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-rw-r--r--lib/stdlib/src/io_lib.erl58
-rw-r--r--lib/stdlib/test/io_SUITE.erl30
2 files changed, 57 insertions, 31 deletions
diff --git a/lib/stdlib/src/io_lib.erl b/lib/stdlib/src/io_lib.erl
index cacd9f2524..e37c13093b 100644
--- a/lib/stdlib/src/io_lib.erl
+++ b/lib/stdlib/src/io_lib.erl
@@ -931,7 +931,7 @@ limit_term(Term, Depth) ->
limit(_, 0) -> '...';
limit([H|T]=L, D) ->
if
- D =:= 1 -> '...';
+ D =:= 1 -> ['...'];
true ->
case printable_list(L) of
true -> L;
@@ -944,7 +944,7 @@ limit(Term, D) when is_map(Term) ->
limit({}=T, _D) -> T;
limit(T, D) when is_tuple(T) ->
if
- D =:= 1 -> '...';
+ D =:= 1 -> {'...'};
true ->
list_to_tuple([limit(element(1, T), D-1)|
limit_tail(tl(tuple_to_list(T)), D-1)])
@@ -961,32 +961,29 @@ limit_tail(Other, D) ->
%% Cannot limit maps properly since there is no guarantee that
%% maps:from_list() creates a map with the same internal ordering of
-%% the selected associations as in Map.
+%% the selected associations as in Map. Instead of subtracting one
+%% from the depth as the map associations are traversed (as is done
+%% for tuples and lists), the same depth is applied to each and every
+%% (returned) association.
limit_map(Map, D) ->
- limit_map(maps:iterator(Map), D, []).
+ %% Keep one extra association to make sure the final ',...' is included.
+ limit_map_body(maps:iterator(Map), D + 1, D, []).
-limit_map(_I, 0, Acc) ->
+limit_map_body(_I, 0, _D0, Acc) ->
maps:from_list(Acc);
-limit_map(I, D, Acc) ->
+limit_map_body(I, D, D0, Acc) ->
case maps:next(I) of
{K, V, NextI} ->
- limit_map(NextI, D-1, [{K,V} | Acc]);
+ limit_map_body(NextI, D-1, D0, [limit_map_assoc(K, V, D0) | Acc]);
none ->
maps:from_list(Acc)
end.
-%% maps:from_list(limit_map_body(erts_internal:maps_to_list(Map, D), D)).
+limit_map_assoc(K, V, D) ->
+ %% Keep keys as are to avoid creating duplicated keys.
+ {K, limit(V, D - 1)}.
-%% limit_map_body(_, 0) -> [{'...', '...'}];
-%% limit_map_body([], _) -> [];
-%% limit_map_body([{K,V}], D) -> [limit_map_assoc(K, V, D)];
-%% limit_map_body([{K,V}|KVs], D) ->
-%% [limit_map_assoc(K, V, D) | limit_map_body(KVs, D-1)].
-
-%% limit_map_assoc(K, V, D) ->
-%% {limit(K, D-1), limit(V, D-1)}.
-
-limit_bitstring(B, _D) -> B. %% Keeps all printable binaries.
+limit_bitstring(B, _D) -> B. % Keeps all printable binaries.
test_limit(_, 0) -> throw(limit);
test_limit([H|T]=L, D) when is_integer(D) ->
@@ -1022,18 +1019,21 @@ test_limit_tuple(T, I, Sz, D) ->
test_limit(element(I, T), D-1),
test_limit_tuple(T, I+1, Sz, D-1).
-test_limit_map(_Map, _D) -> ok.
-%% test_limit_map_body(erts_internal:maps_to_list(Map, D), D).
+test_limit_map(Map, D) ->
+ test_limit_map_body(maps:iterator(Map), D).
-%% test_limit_map_body(_, 0) -> throw(limit);
-%% test_limit_map_body([], _) -> ok;
-%% test_limit_map_body([{K,V}], D) -> test_limit_map_assoc(K, V, D);
-%% test_limit_map_body([{K,V}|KVs], D) ->
-%% test_limit_map_assoc(K, V, D),
-%% test_limit_map_body(KVs, D-1).
+test_limit_map_body(_I, 0) -> throw(limit); % cannot happen
+test_limit_map_body(I, D) ->
+ case maps:next(I) of
+ {K, V, NextI} ->
+ test_limit_map_assoc(K, V, D),
+ test_limit_map_body(NextI, D-1);
+ none ->
+ ok
+ end.
-%% test_limit_map_assoc(K, V, D) ->
-%% test_limit(K, D-1),
-%% test_limit(V, D-1).
+test_limit_map_assoc(K, V, D) ->
+ test_limit(K, D - 1),
+ test_limit(V, D - 1).
test_limit_bitstring(_, _) -> ok.
diff --git a/lib/stdlib/test/io_SUITE.erl b/lib/stdlib/test/io_SUITE.erl
index 45363c0592..d29f4c016d 100644
--- a/lib/stdlib/test/io_SUITE.erl
+++ b/lib/stdlib/test/io_SUITE.erl
@@ -2384,19 +2384,36 @@ limit_term(_Config) ->
{_, 2} = limt({a,b,c,[d,e]}, 2),
{_, 2} = limt({a,b,c,[d,e]}, 3),
{_, 2} = limt({a,b,c,[d,e]}, 4),
+ T0 = [1|{a,b,c}],
+ {_, 2} = limt(T0, 2),
+ {_, 2} = limt(T0, 3),
+ {_, 2} = limt(T0, 4),
{_, 1} = limt(<<"foo">>, 18),
+ {_, 2} = limt({"",[1,2]}, 3),
+ {_, 2} = limt({"",{1,2}}, 3),
+ true = limt_pp({"123456789012345678901234567890",{1,2}}, 3),
ok = blimt(<<"123456789012345678901234567890">>),
+ true = limt_pp(<<"123456789012345678901234567890">>, 3),
+ {_, 2} = limt({<<"kljlkjsl">>,[1,2,3,4]}, 4),
{_, 1} = limt(<<7:3>>, 2),
{_, 1} = limt(<<7:21>>, 2),
{_, 1} = limt([], 2),
{_, 1} = limt({}, 2),
+ {_, 1} = limt({"", ""}, 4),
{_, 1} = limt(#{}, 2),
- {_, 1} = limt(#{[] => {}}, 2),
+ {_, 2} = limt(#{[] => {}}, 1),
+ {_, 2} = limt(#{[] => {}}, 2),
{_, 1} = limt(#{[] => {}}, 3),
T = #{[] => {},[a] => [b]},
- {_, 1} = limt(T, 2),
+ {_, 1} = limt(T, 0),
+ {_, 2} = limt(T, 1),
+ {_, 2} = limt(T, 2),
{_, 1} = limt(T, 3),
{_, 1} = limt(T, 4),
+ T2 = #{[] => {},{} => []},
+ {_, 2} = limt(T2, 1),
+ {_, 2} = limt(T2, 2),
+ {_, 1} = limt(T2, 3),
ok.
blimt(Binary) ->
@@ -2430,3 +2447,12 @@ limt(Term, Depth) when is_integer(Depth) ->
form(Term, Depth) ->
lists:flatten(io_lib:format("~W", [Term, Depth])).
+
+limt_pp(Term, Depth) when is_integer(Depth) ->
+ T1 = io_lib:limit_term(Term, Depth),
+ S = pp(Term, Depth),
+ S1 = pp(T1, Depth),
+ S1 =:= S.
+
+pp(Term, Depth) ->
+ lists:flatten(io_lib:format("~P", [Term, Depth])).