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
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Authors
Maintainers
Sources
0.3.6.tar.gz
md5=7c636383d146d30ac6f2fa234a6253c8
sha512=c79f3823c5f8f57e5038eb640d487c61168b84aa07c61999d6622ef9fd0c890e2b03b4c6a7cdbbe9352a49e25dda00ac7bb14693cee8e3d7beeed251351a2af0
doc/src/tiny_appkits.browser_layout/Box_layout.ml.html
Source file Box_layout.ml
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(*****************************************************************************) let rec fragments (b : box) : Html_layout.fragment list = List.concat_map (fun (l : Html_layout.line) -> l.fragments) b.lines @ List.concat_map fragments b.children (* a box and all it holds moved by (dx, dy): a float or an inline-block * is laid out where it will not stay *) let rec moved (dx : float) (dy : float) (b : box) : box = if dx = 0. && dy = 0. then b else { b with x = b.x +. dx; y = b.y +. dy; children = List.map (moved dx dy) b.children; backdrops = List.map (moved dx dy) b.backdrops; lines = List.map (fun (l : Html_layout.line) -> { l with top = l.top +. dy; baseline = l.baseline +. dy; fragments = List.map (fun (f : Html_layout.fragment) -> { f with x = f.x +. dx; baseline = f.baseline +. dy }) l.fragments; }) b.lines; } (* how far right a box's content reaches, for shrink-to-fit: its lines' * words, its children's content -- a block of width auto is as wide as * its container, which is not what it needs *) let rec inner_right (b : box) : float = let lines = List.fold_left (fun m (l : Html_layout.line) -> List.fold_left (fun m (f : Html_layout.fragment) -> Float.max m (f.x +. f.width)) m l.fragments) b.x b.lines in List.fold_left (fun m c -> Float.max m (right_edge c)) lines b.children and right_edge (b : box) : float = match b.element with | Some _ when b.style.width <> Auto || b.style.display = Table -> b.x +. b.width | Some _ -> let _, pr, _, _ = b.style.padding and _, br, _, _ = b.border in inner_right b +. Css_values.resolve pr 0. +. br | None -> inner_right b let rec last_baseline (b : box) : float option = match List.rev b.lines with | l :: _ -> Some l.baseline | [] -> List.fold_left (fun found c -> match last_baseline c with Some _ as s -> s | None -> found) None b.children let rec as_html_layout (b : box) : Html_layout.box = { kind = (match b.element with Some e -> Block e | None -> Anonymous); x = b.x; y = b.y; width = b.width; height = b.height; children = List.map as_html_layout b.children; lines = b.lines; floats = []; marker = b.marker; background = None; } let picture_src (e : Dom.element) : string option = match Dom.attribute "src" e with | Some s when String.trim s <> "" -> Some s | _ -> ( (* "a.png 1x, b.png 2x": its first address *) match Dom.attribute "srcset" e with | Some set -> ( match String.split_on_char ' ' (String.trim (List.hd (String.split_on_char ',' set))) with | url :: _ when url <> "" -> Some url | _ -> None) | None -> None) (*****************************************************************************) (* Styles *) (*****************************************************************************) let look_of (s : Computed.t) ~(link : string option) : Looks.t = let color = (s.color.r, s.color.g, s.color.b) in { size = s.font_size; bold = s.bold; italic = s.italic; underline = s.underline; strike = s.line_through; monospace = s.family = Monospace; color; link; pre = (match s.white_space with Pre | Pre_wrap -> true | _ -> false); align = (match s.text_align with Align_center -> Center | Align_right -> Right | Align_left | Align_justify -> Left); (* a link's colour is the style sheets' (:link, :visited), not the * look's *) link_color = color; visited_color = color; base = 16.; extensions = true; } let line_height (s : Computed.t) : float = match s.line_height with Line_normal -> 1.2 *. s.font_size | Factor f -> f *. s.font_size | Line_px p -> p (* a size in pixels, a percentage of [base]; auto None *) let size (s : Computed.size) (base : float) : float option = match s with Auto -> None | Len l -> Some (Css_values.resolve l base) let four (f : 'a -> 'b) ((t, r, b, l) : 'a * 'a * 'a * 'a) : 'b * 'b * 'b * 'b = (f t, f r, f b, f l) (* a box that lays out its own content apart: its floats its own, its * margins not collapsed with its children's *) let own_context (s : Computed.t) : bool = s.overflow_hidden || s.float <> Side_none || (match s.position with Absolute | Fixed -> true | _ -> false) || match s.display with Inline_block | Inline_flex | Flex | Grid | Table_cell | Table | Table_caption -> true | _ -> false (* the larger margin, a negative one subtracted (CSS 2.1 section 8.3.1) *) let collapse (a : float) (b : float) : float = if a >= 0. && b >= 0. then Float.max a b else if a <= 0. && b <= 0. then Float.min a b else a +. b (*****************************************************************************) (* Inline content *) (*****************************************************************************) (* a word's room above and below the baseline (half-leading), and its * baseline moved down by [shift] (sub; up for super) *) type word_style = { look : Looks.t; above : float; below : float; shift : float; shown : bool } let word_style (s : Computed.t) ~(link : string option) : word_style = let lh = line_height s and size = s.font_size in let shift = match s.vertical_align with Sub -> 0.2 *. size | Super -> -0.35 *. size | _ -> 0. in { look = look_of s ~link; above = (0.8 *. size) +. ((lh -. size) /. 2.); below = (0.2 *. size) +. ((lh -. size) /. 2.); shift; shown = s.visible } type side = On_left | On_right (* what a unit of a line may be besides text: a picture, a control, an * inline-block (laid out at its place's origin; its margins) *) type boxed = | Pic of Html_layout.picture | Ctl of Html_layout.control | Inline of { ib : box; ml : float; mt : float; mb : float } (* an inline element whose box is drawn (a background, a border): its * horizontal margins, which its box leaves out *) type decoration = { de : Dom.element; ds : Computed.t; dml : float; dmr : float } (* a spacer word's place at an inline element's edge: its margin, * border and padding, left or right *) type edge = Body | Lead | Trail type word = { text : string; ws : word_style; space_before : bool; glue : bool; (* no break before it: white-space: nowrap *) space : float; (* the width of the space before it *) width : float; boxed : boxed option; owner : Dom.element; decorations : decoration list; (* the inline elements it is in whose boxes are drawn *) edge : edge; } type item = | Word of word | Break | Anchor of string | Float of { fbox : box; fside : side; fmargin : float * float * float * float; mutable placed : bool } | Clear of side list (* a float in its place: its margin box *) type placed = { pside : side; left : float; right : float; ptop : float; pbottom : float } (* the room for a line from [top], [height] high, beside the floats *) let room (floats : placed list) ~(x : float) ~(width : float) ~(top : float) ~(height : float) : float * float = let l, r = List.fold_left (fun (l, r) p -> if p.ptop >= top +. height || p.pbottom <= top then (l, r) else match p.pside with On_left -> (Float.max l p.right, r) | On_right -> (l, Float.min r p.left)) (x, x +. width) floats in (l, Float.max 0. (r -. l)) (* below the floats of [sides] *) let cleared (floats : placed list) (sides : side list) (top : float) : float = List.fold_left (fun t p -> if List.mem p.pside sides then Float.max t p.pbottom else t) top floats (* a word's extent above and below the baseline *) let extent (ws : word_style) (boxed : boxed option) : float * float = match boxed with | Some (Pic { height; middle = false; _ }) -> (height, 0.) | Some (Pic { height; middle = true; _ }) -> (height /. 2., height /. 2.) | Some (Ctl { control_height = h; _ }) -> (0.75 *. h, 0.25 *. h) | Some (Inline { ib; mt; mb; _ }) -> let base = match last_baseline ib with Some b -> b -. ib.y | None -> ib.height in (mt +. base, ib.height -. base +. mb) | None -> (ws.above -. ws.shift, ws.below +. ws.shift) (* a line's words placed, the line as tall as they need (at least the * block's strut); its inline-blocks moved into place *) let set_line (strut : word_style) (align : Looks.align) ~(x : float) ~(width : float) ~(top : float) (words : item list) : Html_layout.line * box list * box list = let placed, line_width = List.fold_left (fun (placed, pen) item -> match item with | Word w -> let pen = if w.space_before then pen +. w.space else pen in (((w, pen) :: placed), pen +. w.width) | Break | Anchor _ | Float _ | Clear _ -> (placed, pen)) ([], 0.) words in let placed = List.rev placed in let shift = match align with Left -> 0. | Center -> Float.max 0. ((width -. line_width) /. 2.) | Right -> Float.max 0. (width -. line_width) in let up, down = List.fold_left (fun (u, d) ((w : word), _) -> let a, b = extent w.ws w.boxed in (Float.max u a, Float.max d b)) (strut.above, strut.below) placed in let baseline = top +. up in let fragments, boxes = List.fold_left (fun (frags, boxes) ((w : word), pen) -> let fx = x +. shift +. pen in (* hidden (visibility, opacity 0): its room, nothing drawn *) let picture = match w.boxed with Some (Pic p) when w.ws.shown -> Some p | _ -> None in let control = match w.boxed with Some (Ctl c) when w.ws.shown -> Some c | _ -> None in let text = if w.ws.shown then w.text else "" in let frag : Html_layout.fragment = { text; look = w.ws.look; x = fx; width = w.width; baseline = baseline +. w.ws.shift; picture; control; element = w.owner } in let boxes = match w.boxed with | Some (Inline { ib; ml; mt; _ }) -> let above, _ = extent w.ws w.boxed in moved (fx +. ml -. ib.x) (baseline -. above +. mt -. ib.y) ib :: boxes | _ -> boxes in (frag :: frags, boxes)) ([], []) placed in (* each decorated inline element's box on this line: from its first * word to its last, its margins out where its edges are here, as tall * as its font and its vertical padding and border (which the line's * height ignores) *) let decorations = List.fold_left (fun acc ((w : word), _) -> List.fold_left (fun acc d -> if List.exists (fun d' -> d'.de == d.de) acc then acc else acc @ [ d ]) acc w.decorations) [] placed in let backdrops = List.map (fun d -> let mine = List.filter (fun ((w : word), _) -> List.exists (fun d' -> d'.de == d.de) w.decorations) placed in let at_edge edge = List.exists (fun ((w : word), _) -> w.edge = edge && w.owner == d.de) mine in let left = List.fold_left (fun m (_, pen) -> Float.min m pen) infinity mine in let right = List.fold_left (fun m ((w : word), pen) -> Float.max m (pen +. w.width)) neg_infinity mine in let left = x +. shift +. left +. (if at_edge Lead then d.dml else 0.) in let right = x +. shift +. right -. (if at_edge Trail then d.dmr else 0.) in let pt, _, pb, _ = four (fun l -> Css_values.resolve l 0.) d.ds.padding and bt, br, bb, bl = d.ds.border_width in let size = d.ds.font_size in let y = baseline -. (0.8 *. size) -. pt -. bt in { element = Some d.de; style = d.ds; x = left; y; width = Float.max 0. (right -. left); height = size +. pt +. pb +. bt +. bb; border = (bt, (if at_edge Trail then br else 0.), bb, (if at_edge Lead then bl else 0.)); children = []; lines = []; backdrops = []; marker = None }) decorations in ( { top; height = up +. down; baseline; fragments = List.rev fragments; anchors = List.filter_map (fun i -> match i with Anchor a -> Some a | _ -> None) words }, List.rev boxes, backdrops ) (* the words stuck together: a unit starts at a word with a space * before it that may break there *) let units_of (words : item list) : item list list = let rec go current acc words = match words with | [] -> List.rev (if current = [] then acc else List.rev current :: acc) | (Word { space_before = true; glue = false; _ } as w) :: rest when current <> [] -> go [ w ] (List.rev current :: acc) rest | w :: rest -> go (w :: current) acc rest in go [] [] words let rec starting_line (unit : item list) : item list = match unit with | Word w :: rest -> Word { w with space_before = false } :: rest | ((Anchor _ | Float _) as i) :: rest -> i :: starting_line rest | _ -> unit let unit_size (unit : item list) : float * float = List.fold_left (fun (space, width) item -> match item with | Word w -> if width = 0. && space = 0. && w.space_before then (w.space, w.width) else (space, width +. w.width) | Break | Anchor _ | Float _ | Clear _ -> (space, width)) (0., 0.) unit (* a float put at [top] against its edge of the room there (below the * floats beside it if it does not fit); its box moved there *) let place (floats : placed list ref) ~(x : float) ~(width : float) ~(top : float) (placed_boxes : box list ref) (item : item) : unit = match item with | Float f when not f.placed -> f.placed <- true; let mt, mr, mb, ml = f.fmargin in let w = ml +. f.fbox.width +. mr and h = mt +. f.fbox.height +. mb in let rec find top = let l, rw = room !floats ~x ~width ~top ~height:(Float.max h 1.) in let below = List.fold_left (fun m p -> if p.pbottom > top && p.ptop <= top then Float.min m p.pbottom else m) infinity !floats in if rw >= w || below = infinity then (l, rw, top) else find below in let l, rw, top = find top in let fx = match f.fside with On_left -> l | On_right -> l +. rw -. w in floats := { pside = f.fside; left = fx; right = fx +. w; ptop = top; pbottom = top +. h } :: !floats; placed_boxes := moved (fx +. ml -. f.fbox.x) (top +. mt -. f.fbox.y) f.fbox :: !placed_boxes | _ -> () (* the items cut at the breaks, each run set on lines one at a time, * each as wide as the floats beside it leave (greedy); a float met at * a line's start put at its top, one inside it below it. The lines, * the boxes set in them (inline-blocks, floats), the bottom *) let set_lines (floats : placed list ref) (strut : word_style) (align : Looks.align) ~(pre : bool) ~(x : float) ~(width : float) ~(top : float) (items : item list) : Html_layout.line list * box list * box list * float = let boxes = ref [] and backdrops = ref [] in let rec groups current acc items = match items with | [] -> List.rev (List.rev current :: acc) | Break :: rest -> groups [] (List.rev current :: acc) rest | w :: rest -> groups (w :: current) acc rest in let groups = groups [] [] items in let n = List.length groups in let set top acc words = let lx, lw = room !floats ~x ~width ~top ~height:1. in let line, inline_boxes, drops = set_line strut align ~x:lx ~width:lw ~top words in boxes := List.rev_append inline_boxes !boxes; backdrops := List.rev_append drops !backdrops; (top +. line.height, line :: acc) in let bottom, lines = List.fold_left (fun (top, acc) (i, group) -> let top = List.fold_left (fun top item -> match item with Clear sides -> cleared !floats sides top | _ -> top) top group in let group = List.filter (fun item -> match item with Clear _ -> false | _ -> true) group in let only_floats = List.for_all (fun item -> match item with Float _ | Anchor _ -> true | _ -> false) group in if group = [] && i = n - 1 then (top, acc) else if only_floats && group <> [] then ( List.iter (place floats ~x ~width ~top boxes) group; (* anchors alone: a line of no height where they are *) if List.exists (fun item -> match item with Anchor _ -> true | _ -> false) group then let line, _, _ = set_line { strut with above = 0.; below = 0. } align ~x ~width ~top group in (top, line :: acc) else (top, acc)) else if pre || group = [] then set top acc group else let units = Array.of_list (units_of group) in let sizes = Array.map unit_size units in let count = Array.length units in let strut_height = strut.above +. strut.below in let rec lines top start acc = if start >= count then (top, acc) else let rec leading items = match items with (Float _ as f) :: rest -> f :: leading rest | Anchor _ :: rest -> leading rest | _ -> [] in List.iter (place floats ~x ~width ~top boxes) (leading units.(start)); let lx, lw = room !floats ~x ~width ~top ~height:strut_height in if snd sizes.(start) > lw && lw < width then (* no room beside the floats: below the first to end *) let below = List.fold_left (fun m p -> if p.ptop < top +. strut_height && p.pbottom > top then Float.min m p.pbottom else m) infinity !floats in if below = infinity then lines_from top start acc lx lw else lines below start acc else lines_from top start acc lx lw and lines_from top start acc lx lw = let rec extend j w = (* a hundredth of a pixel's slack: a box shrunk to fit its * line is exactly as wide as it, give or take rounding *) if j + 1 < count && w +. fst sizes.(j + 1) +. snd sizes.(j + 1) <= lw +. 0.01 then extend (j + 1) (w +. fst sizes.(j + 1) +. snd sizes.(j + 1)) else j in let j = extend start (snd sizes.(start)) in let words = List.concat (List.init (j - start + 1) (fun k -> if k = 0 then starting_line units.(start) else units.(start + k))) in let line, inline_boxes, drops = set_line strut align ~x:lx ~width:lw ~top words in boxes := List.rev_append inline_boxes !boxes; backdrops := List.rev_append drops !backdrops; let bottom = top +. line.height in List.iter (place floats ~x ~width ~top:bottom boxes) words; lines bottom (j + 1) (line :: acc) in lines top 0 acc) (top, []) (List.mapi (fun i g -> (i, g)) groups) in (List.rev lines, List.rev !boxes, List.rev !backdrops, bottom) (*****************************************************************************) (* Blocks *) (*****************************************************************************) type env = { metrics : Html_layout.metrics; picture_size : string -> (float * float) option; style : Dom.element -> Computed.t; viewport : float * float; positioned : box list ref; (* absolute and fixed boxes, drawn last *) (* shrink-to-fit's measure: lines on the left (a centred line at an * unlimited width would be far to the right) *) measuring : bool; (* inside a <center> or an align=center: blocks centred (HTML's * "align descendants", -webkit-center) *) centring : bool; containing : float * float * float; (* the nearest positioned ancestor's padding box: x, y, width *) (* shrink-to-fit's measures, this layout's: an element's content at an * unlimited width and at 0, by the element (==), its display, the width *) measured : (int, Dom.element * Computed.display * float * float) Hashtbl.t; } (* a block being laid out: where its content goes, what is stacked * (its bottom [cursor], the margin [pending] below it), the inline * content not yet set *) type ctx = { env : env; floats : placed list ref; (* its formatting context's *) block : Computed.t; x : float; (* the content box *) width : float; mutable cursor : float; mutable pending : float; mutable absorbed : bool; (* the next child's top margin is already the block's (collapsed through) *) mutable children : box list; (* the last first *) mutable items : item list; (* the last first *) mutable space : bool; mutable owner : Dom.element; mutable link : string option; mutable counter : int; (* its list items so far *) mutable decorations : decoration list; (* the inline elements the words now read are in, whose boxes are drawn *) } let is_space (c : char) : bool = c = ' ' || c = '\n' || c = '\t' || c = '\r' || c = '\012' let add_word ?boxed ?owner ?(edge = Body) (ctx : ctx) (ws : word_style) ~(glue : bool) (text : string) (width : float) : unit = let rec after_word items = match items with Word _ :: _ -> true | (Anchor _ | Float _) :: rest -> after_word rest | _ -> false in let space_before = ctx.space && after_word ctx.items in let space = if space_before then ctx.env.metrics ws.look " " else 0. in let owner = Option.value owner ~default:ctx.owner in ctx.items <- Word { text; ws; space_before; glue = glue && space_before; space; width; boxed; owner; decorations = ctx.decorations; edge } :: ctx.items; ctx.space <- false (* U+00A0 (UTF-8's two bytes C2 A0) as a space *) let nbsp_to_space (text : string) : string = let b = Buffer.create (String.length text) in let n = String.length text in let i = ref 0 in while !i < n do if !i + 1 < n && text.[!i] = '\xc2' && text.[!i + 1] = '\xa0' then (Buffer.add_char b ' '; i := !i + 2) else (Buffer.add_char b text.[!i]; incr i) done; Buffer.contents b let add_text (ctx : ctx) (s : Computed.t) (ws : word_style) (text : string) : unit = let text = if s.uppercase then String.uppercase_ascii text else text in (* a no-break space (U+00A0, ) joins two words, and is a space *) let word text = let text = if String.contains text '\xa0' then nbsp_to_space text else text in add_word ctx ws ~glue:(s.white_space = Nowrap) text (ctx.env.metrics ws.look text) in match s.white_space with | Pre | Pre_wrap -> List.iteri (fun i part -> if i > 0 then ctx.items <- Break :: ctx.items; if part <> "" then ( ctx.space <- false; word part)) (String.split_on_char '\n' text) | Normal | Nowrap | Pre_line -> let b = Buffer.create 16 in let end_word () = if Buffer.length b > 0 then ( word (Buffer.contents b); Buffer.clear b) in String.iter (fun c -> if c = '\n' && s.white_space = Pre_line then ( end_word (); ctx.items <- Break :: ctx.items; ctx.space <- false) else if is_space c then ( end_word (); ctx.space <- true) else Buffer.add_char b c) text; end_word () (* the block's inline content so far set on lines, in an anonymous box *) let flush_inline (ctx : ctx) : unit = let items = List.rev ctx.items in ctx.items <- []; ctx.space <- false; if items <> [] then ( let has_content = List.exists (fun i -> match i with Word _ | Break | Clear _ -> true | _ -> false) items in (* a float among blocks is placed below the margin pending *) let top = ctx.cursor +. if has_content then ctx.pending else 0. in let floats_top = ctx.cursor +. ctx.pending in let strut = word_style ctx.block ~link:None in let align = if ctx.env.measuring then Looks.Left else (look_of ctx.block ~link:None).align in let pre = match ctx.block.white_space with Pre | Pre_wrap -> true | _ -> false in let lines, boxes, backdrops, bottom = set_lines ctx.floats strut align ~pre ~x:ctx.x ~width:ctx.width ~top:(if has_content then top else floats_top) items in ctx.children <- { element = None; style = ctx.block; x = ctx.x; y = top; width = ctx.width; height = (if has_content then bottom -. top else 0.); border = (0., 0., 0., 0.); children = boxes; lines; backdrops; marker = None } :: ctx.children; if has_content then ( ctx.cursor <- bottom; ctx.pending <- 0.; ctx.absorbed <- false)) (* the first thing in an element's flow, if it is a block: whose top * margin collapses with the element's *) let rec first_block (env : env) (e : Dom.element) : (Dom.element * Computed.t) option = let rec go (nodes : Dom.node list) = match nodes with | [] -> None | Text t :: rest -> if String.for_all is_space t then go rest else None | Element c :: rest -> ( let s = env.style c in match s.display with | Display_none -> go rest | _ when s.float <> Side_none || s.position = Absolute || s.position = Fixed -> go rest | Contents -> ( match first_block env c with Some _ as found -> found | None -> go rest) | Inline | Inline_block | Inline_flex -> None | _ -> Some (c, s)) in go e.children let top_padding_border (s : Computed.t) : float = let t, _, _, _ = s.padding and bt, _, _, _ = s.border_width in Css_values.resolve t 0. +. bt (* the margin above an element: its own collapsed with its first * child's, through no border and no padding *) let rec top_margin (env : env) (e : Dom.element) (s : Computed.t) ~(cb_width : float) : float = let mt, _, _, _ = s.margin in let own = Option.value (size mt cb_width) ~default:0. in if own_context s || top_padding_border s > 0. then own else match first_block env e with Some (c, cs) -> collapse own (top_margin env c cs ~cb_width) | None -> own (* the horizontal equation (CSS 2.1 section 10.3.3): margin-left, * content width, margin-right; [content] a width already decided * (shrink-to-fit, a table's cell) *) let horizontal (s : Computed.t) ~(cb_width : float) ?content () : float * float * float = let _, mr, _, ml = s.margin in let _, pr, _, pl = four (fun l -> Css_values.resolve l cb_width) s.padding in let _, br, _, bl = s.border_width in let chrome = pl +. pr +. bl +. br in let clamp w = let w = match size s.max_width cb_width with Some m -> Float.min w (if s.border_box then m -. chrome else m) | None -> w in Float.max w ((if s.border_box then -.chrome else 0.) +. Css_values.resolve s.min_width cb_width) in let given = match content with Some w -> Some w | None -> Option.map (fun w -> if s.border_box then Float.max 0. (w -. chrome) else w) (size s.width cb_width) in (* a width decided: the margins auto share the rest *) let solved w = let rest = cb_width -. w -. chrome in match (size ml cb_width, size mr cb_width) with | None, None -> (Float.max 0. (rest /. 2.), w, Float.max 0. (rest /. 2.)) | None, Some mr -> (rest -. mr, w, mr) | Some ml, None -> (ml, w, rest -. ml) | Some ml, Some _ -> (ml, w, rest -. ml) in match given with | None -> let ml' = Option.value (size ml cb_width) ~default:0. and mr' = Option.value (size mr cb_width) ~default:0. in let natural = Float.max 0. (cb_width -. ml' -. mr' -. chrome) in let w = clamp natural in (* max-width met: solved again with it as the width (10.4), so * that margins auto centre a column *) if w <> natural then solved w else (ml', natural, mr') | Some w -> solved (clamp w) let rec layout_block (env : env) (floats : placed list ref) (e : Dom.element) (s : Computed.t) ~(cb_x : float) ~(cb_width : float) ~(y : float) ~(marker : Html_layout.marker option) ?content () : box * float = (* measuring an intrinsic size: a percentage width is auto (it would * be of the size being measured: CSS Sizing, "cyclic percentages") *) let s = match s.width with Len l when env.measuring && l.pct <> 0. -> { s with width = Auto } | _ -> s in let ml, cw, _ = horizontal s ~cb_width ?content () in let pt, pr, pb, pl = four (fun l -> Css_values.resolve l cb_width) s.padding in let bt, br, bb, bl = s.border_width in let own = own_context s in let floats = if own then ref [] else floats in let x = cb_x +. ml in let env = match s.position with Static -> env | _ -> { env with containing = (x +. bl, y +. bt, pl +. cw +. pr) } in let centring = e.name = "center" || (e.name <> "table" && match Option.map String.lowercase_ascii (Dom.attribute ~extensions:true "align" e) with Some ("center" | "middle") -> true | _ -> false) || (env.centring && s.text_align = Align_center) in let env = if centring = env.centring then env else { env with centring } in let content_top = y +. bt +. pt in let ctx = { env; floats; block = s; x = x +. bl +. pl; width = cw; cursor = content_top; pending = 0.; absorbed = (not own) && pt +. bt = 0.; children = []; items = []; space = false; owner = e; link = (if e.name = "a" then Dom.attribute "href" e else None); counter = 0; decorations = [] } in (match s.display with | Flex | Inline_flex -> flex_children ctx e s | _ -> List.iter (walk ctx s (word_style s ~link:ctx.link)) e.children; flush_inline ctx); (* the last child's bottom margin goes through, if nothing holds it *) let through = (not own) && pb +. bb = 0. && s.height = Auto in let content_bottom = if through then ctx.cursor else ctx.cursor +. ctx.pending in let content_bottom = if own then List.fold_left (fun m p -> Float.max m p.pbottom) content_bottom !floats else content_bottom in let auto_height = content_bottom -. content_top in let ch = match s.height with | Len l when l.pct = 0. -> if s.border_box then Float.max 0. (l.px -. pt -. pb -. bt -. bb) else l.px | _ -> auto_height in (* min-height and max-height, of the border box with box-sizing: * border-box (Google's buttons) *) let vchrome = if s.border_box then pt +. pb +. bt +. bb else 0. in let ch = match s.max_height with Len l when l.pct = 0. -> Float.min ch (l.px -. vchrome) | _ -> ch in let ch = Float.max ch (Css_values.resolve s.min_height 0. -. vchrome) in ( { element = Some e; style = s; x; y; width = bl +. pl +. cw +. pr +. br; height = bt +. pt +. ch +. pb +. bb; border = (bt, br, bb, bl); children = List.rev ctx.children; lines = []; backdrops = []; marker }, if through then ctx.pending else 0. ) (* a flex container's items laid out (Flex_layout's arithmetic): each * measured, the lines cut, the room shared, the items placed along and * across *) and flex_children (ctx : ctx) (e : Dom.element) (s : Computed.t) : unit = let env = ctx.env in let row = match s.flex_direction with Row | Row_reverse -> true | Column | Column_reverse -> false in let no_margins = (Computed.Len Css_values.zero, Computed.Len Css_values.zero, Computed.Len Css_values.zero, Computed.Len Css_values.zero) in (* an item is a block (an inline one "blockified"); a run of text an * anonymous item in the container's style *) let blockify (cs : Computed.t) : Computed.t = { cs with display = (match cs.display with Inline | Inline_block | List_item -> Block | Inline_flex -> Flex | d -> d); float = Side_none } in let items = List.concat_map (fun (n : Dom.node) -> match n with | Text t when String.for_all is_space t -> [] | Text t -> [ ( Dom.element "span" [ Text t ], { s with display = Block; margin = no_margins; padding = (Css_values.zero, Css_values.zero, Css_values.zero, Css_values.zero); border_width = (0., 0., 0., 0.); width = Auto; height = Auto; min_width = Css_values.zero; max_width = Auto; flex_grow = 0.; flex_shrink = 1.; flex_basis = Auto; background = Css_values.transparent; position = Static; overflow_hidden = false; align_self = None } ) ] | Element c -> ( let cs = env.style c in match cs.display with | Display_none -> [] | _ when cs.position = Absolute || cs.position = Fixed -> add_absolute ctx c cs; [] | _ -> [ (c, blockify cs) ])) e.children in let items = match s.flex_direction with Row_reverse | Column_reverse -> List.rev items | _ -> items in let items = Array.of_list items in let measuring = env.measuring in let width = ctx.width in let gap_main = Css_values.resolve (if row then s.column_gap else s.row_gap) width in let gap_cross = Css_values.resolve (if row then s.row_gap else s.column_gap) width in let justify = if measuring then Computed.Start else s.justify_content in (* an item's chrome across the main axis: margins (auto ones 0, and * said), borders and paddings *) let chrome (cs : Computed.t) = let mt, mr, mb, ml = cs.margin in let pt, pr, pb, pl = four (fun l -> Css_values.resolve l width) cs.padding and bt, br, bb, bl = cs.border_width in let m x = Option.value (size x width) ~default:0. in if row then ((m ml, m mr), pl +. pr +. bl +. br, (ml = Auto, mr = Auto)) else ((m mt, m mb), pt +. pb +. bt +. bb, (mt = Auto, mb = Auto)) in let align_of (cs : Computed.t) = let a = match cs.align_self with Some a -> a | None -> s.align_items in (* stretched only if its cross size is auto *) if a = Stretch && (if row then cs.height <> Auto else cs.width <> Auto) then Computed.Start else a in let content_top = ctx.cursor in let boxes = if row then ( (* the base sizes: flex-basis, width, or the content's *) let bases = Array.map (fun (c, (cs : Computed.t)) -> let (ml, mr), ch, _ = chrome cs in let given w = if cs.border_box then Float.max 0. (w -. ch) else w in let base = match (cs.flex_basis, size cs.width width) with | Len l, _ -> given (Css_values.resolve l width) | Auto, Some w -> given w | Auto, None -> shrink env c cs ~available:infinity in ml +. base +. ch +. mr) items in let total = Array.fold_left ( +. ) 0. bases +. (gap_main *. float_of_int (max 0 (Array.length items - 1))) in let fitem i = let _, (cs : Computed.t) = items.(i) in let (ml, mr), ch, (ab, aa) = chrome cs in let outer w = ml +. w +. ch +. mr in (* an item does not shrink below its content (min-width: auto), * measured only when it has to shrink *) let min_size = if cs.min_width.px > 0. || cs.min_width.pct > 0. then outer (Css_values.resolve cs.min_width width) else if total > width && (not cs.overflow_hidden) && not measuring then outer (Float.min (shrink env (fst items.(i)) cs ~available:0.) (bases.(i) -. ml -. ch -. mr)) else 0. in (* measuring: no growing, and no shrinking either -- a row that * does not wrap is as wide as its items, even at its narrowest *) { Flex_layout.base = bases.(i); grow = (if measuring then 0. else cs.flex_grow); shrink = (if measuring then 0. else cs.flex_shrink); min_size; max_size = (match size cs.max_width width with Some m -> outer m | None -> infinity); auto_before = ab && not measuring; auto_after = aa && not measuring } in let fitems = Array.init (Array.length items) fitem in let top = ref content_top and boxes = ref [] in List.iter (fun (first, last) -> let line = Array.sub fitems first (last - first + 1) in let sizes = Flex_layout.resolve ~room:width ~gap:gap_main line in let starts = Flex_layout.place ~justify ~room:width ~gap:gap_main line sizes in let laid = Array.mapi (fun k main -> let c, (cs : Computed.t) = items.(first + k) in let (ml, mr), ch, _ = chrome cs in let mt, _, mb, _ = cs.margin in let mt = Option.value (size mt width) ~default:0. and mb = Option.value (size mb width) ~default:0. in let cs_in = { cs with margin = no_margins } in let b, _ = layout_block env (ref []) c cs_in ~cb_x:(ctx.x +. starts.(k) +. ml) ~cb_width:(main -. ml -. mr) ~y:(!top +. mt) ~marker:None ~content:(Float.max 0. (main -. ml -. mr -. ch)) () in (b, cs, mt, mb)) sizes in let cross = Array.fold_left (fun m (b, _, mt, mb) -> Float.max m (mt +. b.height +. mb)) 0. laid in (* a single line is as tall as its container, if its height is * given (section 9.4) *) let cross = match s.height with | Len l when l.pct = 0. && (not s.flex_wrap) && not measuring -> let pt, _, pb, _ = four (fun l -> Css_values.resolve l width) s.padding and bt, _, bb, _ = s.border_width in Float.max cross (if s.border_box then l.px -. pt -. pb -. bt -. bb else l.px) | _ -> cross in Array.iter (fun ((b : box), cs, mt, mb) -> let offset, outer = Flex_layout.cross ~align:(align_of cs) ~line:cross ~size:(mt +. b.height +. mb) in boxes := relative ctx cs (moved 0. offset { b with height = outer -. mt -. mb }) :: !boxes) laid; (* measuring: the line's end, its last item's right margin * included, marked by an empty box -- a box's edge is inside * its margin, and the measure reads edges *) (if measuring then let last = Array.length sizes - 1 in let edge = ctx.x +. starts.(last) +. sizes.(last) in boxes := { element = None; style = s; x = edge; y = !top; width = 0.; height = 0.; border = (0., 0., 0., 0.); children = []; lines = []; backdrops = []; marker = None } :: !boxes); top := !top +. cross +. gap_cross) (Flex_layout.lines ~wrap:s.flex_wrap ~room:width ~gap:gap_main fitems); ctx.cursor <- (if !boxes = [] then content_top else !top -. gap_cross); List.rev !boxes) else ( (* a column: each item laid out at its width first (stretched, or * shrunk to fit), its height its base *) let laid = Array.map (fun (c, (cs : Computed.t)) -> let _, _, _, ml = cs.margin and _, mr, _, _ = cs.margin in let ml' = Option.value (size ml width) ~default:0. and mr' = Option.value (size mr width) ~default:0. in let _, pr, _, pl = four (fun l -> Css_values.resolve l width) cs.padding and _, br, _, bl = cs.border_width in let hchrome = pl +. pr +. bl +. br in let content = match (align_of cs, size cs.width width) with | _, Some _ -> None | Stretch, None -> Some (Float.max 0. (width -. ml' -. mr' -. hchrome)) | _, None -> Some (shrink env c cs ~available:(width -. ml' -. mr' -. hchrome)) in let b, _ = layout_block env (ref []) c { cs with margin = no_margins } ~cb_x:0. ~cb_width:width ~y:0. ~marker:None ?content () in let x_offset = match align_of cs with | End -> width -. b.width -. mr' | Center -> (width -. b.width) /. 2. | _ -> ml' in (c, cs, b, x_offset)) items in let fitems = Array.map (fun (_, (cs : Computed.t), (b : box), _) -> let (mt, mb), _, (ab, aa) = chrome cs in let base = match (cs.flex_basis, size cs.height 0.) with Len l, _ when l.pct = 0. -> l.px | _, Some h -> h | _ -> b.height in { Flex_layout.base = mt +. base +. mb; grow = cs.flex_grow; shrink = cs.flex_shrink; min_size = (if cs.overflow_hidden then 0. else mt +. b.height +. mb); max_size = infinity; auto_before = ab; auto_after = aa }) laid in (* the room along: the container's height if it has one, else the * items' own *) let room = match s.height with | Len l when l.pct = 0. && not measuring -> let pt, _, pb, _ = four (fun l -> Css_values.resolve l width) s.padding and bt, _, bb, _ = s.border_width in if s.border_box then l.px -. pt -. pb -. bt -. bb else l.px | _ -> Array.fold_left (fun t (it : Flex_layout.item) -> t +. it.base) 0. fitems +. (gap_main *. float_of_int (max 0 (Array.length fitems - 1))) in let sizes = Flex_layout.resolve ~room ~gap:gap_main fitems in let starts = Flex_layout.place ~justify ~room ~gap:gap_main fitems sizes in ctx.cursor <- content_top +. (if Array.length sizes = 0 then 0. else room); Array.to_list (Array.mapi (fun k (_, cs, (b : box), x_offset) -> let (mt, mb), _, _ = chrome cs in relative ctx cs (moved (ctx.x +. x_offset -. b.x) (content_top +. starts.(k) +. mt -. b.y) { b with height = sizes.(k) -. mt -. mb })) laid)) in ctx.children <- List.rev boxes; ctx.pending <- 0. (* shrink-to-fit (CSS 2.1 section 10.3.5): the content's widest line, * at most [available], at least its widest word *) and shrink (env : env) (e : Dom.element) (s : Computed.t) ~(available : float) : float = let env = { env with positioned = ref []; measuring = true } in let s' = { s with width = Auto; min_width = Css_values.zero; max_width = Auto; margin = (Len Css_values.zero, Len Css_values.zero, Len Css_values.zero, Len Css_values.zero) } in let _, _, _, pl = four (fun l -> Css_values.resolve l 0.) s.padding and _, _, _, bl = s.border_width in (* before the memo (a Wikipedia article: 89,903 blocks laid out, 88,200 * of them measuring, each measure measuring its subtree again, at each * level; notes_opti_ocaml.md section 11): * let measure w = * let b, _ = layout_block env (ref []) e s' ... ~content:w () in * Float.max 0. (inner_right b -. b.x -. pl -. bl) *) let measure w = let key = Hashtbl.hash (e, w) in match List.find_opt (fun (e', d, w', _) -> e' == e && d = s.display && w' = w) (Hashtbl.find_all env.measured key) with | Some (_, _, _, r) -> r | None -> let b, _ = layout_block env (ref []) e s' ~cb_x:0. ~cb_width:1e6 ~y:0. ~marker:None ~content:w () in let r = Float.max 0. (inner_right b -. b.x -. pl -. bl) in Hashtbl.add env.measured key (e, s.display, w, r); r in let preferred = measure 1e6 in if preferred <= available then preferred else Float.max (measure 0.) available (* a block placed in the flow, below what is stacked *) and add_block (ctx : ctx) (e : Dom.element) (s : Computed.t) : unit = flush_inline ctx; let env = ctx.env in let mt = top_margin env e s ~cb_width:ctx.width in let _, _, mb, _ = s.margin in let mb = Option.value (size mb ctx.width) ~default:0. in let margin = if ctx.absorbed then 0. else collapse ctx.pending mt in let y = ctx.cursor +. margin in let y = match s.clear with | Side_none -> y | Side_left -> cleared !(ctx.floats) [ On_left ] y | Side_right -> cleared !(ctx.floats) [ On_right ] y | Side_both -> cleared !(ctx.floats) [ On_left; On_right ] y in let marker = if s.display <> List_item then None else ( ctx.counter <- ctx.counter + 1; match s.list_style with | "none" -> None | "disc" | "circle" | "square" -> Some Html_layout.Bullet | _ -> Some (Number ctx.counter)) in (* a formatting context of its own beside floats: narrowed *) let cb_x, cb_width = if own_context s then room !(ctx.floats) ~x:ctx.x ~width:ctx.width ~top:y ~height:1. else (ctx.x, ctx.width) in let box, through = match s.display with | Table -> (layout_table env e s ~cb_x ~cb_width ~y, 0.) | _ -> layout_block env ctx.floats e s ~cb_x ~cb_width ~y ~marker () in (* in a <center>: a block narrower than the line, its margins not * auto, centred *) let box = let _, mr, _, ml = s.margin in if ctx.env.centring && (not ctx.env.measuring) && ml <> Auto && mr <> Auto && box.width < cb_width then moved (cb_x +. ((cb_width -. box.width) /. 2.) -. box.x) 0. box else box in let box = relative ctx s box in let empty = box.height = 0. && box.children = [] in ctx.children <- box :: ctx.children; if empty && not ctx.absorbed then ctx.pending <- collapse (collapse ctx.pending mt) (collapse mb through) else ( ctx.cursor <- y +. box.height; ctx.pending <- collapse mb through; ctx.absorbed <- false) (* position: relative, the box moved by its offsets *) and relative (ctx : ctx) (s : Computed.t) (b : box) : box = if s.position <> Relative then b else let dx = match (size s.left ctx.width, size s.right ctx.width) with Some l, _ -> l | None, Some r -> -.r | None, None -> 0. in let dy = match (size s.top 0., size s.bottom 0.) with Some t, _ -> t | None, Some b -> -.b | None, None -> 0. in moved dx dy b (* position: absolute or fixed, out of the flow *) and add_absolute (ctx : ctx) (e : Dom.element) (s : Computed.t) : unit = let env = ctx.env in let cx, cy, cw = match s.position with Fixed -> (0., 0., fst env.viewport) | _ -> env.containing in let static_x = ctx.x and static_y = ctx.cursor +. ctx.pending in let left = size s.left cw and right = size s.right cw in let _, _, _, ml = s.margin in let ml = Option.value (size ml cw) ~default:0. in let content = match (s.width, left, right) with | Auto, Some l, Some r -> let _, pr, _, pl = four (fun l -> Css_values.resolve l cw) s.padding and _, br, _, bl = s.border_width in Some (Float.max 0. (cw -. l -. r -. pl -. pr -. bl -. br)) | Auto, _, _ -> Some (shrink env e s ~available:cw) | _ -> None in let s_in = { s with margin = (let t, r, b, _ = s.margin in (t, r, b, Len Css_values.zero)) } in let box, _ = layout_block env (ref []) e s_in ~cb_x:0. ~cb_width:cw ~y:0. ~marker:None ?content () in let x = match (left, right) with Some l, _ -> cx +. l +. ml | None, Some r -> cx +. cw -. r -. box.width | None, None -> static_x +. ml in let y = match size s.top 0. with Some t -> cy +. t | None -> static_y in env.positioned := moved (x -. box.x) (y -. box.y) box :: !(env.positioned) (* a float, laid out shrink-to-fit where it is, placed with the lines *) and float_item (ctx : ctx) (e : Dom.element) (s : Computed.t) : item = let env = ctx.env in let margin = four (fun m -> Option.value (size m ctx.width) ~default:0.) s.margin in let box = if e.name = "img" then image_box ctx e s else let content = match s.width with Auto -> Some (shrink env e s ~available:ctx.width) | _ -> None in let s_in = { s with margin = (Len Css_values.zero, Len Css_values.zero, Len Css_values.zero, Len Css_values.zero) } in fst (layout_block env (ref []) e s_in ~cb_x:0. ~cb_width:ctx.width ~y:0. ~marker:None ?content ()) in (* measuring: every float on the left -- only its width counts, and a * right one would be at the far end of an unlimited line *) let fside = if s.float = Side_right && not env.measuring then On_right else On_left in Float { fbox = box; fside; fmargin = margin; placed = false } (* a picture's size: its style's width and height, one of them and its * ratio, or its own once it has come; max-width applied *) and picture_size (ctx : ctx) (e : Dom.element) (s : Computed.t) : (float * float) option = let src = Option.value (picture_src e) ~default:"" in let w = size s.width ctx.width and h = size s.height 0. in let own = ctx.env.picture_size src in let wh = match (w, h, own) with | Some w, Some h, _ -> Some (w, h) | Some w, None, Some (iw, ih) when iw > 0. -> Some (w, w *. ih /. iw) | None, Some h, Some (iw, ih) when ih > 0. -> Some (h *. iw /. ih, h) | None, None, Some wh -> Some wh | _ -> None in match (wh, size s.max_width ctx.width) with | Some (w, h), Some m when w > m && w > 0. -> Some (m, h *. m /. w) | _ -> wh and svg_size (ctx : ctx) (e : Dom.element) (s : Computed.t) : float * float = let view_box = match Option.map (fun v -> List.filter_map float_of_string_opt (String.split_on_char ' ' (String.map (fun c -> if c = ',' then ' ' else c) v))) (Dom.attribute "viewbox" e) with | Some [ _; _; w; h ] when w > 0. && h > 0. -> Some (w, h) | _ -> None in match (size s.width ctx.width, size s.height 0., view_box) with | Some w, Some h, _ -> (w, h) | Some w, None, Some (vw, vh) -> (w, w *. vh /. vw) | None, Some h, Some (vw, vh) -> (h *. vw /. vh, h) | None, None, Some wh -> wh | Some w, None, None -> (w, 150.) | None, Some h, None -> (300., h) | None, None, None -> (300., 150.) (* a floated picture as a box of one line *) and image_box (ctx : ctx) (e : Dom.element) (s : Computed.t) : box = let w, h = Option.value (picture_size ctx e s) ~default:(0., 0.) in let src = Option.value (picture_src e) ~default:"" in let ws = word_style s ~link:ctx.link in let frag : Html_layout.fragment = { text = ""; look = ws.look; x = 0.; width = w; baseline = h; picture = Some { src; height = h; middle = false }; control = None; element = e } in { element = Some e; style = s; x = 0.; y = 0.; width = w; height = h; border = (0., 0., 0., 0.); children = []; lines = [ { top = 0.; height = h; baseline = h; fragments = [ frag ]; anchors = [] } ]; backdrops = []; marker = None } (* a node inside a block: inline content gathered, a block placed *) and walk (ctx : ctx) (parent : Computed.t) (ws : word_style) (node : Dom.node) : unit = match node with | Text t -> add_text ctx parent ws t | Element e -> ( let s = ctx.env.style e in match s.display with | Display_none -> () (* a form's control is one, positioned or not (its options are not * text of the page: Wikipedia's absolute <select>) *) | _ when (e.name = "select" || e.name = "textarea") && (s.position = Absolute || s.position = Fixed || s.float <> Side_none) -> ( let look = look_of s ~link:ctx.link in match Html_layout.control_size ctx.env.metrics look e with | Some (w, h) when s.visible -> add_word ctx (word_style s ~link:ctx.link) ~glue:false "" w ~owner:e ~boxed:(Ctl { element = e; control_height = h }) | _ -> ()) | _ when s.position = Absolute || s.position = Fixed -> add_absolute ctx e s | _ when s.float <> Side_none -> ctx.items <- float_item ctx e s :: ctx.items | Contents -> List.iter (walk ctx s (word_style s ~link:ctx.link)) e.children | _ when e.name = "video" || e.name = "audio" -> (* a player's box: a video's size its style's (its width= and * height=, one of them at 4:3), else 320 by 240; an audio's * controls 300 by 32 (the browser draws what plays in it) *) let w, h = if e.name = "audio" then (Option.value (size s.width ctx.width) ~default:300., 32.) else match (size s.width ctx.width, size s.height 0.) with | Some w, Some h -> (w, h) | Some w, None -> (w, w *. 3. /. 4.) | None, Some h -> (h *. 4. /. 3., h) | None, None -> (320., 240.) in add_word ctx (word_style s ~link:ctx.link) ~glue:false "" w ~owner:e ~boxed:(Pic { src = ""; height = h; middle = s.vertical_align = Middle }) | _ when e.name = "svg" -> (* a picture drawn from its own tree (Browser_boxes): its * size its style's (its width= and height=), else its * viewBox's, else CSS's 300 by 150 *) let w, h = svg_size ctx e s in add_word ctx (word_style s ~link:ctx.link) ~glue:false "" w ~owner:e ~boxed:(Pic { src = ""; height = h; middle = s.vertical_align = Middle }) | _ when e.name = "img" -> ( match picture_size ctx e s with | Some (w, h) -> let src = Option.value (picture_src e) ~default:"" in add_word ctx (word_style s ~link:ctx.link) ~glue:false "" w ~owner:e ~boxed:(Pic { src; height = h; middle = s.vertical_align = Middle }) | None -> ( match Dom.attribute "alt" e with | Some alt when String.trim alt <> "" -> add_text ctx s (word_style s ~link:ctx.link) alt | _ -> ())) | _ when (e.name = "input" || e.name = "select" || e.name = "textarea") -> ( let look = look_of s ~link:ctx.link in match Html_layout.control_size ctx.env.metrics look e with | Some (w, h) when s.visible -> add_word ctx (word_style s ~link:ctx.link) ~glue:false "" w ~owner:e ~boxed:(Ctl { element = e; control_height = h }) (* hidden (opacity: 0, a styled checkbox's): its room only *) | Some (w, _) -> add_word ctx (word_style s ~link:ctx.link) ~glue:false "" w ~owner:e | None -> ()) | Inline -> ( (match (if e.name = "a" then Dom.attribute "name" e else None) with Some n -> ctx.items <- Anchor n :: ctx.items | None -> ()); (match Dom.attribute "id" e with Some id -> ctx.items <- Anchor id :: ctx.items | None -> ()); match e.name with | "br" -> ctx.items <- Break :: ctx.items; (match s.clear with | Side_left -> ctx.items <- Clear [ On_left ] :: ctx.items | Side_right -> ctx.items <- Clear [ On_right ] :: ctx.items | Side_both -> ctx.items <- Clear [ On_left; On_right ] :: ctx.items | Side_none -> ()); ctx.space <- false | _ -> let outer_owner = ctx.owner and outer_link = ctx.link in ctx.owner <- e; (if e.name = "a" then match Dom.attribute "href" e with Some h -> ctx.link <- Some h | None -> ()); let ws = word_style s ~link:ctx.link in (* its margin, border and padding: spacers at its two * ends, joined to its first and last words; its box drawn * under its words if it has a background or a border *) let _, pr, _, pl = four (fun l -> Css_values.resolve l ctx.width) s.padding and bt, br, bb, bl = s.border_width in let _, mr, _, ml = four (fun m -> Option.value (size m ctx.width) ~default:0.) s.margin in let outer_decorations = ctx.decorations in if s.background.a > 0. || bt +. br +. bb +. bl > 0. then ctx.decorations <- ctx.decorations @ [ { de = e; ds = s; dml = ml; dmr = mr } ]; if ml +. bl +. pl > 0. then add_word ctx ws ~edge:Lead ~glue:false "" (ml +. bl +. pl); List.iter (walk ctx s ws) e.children; if mr +. br +. pr > 0. then ( let space = ctx.space in ctx.space <- false; add_word ctx ws ~edge:Trail ~glue:false "" (mr +. br +. pr); ctx.space <- space); ctx.decorations <- outer_decorations; ctx.owner <- outer_owner; ctx.link <- outer_link) | Inline_block | Inline_flex -> let margin = four (fun m -> Option.value (size m ctx.width) ~default:0.) s.margin in let mt, mr, mb, ml = margin in let content = match s.width with Auto -> Some (shrink ctx.env e s ~available:(ctx.width -. ml -. mr)) | _ -> None in let s_in = { s with margin = (Len Css_values.zero, Len Css_values.zero, Len Css_values.zero, Len Css_values.zero) } in let ib, _ = layout_block ctx.env (ref []) e s_in ~cb_x:0. ~cb_width:ctx.width ~y:0. ~marker:None ?content () in let outer = ctx.link in (if e.name = "a" then match Dom.attribute "href" e with Some h -> ctx.link <- Some h | None -> ()); add_word ctx (word_style s ~link:ctx.link) ~glue:false "" (ml +. ib.width +. mr) ~owner:e ~boxed:(Inline { ib; ml; mt; mb }); ctx.link <- outer | Block | List_item | Flex | Grid | Table | Table_row_group | Table_row | Table_cell | Table_caption -> add_block ctx e s) (* a table (CSS 2.1 chapter 17, the automatic layout): Table_layout's * grid and widths, each cell measured at width 0 and without limit, * each row as tall as its tallest cell *) and layout_table (env : env) (table : Dom.element) (s : Computed.t) ~(cb_x : float) ~(cb_width : float) ~(y : float) : box = (* measuring: a percentage width is auto, as a block's (layout_block) *) let s = match s.width with Len l when env.measuring && l.pct <> 0. -> { s with width = Auto } | _ -> s in let cells, _ = Table_layout.grid table in (* the cells shown (not display: none: GitHub's small screens' cells), * their columns counted again without the others *) (* and the rows shown: Hacker News folds a thread by display: none on * its replies' rows *) let = let rec rows (e : Dom.element) = List.concat_map (fun (n : Dom.node) -> match n with | Element ({ name = "tr"; _ } as tr) -> [ tr ] | Element ({ name = "thead" | "tbody" | "tfoot"; _ } as g) -> rows g | _ -> []) e.children in List.filter (fun tr -> (env.style tr).display = Display_none) (rows table) in let (c : Table_layout.cell) = List.exists (fun (tr : Dom.element) -> List.exists (fun (n : Dom.node) -> match n with Element td -> td == c.element | Text _ -> false) tr.children) hidden_rows in let cells = List.filter (fun (c : Table_layout.cell) -> (env.style c.element).display <> Display_none && not (in_hidden_row c)) cells in let cells = List.rev (snd (List.fold_left (fun ((row, column), acc) (c : Table_layout.cell) -> let column = if c.row = row then column else 0 in ((c.row, column + c.span), { c with column } :: acc)) ((-1, 0), []) cells)) in let n = List.fold_left (fun n (c : Table_layout.cell) -> max n (c.column + c.span)) 0 cells in if cells = [] then fst (layout_block env (ref []) table { s with display = Block } ~cb_x ~cb_width ~y ~marker:None ()) else let spacing = match Option.bind (Dom.attribute "cellspacing" table) float_of_string_opt with Some sp when sp >= 0. -> sp | _ -> 2. in let bt, br, bb, bl = s.border_width in let _, pr, _, pl = four (fun l -> Css_values.resolve l cb_width) s.padding in let style_of (c : Table_layout.cell) = env.style c.element in (* a cell's chrome: its padding and border, across *) let chrome (cs : Computed.t) = let _, pr, _, pl = four (fun l -> Css_values.resolve l 0.) cs.padding and _, br, _, bl = cs.border_width in pl +. pr +. bl +. br in let cell_box (c : Table_layout.cell) ~x ~width ~y = let cs = style_of c in let cs = { cs with width = Auto; margin = (Len Css_values.zero, Len Css_values.zero, Len Css_values.zero, Len Css_values.zero) } in fst (layout_block env (ref []) c.element cs ~cb_x:x ~cb_width:width ~y ~marker:None ~content:(Float.max 0. (width -. chrome cs)) ()) in let measured = List.map (fun (c : Table_layout.cell) -> let cs = style_of c in let lo = shrink env c.element cs ~available:0. +. chrome cs and hi = shrink env c.element cs ~available:1e6 +. chrome cs in (* a cell's width= (a hint) is its minimum *) let asked = match size cs.width cb_width with Some w -> w | None -> 0. in (c, (Float.max lo asked, Float.max hi (Float.max lo asked)))) cells in let columns = Table_layout.columns n measured ~spacing in let frame = bl +. pl +. pr +. br +. (spacing *. float_of_int (n + 1)) in let asked = Option.map (fun w -> if s.border_box then w else w +. bl +. pl +. pr +. br) (size s.width cb_width) in let widths = Table_layout.widths ~room:(Option.value asked ~default:cb_width -. frame) ~fixed:(asked <> None) columns in let width = Array.fold_left ( +. ) frame widths in let _, mr, _, ml = s.margin in let x = match (size ml cb_width, size mr cb_width) with | None, None -> cb_x +. Float.max 0. ((cb_width -. width) /. 2.) | None, Some mr -> cb_x +. cb_width -. width -. mr | Some ml, _ -> cb_x +. ml in let sum i j = let t = ref 0. in for k = i to j - 1 do t := !t +. widths.(k) done; !t in let column_x i = x +. bl +. pl +. spacing +. sum 0 i +. (spacing *. float_of_int i) in let cell_width (c : Table_layout.cell) = sum c.column (c.column + c.span) +. (spacing *. float_of_int (c.span - 1)) in let caption = Option.map (fun e -> fst (layout_block env (ref []) e (env.style e) ~cb_x:x ~cb_width:width ~y ~marker:None ())) (Table_layout.caption table) in let top = match caption with Some c -> y +. c.height | None -> y in (* the rows, in Table_layout's order (an empty one too: Hacker News' * spacers), for their heights and backgrounds *) let trs = let rec trs (e : Dom.element) = List.concat_map (fun (n : Dom.node) -> match n with | Element ({ name = "tr"; _ } as tr) -> [ tr ] | Element ({ name = "thead" | "tbody" | "tfoot"; _ } as g) -> trs g | _ -> []) e.children in Array.of_list (trs table) in let rows = List.fold_left (fun m (c : Table_layout.cell) -> max m (c.row + 1)) (Array.length trs) cells in let tr_of (c : Table_layout.cell) = if c.row < Array.length trs then Some trs.(c.row) else None in let row_top = ref (top +. bt +. spacing) and boxes = ref [] in for r = 0 to rows - 1 do let row = List.filter (fun (c : Table_layout.cell) -> c.row = r) cells in let laid = List.map (fun c -> (c, cell_box c ~x:(column_x c.column) ~width:(cell_width c) ~y:0.)) row in let row_height = List.fold_left (fun m (_, (b : box)) -> Float.max m b.height) 0. laid in (* a cell's height *) let row_height = List.fold_left (fun m ((c : Table_layout.cell), _) -> match size (style_of c).height 0. with Some h -> Float.max m h | None -> m) row_height laid in (* and the row's own (Hacker News' spacer rows, height: 5px) *) let row_height = match (if r < Array.length trs then size (env.style trs.(r)).height 0. else None) with | Some h -> Float.max row_height h | None -> row_height in List.iter (fun ((c : Table_layout.cell), (b : box)) -> let cs = style_of c in let offset = match cs.vertical_align with Top | Baseline | Text_top -> 0. | Bottom | Text_bottom -> row_height -. b.height | _ -> (row_height -. b.height) /. 2. in let b = moved 0. (!row_top +. offset) b in (* the cell's box is its rectangle, its row's background if * it has none *) let style = match tr_of c with | Some tr when b.style.background.a = 0. -> { b.style with background = (env.style tr).background } | _ -> b.style in boxes := { b with y = !row_top; height = row_height; style } :: !boxes) laid; row_top := !row_top +. row_height +. spacing done; { element = Some table; style = s; x; y; width; height = !row_top +. bb -. y; border = (bt, br, bb, bl); children = Option.to_list caption @ List.rev !boxes; lines = []; backdrops = []; marker = None } let layout (metrics : Html_layout.metrics) ?(picture_size = fun _ -> None) ~(viewport : float * float) (style : Dom.element -> Computed.t) (root : Dom.element) : box = let positioned = ref [] in let env = { metrics; picture_size; style; viewport; positioned; measuring = false; centring = false; containing = (0., 0., fst viewport); measured = Hashtbl.create 1024 } in let s = style root in (* the root is its own formatting context: its floats inside it *) let s = { s with overflow_hidden = true } in let page, _ = layout_block env (ref []) root s ~cb_x:0. ~cb_width:(fst viewport) ~y:0. ~marker:None () in let bottom = List.fold_left (fun m (b : box) -> Float.max m (b.y +. b.height)) page.height !positioned in { page with height = bottom; children = page.children @ List.rev !positioned }
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