Commit 1b81092b authored by Ingvar Stepanyan's avatar Ingvar Stepanyan

Rewrite JSON decoding

 - Add support for decoding with Orphanage.
 - Allow decoding of non-struct root JSON objects.
 - Add support for custom decoding type handlers.
 - Add support for custom decoding field handlers.
parent 8243bab5
......@@ -257,19 +257,21 @@ KJ_TEST("decode all types") {
CASE(R"({"textField":"hello"})", kj::str("hello") == root.getTextField());
CASE(R"({"dataField":[7,0,122]})",
kj::heapArray<byte>({7,0,122}).asPtr() == root.getDataField());
CASE(R"({"structField":null})", root.hasStructField() == false);
CASE(R"({"structField":{}})", root.hasStructField() == true);
CASE(R"({"structField":{}})", root.getStructField().getBoolField() == false);
CASE(R"({"structField":{"boolField":false}})", root.getStructField().getBoolField() == false);
CASE(R"({"structField":{"boolField":true}})", root.getStructField().getBoolField() == true);
CASE(R"({"enumField":"bar"})", root.getEnumField() == TestEnum::BAR);
CASE_THROW_RECOVERABLE(R"({"structField":null})", "Expected object value");
CASE_THROW_RECOVERABLE(R"({"structList":null})", "Expected list value");
CASE_THROW_RECOVERABLE(R"({"boolList":null})", "Expected list value");
CASE_THROW_RECOVERABLE(R"({"structList":[null]})", "Expected object value");
CASE_THROW_RECOVERABLE(R"({"int64Field":"177a"})", "String does not contain valid");
CASE_THROW_RECOVERABLE(R"({"uInt64Field":"177a"})", "String does not contain valid");
CASE_THROW_RECOVERABLE(R"({"float64Field":"177a"})", "String does not contain valid");
CASE(R"({})", root.hasBoolList() == false);
CASE(R"({"boolList":null})", root.hasBoolList() == false);
CASE(R"({"boolList":[]})", root.hasBoolList() == true);
CASE(R"({"boolList":[]})", root.getBoolList().size() == 0);
CASE(R"({"boolList":[false]})", root.getBoolList().size() == 1);
......@@ -306,9 +308,7 @@ KJ_TEST("decode all types") {
CASE(R"({"textList":["hello"]})", kj::str("hello") == root.getTextList()[0]);
CASE(R"({"dataList":[[7,0,122]]})",
kj::heapArray<byte>({7,0,122}).asPtr() == root.getDataList()[0]);
CASE(R"({"structList":null})", root.hasStructList() == false);
CASE(R"({"structList":[null]})", root.hasStructList() == true);
CASE(R"({"structList":[null]})", root.getStructList()[0].getBoolField() == false);
CASE(R"({"structList":[{}]})", root.hasStructList() == true);
CASE(R"({"structList":[{}]})", root.getStructList()[0].getBoolField() == false);
CASE(R"({"structList":[{"boolField":false}]})", root.getStructList()[0].getBoolField() == false);
CASE(R"({"structList":[{"boolField":true}]})", root.getStructList()[0].getBoolField() == true);
......@@ -637,7 +637,7 @@ KJ_TEST("maximum nesting depth") {
}
}
class TestHandler: public JsonCodec::Handler<Text> {
class TestCallHandler: public JsonCodec::Handler<Text> {
public:
void encode(const JsonCodec& codec, Text::Reader input,
JsonValue::Builder output) const override {
......@@ -654,31 +654,144 @@ public:
}
};
KJ_TEST("register handler") {
MallocMessageBuilder message;
auto root = message.getRoot<test::TestOldVersion>();
class TestDynamicStructHandler: public JsonCodec::Handler<DynamicStruct> {
public:
void encode(const JsonCodec& codec, DynamicStruct::Reader input,
JsonValue::Builder output) const override {
auto fields = input.getSchema().getFields();
auto items = output.initArray(fields.size());
for (auto field: fields) {
KJ_REQUIRE(field.getIndex() < items.size());
auto item = items[field.getIndex()];
if (input.has(field)) {
codec.encode(input.get(field), field.getType(), item);
} else {
item.setNull();
}
}
}
void decode(const JsonCodec& codec, JsonValue::Reader input,
DynamicStruct::Builder output) const override {
auto orphanage = Orphanage::getForMessageContaining(output);
auto fields = output.getSchema().getFields();
auto items = input.getArray();
for (auto field: fields) {
KJ_REQUIRE(field.getIndex() < items.size());
auto item = items[field.getIndex()];
if (!item.isNull()) {
output.adopt(field, codec.decode(item, field.getType(), orphanage));
}
}
}
};
class TestStructHandler: public JsonCodec::Handler<test::TestOldVersion> {
public:
void encode(const JsonCodec& codec, test::TestOldVersion::Reader input, JsonValue::Builder output) const override {
dynamicHandler.encode(codec, input, output);
}
void decode(const JsonCodec& codec, JsonValue::Reader input, test::TestOldVersion::Builder output) const override {
dynamicHandler.decode(codec, input, output);
}
private:
TestDynamicStructHandler dynamicHandler;
};
TestHandler handler;
KJ_TEST("register custom encoding handlers") {
JsonCodec json;
json.addTypeHandler(handler);
TestStructHandler structHandler;
json.addTypeHandler(structHandler);
// JSON decoder can't parse calls back, so test only encoder here
TestCallHandler callHandler;
json.addTypeHandler(callHandler);
MallocMessageBuilder message;
auto root = message.getRoot<test::TestOldVersion>();
root.setOld1(123);
root.setOld2("foo");
KJ_EXPECT(json.encode(root) == "{\"old1\":\"123\",\"old2\":Frob(123,\"foo\")}");
KJ_EXPECT(json.encode(root) == "[\"123\",Frob(123,\"foo\"),null]");
}
KJ_TEST("register field handler") {
MallocMessageBuilder message;
auto root = message.getRoot<test::TestOutOfOrder>();
KJ_TEST("register custom roundtrip handler") {
for (auto i = 1; i <= 2; i++) {
JsonCodec json;
TestStructHandler staticHandler;
TestDynamicStructHandler dynamicHandler;
kj::String encoded;
if (i == 1) {
// first iteration: test with explicit struct handler
json.addTypeHandler(staticHandler);
} else {
// second iteration: same checks, but with DynamicStruct handler
json.addTypeHandler(StructSchema::from<test::TestOldVersion>(), dynamicHandler);
}
{
MallocMessageBuilder message;
auto root = message.getRoot<test::TestOldVersion>();
root.setOld1(123);
root.initOld3().setOld2("foo");
encoded = json.encode(root);
KJ_EXPECT(encoded == "[\"123\",null,[\"0\",\"foo\",null]]");
}
TestHandler handler;
{
MallocMessageBuilder message;
auto root = message.getRoot<test::TestOldVersion>();
json.decode(encoded, root);
KJ_EXPECT(root.getOld1() == 123);
KJ_EXPECT(!root.hasOld2());
auto nested = root.getOld3();
KJ_EXPECT(nested.getOld1() == 0);
KJ_EXPECT("foo" == nested.getOld2());
KJ_EXPECT(!nested.hasOld3());
}
}
}
KJ_TEST("register field handler") {
TestStructHandler handler;
JsonCodec json;
json.addFieldHandler(StructSchema::from<test::TestOutOfOrder>().getFieldByName("corge"),
json.addFieldHandler(StructSchema::from<test::TestOldVersion>().getFieldByName("old3"),
handler);
root.setBaz("abcd");
root.setCorge("efg");
KJ_EXPECT(json.encode(root) == "{\"corge\":Frob(123,\"efg\"),\"baz\":\"abcd\"}");
kj::String encoded;
{
MallocMessageBuilder message;
auto root = message.getRoot<test::TestOldVersion>();
root.setOld1(123);
root.setOld2("foo");
auto nested = root.initOld3();
nested.setOld2("bar");
encoded = json.encode(root);
KJ_EXPECT(encoded == "{\"old1\":\"123\",\"old2\":\"foo\",\"old3\":[\"0\",\"bar\",null]}")
}
{
MallocMessageBuilder message;
auto root = message.getRoot<test::TestOldVersion>();
json.decode(encoded, root);
KJ_EXPECT(root.getOld1() == 123);
KJ_EXPECT("foo" == root.getOld2());
auto nested = root.getOld3();
KJ_EXPECT(nested.getOld1() == 0);
KJ_EXPECT("bar" == nested.getOld2());
KJ_EXPECT(!nested.hasOld3());
}
}
class TestCapabilityHandler: public JsonCodec::Handler<test::TestInterface> {
......@@ -703,29 +816,6 @@ KJ_TEST("register capability handler") {
json.addTypeHandler(handler);
}
class TestDynamicStructHandler: public JsonCodec::Handler<DynamicStruct> {
public:
void encode(const JsonCodec& codec, DynamicStruct::Reader input,
JsonValue::Builder output) const override {
KJ_UNIMPLEMENTED("TestDynamicStructHandler::encode");
}
void decode(const JsonCodec& codec, JsonValue::Reader input,
DynamicStruct::Builder output) const override {
KJ_UNIMPLEMENTED("TestDynamicStructHandler::decode");
}
};
KJ_TEST("register DynamicStruct handler") {
// This test currently only checks that this compiles, which at one point wasn't the caes.
// TODO(test): Actually run some code here.
TestDynamicStructHandler handler;
JsonCodec json;
json.addTypeHandler(Schema::from<TestAllTypes>(), handler);
}
} // namespace
} // namespace _ (private)
} // namespace capnp
......@@ -386,191 +386,152 @@ void JsonCodec::encodeField(StructSchema::Field field, DynamicValue::Reader inpu
encode(input, field.getType(), output);
}
namespace {
Orphan<DynamicList> JsonCodec::decodeArray(List<JsonValue>::Reader input, ListSchema type, Orphanage orphanage) const {
auto orphan = orphanage.newOrphan(type, input.size());
auto output = orphan.get();
for (auto i: kj::indices(input)) {
output.adopt(i, decode(input[i], type.getElementType(), orphanage));
}
return orphan;
}
void JsonCodec::decodeObject(JsonValue::Reader input, StructSchema type, Orphanage orphanage, DynamicStruct::Builder output) const {
KJ_REQUIRE(input.isObject(), "Expected object value");
for (auto field: input.getObject()) {
KJ_IF_MAYBE(fieldSchema, type.findFieldByName(field.getName())) {
auto fieldValue = field.getValue();
auto fieldType = (*fieldSchema).getType();
auto iter = impl->fieldHandlers.find(*fieldSchema);
if (iter != impl->fieldHandlers.end()) {
output.adopt(*fieldSchema, iter->second->decodeBase(*this, fieldValue, fieldType, orphanage));
} else {
output.adopt(*fieldSchema, decode(fieldValue, fieldType, orphanage));
}
} else {
// Unknown json fields are ignored to allow schema evolution
}
}
}
void JsonCodec::decode(JsonValue::Reader input, DynamicStruct::Builder output) const {
auto type = output.getSchema();
auto iter = impl->typeHandlers.find(type);
if (iter != impl->typeHandlers.end()) {
return iter->second->decodeStructBase(*this, input, output);
}
decodeObject(input, type, Orphanage::getForMessageContaining(output), output);
}
Orphan<DynamicValue> JsonCodec::decode(
JsonValue::Reader input, Type type, Orphanage orphanage) const {
auto iter = impl->typeHandlers.find(type);
if (iter != impl->typeHandlers.end()) {
return iter->second->decodeBase(*this, input, type, orphanage);
}
template <typename SetFn, typename DecodeArrayFn, typename DecodeObjectFn>
void decodeField(Type type, JsonValue::Reader value, SetFn setFn, DecodeArrayFn decodeArrayFn,
DecodeObjectFn decodeObjectFn) {
// This code relies on conversions in DynamicValue::Reader::as<T>.
switch(type.which()) {
case schema::Type::VOID:
break;
return capnp::VOID;
case schema::Type::BOOL:
switch (value.which()) {
switch (input.which()) {
case JsonValue::BOOLEAN:
setFn(value.getBoolean());
break;
return input.getBoolean();
default:
KJ_FAIL_REQUIRE("Expected boolean value");
}
break;
case schema::Type::INT8:
case schema::Type::INT16:
case schema::Type::INT32:
case schema::Type::INT64:
// Relies on range check in DynamicValue::Reader::as<IntType>
switch (value.which()) {
switch (input.which()) {
case JsonValue::NUMBER:
setFn(value.getNumber());
break;
return input.getNumber();
case JsonValue::STRING:
setFn(value.getString().parseAs<int64_t>());
break;
return input.getString().parseAs<int64_t>();
default:
KJ_FAIL_REQUIRE("Expected integer value");
}
break;
case schema::Type::UINT8:
case schema::Type::UINT16:
case schema::Type::UINT32:
case schema::Type::UINT64:
// Relies on range check in DynamicValue::Reader::as<IntType>
switch (value.which()) {
switch (input.which()) {
case JsonValue::NUMBER:
setFn(value.getNumber());
break;
return input.getNumber();
case JsonValue::STRING:
setFn(value.getString().parseAs<uint64_t>());
break;
return input.getString().parseAs<uint64_t>();
default:
KJ_FAIL_REQUIRE("Expected integer value");
}
break;
case schema::Type::FLOAT32:
case schema::Type::FLOAT64:
switch (value.which()) {
switch (input.which()) {
case JsonValue::NULL_:
setFn(kj::nan());
break;
return kj::nan();
case JsonValue::NUMBER:
setFn(value.getNumber());
break;
return input.getNumber();
case JsonValue::STRING:
setFn(value.getString().parseAs<double>());
break;
return input.getString().parseAs<double>();
default:
KJ_FAIL_REQUIRE("Expected float value");
}
break;
case schema::Type::TEXT:
switch (value.which()) {
switch (input.which()) {
case JsonValue::STRING:
setFn(value.getString());
break;
return orphanage.newOrphanCopy(input.getString());
default:
KJ_FAIL_REQUIRE("Expected text value");
}
break;
case schema::Type::DATA:
switch (value.which()) {
switch (input.which()) {
case JsonValue::ARRAY: {
auto array = value.getArray();
kj::Vector<byte> data(array.size());
for (auto arrayObject : array) {
auto x = arrayObject.getNumber();
auto array = input.getArray();
auto orphan = orphanage.newOrphan<Data>(array.size());
auto data = orphan.get();
for (auto i: kj::indices(array)) {
auto x = array[i].getNumber();
KJ_REQUIRE(byte(x) == x, "Number in byte array is not an integer in [0, 255]");
data.add(byte(x));
data[i] = x;
}
setFn(Data::Reader(data.asPtr()));
break;
return orphan;
}
default:
KJ_FAIL_REQUIRE("Expected data value");
}
break;
case schema::Type::LIST:
switch (value.which()) {
case JsonValue::NULL_:
// nothing to do
break;
switch (input.which()) {
case JsonValue::ARRAY:
decodeArrayFn(value.getArray());
break;
return decodeArray(input.getArray(), type.asList(), orphanage);
default:
KJ_FAIL_REQUIRE("Expected list value");
}
break;
case schema::Type::ENUM:
switch (value.which()) {
switch (input.which()) {
case JsonValue::STRING:
setFn(value.getString());
break;
return DynamicEnum(type.asEnum().getEnumerantByName(input.getString()));
default:
KJ_FAIL_REQUIRE("Expected enum value");
}
break;
case schema::Type::STRUCT:
switch (value.which()) {
case JsonValue::NULL_:
// nothing to do
break;
case JsonValue::OBJECT:
decodeObjectFn(value.getObject());
break;
default:
KJ_FAIL_REQUIRE("Expected object value");
}
break;
case schema::Type::STRUCT: {
auto structType = type.asStruct();
auto orphan = orphanage.newOrphan(structType);
decodeObject(input, structType, orphanage, orphan.get());
return orphan;
}
case schema::Type::INTERFACE:
KJ_FAIL_REQUIRE("don't know how to JSON-decode capabilities; "
"JsonCodec::Handler not implemented yet :(");
"please register a JsonCodec::Handler for this");
case schema::Type::ANY_POINTER:
KJ_FAIL_REQUIRE("don't know how to JSON-decode AnyPointer; "
"JsonCodec::Handler not implemented yet :(");
}
}
} // namespace
void JsonCodec::decodeArray(List<JsonValue>::Reader input, DynamicList::Builder output) const {
KJ_ASSERT(input.size() == output.size(), "Builder was not initialized to input size");
auto type = output.getSchema().getElementType();
for (auto i = 0; i < input.size(); i++) {
decodeField(type, input[i],
[&](DynamicValue::Reader value) { output.set(i, value); },
[&](List<JsonValue>::Reader array) {
decodeArray(array, output.init(i, array.size()).as<DynamicList>());
},
[&](List<JsonValue::Field>::Reader object) {
decodeObject(object, output[i].as<DynamicStruct>());
});
}
}
void JsonCodec::decodeObject(List<JsonValue::Field>::Reader input, DynamicStruct::Builder output)
const {
for (auto field : input) {
KJ_IF_MAYBE(fieldSchema, output.getSchema().findFieldByName(field.getName())) {
decodeField((*fieldSchema).getType(), field.getValue(),
[&](DynamicValue::Reader value) { output.set(*fieldSchema, value); },
[&](List<JsonValue>::Reader array) {
decodeArray(array, output.init(*fieldSchema, array.size()).as<DynamicList>());
},
[&](List<JsonValue::Field>::Reader object) {
decodeObject(object, output.init(*fieldSchema).as<DynamicStruct>());
});
} else {
// Unknown json fields are ignored to allow schema evolution
}
"please register a JsonCodec::Handler for this");
}
}
void JsonCodec::decode(JsonValue::Reader input, DynamicStruct::Builder output) const {
// TODO(soon): type and field handlers
switch (input.which()) {
case JsonValue::OBJECT:
decodeObject(input.getObject(), output);
break;
default:
KJ_FAIL_REQUIRE("Top level json value must be object");
};
}
Orphan<DynamicValue> JsonCodec::decode(
JsonValue::Reader input, Type type, Orphanage orphanage) const {
// TODO(soon)
KJ_FAIL_ASSERT("JSON decode into orphanage not implement yet. :(");
}
// -----------------------------------------------------------------------------
namespace {
......
......@@ -220,8 +220,8 @@ private:
void encodeField(StructSchema::Field field, DynamicValue::Reader input,
JsonValue::Builder output) const;
void decodeArray(List<JsonValue>::Reader input, DynamicList::Builder output) const;
void decodeObject(List<JsonValue::Field>::Reader input, DynamicStruct::Builder output) const;
Orphan<DynamicList> decodeArray(List<JsonValue>::Reader input, ListSchema type, Orphanage orphanage) const;
void decodeObject(JsonValue::Reader input, StructSchema type, Orphanage orphanage, DynamicStruct::Builder output) const;
void addTypeHandlerImpl(Type type, HandlerBase& handler);
void addFieldHandlerImpl(StructSchema::Field field, Type type, HandlerBase& handler);
};
......
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