i) with | None, Text "" -> ( match t.last_command with Some c -> begin_ c (say ("Command: " ^ c) t) | None -> say "Command:" t) | None, Text "?" -> say commands (say "Command: ?" t) | None, Text s -> begin_ s (say ("Command: " ^ String.uppercase_ascii (String.trim s)) t) | None, (Pick _ | Cancel) -> t | Some _, Cancel -> finish (say "*Cancel*" t) | Some r, _ -> let echo = match i with Text s -> " " ^ s | _ -> "" in step ?cursor (say (prompt t ^ echo) t) r i let loaded name text t = match text with | None -> say (Printf.sprintf "Can't open file %s" name) t | Some s -> ( match Dxf.of_string s with | Ok d -> say ("Read " ^ name) (zoom_extents { t with drawing = d; undo = ("DXFIN", t.drawing) :: t.undo; redo = [] }) | Error e -> say (Printf.sprintf "Error in %s: %s" name e) t) (*****************************************************************************) (* What the application draws *) (*****************************************************************************) let anchor t = match t.run with | None -> None | Some r -> ( match r.state with | Line_to { last; _ } -> Some last | Circle_radius (c, _) -> Some c | Arc_points (_ :: _ as ps) -> Some (List.nth ps (List.length ps - 1)) | Second (_, _, b) -> Some b | Dim_points (_ :: _ as ps) -> Some (List.nth ps (List.length ps - 1)) | Insert_rotation (_, p, _) -> Some p | Pan_points (Some p) | Dist_points (Some p) -> Some p | _ -> None) let box (ax, ay) (bx, by) = [ D.Line ((ax, ay), (bx, ay)); D.Line ((bx, ay), (bx, by)); D.Line ((bx, by), (ax, by)); D.Line ((ax, by), (ax, ay)) ] let preview t c = match t.run with | None -> [] | Some r -> ( match r.state with | Line_to { last; _ } -> [ D.Line (last, c) ] | Circle_radius (ctr, d) -> [ D.Circle (ctr, G.dist ctr c /. if d then 2. else 1.) ] | Arc_points [ a ] -> [ D.Line (a, c) ] | Arc_points [ a; b ] -> Option.to_list (arc3 a b c) | Second (_, objs, base) -> List.filter_map (fun id -> Option.map (D.move_entity (G.sub c base)) (entity t id)) objs | Offset_side id -> ( match entity t id with Some e -> Result.to_list (Cad_edit.offset t.offset_distance e ~side:c) | None -> []) | Dim_points [ a ] -> [ D.Line (a, c) ] | Dim_points [ a; b ] -> [ D.Dimension (a, b, c) ] | Insert_point name -> [ D.Insert (name, c, 1., 0.) ] | Insert_scale (name, p) -> [ D.Insert (name, p, 1., 0.) ] | Insert_rotation (name, p, s) -> [ D.Insert (name, p, s, G.angle p c) ] | Pan_points (Some a) | Dist_points (Some a) -> [ D.Line (a, c) ] | Zoom_corner (Some a) -> box a c | _ -> []) let selected t = match t.run with | Some { state = Select { picked; _ }; _ } -> picked | Some { state = Trim_pick (_, edges); _ } -> edges | Some { state = Base (_, objs) | Second (_, objs, _); _ } -> objs | Some { state = Offset_side id | Fillet_second (id, _); _ } -> [ id ] | _ -> [] let selection_box t c = match t.run with Some { state = Select { corner = Some a; _ }; _ } -> Some (a, c, fst c < fst a) | _ -> None
sectionYPositions = computeSectionYPositions($el), 10)"
x-init="setTimeout(() => sectionYPositions = computeSectionYPositions($el), 10)"
>