Saving more stuff, definitely WIP
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@ -51,6 +51,7 @@
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-record(record, {ann,fields}).
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-record(field, {ann,name,value}). %A record field
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-record(proj, {ann,value}). %?
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-record(map, {ann,fields}).
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-record(app, {ann,func,args}).
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-record(typed, {ann,expr,type}).
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@ -66,10 +67,10 @@ encode(ContractString, Options) when is_binary(ContractString) ->
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encode(ContractString, Options) ->
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try
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Ast = parse(ContractString, Options),
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io:format("Ast\n~p\n", [Ast]),
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%% io:format("Ast\n~p\n", [Ast]),
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%% aeso_ast:pp(Ast),
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TypedAst = aeso_ast_infer_types:infer(Ast, Options),
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io:format("Typed ast\n~p\n", [TypedAst]),
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%% io:format("Typed ast\n~p\n", [TypedAst]),
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%% aeso_ast:pp_typed(TypedAst),
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%% We find and look at the last contract.
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Contract = lists:last(TypedAst),
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@ -141,7 +142,7 @@ encode_type(#tuple_t{args=As}) ->
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encode_type(#bytes_t{len=Len}) ->
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{<<"bytes">>, Len};
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encode_type(#record_t{fields=Fs}) ->
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Efs = encode_field_types(Fs),
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Efs = encode_rec_field_types(Fs),
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[{<<"record">>,Efs}];
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encode_type(#app_t{id=Id,fields=Fs}) ->
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Name = encode_type(Id),
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@ -162,14 +163,14 @@ encode_type(#fun_t{args=As,type=T}) ->
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encode_name(Name) ->
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list_to_binary(Name).
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%% encode_field_types(Fields) -> [JSON].
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%% encode_field_type(Field) -> JSON.
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%% encode_rec_field_types(Fields) -> [JSON].
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%% encode_rec_field_type(Field) -> JSON.
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%% Encode a record field type.
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encode_field_types(Fs) ->
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[ encode_field_type(F) || F <- Fs ].
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encode_rec_field_types(Fs) ->
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[ encode_rec_field_type(F) || F <- Fs ].
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encode_field_type(#field_t{id=Id,type=T}) ->
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encode_rec_field_type(#field_t{id=Id,type=T}) ->
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[{<<"name">>,encode_type(Id)},
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{<<"type">>,[encode_type(T)]}].
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@ -210,7 +211,7 @@ encode_expr(#qid{names=Ns}) ->
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encode_name(lists:join(".", Ns));
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encode_expr(#qcon{names=Ns}) ->
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encode_name(lists:join(".", Ns)); %?
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encode_expr(#typed{expr=E}) ->
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encode_expr(#typed{expr=E}) -> %Ignore the type
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encode_expr(E);
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encode_expr(#bool{bool=B}) -> B;
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encode_expr(#int{value=V}) -> V;
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@ -223,8 +224,11 @@ encode_expr(#list{args=As}) ->
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Eas = encode_exprs(As),
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[{<<"list">>,Eas}];
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encode_expr(#record{fields=Fs}) ->
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Efs = encode_field_exprs(Fs),
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Efs = encode_rec_field_exprs(Fs),
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[{<<"record">>,Efs}];
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encode_expr(#map{fields=Fs}) ->
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Efs = encode_map_field_exprs(Fs),
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[{<<"map">>,Efs}];
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encode_expr(#proj{value=V}) ->
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encode_expr(V);
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encode_expr(#app{func=F,args=As}) ->
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@ -235,17 +239,28 @@ encode_expr(#app{func=F,args=As}) ->
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encode_expr({Op,_Ann}) ->
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list_to_binary(atom_to_list(Op)).
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%% encode_field_exprs(Fields) -> [JSON].
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%% encode_field_expr(Field) -> JSON.
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%% encode_rec_field_exprs(Fields) -> [JSON].
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%% encode_rec_field_expr(Field) -> JSON.
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%% Encode a record field expression.
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encode_field_exprs(Fs) ->
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[ encode_field_expr(F) || F <- Fs ].
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encode_rec_field_exprs(Fs) ->
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[ encode_rec_field_expr(F) || F <- Fs ].
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encode_field_expr(#field{name=[N],value=V}) ->
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encode_rec_field_expr(#field{name=[N],value=V}) ->
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[{<<"name">>,encode_expr(N)},
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{<<"value">>,[encode_expr(V)]}].
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%% encode_map_field_exprs(Fields) -> [JSON].
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%% encode_map_field_expr(Field) -> JSON.
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%% Encode a map field expression.
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encode_map_field_exprs(Fs) ->
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[ encode_map_field_expr(F) || F <- Fs ].
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encode_map_field_expr({K,V}) ->
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[{<<"key">>,encode_expr(K)},
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{<<"value">>,encode_expr(V)}].
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%% decode(JSON) -> ContractString.
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%% Decode a JSON string and generate a suitable contract string which
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%% can be included in a contract definition. We decode into a map
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