mirror of
https://github.com/philomena-dev/philomena.git
synced 2024-11-27 21:47:59 +01:00
484 lines
14 KiB
Elixir
484 lines
14 KiB
Elixir
defmodule Textile.Parser do
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alias Textile.Lexer
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alias Phoenix.HTML
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def parse(parser, input) do
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parser = Map.put(parser, :state, %{})
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with {:ok, tokens, _1, _2, _3, _4} <- Lexer.lex(String.trim(input || "")),
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{:ok, tree, []} <- repeat(&textile/2, parser, tokens) do
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partial_flatten(tree)
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else
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_ ->
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[]
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end
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end
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# Helper to turn a parse tree into a string
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def flatten(tree) do
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tree
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|> List.flatten()
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|> Enum.map_join("", fn {_k, v} -> v end)
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end
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# Helper to escape HTML
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defp escape(text) do
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text
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|> HTML.html_escape()
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|> HTML.safe_to_string()
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end
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# Helper to turn a parse tree into a list
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def partial_flatten(tree) do
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tree
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|> List.flatten()
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|> Enum.chunk_by(fn {k, _v} -> k end)
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|> Enum.map(fn list ->
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[{type, _v} | _rest] = list
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value = Enum.map_join(list, "", fn {_k, v} -> v end)
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{type, value}
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end)
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end
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defp put_state(parser, new_state) do
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state = Map.put(parser.state, new_state, true)
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Map.put(parser, :state, state)
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end
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# Helper corresponding to Kleene star (*) operator
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# Match a specificed rule zero or more times
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defp repeat(rule, parser, tokens) do
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case rule.(parser, tokens) do
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{:ok, tree, r_tokens} ->
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{:ok, tree2, r2_tokens} = repeat(rule, parser, r_tokens)
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{:ok, [tree, tree2], r2_tokens}
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_ ->
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{:ok, [], tokens}
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end
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end
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# Helper to match a simple recursive grammar rule of the following form:
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#
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# open_token callback* close_token
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#
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defp simple_recursive(open_token, close_token, open_tag, close_tag, callback, parser, [
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{open_token, open} | r_tokens
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]) do
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case repeat(callback, parser, r_tokens) do
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{:ok, tree, [{^close_token, _} | r2_tokens]} ->
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{:ok, [{:markup, open_tag}, tree, {:markup, close_tag}], r2_tokens}
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{:ok, tree, r2_tokens} ->
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{:ok, [{:text, escape(open)}, tree], r2_tokens}
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end
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end
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defp simple_recursive(
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_open_token,
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_close_token,
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_open_tag,
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_close_tag,
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_callback,
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_parser,
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_tokens
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) do
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{:error, "Expected a simple recursive rule"}
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end
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# Helper to match a simple recursive grammar rule with negative lookahead:
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#
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# open_token callback* close_token (?!lookahead_not)
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#
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defp simple_lookahead_not(
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open_token,
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close_token,
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open_tag,
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close_tag,
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lookahead_not,
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callback,
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state,
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parser,
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[{open_token, open} | r_tokens]
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) do
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case parser.state do
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%{^state => _} ->
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{:error, "End of rule"}
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_ ->
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case r_tokens do
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[{forbidden_lookahead, _la} | _] when forbidden_lookahead in [:space, :newline] ->
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{:ok, [{:text, escape(open)}], r_tokens}
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_ ->
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case repeat(callback, put_state(parser, state), r_tokens) do
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{:ok, tree, [{^close_token, close}, {^lookahead_not, ln} | r2_tokens]} ->
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{:ok, [{:text, escape(open)}, tree, {:text, escape(close)}],
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[{lookahead_not, ln} | r2_tokens]}
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{:ok, tree, [{^close_token, _} | r2_tokens]} ->
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{:ok, [{:markup, open_tag}, tree, {:markup, close_tag}], r2_tokens}
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{:ok, tree, r2_tokens} ->
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{:ok, [{:text, escape(open)}, tree], r2_tokens}
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end
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end
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end
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end
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defp simple_lookahead_not(
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_open_token,
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_close_token,
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_open_tag,
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_close_tag,
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_lookahead_not,
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_callback,
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_state,
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_parser,
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_tokens
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) do
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{:error, "Expected a simple lookahead not rule"}
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end
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# Helper to efficiently assemble a UTF-8 binary from tokens of the
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# given type
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defp assemble_binary(token_type, accumulator, [{token_type, t} | stream]) do
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assemble_binary(token_type, accumulator <> <<t::utf8>>, stream)
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end
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defp assemble_binary(_token_type, accumulator, tokens), do: {accumulator, tokens}
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#
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# inline_textile_element =
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# opening_markup inline_textile_element* closing_markup (?!quicktxt) |
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# closing_markup (?=quicktxt) |
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# link_delim block_textile_element* link_url |
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# image url? |
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# code_delim inline_textile_element* code_delim |
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# inline_textile_element_not_opening_markup;
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#
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defp inline_textile_element(parser, tokens) do
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[
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{:b_delim, :b, "<b>", "</b>"},
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{:i_delim, :i, "<i>", "</i>"},
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{:strong_delim, :strong, "<strong>", "</strong>"},
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{:em_delim, :em, "<em>", "</em>"},
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{:ins_delim, :ins, "<ins>", "</ins>"},
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{:sup_delim, :sup, "<sup>", "</sup>"},
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{:del_delim, :del, "<del>", "</del>"},
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{:sub_delim, :sub, "<sub>", "</sub>"}
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]
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|> Enum.find_value(fn {delim_token, state, open_tag, close_tag} ->
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simple_lookahead_not(
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delim_token,
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delim_token,
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open_tag,
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close_tag,
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:quicktxt,
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&inline_textile_element/2,
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state,
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parser,
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tokens
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)
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|> case do
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{:ok, tree, r_tokens} ->
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{:ok, tree, r_tokens}
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_ ->
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nil
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end
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end)
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|> case do
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nil -> inner_inline_textile_element(parser, tokens)
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value -> value
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end
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end
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defp inner_inline_textile_element(parser, [{token, t}, {:quicktxt, q} | r_tokens])
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when token in [
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:b_delim,
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:i_delim,
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:strong_delim,
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:em_delim,
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:ins_delim,
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:sup_delim,
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:del_delim,
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:sub_delim
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] do
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case inline_textile_element(parser, [{:quicktxt, q} | r_tokens]) do
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{:ok, tree, r2_tokens} ->
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{:ok, [{:text, escape(t)}, tree], r2_tokens}
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_ ->
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{:ok, [{:text, escape(t)}], [{:quicktxt, q} | r_tokens]}
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end
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end
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defp inner_inline_textile_element(parser, [{:link_delim, open} | r_tokens]) do
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case repeat(&block_textile_element/2, parser, r_tokens) do
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{:ok, tree, [{:unbracketed_link_url, <<"\":", url::binary>>} | r2_tokens]} ->
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href = escape(url)
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{:ok,
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[{:markup, "<a href=\""}, {:markup, href}, {:markup, "\">"}, tree, {:markup, "</a>"}],
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r2_tokens}
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{:ok, tree, r2_tokens} ->
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{:ok, [{:text, escape(open)}, tree], r2_tokens}
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end
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end
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defp inner_inline_textile_element(parser, [{:bracketed_link_open, open} | r_tokens]) do
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case repeat(&inline_textile_element/2, parser, r_tokens) do
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{:ok, tree, [{:bracketed_link_url, <<"\":", url::binary>>} | r2_tokens]} ->
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href = escape(url)
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{:ok,
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[{:markup, "<a href=\""}, {:markup, href}, {:markup, "\">"}, tree, {:markup, "</a>"}],
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r2_tokens}
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{:ok, tree, r2_tokens} ->
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{:ok, [{:text, escape(open)}, tree], r2_tokens}
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end
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end
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defp inner_inline_textile_element(parser, [
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{token, img},
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{:unbracketed_image_url, <<":", url::binary>>} | r_tokens
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])
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when token in [:unbracketed_image, :bracketed_image] do
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img = parser.image_transform.(img)
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{:ok,
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[
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{:markup, "<a href=\""},
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{:markup, escape(url)},
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{:markup, "\"><span class=\"imgspoiler\"><img src=\""},
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{:markup, escape(img)},
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{:markup, "\"/></span></a>"}
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], r_tokens}
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end
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defp inner_inline_textile_element(parser, [{token, img} | r_tokens])
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when token in [:unbracketed_image, :bracketed_image] do
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img = parser.image_transform.(img)
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{:ok,
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[
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{:markup, "<span class=\"imgspoiler\"><img src=\""},
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{:markup, escape(img)},
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{:markup, "\"/></span>"}
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], r_tokens}
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end
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defp inner_inline_textile_element(parser, [{:code_delim, open} | r_tokens]) do
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case parser.state do
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%{code: _} ->
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{:error, "End of rule"}
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_ ->
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case repeat(&inline_textile_element/2, put_state(parser, :code), r_tokens) do
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{:ok, tree, [{:code_delim, _} | r2_tokens]} ->
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{:ok, [{:markup, "<code>"}, tree, {:markup, "</code>"}], r2_tokens}
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{:ok, tree, r2_tokens} ->
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{:ok, [{:text, escape(open)}, tree], r2_tokens}
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end
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end
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end
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defp inner_inline_textile_element(parser, tokens) do
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inline_textile_element_not_opening_markup(parser, tokens)
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end
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#
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# bq_cite_text = (?!bq_cite_open);
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#
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# Note that text is not escaped here because it will be escaped
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# when the tree is flattened
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defp bq_cite_text(_parser, [{:bq_cite_open, _open} | _rest]) do
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{:error, "Expected cite tokens"}
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end
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defp bq_cite_text(_parser, [{:char, lit} | r_tokens]) do
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{:ok, [{:text, <<lit::utf8>>}], r_tokens}
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end
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defp bq_cite_text(_parser, [{:quicktxt, lit} | r_tokens]) do
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{:ok, [{:text, <<lit::utf8>>}], r_tokens}
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end
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defp bq_cite_text(_parser, [{:space, _} | r_tokens]) do
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{:ok, [{:text, " "}], r_tokens}
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end
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defp bq_cite_text(_parser, [{_token, t} | r_tokens]) do
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{:ok, [{:text, t}], r_tokens}
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end
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defp bq_cite_text(_parser, _tokens) do
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{:error, "Expected cite tokens"}
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end
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#
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# inline_textile_element_not_opening_markup =
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# literal | space | char |
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# quicktxt opening_markup quicktxt |
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# quicktxt |
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# opening_block_tag block_textile_element* closing_block_tag;
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#
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defp inline_textile_element_not_opening_markup(_parser, [{:literal, lit} | r_tokens]) do
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{:ok, [{:markup, "<span class=\"literal\">"}, {:markup, escape(lit)}, {:markup, "</span>"}],
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r_tokens}
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end
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defp inline_textile_element_not_opening_markup(_parser, [{:space, _} | r_tokens]) do
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{:ok, [{:text, " "}], r_tokens}
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end
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defp inline_textile_element_not_opening_markup(_parser, [{:char, lit} | r_tokens]) do
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{binary, r2_tokens} = assemble_binary(:char, <<lit::utf8>>, r_tokens)
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{:ok, [{:text, escape(binary)}], r2_tokens}
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end
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defp inline_textile_element_not_opening_markup(_parser, [
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{:quicktxt, q1},
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{token, t},
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{:quicktxt, q2} | r_tokens
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])
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when token in [
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:b_delim,
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:i_delim,
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:strong_delim,
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:em_delim,
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:ins_delim,
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:sup_delim,
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:del_delim,
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:sub_delim
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] do
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{:ok, [{:text, escape(<<q1::utf8>>)}, {:text, escape(t)}, {:text, escape(<<q2::utf8>>)}],
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r_tokens}
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end
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defp inline_textile_element_not_opening_markup(_parser, [{:quicktxt, lit} | r_tokens]) do
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{:ok, [{:text, escape(<<lit::utf8>>)}], r_tokens}
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end
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defp inline_textile_element_not_opening_markup(parser, [{:bq_cite_start, start} | r_tokens]) do
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case repeat(&bq_cite_text/2, parser, r_tokens) do
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{:ok, tree, [{:bq_cite_open, open} | r2_tokens]} ->
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case repeat(&block_textile_element/2, parser, r2_tokens) do
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{:ok, tree2, [{:bq_close, _} | r3_tokens]} ->
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cite = escape(flatten(tree))
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{:ok,
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[
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{:markup, "<blockquote author=\""},
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{:markup, cite},
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{:markup, "\">"},
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tree2,
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{:markup, "</blockquote>"}
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], r3_tokens}
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{:ok, tree2, r3_tokens} ->
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{:ok,
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[
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{:text, escape(start)},
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{:text, escape(flatten(tree))},
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{:text, escape(open)},
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tree2
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], r3_tokens}
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_ ->
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{:ok, [{:text, escape(start)}, {:text, escape(flatten(tree))}, {:text, escape(open)}],
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r_tokens}
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end
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_ ->
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{:ok, [{:text, escape(start)}], r_tokens}
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end
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end
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defp inline_textile_element_not_opening_markup(_parser, [{:bq_cite_open, tok} | r_tokens]) do
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{:ok, [{:text, escape(tok)}], r_tokens}
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end
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defp inline_textile_element_not_opening_markup(parser, tokens) do
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[
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{:bq_open, :bq_close, "<blockquote>", "</blockquote>"},
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{:spoiler_open, :spoiler_close, "<span class=\"spoiler\">", "</span>"},
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{:bracketed_b_open, :bracketed_b_close, "<b>", "</b>"},
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{:bracketed_i_open, :bracketed_i_close, "<i>", "</i>"},
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{:bracketed_strong_open, :bracketed_strong_close, "<strong>", "</strong>"},
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{:bracketed_em_open, :bracketed_em_close, "<em>", "</em>"},
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{:bracketed_code_open, :bracketed_code_close, "<code>", "</code>"},
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{:bracketed_ins_open, :bracketed_ins_close, "<ins>", "</ins>"},
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{:bracketed_sup_open, :bracketed_sup_close, "<sup>", "</sup>"},
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{:bracketed_del_open, :bracketed_del_close, "<del>", "</del>"},
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{:bracketed_sub_open, :bracketed_sub_close, "<sub>", "</sub>"}
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]
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|> Enum.find_value(fn {open_token, close_token, open_tag, close_tag} ->
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simple_recursive(
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open_token,
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close_token,
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open_tag,
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close_tag,
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&block_textile_element/2,
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parser,
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tokens
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)
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|> case do
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{:ok, tree, r_tokens} ->
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{:ok, tree, r_tokens}
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_ ->
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nil
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end
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end)
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|> Kernel.||({:error, "Expected block markup"})
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end
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#
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# block_textile_element =
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# double_newline | newline | inline_textile_element;
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#
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defp block_textile_element(_parser, [{:double_newline, _} | r_tokens]) do
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{:ok, [{:markup, "<br/><br/>"}], r_tokens}
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end
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defp block_textile_element(_parser, [{:newline, _} | r_tokens]) do
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{:ok, [{:markup, "<br/>"}], r_tokens}
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end
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defp block_textile_element(parser, tokens) do
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inline_textile_element(parser, tokens)
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end
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#
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# textile =
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# (block_textile_element | TOKEN)* eos;
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#
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defp textile(parser, tokens) do
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case block_textile_element(parser, tokens) do
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{:ok, tree, r_tokens} ->
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{:ok, tree, r_tokens}
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_ ->
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case tokens do
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[{_, string} | r_tokens] ->
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{:ok, [{:text, escape(string)}], r_tokens}
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_ ->
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{:error, "Expected textile"}
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end
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end
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end
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end
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