package forester
A tool for tending mathematical forests
Install
Dune Dependency
Authors
Maintainers
Sources
3.1.0.tar.gz
md5=3512b493a31b0d1073ba4e48e8058493
sha512=b6e5ad2f86132d1874cb943546375e2f1b987a0c65628d71f17827f1ff7435df476c86fb135b34b3ff302f99ea54a21b90730257e12aa41cce170fae57c422b0
doc/src/forester.frontend/Forest.ml.html
Source file Forest.ml
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open Eio.Std open Prelude open Core open Render module A = Analysis module M = A.Map module Tbl = A.Tbl module Gph = A.Gph type config = {env : Eio_unix.Stdenv.base; assets_dirs : Eio.Fs.dir_ty Eio.Path.t list; root : addr option; base_url : string option; ignore_tex_cache : bool; no_assets: bool; no_theme: bool; max_fibers : int} type raw_forest = Code.tree Seq.t type forest = {trees : Sem.tree Analysis.Map.t; analysis : Analysis.analysis Lazy.t} module LaTeX_queue = LaTeX_queue.Make () let run_renderer ~cfg (forest : forest) (body : unit -> 'a) : 'a = let module S = Set.Make (String) in let module H : Render_effect.Handler = struct let analysis = Lazy.force forest.analysis let is_root addr = cfg.root = Some addr let route addr = let ext = "xml" in let base = match is_root addr with | true -> "index" | false -> addr in Format.asprintf "%s.%s" base ext let get_doc addr = M.find_opt addr forest.trees let enqueue_latex ~name ~preamble ~source = LaTeX_queue.enqueue ~name ~preamble ~source let addr_peek_title scope = match M.find_opt scope forest.trees with | Some doc -> Sem.Util.peek_title doc | None -> None let get_sorted_trees addrs : Sem.tree list = let find addr = match M.find_opt addr forest.trees with | None -> [] | Some doc -> [doc] in Sem.Util.sort @@ List.concat_map find @@ S.elements addrs let get_all_links scope = get_sorted_trees @@ S.of_list @@ Gph.pred analysis.link_graph scope let backlinks scope = get_sorted_trees @@ S.of_list @@ Gph.succ analysis.link_graph scope let scope = get_all_links scope |> List.filter @@ fun (doc : Sem.tree) -> doc.fm.taxon <> Some "reference" let bibliography scope = get_sorted_trees @@ S.of_list @@ A.Tbl.find_all analysis.bibliography scope let parents scope = get_sorted_trees @@ S.of_list @@ Gph.succ analysis.transclusion_graph scope let children scope = get_sorted_trees @@ S.of_list @@ Gph.pred analysis.transclusion_graph scope let contributions scope = get_sorted_trees @@ S.of_list @@ Tbl.find_all analysis.author_pages scope let contributors scope = let tree = M.find scope forest.trees in let = S.of_list tree.fm.authors in let contributors = S.union (S.of_list tree.fm.contributors) @@ S.of_list @@ Tbl.find_all analysis.contributors scope in let proper_contributors = contributors |> S.filter @@ fun contr -> not @@ S.mem contr authors in let by_title = Compare.under addr_peek_title @@ Compare.option String.compare in let compare = Compare.cascade by_title String.compare in List.sort compare @@ S.elements proper_contributors let run_query query = get_sorted_trees @@ S.of_seq @@ Seq.map fst @@ M.to_seq @@ M.filter (fun _ -> Sem.Query.test query) forest.trees end in let module Run = Render_effect.Run (H) in Run.run body let plant_forest (trees : raw_forest) : forest = let add_tree addr tree trees = if M.mem addr trees then begin Reporter.emitf Duplicate_tree "skipping duplicate tree at address `%s`" addr; trees end else M.add addr tree trees in let unexpanded_trees = let alg acc (tree : Code.tree) = match tree.addr with | Some addr -> add_tree addr tree acc | None -> acc in Seq.fold_left alg M.empty trees in let _, trees = let import_graph = A.build_import_graph trees in let task addr (units, trees) = let tree = M.find_opt addr unexpanded_trees in match tree with | None -> units, trees | Some tree -> let units, syn = Expand.expand_tree units tree in let tree, emitted_trees = Eval.eval_tree ~addr ~source_path:tree.source_path syn in let add trees tree = match Sem.(tree.fm.addr) with | None -> trees | Some addr -> add_tree addr tree trees in units, List.fold_left add trees @@ tree :: emitted_trees in A.Topo.fold task import_graph (Expand.UnitMap.empty, M.empty) in {trees; analysis = lazy (A.analyze_trees trees)} let rec random_not_in keys = let attempt = Random.int (36*36*36*36 - 1) in if Seq.fold_left (fun x y -> x || y) false (Seq.map (fun k -> k == attempt) keys) then random_not_in keys else attempt let next_addr ~prefix ~mode (forest : addr Seq.t) = let keys = forest |> Seq.filter_map @@ fun addr -> match String.split_on_char '-' addr with | [prefix'; str] when prefix' = prefix -> BaseN.Base36.int_of_string str | _ -> None in let next = match mode with | `Sequential -> 1 + Seq.fold_left max 0 keys | `Random -> random_not_in keys in prefix ^ "-" ^ BaseN.Base36.string_of_int next let create_tree ~cfg ~addrs ~dest ~prefix ~template ~mode = let next = next_addr addrs ~prefix ~mode in let fname = next ^ ".tree" in let now = Date.now () in let template_content = match template with | None -> "" | Some name -> Eio.Path.load Eio.Path.(Eio.Stdenv.cwd cfg.env / "templates" / (name ^ ".tree")) in let body = Format.asprintf "\\date{%a}\n" Date.pp now in let create = `Exclusive 0o644 in let path = Eio.Path.(dest / fname) in Eio.Path.save ~create path @@ body ^ template_content; next let complete ~forest prefix = forest.trees |> M.filter_map (fun _ -> Sem.Util.peek_title) |> M.filter (fun _ -> String.starts_with ~prefix) |> M.to_seq let prefixes ~(addrs : addr Seq.t) : string list = let first_segment s = match String.split_on_char '-' s with [] -> "" | [x] -> s | x::_ -> x in let matches_prefix_scheme addr = match String.split_on_char '-' addr with | [] | [_] -> false | prefix :: [id] -> String.length id = 4 | _ -> false in let is_already ~addr ~known = match List.find_opt (fun c -> first_segment c = first_segment addr) known with | Some _ -> true | None -> false in let exists_first ~addr ~queue = match List.find_opt (fun q -> (q = first_segment addr ^ "-0000") || (q = first_segment addr ^ "-0001")) queue with | Some _ -> true | None -> false in let should_add ~candidate ~known ~queue = if not (matches_prefix_scheme candidate) then false else (not @@ is_already ~addr:candidate ~known) && (exists_first ~addr:candidate ~queue) in let remove_addrs ~addr ~queue = List.filter (fun q -> (not (first_segment q = first_segment addr))) queue in let queue = addrs |> List.of_seq |> List.sort String.compare in let rec step known queue = match queue with | [] -> known | addr :: rest -> if (should_add ~candidate:addr ~known ~queue) then step (first_segment addr :: known) (remove_addrs ~addr ~queue) else step known (remove_addrs ~addr ~queue) in step [] queue let taxa ~forest = forest.trees |> M.filter_map (fun _ -> Sem.Util.taxon) |> M.to_seq let ~forest = forest.trees |> M.map Sem.Util.tags |> M.filter (fun _ -> fun -> not @@ List.is_empty tags) |> M.to_seq module E = Render_effect.Perform let render_tree ~cfg ~cwd doc = doc.fm.addr |> Option.iter @@ fun addr -> let create = `Or_truncate 0o644 in let base_url = cfg.base_url in begin (* TODO: the XML output via Eio is overflowing!!! *) let ch = open_out @@ "output/" ^ E.route addr in (* let path = Eio.Path.(cwd / "output" / E.route addr) in *) (* Eio.Path.with_open_out ~create path @@ fun flow -> *) (* Eio.Buf_write.with_flow flow @@ fun w -> *) Fun.protect ~finally:(fun _ -> close_out ch) @@ fun _ -> let out = Xmlm.make_output @@ `Channel ch in (* Eio_util.xmlm_dest_of_writer w in *) Render_xml.render_tree_page ~base_url doc out end let render_json ~cwd docs = let docs = Sem.Util.sort_for_index @@ List.of_seq @@ Seq.map snd @@ M.to_seq docs in Yojson.Basic.to_file "./output/forest.json" (Render_json.render_trees ~dev:false docs) let fname = String.starts_with ~prefix:"." fname let copy_theme ~env = let cwd = Eio.Stdenv.cwd env in let fs = Eio.Stdenv.fs env in Eio.Path.with_open_dir Eio.Path.(fs / "theme") @@ fun theme -> Eio.Path.read_dir theme |> List.iter @@ fun fname -> if not @@ is_hidden_file fname then let source = "theme/" ^ fname in Eio_util.copy_to_dir ~env ~cwd ~source ~dest_dir:"output" let copy_assets ~env ~assets_dirs = let cwd = Eio.Stdenv.cwd env in assets_dirs |> List.iter @@ fun assets_dir -> Eio.Path.with_open_dir assets_dir @@ fun assets -> Eio.Path.read_dir assets |> List.iter @@ fun fname -> if not @@ is_hidden_file fname then let path = Eio.Path.(assets_dir / fname) in let source = Eio.Path.native_exn path in Eio_util.copy_to_dir ~env ~cwd ~source ~dest_dir:"build"; Eio_util.copy_to_dir ~env ~cwd ~source ~dest_dir:"output" let copy_resources ~env = let cwd = Eio.Stdenv.cwd env in Eio.Path.with_open_dir Eio.Path.(cwd / "build") @@ fun build -> Eio.Path.read_dir build |> List.iter @@ fun fname -> if not @@ is_hidden_file fname then let ext = Filename.extension fname in let fp = Format.sprintf "build/%s" fname in let dest_opt = match ext with | ".svg" -> Some "output/resources" | _ -> None in dest_opt |> Option.iter @@ fun dest_dir -> if not @@ Eio_util.file_exists Eio.Path.(cwd / dest_dir / fname) then Eio_util.copy_to_dir ~cwd ~env ~source:fp ~dest_dir let render_trees ~cfg ~forest : unit = let env = cfg.env in let cwd = Eio.Stdenv.cwd env in Eio_util.ensure_dir @@ Eio.Path.(cwd / "build"); Eio_util.ensure_dir_path cwd ["output"; "resources"]; run_renderer ~cfg forest @@ fun () -> forest.trees |> M.to_seq |> Seq.map snd |> List.of_seq |> Sem.Util.sort |> List.iter (render_tree ~cfg ~cwd); render_json ~cwd forest.trees; if not cfg.no_assets then copy_assets ~env ~assets_dirs:cfg.assets_dirs; if not cfg.no_theme then copy_theme ~env; let _ = LaTeX_queue.process ~env ~max_fibers:cfg.max_fibers ~ignore_tex_cache:cfg.ignore_tex_cache in copy_resources ~env
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