package forester
A tool for tending mathematical forests
Install
Dune Dependency
Authors
Maintainers
Sources
4.2.0.tar.gz
md5=7543fe7acbdfeb2056dc0b774965239f
sha512=2317bf84588692bbbd40e5fa944faab4889474e4a058e336bd1165f6dd8e55e8979affab098248c87354acdc3b6e6927305553ff5ab6b002b6739719814ec080
doc/src/forester.core/Expand.ml.html
Source file Expand.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 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334 335 336 337 338 339 340 341 342 343 344 345
open Forester_prelude open Resolver open Bwd open Base module UnitMap = Map.Make (String) type exports = P.data Trie.Untagged.t module U = Algaeff.State.Make (struct type t = exports UnitMap.t end) module Builtins = struct let create_sym path = let sym = Symbol.fresh path in sym, fun () -> Resolver.Scope.include_singleton path @@ Term [Range.locate_opt None (Syn.Sym sym)] let register_builtin path node = Resolver.Scope.include_singleton path @@ Term [Range.locate_opt None node] let register_builtins builtins = let make (path, node) = path, (P.Term [Range.locate_opt None node], ()) in Resolver.Scope.include_subtree [] @@ Yuujinchou.Trie.of_seq @@ Seq.map make @@ List.to_seq builtins let register_symbols builtins = let make (path, sym) = path, (P.Term [Range.locate_opt None (Syn.Sym sym)], ()) in Resolver.Scope.include_subtree [] @@ Yuujinchou.Trie.of_seq @@ Seq.map make @@ List.to_seq builtins module Transclude = struct let title_sym, alloc_title = create_sym ["transclude"; "title"] let taxon_sym, alloc_taxon = create_sym ["transclude"; "taxon"] let expanded_sym, alloc_expanded = create_sym ["transclude"; "expanded"] let show_heading_sym, alloc_show_heading = create_sym ["transclude"; "heading"] let toc_sym, alloc_toc = create_sym ["transclude"; "toc"] let numbered_sym, alloc_numbered = create_sym ["transclude"; "numbered"] let show_metadata_sym, alloc_show_metadata = create_sym ["transclude"; "metadata"] end end let rec expand : Code.t -> Syn.t = function | [] -> [] | {value = Text x; loc} :: rest -> {value = Syn.Text x; loc} :: expand rest | {value = Verbatim x; loc} :: rest -> {value = Syn.Verbatim x; loc} :: expand rest | {value = Namespace (path, body); loc} :: rest -> let result = Scope.section path @@ fun () -> expand body in result @ expand rest | {value = Open path; loc} :: rest -> Scope.section [] @@ fun () -> begin Scope.modify_visible @@ Resolver.Lang.union [ Resolver.Lang.all; Resolver.Lang.renaming path [] ] end; expand rest | {value = Group (Squares, title); loc = loc1} :: {value = Group (Parens, dest); loc = loc2} :: rest -> let dest = expand dest in let title = Option.some @@ expand title in let link = Syn.Link {dest; title} in {value = link; loc = loc1} :: expand rest | {value = Group (Squares, [{value = Group (Squares, dest); _}]); loc} :: rest -> let dest = expand dest in {value = Syn.Link {dest; title = None}; loc} :: expand rest | {value = Group (d, xs); loc} :: rest -> {value = Syn.Group (d, expand xs); loc} :: expand rest | {value = Subtree (addr, nodes); loc} :: rest -> let subtree = expand_tree_inner @@ Code.{source_path = None; addr = addr; code = nodes} in {value = Syn.Subtree (addr, subtree); loc} :: expand rest | {value = Math (m, xs); loc} :: rest -> {value = Syn.Math (m, expand xs); loc} :: expand rest | {value = Ident (path, methods); loc} :: rest -> let rec loop acc = function | [] -> acc | m :: ms -> loop [Range.{value = Syn.Call (acc, m); loc}] ms in loop (expand_ident loc path) methods @ expand rest | {value = Scope body; _} :: rest -> let body = Scope.section [] @@ fun () -> expand body in body @ expand rest | {value = Put (k, v); loc} :: rest -> let k = expand_ident loc k in let v = expand v in [{value = Syn.Put (k, v, expand rest); loc}] | {value = Default (k, v); loc} :: rest -> let k = expand_ident loc k in let v = expand v in [{value = Syn.Default (k, v, expand rest); loc}] | {value = Get k; loc} :: rest -> let k = expand_ident loc k in {value = Syn.Get k; loc} :: expand rest | {value = Fun (xs, body); loc} :: rest -> expand_lambda loc (xs, body) :: expand rest | {value = Object {self; methods}; loc} :: rest -> let self, methods = Scope.section [] @@ fun () -> let sym = Symbol.fresh [] in let var = Range.{value = Syn.Var sym; loc} in begin self |> Option.iter @@ fun self -> Scope.import_singleton self @@ Resolver.P.Term [var] end; sym, List.map expand_method methods in {value = Syn.Object {self; methods}; loc} :: expand rest | {value = Patch {obj; self; methods}; loc} :: rest -> let self, super, methods = Scope.section [] @@ fun () -> let self_sym = Symbol.fresh [] in let super_sym = Symbol.fresh [] in let self_var = Range.locate_opt None @@ Syn.Var self_sym in let super_var = Range.locate_opt None @@ Syn.Var super_sym in begin self |> Option.iter @@ fun self -> Scope.import_singleton self @@ Term [self_var]; Scope.import_singleton (self @ ["super"]) @@ Term [super_var] end; self_sym, super_sym, List.map expand_method methods in let patched = Syn.Patch {obj = expand obj; self; super; methods} in {value = patched; loc} :: expand rest | {value = Call (obj, method_name); loc} :: rest -> {value = Syn.Call (expand obj, method_name); loc} :: expand rest | {value = Xml_tag (title, attrs, body); loc} :: rest -> let title = expand_xml_ident loc title in let attrs = attrs |> List.map @@ fun (k, v) -> expand_xml_ident loc k, expand v in let body = expand body in {value = Syn.Xml_tag (title, attrs, body); loc} :: expand rest | {value = Import (vis, dep); loc} :: rest -> let import = UnitMap.find_opt dep @@ U.get () in begin match import with | None -> Reporter.emitf ?loc:loc Tree_not_found "Could not find tree %s" dep | Some tree -> begin match vis with | Public -> Resolver.Scope.include_subtree [] tree | Private -> Resolver.Scope.import_subtree [] tree end end; expand rest | {value = Let (a, bs, def); loc} :: rest -> let lam = expand_lambda loc (bs, def) in Resolver.Scope.section [] @@ fun _ -> Resolver.Scope.import_singleton a @@ Term [lam]; expand rest | {value = Def (path, xs, body); loc} :: rest -> let lam = expand_lambda loc (xs, body) in Resolver.Scope.include_singleton path @@ Term [lam]; expand rest | {value = Decl_xmlns (prefix, xmlns); loc} :: rest -> let path = ["xmlns"; prefix] in Resolver.Scope.include_singleton path @@ Xmlns {prefix; xmlns}; expand rest | {value = Alloc path; loc} :: rest -> let symbol = Symbol.fresh path in Resolver.Scope.include_singleton path @@ Term [Range.locate_opt loc (Syn.Sym symbol)]; expand rest and expand_method (key, body) = key, expand body and expand_lambda loc : Trie.path binding list * Code.t -> Syn.node Range.located = fun (xs, body) -> Scope.section [] @@ fun () -> let syms = xs |> List.map @@ fun (strategy, x) -> let sym = Symbol.fresh x in let var = Range.locate_opt None @@ Syn.Var sym in Scope.import_singleton x @@ Term [var]; strategy, sym in Range.{value = Syn.Fun (syms, expand body); loc} and expand_ident loc path = match Scope.resolve path, path with | None, [name] -> begin match TeX_cs.parse name with | None -> Reporter.fatalf ?loc Resolution_error "path %a could not be resolved" Trie.pp_path path | Some (cs, rest) -> let rest = match rest with "" -> [] | _ -> [Range.{value = Syn.Text rest; loc}] in Range.{value = Syn.TeX_cs cs; loc} :: rest end | None, _ -> Reporter.fatalf ?loc Resolution_error "path %a could not be resolved" Trie.pp_path path | Some (Term x, ()), _ -> let relocate Range.{value; _} = Range.{value; loc} in List.map relocate x | Some (Xmlns {xmlns; prefix}, ()), _ -> Reporter.fatalf ?loc Resolution_error "path %a resolved to xmlns:%s=\"%s\" instead of term" Trie.pp_path path xmlns prefix and expand_xml_ident loc (prefix, uname) = match prefix with | None -> {xmlns = None; prefix = ""; uname} | Some prefix -> match Scope.resolve ["xmlns"; prefix] with | Some (Xmlns {xmlns; prefix}, ()) -> {xmlns = Some xmlns; prefix = prefix; uname} | _ -> Reporter.fatalf ?loc Resolution_error "expected path `%s` to resolve to xmlns" prefix and expand_tree_inner (tree : Code.tree) : Syn.tree = let trace f = match tree.addr with | Some addr -> Reporter.tracef "when expanding tree at address `%s`" addr f | None -> f () in trace @@ fun () -> Scope.section [] @@ fun () -> let units = U.get () in let syn = expand tree.code in let exports = Resolver.Scope.get_export () in let units = match tree.addr with | None -> units | Some addr -> UnitMap.add addr exports units in U.set units; syn let expand_tree (units : exports UnitMap.t) (tree : Code.tree) = U.run ~init:units @@ fun () -> Resolver.Scope.run @@ fun () -> Builtins.register_builtins [ ["p"], Syn.Prim `P; ["em"], Syn.Prim `Em; ["strong"], Syn.Prim `Strong; ["li"], Syn.Prim `Li; ["ol"], Syn.Prim `Ol; ["ul"], Syn.Prim `Ul; ["code"], Syn.Prim `Code; ["blockquote"], Syn.Prim `Blockquote; ["pre"], Syn.Prim `Pre; ["figure"], Syn.Prim `Figure; ["figcaption"], Syn.Prim `Figcaption; ["transclude"], Syn.Transclude; ["tex"], Syn.Embed_tex; ["ref"], Syn.Ref; ["title"], Syn.Title; ["taxon"], Syn.Taxon; ["date"], Syn.Date; ["meta"], Syn.Meta; ["author"], Syn.Author; ["contributor"], Syn.Contributor; ["parent"], Syn.Parent; ["number"], Syn.Number; ["tag"], Syn.Tag; ["query"], Syn.Query_tree; ["query"; "rel"], Syn.Query_rel; ["query"; "union"], Syn.Query_union; ["query"; "isect"], Syn.Query_isect; ["query"; "isect-fam"], Syn.Query_isect_fam; ["query"; "union-fam"], Syn.Query_union_fam; ["query"; "isect-fam-rel"], Syn.Query_isect_fam_rel; ["query"; "union-fam-rel"], Syn.Query_union_fam_rel; ["query"; "compl"], Syn.Query_compl; ["query"; "tag"], Syn.Query_builtin `Tag; ["query"; "taxon"], Syn.Query_builtin `Taxon; ["query"; "author"], Syn.Query_builtin `Author; ["query"; "incoming"], Syn.Query_polarity Incoming; ["query"; "outgoing"], Syn.Query_polarity Outgoing; ["query"; "edges"], Syn.Query_mode Edges; ["query"; "paths"], Syn.Query_mode Paths; ["rel"; "tags"], Syn.Text Query.Rel.tags; ["rel"; "taxa"], Syn.Text Query.Rel.taxa; ["rel"; "authors"], Syn.Text Query.Rel.authors; ["rel"; "contributors"], Syn.Text Query.Rel.authors; ["rel"; "transclusion"], Syn.Text Query.Rel.transclusion; ["rel"; "links"], Syn.Text Query.Rel.links; ]; Builtins.Transclude.alloc_title (); Builtins.Transclude.alloc_taxon (); Builtins.Transclude.alloc_expanded (); Builtins.Transclude.alloc_show_heading (); Builtins.Transclude.alloc_toc (); Builtins.Transclude.alloc_numbered (); Builtins.Transclude.alloc_show_metadata (); let tree = expand_tree_inner tree in let units = U.get () in units, tree
sectionYPositions = computeSectionYPositions($el), 10)"
x-init="setTimeout(() => sectionYPositions = computeSectionYPositions($el), 10)"
>