package tiny_languages
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Small languages from scratch: Scheme, Lisp, Smalltalk-80, Pascal, BASIC, JavaScript, HTML, CSS and more
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dune-project
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Maintainers
Sources
0.3.6.tar.gz
md5=7c636383d146d30ac6f2fa234a6253c8
sha512=c79f3823c5f8f57e5038eb640d487c61168b84aa07c61999d6622ef9fd0c890e2b03b4c6a7cdbbe9352a49e25dda00ac7bb14693cee8e3d7beeed251351a2af0
doc/src/tiny_languages.lang_css/Css_values.ml.html
Source file Css_values.ml
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248(* Claude Code * * Copyright (C) 2026 Yoann Padioleau * * This library is free software; 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 Css_values.mli *) open Css_syntax type length = { px : float; pct : float } type color = { r : int; g : int; b : int; a : float } type context = { em : float; rem : float; viewport_width : float; viewport_height : float } let resolve (l : length) (base : float) : float = l.px +. (l.pct *. base /. 100.) let px (p : float) : length = { px = p; pct = 0. } let zero = px 0. let black = { r = 0; g = 0; b = 0; a = 1. } let transparent = { r = 0; g = 0; b = 0; a = 0. } let parts (cs : component list) : component list = List.filter (fun c -> c <> Token Whitespace) cs (*****************************************************************************) (* var() *) (*****************************************************************************) exception Unresolved let substitute (lookup : string -> component list option) (cs : component list) : component list option = let rec go (depth : int) (cs : component list) : component list = if depth > 32 then raise Unresolved (* a cycle: --a: var(--a) *) else List.concat_map (fun (c : component) -> match c with | Func (f, args) when String.lowercase_ascii f = "var" -> ( let name, fallback = match split_on Comma args with | first :: rest -> (to_string (trim first), if rest = [] then None else Some (trim (List.concat (List.mapi (fun i r -> if i = 0 then r else Token Comma :: r) rest)))) | [] -> raise Unresolved in match (lookup name, fallback) with | Some v, _ -> go (depth + 1) v | None, Some f -> go (depth + 1) f | None, None -> raise Unresolved) | Func (f, args) -> [ Func (f, go depth args) ] | Block (o, inside) -> [ Block (o, go depth inside) ] | c -> [ c ]) cs in match go 0 cs with v -> Some v | exception Unresolved -> None (*****************************************************************************) (* Lengths and calc() *) (*****************************************************************************) let add a b = { px = a.px +. b.px; pct = a.pct +. b.pct } let scale k a = { px = k *. a.px; pct = k *. a.pct } let unit_length (ctx : context) (f : float) (u : string) : length option = match u with | "px" -> Some (px f) | "em" -> Some (px (f *. ctx.em)) | "rem" -> Some (px (f *. ctx.rem)) | "ex" | "ch" -> Some (px (f *. ctx.em *. 0.5)) | "pt" -> Some (px (f *. 96. /. 72.)) | "pc" -> Some (px (f *. 16.)) | "in" -> Some (px (f *. 96.)) | "cm" -> Some (px (f *. 96. /. 2.54)) | "mm" -> Some (px (f *. 96. /. 25.4)) | "vw" -> Some (px (f *. ctx.viewport_width /. 100.)) | "vh" -> Some (px (f *. ctx.viewport_height /. 100.)) | "vmin" -> Some (px (f *. Float.min ctx.viewport_width ctx.viewport_height /. 100.)) | "vmax" -> Some (px (f *. Float.max ctx.viewport_width ctx.viewport_height /. 100.)) | _ -> None (* calc()'s expression: a sum of products, a number or a length each * term (a number alone multiplies or divides a length) *) type term = Num of float | Len of length let rec length (ctx : context) (c : component) : length option = match c with | Token (Dimension (f, u)) -> unit_length ctx f u | Token (Percentage f) -> Some { px = 0.; pct = f } | Token (Number 0.) -> Some zero | Func (f, args) -> ( match String.lowercase_ascii f with | "calc" -> ( match calc ctx args with Some (Len l) -> Some l | Some (Num 0.) -> Some zero | _ -> None) | ("min" | "max" | "clamp") as f -> ( let ls = List.map (fun a -> calc ctx a) (split_on Comma args) in if List.exists (fun l -> match l with Some (Len _) -> false | _ -> true) ls then None else let ls = List.map (function Some (Len l) -> l | _ -> zero) ls in let pick cmp = List.fold_left (fun a b -> if cmp b.px a.px then b else a) (List.hd ls) ls in match (f, ls) with | "min", _ :: _ -> Some (pick ( < )) | "max", _ :: _ -> Some (pick ( > )) | "clamp", [ lo; v; hi ] -> Some (if v.px < lo.px then lo else if v.px > hi.px then hi else v) | _ -> None) | _ -> None) | Block ('(', inside) -> ( match calc ctx inside with Some (Len l) -> Some l | _ -> None) | _ -> None and calc (ctx : context) (cs : component list) : term option = let cs = parts cs in let operand (c : component) : term option = match c with | Token (Number f) -> Some (Num f) | Block ('(', inside) -> calc ctx inside | c -> Option.map (fun l -> Len l) (length ctx c) in (* the products first, then the sums: a precedence of two levels *) let times (a : term) (op : char) (b : term) : term option = match (a, op, b) with | Num x, '*', Num y -> Some (Num (x *. y)) | Num x, '*', Len l | Len l, '*', Num x -> Some (Len (scale x l)) | Num x, '/', Num y when y <> 0. -> Some (Num (x /. y)) | Len l, '/', Num y when y <> 0. -> Some (Len (scale (1. /. y) l)) | _ -> None in let plus (a : term) (sign : float) (b : term) : term option = match (a, b) with | Num x, Num y -> Some (Num (x +. (sign *. y))) | Len x, Len y -> Some (Len (add x (scale sign y))) | Num 0., Len y -> Some (Len (scale sign y)) | Len x, Num 0. -> Some (Len x) | _ -> None in let rec product (acc : term) (cs : component list) : (term * component list) option = match cs with | Token (Delim (('*' | '/') as op)) :: c :: rest -> ( match operand c with Some b -> Option.bind (times acc op b) (fun t -> product t rest) | None -> None) | rest -> Some (acc, rest) in let rec sum (acc : term) (cs : component list) : term option = match cs with | [] -> Some acc | Token (Delim (('+' | '-') as op)) :: c :: rest -> ( match operand c with | Some b -> ( match product b rest with | Some (b, rest) -> Option.bind (plus acc (if op = '+' then 1. else -1.) b) (fun t -> sum t rest) | None -> None) | None -> None) (* "- 2em" read by the tokenizer as a negative number or dimension *) | (Token (Number f) as c) :: rest when f < 0. -> sum acc (Token (Delim '+') :: c :: rest) | (Token (Dimension (f, _)) as c) :: rest when f < 0. -> sum acc (Token (Delim '+') :: c :: rest) | _ -> None in match cs with | c :: rest -> ( match operand c with Some t -> Option.bind (product t rest) (fun (t, rest) -> sum t rest) | None -> None) | [] -> None (*****************************************************************************) (* Colours *) (*****************************************************************************) let named = [ ("aliceblue", 0xf0f8ff); ("antiquewhite", 0xfaebd7); ("aqua", 0x00ffff); ("aquamarine", 0x7fffd4); ("azure", 0xf0ffff); ("beige", 0xf5f5dc); ("bisque", 0xffe4c4); ("black", 0x000000); ("blanchedalmond", 0xffebcd); ("blue", 0x0000ff); ("blueviolet", 0x8a2be2); ("brown", 0xa52a2a); ("burlywood", 0xdeb887); ("cadetblue", 0x5f9ea0); ("chartreuse", 0x7fff00); ("chocolate", 0xd2691e); ("coral", 0xff7f50); ("cornflowerblue", 0x6495ed); ("cornsilk", 0xfff8dc); ("crimson", 0xdc143c); ("cyan", 0x00ffff); ("darkblue", 0x00008b); ("darkcyan", 0x008b8b); ("darkgoldenrod", 0xb8860b); ("darkgray", 0xa9a9a9); ("darkgreen", 0x006400); ("darkgrey", 0xa9a9a9); ("darkkhaki", 0xbdb76b); ("darkmagenta", 0x8b008b); ("darkolivegreen", 0x556b2f); ("darkorange", 0xff8c00); ("darkorchid", 0x9932cc); ("darkred", 0x8b0000); ("darksalmon", 0xe9967a); ("darkseagreen", 0x8fbc8f); ("darkslateblue", 0x483d8b); ("darkslategray", 0x2f4f4f); ("darkslategrey", 0x2f4f4f); ("darkturquoise", 0x00ced1); ("darkviolet", 0x9400d3); ("deeppink", 0xff1493); ("deepskyblue", 0x00bfff); ("dimgray", 0x696969); ("dimgrey", 0x696969); ("dodgerblue", 0x1e90ff); ("firebrick", 0xb22222); ("floralwhite", 0xfffaf0); ("forestgreen", 0x228b22); ("fuchsia", 0xff00ff); ("gainsboro", 0xdcdcdc); ("ghostwhite", 0xf8f8ff); ("gold", 0xffd700); ("goldenrod", 0xdaa520); ("gray", 0x808080); ("green", 0x008000); ("greenyellow", 0xadff2f); ("grey", 0x808080); ("honeydew", 0xf0fff0); ("hotpink", 0xff69b4); ("indianred", 0xcd5c5c); ("indigo", 0x4b0082); ("ivory", 0xfffff0); ("khaki", 0xf0e68c); ("lavender", 0xe6e6fa); ("lavenderblush", 0xfff0f5); ("lawngreen", 0x7cfc00); ("lemonchiffon", 0xfffacd); ("lightblue", 0xadd8e6); ("lightcoral", 0xf08080); ("lightcyan", 0xe0ffff); ("lightgoldenrodyellow", 0xfafad2); ("lightgray", 0xd3d3d3); ("lightgreen", 0x90ee90); ("lightgrey", 0xd3d3d3); ("lightpink", 0xffb6c1); ("lightsalmon", 0xffa07a); ("lightseagreen", 0x20b2aa); ("lightskyblue", 0x87cefa); ("lightslategray", 0x778899); ("lightslategrey", 0x778899); ("lightsteelblue", 0xb0c4de); ("lightyellow", 0xffffe0); ("lime", 0x00ff00); ("limegreen", 0x32cd32); ("linen", 0xfaf0e6); ("magenta", 0xff00ff); ("maroon", 0x800000); ("mediumaquamarine", 0x66cdaa); ("mediumblue", 0x0000cd); ("mediumorchid", 0xba55d3); ("mediumpurple", 0x9370db); ("mediumseagreen", 0x3cb371); ("mediumslateblue", 0x7b68ee); ("mediumspringgreen", 0x00fa9a); ("mediumturquoise", 0x48d1cc); ("mediumvioletred", 0xc71585); ("midnightblue", 0x191970); ("mintcream", 0xf5fffa); ("mistyrose", 0xffe4e1); ("moccasin", 0xffe4b5); ("navajowhite", 0xffdead); ("navy", 0x000080); ("oldlace", 0xfdf5e6); ("olive", 0x808000); ("olivedrab", 0x6b8e23); ("orange", 0xffa500); ("orangered", 0xff4500); ("orchid", 0xda70d6); ("palegoldenrod", 0xeee8aa); ("palegreen", 0x98fb98); ("paleturquoise", 0xafeeee); ("palevioletred", 0xdb7093); ("papayawhip", 0xffefd5); ("peachpuff", 0xffdab9); ("peru", 0xcd853f); ("pink", 0xffc0cb); ("plum", 0xdda0dd); ("powderblue", 0xb0e0e6); ("purple", 0x800080); ("rebeccapurple", 0x663399); ("red", 0xff0000); ("rosybrown", 0xbc8f8f); ("royalblue", 0x4169e1); ("saddlebrown", 0x8b4513); ("salmon", 0xfa8072); ("sandybrown", 0xf4a460); ("seagreen", 0x2e8b57); ("seashell", 0xfff5ee); ("sienna", 0xa0522d); ("silver", 0xc0c0c0); ("skyblue", 0x87ceeb); ("slateblue", 0x6a5acd); ("slategray", 0x708090); ("slategrey", 0x708090); ("snow", 0xfffafa); ("springgreen", 0x00ff7f); ("steelblue", 0x4682b4); ("tan", 0xd2b48c); ("teal", 0x008080); ("thistle", 0xd8bfd8); ("tomato", 0xff6347); ("turquoise", 0x40e0d0); ("violet", 0xee82ee); ("wheat", 0xf5deb3); ("white", 0xffffff); ("whitesmoke", 0xf5f5f5); ("yellow", 0xffff00); ("yellowgreen", 0x9acd32) ] let of_rgb (n : int) : color = { r = (n lsr 16) land 255; g = (n lsr 8) land 255; b = n land 255; a = 1. } let hex (h : string) : color option = let d i = int_of_string_opt ("0x" ^ String.make 2 h.[i]) and dd i = int_of_string_opt ("0x" ^ String.sub h i 2) in let mk r g b a = match (r, g, b, a) with Some r, Some g, Some b, Some a -> Some { r; g; b; a = float_of_int a /. 255. } | _ -> None in match String.length h with | 3 -> mk (d 0) (d 1) (d 2) (Some 255) | 4 -> mk (d 0) (d 1) (d 2) (d 3) | 6 -> mk (dd 0) (dd 2) (dd 4) (Some 255) | 8 -> mk (dd 0) (dd 2) (dd 4) (dd 6) | _ -> None let clamp255 (f : float) : int = max 0 (min 255 (int_of_float (Float.round f))) (* hsl to rgb: CSS Color's own algorithm *) let hsl (h : float) (s : float) (l : float) : int * int * int = let h = Float.rem (Float.rem h 360. +. 360.) 360. /. 360. in let hue m1 m2 h = let h = if h < 0. then h +. 1. else if h > 1. then h -. 1. else h in if h *. 6. < 1. then m1 +. ((m2 -. m1) *. h *. 6.) else if h *. 2. < 1. then m2 else if h *. 3. < 2. then m1 +. ((m2 -. m1) *. ((2. /. 3.) -. h) *. 6.) else m1 in let m2 = if l <= 0.5 then l *. (s +. 1.) else l +. s -. (l *. s) in let m1 = (l *. 2.) -. m2 in (clamp255 (255. *. hue m1 m2 (h +. (1. /. 3.))), clamp255 (255. *. hue m1 m2 h), clamp255 (255. *. hue m1 m2 (h -. (1. /. 3.)))) let color ~(current : color) (cs : component list) : color option = match parts cs with | [ Token (Hash h) ] -> hex h | [ Token (Ident n) ] -> ( match String.lowercase_ascii n with | "transparent" -> Some transparent | "currentcolor" -> Some current | n -> Option.map of_rgb (List.assoc_opt n named)) | [ Func (f, args) ] -> ( (* the arguments, commas or not, and an alpha after a / or a fourth *) let items = List.filter (fun c -> match c with Token Comma | Token (Delim '/') -> false | _ -> true) (parts args) in let num c = match c with Token (Number n) -> Some n | Token (Percentage p) -> Some (p *. 2.55) | _ -> None in let alpha c = match c with Token (Number n) -> Some n | Token (Percentage p) -> Some (p /. 100.) | _ -> None in let pct c = match c with Token (Percentage p) -> Some (p /. 100.) | Token (Number n) -> Some (n /. 100.) | _ -> None in let deg c = match c with Token (Number n) -> Some n | Token (Dimension (n, "deg")) -> Some n | Token (Dimension (n, "turn")) -> Some (n *. 360.) | _ -> None in match (String.lowercase_ascii f, items) with | ("rgb" | "rgba"), [ r; g; b ] -> ( match (num r, num g, num b) with Some r, Some g, Some b -> Some { r = clamp255 r; g = clamp255 g; b = clamp255 b; a = 1. } | _ -> None) | ("rgb" | "rgba"), [ r; g; b; a ] -> ( match (num r, num g, num b, alpha a) with Some r, Some g, Some b, Some a -> Some { r = clamp255 r; g = clamp255 g; b = clamp255 b; a } | _ -> None) | ("hsl" | "hsla"), h :: s :: l :: rest -> ( match (deg h, pct s, pct l) with | Some h, Some s, Some l -> let r, g, b = hsl h s l in let a = match rest with [ a ] -> Option.value (alpha a) ~default:1. | _ -> 1. in Some { r; g; b; a } | _ -> None) | _ -> None) | _ -> None
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