switch to a counting implementation of number parsing a la strings
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parent
e5e04db58e
commit
e2ba87f1cb
1 changed files with 154 additions and 84 deletions
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@ -58,12 +58,7 @@ resume(Rest, State, Handler, Acc, Stack, Config) ->
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colon -> colon(Rest, Handler, Stack, Config);
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key -> key(Rest, Handler, Stack, Config);
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string -> string(Rest, Handler, Acc, Stack, Config);
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integer -> integer(Rest, Handler, Acc, Stack, Config);
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decimal -> decimal(Rest, Handler, Acc, Stack, Config);
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e -> e(Rest, Handler, Acc, Stack, Config);
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ex -> ex(Rest, Handler, Acc, Stack, Config);
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exp -> exp(Rest, Handler, Acc, Stack, Config);
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zero -> zero(Rest, Handler, Acc, Stack, Config);
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number -> number(Rest, Handler, Acc, Stack, Config);
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true -> true(Rest, Handler, Stack, Config);
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false -> false(Rest, Handler, Stack, Config);
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null -> null(Rest, Handler, Stack, Config);
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@ -188,27 +183,27 @@ value(<<$f, $a, $l, $s, $e, Rest/binary>>, Handler, Stack, Config) ->
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value(<<$n, $u, $l, $l, Rest/binary>>, Handler, Stack, Config) ->
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maybe_done(Rest, handle_event({literal, null}, Handler, Config), Stack, Config);
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value(<<?zero, Rest/binary>>, Handler, Stack, Config) ->
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zero(Rest, Handler, [$0], Stack, Config);
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number(Rest, Handler, [?zero], [zero|Stack], Config);
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value(<<$1, Rest/binary>>, Handler, Stack, Config) ->
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integer(Rest, Handler, [$1], Stack, Config);
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number(Rest, Handler, [$1], [integer|Stack], Config);
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value(<<$2, Rest/binary>>, Handler, Stack, Config) ->
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integer(Rest, Handler, [$2], Stack, Config);
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number(Rest, Handler, [$2], [integer|Stack], Config);
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value(<<$3, Rest/binary>>, Handler, Stack, Config) ->
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integer(Rest, Handler, [$3], Stack, Config);
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number(Rest, Handler, [$3], [integer|Stack], Config);
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value(<<$4, Rest/binary>>, Handler, Stack, Config) ->
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integer(Rest, Handler, [$4], Stack, Config);
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number(Rest, Handler, [$4], [integer|Stack], Config);
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value(<<$5, Rest/binary>>, Handler, Stack, Config) ->
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integer(Rest, Handler, [$5], Stack, Config);
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number(Rest, Handler, [$5], [integer|Stack], Config);
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value(<<$6, Rest/binary>>, Handler, Stack, Config) ->
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integer(Rest, Handler, [$6], Stack, Config);
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number(Rest, Handler, [$6], [integer|Stack], Config);
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value(<<$7, Rest/binary>>, Handler, Stack, Config) ->
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integer(Rest, Handler, [$7], Stack, Config);
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number(Rest, Handler, [$7], [integer|Stack], Config);
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value(<<$8, Rest/binary>>, Handler, Stack, Config) ->
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integer(Rest, Handler, [$8], Stack, Config);
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number(Rest, Handler, [$8], [integer|Stack], Config);
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value(<<$9, Rest/binary>>, Handler, Stack, Config) ->
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integer(Rest, Handler, [$9], Stack, Config);
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number(Rest, Handler, [$9], [integer|Stack], Config);
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value(<<?negative, Rest/binary>>, Handler, Stack, Config) ->
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negative(Rest, Handler, [$-], Stack, Config);
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number(Rest, Handler, [$-], [negative|Stack], Config);
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value(<<?newline, Rest/binary>>, Handler, Stack, Config) ->
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value(Rest, Handler, Stack, Config);
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value(<<$t, Rest/binary>>, Handler, Stack, Config) ->
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@ -384,9 +379,9 @@ string(<<239, 191, 190, Rest/binary>>, Handler, Acc, Stack, Config) ->
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string(Rest, Handler, [Acc, <<16#fffe/utf8>>], Stack, Config);
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string(<<239, 191, 191, Rest/binary>>, Handler, Acc, Stack, Config) ->
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string(Rest, Handler, [Acc, <<16#ffff/utf8>>], Stack, Config);
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%% partial utf8 codepoints
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string(<<>>, Handler, Acc, Stack, Config) ->
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incomplete(string, <<>>, Handler, Acc, Stack, Config);
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%% partial utf8 codepoints
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string(<<X>>, Handler, Acc, Stack, Config) when X >= 2#11000000 ->
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incomplete(string, <<X>>, Handler, Acc, Stack, Config);
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string(<<X, Y>>, Handler, Acc, Stack, Config) when X >= 2#11100000, Y >= 2#10000000 ->
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@ -849,98 +844,173 @@ to_hex(15) -> $f;
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to_hex(X) -> X + 48.
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%% like in strings, there's some pseudo states in here that will never
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%% show up in incompletes. some show up in value, some show up in
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%% integer, decimal or exp
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negative(<<$0, Rest/binary>>, Handler, Acc, Stack, Config) ->
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zero(Rest, Handler, [Acc, $0], Stack, Config);
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negative(<<S, Rest/binary>>, Handler, Acc, Stack, Config) when ?is_nonzero(S) ->
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integer(Rest, Handler, [Acc, S], Stack, Config);
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negative(<<>>, Handler, [?negative], Stack, Config) ->
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incomplete(value, <<?negative>>, Handler, Stack, Config);
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negative(Bin, Handler, Acc, Stack, Config) ->
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?error(negative, Bin, Handler, Acc, Stack, Config).
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number(<<$e, Rest/binary>>, Handler, Acc, [integer|Stack], Config) ->
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number(Rest, Handler, [Acc, $., $0, $e], [e|Stack], Config);
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number(<<$E, Rest/binary>>, Handler, Acc, [integer|Stack], Config) ->
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number(Rest, Handler, [Acc, $., $0, $e], [e|Stack], Config);
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number(<<$e, Rest/binary>>, Handler, Acc, [zero|Stack], Config) ->
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number(Rest, Handler, [Acc, $., $0, $e], [e|Stack], Config);
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number(<<$E, Rest/binary>>, Handler, Acc, [zero|Stack], Config) ->
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number(Rest, Handler, [Acc, $., $0, $e], [e|Stack], Config);
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number(<<>>, Handler, Acc, [State|Stack], Config=#config{stream=false}) ->
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NumType = case State of
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zero -> integer;
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integer -> integer;
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decimal -> float;
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exp -> float
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end,
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finish_number(<<>>, Handler, {NumType, iolist_to_binary(Acc)}, Stack, Config);
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number(<<>>, Handler, Acc, Stack, Config) ->
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incomplete(number, <<>>, Handler, Acc, Stack, Config);
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number(Bin, Handler, Acc, [State|Stack], Config) ->
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Counted = case State of
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zero -> zero(Bin, 0);
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integer -> integer(Bin, 0);
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negative -> negative(Bin, 0);
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initialdecimal -> initialdecimal(Bin, 0);
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decimal -> decimal(Bin, 0);
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e -> e(Bin, 0);
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ex -> ex(Bin, 0);
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exp -> exp(Bin, 0)
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end,
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case Counted of
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{finish_integer, Size} ->
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<<Clean:Size/binary, Rest/binary>> = Bin,
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finish_number(Rest, Handler, {integer, iolist_to_binary([Acc, Clean])}, Stack, Config);
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{finish_float, Size} ->
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<<Clean:Size/binary, Rest/binary>> = Bin,
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finish_number(Rest, Handler, {float, iolist_to_binary([Acc, Clean])}, Stack, Config);
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{error, Size} ->
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<<Clean:Size/binary, Rest/binary>> = Bin,
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?error(number, Rest, Handler, [Acc, Clean], Stack, Config);
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{NewState, Size} ->
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<<Clean:Size/binary, Rest/binary>> = Bin,
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number(Rest, Handler, [Acc, Clean], [NewState|Stack], Config)
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end.
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zero(<<?decimalpoint, Rest/binary>>, Handler, Acc, Stack, Config) ->
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decimal(Rest, Handler, [Acc, ?decimalpoint], Stack, Config);
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zero(<<S, Rest/binary>>, Handler, Acc, Stack, Config) when S =:= $e; S =:= $E ->
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e(Rest, Handler, [Acc, ".0e"], Stack, Config);
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zero(Bin, Handler, Acc, Stack, Config) ->
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finish_number(Bin, Handler, {zero, iolist_to_binary(Acc)}, Stack, Config).
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zero(<<?decimalpoint, Rest/binary>>, N) -> initialdecimal(Rest, N + 1);
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zero(<<>>, N) -> {zero, N};
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zero(_, N) -> {finish_integer, N}.
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integer(<<S, Rest/binary>>, Handler, Acc, Stack, Config) when S =:= ?zero; ?is_nonzero(S) ->
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integer(Rest, Handler, [Acc, S], Stack, Config);
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integer(<<?decimalpoint, Rest/binary>>, Handler, Acc, Stack, Config) ->
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initialdecimal(Rest, Handler, [Acc, ?decimalpoint], Stack, Config);
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integer(<<S, Rest/binary>>, Handler, Acc, Stack, Config) when S =:= $e; S =:= $E ->
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e(Rest, Handler, [Acc, ".0e"], Stack, Config);
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integer(Bin, Handler, Acc, Stack, Config) ->
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finish_number(Bin, Handler, {integer, iolist_to_binary(Acc)}, Stack, Config).
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integer(<<$0, Rest/binary>>, N) -> integer(Rest, N + 1);
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integer(<<$1, Rest/binary>>, N) -> integer(Rest, N + 1);
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integer(<<$2, Rest/binary>>, N) -> integer(Rest, N + 1);
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integer(<<$3, Rest/binary>>, N) -> integer(Rest, N + 1);
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integer(<<$4, Rest/binary>>, N) -> integer(Rest, N + 1);
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integer(<<$5, Rest/binary>>, N) -> integer(Rest, N + 1);
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integer(<<$6, Rest/binary>>, N) -> integer(Rest, N + 1);
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integer(<<$7, Rest/binary>>, N) -> integer(Rest, N + 1);
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integer(<<$8, Rest/binary>>, N) -> integer(Rest, N + 1);
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integer(<<$9, Rest/binary>>, N) -> integer(Rest, N + 1);
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integer(<<?decimalpoint, Rest/binary>>, N) -> initialdecimal(Rest, N + 1);
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integer(<<$e, _/binary>>, N) -> {integer, N};
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integer(<<$E, _/binary>>, N) -> {integer, N};
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integer(<<>>, N) -> {integer, N};
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integer(_, N) -> {finish_integer, N}.
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initialdecimal(<<S, Rest/binary>>, Handler, Acc, Stack, Config) when S =:= ?zero; ?is_nonzero(S) ->
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decimal(Rest, Handler, [Acc, S], Stack, Config);
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initialdecimal(<<>>, Handler, Acc, Stack, Config) ->
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[?decimalpoint|Rest] = lists:reverse(Acc),
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incomplete(integer, <<?decimalpoint>>, Handler, lists:reverse(Rest), Stack, Config);
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initialdecimal(Bin, Handler, Acc, Stack, Config) ->
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?error(initialdecimal, Bin, Handler, Acc, Stack, Config).
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negative(<<$0, Rest/binary>>, N) -> zero(Rest, N + 1);
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negative(<<$1, Rest/binary>>, N) -> integer(Rest, N + 1);
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negative(<<$2, Rest/binary>>, N) -> integer(Rest, N + 1);
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negative(<<$3, Rest/binary>>, N) -> integer(Rest, N + 1);
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negative(<<$4, Rest/binary>>, N) -> integer(Rest, N + 1);
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negative(<<$5, Rest/binary>>, N) -> integer(Rest, N + 1);
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negative(<<$6, Rest/binary>>, N) -> integer(Rest, N + 1);
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negative(<<$7, Rest/binary>>, N) -> integer(Rest, N + 1);
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negative(<<$8, Rest/binary>>, N) -> integer(Rest, N + 1);
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negative(<<$9, Rest/binary>>, N) -> integer(Rest, N + 1);
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negative(<<>>, N) -> {negative, N};
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negative(_, N) -> {error, N}.
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decimal(<<S, Rest/binary>>, Handler, Acc, Stack, Config) when S =:= ?zero; ?is_nonzero(S) ->
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decimal(Rest, Handler, [Acc, S], Stack, Config);
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decimal(<<S, Rest/binary>>, Handler, Acc, Stack, Config) when S =:= $e; S =:= $E ->
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e(Rest, Handler, [Acc, $e], Stack, Config);
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decimal(Bin, Handler, Acc, Stack, Config) ->
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finish_number(Bin, Handler, {decimal, iolist_to_binary(Acc)}, Stack, Config).
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initialdecimal(<<$0, Rest/binary>>, N) -> decimal(Rest, N + 1);
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initialdecimal(<<$1, Rest/binary>>, N) -> decimal(Rest, N + 1);
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initialdecimal(<<$2, Rest/binary>>, N) -> decimal(Rest, N + 1);
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initialdecimal(<<$3, Rest/binary>>, N) -> decimal(Rest, N + 1);
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initialdecimal(<<$4, Rest/binary>>, N) -> decimal(Rest, N + 1);
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initialdecimal(<<$5, Rest/binary>>, N) -> decimal(Rest, N + 1);
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initialdecimal(<<$6, Rest/binary>>, N) -> decimal(Rest, N + 1);
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initialdecimal(<<$7, Rest/binary>>, N) -> decimal(Rest, N + 1);
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initialdecimal(<<$8, Rest/binary>>, N) -> decimal(Rest, N + 1);
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initialdecimal(<<$9, Rest/binary>>, N) -> decimal(Rest, N + 1);
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initialdecimal(<<>>, N) -> {initialdecimal, N};
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initialdecimal(_, N) -> {error, N}.
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e(<<S, Rest/binary>>, Handler, Acc, Stack, Config) when S =:= ?zero; ?is_nonzero(S) ->
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exp(Rest, Handler, [Acc, S], Stack, Config);
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e(<<Sign, Rest/binary>>, Handler, Acc, Stack, Config) when Sign =:= ?positive; Sign =:= ?negative ->
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ex(Rest, Handler, [Acc, Sign], Stack, Config);
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e(<<>>, Handler, Acc, Stack, Config) ->
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incomplete(e, <<>>, Handler, Acc, Stack, Config);
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e(Bin, Handler, Acc, Stack, Config) ->
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?error(e, Bin, Handler, Acc, Stack, Config).
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decimal(<<$0, Rest/binary>>, N) -> decimal(Rest, N + 1);
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decimal(<<$1, Rest/binary>>, N) -> decimal(Rest, N + 1);
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decimal(<<$2, Rest/binary>>, N) -> decimal(Rest, N + 1);
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decimal(<<$3, Rest/binary>>, N) -> decimal(Rest, N + 1);
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decimal(<<$4, Rest/binary>>, N) -> decimal(Rest, N + 1);
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decimal(<<$5, Rest/binary>>, N) -> decimal(Rest, N + 1);
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decimal(<<$6, Rest/binary>>, N) -> decimal(Rest, N + 1);
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decimal(<<$7, Rest/binary>>, N) -> decimal(Rest, N + 1);
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decimal(<<$8, Rest/binary>>, N) -> decimal(Rest, N + 1);
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decimal(<<$9, Rest/binary>>, N) -> decimal(Rest, N + 1);
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decimal(<<$e, Rest/binary>>, N) -> e(Rest, N + 1);
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decimal(<<$E, Rest/binary>>, N) -> e(Rest, N + 1);
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decimal(<<>>, N) -> {decimal, N};
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decimal(_, N) -> {finish_float, N}.
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ex(<<S, Rest/binary>>, Handler, Acc, Stack, Config) when S =:= ?zero; ?is_nonzero(S) ->
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exp(Rest, Handler, [Acc, S], Stack, Config);
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ex(<<>>, Handler, Acc, Stack, Config) ->
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incomplete(ex, <<>>, Handler, Acc, Stack, Config);
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ex(Bin, Handler, Acc, Stack, Config) ->
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?error(ex, Bin, Handler, Acc, Stack, Config).
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e(<<$0, Rest/binary>>, N) -> exp(Rest, N + 1);
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e(<<$1, Rest/binary>>, N) -> exp(Rest, N + 1);
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e(<<$2, Rest/binary>>, N) -> exp(Rest, N + 1);
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e(<<$3, Rest/binary>>, N) -> exp(Rest, N + 1);
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e(<<$4, Rest/binary>>, N) -> exp(Rest, N + 1);
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e(<<$5, Rest/binary>>, N) -> exp(Rest, N + 1);
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e(<<$6, Rest/binary>>, N) -> exp(Rest, N + 1);
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e(<<$7, Rest/binary>>, N) -> exp(Rest, N + 1);
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e(<<$8, Rest/binary>>, N) -> exp(Rest, N + 1);
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e(<<$9, Rest/binary>>, N) -> exp(Rest, N + 1);
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e(<<?positive, Rest/binary>>, N) -> ex(Rest, N + 1);
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e(<<?negative, Rest/binary>>, N) -> ex(Rest, N + 1);
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e(<<>>, N) -> {e, N};
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e(_, N) -> {error, N}.
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exp(<<S, Rest/binary>>, Handler, Acc, Stack, Config) when S =:= ?zero; ?is_nonzero(S) ->
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exp(Rest, Handler, [Acc, S], Stack, Config);
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exp(Bin, Handler, Acc, Stack, Config) ->
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finish_number(Bin, Handler, {exp, iolist_to_binary(Acc)}, Stack, Config).
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ex(<<$0, Rest/binary>>, N) -> exp(Rest, N + 1);
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ex(<<$1, Rest/binary>>, N) -> exp(Rest, N + 1);
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ex(<<$2, Rest/binary>>, N) -> exp(Rest, N + 1);
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ex(<<$3, Rest/binary>>, N) -> exp(Rest, N + 1);
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ex(<<$4, Rest/binary>>, N) -> exp(Rest, N + 1);
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ex(<<$5, Rest/binary>>, N) -> exp(Rest, N + 1);
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ex(<<$6, Rest/binary>>, N) -> exp(Rest, N + 1);
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ex(<<$7, Rest/binary>>, N) -> exp(Rest, N + 1);
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ex(<<$8, Rest/binary>>, N) -> exp(Rest, N + 1);
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ex(<<$9, Rest/binary>>, N) -> exp(Rest, N + 1);
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ex(<<>>, N) -> {ex, N};
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ex(_, N) -> {error, N}.
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exp(<<$0, Rest/binary>>, N) -> exp(Rest, N + 1);
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exp(<<$1, Rest/binary>>, N) -> exp(Rest, N + 1);
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exp(<<$2, Rest/binary>>, N) -> exp(Rest, N + 1);
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exp(<<$3, Rest/binary>>, N) -> exp(Rest, N + 1);
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exp(<<$4, Rest/binary>>, N) -> exp(Rest, N + 1);
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exp(<<$5, Rest/binary>>, N) -> exp(Rest, N + 1);
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exp(<<$6, Rest/binary>>, N) -> exp(Rest, N + 1);
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exp(<<$7, Rest/binary>>, N) -> exp(Rest, N + 1);
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exp(<<$8, Rest/binary>>, N) -> exp(Rest, N + 1);
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exp(<<$9, Rest/binary>>, N) -> exp(Rest, N + 1);
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exp(<<>>, N) -> {exp, N};
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exp(_, N) -> {finish_float, N}.
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finish_number(Rest, Handler, Acc, [], Config=#config{stream=false}) ->
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maybe_done(Rest, handle_event(format_number(Acc), Handler, Config), [], Config);
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finish_number(<<>>, Handler, {NumType, Acc}, Stack, Config) ->
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incomplete(NumType, <<>>, Handler, Acc, Stack, Config);
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finish_number(Rest, Handler, Acc, Stack, Config) ->
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maybe_done(Rest, handle_event(format_number(Acc), Handler, Config), Stack, Config).
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-ifndef(no_binary_to_whatever).
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format_number({zero, Acc}) -> {integer, binary_to_integer(Acc)};
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format_number({integer, Acc}) -> {integer, binary_to_integer(Acc)};
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format_number({decimal, Acc}) -> {float, binary_to_float(Acc)};
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format_number({exp, Acc}) -> {float, binary_to_float(Acc)}.
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format_number({float, Acc}) -> {float, binary_to_float(Acc)}.
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-endif.
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-ifdef(no_binary_to_whatever).
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format_number({zero, Acc}) -> {integer, list_to_integer(unicode:characters_to_list(Acc))};
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format_number({integer, Acc}) -> {integer, list_to_integer(unicode:characters_to_list(Acc))};
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format_number({decimal, Acc}) -> {float, list_to_float(unicode:characters_to_list(Acc))};
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format_number({exp, Acc}) -> {float, list_to_float(unicode:characters_to_list(Acc))}.
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format_number({float, Acc}) -> {float, list_to_float(unicode:characters_to_list(Acc))}.
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-endif.
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