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authorAnders Svensson <[email protected]>2017-04-27 22:09:59 +0200
committerAnders Svensson <[email protected]>2017-06-13 13:50:06 +0200
commitcfbe969341068623e609fd25c9c5f56b1fdc9458 (patch)
tree6c7844a9913ea7b8529314295d57c2056ed6707e /lib/diameter/test/diameter_codec_test.erl
parent2e222053c23054dafcbd9ced1072667a3d7f065a (diff)
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Adapt test suites to modified encode/decode
Diffstat (limited to 'lib/diameter/test/diameter_codec_test.erl')
-rw-r--r--lib/diameter/test/diameter_codec_test.erl23
1 files changed, 16 insertions, 7 deletions
diff --git a/lib/diameter/test/diameter_codec_test.erl b/lib/diameter/test/diameter_codec_test.erl
index e041500b37..ccb97615da 100644
--- a/lib/diameter/test/diameter_codec_test.erl
+++ b/lib/diameter/test/diameter_codec_test.erl
@@ -94,7 +94,7 @@ base(T) ->
%% Ensure that 'zero' values encode only zeros.
base(zero = T, F) ->
- B = diameter_types:F(encode, T),
+ B = diameter_types:F(encode, T, opts()),
B = z(B);
%% Ensure that we can decode what we encode and vice-versa, and that
@@ -106,7 +106,7 @@ base(decode, F) ->
[] = run([[fun base_invalid/2, F, V] || V <- Is]).
base_decode(F, Eq, Value) ->
- d(fun(X,V) -> diameter_types:F(X,V) end, Eq, Value).
+ d(fun(X,V) -> diameter_types:F(X, V, opts()) end, Eq, Value).
base_invalid(F, Value) ->
try
@@ -207,12 +207,21 @@ avp_decode(Mod, Name, Type, Eq, Value) ->
d(fun(X,V) -> avp(Mod, X, V, Name, Type) end, Eq, Value).
avp(Mod, decode = X, V, Name, 'Grouped') ->
- {Rec, _} = Mod:avp(X, V, Name),
+ {Rec, _} = Mod:avp(X, V, Name, opts(Mod)),
Rec;
avp(Mod, decode = X, V, Name, _) ->
- Mod:avp(X, V, Name);
+ Mod:avp(X, V, Name, opts(Mod));
avp(Mod, encode = X, V, Name, _) ->
- iolist_to_binary(Mod:avp(X, V, Name)).
+ iolist_to_binary(Mod:avp(X, V, Name, opts(Mod))).
+
+opts(Mod) ->
+ (opts())#{dictionary => Mod}.
+
+opts() ->
+ #{string_decode => true,
+ strict_mbit => true,
+ rfc => 6733,
+ failed_avp => false}.
%% v/1
@@ -259,8 +268,8 @@ arity(M, Name, AvpName, Rec) ->
enum(M, Name, {_,E}) ->
B = <<E:32>>,
- B = M:avp(encode, E, Name),
- E = M:avp(decode, B, Name).
+ B = M:avp(encode, E, Name, opts(M)),
+ E = M:avp(decode, B, Name, opts(M)).
retag(import_avps) -> avp_types;
retag(import_groups) -> grouped;