Files
DarkflameServer/tests/dGameTests/dComponentsTests/PetComponentTests.cpp
Aaron Kimbrell 542f0a89f0 refactor: remove the packet macros, WriteHeader and PacketUtils
Nothing in the server writes or reads a packet by hand any more, so the
helpers for doing so go:
- CBITSTREAM, CMSGHEADER, CINSTREAM, CINSTREAM_SKIP_HEADER, SEND_PACKET,
  SEND_PACKET_BROADCAST and HEADER_SIZE leave dCommonVars.h;
- the free BitStreamUtils::WriteHeader (LUBitStream::WriteHeader writes the
  same bytes) and the unused PacketUtils::SavePacket are deleted.
The last raw reads are replaced: WorldServer builds its input stream
directly, the master packet logs read the header with
LUBitStream::ReadHeader instead of peeking at packet->data[1] and [3], and
MessageInspector reads a sent game message's header with the new
NetGameMsg::ReadPacketHeader (the counterpart of WritePacket) instead of
memcmp/memcpy. packet->data[0] is still compared with RakNet's own
connection IDs.

The frozen oracles keep using the macros verbatim through the test-only
tests/dGameTests/LegacyPacketMacros.h; the HeaderSkip tests, which only
tested CINSTREAM_SKIP_HEADER, are removed.

docs/PacketArchitecture.md: "where we are" now describes the final state
and what still touches raw bytes (RakNet IDs, replica headers, behavior bit
streams), and a new section collects the known wire discrepancies found
during the conversion, with client addresses.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
2026-09-28 22:30:56 -05:00

44 lines
1.0 KiB
C++

#include "GameDependencies.h"
#include <gtest/gtest.h>
#include "BitStream.h"
#include "PetComponent.h"
#include "Entity.h"
#include "eReplicaComponentType.h"
#include "ePetAbilityType.h"
#include "eStateChangeType.h"
class PetTest : public GameDependenciesTest {
protected:
Entity* baseEntity;
PetComponent* petComponent;
RakNet::BitStream bitStream;
void SetUp() override {
SetUpDependencies();
// Set up entity and pet component
baseEntity = new Entity(15, GameDependenciesTest::info);
petComponent = baseEntity->AddComponent<PetComponent>(1);
// Initialize some values to be not default
}
void TearDown() override {
delete baseEntity;
TearDownDependencies();
}
};
TEST_F(PetTest, PlacementNewAddComponentTest) {
// Test adding component
ASSERT_NE(petComponent, nullptr);
baseEntity->AddComponent<PetComponent>(1);
ASSERT_NE(baseEntity->GetComponent<PetComponent>(), nullptr);
// Test getting initial status
ASSERT_EQ(petComponent->GetParent()->GetObjectID(), 15);
ASSERT_EQ(petComponent->GetAbility(), ePetAbilityType::Invalid);
}