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Implement/match LegoBuildingManager::Tickle (#1156)
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@ -57,11 +57,10 @@ public:
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LegoCacheSound* FindSoundByKey(const char* p_key);
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LegoCacheSound* ManageSoundEntry(LegoCacheSound* p_sound);
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LegoCacheSound* Play(const char* p_key, const char* p_name, MxBool p_looping);
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LegoCacheSound* Play(LegoCacheSound* p_sound, const char* p_name, MxBool p_looping);
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void Destroy(LegoCacheSound*& p_sound);
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private:
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LegoCacheSound* Play(LegoCacheSound* p_sound, const char* p_name, MxBool p_looping);
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Set100d6b4c m_set; // 0x04
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List100d6b4c m_list; // 0x14
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};
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@ -115,6 +115,8 @@ private:
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static MxLong g_timeLastSoundPlayed;
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static MxS32 g_unk0x100f0b88;
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static MxBool g_unk0x100f0b8c;
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static undefined4 g_unk0x100f0bac;
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static undefined4 g_unk0x100f0bb0;
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};
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#endif // LEGORACERS_H
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@ -13,6 +13,8 @@
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#include "mxticklemanager.h"
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#include "mxtimer.h"
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#include <vec.h>
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DECOMP_SIZE_ASSERT(LegoBuildingManager, 0x30)
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DECOMP_SIZE_ASSERT(LegoBuildingInfo, 0x2c)
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DECOMP_SIZE_ASSERT(LegoBuildingManager::AnimEntry, 0x14)
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@ -682,18 +684,77 @@ void LegoBuildingManager::ScheduleAnimation(LegoEntity* p_entity, MxLong p_lengt
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FUN_100307b0(p_entity, -2);
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}
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// STUB: LEGO1 0x10030220
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// FUNCTION: LEGO1 0x10030220
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MxResult LegoBuildingManager::Tickle()
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{
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// WIP, included some of this to understand the AnimEntry array.
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LegoTime time = Timer()->GetTime();
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MxLong time = Timer()->GetTime();
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if (m_numEntries != 0) {
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if (m_numEntries > 0) {
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for (MxS32 i = 0; i < m_numEntries; i++) {
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AnimEntry* entry = m_entries[i];
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if (entry->m_time <= time) {
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// Code to animate and play sounds
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for (MxS32 i = 0; i < m_numEntries; i++) {
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AnimEntry** ppEntry = &m_entries[i];
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AnimEntry* entry = *ppEntry;
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if (m_world != CurrentWorld() || !entry->m_entity) {
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delete entry;
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m_numEntries--;
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if (m_numEntries != i) {
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m_entries[i] = m_entries[m_numEntries];
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m_entries[m_numEntries] = NULL;
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}
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break;
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}
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if (entry->m_time - time > 1000) {
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break;
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}
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if (!entry->m_muted) {
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entry->m_muted = TRUE;
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SoundManager()->GetCacheSoundManager()->Play(m_sound, entry->m_roi->GetName(), FALSE);
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}
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MxMatrix local48;
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MxMatrix locald8;
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MxMatrix local120(entry->m_roi->GetLocal2World());
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Mx3DPointFloat local134(local120[3]);
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ZEROVEC3(local120[3]);
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locald8.SetIdentity();
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local48 = local120;
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local134[1] = sin(((entry->m_time - time) * 10) * 0.0062831999f) * 0.4 + (entry->m_unk0x0c -= 0.05);
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SET3(local120[3], local134);
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entry->m_roi->UpdateTransformationRelativeToParent(local120);
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VideoManager()->Get3DManager()->Moved(*entry->m_roi);
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if (entry->m_time < time) {
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LegoBuildingInfo* info = GetInfo(entry->m_entity);
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if (info->m_unk0x11 && !m_unk0x28) {
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MxS32 index = info - g_buildingInfo;
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AdjustHeight(index);
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MxMatrix mat = entry->m_roi->GetLocal2World();
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mat[3][1] = g_buildingInfo[index].m_unk0x014;
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entry->m_roi->UpdateTransformationRelativeToParent(mat);
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VideoManager()->Get3DManager()->Moved(*entry->m_roi);
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}
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else {
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info->m_unk0x11 = 0;
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entry->m_roi->SetVisibility(FALSE);
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}
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delete entry;
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m_numEntries--;
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if (m_numEntries != i) {
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i--;
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*ppEntry = m_entries[m_numEntries];
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m_entries[m_numEntries] = NULL;
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}
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}
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}
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@ -21,12 +21,6 @@ DECOMP_SIZE_ASSERT(EdgeReference, 0x08)
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DECOMP_SIZE_ASSERT(SkeletonKickPhase, 0x10)
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DECOMP_SIZE_ASSERT(LegoRaceCar, 0x200)
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// GLOBAL: LEGO1 0x100f0bac
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static undefined4 g_unk0x100f0bac = 0;
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// GLOBAL: LEGO1 0x100f0bb0
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static undefined4 g_unk0x100f0bb0 = 0;
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// GLOBAL: LEGO1 0x100f0a20
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// GLOBAL: BETA10 0x101f5e34
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EdgeReference LegoRaceCar::g_skBMap[] = {
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@ -142,6 +136,12 @@ MxS32 LegoRaceCar::g_unk0x100f0b88 = 0;
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// GLOBAL: BETA10 0x101f5f98
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MxBool LegoRaceCar::g_unk0x100f0b8c = TRUE;
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// GLOBAL: LEGO1 0x100f0bac
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undefined4 LegoRaceCar::g_unk0x100f0bac = 0;
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// GLOBAL: LEGO1 0x100f0bb0
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undefined4 LegoRaceCar::g_unk0x100f0bb0 = 0;
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// Initialized at LEGO1 0x10012db0
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// GLOBAL: LEGO1 0x10102af0
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// GLOBAL: BETA10 0x102114c0
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@ -46,12 +46,12 @@ Device* RendererImpl::CreateDevice(const DeviceDirect3DCreateData& data)
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return device;
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}
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// GLOBAL: LEGO1 0x10101040
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static int g_SetBufferCount = 1;
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// FUNCTION: LEGO1 0x100a1900
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Device* RendererImpl::CreateDevice(const DeviceDirectDrawCreateData& data)
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{
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// GLOBAL: LEGO1 0x10101040
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static int g_SetBufferCount = 1;
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DeviceImpl* device = new DeviceImpl();
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HRESULT result = m_data->CreateDeviceFromSurface(
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const_cast<LPGUID>(data.m_driverGUID),
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