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* Implement/match `Act3Brickster::HitActor` * Fixes * Fixes * Fixes * Add `Act3Cop::VTable0x9c` * Fix
187 lines
4.1 KiB
C++
187 lines
4.1 KiB
C++
#include "legojetskiraceactor.h"
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#include "legonavcontroller.h"
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#include "legopathcontroller.h"
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#include "misc.h"
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#include "mxmisc.h"
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#include "mxvariabletable.h"
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#include <vec.h>
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DECOMP_SIZE_ASSERT(LegoJetskiRaceActor, 0x1a8)
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// GLOBAL: LEGO1 0x100da044
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// GLOBAL: BETA10 0x101be9fc
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MxFloat g_unk0x100da044 = 8.0f;
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// FUNCTION: LEGO1 0x10080ef0
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// FUNCTION: BETA10 0x100a8990
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LegoJetskiRaceActor::LegoJetskiRaceActor()
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{
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m_unk0x10 = 0.95f;
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m_unk0x14 = 0.04f;
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m_unk0x18 = 0.5f;
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m_unk0x150 = 1.5f;
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}
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// FUNCTION: LEGO1 0x10081120
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// FUNCTION: BETA10 0x100ce19f
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MxS32 LegoJetskiRaceActor::VTable0x1c(LegoPathBoundary* p_boundary, LegoEdge* p_edge)
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{
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// These are almost certainly not the correct names, but they produce the correct BETA10 stack
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Mx3DPointFloat a;
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Mx3DPointFloat bbb;
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Mx3DPointFloat c;
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// These names are verified by an assertion below
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Vector3* v1 = NULL;
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Vector3* v2 = NULL;
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if (m_state == 1) {
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if (m_destEdge == LegoPathController::GetControlEdgeA(13)) {
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m_boundary = (LegoPathBoundary*) m_destEdge->OtherFace(LegoPathController::GetControlBoundaryA(13));
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}
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else if (m_destEdge == LegoPathController::GetControlEdgeA(15)) {
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m_boundary = (LegoPathBoundary*) m_destEdge->OtherFace(LegoPathController::GetControlBoundaryA(15));
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}
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m_state = 0;
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m_unk0x7c = 0;
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if (m_userNavFlag) {
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NavController()->SetLinearVel(m_worldSpeed);
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return 0;
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}
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else {
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return 1;
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}
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}
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else {
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if (p_edge == LegoPathController::GetControlEdgeA(12)) {
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m_state = 1;
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if (m_worldSpeed < g_unk0x100da044) {
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m_worldSpeed = g_unk0x100da044;
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}
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m_destEdge = LegoPathController::GetControlEdgeA(13);
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m_boundary = LegoPathController::GetControlBoundaryA(13);
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}
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else if (p_edge == LegoPathController::GetControlEdgeA(14)) {
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m_state = 1;
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if (m_worldSpeed < g_unk0x100da044) {
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m_worldSpeed = g_unk0x100da044;
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}
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m_destEdge = LegoPathController::GetControlEdgeA(15);
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m_boundary = LegoPathController::GetControlBoundaryA(15);
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}
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if (m_state == 1) {
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if (m_userNavFlag) {
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m_unk0xe4 = 0.5f;
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}
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v1 = m_destEdge->CCWVertex(*m_boundary);
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v2 = m_destEdge->CWVertex(*m_boundary);
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assert(v1 && v2);
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LERP3(a, *v1, *v2, m_unk0xe4);
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m_destEdge->FUN_1002ddc0(*m_boundary, bbb);
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c.EqualsCross(&bbb, m_boundary->GetUnknown0x14());
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c.Unitize();
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Mx3DPointFloat worldDirection(m_roi->GetWorldDirection());
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if (!m_userNavFlag) {
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worldDirection *= -1.0f;
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}
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if (VTable0x80(m_roi->GetWorldPosition(), worldDirection, a, c)) {
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#ifdef NDEBUG
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m_unk0x7c = 0;
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return 0;
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#else
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assert(0);
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return -1;
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#endif
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}
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m_unk0x7c = 0;
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return 0;
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}
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else {
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return 1;
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}
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}
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}
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// FUNCTION: LEGO1 0x10081550
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void LegoJetskiRaceActor::VTable0x70(float p_time)
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{
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if (m_unk0x0c == 0) {
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const LegoChar* raceState = VariableTable()->GetVariable(g_raceState);
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if (!stricmp(raceState, g_racing)) {
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m_unk0x0c = 1;
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m_lastTime = p_time - 1.0f;
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m_unk0x1c = p_time;
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}
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else if (!m_userNavFlag) {
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LegoAnimActor::VTable0x70(m_lastTime + 1.0f);
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}
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}
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if (m_unk0x0c == 1) {
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LegoAnimActor::VTable0x70(p_time);
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}
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}
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// FUNCTION: LEGO1 0x10081fd0
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MxU32 LegoJetskiRaceActor::VTable0x6c(
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LegoPathBoundary* p_boundary,
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Vector3& p_v1,
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Vector3& p_v2,
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float p_f1,
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float p_f2,
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Vector3& p_v3
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)
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{
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LegoAnimPresenterSet& presenters = p_boundary->GetPresenters();
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for (LegoAnimPresenterSet::iterator itap = presenters.begin(); itap != presenters.end(); itap++) {
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if ((*itap)->VTable0x94(p_v1, p_v2, p_f1, p_f2, p_v3)) {
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return 1;
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}
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}
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LegoPathActorSet& plpas = p_boundary->GetActors();
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LegoPathActorSet lpas(plpas);
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for (LegoPathActorSet::iterator itpa = lpas.begin(); itpa != lpas.end(); itpa++) {
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if (plpas.find(*itpa) != plpas.end()) {
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LegoPathActor* actor = *itpa;
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if (this != actor) {
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LegoROI* roi = actor->GetROI();
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if (roi != NULL && (roi->GetVisibility() || actor->GetCameraFlag())) {
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if (roi->FUN_100a9410(p_v1, p_v2, p_f1, p_f2, p_v3, m_collideBox && actor->GetCollideBox())) {
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HitActor(actor, TRUE);
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if (actor->HitActor(this, FALSE) < 0) {
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return 0;
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}
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else {
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return 2;
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}
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}
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}
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}
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}
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}
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return 0;
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}
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