Main.cpp 15 KB

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  1. #include <stdio.h>
  2. #include <iostream>
  3. #include <fstream>
  4. #include "anki/input/Input.h"
  5. #include "anki/math/Math.h"
  6. #include "anki/renderer/Renderer.h"
  7. #include "anki/core/App.h"
  8. #include "anki/resource/Mesh.h"
  9. #include "anki/resource/Material.h"
  10. #include "anki/resource/SkelAnim.h"
  11. #include "anki/physics/Character.h"
  12. #include "anki/renderer/Renderer.h"
  13. #include "anki/renderer/MainRenderer.h"
  14. #include "anki/physics/Character.h"
  15. #include "anki/physics/RigidBody.h"
  16. #include "anki/script/ScriptManager.h"
  17. #include "anki/core/StdinListener.h"
  18. #include "anki/resource/Model.h"
  19. #include "anki/core/Logger.h"
  20. #include "anki/util/Filesystem.h"
  21. #include "anki/util/HighRezTimer.h"
  22. #include "anki/resource/Skin.h"
  23. #include "anki/event/EventManager.h"
  24. #include "anki/event/MainRendererPpsHdrEvent.h"
  25. #include "anki/resource/ShaderProgramPrePreprocessor.h"
  26. #include "anki/resource/Material.h"
  27. #include "anki/core/ThreadPool.h"
  28. #include "anki/core/Timestamp.h"
  29. #include "anki/core/NativeWindow.h"
  30. #include "anki/util/Functions.h"
  31. #include "anki/scene/Scene.h"
  32. using namespace anki;
  33. ModelNode* horse;
  34. PerspectiveCamera* cam;
  35. NativeWindow* win;
  36. //==============================================================================
  37. void initPhysics()
  38. {
  39. SceneGraph& scene = SceneGraphSingleton::get();
  40. scene.getPhysics().setDebugDrawer(
  41. new PhysicsDebugDrawer(
  42. &MainRendererSingleton::get().getDbg().getDebugDrawer()));
  43. btCollisionShape* groundShape = new btBoxShape(
  44. btVector3(btScalar(50.), btScalar(50.), btScalar(50.)));
  45. Transform groundTransform;
  46. groundTransform.setIdentity();
  47. groundTransform.setOrigin(Vec3(0, -50, 0));
  48. RigidBody::Initializer init;
  49. init.mass = 0.0;
  50. init.shape = groundShape;
  51. init.startTrf = groundTransform;
  52. init.group = PhysWorld::CG_MAP;
  53. init.mask = PhysWorld::CG_ALL;
  54. new RigidBody(&SceneGraphSingleton::get().getPhysics(), init);
  55. #if 1
  56. btCollisionShape* colShape = new btBoxShape(
  57. btVector3(1, 1, 1));
  58. init.startTrf.setOrigin(Vec3(0.0, 15.0, 0.0));
  59. init.mass = 20;
  60. init.shape = colShape;
  61. init.group = PhysWorld::CG_PARTICLE;
  62. init.mask = PhysWorld::CG_MAP | PhysWorld::CG_PARTICLE;
  63. const I ARRAY_SIZE_X = 5;
  64. const I ARRAY_SIZE_Y = 5;
  65. const I ARRAY_SIZE_Z = 5;
  66. const I START_POS_X = -5;
  67. const I START_POS_Y = 35;
  68. const I START_POS_Z = -3;
  69. float start_x = START_POS_X - ARRAY_SIZE_X / 2;
  70. float start_y = START_POS_Y;
  71. float start_z = START_POS_Z - ARRAY_SIZE_Z / 2;
  72. for(I k = 0; k < ARRAY_SIZE_Y; k++)
  73. {
  74. for(I i = 0; i < ARRAY_SIZE_X; i++)
  75. {
  76. for(I j = 0; j < ARRAY_SIZE_Z; j++)
  77. {
  78. std::string name = std::string("crate0") + std::to_string(i)
  79. + std::to_string(j) + std::to_string(k);
  80. ModelNode* mnode = new ModelNode(
  81. "data/models/crate0/crate0.mdl",
  82. name.c_str(),
  83. &SceneGraphSingleton::get(), Movable::MF_NONE, nullptr);
  84. init.movable = mnode;
  85. ANKI_ASSERT(init.movable);
  86. Transform trf(
  87. Vec3(2.0 * i + start_x, 2.0 * k + start_y,
  88. 2.0 * j + start_z), Mat3::getIdentity(), 1.0);
  89. init.startTrf = trf;
  90. new RigidBody(&SceneGraphSingleton::get().getPhysics(), init);
  91. }
  92. }
  93. }
  94. #endif
  95. }
  96. //==============================================================================
  97. void init()
  98. {
  99. ANKI_LOGI("Other init...");
  100. SceneGraph& scene = SceneGraphSingleton::get();
  101. #if 0
  102. painter = new UiPainter(Vec2(AppSingleton::get().getWindowWidth(),
  103. AppSingleton::get().getWindowHeight()));
  104. painter->setFont("engine-rsrc/ModernAntiqua.ttf", 25, 25);
  105. #endif
  106. // camera
  107. cam = new PerspectiveCamera("main-camera", &scene,
  108. Movable::MF_NONE, nullptr);
  109. const F32 ang = 45.0;
  110. cam->setAll(
  111. MainRendererSingleton::get().getAspectRatio() * toRad(ang),
  112. toRad(ang), 0.5, 500.0);
  113. cam->setLocalTransform(Transform(Vec3(20.0, 5.0, 0.0),
  114. Mat3(Euler(toRad(-10.0), toRad(90.0), toRad(0.0))),
  115. 1.0));
  116. scene.setActiveCamera(cam);
  117. // lights
  118. #if 0
  119. Vec3 lpos(-24.0, 0.1, -10.0);
  120. for(int i = 0; i < 50; i++)
  121. {
  122. for(int j = 0; j < 10; j++)
  123. {
  124. std::string name = "plight" + std::to_string(i) + std::to_string(j);
  125. PointLight* point = new PointLight(name.c_str(), &scene,
  126. Movable::MF_NONE, nullptr);
  127. point->setRadius(0.5);
  128. point->setDiffuseColor(Vec4(randFloat(6.0) - 2.0,
  129. randFloat(6.0) - 2.0, randFloat(6.0) - 2.0, 0.0));
  130. point->setSpecularColor(Vec4(randFloat(6.0) - 3.0,
  131. randFloat(6.0) - 3.0, randFloat(6.0) - 3.0, 0.0));
  132. point->setLocalTranslation(lpos);
  133. lpos.z() += 2.0;
  134. }
  135. lpos.x() += 0.93;
  136. lpos.z() = -10;
  137. }
  138. #endif
  139. PointLight* point = new PointLight("ll", &scene,
  140. Movable::MF_NONE, nullptr);
  141. point->setLocalTranslation(Vec3(1.0, 0.0, 0.0));
  142. #if 0
  143. SpotLight* spot = new SpotLight("spot0", &scene, Movable::MF_NONE, nullptr);
  144. spot->setOuterAngle(toRad(45.0));
  145. spot->setInnerAngle(toRad(15.0));
  146. spot->setLocalTransform(Transform(Vec3(1.3, 4.3, 3.0),
  147. Mat3::getIdentity(), 1.0));
  148. spot->setDiffuseColor(Vec4(2.0));
  149. spot->setSpecularColor(Vec4(-1.0));
  150. spot->loadTexture("gfx/lights/flashlight.tga");
  151. spot->setDistance(30.0);
  152. spot->setShadowEnabled(true);
  153. spot = new SpotLight("spot1", &scene, Movable::MF_NONE, nullptr);
  154. spot->setOuterAngle(toRad(45.0));
  155. spot->setInnerAngle(toRad(15.0));
  156. spot->setLocalTransform(Transform(Vec3(5.3, 4.3, 3.0),
  157. Mat3::getIdentity(), 1.0));
  158. spot->setDiffuseColor(Vec4(3.0, 0.0, 0.0, 0.0));
  159. spot->setSpecularColor(Vec4(3.0, 3.0, 0.0, 0.0));
  160. spot->loadTexture("gfx/lights/flashlight.tga");
  161. spot->setDistance(30.0);
  162. spot->setShadowEnabled(true);
  163. #endif
  164. #if 0
  165. // Vase point lights
  166. F32 x = 8.5;
  167. F32 y = 2.25;
  168. F32 z = 2.49;
  169. Array<Vec3, 4> vaseLightPos = {{Vec3(x, y, -z - 1.4), Vec3(x, y, z),
  170. Vec3(-x - 2.3, y, z), Vec3(-x - 2.3, y, -z - 1.4)}};
  171. for(U i = 0; i < vaseLightPos.getSize(); i++)
  172. {
  173. Vec3 lightPos = vaseLightPos[i];
  174. PointLight* point =
  175. new PointLight(("vase_plight" + std::to_string(i)).c_str(),
  176. &scene, Movable::MF_NONE, nullptr);
  177. point->setRadius(2.0);
  178. point->setLocalTranslation(lightPos);
  179. point->setDiffuseColor(Vec4(3.0, 0.0, 0.0, 0.0));
  180. point->setSpecularColor(Vec4(1.0, 1.0, 0.0, 0.0));
  181. ParticleEmitter* pe = new ParticleEmitter(
  182. "data/particles/smoke.particles",
  183. ("pe" + std::to_string(i)).c_str(), &scene,
  184. Movable::MF_NONE, nullptr);
  185. pe->setLocalTranslation(lightPos);
  186. pe = new ParticleEmitter(
  187. "data/particles/fire.particles",
  188. ("pef" + std::to_string(i)).c_str(), &scene,
  189. Movable::MF_NONE, nullptr);
  190. pe->setLocalTranslation(lightPos);
  191. }
  192. #endif
  193. #if 0
  194. // horse
  195. horse = new ModelNode("data/models/horse/horse.mdl", "horse", &scene,
  196. Movable::MF_NONE, nullptr);
  197. horse->setLocalTransform(Transform(Vec3(-2, 0, 0), Mat3::getIdentity(),
  198. 0.7));
  199. // barrel
  200. ModelNode* redBarrel = new ModelNode("data/models/red_barrel/red_barrel.mdl",
  201. "red_barrel", &scene, Movable::MF_NONE, nullptr);
  202. redBarrel->setLocalTransform(Transform(Vec3(+2, 0, 0), Mat3::getIdentity(),
  203. 0.7));
  204. #endif
  205. #if 0
  206. StaticGeometryNode* sponzaModel = new StaticGeometryNode(
  207. //"data/maps/sponza/sponza_no_bmeshes.mdl",
  208. "data/maps/sponza/sponza.mdl",
  209. "sponza", &scene);
  210. (void)sponzaModel;
  211. #endif
  212. //initPhysics();
  213. // Sectors
  214. SectorGroup& sgroup = scene.getSectorGroup();
  215. Sector* sectorA = sgroup.createNewSector(
  216. Aabb(Vec3(-38, -3, -20), Vec3(38, 27, 20)));
  217. Sector* sectorB = sgroup.createNewSector(Aabb(Vec3(-5), Vec3(5)));
  218. sgroup.createNewPortal(sectorA, sectorB, Obb(Vec3(0.0, 3.0, 0.0),
  219. Mat3::getIdentity(), Vec3(1.0, 2.0, 2.0)));
  220. Sector* sectorC = sgroup.createNewSector(
  221. Aabb(Vec3(-30, -10, -35), Vec3(30, 10, -25)));
  222. sgroup.createNewPortal(sectorA, sectorC, Obb(Vec3(-1.1, 2.0, -11.0),
  223. Mat3::getIdentity(), Vec3(1.3, 1.8, 0.5)));
  224. }
  225. //==============================================================================
  226. /// The func pools the stdinListener for string in the console, if
  227. /// there are any it executes them with scriptingEngine
  228. void execStdinScpripts()
  229. {
  230. while(1)
  231. {
  232. std::string cmd = StdinListenerSingleton::get().getLine();
  233. if(cmd.length() < 1)
  234. {
  235. break;
  236. }
  237. try
  238. {
  239. ScriptManagerSingleton::get().evalString(cmd.c_str());
  240. }
  241. catch(Exception& e)
  242. {
  243. ANKI_LOGE(e.what());
  244. }
  245. }
  246. }
  247. //==============================================================================
  248. void mainLoopExtra()
  249. {
  250. F32 dist = 0.2;
  251. F32 ang = toRad(3.0);
  252. F32 scale = 0.01;
  253. F32 mouseSensivity = 9.0;
  254. // move the camera
  255. static Movable* mover = SceneGraphSingleton::get().getActiveCamera().getMovable();
  256. Input& in = InputSingleton::get();
  257. if(in.getKey(KC_1))
  258. {
  259. mover = &SceneGraphSingleton::get().getActiveCamera();
  260. }
  261. if(in.getKey(KC_2))
  262. {
  263. mover = SceneGraphSingleton::get().findSceneNode("horse").getMovable();
  264. }
  265. if(in.getKey(KC_3))
  266. {
  267. mover = SceneGraphSingleton::get().findSceneNode("spot0").getMovable();
  268. }
  269. if(in.getKey(KC_4))
  270. {
  271. mover = SceneGraphSingleton::get().findSceneNode("spot1").getMovable();
  272. }
  273. if(in.getKey(KC_5))
  274. {
  275. mover = SceneGraphSingleton::get().findSceneNode("pe").getMovable();
  276. }
  277. if(in.getKey(KC_6))
  278. {
  279. mover = SceneGraphSingleton::get().findSceneNode("vase_plight0").getMovable();
  280. }
  281. if(in.getKey(KC_7))
  282. {
  283. mover = SceneGraphSingleton::get().findSceneNode("sponza").getMovable();
  284. std::cout << mover->getWorldTransform() << std::endl;
  285. }
  286. if(in.getKey(KC_L) == 1)
  287. {
  288. Light* l = SceneGraphSingleton::get().findSceneNode("point1").getLight();
  289. static_cast<PointLight*>(l)->setRadius(10.0);
  290. }
  291. if(in.getKey(KC_P) == 1)
  292. {
  293. //MainRendererSingleton::get().getPps().getHdr().setExposure(20);
  294. //in.hideCursor(true);
  295. MainRendererSingleton::get().getDbg().setDepthTestEnabled(
  296. !MainRendererSingleton::get().getDbg().getDepthTestEnabled());
  297. }
  298. if(in.getKey(KC_F1) == 1)
  299. {
  300. MainRendererSingleton::get().getDbg().setEnabled(
  301. !MainRendererSingleton::get().getDbg().getEnabled());
  302. }
  303. if(in.getKey(KC_F2) == 1)
  304. {
  305. MainRendererSingleton::get().getDbg().switchBits(
  306. Dbg::DF_SPATIAL);
  307. }
  308. if(in.getKey(KC_F3) == 1)
  309. {
  310. MainRendererSingleton::get().getDbg().switchBits(
  311. Dbg::DF_PHYSICS);
  312. }
  313. if(in.getKey(KC_F4) == 1)
  314. {
  315. MainRendererSingleton::get().getDbg().switchBits(
  316. Dbg::DF_SECTOR);
  317. }
  318. if(in.getKey(KC_F5) == 1)
  319. {
  320. MainRendererSingleton::get().getDbg().switchBits(
  321. Dbg::DF_OCTREE);
  322. }
  323. if(in.getKey(KC_F12) == 1)
  324. {
  325. MainRendererSingleton::get().getDbg().switchDepthTestEnabled();
  326. }
  327. if(in.getKey(KC_UP)) mover->rotateLocalX(ang);
  328. if(in.getKey(KC_DOWN)) mover->rotateLocalX(-ang);
  329. if(in.getKey(KC_LEFT)) mover->rotateLocalY(ang);
  330. if(in.getKey(KC_RIGHT)) mover->rotateLocalY(-ang);
  331. if(in.getKey(KC_A)) mover->moveLocalX(-dist);
  332. if(in.getKey(KC_D)) mover->moveLocalX(dist);
  333. if(in.getKey(KC_Z)) mover->moveLocalY(dist);
  334. if(in.getKey(KC_SPACE)) mover->moveLocalY(-dist);
  335. if(in.getKey(KC_W)) mover->moveLocalZ(-dist);
  336. if(in.getKey(KC_S)) mover->moveLocalZ(dist);
  337. if(in.getKey(KC_Q)) mover->rotateLocalZ(ang);
  338. if(in.getKey(KC_E)) mover->rotateLocalZ(-ang);
  339. if(in.getKey(KC_PAGEUP))
  340. {
  341. mover->scale(scale);
  342. }
  343. if(in.getKey(KC_PAGEDOWN))
  344. {
  345. mover->scale(-scale);
  346. }
  347. if(in.getKey(KC_P))
  348. {
  349. ANKI_LOGI("pos: " << mover->getWorldTransform().getOrigin());
  350. }
  351. if(in.getMousePosition() != Vec2(0.0))
  352. {
  353. mover->rotateLocalY(-ang * in.getMousePosition().x() * mouseSensivity *
  354. MainRendererSingleton::get().getAspectRatio());
  355. mover->rotateLocalX(ang * in.getMousePosition().y() * mouseSensivity);
  356. }
  357. execStdinScpripts();
  358. }
  359. //==============================================================================
  360. void mainLoop()
  361. {
  362. ANKI_LOGI("Entering main loop");
  363. HighRezTimer mainLoopTimer;
  364. mainLoopTimer.start();
  365. HighRezTimer::Scalar prevUpdateTime = HighRezTimer::getCurrentTime();
  366. HighRezTimer::Scalar crntTime = prevUpdateTime;
  367. while(1)
  368. {
  369. HighRezTimer timer;
  370. timer.start();
  371. prevUpdateTime = crntTime;
  372. crntTime = HighRezTimer::getCurrentTime();
  373. // Update
  374. //
  375. InputSingleton::get().handleEvents();
  376. InputSingleton::get().moveMouse(Vec2(0.0));
  377. mainLoopExtra();
  378. SceneGraphSingleton::get().update(
  379. prevUpdateTime, crntTime, MainRendererSingleton::get());
  380. //EventManagerSingleton::get().updateAllEvents(prevUpdateTime, crntTime);
  381. MainRendererSingleton::get().render(SceneGraphSingleton::get());
  382. if(InputSingleton::get().getKey(KC_ESCAPE))
  383. {
  384. break;
  385. }
  386. win->swapBuffers();
  387. // Sleep
  388. //
  389. #if 1
  390. timer.stop();
  391. if(timer.getElapsedTime() < AppSingleton::get().getTimerTick())
  392. {
  393. HighRezTimer::sleep(AppSingleton::get().getTimerTick()
  394. - timer.getElapsedTime());
  395. }
  396. #else
  397. if(MainRendererSingleton::get().getFramesCount() == 1000)
  398. {
  399. break;
  400. }
  401. #endif
  402. Timestamp::increaseTimestamp();
  403. }
  404. #if 0
  405. MainRendererSingleton::get().takeScreenshot("screenshot.tga");
  406. #endif
  407. ANKI_LOGI("Exiting main loop (" << mainLoopTimer.getElapsedTime()
  408. << " sec)");
  409. MainRendererSingleton::get().printProfileInfo();
  410. SceneGraphSingleton::get().printProfileInfo();
  411. }
  412. //==============================================================================
  413. // initSubsystems =
  414. //==============================================================================
  415. void initSubsystems(int argc, char* argv[])
  416. {
  417. #if ANKI_GL == ANKI_GL_DESKTOP
  418. U32 glmajor = 3;
  419. U32 glminor = 3;
  420. #else
  421. U32 glmajor = 3;
  422. U32 glminor = 0;
  423. #endif
  424. // App
  425. AppSingleton::get().init(argc, argv);
  426. // Window
  427. NativeWindowInitializer nwinit;
  428. nwinit.width = 1280;
  429. nwinit.height = 720;
  430. nwinit.majorVersion = glmajor;
  431. nwinit.minorVersion = glminor;
  432. nwinit.depthBits = 0;
  433. nwinit.stencilBits = 0;
  434. win = new NativeWindow;
  435. win->create(nwinit);
  436. // GL stuff
  437. GlStateCommonSingleton::get().init(glmajor, glminor);
  438. // Input
  439. InputSingleton::get().init(win);
  440. InputSingleton::get().hideCursor(true);
  441. // Main renderer
  442. RendererInitializer initializer;
  443. initializer.ms.ez.enabled = true;
  444. initializer.dbg.enabled = false;
  445. initializer.is.sm.bilinearEnabled = true;
  446. initializer.is.groundLightEnabled = false;
  447. initializer.is.sm.enabled = true;
  448. initializer.is.sm.pcfEnabled = false;
  449. initializer.is.sm.resolution = 512;
  450. initializer.pps.hdr.enabled = true;
  451. initializer.pps.hdr.renderingQuality = 0.25;
  452. initializer.pps.hdr.blurringDist = 1.0;
  453. initializer.pps.hdr.blurringIterationsCount = 2;
  454. initializer.pps.hdr.exposure = 8.0;
  455. initializer.pps.ssao.blurringIterationsNum = 4;
  456. initializer.pps.ssao.enabled = true;
  457. initializer.pps.ssao.mainPassRenderingQuality = 0.3;
  458. initializer.pps.ssao.blurringRenderingQuality = 0.5;
  459. initializer.pps.enabled = true;
  460. initializer.pps.bl.enabled = true;
  461. initializer.pps.bl.blurringIterationsNum = 2;
  462. initializer.pps.bl.sideBlurFactor = 1.0;
  463. initializer.renderingQuality = 1.0;
  464. initializer.width = nwinit.width;
  465. initializer.height = nwinit.height;
  466. initializer.lodDistance = 20.0;
  467. MainRendererSingleton::get().init(initializer);
  468. // Stdin listener
  469. StdinListenerSingleton::get().start();
  470. // Parallel jobs
  471. ThreadPoolSingleton::get().init(8);
  472. }
  473. //==============================================================================
  474. int main(int argc, char* argv[])
  475. {
  476. int exitCode;
  477. try
  478. {
  479. initSubsystems(argc, argv);
  480. init();
  481. mainLoop();
  482. ANKI_LOGI("Exiting...");
  483. AppSingleton::get().quit(EXIT_SUCCESS);
  484. exitCode = 0;
  485. }
  486. catch(std::exception& e)
  487. {
  488. ANKI_LOGE("Aborting: " << e.what());
  489. exitCode = 1;
  490. }
  491. ANKI_LOGI("Bye!!");
  492. return exitCode;
  493. }