Added new MAXIMUM type to network area timer system. Exclamation boxes now reappear at the correct time
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@ -86,6 +86,7 @@ build-windows-visual-studio/.vs
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# misc
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todo.txt
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todo-old.txt
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# luigi sounds
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sound/samples/sfx_custom_luigi*/*.aiff
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@ -2853,6 +2853,7 @@ const BehaviorScript bhvExclamationBox[] = {
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OR_INT(oFlags, OBJ_FLAG_UPDATE_GFX_POS_AND_ANGLE),
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SET_FLOAT(oCollisionDistance, 300),
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SET_HOME(),
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CALL_NATIVE(bhv_exclamation_box_init),
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BEGIN_LOOP(),
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CALL_NATIVE(bhv_exclamation_box_loop),
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END_LOOP(),
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@ -62,6 +62,12 @@ enum SpTaskState {
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SPTASK_STATE_FINISHED_DP
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};
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enum AreaTimerType {
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AREA_TIMER_TYPE_NONE,
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AREA_TIMER_TYPE_LOOP,
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AREA_TIMER_TYPE_MAXIMUM,
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};
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struct SPTask
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{
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/*0x00*/ OSTask task;
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@ -221,8 +227,9 @@ struct Object
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/*0x21C*/ Mat4 transform;
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/*0x25C*/ void *respawnInfo;
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/*?????*/ u8 createdThroughNetwork;
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/*?????*/ enum AreaTimerType areaTimerType;
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/*?????*/ u32 areaTimer;
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/*?????*/ u32 areaTimerLoopLength;
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/*?????*/ u32 areaTimerDuration;
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/*?????*/ u8 globalPlayerIndex;
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};
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@ -952,22 +952,38 @@ static BhvCommandProc BehaviorCmdTable[] = {
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// Execute the behavior script of the current object, process the object flags, and other miscellaneous code for updating objects.
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void cur_obj_update(void) {
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// handle network area timer
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if (gCurrentObject->areaTimerLoopLength > 0) {
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if (gCurrentObject->areaTimerType != AREA_TIMER_TYPE_NONE) {
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// make sure the area is valid
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if (gNetworkPlayerLocal == NULL || !gNetworkPlayerLocal->currAreaSyncValid) {
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return;
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}
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// catch up the timer in total loop increments
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if (gCurrentObject->areaTimerType == AREA_TIMER_TYPE_LOOP) {
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assert(gCurrentObject->areaTimerDuration > 0);
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u32 difference = (gNetworkAreaTimer - gCurrentObject->areaTimer);
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if (difference >= gCurrentObject->areaTimerLoopLength) {
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u32 catchup = difference / gCurrentObject->areaTimerLoopLength;
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catchup *= gCurrentObject->areaTimerLoopLength;
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if (difference >= gCurrentObject->areaTimerDuration) {
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u32 catchup = difference / gCurrentObject->areaTimerDuration;
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catchup *= gCurrentObject->areaTimerDuration;
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gCurrentObject->areaTimer += catchup;
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}
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}
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// catch up the timer for maximum
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if (gCurrentObject->areaTimerType == AREA_TIMER_TYPE_MAXIMUM) {
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assert(gCurrentObject->areaTimerDuration > 0);
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u32 difference = (gNetworkAreaTimer - gCurrentObject->areaTimer);
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if (difference >= gCurrentObject->areaTimerDuration) {
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if (gCurrentObject->areaTimer < 10) {
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gCurrentObject->areaTimer = gNetworkAreaTimer;
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} else {
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gCurrentObject->areaTimer = (gNetworkAreaTimer - gCurrentObject->areaTimerDuration);
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}
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}
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}
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// cancel object update if it's running faster than the timer
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if (gCurrentObject->areaTimer >= gNetworkAreaTimer) {
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if (gCurrentObject->areaTimer > gNetworkAreaTimer) {
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return;
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}
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}
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@ -1076,7 +1092,7 @@ cur_obj_update_begin:;
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}
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// update network area timer
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if (gCurrentObject->areaTimerLoopLength > 0) {
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if (gCurrentObject->areaTimerType != AREA_TIMER_TYPE_NONE) {
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gCurrentObject->areaTimer++;
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if (gCurrentObject->areaTimer < gNetworkAreaTimer) {
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goto cur_obj_update_begin;
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@ -762,7 +762,7 @@ void load_object_surfaces(s16** data, s16* vertexData) {
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* Transform an object's vertices, reload them, and render the object.
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*/
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void load_object_collision_model(void) {
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if (gCurrentObject->areaTimerLoopLength > 0) {
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if (gCurrentObject->areaTimerType != AREA_TIMER_TYPE_NONE) {
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// only load collision model on last frame
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if (!cur_obj_is_last_nat_update_per_frame()) { return; }
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}
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@ -214,6 +214,7 @@ void bhv_fish_loop(void);
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void bhv_wdw_express_elevator_loop(void);
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void bhv_bub_spawner_loop(void);
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void bhv_bub_loop(void);
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void bhv_exclamation_box_init(void);
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void bhv_exclamation_box_loop(void);
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void bhv_rotating_exclamation_box_loop(void);
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void bhv_sound_spawner_init(void);
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@ -4,8 +4,9 @@ void bhv_small_bomp_init(void) {
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o->oFaceAngleYaw -= 0x4000;
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o->oSmallBompInitX = o->oPosX;
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o->oTimer = position_based_random_float_position() * 100.0f;
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o->areaTimerType = AREA_TIMER_TYPE_LOOP;
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o->areaTimer = 0;
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o->areaTimerLoopLength = 168;
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o->areaTimerDuration = 168;
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}
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void bhv_small_bomp_loop(void) {
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@ -62,8 +63,9 @@ void bhv_small_bomp_loop(void) {
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void bhv_large_bomp_init(void) {
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o->oMoveAngleYaw += 0x4000;
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o->oTimer = position_based_random_float_position() * 100.0f;
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o->areaTimerType = AREA_TIMER_TYPE_LOOP;
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o->areaTimer = 0;
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o->areaTimerLoopLength = 168;
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o->areaTimerDuration = 168;
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}
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void bhv_large_bomp_loop(void) {
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@ -95,8 +95,9 @@ void bhv_lll_bowser_puzzle_spawn_piece(s16 model, const BehaviorScript *behavior
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puzzlePiece->oBowserPuzzlePieceActionList = actionList;
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puzzlePiece->oBowserPuzzlePieceNextAction = actionList;
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puzzlePiece->oTimer = 0;
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puzzlePiece->areaTimerType = AREA_TIMER_TYPE_LOOP;
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puzzlePiece->areaTimer = 0;
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puzzlePiece->areaTimerLoopLength = 650;
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puzzlePiece->areaTimerDuration = 650;
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}
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/**
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@ -50,8 +50,9 @@ void checkerboard_plat_act_rotate(s32 a0, s16 a1) {
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void bhv_checkerboard_platform_init(void) {
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o->oCheckerBoardPlatformUnkFC = o->parentObj->oBehParams2ndByte;
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o->areaTimerType = AREA_TIMER_TYPE_LOOP;
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o->areaTimer = 0;
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o->areaTimerLoopLength = 132 + o->oCheckerBoardPlatformUnkFC * 2;
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o->areaTimerDuration = 132 + o->oCheckerBoardPlatformUnkFC * 2;
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}
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void bhv_checkerboard_platform_loop(void) {
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@ -6,8 +6,10 @@ void bhv_ddd_pole_init(void) {
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o->hitboxDownOffset = 100.0f;
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o->oDDDPoleMaxOffset = 100.0f * o->oBehParams2ndByte;
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}
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o->areaTimerType = AREA_TIMER_TYPE_LOOP;
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o->areaTimer = 0;
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o->areaTimerLoopLength = (((u16)o->oDDDPoleMaxOffset / 10) + 20) * 2;
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o->areaTimerDuration = (((u16)o->oDDDPoleMaxOffset / 10) + 20) * 2;
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}
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void bhv_ddd_pole_update(void) {
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@ -181,12 +181,18 @@ void (*sExclamationBoxActions[])(void) = { exclamation_box_act_0, exclamation_bo
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exclamation_box_act_4, exclamation_box_act_5,
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exclamation_box_act_6 };
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void bhv_exclamation_box_loop(void) {
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if (!network_sync_object_initialized(o)) {
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void bhv_exclamation_box_init(void) {
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struct SyncObject* so = network_init_object(o, SYNC_DISTANCE_ONLY_EVENTS);
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so->syncDeathEvent = FALSE;
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network_init_object_field(o, &o->oExclamationBoxForce);
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network_init_object_field(o, &o->areaTimer);
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o->areaTimerType = AREA_TIMER_TYPE_MAXIMUM;
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o->areaTimer = 0;
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o->areaTimerDuration = 300;
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}
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void bhv_exclamation_box_loop(void) {
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cur_obj_scale(2.0f);
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cur_obj_call_action_function(sExclamationBoxActions);
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}
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@ -9,8 +9,9 @@ struct WFRotatingPlatformData sWFRotatingPlatformData[] = {
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};
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void bhv_wf_rotating_wooden_platform_init(void) {
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o->areaTimerType = AREA_TIMER_TYPE_LOOP;
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o->areaTimer = 0;
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o->areaTimerLoopLength = 380;
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o->areaTimerDuration = 380;
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}
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void bhv_wf_rotating_wooden_platform_loop(void) {
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@ -20,8 +20,10 @@ void bhv_wf_sliding_platform_init(void) {
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}
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o->oTimer = position_based_random_float_position() * 100.0f;
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o->areaTimerType = AREA_TIMER_TYPE_LOOP;
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o->areaTimer = 0;
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o->areaTimerLoopLength = 152;
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o->areaTimerDuration = 152;
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}
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void bhv_wf_sliding_platform_loop(void) {
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@ -97,8 +97,9 @@ void spawn_and_init_wf_platforms(s16 a, const BehaviorScript *bhv) {
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u32 loopTime = 1 + (platform->oPlatformUnk110 / platform->oPlatformUnk10C);
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loopTime *= 2;
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loopTime += 1;
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platform->areaTimerType = AREA_TIMER_TYPE_LOOP;
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platform->areaTimer = 0;
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platform->areaTimerLoopLength = loopTime;
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platform->areaTimerDuration = loopTime;
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}
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void spawn_wf_platform_group(void) {
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@ -305,8 +305,10 @@ struct Object *allocate_object(struct ObjectNode *objList) {
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obj->header.gfx.throwMatrix = NULL;
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obj->createdThroughNetwork = false;
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obj->areaTimerType = AREA_TIMER_TYPE_NONE;
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obj->areaTimer = 0;
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obj->areaTimerLoopLength = 0;
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obj->areaTimerDuration = 0;
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return obj;
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}
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