mirror of
https://github.com/DarkflameUniverse/DarkflameServer.git
synced 2024-12-23 05:53:34 +00:00
0545adfac3
Have fun!
401 lines
7.9 KiB
C++
401 lines
7.9 KiB
C++
#include "BehaviorContext.h"
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#include "Behavior.h"
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#include "BehaviorBranchContext.h"
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#include "EntityManager.h"
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#include "SkillComponent.h"
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#include "Game.h"
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#include "dLogger.h"
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#include "dServer.h"
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#include "PacketUtils.h"
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#include <sstream>
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#include "DestroyableComponent.h"
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#include "PhantomPhysicsComponent.h"
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#include "RebuildComponent.h"
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BehaviorSyncEntry::BehaviorSyncEntry()
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{
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}
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BehaviorTimerEntry::BehaviorTimerEntry()
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{
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}
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BehaviorEndEntry::BehaviorEndEntry()
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{
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}
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uint32_t BehaviorContext::GetUniqueSkillId() const
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{
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auto* entity = EntityManager::Instance()->GetEntity(this->originator);
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if (entity == nullptr)
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{
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Game::logger->Log("BehaviorContext", "Invalid entity for (%llu)!\n", this->originator);
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return 0;
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}
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auto* component = entity->GetComponent<SkillComponent>();
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if (component == nullptr)
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{
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Game::logger->Log("BehaviorContext", "No skill component attached to (%llu)!\n", this->originator);;
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return 0;
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}
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return component->GetUniqueSkillId();
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}
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void BehaviorContext::RegisterSyncBehavior(const uint32_t syncId, Behavior* behavior, const BehaviorBranchContext& branchContext)
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{
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auto entry = BehaviorSyncEntry();
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entry.handle = syncId;
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entry.behavior = behavior;
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entry.branchContext = branchContext;
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this->syncEntries.push_back(entry);
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}
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void BehaviorContext::RegisterTimerBehavior(Behavior* behavior, const BehaviorBranchContext& branchContext, const LWOOBJID second)
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{
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BehaviorTimerEntry entry
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;
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entry.time = branchContext.duration;
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entry.behavior = behavior;
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entry.branchContext = branchContext;
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entry.second = second;
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this->timerEntries.push_back(entry);
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}
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void BehaviorContext::RegisterEndBehavior(Behavior* behavior, const BehaviorBranchContext& branchContext, const LWOOBJID second)
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{
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BehaviorEndEntry entry;
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entry.behavior = behavior;
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entry.branchContext = branchContext;
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entry.second = second;
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entry.start = branchContext.start;
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this->endEntries.push_back(entry);
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}
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void BehaviorContext::ScheduleUpdate(const LWOOBJID id)
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{
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if (std::find(this->scheduledUpdates.begin(), this->scheduledUpdates.end(), id) != this->scheduledUpdates.end())
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{
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return;
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}
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this->scheduledUpdates.push_back(id);
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}
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void BehaviorContext::ExecuteUpdates()
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{
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for (const auto& id : this->scheduledUpdates)
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{
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auto* entity = EntityManager::Instance()->GetEntity(id);
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if (entity == nullptr) continue;
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EntityManager::Instance()->SerializeEntity(entity);
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}
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this->scheduledUpdates.clear();
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}
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void BehaviorContext::SyncBehavior(const uint32_t syncId, RakNet::BitStream* bitStream)
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{
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BehaviorSyncEntry entry;
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auto found = false;
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/*
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* There may be more than one of each handle
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*/
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for (auto i = 0u; i < this->syncEntries.size(); ++i)
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{
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const auto syncEntry = this->syncEntries.at(i);
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if (syncEntry.handle == syncId)
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{
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found = true;
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entry = syncEntry;
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this->syncEntries.erase(this->syncEntries.begin() + i);
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break;
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}
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}
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if (!found)
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{
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Game::logger->Log("BehaviorContext", "Failed to find behavior sync entry with sync id (%i)!\n", syncId);
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return;
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}
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auto* behavior = entry.behavior;
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const auto branch = entry.branchContext;
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if (behavior == nullptr)
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{
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Game::logger->Log("BehaviorContext", "Invalid behavior for sync id (%i)!\n", syncId);
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return;
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}
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behavior->Sync(this, bitStream, branch);
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}
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void BehaviorContext::Update(const float deltaTime)
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{
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for (auto i = 0u; i < this->timerEntries.size(); ++i)
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{
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auto entry = this->timerEntries.at(i);
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if (entry.time > 0)
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{
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entry.time -= deltaTime;
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this->timerEntries[i] = entry;
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}
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if (entry.time > 0)
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{
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continue;
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}
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entry.behavior->Timer(this, entry.branchContext, entry.second);
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}
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std::vector<BehaviorTimerEntry> valid;
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for (const auto& entry : this->timerEntries)
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{
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if (entry.time <= 0)
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{
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continue;
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}
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valid.push_back(entry);
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}
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this->timerEntries = valid;
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}
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void BehaviorContext::SyncCalculation(const uint32_t syncId, const float time, Behavior* behavior, const BehaviorBranchContext& branch, const bool ignoreInterrupts)
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{
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BehaviorSyncEntry entry;
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entry.behavior = behavior;
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entry.time = time;
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entry.branchContext = branch;
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entry.handle = syncId;
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entry.ignoreInterrupts = ignoreInterrupts;
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this->syncEntries.push_back(entry);
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}
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void BehaviorContext::InvokeEnd(const uint32_t id)
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{
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std::vector<BehaviorEndEntry> entries;
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for (const auto& entry : this->endEntries)
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{
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if (entry.start == id)
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{
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entry.behavior->End(this, entry.branchContext, entry.second);
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continue;
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}
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entries.push_back(entry);
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}
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this->endEntries = entries;
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}
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bool BehaviorContext::CalculateUpdate(const float deltaTime)
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{
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auto any = false;
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for (auto i = 0u; i < this->syncEntries.size(); ++i)
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{
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auto entry = this->syncEntries.at(i);
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if (entry.time > 0)
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{
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entry.time -= deltaTime;
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this->syncEntries[i] = entry;
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}
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if (entry.time > 0)
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{
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any = true;
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continue;
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}
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// Echo sync
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GameMessages::EchoSyncSkill echo;
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echo.bDone = true;
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echo.uiBehaviorHandle = entry.handle;
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echo.uiSkillHandle = this->skillUId;
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auto* bitStream = new RakNet::BitStream();
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// Calculate sync
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entry.behavior->SyncCalculation(this, bitStream, entry.branchContext);
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if (!clientInitalized)
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{
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echo.sBitStream.assign((char*) bitStream->GetData(), bitStream->GetNumberOfBytesUsed());
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// Write message
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RakNet::BitStream message;
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PacketUtils::WriteHeader(message, CLIENT, MSG_CLIENT_GAME_MSG);
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message.Write(this->originator);
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echo.Serialize(&message);
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Game::server->Send(&message, UNASSIGNED_SYSTEM_ADDRESS, true);
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}
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ExecuteUpdates();
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delete bitStream;
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}
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std::vector<BehaviorSyncEntry> valid;
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for (const auto& entry : this->syncEntries)
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{
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if (entry.time <= 0)
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{
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continue;
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}
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valid.push_back(entry);
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}
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this->syncEntries = valid;
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return any;
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}
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void BehaviorContext::Interrupt()
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{
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std::vector<BehaviorSyncEntry> keptSync {};
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for (const auto& entry : this->syncEntries)
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{
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if (!entry.ignoreInterrupts) continue;
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keptSync.push_back(entry);
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}
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this->syncEntries = keptSync;
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}
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void BehaviorContext::Reset()
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{
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for (const auto& entry : this->timerEntries)
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{
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entry.behavior->Timer(this, entry.branchContext, entry.second);
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}
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for (const auto& entry : this->endEntries)
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{
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entry.behavior->End(this, entry.branchContext, entry.second);
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}
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this->endEntries.clear();
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this->timerEntries.clear();
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this->syncEntries.clear();
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this->scheduledUpdates.clear();
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}
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std::vector<LWOOBJID> BehaviorContext::GetValidTargets(int32_t ignoreFaction, int32_t includeFaction) const
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{
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auto* entity = EntityManager::Instance()->GetEntity(this->caster);
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std::vector<LWOOBJID> targets;
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if (entity == nullptr)
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{
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Game::logger->Log("BehaviorContext", "Invalid entity for (%llu)!\n", this->originator);
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return targets;
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}
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if (!ignoreFaction && !includeFaction)
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{
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for (auto entry : entity->GetTargetsInPhantom())
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{
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auto* instance = EntityManager::Instance()->GetEntity(entry);
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if (instance == nullptr)
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{
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continue;
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}
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targets.push_back(entry);
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}
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}
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if (ignoreFaction || includeFaction || (!entity->HasComponent(COMPONENT_TYPE_PHANTOM_PHYSICS) && !entity->HasComponent(COMPONENT_TYPE_CONTROLLABLE_PHYSICS) && targets.empty()))
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{
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DestroyableComponent* destroyableComponent;
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if (!entity->TryGetComponent(COMPONENT_TYPE_DESTROYABLE, destroyableComponent))
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{
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return targets;
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}
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auto entities = EntityManager::Instance()->GetEntitiesByComponent(COMPONENT_TYPE_CONTROLLABLE_PHYSICS);
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for (auto* candidate : entities)
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{
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const auto id = candidate->GetObjectID();
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if (destroyableComponent->CheckValidity(id, ignoreFaction || includeFaction))
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{
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targets.push_back(id);
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}
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}
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}
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return targets;
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}
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BehaviorContext::BehaviorContext(const LWOOBJID originator, const bool calculation)
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{
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this->originator = originator;
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this->syncEntries = {};
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this->timerEntries = {};
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if (calculation)
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{
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this->skillUId = GetUniqueSkillId();
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}
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else
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{
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this->skillUId = 0;
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}
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}
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BehaviorContext::~BehaviorContext()
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{
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Reset();
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}
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