some basic tests for encoder
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src/jsx_encoder.erl
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src/jsx_encoder.erl
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%% The MIT License
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%% Copyright (c) 2011 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_encoder).
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-export([encoder/0]).
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-include("jsx_common.hrl").
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-spec encoder() -> jsx_encoder().
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encoder() -> fun(Forms) -> start(Forms) end.
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-define(ENDJSON,
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{event, end_json, fun() ->
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{incomplete, fun(Forms) -> {error, {badjson, Forms}} end}
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end}
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).
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start({string, String}) when is_list(String) ->
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{event, {string, String}, fun() -> ?ENDJSON end};
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start({float, Float}) when is_list(Float) ->
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{event, {float, Float}, fun() -> ?ENDJSON end};
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start({integer, Int}) when is_list(Int) ->
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{event, {integer, Int}, fun() -> ?ENDJSON end};
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start({literal, Atom}) when Atom == true; Atom == false; Atom == null ->
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{event, {literal, Atom}, fun() -> ?ENDJSON end};
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%% second parameter is a stack to match end_foos to start_foos
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start(Forms) -> list_or_object(Forms, []).
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list_or_object([start_object|Forms], Stack) ->
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{event, start_object, fun() -> key(Forms, [object] ++ Stack) end};
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list_or_object([start_array|Forms], Stack) ->
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{event, start_array, fun() -> value(Forms, [array] ++ Stack) end};
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list_or_object(Forms, _) -> {error, {badjson, Forms}}.
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key([{key, Key}|Forms], Stack) when is_list(Key) ->
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{event, {key, Key}, fun() -> value(Forms, Stack) end};
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key([end_object|Forms], [object|Stack]) ->
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{event, end_object, fun() -> maybe_done(Forms, Stack) end};
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key(Forms, _) -> {error, {badjson, Forms}}.
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value([{string, S}|Forms], Stack) when is_list(S) ->
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{event, {string, S}, fun() -> maybe_done(Forms, Stack) end};
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value([{float, F}|Forms], Stack) when is_list(F) ->
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{event, {float, F}, fun() -> maybe_done(Forms, Stack) end};
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value([{integer, I}|Forms], Stack) when is_list(I) ->
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{event, {integer, I}, fun() -> maybe_done(Forms, Stack) end};
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value([{literal, L}|Forms], Stack) when L == true; L == false; L == null ->
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{event, {literal, L}, fun() -> maybe_done(Forms, Stack) end};
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value([start_object|Forms], Stack) ->
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{event, start_object, fun() -> key(Forms, [object] ++ Stack) end};
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value([start_array|Forms], Stack) ->
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{event, start_array, fun() -> value(Forms, [array] ++ Stack) end};
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value([end_array|Forms], [array|Stack]) ->
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{event, end_array, fun() -> maybe_done(Forms, Stack) end};
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value(Forms, _) -> {error, {badjson, Forms}}.
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maybe_done([], []) -> ?ENDJSON;
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maybe_done([end_object|Forms], [object|Stack]) ->
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{event, end_object, fun() -> maybe_done(Forms, Stack) end};
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maybe_done([end_array|Forms], [array|Stack]) ->
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{event, end_array, fun() -> maybe_done(Forms, Stack) end};
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maybe_done(Forms, [object|_] = Stack) -> key(Forms, Stack);
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maybe_done(Forms, [array|_] = Stack) -> value(Forms, Stack);
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maybe_done(Forms, _) -> {error, {badjson, Forms}}.
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-ifdef(TEST).
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-include_lib("eunit/include/eunit.hrl").
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encode(Term) ->
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case loop((encoder())(Term), []) of
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%% unwrap naked values
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{ok, [Term]} -> true
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; {ok, Term} -> true
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; {error, badjson} -> false
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end.
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loop({error, _}, _Acc) ->
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{error, badjson};
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loop({event, end_json, Next}, Acc) ->
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{incomplete, F} = Next(),
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{error, {badjson, []}} = F([]),
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{ok, lists:reverse(Acc)};
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loop({event, Event, Next}, Acc) -> loop(Next(), [Event] ++ Acc).
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encode_test_() ->
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[
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{"empty object", ?_assert(encode([start_object, end_object]) =:= true)},
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{"empty array", ?_assert(encode([start_array, end_array]) =:= true)},
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{"nested empty objects", ?_assert(encode([start_object,
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{key, "empty object"},
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start_object,
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{key, "empty object"},
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start_object,
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end_object,
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end_object,
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end_object
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]) =:= true)},
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{"nested empty arrays", ?_assert(encode([start_array,
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start_array,
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start_array,
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end_array,
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end_array,
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end_array
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]) =:= true)},
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{"simple object", ?_assert(encode([start_object,
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{key, "a"},
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{string, "hello"},
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{key, "b"},
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{integer, "1"},
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{key, "c"},
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{float, "1.0"},
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{key, "d"},
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{literal, true},
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end_object
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]) =:= true)},
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{"simple array", ?_assert(encode([start_array,
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{string, "hello"},
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{integer, "1"},
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{float, "1.0"},
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{literal, true},
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end_array
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]) =:= true)},
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{"unbalanced array", ?_assert(encode([start_array,
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end_array,
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end_array
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]) =:= false)},
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{"naked string", ?_assert(encode({string, "hello"}) =:= true)},
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{"naked literal", ?_assert(encode({literal, true}) =:= true)},
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{"naked integer", ?_assert(encode({integer, "1"}) =:= true)},
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{"naked float", ?_assert(encode({float, "1.0"}) =:= true)}
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].
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-endif.
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