mirror of
https://github.com/VCMP-SqMod/SqMod.git
synced 2024-11-08 00:37:15 +01:00
26cb65fcbc
Implement helper entity iteration functions.
566 lines
21 KiB
C++
566 lines
21 KiB
C++
// ------------------------------------------------------------------------------------------------
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#include "Entity/Checkpoint.hpp"
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#include "Entity/Player.hpp"
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#include "Base/Color4.hpp"
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#include "Base/Vector3.hpp"
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#include "Core.hpp"
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#include "Core/Tasks.hpp"
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// ------------------------------------------------------------------------------------------------
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namespace SqMod {
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// ------------------------------------------------------------------------------------------------
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SQMOD_DECL_TYPENAME(Typename, _SC("SqCheckpoint"))
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// ------------------------------------------------------------------------------------------------
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const int32_t CCheckpoint::Max = SQMOD_CHECKPOINT_POOL;
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// ------------------------------------------------------------------------------------------------
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SQInteger CCheckpoint::SqGetNull(HSQUIRRELVM vm)
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{
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sq_pushobject(vm, Core::Get().GetNullCheckpoint().GetObj());
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return 1;
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}
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// ------------------------------------------------------------------------------------------------
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LightObj & CCheckpoint::GetNull()
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{
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return Core::Get().GetNullCheckpoint();
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}
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// ------------------------------------------------------------------------------------------------
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CCheckpoint::CCheckpoint(int32_t id)
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: m_ID(VALID_ENTITYGETEX(id, SQMOD_CHECKPOINT_POOL))
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, m_Tag(fmt::format("{}", id)), m_Data(), m_CircularLocks(0)
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{
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/* ... */
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}
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// ------------------------------------------------------------------------------------------------
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const String & CCheckpoint::ToString() const
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{
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return m_Tag;
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}
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// ------------------------------------------------------------------------------------------------
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const String & CCheckpoint::GetTag() const
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{
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return m_Tag;
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetTag(StackStrF & tag)
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{
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if (tag.mLen > 0)
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{
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m_Tag.assign(tag.mPtr, static_cast< size_t >(tag.mLen));
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}
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else
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{
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m_Tag.clear();
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}
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}
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// ------------------------------------------------------------------------------------------------
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CCheckpoint & CCheckpoint::ApplyTag(StackStrF & tag)
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{
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SetTag(tag);
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return *this;
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}
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// ------------------------------------------------------------------------------------------------
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LightObj & CCheckpoint::GetData()
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{
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// Validate the managed identifier
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Validate();
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// Return the requested information
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return m_Data;
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetData(LightObj & data)
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{
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// Validate the managed identifier
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Validate();
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// Apply the specified value
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m_Data = data;
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}
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// ------------------------------------------------------------------------------------------------
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bool CCheckpoint::Destroy(int32_t header, LightObj & payload) const
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{
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// Validate the managed identifier
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Validate();
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// Perform the requested operation
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return Core::Get().DelCheckpoint(m_ID, header, payload);
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}
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// ------------------------------------------------------------------------------------------------
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LightObj & CCheckpoint::GetEvents() const
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{
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// Validate the managed identifier
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Validate();
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// Return the associated event table
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return Core::Get().GetCheckpoint(m_ID).mEvents;
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::CustomEvent(int32_t header, LightObj & payload) const
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{
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// Validate the managed identifier
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Validate();
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// Perfrom the requested action
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Core::Get().EmitCheckpointCustom(m_ID, header, payload);
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}
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// ------------------------------------------------------------------------------------------------
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bool CCheckpoint::IsStreamedFor(CPlayer & player) const
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{
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// Is the specified player even valid?
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if (!player.IsActive())
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{
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STHROWF("Invalid player argument: null");
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}
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// Validate the managed identifier
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Validate();
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// Return the requested information
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return _Func->IsCheckPointStreamedForPlayer(m_ID, player.GetID());
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}
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// ------------------------------------------------------------------------------------------------
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bool CCheckpoint::IsSphere() const
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{
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// Validate the managed identifier
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Validate();
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// Return the requested information
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return _Func->IsCheckPointSphere(m_ID);
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}
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// ------------------------------------------------------------------------------------------------
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int32_t CCheckpoint::GetWorld() const
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{
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// Validate the managed identifier
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Validate();
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// Return the requested information
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return _Func->GetCheckPointWorld(m_ID);
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetWorld(int32_t world)
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{
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// Validate the managed identifier
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Validate();
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// Grab the current value for this property
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const int32_t current = _Func->GetCheckPointWorld(m_ID);
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// Don't even bother if it's the same value
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if (current == world)
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{
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return;
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}
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// Avoid property unwind from a recursive call
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_Func->SetCheckPointWorld(m_ID, world);
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// Avoid infinite recursive event loops
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if (!(m_CircularLocks & CHECKPOINTCL_EMIT_CHECKPOINT_WORLD))
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{
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// Prevent this event from triggering while executed
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BitGuardU32 bg(m_CircularLocks, CHECKPOINTCL_EMIT_CHECKPOINT_WORLD);
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// Now forward the event call
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Core::Get().EmitCheckpointWorld(m_ID, current, world);
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}
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}
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// ------------------------------------------------------------------------------------------------
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Color4 CCheckpoint::GetColor() const
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{
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// Validate the managed identifier
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Validate();
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// Reserve some temporary floats to retrieve the color information
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int32_t r, g, b, a;
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// Query the server for the color values
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_Func->GetCheckPointColour(m_ID, &r, &g, &b, &a);
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// Return the requested information
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return {ConvTo< Color4::Value >::From(r), ConvTo< Color4::Value >::From(g),
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ConvTo< Color4::Value >::From(b), ConvTo< Color4::Value >::From(a)};
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetColor(const Color4 & col) const
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{
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// Validate the managed identifier
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Validate();
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// Perform the requested operation
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_Func->SetCheckPointColour(m_ID, col.r, col.g, col.b, col.a);
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetColorEx3(uint8_t r, uint8_t g, uint8_t b) const
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{
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// Validate the managed identifier
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Validate();
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// Perform the requested operation
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_Func->SetCheckPointColour(m_ID, r, g, b, 0xFF);
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetColorEx4(uint8_t r, uint8_t g, uint8_t b, uint8_t a) const
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{
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// Validate the managed identifier
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Validate();
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// Perform the requested operation
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_Func->SetCheckPointColour(m_ID, r, g, b, a);
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}
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// ------------------------------------------------------------------------------------------------
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Vector3 CCheckpoint::GetPosition() const
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{
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// Validate the managed identifier
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Validate();
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// Create a default vector instance
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Vector3 vec;
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// Query the server for the position values
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_Func->GetCheckPointPosition(m_ID, &vec.x, &vec.y, &vec.z);
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// Return the requested information
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return vec;
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetPosition(const Vector3 & pos) const
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{
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// Validate the managed identifier
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Validate();
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// Perform the requested operation
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_Func->SetCheckPointPosition(m_ID, pos.x, pos.y, pos.z);
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetPositionEx(float x, float y, float z) const
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{
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// Validate the managed identifier
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Validate();
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// Perform the requested operation
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_Func->SetCheckPointPosition(m_ID, x, y, z);
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}
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// ------------------------------------------------------------------------------------------------
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float CCheckpoint::GetRadius() const
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{
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// Validate the managed identifier
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Validate();
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// Return the requested information
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return _Func->GetCheckPointRadius(m_ID);
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetRadius(float radius)
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{
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// Validate the managed identifier
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Validate();
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// Grab the current value for this property
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const float current = _Func->GetCheckPointRadius(m_ID);
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// Avoid property unwind from a recursive call
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_Func->SetCheckPointRadius(m_ID, radius);
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// Avoid infinite recursive event loops
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if (!(m_CircularLocks & CHECKPOINTCL_EMIT_CHECKPOINT_RADIUS))
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{
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// Prevent this event from triggering while executed
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BitGuardU32 bg(m_CircularLocks, CHECKPOINTCL_EMIT_CHECKPOINT_RADIUS);
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// Now forward the event call
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Core::Get().EmitCheckpointRadius(m_ID, current, radius);
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}
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}
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// ------------------------------------------------------------------------------------------------
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LightObj & CCheckpoint::GetOwner() const
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{
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// Validate the managed identifier
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Validate();
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// Return the requested information
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return Core::Get().GetPlayer(_Func->GetCheckPointOwner(m_ID)).mObj;
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}
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// ------------------------------------------------------------------------------------------------
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int32_t CCheckpoint::GetOwnerID() const
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{
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// Validate the managed identifier
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Validate();
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// Return the requested information
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return _Func->GetCheckPointOwner(m_ID);
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}
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// ------------------------------------------------------------------------------------------------
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float CCheckpoint::GetPositionX() const
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{
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// Validate the managed identifier
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Validate();
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// Clear previous position information, if any
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float x = 0.0f, dummy;
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// Query the server for the requested component value
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_Func->GetCheckPointPosition(m_ID, &x, &dummy, &dummy);
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// Return the requested information
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return x;
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}
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// ------------------------------------------------------------------------------------------------
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float CCheckpoint::GetPositionY() const
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{
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// Validate the managed identifier
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Validate();
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// Clear previous position information, if any
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float y = 0.0f, dummy;
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// Query the server for the requested component value
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_Func->GetCheckPointPosition(m_ID, &dummy, &y, &dummy);
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// Return the requested information
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return y;
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}
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// ------------------------------------------------------------------------------------------------
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float CCheckpoint::GetPositionZ() const
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{
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// Validate the managed identifier
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Validate();
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// Clear previous position information, if any
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float z = 0.0f, dummy;
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// Query the server for the requested component value
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_Func->GetCheckPointPosition(m_ID, &dummy, &dummy, &z);
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// Return the requested information
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return z;
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetPositionX(float x) const
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{
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// Validate the managed identifier
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Validate();
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// Reserve some temporary floats to retrieve the missing components
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float y, z, dummy;
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// Retrieve the current values for unchanged components
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_Func->GetCheckPointPosition(m_ID, &dummy, &y, &z);
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// Perform the requested operation
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_Func->SetCheckPointPosition(m_ID, x, y, z);
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetPositionY(float y) const
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{
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// Validate the managed identifier
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Validate();
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// Reserve some temporary floats to retrieve the missing components
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float x, z, dummy;
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// Retrieve the current values for unchanged components
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_Func->GetCheckPointPosition(m_ID, &x, &dummy, &z);
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// Perform the requested operation
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_Func->SetCheckPointPosition(m_ID, x, y, z);
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetPositionZ(float z) const
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{
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// Validate the managed identifier
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Validate();
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// Reserve some temporary floats to retrieve the missing components
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float x, y, dummy;
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// Retrieve the current values for unchanged components
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_Func->GetCheckPointPosition(m_ID, &x, &y, &dummy);
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// Perform the requested operation
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_Func->SetCheckPointPosition(m_ID, x, y, z);
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}
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// ------------------------------------------------------------------------------------------------
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int32_t CCheckpoint::GetColorR() const
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{
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// Validate the managed identifier
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Validate();
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// Clear previous color information, if any
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int32_t r = 0, dummy;
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// Query the server for the requested component value
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_Func->GetCheckPointColour(m_ID, &r, &dummy, &dummy, &dummy);
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// Return the requested information
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return r;
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}
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// ------------------------------------------------------------------------------------------------
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int32_t CCheckpoint::GetColorG() const
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{
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// Validate the managed identifier
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Validate();
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// Clear previous color information, if any
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int32_t g = 0, dummy;
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// Query the server for the requested component value
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_Func->GetCheckPointColour(m_ID, &dummy, &g, &dummy, &dummy);
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// Return the requested information
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return g;
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}
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// ------------------------------------------------------------------------------------------------
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int32_t CCheckpoint::GetColorB() const
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{
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// Validate the managed identifier
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Validate();
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// Clear previous color information, if any
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int32_t b = 0, dummy;
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// Query the server for the requested component value
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_Func->GetCheckPointColour(m_ID, &dummy, &dummy, &b, &dummy);
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// Return the requested information
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return b;
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}
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// ------------------------------------------------------------------------------------------------
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int32_t CCheckpoint::GetColorA() const
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{
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// Validate the managed identifier
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Validate();
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// Clear previous color information, if any
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int32_t a = 0, dummy;
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// Query the server for the requested component value
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_Func->GetCheckPointColour(m_ID, &dummy, &dummy, &dummy, &a);
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// Return the requested information
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return a;
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetColorR(int32_t r) const
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{
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// Validate the managed identifier
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Validate();
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// Reserve some temporary integers to retrieve the missing components
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int32_t g, b, a, dummy;
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// Retrieve the current values for unchanged components
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_Func->GetCheckPointColour(m_ID, &dummy, &g, &b, &a);
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// Perform the requested operation
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_Func->SetCheckPointColour(m_ID, r, g, b, a);
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetColorG(int32_t g) const
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{
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// Validate the managed identifier
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Validate();
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// Reserve some temporary integers to retrieve the missing components
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int32_t r, b, a, dummy;
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// Retrieve the current values for unchanged components
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_Func->GetCheckPointColour(m_ID, &r, &dummy, &b, &a);
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// Perform the requested operation
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_Func->SetCheckPointColour(m_ID, r, g, b, a);
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetColorB(int32_t b) const
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{
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// Validate the managed identifier
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Validate();
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// Reserve some temporary integers to retrieve the missing components
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int32_t r, g, a, dummy;
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// Retrieve the current values for unchanged components
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_Func->GetCheckPointColour(m_ID, &r, &g, &dummy, &a);
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// Perform the requested operation
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_Func->SetCheckPointColour(m_ID, r, g, b, a);
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}
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// ------------------------------------------------------------------------------------------------
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void CCheckpoint::SetColorA(int32_t a) const
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{
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// Validate the managed identifier
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Validate();
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// Reserve some temporary integers to retrieve the missing components
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int32_t r, g, b, dummy;
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// Retrieve the current values for unchanged components
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_Func->GetCheckPointColour(m_ID, &r, &g, &b, &dummy);
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// Perform the requested operation
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_Func->SetCheckPointColour(m_ID, r, g, b, a);
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}
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// ------------------------------------------------------------------------------------------------
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static LightObj & Checkpoint_CreateEx1a(int32_t world, bool sphere, float x, float y, float z,
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uint8_t r, uint8_t g, uint8_t b, uint8_t a, float radius)
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{
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return Core::Get().NewCheckpoint(-1, world, sphere, x, y, z, r, g, b, a, radius,
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SQMOD_CREATE_DEFAULT, NullLightObj()).mObj;
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}
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static LightObj & Checkpoint_CreateEx1b(int32_t world, bool sphere, float x, float y, float z,
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uint8_t r, uint8_t g, uint8_t b, uint8_t a, float radius,
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int32_t header, LightObj & payload)
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{
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return Core::Get().NewCheckpoint(-1, world, sphere, x, y, z, r, g, b, a,
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radius, header, payload).mObj;
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}
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// ------------------------------------------------------------------------------------------------
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static LightObj & Checkpoint_Create1a(int32_t world, bool sphere, const Vector3 & pos,
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const Color4 & color, float radius)
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{
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return Core::Get().NewCheckpoint(-1, world, sphere, pos.x, pos.y, pos.z,
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color.r, color.g, color.b, color.a, radius,
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SQMOD_CREATE_DEFAULT, NullLightObj()).mObj;
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}
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static LightObj & Checkpoint_Create1b(int32_t world, bool sphere, const Vector3 & pos,
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const Color4 & color, float radius, int32_t header, LightObj & payload)
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{
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return Core::Get().NewCheckpoint(-1, world, sphere, pos.x, pos.y, pos.z,
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color.r, color.g, color.b, color.a, radius, header, payload).mObj;
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}
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// ================================================================================================
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void Register_CCheckpoint(HSQUIRRELVM vm)
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{
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RootTable(vm).Bind(Typename::Str,
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Class< CCheckpoint, NoConstructor< CCheckpoint > >(vm, Typename::Str)
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// Meta-methods
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.SquirrelFunc(_SC("_typename"), &Typename::Fn)
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.Func(_SC("_tostring"), &CCheckpoint::ToString)
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// Static Values
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.SetStaticValue(_SC("MaxID"), CCheckpoint::Max)
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// Core Properties
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.Prop(_SC("On"), &CCheckpoint::GetEvents)
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.Prop(_SC("ID"), &CCheckpoint::GetID)
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.Prop(_SC("Tag"), &CCheckpoint::GetTag, &CCheckpoint::SetTag)
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.Prop(_SC("Data"), &CCheckpoint::GetData, &CCheckpoint::SetData)
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.Prop(_SC("Active"), &CCheckpoint::IsActive)
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// Core Methods
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.FmtFunc(_SC("SetTag"), &CCheckpoint::ApplyTag)
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.Func(_SC("CustomEvent"), &CCheckpoint::CustomEvent)
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// Core Overloads
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.Overload(_SC("Destroy"), &CCheckpoint::Destroy0)
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.Overload(_SC("Destroy"), &CCheckpoint::Destroy1)
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.Overload(_SC("Destroy"), &CCheckpoint::Destroy)
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// Properties
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.Prop(_SC("Sphere"), &CCheckpoint::IsSphere)
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.Prop(_SC("World"), &CCheckpoint::GetWorld, &CCheckpoint::SetWorld)
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.Prop(_SC("Color"), &CCheckpoint::GetColor, &CCheckpoint::SetColor)
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.Prop(_SC("Colour"), &CCheckpoint::GetColor, &CCheckpoint::SetColor)
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.Prop(_SC("Pos"), &CCheckpoint::GetPosition, &CCheckpoint::SetPosition)
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.Prop(_SC("Position"), &CCheckpoint::GetPosition, &CCheckpoint::SetPosition)
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.Prop(_SC("Radius"), &CCheckpoint::GetRadius, &CCheckpoint::SetRadius)
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.Prop(_SC("Owner"), &CCheckpoint::GetOwner)
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.Prop(_SC("OwnerID"), &CCheckpoint::GetOwnerID)
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.Prop(_SC("PosX"), &CCheckpoint::GetPositionX, &CCheckpoint::SetPositionX)
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.Prop(_SC("PosY"), &CCheckpoint::GetPositionY, &CCheckpoint::SetPositionY)
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.Prop(_SC("PosZ"), &CCheckpoint::GetPositionZ, &CCheckpoint::SetPositionZ)
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.Prop(_SC("Red"), &CCheckpoint::GetColorR, &CCheckpoint::SetColorR)
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.Prop(_SC("Green"), &CCheckpoint::GetColorG, &CCheckpoint::SetColorG)
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.Prop(_SC("Blue"), &CCheckpoint::GetColorB, &CCheckpoint::SetColorB)
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.Prop(_SC("Alpha"), &CCheckpoint::GetColorA, &CCheckpoint::SetColorA)
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// Member Methods
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.Func(_SC("StreamedFor"), &CCheckpoint::IsStreamedFor)
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.Func(_SC("SetPos"), &CCheckpoint::SetPositionEx)
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.Func(_SC("SetPosition"), &CCheckpoint::SetPositionEx)
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// Member Overloads
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.Overload(_SC("SetColor"), &CCheckpoint::SetColorEx3)
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.Overload(_SC("SetColor"), &CCheckpoint::SetColorEx4)
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// Static Overloads
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.StaticOverload(_SC("CreateEx"), &Checkpoint_CreateEx1a)
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.StaticOverload(_SC("CreateEx"), &Checkpoint_CreateEx1b)
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.StaticOverload(_SC("Create"), &Checkpoint_Create1a)
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.StaticOverload(_SC("Create"), &Checkpoint_Create1b)
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// Raw Squirrel Methods
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.SquirrelFunc(_SC("NullInst"), &CCheckpoint::SqGetNull)
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.SquirrelFunc(_SC("MakeTask"), &Tasks::MakeTask< CCheckpoint, ENT_CHECKPOINT >)
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.SquirrelFunc(_SC("DropTask"), &Tasks::DropTask< CCheckpoint, ENT_CHECKPOINT >)
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.SquirrelFunc(_SC("DoesTask"), &Tasks::DoesTask< CCheckpoint, ENT_CHECKPOINT >)
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.SquirrelFunc(_SC("FindTask"), &Tasks::FindTask< CCheckpoint, ENT_CHECKPOINT >)
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);
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}
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} // Namespace:: SqMod
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