package forester
A tool for tending mathematical forests
Install
Dune Dependency
Authors
Maintainers
Sources
4.1.0.tar.gz
md5=576a2fe0666a6bd9fbbf9a567c0aee79
sha512=af7666a0bcd8fb20497a8c0a0bc01cb57db0bde07d68952e40d37464efe81c3a3c8207a5e5dc88264a5f67b5815874e88f3aa31972dd5f0413d44f97e11b758e
doc/src/forester.core/Sem.ml.html
Source file Sem.ml
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open Base open Forester_prelude module MethodTable = Map.Make (String) module Text_modifier = struct type t = Sentence_case | Identity [@@deriving show] end type modifier = Text_modifier.t let pp_modifier = Text_modifier.pp type node = | Text of string | Verbatim of string | Transclude of transclusion_opts * addr | Subtree of transclusion_opts * tree | Query of transclusion_opts * t Query.t | Link of addr * t option * modifier | Xml_tag of xml_resolved_qname * (xml_resolved_qname * t) list * t | TeX_cs of TeX_cs.t | Math of math_mode * t | Embed_tex of embedded_tex | Img of string | If_tex of t * t | Prim of Prim.t * t | Object of Symbol.t | Ref of addr [@@deriving show] and embedded_tex = {preamble : t; source : t} [@@deriving show] and transclusion_opts = {toc : bool; show_heading : bool; show_metadata : bool; title_override : t option; taxon_override : string option; expanded : bool; numbered : bool} [@@deriving show] and t = node Range.located list and env = t Env.t [@@deriving show] and tree = {fm : frontmatter; body : t} [@@deriving show] and frontmatter = {title : t option; taxon : string option; authors : addr list; contributors : addr list; dates : Date.t list; addr : addr; metas : (string * t) list; tags: string list; physical_parent : addr option; designated_parent : addr option; source_path : string option; number : string option} type obj_method = {body : Syn.t; self : Symbol.t; super : Symbol.t; env : env} type obj = {prototype : Symbol.t option; methods : obj_method MethodTable.t} let is_whitespace node = match Range.(node.value) with | Text txt -> String.trim txt = "" | _ -> false let strip_whitespace = List.filter @@ fun x -> not @@ is_whitespace x let trim_whitespace xs = let rec trim_front xs = match xs with | x :: xs when is_whitespace x -> trim_front xs | xs -> xs and trim_back xs = List.rev @@ trim_front @@ List.rev xs in trim_back @@ trim_front xs let sentence_case nodes = let map_head f = function | [] -> [] | x :: xs -> f x :: xs in let map_located f node = Range.{node with value = f node.value} in nodes |> map_head @@ map_located @@ function | Text str -> Text (String_util.sentence_case str) | Link (addr, title, _) -> Link (addr, title, Sentence_case) | node -> node let apply_modifier = function | Text_modifier.Sentence_case -> sentence_case | Text_modifier.Identity -> Fun.id (** Best-effort rendering of a nodes as a string, to use in text-only contexts.*) let string_of_nodes = let rec render nodes = String.concat "" @@ List.filter_map render_node nodes and render_node located = match Range.(located.value) with | Text s -> Some s | Verbatim s -> Some s | Link (_, Some title, _) -> Some (render title) | Xml_tag (_, _, bdy) | Math (_, bdy) -> Some (render bdy) | Embed_tex {source; _} -> Some (render source) | If_tex (_, x) -> Some (render x) | Prim (_, x) -> Some (render x) | Transclude _ | Subtree _ | Query _ | TeX_cs _ | Img _ | Object _ | Link _ | Ref _ -> None in render module Util = struct let peek_title (tree : tree) = match tree.fm.title with | Some ({value = Text txt; _} :: _) -> Some txt | _ -> None let peek_addr (tree : tree) = tree.fm.addr let (tree : tree) = tree.fm.tags let taxon (tree : tree) = tree.fm.taxon let (tree : tree) = tree.fm.authors let basic_comparator = let latest_date tree = let sorted_dates = tree.fm.dates |> List.sort (Compare.invert Date.compare) in List.nth_opt sorted_dates 0 in let by_date = Fun.flip @@ Compare.under latest_date @@ Compare.option Date.compare in let by_title = Compare.under peek_title @@ Compare.option String.compare in Compare.cascade by_date by_title let sort = List.sort basic_comparator let sort_for_index = let by_has_parent = Compare.under (fun x -> Option.is_some x.fm.designated_parent) @@ Bool.compare in List.sort @@ Compare.cascade by_has_parent basic_comparator end module Query = struct let rec test query (doc : tree) = match query with | Query.Author [Range.{value = Text addr; _}] -> List.mem (User_addr addr) doc.fm.authors | Query.Tag [{value = Text addr; _}] -> List.mem addr doc.fm.tags | Query.Meta (key, value) -> List.mem (key, value) doc.fm.metas | Query.Taxon [{value = Text taxon; _}] -> doc.fm.taxon = Some taxon | Query.Or qs -> qs |> List.exists @@ fun q -> test q doc | Query.And qs -> qs |> List.for_all @@ fun q -> test q doc | Query.Not q -> not @@ test q doc | Query.True -> true | _ -> false end let empty_frontmatter ~addr = {addr; title = None; taxon = None; dates = []; authors = []; contributors = []; tags = []; metas = []; physical_parent = None; designated_parent = None; source_path = None; number = None} let empty_tree ~addr = {fm = empty_frontmatter ~addr; body = []} let default_transclusion_opts : transclusion_opts = {title_override = None; taxon_override = None; show_heading = true; show_metadata = true; toc = true; expanded = true; numbered = true}
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