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#include <gtest/gtest.h>
#include "json_codec.h"
#include "cbor_codec.h"
#include "qvariant_rpc_value.h"
#include <QJsonValue>
#include <QMetaType>
#include <QVariant>
#include <cstdint>
#include <limits>
// ---------------------------------------------------------------------------
// uint64 across the plain (tcp / tcp_ssl) wire.
//
// RpcValue's variant had no unsigned alternative, so every uint64 above
// int64max was squeezed through int64_t and arrived as -1 — independently in
// both directions:
//
// outbound qvariant_rpc_value.cpp QMetaType::ULongLong -> int64_t(...)
// inbound json_mapping.cpp is_number_unsigned -> get<int64_t>()
//
// Neither wraps loudly: .get<int64_t>() past int64max returns -1 with no
// exception. Two peers both running this code agreed on -1, so nothing looked
// broken from inside.
//
// This was NOT a wire-format limitation. Both codecs carry uint64 natively
// (CBOR emits major type 0, `1b ff..ff`), and the envelope's own `id` field
// already crossed this wire as a uint64_t. Only RpcValue *payloads* could not
// represent it.
//
// The plain tier had no integer test outside int32 range before this file:
// test_json_codec and test_cbor_codec used 42 and 3.
// ---------------------------------------------------------------------------
using namespace logos::plain;
namespace {
constexpr uint64_t kUint64Max = std::numeric_limits<uint64_t>::max();
constexpr uint64_t kInt64Max = static_cast<uint64_t>(std::numeric_limits<int64_t>::max());
AnyMessage roundtrip(IWireCodec& codec, const AnyMessage& msg)
{
auto bytes = codec.encode(msg);
return codec.decode(messageTypeOf(msg), bytes.data(), bytes.size());
}
EventMessage eventCarrying(std::vector<RpcValue> data)
{
EventMessage e;
e.object = "test_fullapi";
e.eventName = "uintEvent";
e.data = std::move(data);
return e;
}
} // namespace
// --- The representation rule ----------------------------------------------
// The unsigned alternative is used ONLY where int64_t loses information.
// Anything broader would change the representation of every non-negative
// integer already crossing this wire — and std::variant equality compares the
// alternative index, so it would also break comparisons against int64-built
// values, to fix nothing.
TEST(PlainUint64, MakeIntegerUsesSignedAlternativeWhenItFits)
{
EXPECT_TRUE(RpcValue::makeInteger(0).isInt());
EXPECT_TRUE(RpcValue::makeInteger(42).isInt());
EXPECT_TRUE(RpcValue::makeInteger(kInt64Max).isInt());
EXPECT_EQ(RpcValue::makeInteger(kInt64Max).asInt(),
std::numeric_limits<int64_t>::max());
// Unchanged representation means unchanged equality.
EXPECT_EQ(RpcValue::makeInteger(42), RpcValue{int64_t(42)});
}
TEST(PlainUint64, MakeIntegerUsesUnsignedAlternativeOnlyPastInt64Max)
{
EXPECT_TRUE(RpcValue::makeInteger(kInt64Max + 1).isUInt());
EXPECT_TRUE(RpcValue::makeInteger(kUint64Max).isUInt());
EXPECT_EQ(RpcValue::makeInteger(kUint64Max).asUInt(), kUint64Max);
}
TEST(PlainUint64, IsIntegralCoversBothAlternatives)
{
EXPECT_TRUE(RpcValue::makeInteger(42).isIntegral());
EXPECT_TRUE(RpcValue::makeInteger(kUint64Max).isIntegral());
EXPECT_FALSE(RpcValue{3.5}.isIntegral());
EXPECT_FALSE(RpcValue{std::string("7")}.isIntegral());
}
// --- JSON codec ------------------------------------------------------------
TEST(PlainUint64, JsonCodecRoundTripsUint64Max)
{
JsonCodec codec;
const AnyMessage out = roundtrip(
codec, eventCarrying({RpcValue::makeInteger(kUint64Max)}));
const auto* evt = std::get_if<EventMessage>(&out);
ASSERT_NE(evt, nullptr);
ASSERT_EQ(evt->data.size(), 1u);
ASSERT_TRUE(evt->data[0].isUInt()) << "decoded into the wrong alternative";
EXPECT_EQ(evt->data[0].asUInt(), kUint64Max);
}
TEST(PlainUint64, JsonCodecRoundTripsUint64NestedInContainers)
{
RpcMap m;
m.emplace("n", RpcValue::makeInteger(kUint64Max));
RpcList l;
l.items.push_back(RpcValue::makeInteger(kInt64Max + 1));
JsonCodec codec;
const AnyMessage out = roundtrip(
codec, eventCarrying({RpcValue{std::move(m)}, RpcValue{std::move(l)}}));
const auto* evt = std::get_if<EventMessage>(&out);
ASSERT_NE(evt, nullptr);
ASSERT_EQ(evt->data.size(), 2u);
EXPECT_EQ(evt->data[0].asMap().at("n").asUInt(), kUint64Max);
EXPECT_EQ(evt->data[1].asList().items.at(0).asUInt(), kInt64Max + 1);
}
TEST(PlainUint64, JsonCodecKeepsNegativeIntegersSigned)
{
JsonCodec codec;
const AnyMessage out = roundtrip(
codec, eventCarrying({RpcValue{std::numeric_limits<int64_t>::min()}}));
const auto* evt = std::get_if<EventMessage>(&out);
ASSERT_NE(evt, nullptr);
ASSERT_TRUE(evt->data[0].isInt());
EXPECT_EQ(evt->data[0].asInt(), std::numeric_limits<int64_t>::min());
}
// --- CBOR codec ------------------------------------------------------------
TEST(PlainUint64, CborCodecRoundTripsUint64Max)
{
CborCodec codec;
const AnyMessage out = roundtrip(
codec, eventCarrying({RpcValue::makeInteger(kUint64Max)}));
const auto* evt = std::get_if<EventMessage>(&out);
ASSERT_NE(evt, nullptr);
ASSERT_EQ(evt->data.size(), 1u);
ASSERT_TRUE(evt->data[0].isUInt());
EXPECT_EQ(evt->data[0].asUInt(), kUint64Max);
}
TEST(PlainUint64, CborCodecRoundTripsUint64NestedInContainers)
{
RpcMap m;
m.emplace("n", RpcValue::makeInteger(kUint64Max));
CborCodec codec;
const AnyMessage out = roundtrip(codec, eventCarrying({RpcValue{std::move(m)}}));
const auto* evt = std::get_if<EventMessage>(&out);
ASSERT_NE(evt, nullptr);
EXPECT_EQ(evt->data[0].asMap().at("n").asUInt(), kUint64Max);
}
// --- The Qt boundary, both directions --------------------------------------
TEST(PlainUint64, QVariantToRpcValuePreservesUint64)
{
const QVariant v = QVariant::fromValue<qulonglong>(kUint64Max);
const RpcValue r = qvariantToRpcValue(v);
ASSERT_TRUE(r.isUInt()) << "wrapped to int64 again";
EXPECT_EQ(r.asUInt(), kUint64Max);
}
TEST(PlainUint64, RpcValueToQVariantPreservesUint64)
{
const QVariant v = rpcValueToQVariant(RpcValue::makeInteger(kUint64Max));
EXPECT_EQ(v.typeId(), QMetaType::ULongLong) << "got " << v.typeName();
EXPECT_EQ(v.toULongLong(), kUint64Max);
}
TEST(PlainUint64, QtBoundaryRoundTripIsExact)
{
const QVariant in = QVariant::fromValue<qulonglong>(kUint64Max);
const QVariant out = rpcValueToQVariant(qvariantToRpcValue(in));
EXPECT_EQ(out.toULongLong(), kUint64Max);
}
// A uint that fits int64 keeps crossing as signed, exactly as before. Pinned so
// the narrow rule stays visible rather than assumed.
TEST(PlainUint64, SmallUnsignedStillCrossesAsSigned)
{
const QVariant in = QVariant::fromValue<qulonglong>(42);
const RpcValue r = qvariantToRpcValue(in);
EXPECT_TRUE(r.isInt());
EXPECT_EQ(rpcValueToQVariant(r).typeId(), QMetaType::LongLong);
}
// --- The off-by-one in the QJsonValue::Double guard ------------------------
// double(int64max) rounds UP to exactly 2^63, so `d <= double(int64max)` used to
// admit 2^63 and then run int64_t(d) out of range — undefined behaviour,
// saturating on arm64 and INT64_MIN on x86-64.
TEST(PlainUint64, DoubleAtTwoPow63DoesNotEnterTheIntegerBranch)
{
const QVariant v = QVariant(QJsonValue(9223372036854775808.0)); // 2^63
const RpcValue r = qvariantToRpcValue(v);
EXPECT_FALSE(r.isInt()) << "2^63 is not representable as int64_t";
ASSERT_TRUE(r.isDouble());
EXPECT_DOUBLE_EQ(r.asDouble(), 9223372036854775808.0);
}
TEST(PlainUint64, DoubleAtInt64MinStillTakesTheIntegerBranch)
{
const QVariant v = QVariant(QJsonValue(-9223372036854775808.0)); // -2^63, exact
const RpcValue r = qvariantToRpcValue(v);
ASSERT_TRUE(r.isInt());
EXPECT_EQ(r.asInt(), std::numeric_limits<int64_t>::min());
}