feat(variform): implement variform engine
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@ -14,17 +14,46 @@
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%% limitations under the License.
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%%--------------------------------------------------------------------
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%% Predefined functions for templating
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%% @doc This module provides a single-line expression string rendering engine.
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%% A predefined set of functions are allowed to be called in the expressions.
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%% Only simple string expressions are supported, and no control flow is allowed.
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%% However, with the help from the functions, some control flow can be achieved.
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%% For example, the `coalesce` function can be used to provide a default value,
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%% or used to choose the first non-empty value from a list of variables.
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-module(emqx_variform).
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-export([render/2]).
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-export([inject_allowed_modules/1]).
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-export([render/2, render/3]).
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render(Expression, Context) ->
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%% @doc Render a variform expression with bindings.
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%% A variform expression is a template string which supports variable substitution
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%% and function calls.
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%%
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%% The function calls are in the form of `module.function(arg1, arg2, ...)` where `module`
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%% is optional, and if not provided, the function is assumed to be in the `emqx_variform_str` module.
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%% Both module and function must be existing atoms, and only whitelisted functions are allowed.
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%%
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%% A function arg can be a constant string or a number.
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%% Strings can be quoted with single quotes or double quotes, without support of escape characters.
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%% If some special characters are needed, the function `unescape' can be used convert a escaped string
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%% to raw bytes.
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%% For example, to get the first line of a multi-line string, the expression can be
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%% `coalesce(tokens(variable_name, unescape("\n")))'.
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%%
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%% The bindings is a map of variables to their values.
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%%
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%% For unresolved variables, empty string (but not "undefined") is used.
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%% In case of runtime exeption, an error is returned.
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-spec render(string(), map()) -> {ok, binary()} | {error, term()}.
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render(Expression, Bindings) ->
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render(Expression, Bindings, #{}).
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render(Expression, Bindings, Opts) ->
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case emqx_variform_scan:string(Expression) of
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{ok, Tokens, _Line} ->
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case emqx_variform_parser:parse(Tokens) of
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{ok, Expr} ->
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eval(Expr, Context);
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eval_as_string(Expr, Bindings, Opts);
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{error, {_, emqx_variform_parser, Msg}} ->
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%% syntax error
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{error, lists:flatten(Msg)};
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@ -35,5 +64,122 @@ render(Expression, Context) ->
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{error, Reason}
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end.
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eval(Expr, _Context) ->
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io:format(user, "~p~n", [Expr]).
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eval_as_string(Expr, Bindings, _Opts) ->
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try
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{ok, iolist_to_binary(eval(Expr, Bindings))}
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catch
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throw:Reason ->
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{error, Reason};
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C:E:S ->
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{error, #{exception => C, reason => E, stack_trace => S}}
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end.
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eval({str, Str}, _Bindings) ->
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str(Str);
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eval({num, Num}, _Bindings) ->
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str(Num);
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eval({call, FuncNameStr, Args}, Bindings) ->
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{Mod, Fun} = resolve_func_name(FuncNameStr),
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ok = assert_func_exported(Mod, Fun, length(Args)),
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call(Mod, Fun, eval(Args, Bindings));
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eval({var, VarName}, Bindings) ->
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resolve_var_value(VarName, Bindings);
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eval([Arg | Args], Bindings) ->
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[eval(Arg, Bindings) | eval(Args, Bindings)];
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eval([], _Bindings) ->
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[].
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%% Some functions accept arbitrary number of arguments but implemented as /1.
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call(emqx_variform_str, concat, Args) ->
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str(emqx_variform_str:concat(Args));
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call(emqx_variform_str, coalesce, Args) ->
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str(emqx_variform_str:coalesce(Args));
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call(Mod, Fun, Args) ->
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str(erlang:apply(Mod, Fun, Args)).
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resolve_func_name(FuncNameStr) ->
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case string:tokens(FuncNameStr, ".") of
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[Mod0, Fun0] ->
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Mod =
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try
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list_to_existing_atom(Mod0)
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catch
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error:badarg ->
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throw(#{unknown_module => Mod0})
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end,
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ok = assert_module_allowed(Mod),
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Fun =
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try
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list_to_existing_atom(Fun0)
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catch
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error:badarg ->
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throw(#{unknown_function => Fun0})
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end,
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{Mod, Fun};
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[Fun] ->
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FuncName =
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try
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list_to_existing_atom(Fun)
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catch
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error:badarg ->
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throw(#{
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reason => "unknown_variform_function",
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function => Fun
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})
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end,
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{emqx_variform_str, FuncName}
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end.
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resolve_var_value(VarName, Bindings) ->
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case emqx_template:lookup_var(split(VarName), Bindings) of
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{ok, Value} ->
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str(Value);
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{error, _Reason} ->
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<<>>
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end.
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assert_func_exported(emqx_variform_str, concat, _Arity) ->
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ok;
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assert_func_exported(emqx_variform_str, coalesce, _Arity) ->
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ok;
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assert_func_exported(Mod, Fun, Arity) ->
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_ = Mod:module_info(md5),
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case erlang:function_exported(Mod, Fun, Arity) of
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true ->
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ok;
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false ->
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throw(#{
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reason => "unknown_variform_function",
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module => Mod,
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function => Fun,
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arity => Arity
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})
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end.
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assert_module_allowed(emqx_variform_str) ->
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ok;
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assert_module_allowed(Mod) ->
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Allowed = get_allowed_modules(),
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case lists:member(Mod, Allowed) of
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true ->
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ok;
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false ->
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throw(#{
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reason => "unallowed_veriform_module",
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module => Mod
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})
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end.
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inject_allowed_modules(Modules) ->
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Allowed0 = get_allowed_modules(),
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Allowed = lists:usort(Allowed0 ++ Modules),
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persistent_term:put({emqx_variform, allowed_modules}, Allowed).
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get_allowed_modules() ->
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persistent_term:get({emqx_variform, allowed_modules}, []).
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str(Value) ->
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emqx_utils_conv:bin(Value).
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split(VarName) ->
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lists:map(fun erlang:iolist_to_binary/1, string:tokens(VarName, ".")).
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@ -64,10 +64,10 @@
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%% @doc Return the first non-empty string
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coalesce(A, B) when ?IS_EMPTY(A) andalso ?IS_EMPTY(B) ->
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<<>>;
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coalesce(A, _) when is_binary(A) ->
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A;
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coalesce(_, B) ->
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B.
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coalesce(A, B) when ?IS_EMPTY(A) ->
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B;
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coalesce(A, _B) ->
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A.
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%% @doc Return the first non-empty string
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coalesce([]) ->
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@ -140,7 +140,7 @@ tokens(S, Separators, <<"nocrlf">>) ->
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%% implicit convert args to strings, and then do concatenation
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concat(S1, S2) ->
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concat([S1, S2], unicode).
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concat([S1, S2]).
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concat(List) ->
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unicode:characters_to_binary(lists:map(fun str/1, List), unicode).
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@ -145,6 +145,7 @@
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upper/1,
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split/2,
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split/3,
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concat/1,
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concat/2,
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tokens/2,
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tokens/3,
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