oit.cpp 14 KB

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  1. /*
  2. * Copyright 2011-2018 Branimir Karadzic. All rights reserved.
  3. * License: https://github.com/bkaradzic/bgfx#license-bsd-2-clause
  4. */
  5. #include "common.h"
  6. #include "bgfx_utils.h"
  7. #include "imgui/imgui.h"
  8. namespace
  9. {
  10. struct PosColorVertex
  11. {
  12. float m_x;
  13. float m_y;
  14. float m_z;
  15. uint32_t m_abgr;
  16. static void init()
  17. {
  18. ms_decl
  19. .begin()
  20. .add(bgfx::Attrib::Position, 3, bgfx::AttribType::Float)
  21. .add(bgfx::Attrib::Color0, 4, bgfx::AttribType::Uint8, true)
  22. .end();
  23. }
  24. static bgfx::VertexDecl ms_decl;
  25. };
  26. bgfx::VertexDecl PosColorVertex::ms_decl;
  27. struct PosColorTexCoord0Vertex
  28. {
  29. float m_x;
  30. float m_y;
  31. float m_z;
  32. uint32_t m_rgba;
  33. float m_u;
  34. float m_v;
  35. static void init()
  36. {
  37. ms_decl
  38. .begin()
  39. .add(bgfx::Attrib::Position, 3, bgfx::AttribType::Float)
  40. .add(bgfx::Attrib::Color0, 4, bgfx::AttribType::Uint8, true)
  41. .add(bgfx::Attrib::TexCoord0, 2, bgfx::AttribType::Float)
  42. .end();
  43. }
  44. static bgfx::VertexDecl ms_decl;
  45. };
  46. bgfx::VertexDecl PosColorTexCoord0Vertex::ms_decl;
  47. static PosColorVertex s_cubeVertices[8] =
  48. {
  49. {-1.0f, 1.0f, 1.0f, 0xff000000 },
  50. { 1.0f, 1.0f, 1.0f, 0xff0000ff },
  51. {-1.0f, -1.0f, 1.0f, 0xff00ff00 },
  52. { 1.0f, -1.0f, 1.0f, 0xff00ffff },
  53. {-1.0f, 1.0f, -1.0f, 0xffff0000 },
  54. { 1.0f, 1.0f, -1.0f, 0xffff00ff },
  55. {-1.0f, -1.0f, -1.0f, 0xffffff00 },
  56. { 1.0f, -1.0f, -1.0f, 0xffffffff },
  57. };
  58. static const uint16_t s_cubeIndices[36] =
  59. {
  60. 0, 1, 2, // 0
  61. 1, 3, 2,
  62. 4, 6, 5, // 2
  63. 5, 6, 7,
  64. 0, 2, 4, // 4
  65. 4, 2, 6,
  66. 1, 5, 3, // 6
  67. 5, 7, 3,
  68. 0, 4, 1, // 8
  69. 4, 5, 1,
  70. 2, 3, 6, // 10
  71. 6, 3, 7,
  72. };
  73. static float s_texelHalf = 0.0f;
  74. static bool s_flipV = false;
  75. inline void mtxProj(float* _result, float _fovy, float _aspect, float _near, float _far)
  76. {
  77. bx::mtxProj(_result, _fovy, _aspect, _near, _far, s_flipV);
  78. }
  79. void screenSpaceQuad(float _textureWidth, float _textureHeight, bool _originBottomLeft = false, float _width = 1.0f, float _height = 1.0f)
  80. {
  81. if (3 == bgfx::getAvailTransientVertexBuffer(3, PosColorTexCoord0Vertex::ms_decl) )
  82. {
  83. bgfx::TransientVertexBuffer vb;
  84. bgfx::allocTransientVertexBuffer(&vb, 3, PosColorTexCoord0Vertex::ms_decl);
  85. PosColorTexCoord0Vertex* vertex = (PosColorTexCoord0Vertex*)vb.data;
  86. const float zz = 0.0f;
  87. const float minx = -_width;
  88. const float maxx = _width;
  89. const float miny = 0.0f;
  90. const float maxy = _height*2.0f;
  91. const float texelHalfW = s_texelHalf/_textureWidth;
  92. const float texelHalfH = s_texelHalf/_textureHeight;
  93. const float minu = -1.0f + texelHalfW;
  94. const float maxu = 1.0f + texelHalfW;
  95. float minv = texelHalfH;
  96. float maxv = 2.0f + texelHalfH;
  97. if (_originBottomLeft)
  98. {
  99. float tmp = minv;
  100. minv = maxv;
  101. maxv = tmp;
  102. minv -= 1.0f;
  103. maxv -= 1.0f;
  104. }
  105. vertex[0].m_x = minx;
  106. vertex[0].m_y = miny;
  107. vertex[0].m_z = zz;
  108. vertex[0].m_rgba = 0xffffffff;
  109. vertex[0].m_u = minu;
  110. vertex[0].m_v = minv;
  111. vertex[1].m_x = maxx;
  112. vertex[1].m_y = miny;
  113. vertex[1].m_z = zz;
  114. vertex[1].m_rgba = 0xffffffff;
  115. vertex[1].m_u = maxu;
  116. vertex[1].m_v = minv;
  117. vertex[2].m_x = maxx;
  118. vertex[2].m_y = maxy;
  119. vertex[2].m_z = zz;
  120. vertex[2].m_rgba = 0xffffffff;
  121. vertex[2].m_u = maxu;
  122. vertex[2].m_v = maxv;
  123. bgfx::setVertexBuffer(0, &vb);
  124. }
  125. }
  126. class ExampleOIT : public entry::AppI
  127. {
  128. public:
  129. ExampleOIT(const char* _name, const char* _description)
  130. : entry::AppI(_name, _description)
  131. {
  132. }
  133. void init(int32_t _argc, const char* const* _argv, uint32_t _width, uint32_t _height) override
  134. {
  135. Args args(_argc, _argv);
  136. m_width = _width;
  137. m_height = _height;
  138. m_debug = BGFX_DEBUG_NONE;
  139. m_reset = BGFX_RESET_VSYNC;
  140. bgfx::init(args.m_type, args.m_pciId);
  141. bgfx::reset(m_width, m_height, m_reset);
  142. // Enable debug text.
  143. bgfx::setDebug(m_debug);
  144. // Create vertex stream declaration.
  145. PosColorVertex::init();
  146. PosColorTexCoord0Vertex::init();
  147. // Get renderer capabilities info.
  148. const bgfx::Caps* caps = bgfx::getCaps();
  149. // Setup root path for binary shaders. Shader binaries are different
  150. // for each renderer.
  151. switch (caps->rendererType)
  152. {
  153. default:
  154. break;
  155. case bgfx::RendererType::OpenGL:
  156. case bgfx::RendererType::OpenGLES:
  157. s_flipV = true;
  158. break;
  159. }
  160. // Imgui.
  161. imguiCreate();
  162. // Create static vertex buffer.
  163. m_vbh = bgfx::createVertexBuffer(
  164. bgfx::makeRef(s_cubeVertices, sizeof(s_cubeVertices) )
  165. , PosColorVertex::ms_decl
  166. );
  167. // Create static index buffer.
  168. m_ibh = bgfx::createIndexBuffer(bgfx::makeRef(s_cubeIndices, sizeof(s_cubeIndices) ) );
  169. // Create texture sampler uniforms.
  170. s_texColor0 = bgfx::createUniform("s_texColor0", bgfx::UniformType::Int1);
  171. s_texColor1 = bgfx::createUniform("s_texColor1", bgfx::UniformType::Int1);
  172. u_color = bgfx::createUniform("u_color", bgfx::UniformType::Vec4);
  173. m_blend = loadProgram("vs_oit", "fs_oit" );
  174. m_wbSeparatePass = loadProgram("vs_oit", "fs_oit_wb_separate" );
  175. m_wbSeparateBlit = loadProgram("vs_oit_blit", "fs_oit_wb_separate_blit" );
  176. m_wbPass = loadProgram("vs_oit", "fs_oit_wb" );
  177. m_wbBlit = loadProgram("vs_oit_blit", "fs_oit_wb_blit" );
  178. m_fbtextures[0].idx = bgfx::kInvalidHandle;
  179. m_fbtextures[1].idx = bgfx::kInvalidHandle;
  180. m_fbh.idx = bgfx::kInvalidHandle;
  181. m_mode = 1;
  182. m_frontToBack = true;
  183. m_fadeInOut = false;
  184. m_oldWidth = 0;
  185. m_oldHeight = 0;
  186. m_oldReset = m_reset;
  187. m_mrtSupported = true
  188. && 2 <= caps->limits.maxFBAttachments
  189. && bgfx::isTextureValid(0, false, 1, bgfx::TextureFormat::RGBA16F, BGFX_TEXTURE_RT)
  190. && bgfx::isTextureValid(0, false, 1, bgfx::TextureFormat::R16F, BGFX_TEXTURE_RT)
  191. ;
  192. m_timeOffset = bx::getHPCounter();
  193. }
  194. int shutdown() override
  195. {
  196. // Cleanup.
  197. imguiDestroy();
  198. if (bgfx::isValid(m_fbh) )
  199. {
  200. bgfx::destroy(m_fbh);
  201. }
  202. bgfx::destroy(m_ibh);
  203. bgfx::destroy(m_vbh);
  204. bgfx::destroy(m_blend);
  205. bgfx::destroy(m_wbSeparatePass);
  206. bgfx::destroy(m_wbSeparateBlit);
  207. bgfx::destroy(m_wbPass);
  208. bgfx::destroy(m_wbBlit);
  209. bgfx::destroy(s_texColor0);
  210. bgfx::destroy(s_texColor1);
  211. bgfx::destroy(u_color);
  212. // Shutdown bgfx.
  213. bgfx::shutdown();
  214. return 0;
  215. }
  216. bool update() override
  217. {
  218. if (!entry::processEvents(m_width, m_height, m_debug, m_reset, &m_mouseState) )
  219. {
  220. imguiBeginFrame(m_mouseState.m_mx
  221. , m_mouseState.m_my
  222. , (m_mouseState.m_buttons[entry::MouseButton::Left ] ? IMGUI_MBUT_LEFT : 0)
  223. | (m_mouseState.m_buttons[entry::MouseButton::Right ] ? IMGUI_MBUT_RIGHT : 0)
  224. | (m_mouseState.m_buttons[entry::MouseButton::Middle] ? IMGUI_MBUT_MIDDLE : 0)
  225. , m_mouseState.m_mz
  226. , uint16_t(m_width)
  227. , uint16_t(m_height)
  228. );
  229. showExampleDialog(this
  230. , !m_mrtSupported
  231. ? "MRT or frame buffer texture format are not supported."
  232. : NULL
  233. );
  234. if (m_mrtSupported)
  235. {
  236. if (m_oldWidth != m_width
  237. || m_oldHeight != m_height
  238. || m_oldReset != m_reset
  239. || !bgfx::isValid(m_fbh) )
  240. {
  241. // Recreate variable size render targets when resolution changes.
  242. m_oldWidth = m_width;
  243. m_oldHeight = m_height;
  244. m_oldReset = m_reset;
  245. if (bgfx::isValid(m_fbh) )
  246. {
  247. bgfx::destroy(m_fbh);
  248. }
  249. m_fbtextures[0] = bgfx::createTexture2D(uint16_t(m_width), uint16_t(m_height), false, 1, bgfx::TextureFormat::RGBA16F, BGFX_TEXTURE_RT);
  250. m_fbtextures[1] = bgfx::createTexture2D(uint16_t(m_width), uint16_t(m_height), false, 1, bgfx::TextureFormat::R16F, BGFX_TEXTURE_RT);
  251. m_fbh = bgfx::createFrameBuffer(BX_COUNTOF(m_fbtextures), m_fbtextures, true);
  252. }
  253. ImGui::SetNextWindowPos(
  254. ImVec2(m_width - m_width / 5.0f - 10.0f, 10.0f)
  255. , ImGuiCond_FirstUseEver
  256. );
  257. ImGui::SetNextWindowSize(
  258. ImVec2(m_width / 5.0f, m_height / 3.0f)
  259. , ImGuiCond_FirstUseEver
  260. );
  261. ImGui::Begin("Settings"
  262. , NULL
  263. , 0
  264. );
  265. ImGui::Separator();
  266. ImGui::Text("Blend mode:");
  267. ImGui::RadioButton("None", &m_mode, 0);
  268. ImGui::RadioButton("Separate", &m_mode, 1);
  269. ImGui::RadioButton("MRT Independent", &m_mode, 2);
  270. ImGui::Separator();
  271. ImGui::Checkbox("Front to back", &m_frontToBack);
  272. ImGui::Checkbox("Fade in/out", &m_fadeInOut);
  273. ImGui::End();
  274. // Set view 0 default viewport.
  275. bgfx::setViewRect(0, 0, 0, uint16_t(m_width), uint16_t(m_height) );
  276. bgfx::setViewRect(1, 0, 0, uint16_t(m_width), uint16_t(m_height) );
  277. int64_t now = bx::getHPCounter();
  278. const double freq = double(bx::getHPFrequency() );
  279. float time = (float)( (now-m_timeOffset)/freq);
  280. // Reference:
  281. // Weighted, Blended Order-Independent Transparency
  282. // http://jcgt.org/published/0002/02/09/
  283. // http://casual-effects.blogspot.com/2014/03/weighted-blended-order-independent.html
  284. float at[3] = { 0.0f, 0.0f, 0.0f };
  285. float eye[3] = { 0.0f, 0.0f, -7.0f };
  286. float view[16];
  287. float proj[16];
  288. // Set view and projection matrix for view 0.
  289. bx::mtxLookAt(view, eye, at);
  290. mtxProj(proj, 60.0f, float(m_width)/float(m_height), 0.1f, 100.0f);
  291. bgfx::setViewTransform(0, view, proj);
  292. // Set palette color for index 0
  293. bgfx::setPaletteColor(0, 0.0f, 0.0f, 0.0f, 0.0f);
  294. // Set palette color for index 1
  295. bgfx::setPaletteColor(1, 1.0f, 1.0f, 1.0f, 1.0f);
  296. bgfx::setViewClear(0
  297. , BGFX_CLEAR_COLOR|BGFX_CLEAR_DEPTH
  298. , 1.0f // Depth
  299. , 0 // Stencil
  300. , 0 // FB texture 0, color palette 0
  301. , 1 == m_mode ? 1 : 0 // FB texture 1, color palette 1
  302. );
  303. bgfx::setViewClear(1
  304. , BGFX_CLEAR_COLOR|BGFX_CLEAR_DEPTH
  305. , 1.0f // Depth
  306. , 0 // Stencil
  307. , 0 // Color palette 0
  308. );
  309. bgfx::FrameBufferHandle invalid = BGFX_INVALID_HANDLE;
  310. bgfx::setViewFrameBuffer(0, 0 == m_mode ? invalid : m_fbh);
  311. // Set view and projection matrix for view 1.
  312. bx::mtxIdentity(view);
  313. const bgfx::Caps* caps = bgfx::getCaps();
  314. bx::mtxOrtho(proj, 0.0f, 1.0f, 1.0f, 0.0f, 0.0f, 100.0f, 0.0f, caps->homogeneousDepth);
  315. bgfx::setViewTransform(1, view, proj);
  316. for (uint32_t depth = 0; depth < 3; ++depth)
  317. {
  318. uint32_t zz = m_frontToBack ? 2-depth : depth;
  319. for (uint32_t yy = 0; yy < 3; ++yy)
  320. {
  321. for (uint32_t xx = 0; xx < 3; ++xx)
  322. {
  323. float color[4] = { xx*1.0f/3.0f, zz*1.0f/3.0f, yy*1.0f/3.0f, 0.5f };
  324. if (m_fadeInOut
  325. && zz == 1)
  326. {
  327. color[3] = bx::fsin(time*3.0f)*0.49f+0.5f;
  328. }
  329. bgfx::setUniform(u_color, color);
  330. BX_UNUSED(time);
  331. float mtx[16];
  332. bx::mtxRotateXY(mtx, time*0.023f + xx*0.21f, time*0.03f + yy*0.37f);
  333. //mtxIdentity(mtx);
  334. mtx[12] = -2.5f + float(xx)*2.5f;
  335. mtx[13] = -2.5f + float(yy)*2.5f;
  336. mtx[14] = -2.5f + float(zz)*2.5f;
  337. // Set transform for draw call.
  338. bgfx::setTransform(mtx);
  339. // Set vertex and index buffer.
  340. bgfx::setVertexBuffer(0, m_vbh);
  341. bgfx::setIndexBuffer(m_ibh);
  342. const uint64_t state = 0
  343. | BGFX_STATE_CULL_CW
  344. | BGFX_STATE_RGB_WRITE
  345. | BGFX_STATE_ALPHA_WRITE
  346. | BGFX_STATE_DEPTH_TEST_LESS
  347. | BGFX_STATE_MSAA
  348. ;
  349. const uint64_t stateNoDepth = 0
  350. | BGFX_STATE_CULL_CW
  351. | BGFX_STATE_RGB_WRITE
  352. | BGFX_STATE_ALPHA_WRITE
  353. | BGFX_STATE_DEPTH_TEST_ALWAYS
  354. | BGFX_STATE_MSAA
  355. ;
  356. bgfx::ProgramHandle program = BGFX_INVALID_HANDLE;
  357. switch (m_mode)
  358. {
  359. case 0:
  360. // Set vertex and fragment shaders.
  361. program = m_blend;
  362. // Set render states.
  363. bgfx::setState(state
  364. | BGFX_STATE_BLEND_ALPHA
  365. );
  366. break;
  367. case 1:
  368. // Set vertex and fragment shaders.
  369. program = m_wbSeparatePass;
  370. // Set render states.
  371. bgfx::setState(stateNoDepth
  372. | BGFX_STATE_BLEND_FUNC_SEPARATE(BGFX_STATE_BLEND_ONE, BGFX_STATE_BLEND_ONE, BGFX_STATE_BLEND_ZERO, BGFX_STATE_BLEND_INV_SRC_ALPHA)
  373. );
  374. break;
  375. default:
  376. // Set vertex and fragment shaders.
  377. program = m_wbPass;
  378. // Set render states.
  379. bgfx::setState(stateNoDepth
  380. | BGFX_STATE_BLEND_FUNC(BGFX_STATE_BLEND_ONE, BGFX_STATE_BLEND_ONE)
  381. | BGFX_STATE_BLEND_INDEPENDENT
  382. , 0
  383. | BGFX_STATE_BLEND_FUNC_RT_1(BGFX_STATE_BLEND_ZERO, BGFX_STATE_BLEND_SRC_COLOR)
  384. );
  385. break;
  386. }
  387. // Submit primitive for rendering to view 0.
  388. bgfx::submit(0, program);
  389. }
  390. }
  391. }
  392. if (0 != m_mode)
  393. {
  394. bgfx::setTexture(0, s_texColor0, m_fbtextures[0]);
  395. bgfx::setTexture(1, s_texColor1, m_fbtextures[1]);
  396. bgfx::setState(0
  397. | BGFX_STATE_RGB_WRITE
  398. | BGFX_STATE_BLEND_FUNC(BGFX_STATE_BLEND_INV_SRC_ALPHA, BGFX_STATE_BLEND_SRC_ALPHA)
  399. );
  400. screenSpaceQuad( (float)m_width, (float)m_height, s_flipV);
  401. bgfx::submit(1
  402. , 1 == m_mode ? m_wbSeparateBlit : m_wbBlit
  403. );
  404. }
  405. }
  406. imguiEndFrame();
  407. // Advance to next frame. Rendering thread will be kicked to
  408. // process submitted rendering primitives.
  409. bgfx::frame();
  410. return true;
  411. }
  412. return false;
  413. }
  414. uint32_t m_width;
  415. uint32_t m_height;
  416. uint32_t m_debug;
  417. uint32_t m_reset;
  418. int32_t m_mode;
  419. bool m_frontToBack;
  420. bool m_fadeInOut;
  421. bool m_mrtSupported;
  422. uint32_t m_oldWidth;
  423. uint32_t m_oldHeight;
  424. uint32_t m_oldReset;
  425. entry::MouseState m_mouseState;
  426. int64_t m_timeOffset;
  427. bgfx::VertexBufferHandle m_vbh;
  428. bgfx::IndexBufferHandle m_ibh;
  429. bgfx::UniformHandle s_texColor0;
  430. bgfx::UniformHandle s_texColor1;
  431. bgfx::UniformHandle u_color;
  432. bgfx::ProgramHandle m_blend;
  433. bgfx::ProgramHandle m_wbSeparatePass;
  434. bgfx::ProgramHandle m_wbSeparateBlit;
  435. bgfx::ProgramHandle m_wbPass;
  436. bgfx::ProgramHandle m_wbBlit;
  437. bgfx::TextureHandle m_fbtextures[2];
  438. bgfx::FrameBufferHandle m_fbh;
  439. };
  440. } // namespace
  441. ENTRY_IMPLEMENT_MAIN(ExampleOIT, "19-oit", "Weighted, Blended Order Independent Transparency.");