is_json implemented
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src/jsx_verify.erl
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src/jsx_verify.erl
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%% The MIT License
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%% Copyright (c) 2010 Alisdair Sullivan <alisdairsullivan@yahoo.ca>
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%% Permission is hereby granted, free of charge, to any person obtaining a copy
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%% of this software and associated documentation files (the "Software"), to deal
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%% in the Software without restriction, including without limitation the rights
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%% to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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%% copies of the Software, and to permit persons to whom the Software is
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%% furnished to do so, subject to the following conditions:
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%% The above copyright notice and this permission notice shall be included in
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%% all copies or substantial portions of the Software.
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%% THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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%% IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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%% FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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%% AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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%% LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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%% OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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%% THE SOFTWARE.
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-module(jsx_verify).
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-export([is_json/2]).
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-export([init/1, handle_event/2]).
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-record(opts, {
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repeated_keys = true
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}).
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-type opts() :: [].
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-spec is_json(Source::(binary() | list()), Opts::opts()) -> binary().
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is_json(Source, Opts) when (is_binary(Source) andalso is_list(Opts))
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orelse (is_list(Source) andalso is_list(Opts)) ->
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try case (gen_json:parser(?MODULE, Opts, extract_opts(Opts)))(Source) of
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{incomplete, _} -> false
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; true -> true
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end
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catch error:badarg -> false
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end.
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init(Opts) -> {parse_opts(Opts), []}.
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parse_opts(Opts) -> parse_opts(Opts, #opts{}).
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parse_opts([{repeated_keys, Val}|Rest], Opts) when Val == true; Val == false ->
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parse_opts(Rest, Opts#opts{repeated_keys = Val});
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parse_opts([repeated_keys|Rest], Opts) ->
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parse_opts(Rest, Opts#opts{repeated_keys = true});
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parse_opts([_|Rest], Opts) ->
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parse_opts(Rest, Opts);
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parse_opts([], Opts) ->
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Opts.
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extract_opts(Opts) ->
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extract_parser_opts(Opts, []).
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extract_parser_opts([], Acc) -> Acc;
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extract_parser_opts([{K,V}|Rest], Acc) ->
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case lists:member(K, [loose_unicode, escape_forward_slash, explicit_end]) of
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true -> extract_parser_opts(Rest, [{K,V}] ++ Acc)
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; false -> extract_parser_opts(Rest, Acc)
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end;
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extract_parser_opts([K|Rest], Acc) ->
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case lists:member(K, [loose_unicode, escape_forward_slash, explicit_end]) of
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true -> extract_parser_opts(Rest, [K] ++ Acc)
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; false -> extract_parser_opts(Rest, Acc)
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end.
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handle_event(end_json, _) -> true;
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handle_event(_, {Opts, _} = State) when Opts#opts.repeated_keys == true -> State;
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handle_event(start_object, {Opts, Keys}) -> {Opts, [dict:new()] ++ Keys};
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handle_event(end_object, {Opts, [_|Keys]}) -> {Opts, Keys};
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handle_event({key, Key}, {Opts, [CurrentKeys|Keys]}) ->
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case dict:is_key(Key, CurrentKeys) of
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true -> erlang:error(badarg)
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; false -> {Opts, [dict:store(Key, blah, CurrentKeys)|Keys]}
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end;
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handle_event(_, State) -> State.
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%% eunit tests
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-ifdef(TEST).
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-include_lib("eunit/include/eunit.hrl").
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true_test_() ->
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[
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{"empty object", ?_assert(is_json(<<"{}">>, []) =:= true)},
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{"empty array", ?_assert(is_json(<<"[]">>, []) =:= true)},
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{"whitespace",
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?_assert(is_json(<<" \n \t \r [true] \t \n\r ">>,
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[]
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) =:= true
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)
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},
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{"nested terms",
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?_assert(is_json(
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<<"[{ \"x\": [ {}, {}, {} ], \"y\": [{}] }, {}, [[[]]]]">>,
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[]
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) =:= true
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)
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},
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{"numbers",
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?_assert(is_json(
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<<"[ -1.0, -1, -0, 0, 1e-1, 1, 1.0, 1e1 ]">>,
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[]
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) =:= true
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)
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},
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{"strings",
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?_assert(is_json(
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<<"[ \"a\", \"string\", \"in\", \"multiple\", \"acts\" ]">>,
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[]
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) =:= true
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)
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},
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{"literals",
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?_assert(is_json(<<"[ true, false, null ]">>, []) =:= true)
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},
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{"nested objects",
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?_assert(is_json(<<"{\"key\": { \"key\": true}}">>, []) =:= true)
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},
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{"repeated key ok", ?_assert(is_json(<<"{\"key\": true, \"key\": true}">>, []) =:= true)},
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{"nested repeated key", ?_assert(is_json(<<"{\"key\": { \"key\": true }}">>,
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[{repeated_keys, false}]) =:= true)
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}
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].
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false_test_() ->
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[
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{"unbalanced list", ?_assert(is_json(<<"[[[]]">>, []) =:= false)},
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{"trailing comma",
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?_assert(is_json(<<"[ true, false, null, ]">>, []) =:= false)
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},
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{"unquoted key", ?_assert(is_json(<<"{ key: false }">>, []) =:= false)},
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{"repeated key", ?_assert(is_json(<<"{\"key\": true, \"key\": true}">>,
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[{repeated_keys, false}]) =:= false)
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},
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{"nested repeated key", ?_assert(is_json(<<"{\"key\": { \"a\": true, \"a\": false }}">>,
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[{repeated_keys, false}]) =:= false)
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}
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].
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-endif.
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