lightning.cpp 38 KB

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  1. //-----------------------------------------------------------------------------
  2. // Copyright (c) 2012 GarageGames, LLC
  3. //
  4. // Permission is hereby granted, free of charge, to any person obtaining a copy
  5. // of this software and associated documentation files (the "Software"), to
  6. // deal in the Software without restriction, including without limitation the
  7. // rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
  8. // sell copies of the Software, and to permit persons to whom the Software is
  9. // furnished to do so, subject to the following conditions:
  10. //
  11. // The above copyright notice and this permission notice shall be included in
  12. // all copies or substantial portions of the Software.
  13. //
  14. // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  15. // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  16. // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  17. // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  18. // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
  19. // FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
  20. // IN THE SOFTWARE.
  21. //-----------------------------------------------------------------------------
  22. #include "platform/platform.h"
  23. #include "T3D/fx/lightning.h"
  24. #include "scene/sceneRenderState.h"
  25. #include "console/consoleTypes.h"
  26. #include "math/mathIO.h"
  27. #include "core/stream/bitStream.h"
  28. #include "T3D/gameBase/gameConnection.h"
  29. #include "T3D/shapeBase.h"
  30. #include "math/mRandom.h"
  31. #include "math/mathUtils.h"
  32. #include "terrain/terrData.h"
  33. #include "scene/sceneManager.h"
  34. #include "T3D/player.h"
  35. #include "T3D/camera.h"
  36. #include "sfx/sfxSystem.h"
  37. #include "sfx/sfxTrack.h"
  38. #include "sfx/sfxTypes.h"
  39. #include "gfx/primBuilder.h"
  40. #include "console/engineAPI.h"
  41. IMPLEMENT_CO_DATABLOCK_V1(LightningData);
  42. IMPLEMENT_CO_NETOBJECT_V1(Lightning);
  43. ConsoleDocClass( LightningData,
  44. "@brief Common data for a Lightning emitter object.\n"
  45. "@see Lightning\n"
  46. "@ingroup FX\n"
  47. "@ingroup Atmosphere\n"
  48. "@ingroup Datablocks\n"
  49. );
  50. ConsoleDocClass( Lightning,
  51. "@brief An emitter for lightning bolts.\n\n"
  52. "Lightning strike events are created on the server and transmitted to all "
  53. "clients to render the bolt. The strike may be followed by a random thunder "
  54. "sound. Player or Vehicle objects within the Lightning strike range can be "
  55. "hit and damaged by bolts.\n"
  56. "@see LightningData\n"
  57. "@ingroup FX\n"
  58. "@ingroup Atmosphere\n"
  59. );
  60. IMPLEMENT_CALLBACK( Lightning, applyDamage, void, ( const Point3F& hitPosition, const Point3F& hitNormal, SceneObject* hitObject ),
  61. ( hitPosition, hitNormal, hitObject ),
  62. "Informs an object that it was hit by a lightning bolt and needs to take damage.\n"
  63. "@param hitPosition World position hit by the lightning bolt.\n"
  64. "@param hitNormal Surface normal at @a hitPosition.\n"
  65. "@param hitObject Player or Vehicle object that was hit.\n"
  66. "@tsexample\n"
  67. "function Lightning::applyDamage( %this, %hitPosition, %hitNormal, %hitObject )\n"
  68. "{\n"
  69. " // apply damage to the player\n"
  70. " %hitObject.applyDamage( 25 );\n"
  71. "}\n"
  72. "@endtsexample\n"
  73. );
  74. MRandomLCG sgLightningRand;
  75. S32 QSORT_CALLBACK cmpSounds(const void* p1, const void* p2)
  76. {
  77. U32 i1 = *((const S32*)p1);
  78. U32 i2 = *((const S32*)p2);
  79. if (i1 < i2) {
  80. return 1;
  81. } else if (i1 > i2) {
  82. return -1;
  83. } else {
  84. return 0;
  85. }
  86. }
  87. //--------------------------------------------------------------------------
  88. //--------------------------------------
  89. //
  90. class LightningStrikeEvent : public NetEvent
  91. {
  92. public:
  93. typedef NetEvent Parent;
  94. enum EventType {
  95. WarningFlash = 0,
  96. Strike = 1,
  97. TargetedStrike = 2,
  98. TypeMin = WarningFlash,
  99. TypeMax = TargetedStrike
  100. };
  101. enum Constants {
  102. PositionalBits = 10
  103. };
  104. Point2F mStart;
  105. SimObjectPtr<SceneObject> mTarget;
  106. Lightning* mLightning;
  107. // Set by unpack...
  108. public:
  109. S32 mClientId;
  110. public:
  111. LightningStrikeEvent();
  112. ~LightningStrikeEvent();
  113. void pack(NetConnection*, BitStream*);
  114. void write(NetConnection*, BitStream*){}
  115. void unpack(NetConnection*, BitStream*);
  116. void process(NetConnection*);
  117. DECLARE_CONOBJECT(LightningStrikeEvent);
  118. };
  119. IMPLEMENT_CO_CLIENTEVENT_V1(LightningStrikeEvent);
  120. ConsoleDocClass( LightningStrikeEvent,
  121. "@brief Network event that triggers a lightning strike on the client when it "
  122. "is received.\n\n"
  123. "This event is sent to all clients when the warningFlashes(), "
  124. "strikeRandomPoint() or strikeObject() methods are invoked on the Lightning "
  125. "object on the server.\n"
  126. "@see Lightning, LightningData\n"
  127. "@ingroup FX\n"
  128. "@ingroup Atmosphere\n"
  129. );
  130. LightningStrikeEvent::LightningStrikeEvent()
  131. {
  132. mLightning = NULL;
  133. mTarget = NULL;
  134. mClientId = 0;
  135. }
  136. LightningStrikeEvent::~LightningStrikeEvent()
  137. {
  138. }
  139. void LightningStrikeEvent::pack(NetConnection* con, BitStream* stream)
  140. {
  141. if(!mLightning)
  142. {
  143. stream->writeFlag(false);
  144. return;
  145. }
  146. S32 id = con->getGhostIndex(mLightning);
  147. if(id == -1)
  148. {
  149. stream->writeFlag(false);
  150. return;
  151. }
  152. stream->writeFlag(true);
  153. stream->writeRangedU32(U32(id), 0, NetConnection::MaxGhostCount);
  154. stream->writeFloat(mStart.x, PositionalBits);
  155. stream->writeFloat(mStart.y, PositionalBits);
  156. if( mTarget )
  157. {
  158. S32 ghostIndex = con->getGhostIndex(mTarget);
  159. if (ghostIndex == -1)
  160. stream->writeFlag(false);
  161. else
  162. {
  163. stream->writeFlag(true);
  164. stream->writeRangedU32(U32(ghostIndex), 0, NetConnection::MaxGhostCount);
  165. }
  166. }
  167. else
  168. stream->writeFlag( false );
  169. }
  170. void LightningStrikeEvent::unpack(NetConnection* con, BitStream* stream)
  171. {
  172. if(!stream->readFlag())
  173. return;
  174. mClientId = stream->readRangedU32(0, NetConnection::MaxGhostCount);
  175. mLightning = NULL;
  176. NetObject* pObject = con->resolveGhost(mClientId);
  177. if (pObject)
  178. mLightning = dynamic_cast<Lightning*>(pObject);
  179. mStart.x = stream->readFloat(PositionalBits);
  180. mStart.y = stream->readFloat(PositionalBits);
  181. if( stream->readFlag() )
  182. {
  183. // target id
  184. S32 mTargetID = stream->readRangedU32(0, NetConnection::MaxGhostCount);
  185. NetObject* tObject = con->resolveGhost(mTargetID);
  186. if(tObject != NULL )
  187. {
  188. mTarget = dynamic_cast<SceneObject*>(tObject);
  189. }
  190. if( bool(mTarget) == false )
  191. {
  192. Con::errorf(ConsoleLogEntry::General, "LightningStrikeEvent::unpack: could not resolve target ghost properly");
  193. }
  194. }
  195. }
  196. void LightningStrikeEvent::process(NetConnection*)
  197. {
  198. if (mLightning)
  199. mLightning->processEvent(this);
  200. }
  201. //--------------------------------------------------------------------------
  202. //--------------------------------------
  203. //
  204. LightningData::LightningData()
  205. {
  206. INIT_SOUNDASSET(StrikeSound);
  207. for (S32 i = 0; i < MaxThunders; i++)
  208. {
  209. INIT_SOUNDASSET_ARRAY(ThunderSound, i);
  210. }
  211. for (S32 i = 0; i < MaxTextures; i++)
  212. {
  213. strikeTextureNames[i] = NULL;
  214. strikeTextures[i] = NULL;
  215. }
  216. numThunders = 0;
  217. mNumStrikeTextures = 0;
  218. }
  219. LightningData::~LightningData()
  220. {
  221. }
  222. //--------------------------------------------------------------------------
  223. void LightningData::initPersistFields()
  224. {
  225. INITPERSISTFIELD_SOUNDASSET(StrikeSound, LightningData, "Sound to play when lightning STRIKES!");
  226. addArray("Thunders", MaxThunders);
  227. INITPERSISTFIELD_SOUNDASSET_ARRAY(ThunderSound, MaxThunders, LightningData, "Sounds for thunder.");
  228. endArray("Thunders");
  229. addField( "strikeTextures", TypeString, Offset(strikeTextureNames, LightningData), MaxTextures,
  230. "List of textures to use to render lightning strikes." );
  231. Parent::initPersistFields();
  232. }
  233. //--------------------------------------------------------------------------
  234. bool LightningData::onAdd()
  235. {
  236. if(!Parent::onAdd())
  237. return false;
  238. return true;
  239. }
  240. bool LightningData::preload(bool server, String &errorStr)
  241. {
  242. if (Parent::preload(server, errorStr) == false)
  243. return false;
  244. //dQsort(thunderSounds, MaxThunders, sizeof(SFXTrack*), cmpSounds);
  245. if (server == false)
  246. {
  247. for (S32 i = 0; i < MaxThunders; i++)
  248. {
  249. if (getThunderSound(i))
  250. {
  251. _setThunderSound(getThunderSound(i), i);
  252. Con::printf("Thunder sound: %d %s", i, getThunderSound(i));
  253. if (!getThunderSoundProfile(i))
  254. Con::errorf(ConsoleLogEntry::General, "LightningData::preload: Cant get an sfxProfile for thunder.");
  255. }
  256. }
  257. if(getStrikeSound() && !getStrikeSoundProfile())
  258. Con::errorf(ConsoleLogEntry::General, "LightningData::preload: can't get sfxProfile from asset");
  259. mNumStrikeTextures = 0;
  260. for (U32 k = 0; k < MaxTextures; k++)
  261. {
  262. if (strikeTextureNames[k][0])
  263. {
  264. strikeTextures[k] = GFXTexHandle(strikeTextureNames[k], &GFXStaticTextureProfile, avar("%s() - strikeTextures[%d] (line %d)", __FUNCTION__, k, __LINE__));
  265. mNumStrikeTextures++;
  266. }
  267. }
  268. }
  269. return true;
  270. }
  271. //--------------------------------------------------------------------------
  272. void LightningData::packData(BitStream* stream)
  273. {
  274. Parent::packData(stream);
  275. U32 i;
  276. for (i = 0; i < MaxThunders; i++)
  277. {
  278. PACKDATA_SOUNDASSET_ARRAY(ThunderSound, i);
  279. }
  280. stream->writeInt(mNumStrikeTextures, 4);
  281. for (i = 0; i < MaxTextures; i++)
  282. stream->writeString(strikeTextureNames[i]);
  283. PACKDATA_SOUNDASSET(StrikeSound);
  284. }
  285. void LightningData::unpackData(BitStream* stream)
  286. {
  287. Parent::unpackData(stream);
  288. U32 i;
  289. for (i = 0; i < MaxThunders; i++)
  290. {
  291. UNPACKDATA_SOUNDASSET_ARRAY(ThunderSound, i);
  292. }
  293. mNumStrikeTextures = stream->readInt(4);
  294. for (i = 0; i < MaxTextures; i++)
  295. strikeTextureNames[i] = stream->readSTString();
  296. UNPACKDATA_SOUNDASSET(StrikeSound);
  297. }
  298. //--------------------------------------------------------------------------
  299. //--------------------------------------
  300. //
  301. Lightning::Lightning()
  302. {
  303. mNetFlags.set(Ghostable|ScopeAlways);
  304. mTypeMask |= StaticObjectType|EnvironmentObjectType;
  305. mDataBlock = NULL;
  306. mLastThink = 0;
  307. mStrikeListHead = NULL;
  308. mThunderListHead = NULL;
  309. strikesPerMinute = 12;
  310. strikeWidth = 2.5;
  311. chanceToHitTarget = 0.5f;
  312. strikeRadius = 20.0f;
  313. boltStartRadius = 20.0f;
  314. color.set( 1.0f, 1.0f, 1.0f, 1.0f );
  315. fadeColor.set( 0.1f, 0.1f, 1.0f, 1.0f );
  316. useFog = true;
  317. setScale( VectorF( 512.0f, 512.0f, 300.0f ) );
  318. }
  319. Lightning::~Lightning()
  320. {
  321. while( mThunderListHead )
  322. {
  323. Thunder* nextThunder = mThunderListHead->next;
  324. delete mThunderListHead;
  325. mThunderListHead = nextThunder;
  326. }
  327. while( mStrikeListHead )
  328. {
  329. Strike* nextStrike = mStrikeListHead->next;
  330. delete mStrikeListHead;
  331. mStrikeListHead = nextStrike;
  332. }
  333. }
  334. //--------------------------------------------------------------------------
  335. void Lightning::initPersistFields()
  336. {
  337. addGroup( "Strikes" );
  338. addField( "strikesPerMinute", TypeS32, Offset(strikesPerMinute, Lightning),
  339. "@brief Number of lightning strikes to perform per minute.\n\n"
  340. "Automatically invokes strikeRandomPoint() at regular intervals." );
  341. addField( "strikeWidth", TypeF32, Offset(strikeWidth, Lightning),
  342. "Width of a lightning bolt." );
  343. addField( "strikeRadius", TypeF32, Offset(strikeRadius, Lightning),
  344. "@brief Horizontal size (XY plane) of the search box used to find and "
  345. "damage Player or Vehicle objects within range of the strike.\n\n"
  346. "Only the object at highest altitude with a clear line of sight to the "
  347. "bolt will be hit." );
  348. endGroup( "Strikes" );
  349. addGroup( "Colors" );
  350. addField( "color", TypeColorF, Offset(color, Lightning),
  351. "Color to blend the strike texture with." );
  352. addField( "fadeColor", TypeColorF, Offset(fadeColor, Lightning),
  353. "@brief Color to blend the strike texture with when the bolt is fading away.\n\n"
  354. "Bolts fade away automatically shortly after the strike occurs." );
  355. endGroup( "Colors" );
  356. addGroup( "Bolts" );
  357. addField( "chanceToHitTarget", TypeF32, Offset(chanceToHitTarget, Lightning),
  358. "Percentage chance (0-1) that a given lightning bolt will hit something." );
  359. addField( "boltStartRadius", TypeF32, Offset(boltStartRadius, Lightning),
  360. "@brief Radial distance from the center of the Lightning object for the "
  361. "start point of the bolt.\n\n"
  362. "The actual start point will be a random point within this radius." );
  363. addField( "useFog", TypeBool, Offset(useFog, Lightning),
  364. "Controls whether lightning bolts are affected by fog when they are rendered." );
  365. endGroup( "Bolts" );
  366. Parent::initPersistFields();
  367. }
  368. //--------------------------------------------------------------------------
  369. bool Lightning::onAdd()
  370. {
  371. if(!Parent::onAdd())
  372. return false;
  373. mObjBox.minExtents.set( -0.5f, -0.5f, -0.5f );
  374. mObjBox.maxExtents.set( 0.5f, 0.5f, 0.5f );
  375. resetWorldBox();
  376. addToScene();
  377. return true;
  378. }
  379. void Lightning::onRemove()
  380. {
  381. removeFromScene();
  382. Parent::onRemove();
  383. }
  384. bool Lightning::onNewDataBlock( GameBaseData *dptr, bool reload )
  385. {
  386. mDataBlock = dynamic_cast<LightningData*>( dptr );
  387. if ( !mDataBlock || !Parent::onNewDataBlock( dptr, reload ) )
  388. return false;
  389. scriptOnNewDataBlock();
  390. return true;
  391. }
  392. //--------------------------------------------------------------------------
  393. void Lightning::prepRenderImage( SceneRenderState* state )
  394. {
  395. ObjectRenderInst *ri = state->getRenderPass()->allocInst<ObjectRenderInst>();
  396. ri->renderDelegate.bind(this, &Lightning::renderObject);
  397. // The Lightning isn't technically foliage but our debug
  398. // effect seems to render best as a Foliage type (translucent,
  399. // renders itself, no sorting)
  400. ri->type = RenderPassManager::RIT_Foliage;
  401. state->getRenderPass()->addInst( ri );
  402. }
  403. void Lightning::renderObject(ObjectRenderInst *ri, SceneRenderState *state, BaseMatInstance* overrideMat)
  404. {
  405. if (overrideMat)
  406. return;
  407. if (mLightningSB.isNull())
  408. {
  409. GFXStateBlockDesc desc;
  410. desc.setBlend( true, GFXBlendSrcAlpha, GFXBlendOne);
  411. desc.setCullMode(GFXCullNone);
  412. desc.zWriteEnable = false;
  413. desc.vertexColorEnable = true;
  414. if (mDataBlock->mNumStrikeTextures != 0)
  415. {
  416. desc.samplersDefined = true;
  417. desc.samplers[0].magFilter = GFXTextureFilterLinear;
  418. desc.samplers[0].minFilter = GFXTextureFilterLinear;
  419. desc.samplers[0].addressModeU = GFXAddressWrap;
  420. desc.samplers[0].addressModeV = GFXAddressWrap;
  421. }
  422. mLightningSB = GFX->createStateBlock(desc);
  423. }
  424. GFX->setStateBlock(mLightningSB);
  425. Strike* walk = mStrikeListHead;
  426. while (walk != NULL)
  427. {
  428. if (mDataBlock->mNumStrikeTextures > 1)
  429. {
  430. GFX->setTexture(0, mDataBlock->strikeTextures[sgLightningRand.randI(0, mDataBlock->mNumStrikeTextures - 1)]);
  431. }
  432. else if (mDataBlock->mNumStrikeTextures > 0)
  433. {
  434. GFX->setTexture(0, mDataBlock->strikeTextures[0]);
  435. }
  436. for( U32 i=0; i<MAX_LIGHTNING; i++ )
  437. {
  438. if( walk->bolt[i].isFading )
  439. {
  440. F32 alpha = 1.0f - walk->bolt[i].percentFade;
  441. if( alpha < 0.0f ) alpha = 0.0f;
  442. PrimBuild::color4f( fadeColor.red, fadeColor.green, fadeColor.blue, alpha );
  443. }
  444. else
  445. {
  446. PrimBuild::color4f( color.red, color.green, color.blue, color.alpha );
  447. }
  448. walk->bolt[i].render( state->getCameraPosition() );
  449. }
  450. walk = walk->next;
  451. }
  452. //GFX->setZWriteEnable(true);
  453. //GFX->setAlphaTestEnable(false);
  454. //GFX->setAlphaBlendEnable(false);
  455. }
  456. void Lightning::scheduleThunder(Strike* newStrike)
  457. {
  458. AssertFatal(isClientObject(), "Lightning::scheduleThunder: server objects should not enter this version of the function");
  459. // If no thunder sounds, don't schedule anything!
  460. if (mDataBlock->numThunders == 0)
  461. return;
  462. GameConnection* connection = GameConnection::getConnectionToServer();
  463. if (connection) {
  464. MatrixF cameraMatrix;
  465. if (connection->getControlCameraTransform(0, &cameraMatrix)) {
  466. Point3F worldPos;
  467. cameraMatrix.getColumn(3, &worldPos);
  468. worldPos.x -= newStrike->xVal;
  469. worldPos.y -= newStrike->yVal;
  470. worldPos.z = 0.0f;
  471. F32 dist = worldPos.len();
  472. F32 t = dist / 330.0f;
  473. // Ok, we need to schedule a random strike sound t secs in the future...
  474. //
  475. if (t <= 0.03f) {
  476. // If it's really close, just play it...
  477. U32 thunder = sgLightningRand.randI(0, mDataBlock->numThunders - 1);
  478. SFX->playOnce(mDataBlock->getThunderSoundProfile(thunder));
  479. } else {
  480. Thunder* pThunder = new Thunder;
  481. pThunder->tRemaining = t;
  482. pThunder->next = mThunderListHead;
  483. mThunderListHead = pThunder;
  484. }
  485. }
  486. }
  487. }
  488. //--------------------------------------------------------------------------
  489. void Lightning::processTick(const Move* move)
  490. {
  491. Parent::processTick(move);
  492. if (isServerObject() && !isHidden()) {
  493. S32 msBetweenStrikes = (S32)(60.0 / strikesPerMinute * 1000.0);
  494. mLastThink += TickMs;
  495. if( mLastThink > msBetweenStrikes )
  496. {
  497. strikeRandomPoint();
  498. mLastThink -= msBetweenStrikes;
  499. }
  500. }
  501. }
  502. void Lightning::interpolateTick(F32 dt)
  503. {
  504. Parent::interpolateTick(dt);
  505. }
  506. void Lightning::advanceTime(F32 dt)
  507. {
  508. Parent::advanceTime(dt);
  509. Strike** pWalker = &mStrikeListHead;
  510. while (*pWalker != NULL) {
  511. Strike* pStrike = *pWalker;
  512. for( U32 i=0; i<MAX_LIGHTNING; i++ )
  513. {
  514. pStrike->bolt[i].update( dt );
  515. }
  516. pStrike->currentAge += dt;
  517. if (pStrike->currentAge > pStrike->deathAge) {
  518. *pWalker = pStrike->next;
  519. delete pStrike;
  520. } else {
  521. pWalker = &((*pWalker)->next);
  522. }
  523. }
  524. Thunder** pThunderWalker = &mThunderListHead;
  525. while (*pThunderWalker != NULL) {
  526. Thunder* pThunder = *pThunderWalker;
  527. pThunder->tRemaining -= dt;
  528. if (pThunder->tRemaining <= 0.0f) {
  529. *pThunderWalker = pThunder->next;
  530. delete pThunder;
  531. // Play the sound...
  532. U32 thunder = sgLightningRand.randI(0, mDataBlock->numThunders - 1);
  533. SFX->playOnce(mDataBlock->getThunderSoundProfile(thunder));
  534. } else {
  535. pThunderWalker = &((*pThunderWalker)->next);
  536. }
  537. }
  538. }
  539. //--------------------------------------------------------------------------
  540. void Lightning::processEvent(LightningStrikeEvent* pEvent)
  541. {
  542. AssertFatal(pEvent->mStart.x >= 0.0f && pEvent->mStart.x <= 1.0f, "Out of bounds coord!");
  543. Strike* pStrike = new Strike;
  544. Point3F strikePoint;
  545. strikePoint.zero();
  546. if( pEvent->mTarget )
  547. {
  548. Point3F objectCenter;
  549. pEvent->mTarget->getObjBox().getCenter( &objectCenter );
  550. objectCenter.convolve( pEvent->mTarget->getScale() );
  551. pEvent->mTarget->getTransform().mulP( objectCenter );
  552. strikePoint = objectCenter;
  553. }
  554. else
  555. {
  556. strikePoint.x = pEvent->mStart.x;
  557. strikePoint.y = pEvent->mStart.y;
  558. strikePoint *= mObjScale;
  559. strikePoint += getPosition();
  560. strikePoint += Point3F( -mObjScale.x * 0.5f, -mObjScale.y * 0.5f, 0.0f );
  561. RayInfo rayInfo;
  562. Point3F start = strikePoint;
  563. start.z = mObjScale.z * 0.5f + getPosition().z;
  564. strikePoint.z += -mObjScale.z * 0.5f;
  565. bool rayHit = gClientContainer.castRay( start, strikePoint,
  566. (STATIC_COLLISION_TYPEMASK | WaterObjectType),
  567. &rayInfo);
  568. if( rayHit )
  569. {
  570. strikePoint.z = rayInfo.point.z;
  571. }
  572. else
  573. {
  574. strikePoint.z = pStrike->bolt[0].findHeight( strikePoint, getSceneManager() );
  575. }
  576. }
  577. pStrike->xVal = strikePoint.x;
  578. pStrike->yVal = strikePoint.y;
  579. pStrike->deathAge = 1.6f;
  580. pStrike->currentAge = 0.0f;
  581. pStrike->next = mStrikeListHead;
  582. for( U32 i=0; i<MAX_LIGHTNING; i++ )
  583. {
  584. F32 randStart = boltStartRadius;
  585. F32 height = mObjScale.z * 0.5f + getPosition().z;
  586. pStrike->bolt[i].startPoint.set( pStrike->xVal + gRandGen.randF( -randStart, randStart ), pStrike->yVal + gRandGen.randF( -randStart, randStart ), height );
  587. pStrike->bolt[i].endPoint = strikePoint;
  588. pStrike->bolt[i].width = strikeWidth;
  589. pStrike->bolt[i].numMajorNodes = 10;
  590. pStrike->bolt[i].maxMajorAngle = 30.0f;
  591. pStrike->bolt[i].numMinorNodes = 4;
  592. pStrike->bolt[i].maxMinorAngle = 15.0f;
  593. pStrike->bolt[i].generate();
  594. pStrike->bolt[i].startSplits();
  595. pStrike->bolt[i].lifetime = 1.0f;
  596. pStrike->bolt[i].fadeTime = 0.2f;
  597. pStrike->bolt[i].renderTime = gRandGen.randF(0.0f, 0.25f);
  598. }
  599. mStrikeListHead = pStrike;
  600. scheduleThunder(pStrike);
  601. MatrixF trans(true);
  602. trans.setPosition( strikePoint );
  603. if (mDataBlock->getStrikeSoundProfile())
  604. {
  605. SFX->playOnce(mDataBlock->getStrikeSoundProfile(), &trans );
  606. }
  607. }
  608. void Lightning::warningFlashes()
  609. {
  610. AssertFatal(isServerObject(), "Error, client objects may not initiate lightning!");
  611. Point3F strikePoint( gRandGen.randF( 0.0f, 1.0f ), gRandGen.randF( 0.0f, 1.0f ), 0.0f );
  612. SimGroup* pClientGroup = Sim::getClientGroup();
  613. for (SimGroup::iterator itr = pClientGroup->begin(); itr != pClientGroup->end(); itr++) {
  614. NetConnection* nc = static_cast<NetConnection*>(*itr);
  615. if (nc != NULL)
  616. {
  617. LightningStrikeEvent* pEvent = new LightningStrikeEvent;
  618. pEvent->mLightning = this;
  619. pEvent->mStart.x = strikePoint.x;
  620. pEvent->mStart.y = strikePoint.y;
  621. nc->postNetEvent(pEvent);
  622. }
  623. }
  624. }
  625. void Lightning::strikeRandomPoint()
  626. {
  627. AssertFatal(isServerObject(), "Error, client objects may not initiate lightning!");
  628. Point3F strikePoint( gRandGen.randF( 0.0f, 1.0f ), gRandGen.randF( 0.0f, 1.0f ), 0.0f );
  629. // check if an object is within target range
  630. Point3F worldPosStrikePoint = strikePoint;
  631. worldPosStrikePoint *= mObjScale;
  632. worldPosStrikePoint += getPosition();
  633. worldPosStrikePoint += Point3F( -mObjScale.x * 0.5f, -mObjScale.y * 0.5f, 0.0f );
  634. Box3F queryBox;
  635. F32 boxWidth = strikeRadius * 2.0f;
  636. queryBox.minExtents.set( -boxWidth * 0.5f, -boxWidth * 0.5f, -mObjScale.z * 0.5f );
  637. queryBox.maxExtents.set( boxWidth * 0.5f, boxWidth * 0.5f, mObjScale.z * 0.5f );
  638. queryBox.minExtents += worldPosStrikePoint;
  639. queryBox.maxExtents += worldPosStrikePoint;
  640. SimpleQueryList sql;
  641. getContainer()->findObjects(queryBox, DAMAGEABLE_TYPEMASK,
  642. SimpleQueryList::insertionCallback, &sql);
  643. SceneObject *highestObj = NULL;
  644. F32 highestPnt = 0.0f;
  645. for( U32 i = 0; i < sql.mList.size(); i++ )
  646. {
  647. Point3F objectCenter;
  648. sql.mList[i]->getObjBox().getCenter(&objectCenter);
  649. objectCenter.convolve(sql.mList[i]->getScale());
  650. sql.mList[i]->getTransform().mulP(objectCenter);
  651. // check if object can be struck
  652. RayInfo rayInfo;
  653. Point3F start = objectCenter;
  654. start.z = mObjScale.z * 0.5f + getPosition().z;
  655. Point3F end = objectCenter;
  656. end.z = -mObjScale.z * 0.5f + getPosition().z;
  657. bool rayHit = gServerContainer.castRay( start, end,
  658. (0xFFFFFFFF),
  659. &rayInfo);
  660. if( rayHit && rayInfo.object == sql.mList[i] )
  661. {
  662. if( !highestObj )
  663. {
  664. highestObj = sql.mList[i];
  665. highestPnt = objectCenter.z;
  666. continue;
  667. }
  668. if( objectCenter.z > highestPnt )
  669. {
  670. highestObj = sql.mList[i];
  671. highestPnt = objectCenter.z;
  672. }
  673. }
  674. }
  675. // hah haaaaa, we have a target!
  676. SceneObject *targetObj = NULL;
  677. if( highestObj )
  678. {
  679. F32 chance = gRandGen.randF();
  680. if( chance <= chanceToHitTarget )
  681. {
  682. Point3F objectCenter;
  683. highestObj->getObjBox().getCenter(&objectCenter);
  684. objectCenter.convolve(highestObj->getScale());
  685. highestObj->getTransform().mulP(objectCenter);
  686. bool playerInWarmup = false;
  687. Player *playerObj = dynamic_cast< Player * >(highestObj);
  688. if( playerObj )
  689. {
  690. if( !playerObj->getControllingClient() )
  691. {
  692. playerInWarmup = true;
  693. }
  694. }
  695. if( !playerInWarmup )
  696. {
  697. applyDamage_callback( objectCenter, VectorF( 0.0f, 0.0f, 1.0f ), highestObj );
  698. targetObj = highestObj;
  699. }
  700. }
  701. }
  702. SimGroup* pClientGroup = Sim::getClientGroup();
  703. for (SimGroup::iterator itr = pClientGroup->begin(); itr != pClientGroup->end(); itr++)
  704. {
  705. NetConnection* nc = static_cast<NetConnection*>(*itr);
  706. LightningStrikeEvent* pEvent = new LightningStrikeEvent;
  707. pEvent->mLightning = this;
  708. pEvent->mStart.x = strikePoint.x;
  709. pEvent->mStart.y = strikePoint.y;
  710. pEvent->mTarget = targetObj;
  711. nc->postNetEvent(pEvent);
  712. }
  713. }
  714. //--------------------------------------------------------------------------
  715. void Lightning::strikeObject(ShapeBase* targetObj)
  716. {
  717. AssertFatal(isServerObject(), "Error, client objects may not initiate lightning!");
  718. Point3F strikePoint = targetObj->getPosition();
  719. Point3F objectCenter;
  720. Box3F wb = getWorldBox();
  721. if (!wb.isContained(strikePoint))
  722. return;
  723. Point3F targetRel = strikePoint - getPosition();
  724. Point3F length(wb.len_x() / 2.0f, wb.len_y() / 2.0f, wb.len_z() / 2.0f);
  725. Point3F strikePos = targetRel / length;
  726. bool playerInWarmup = false;
  727. Player *playerObj = dynamic_cast< Player * >(targetObj);
  728. if (playerObj)
  729. {
  730. if (!playerObj->getControllingClient())
  731. {
  732. playerInWarmup = true;
  733. }
  734. }
  735. if (!playerInWarmup)
  736. {
  737. applyDamage_callback(targetObj->getWorldSphere().center, VectorF(0.0, 0.0, 1.0), targetObj);
  738. }
  739. SimGroup* pClientGroup = Sim::getClientGroup();
  740. for (SimGroup::iterator itr = pClientGroup->begin(); itr != pClientGroup->end(); itr++) {
  741. NetConnection* nc = static_cast<NetConnection*>(*itr);
  742. if (nc != NULL)
  743. {
  744. LightningStrikeEvent* pEvent = new LightningStrikeEvent;
  745. pEvent->mLightning = this;
  746. pEvent->mStart.x = strikePoint.x;
  747. pEvent->mStart.y = strikePoint.y;
  748. pEvent->mTarget = targetObj;
  749. nc->postNetEvent(pEvent);
  750. }
  751. }
  752. }
  753. //--------------------------------------------------------------------------
  754. U32 Lightning::packUpdate(NetConnection* con, U32 mask, BitStream* stream)
  755. {
  756. U32 retMask = Parent::packUpdate(con, mask, stream);
  757. // Only write data if this is the initial packet or we've been inspected.
  758. if (stream->writeFlag(mask & (InitialUpdateMask | ExtendedInfoMask)))
  759. {
  760. // Initial update
  761. mathWrite(*stream, getPosition());
  762. mathWrite(*stream, mObjScale);
  763. stream->write(strikeWidth);
  764. stream->write(chanceToHitTarget);
  765. stream->write(strikeRadius);
  766. stream->write(boltStartRadius);
  767. stream->write(color.red);
  768. stream->write(color.green);
  769. stream->write(color.blue);
  770. stream->write(color.alpha);
  771. stream->write(fadeColor.red);
  772. stream->write(fadeColor.green);
  773. stream->write(fadeColor.blue);
  774. stream->write(useFog);
  775. stream->write(strikesPerMinute);
  776. }
  777. return retMask;
  778. }
  779. //--------------------------------------------------------------------------
  780. void Lightning::unpackUpdate(NetConnection* con, BitStream* stream)
  781. {
  782. Parent::unpackUpdate(con, stream);
  783. if (stream->readFlag())
  784. {
  785. // Initial update
  786. Point3F pos;
  787. mathRead(*stream, &pos);
  788. setPosition( pos );
  789. mathRead(*stream, &mObjScale);
  790. stream->read(&strikeWidth);
  791. stream->read(&chanceToHitTarget);
  792. stream->read(&strikeRadius);
  793. stream->read(&boltStartRadius);
  794. stream->read(&color.red);
  795. stream->read(&color.green);
  796. stream->read(&color.blue);
  797. stream->read(&color.alpha);
  798. stream->read(&fadeColor.red);
  799. stream->read(&fadeColor.green);
  800. stream->read(&fadeColor.blue);
  801. stream->read(&useFog);
  802. stream->read(&strikesPerMinute);
  803. }
  804. }
  805. //--------------------------------------------------------------------------
  806. DefineEngineMethod(Lightning, warningFlashes, void, (),,
  807. "@brief Creates a LightningStrikeEvent that triggers harmless lightning "
  808. "bolts on all clients.\n"
  809. "No objects will be damaged by these bolts.\n"
  810. "@tsexample\n"
  811. "// Generate a harmless lightning strike effect on all clients\n"
  812. "%lightning.warningFlashes();\n"
  813. "@endtsexample" )
  814. {
  815. if (object->isServerObject())
  816. object->warningFlashes();
  817. }
  818. DefineEngineMethod(Lightning, strikeRandomPoint, void, (),,
  819. "Creates a LightningStrikeEvent which attempts to strike and damage a random "
  820. "object in range of the Lightning object.\n"
  821. "@tsexample\n"
  822. "// Generate a damaging lightning strike effect on all clients\n"
  823. "%lightning.strikeRandomPoint();\n"
  824. "@endtsexample" )
  825. {
  826. if (object->isServerObject())
  827. object->strikeRandomPoint();
  828. }
  829. DefineEngineMethod(Lightning, strikeObject, void, (ShapeBase* pSB), (nullAsType<ShapeBase*>()),
  830. "Creates a LightningStrikeEvent which strikes a specific object.\n"
  831. "@note This method is currently unimplemented.\n" )
  832. {
  833. object->strikeObject(pSB);
  834. }
  835. //**************************************************************************
  836. // Lightning Bolt
  837. //**************************************************************************
  838. LightningBolt::LightningBolt()
  839. {
  840. width = 0.1f;
  841. startPoint.zero();
  842. endPoint.zero();
  843. chanceOfSplit = 0.0f;
  844. isFading = false;
  845. elapsedTime = 0.0f;
  846. lifetime = 1.0f;
  847. startRender = false;
  848. endPoint.zero();
  849. width = 1;
  850. numMajorNodes = 10;
  851. maxMajorAngle = 30.0f;
  852. numMinorNodes = 4;
  853. maxMinorAngle = 15.0f;
  854. fadeTime = 0.2f;
  855. renderTime = 0.125;
  856. dMemset(&mMajorNodes, 0, sizeof(mMajorNodes));
  857. percentFade = 0.0f;
  858. }
  859. //--------------------------------------------------------------------------
  860. // Destructor
  861. //--------------------------------------------------------------------------
  862. LightningBolt::~LightningBolt()
  863. {
  864. splitList.clear();
  865. }
  866. //--------------------------------------------------------------------------
  867. // Generate nodes
  868. //--------------------------------------------------------------------------
  869. void LightningBolt::NodeManager::generateNodes()
  870. {
  871. F32 overallDist = VectorF( endPoint - startPoint ).magnitudeSafe();
  872. F32 minDistBetweenNodes = overallDist / (numNodes-1);
  873. F32 maxDistBetweenNodes = minDistBetweenNodes / mCos( maxAngle * M_PI_F / 180.0f );
  874. VectorF mainLineDir = endPoint - startPoint;
  875. mainLineDir.normalizeSafe();
  876. for( U32 i=0; i<numNodes; i++ )
  877. {
  878. Node node;
  879. if( i == 0 )
  880. {
  881. node.point = startPoint;
  882. node.dirToMainLine = mainLineDir;
  883. nodeList[i] = node;
  884. continue;
  885. }
  886. if( i == numNodes - 1 )
  887. {
  888. node.point = endPoint;
  889. nodeList[i] = node;
  890. break;
  891. }
  892. Node lastNode = nodeList[i-1];
  893. F32 segmentLength = gRandGen.randF( minDistBetweenNodes, maxDistBetweenNodes );
  894. VectorF segmentDir = MathUtils::randomDir( lastNode.dirToMainLine, 0, maxAngle );
  895. node.point = lastNode.point + segmentDir * segmentLength;
  896. node.dirToMainLine = endPoint - node.point;
  897. node.dirToMainLine.normalizeSafe();
  898. nodeList[i] = node;
  899. }
  900. }
  901. //--------------------------------------------------------------------------
  902. // Render bolt
  903. //--------------------------------------------------------------------------
  904. void LightningBolt::render( const Point3F &camPos )
  905. {
  906. if (!startRender)
  907. return;
  908. if (!isFading)
  909. generateMinorNodes();
  910. U32 maxVerts = 0;
  911. for (U32 i = 0; i < mMinorNodes.size(); i++)
  912. maxVerts += mMinorNodes[i].numNodes * 2;
  913. PrimBuild::begin(GFXTriangleStrip, maxVerts);
  914. for (U32 i = 0; i < mMinorNodes.size(); i++)
  915. {
  916. if (i+1 == mMinorNodes.size())
  917. renderSegment(mMinorNodes[i], camPos, true);
  918. else
  919. renderSegment(mMinorNodes[i], camPos, false);
  920. }
  921. PrimBuild::end();
  922. for(LightingBoltList::Iterator i = splitList.begin(); i != splitList.end(); ++i)
  923. {
  924. if( isFading )
  925. {
  926. i->isFading = true;
  927. }
  928. i->render( camPos );
  929. }
  930. }
  931. //--------------------------------------------------------------------------
  932. // Render segment
  933. //--------------------------------------------------------------------------
  934. void LightningBolt::renderSegment( NodeManager &segment, const Point3F &camPos, bool renderLastPoint )
  935. {
  936. for (U32 i = 0; i < segment.numNodes; i++)
  937. {
  938. Point3F curPoint = segment.nodeList[i].point;
  939. Point3F nextPoint;
  940. Point3F segDir;
  941. if( i == (segment.numNodes-1) )
  942. {
  943. if( renderLastPoint )
  944. {
  945. segDir = curPoint - segment.nodeList[i-1].point;
  946. }
  947. else
  948. {
  949. continue;
  950. }
  951. }
  952. else
  953. {
  954. nextPoint = segment.nodeList[i+1].point;
  955. segDir = nextPoint - curPoint;
  956. }
  957. segDir.normalizeSafe();
  958. Point3F dirFromCam = curPoint - camPos;
  959. Point3F crossVec;
  960. mCross(dirFromCam, segDir, &crossVec);
  961. crossVec.normalize();
  962. crossVec *= width * 0.5f;
  963. F32 u = i % 2;
  964. PrimBuild::texCoord2f( u, 1.0 );
  965. PrimBuild::vertex3fv( curPoint - crossVec );
  966. PrimBuild::texCoord2f( u, 0.0 );
  967. PrimBuild::vertex3fv( curPoint + crossVec );
  968. }
  969. }
  970. //----------------------------------------------------------------------------
  971. // Find height
  972. //----------------------------------------------------------------------------
  973. F32 LightningBolt::findHeight( Point3F &point, SceneManager *sceneManager )
  974. {
  975. const Vector< SceneObject* > terrains = sceneManager->getContainer()->getTerrains();
  976. for( Vector< SceneObject* >::const_iterator iter = terrains.begin(); iter != terrains.end(); ++ iter )
  977. {
  978. TerrainBlock* terrain = dynamic_cast< TerrainBlock* >( *iter );
  979. if( !terrain )
  980. continue;
  981. Point3F terrPt = point;
  982. terrain->getWorldTransform().mulP(terrPt);
  983. F32 h;
  984. if( terrain->getHeight( Point2F( terrPt.x, terrPt.y ), &h ) )
  985. return h;
  986. }
  987. return 0.f;
  988. }
  989. //----------------------------------------------------------------------------
  990. // Generate lightning bolt
  991. //----------------------------------------------------------------------------
  992. void LightningBolt::generate()
  993. {
  994. mMajorNodes.startPoint = startPoint;
  995. mMajorNodes.endPoint = endPoint;
  996. mMajorNodes.numNodes = numMajorNodes;
  997. mMajorNodes.maxAngle = maxMajorAngle;
  998. mMajorNodes.generateNodes();
  999. generateMinorNodes();
  1000. }
  1001. //----------------------------------------------------------------------------
  1002. // Generate Minor Nodes
  1003. //----------------------------------------------------------------------------
  1004. void LightningBolt::generateMinorNodes()
  1005. {
  1006. mMinorNodes.clear();
  1007. for( S32 i=0; i<mMajorNodes.numNodes - 1; i++ )
  1008. {
  1009. NodeManager segment;
  1010. segment.startPoint = mMajorNodes.nodeList[i].point;
  1011. segment.endPoint = mMajorNodes.nodeList[i+1].point;
  1012. segment.numNodes = numMinorNodes;
  1013. segment.maxAngle = maxMinorAngle;
  1014. segment.generateNodes();
  1015. mMinorNodes.increment(1);
  1016. mMinorNodes[i] = segment;
  1017. }
  1018. }
  1019. //----------------------------------------------------------------------------
  1020. // Recursive algo to create bolts that split off from main bolt
  1021. //----------------------------------------------------------------------------
  1022. void LightningBolt::createSplit( const Point3F &startingPoint, const Point3F &endingPoint, U32 depth, F32 splitWidth )
  1023. {
  1024. if( depth == 0 )
  1025. return;
  1026. F32 chanceToEnd = gRandGen.randF();
  1027. if( chanceToEnd > 0.70f )
  1028. return;
  1029. if(splitWidth < 0.75f )
  1030. splitWidth = 0.75f;
  1031. VectorF diff = endingPoint - startingPoint;
  1032. F32 length = diff.len();
  1033. diff.normalizeSafe();
  1034. LightningBolt newBolt;
  1035. newBolt.startPoint = startingPoint;
  1036. newBolt.endPoint = endingPoint;
  1037. newBolt.width = splitWidth;
  1038. newBolt.numMajorNodes = 3;
  1039. newBolt.maxMajorAngle = 30.0f;
  1040. newBolt.numMinorNodes = 3;
  1041. newBolt.maxMinorAngle = 10.0f;
  1042. newBolt.startRender = true;
  1043. newBolt.generate();
  1044. splitList.pushBack( newBolt );
  1045. VectorF newDir1 = MathUtils::randomDir( diff, 10.0f, 45.0f );
  1046. Point3F newEndPoint1 = endingPoint + newDir1 * gRandGen.randF( 0.5f, 1.5f ) * length;
  1047. VectorF newDir2 = MathUtils::randomDir( diff, 10.0f, 45.0f );
  1048. Point3F newEndPoint2 = endingPoint + newDir2 * gRandGen.randF( 0.5f, 1.5f ) * length;
  1049. createSplit(endingPoint, newEndPoint1, depth - 1, splitWidth * 0.30f );
  1050. createSplit(endingPoint, newEndPoint2, depth - 1, splitWidth * 0.30f );
  1051. }
  1052. //----------------------------------------------------------------------------
  1053. // Start split - kick off the recursive 'createSplit' procedure
  1054. //----------------------------------------------------------------------------
  1055. void LightningBolt::startSplits()
  1056. {
  1057. for( U32 i=0; i<mMajorNodes.numNodes-1; i++ )
  1058. {
  1059. if( gRandGen.randF() > 0.3f )
  1060. continue;
  1061. Node node = mMajorNodes.nodeList[i];
  1062. Node node2 = mMajorNodes.nodeList[i+1];
  1063. VectorF segDir = node2.point - node.point;
  1064. F32 length = segDir.len();
  1065. segDir.normalizeSafe();
  1066. VectorF newDir = MathUtils::randomDir( segDir, 20.0f, 40.0f );
  1067. Point3F newEndPoint = node.point + newDir * gRandGen.randF( 0.5f, 1.5f ) * length;
  1068. createSplit( node.point, newEndPoint, 4, width * 0.30f );
  1069. }
  1070. }
  1071. //----------------------------------------------------------------------------
  1072. // Update
  1073. //----------------------------------------------------------------------------
  1074. void LightningBolt::update( F32 dt )
  1075. {
  1076. elapsedTime += dt;
  1077. F32 percentDone = elapsedTime / lifetime;
  1078. if( elapsedTime > fadeTime )
  1079. {
  1080. isFading = true;
  1081. percentFade = percentDone + (fadeTime/lifetime);
  1082. }
  1083. if( elapsedTime > renderTime && !startRender )
  1084. {
  1085. startRender = true;
  1086. isFading = false;
  1087. elapsedTime = 0.0f;
  1088. }
  1089. }