visual_server.h 48 KB

12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667686970717273747576777879808182838485868788899091929394959697989910010110210310410510610710810911011111211311411511611711811912012112212312412512612712812913013113213313413513613713813914014114214314414514614714814915015115215315415515615715815916016116216316416516616716816917017117217317417517617717817918018118218318418518618718818919019119219319419519619719819920020120220320420520620720820921021121221321421521621721821922022122222322422522622722822923023123223323423523623723823924024124224324424524624724824925025125225325425525625725825926026126226326426526626726826927027127227327427527627727827928028128228328428528628728828929029129229329429529629729829930030130230330430530630730830931031131231331431531631731831932032132232332432532632732832933033133233333433533633733833934034134234334434534634734834935035135235335435535635735835936036136236336436536636736836937037137237337437537637737837938038138238338438538638738838939039139239339439539639739839940040140240340440540640740840941041141241341441541641741841942042142242342442542642742842943043143243343443543643743843944044144244344444544644744844945045145245345445545645745845946046146246346446546646746846947047147247347447547647747847948048148248348448548648748848949049149249349449549649749849950050150250350450550650750850951051151251351451551651751851952052152252352452552652752852953053153253353453553653753853954054154254354454554654754854955055155255355455555655755855956056156256356456556656756856957057157257357457557657757857958058158258358458558658758858959059159259359459559659759859960060160260360460560660760860961061161261361461561661761861962062162262362462562662762862963063163263363463563663763863964064164264364464564664764864965065165265365465565665765865966066166266366466566666766866967067167267367467567667767867968068168268368468568668768868969069169269369469569669769869970070170270370470570670770870971071171271371471571671771871972072172272372472572672772872973073173273373473573673773873974074174274374474574674774874975075175275375475575675775875976076176276376476576676776876977077177277377477577677777877978078178278378478578678778878979079179279379479579679779879980080180280380480580680780880981081181281381481581681781881982082182282382482582682782882983083183283383483583683783883984084184284384484584684784884985085185285385485585685785885986086186286386486586686786886987087187287387487587687787887988088188288388488588688788888989089189289389489589689789889990090190290390490590690790890991091191291391491591691791891992092192292392492592692792892993093193293393493593693793893994094194294394494594694794894995095195295395495595695795895996096196296396496596696796896997097197297397497597697797897998098198298398498598698798898999099199299399499599699799899910001001100210031004100510061007100810091010101110121013101410151016101710181019102010211022102310241025102610271028102910301031103210331034103510361037103810391040104110421043104410451046104710481049105010511052105310541055105610571058105910601061106210631064106510661067106810691070107110721073107410751076107710781079108010811082108310841085108610871088108910901091109210931094
  1. /*************************************************************************/
  2. /* visual_server.h */
  3. /*************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /*************************************************************************/
  8. /* Copyright (c) 2007-2019 Juan Linietsky, Ariel Manzur. */
  9. /* Copyright (c) 2014-2019 Godot Engine contributors (cf. AUTHORS.md) */
  10. /* */
  11. /* Permission is hereby granted, free of charge, to any person obtaining */
  12. /* a copy of this software and associated documentation files (the */
  13. /* "Software"), to deal in the Software without restriction, including */
  14. /* without limitation the rights to use, copy, modify, merge, publish, */
  15. /* distribute, sublicense, and/or sell copies of the Software, and to */
  16. /* permit persons to whom the Software is furnished to do so, subject to */
  17. /* the following conditions: */
  18. /* */
  19. /* The above copyright notice and this permission notice shall be */
  20. /* included in all copies or substantial portions of the Software. */
  21. /* */
  22. /* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
  23. /* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
  24. /* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
  25. /* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
  26. /* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
  27. /* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
  28. /* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
  29. /*************************************************************************/
  30. #ifndef VISUAL_SERVER_H
  31. #define VISUAL_SERVER_H
  32. #include "core/image.h"
  33. #include "core/math/bsp_tree.h"
  34. #include "core/math/geometry.h"
  35. #include "core/math/transform_2d.h"
  36. #include "core/object.h"
  37. #include "core/rid.h"
  38. #include "core/variant.h"
  39. /**
  40. @author Juan Linietsky <reduzio@gmail.com>
  41. */
  42. class VisualServer : public Object {
  43. GDCLASS(VisualServer, Object);
  44. static VisualServer *singleton;
  45. int mm_policy;
  46. void _camera_set_orthogonal(RID p_camera, float p_size, float p_z_near, float p_z_far);
  47. void _canvas_item_add_style_box(RID p_item, const Rect2 &p_rect, const Rect2 &p_source, RID p_texture, const Vector<float> &p_margins, const Color &p_modulate = Color(1, 1, 1));
  48. Array _get_array_from_surface(uint32_t p_format, PoolVector<uint8_t> p_vertex_data, int p_vertex_len, PoolVector<uint8_t> p_index_data, int p_index_len) const;
  49. protected:
  50. RID _make_test_cube();
  51. void _free_internal_rids();
  52. RID test_texture;
  53. RID white_texture;
  54. RID test_material;
  55. Error _surface_set_data(Array p_arrays, uint32_t p_format, uint32_t *p_offsets, uint32_t p_stride, PoolVector<uint8_t> &r_vertex_array, int p_vertex_array_len, PoolVector<uint8_t> &r_index_array, int p_index_array_len, AABB &r_aabb, Vector<AABB> &r_bone_aabb);
  56. static VisualServer *(*create_func)();
  57. static void _bind_methods();
  58. public:
  59. static VisualServer *get_singleton();
  60. static VisualServer *create();
  61. enum {
  62. NO_INDEX_ARRAY = -1,
  63. ARRAY_WEIGHTS_SIZE = 4,
  64. CANVAS_ITEM_Z_MIN = -4096,
  65. CANVAS_ITEM_Z_MAX = 4096,
  66. MAX_GLOW_LEVELS = 7,
  67. MAX_CURSORS = 8,
  68. };
  69. /* TEXTURE API */
  70. enum TextureFlags {
  71. TEXTURE_FLAG_MIPMAPS = 1, /// Enable automatic mipmap generation - when available
  72. TEXTURE_FLAG_REPEAT = 2, /// Repeat texture (Tiling), otherwise Clamping
  73. TEXTURE_FLAG_FILTER = 4, /// Create texture with linear (or available) filter
  74. TEXTURE_FLAG_ANISOTROPIC_FILTER = 8,
  75. TEXTURE_FLAG_CONVERT_TO_LINEAR = 16,
  76. TEXTURE_FLAG_MIRRORED_REPEAT = 32, /// Repeat texture, with alternate sections mirrored
  77. TEXTURE_FLAG_USED_FOR_STREAMING = 2048,
  78. TEXTURE_FLAGS_DEFAULT = TEXTURE_FLAG_REPEAT | TEXTURE_FLAG_MIPMAPS | TEXTURE_FLAG_FILTER
  79. };
  80. enum TextureType {
  81. TEXTURE_TYPE_2D,
  82. TEXTURE_TYPE_CUBEMAP,
  83. TEXTURE_TYPE_2D_ARRAY,
  84. TEXTURE_TYPE_3D,
  85. };
  86. enum CubeMapSide {
  87. CUBEMAP_LEFT,
  88. CUBEMAP_RIGHT,
  89. CUBEMAP_BOTTOM,
  90. CUBEMAP_TOP,
  91. CUBEMAP_FRONT,
  92. CUBEMAP_BACK
  93. };
  94. virtual RID texture_create() = 0;
  95. RID texture_create_from_image(const Ref<Image> &p_image, uint32_t p_flags = TEXTURE_FLAGS_DEFAULT); // helper
  96. virtual void texture_allocate(RID p_texture,
  97. int p_width,
  98. int p_height,
  99. int p_depth_3d,
  100. Image::Format p_format,
  101. TextureType p_type,
  102. uint32_t p_flags = TEXTURE_FLAGS_DEFAULT) = 0;
  103. virtual void texture_set_data(RID p_texture, const Ref<Image> &p_image, int p_layer = 0) = 0;
  104. virtual void texture_set_data_partial(RID p_texture,
  105. const Ref<Image> &p_image,
  106. int src_x, int src_y,
  107. int src_w, int src_h,
  108. int dst_x, int dst_y,
  109. int p_dst_mip,
  110. int p_layer = 0) = 0;
  111. virtual Ref<Image> texture_get_data(RID p_texture, int p_layer = 0) const = 0;
  112. virtual void texture_set_flags(RID p_texture, uint32_t p_flags) = 0;
  113. virtual uint32_t texture_get_flags(RID p_texture) const = 0;
  114. virtual Image::Format texture_get_format(RID p_texture) const = 0;
  115. virtual TextureType texture_get_type(RID p_texture) const = 0;
  116. virtual uint32_t texture_get_texid(RID p_texture) const = 0;
  117. virtual uint32_t texture_get_width(RID p_texture) const = 0;
  118. virtual uint32_t texture_get_height(RID p_texture) const = 0;
  119. virtual uint32_t texture_get_depth(RID p_texture) const = 0;
  120. virtual void texture_set_size_override(RID p_texture, int p_width, int p_height, int p_depth_3d) = 0;
  121. virtual void texture_set_path(RID p_texture, const String &p_path) = 0;
  122. virtual String texture_get_path(RID p_texture) const = 0;
  123. virtual void texture_set_shrink_all_x2_on_set_data(bool p_enable) = 0;
  124. typedef void (*TextureDetectCallback)(void *);
  125. virtual void texture_set_detect_3d_callback(RID p_texture, TextureDetectCallback p_callback, void *p_userdata) = 0;
  126. virtual void texture_set_detect_srgb_callback(RID p_texture, TextureDetectCallback p_callback, void *p_userdata) = 0;
  127. virtual void texture_set_detect_normal_callback(RID p_texture, TextureDetectCallback p_callback, void *p_userdata) = 0;
  128. struct TextureInfo {
  129. RID texture;
  130. uint32_t width;
  131. uint32_t height;
  132. uint32_t depth;
  133. Image::Format format;
  134. int bytes;
  135. String path;
  136. };
  137. virtual void texture_debug_usage(List<TextureInfo> *r_info) = 0;
  138. Array _texture_debug_usage_bind();
  139. virtual void textures_keep_original(bool p_enable) = 0;
  140. virtual void texture_set_proxy(RID p_proxy, RID p_base) = 0;
  141. virtual void texture_set_force_redraw_if_visible(RID p_texture, bool p_enable) = 0;
  142. /* SKY API */
  143. virtual RID sky_create() = 0;
  144. virtual void sky_set_texture(RID p_sky, RID p_cube_map, int p_radiance_size) = 0;
  145. /* SHADER API */
  146. enum ShaderMode {
  147. SHADER_SPATIAL,
  148. SHADER_CANVAS_ITEM,
  149. SHADER_PARTICLES,
  150. SHADER_MAX
  151. };
  152. virtual RID shader_create() = 0;
  153. virtual void shader_set_code(RID p_shader, const String &p_code) = 0;
  154. virtual String shader_get_code(RID p_shader) const = 0;
  155. virtual void shader_get_param_list(RID p_shader, List<PropertyInfo> *p_param_list) const = 0;
  156. Array _shader_get_param_list_bind(RID p_shader) const;
  157. virtual void shader_set_default_texture_param(RID p_shader, const StringName &p_name, RID p_texture) = 0;
  158. virtual RID shader_get_default_texture_param(RID p_shader, const StringName &p_name) const = 0;
  159. /* COMMON MATERIAL API */
  160. enum {
  161. MATERIAL_RENDER_PRIORITY_MIN = -128,
  162. MATERIAL_RENDER_PRIORITY_MAX = 127,
  163. };
  164. virtual RID material_create() = 0;
  165. virtual void material_set_shader(RID p_shader_material, RID p_shader) = 0;
  166. virtual RID material_get_shader(RID p_shader_material) const = 0;
  167. virtual void material_set_param(RID p_material, const StringName &p_param, const Variant &p_value) = 0;
  168. virtual Variant material_get_param(RID p_material, const StringName &p_param) const = 0;
  169. virtual Variant material_get_param_default(RID p_material, const StringName &p_param) const = 0;
  170. virtual void material_set_render_priority(RID p_material, int priority) = 0;
  171. virtual void material_set_line_width(RID p_material, float p_width) = 0;
  172. virtual void material_set_next_pass(RID p_material, RID p_next_material) = 0;
  173. /* MESH API */
  174. enum ArrayType {
  175. ARRAY_VERTEX = 0,
  176. ARRAY_NORMAL = 1,
  177. ARRAY_TANGENT = 2,
  178. ARRAY_COLOR = 3,
  179. ARRAY_TEX_UV = 4,
  180. ARRAY_TEX_UV2 = 5,
  181. ARRAY_BONES = 6,
  182. ARRAY_WEIGHTS = 7,
  183. ARRAY_INDEX = 8,
  184. ARRAY_MAX = 9
  185. };
  186. enum ArrayFormat {
  187. /* ARRAY FORMAT FLAGS */
  188. ARRAY_FORMAT_VERTEX = 1 << ARRAY_VERTEX, // mandatory
  189. ARRAY_FORMAT_NORMAL = 1 << ARRAY_NORMAL,
  190. ARRAY_FORMAT_TANGENT = 1 << ARRAY_TANGENT,
  191. ARRAY_FORMAT_COLOR = 1 << ARRAY_COLOR,
  192. ARRAY_FORMAT_TEX_UV = 1 << ARRAY_TEX_UV,
  193. ARRAY_FORMAT_TEX_UV2 = 1 << ARRAY_TEX_UV2,
  194. ARRAY_FORMAT_BONES = 1 << ARRAY_BONES,
  195. ARRAY_FORMAT_WEIGHTS = 1 << ARRAY_WEIGHTS,
  196. ARRAY_FORMAT_INDEX = 1 << ARRAY_INDEX,
  197. ARRAY_COMPRESS_BASE = (ARRAY_INDEX + 1),
  198. ARRAY_COMPRESS_VERTEX = 1 << (ARRAY_VERTEX + ARRAY_COMPRESS_BASE), // mandatory
  199. ARRAY_COMPRESS_NORMAL = 1 << (ARRAY_NORMAL + ARRAY_COMPRESS_BASE),
  200. ARRAY_COMPRESS_TANGENT = 1 << (ARRAY_TANGENT + ARRAY_COMPRESS_BASE),
  201. ARRAY_COMPRESS_COLOR = 1 << (ARRAY_COLOR + ARRAY_COMPRESS_BASE),
  202. ARRAY_COMPRESS_TEX_UV = 1 << (ARRAY_TEX_UV + ARRAY_COMPRESS_BASE),
  203. ARRAY_COMPRESS_TEX_UV2 = 1 << (ARRAY_TEX_UV2 + ARRAY_COMPRESS_BASE),
  204. ARRAY_COMPRESS_BONES = 1 << (ARRAY_BONES + ARRAY_COMPRESS_BASE),
  205. ARRAY_COMPRESS_WEIGHTS = 1 << (ARRAY_WEIGHTS + ARRAY_COMPRESS_BASE),
  206. ARRAY_COMPRESS_INDEX = 1 << (ARRAY_INDEX + ARRAY_COMPRESS_BASE),
  207. ARRAY_FLAG_USE_2D_VERTICES = ARRAY_COMPRESS_INDEX << 1,
  208. ARRAY_FLAG_USE_16_BIT_BONES = ARRAY_COMPRESS_INDEX << 2,
  209. ARRAY_FLAG_USE_DYNAMIC_UPDATE = ARRAY_COMPRESS_INDEX << 3,
  210. ARRAY_COMPRESS_DEFAULT = ARRAY_COMPRESS_NORMAL | ARRAY_COMPRESS_TANGENT | ARRAY_COMPRESS_COLOR | ARRAY_COMPRESS_TEX_UV | ARRAY_COMPRESS_TEX_UV2 | ARRAY_COMPRESS_WEIGHTS
  211. };
  212. enum PrimitiveType {
  213. PRIMITIVE_POINTS = 0,
  214. PRIMITIVE_LINES = 1,
  215. PRIMITIVE_LINE_STRIP = 2,
  216. PRIMITIVE_LINE_LOOP = 3,
  217. PRIMITIVE_TRIANGLES = 4,
  218. PRIMITIVE_TRIANGLE_STRIP = 5,
  219. PRIMITIVE_TRIANGLE_FAN = 6,
  220. PRIMITIVE_MAX = 7,
  221. };
  222. virtual RID mesh_create() = 0;
  223. virtual uint32_t mesh_surface_get_format_offset(uint32_t p_format, int p_vertex_len, int p_index_len, int p_array_index) const;
  224. virtual uint32_t mesh_surface_get_format_stride(uint32_t p_format, int p_vertex_len, int p_index_len) const;
  225. /// Returns stride
  226. virtual uint32_t mesh_surface_make_offsets_from_format(uint32_t p_format, int p_vertex_len, int p_index_len, uint32_t *r_offsets) const;
  227. virtual void mesh_add_surface_from_arrays(RID p_mesh, PrimitiveType p_primitive, const Array &p_arrays, const Array &p_blend_shapes = Array(), uint32_t p_compress_format = ARRAY_COMPRESS_DEFAULT);
  228. virtual void mesh_add_surface(RID p_mesh, uint32_t p_format, PrimitiveType p_primitive, const PoolVector<uint8_t> &p_array, int p_vertex_count, const PoolVector<uint8_t> &p_index_array, int p_index_count, const AABB &p_aabb, const Vector<PoolVector<uint8_t> > &p_blend_shapes = Vector<PoolVector<uint8_t> >(), const Vector<AABB> &p_bone_aabbs = Vector<AABB>()) = 0;
  229. virtual void mesh_set_blend_shape_count(RID p_mesh, int p_amount) = 0;
  230. virtual int mesh_get_blend_shape_count(RID p_mesh) const = 0;
  231. enum BlendShapeMode {
  232. BLEND_SHAPE_MODE_NORMALIZED,
  233. BLEND_SHAPE_MODE_RELATIVE,
  234. };
  235. virtual void mesh_set_blend_shape_mode(RID p_mesh, BlendShapeMode p_mode) = 0;
  236. virtual BlendShapeMode mesh_get_blend_shape_mode(RID p_mesh) const = 0;
  237. virtual void mesh_surface_update_region(RID p_mesh, int p_surface, int p_offset, const PoolVector<uint8_t> &p_data) = 0;
  238. virtual void mesh_surface_set_material(RID p_mesh, int p_surface, RID p_material) = 0;
  239. virtual RID mesh_surface_get_material(RID p_mesh, int p_surface) const = 0;
  240. virtual int mesh_surface_get_array_len(RID p_mesh, int p_surface) const = 0;
  241. virtual int mesh_surface_get_array_index_len(RID p_mesh, int p_surface) const = 0;
  242. virtual PoolVector<uint8_t> mesh_surface_get_array(RID p_mesh, int p_surface) const = 0;
  243. virtual PoolVector<uint8_t> mesh_surface_get_index_array(RID p_mesh, int p_surface) const = 0;
  244. virtual Array mesh_surface_get_arrays(RID p_mesh, int p_surface) const;
  245. virtual Array mesh_surface_get_blend_shape_arrays(RID p_mesh, int p_surface) const;
  246. virtual uint32_t mesh_surface_get_format(RID p_mesh, int p_surface) const = 0;
  247. virtual PrimitiveType mesh_surface_get_primitive_type(RID p_mesh, int p_surface) const = 0;
  248. virtual AABB mesh_surface_get_aabb(RID p_mesh, int p_surface) const = 0;
  249. virtual Vector<PoolVector<uint8_t> > mesh_surface_get_blend_shapes(RID p_mesh, int p_surface) const = 0;
  250. virtual Vector<AABB> mesh_surface_get_skeleton_aabb(RID p_mesh, int p_surface) const = 0;
  251. Array _mesh_surface_get_skeleton_aabb_bind(RID p_mesh, int p_surface) const;
  252. virtual void mesh_remove_surface(RID p_mesh, int p_index) = 0;
  253. virtual int mesh_get_surface_count(RID p_mesh) const = 0;
  254. virtual void mesh_set_custom_aabb(RID p_mesh, const AABB &p_aabb) = 0;
  255. virtual AABB mesh_get_custom_aabb(RID p_mesh) const = 0;
  256. virtual void mesh_clear(RID p_mesh) = 0;
  257. /* MULTIMESH API */
  258. virtual RID multimesh_create() = 0;
  259. enum MultimeshTransformFormat {
  260. MULTIMESH_TRANSFORM_2D,
  261. MULTIMESH_TRANSFORM_3D,
  262. };
  263. enum MultimeshColorFormat {
  264. MULTIMESH_COLOR_NONE,
  265. MULTIMESH_COLOR_8BIT,
  266. MULTIMESH_COLOR_FLOAT,
  267. };
  268. enum MultimeshCustomDataFormat {
  269. MULTIMESH_CUSTOM_DATA_NONE,
  270. MULTIMESH_CUSTOM_DATA_8BIT,
  271. MULTIMESH_CUSTOM_DATA_FLOAT,
  272. };
  273. virtual void multimesh_allocate(RID p_multimesh, int p_instances, MultimeshTransformFormat p_transform_format, MultimeshColorFormat p_color_format, MultimeshCustomDataFormat p_data_format = MULTIMESH_CUSTOM_DATA_NONE) = 0;
  274. virtual int multimesh_get_instance_count(RID p_multimesh) const = 0;
  275. virtual void multimesh_set_mesh(RID p_multimesh, RID p_mesh) = 0;
  276. virtual void multimesh_instance_set_transform(RID p_multimesh, int p_index, const Transform &p_transform) = 0;
  277. virtual void multimesh_instance_set_transform_2d(RID p_multimesh, int p_index, const Transform2D &p_transform) = 0;
  278. virtual void multimesh_instance_set_color(RID p_multimesh, int p_index, const Color &p_color) = 0;
  279. virtual void multimesh_instance_set_custom_data(RID p_multimesh, int p_index, const Color &p_color) = 0;
  280. virtual RID multimesh_get_mesh(RID p_multimesh) const = 0;
  281. virtual AABB multimesh_get_aabb(RID p_multimesh) const = 0;
  282. virtual Transform multimesh_instance_get_transform(RID p_multimesh, int p_index) const = 0;
  283. virtual Transform2D multimesh_instance_get_transform_2d(RID p_multimesh, int p_index) const = 0;
  284. virtual Color multimesh_instance_get_color(RID p_multimesh, int p_index) const = 0;
  285. virtual Color multimesh_instance_get_custom_data(RID p_multimesh, int p_index) const = 0;
  286. virtual void multimesh_set_as_bulk_array(RID p_multimesh, const PoolVector<float> &p_array) = 0;
  287. virtual void multimesh_set_visible_instances(RID p_multimesh, int p_visible) = 0;
  288. virtual int multimesh_get_visible_instances(RID p_multimesh) const = 0;
  289. /* IMMEDIATE API */
  290. virtual RID immediate_create() = 0;
  291. virtual void immediate_begin(RID p_immediate, PrimitiveType p_rimitive, RID p_texture = RID()) = 0;
  292. virtual void immediate_vertex(RID p_immediate, const Vector3 &p_vertex) = 0;
  293. virtual void immediate_vertex_2d(RID p_immediate, const Vector2 &p_vertex);
  294. virtual void immediate_normal(RID p_immediate, const Vector3 &p_normal) = 0;
  295. virtual void immediate_tangent(RID p_immediate, const Plane &p_tangent) = 0;
  296. virtual void immediate_color(RID p_immediate, const Color &p_color) = 0;
  297. virtual void immediate_uv(RID p_immediate, const Vector2 &tex_uv) = 0;
  298. virtual void immediate_uv2(RID p_immediate, const Vector2 &tex_uv) = 0;
  299. virtual void immediate_end(RID p_immediate) = 0;
  300. virtual void immediate_clear(RID p_immediate) = 0;
  301. virtual void immediate_set_material(RID p_immediate, RID p_material) = 0;
  302. virtual RID immediate_get_material(RID p_immediate) const = 0;
  303. /* SKELETON API */
  304. virtual RID skeleton_create() = 0;
  305. virtual void skeleton_allocate(RID p_skeleton, int p_bones, bool p_2d_skeleton = false) = 0;
  306. virtual int skeleton_get_bone_count(RID p_skeleton) const = 0;
  307. virtual void skeleton_bone_set_transform(RID p_skeleton, int p_bone, const Transform &p_transform) = 0;
  308. virtual Transform skeleton_bone_get_transform(RID p_skeleton, int p_bone) const = 0;
  309. virtual void skeleton_bone_set_transform_2d(RID p_skeleton, int p_bone, const Transform2D &p_transform) = 0;
  310. virtual Transform2D skeleton_bone_get_transform_2d(RID p_skeleton, int p_bone) const = 0;
  311. virtual void skeleton_set_base_transform_2d(RID p_skeleton, const Transform2D &p_base_transform) = 0;
  312. /* Light API */
  313. enum LightType {
  314. LIGHT_DIRECTIONAL,
  315. LIGHT_OMNI,
  316. LIGHT_SPOT
  317. };
  318. enum LightParam {
  319. LIGHT_PARAM_ENERGY,
  320. LIGHT_PARAM_INDIRECT_ENERGY,
  321. LIGHT_PARAM_SPECULAR,
  322. LIGHT_PARAM_RANGE,
  323. LIGHT_PARAM_ATTENUATION,
  324. LIGHT_PARAM_SPOT_ANGLE,
  325. LIGHT_PARAM_SPOT_ATTENUATION,
  326. LIGHT_PARAM_CONTACT_SHADOW_SIZE,
  327. LIGHT_PARAM_SHADOW_MAX_DISTANCE,
  328. LIGHT_PARAM_SHADOW_SPLIT_1_OFFSET,
  329. LIGHT_PARAM_SHADOW_SPLIT_2_OFFSET,
  330. LIGHT_PARAM_SHADOW_SPLIT_3_OFFSET,
  331. LIGHT_PARAM_SHADOW_NORMAL_BIAS,
  332. LIGHT_PARAM_SHADOW_BIAS,
  333. LIGHT_PARAM_SHADOW_BIAS_SPLIT_SCALE,
  334. LIGHT_PARAM_MAX
  335. };
  336. virtual RID directional_light_create() = 0;
  337. virtual RID omni_light_create() = 0;
  338. virtual RID spot_light_create() = 0;
  339. virtual void light_set_color(RID p_light, const Color &p_color) = 0;
  340. virtual void light_set_param(RID p_light, LightParam p_param, float p_value) = 0;
  341. virtual void light_set_shadow(RID p_light, bool p_enabled) = 0;
  342. virtual void light_set_shadow_color(RID p_light, const Color &p_color) = 0;
  343. virtual void light_set_projector(RID p_light, RID p_texture) = 0;
  344. virtual void light_set_negative(RID p_light, bool p_enable) = 0;
  345. virtual void light_set_cull_mask(RID p_light, uint32_t p_mask) = 0;
  346. virtual void light_set_reverse_cull_face_mode(RID p_light, bool p_enabled) = 0;
  347. // omni light
  348. enum LightOmniShadowMode {
  349. LIGHT_OMNI_SHADOW_DUAL_PARABOLOID,
  350. LIGHT_OMNI_SHADOW_CUBE,
  351. };
  352. virtual void light_omni_set_shadow_mode(RID p_light, LightOmniShadowMode p_mode) = 0;
  353. // omni light
  354. enum LightOmniShadowDetail {
  355. LIGHT_OMNI_SHADOW_DETAIL_VERTICAL,
  356. LIGHT_OMNI_SHADOW_DETAIL_HORIZONTAL
  357. };
  358. virtual void light_omni_set_shadow_detail(RID p_light, LightOmniShadowDetail p_detail) = 0;
  359. // directional light
  360. enum LightDirectionalShadowMode {
  361. LIGHT_DIRECTIONAL_SHADOW_ORTHOGONAL,
  362. LIGHT_DIRECTIONAL_SHADOW_PARALLEL_2_SPLITS,
  363. LIGHT_DIRECTIONAL_SHADOW_PARALLEL_4_SPLITS
  364. };
  365. virtual void light_directional_set_shadow_mode(RID p_light, LightDirectionalShadowMode p_mode) = 0;
  366. virtual void light_directional_set_blend_splits(RID p_light, bool p_enable) = 0;
  367. enum LightDirectionalShadowDepthRangeMode {
  368. LIGHT_DIRECTIONAL_SHADOW_DEPTH_RANGE_STABLE,
  369. LIGHT_DIRECTIONAL_SHADOW_DEPTH_RANGE_OPTIMIZED,
  370. };
  371. virtual void light_directional_set_shadow_depth_range_mode(RID p_light, LightDirectionalShadowDepthRangeMode p_range_mode) = 0;
  372. /* PROBE API */
  373. virtual RID reflection_probe_create() = 0;
  374. enum ReflectionProbeUpdateMode {
  375. REFLECTION_PROBE_UPDATE_ONCE,
  376. REFLECTION_PROBE_UPDATE_ALWAYS,
  377. };
  378. virtual void reflection_probe_set_update_mode(RID p_probe, ReflectionProbeUpdateMode p_mode) = 0;
  379. virtual void reflection_probe_set_intensity(RID p_probe, float p_intensity) = 0;
  380. virtual void reflection_probe_set_interior_ambient(RID p_probe, const Color &p_color) = 0;
  381. virtual void reflection_probe_set_interior_ambient_energy(RID p_probe, float p_energy) = 0;
  382. virtual void reflection_probe_set_interior_ambient_probe_contribution(RID p_probe, float p_contrib) = 0;
  383. virtual void reflection_probe_set_max_distance(RID p_probe, float p_distance) = 0;
  384. virtual void reflection_probe_set_extents(RID p_probe, const Vector3 &p_extents) = 0;
  385. virtual void reflection_probe_set_origin_offset(RID p_probe, const Vector3 &p_offset) = 0;
  386. virtual void reflection_probe_set_as_interior(RID p_probe, bool p_enable) = 0;
  387. virtual void reflection_probe_set_enable_box_projection(RID p_probe, bool p_enable) = 0;
  388. virtual void reflection_probe_set_enable_shadows(RID p_probe, bool p_enable) = 0;
  389. virtual void reflection_probe_set_cull_mask(RID p_probe, uint32_t p_layers) = 0;
  390. virtual void reflection_probe_set_resolution(RID p_probe, int p_resolution) = 0;
  391. /* GI PROBE API */
  392. virtual RID gi_probe_create() = 0;
  393. virtual void gi_probe_set_bounds(RID p_probe, const AABB &p_bounds) = 0;
  394. virtual AABB gi_probe_get_bounds(RID p_probe) const = 0;
  395. virtual void gi_probe_set_cell_size(RID p_probe, float p_range) = 0;
  396. virtual float gi_probe_get_cell_size(RID p_probe) const = 0;
  397. virtual void gi_probe_set_to_cell_xform(RID p_probe, const Transform &p_xform) = 0;
  398. virtual Transform gi_probe_get_to_cell_xform(RID p_probe) const = 0;
  399. virtual void gi_probe_set_dynamic_data(RID p_probe, const PoolVector<int> &p_data) = 0;
  400. virtual PoolVector<int> gi_probe_get_dynamic_data(RID p_probe) const = 0;
  401. virtual void gi_probe_set_dynamic_range(RID p_probe, int p_range) = 0;
  402. virtual int gi_probe_get_dynamic_range(RID p_probe) const = 0;
  403. virtual void gi_probe_set_energy(RID p_probe, float p_range) = 0;
  404. virtual float gi_probe_get_energy(RID p_probe) const = 0;
  405. virtual void gi_probe_set_bias(RID p_probe, float p_range) = 0;
  406. virtual float gi_probe_get_bias(RID p_probe) const = 0;
  407. virtual void gi_probe_set_normal_bias(RID p_probe, float p_range) = 0;
  408. virtual float gi_probe_get_normal_bias(RID p_probe) const = 0;
  409. virtual void gi_probe_set_propagation(RID p_probe, float p_range) = 0;
  410. virtual float gi_probe_get_propagation(RID p_probe) const = 0;
  411. virtual void gi_probe_set_interior(RID p_probe, bool p_enable) = 0;
  412. virtual bool gi_probe_is_interior(RID p_probe) const = 0;
  413. virtual void gi_probe_set_compress(RID p_probe, bool p_enable) = 0;
  414. virtual bool gi_probe_is_compressed(RID p_probe) const = 0;
  415. /* LIGHTMAP CAPTURE */
  416. virtual RID lightmap_capture_create() = 0;
  417. virtual void lightmap_capture_set_bounds(RID p_capture, const AABB &p_bounds) = 0;
  418. virtual AABB lightmap_capture_get_bounds(RID p_capture) const = 0;
  419. virtual void lightmap_capture_set_octree(RID p_capture, const PoolVector<uint8_t> &p_octree) = 0;
  420. virtual void lightmap_capture_set_octree_cell_transform(RID p_capture, const Transform &p_xform) = 0;
  421. virtual Transform lightmap_capture_get_octree_cell_transform(RID p_capture) const = 0;
  422. virtual void lightmap_capture_set_octree_cell_subdiv(RID p_capture, int p_subdiv) = 0;
  423. virtual int lightmap_capture_get_octree_cell_subdiv(RID p_capture) const = 0;
  424. virtual PoolVector<uint8_t> lightmap_capture_get_octree(RID p_capture) const = 0;
  425. virtual void lightmap_capture_set_energy(RID p_capture, float p_energy) = 0;
  426. virtual float lightmap_capture_get_energy(RID p_capture) const = 0;
  427. /* PARTICLES API */
  428. virtual RID particles_create() = 0;
  429. virtual void particles_set_emitting(RID p_particles, bool p_emitting) = 0;
  430. virtual bool particles_get_emitting(RID p_particles) = 0;
  431. virtual void particles_set_amount(RID p_particles, int p_amount) = 0;
  432. virtual void particles_set_lifetime(RID p_particles, float p_lifetime) = 0;
  433. virtual void particles_set_one_shot(RID p_particles, bool p_one_shot) = 0;
  434. virtual void particles_set_pre_process_time(RID p_particles, float p_time) = 0;
  435. virtual void particles_set_explosiveness_ratio(RID p_particles, float p_ratio) = 0;
  436. virtual void particles_set_randomness_ratio(RID p_particles, float p_ratio) = 0;
  437. virtual void particles_set_custom_aabb(RID p_particles, const AABB &p_aabb) = 0;
  438. virtual void particles_set_speed_scale(RID p_particles, float p_scale) = 0;
  439. virtual void particles_set_use_local_coordinates(RID p_particles, bool p_enable) = 0;
  440. virtual void particles_set_process_material(RID p_particles, RID p_material) = 0;
  441. virtual void particles_set_fixed_fps(RID p_particles, int p_fps) = 0;
  442. virtual void particles_set_fractional_delta(RID p_particles, bool p_enable) = 0;
  443. virtual void particles_restart(RID p_particles) = 0;
  444. enum ParticlesDrawOrder {
  445. PARTICLES_DRAW_ORDER_INDEX,
  446. PARTICLES_DRAW_ORDER_LIFETIME,
  447. PARTICLES_DRAW_ORDER_VIEW_DEPTH,
  448. };
  449. virtual void particles_set_draw_order(RID p_particles, ParticlesDrawOrder p_order) = 0;
  450. virtual void particles_set_draw_passes(RID p_particles, int p_count) = 0;
  451. virtual void particles_set_draw_pass_mesh(RID p_particles, int p_pass, RID p_mesh) = 0;
  452. virtual AABB particles_get_current_aabb(RID p_particles) = 0;
  453. virtual void particles_set_emission_transform(RID p_particles, const Transform &p_transform) = 0; //this is only used for 2D, in 3D it's automatic
  454. /* CAMERA API */
  455. virtual RID camera_create() = 0;
  456. virtual void camera_set_perspective(RID p_camera, float p_fovy_degrees, float p_z_near, float p_z_far) = 0;
  457. virtual void camera_set_orthogonal(RID p_camera, float p_size, float p_z_near, float p_z_far) = 0;
  458. virtual void camera_set_transform(RID p_camera, const Transform &p_transform) = 0;
  459. virtual void camera_set_cull_mask(RID p_camera, uint32_t p_layers) = 0;
  460. virtual void camera_set_environment(RID p_camera, RID p_env) = 0;
  461. virtual void camera_set_use_vertical_aspect(RID p_camera, bool p_enable) = 0;
  462. /*
  463. enum ParticlesCollisionMode {
  464. PARTICLES_COLLISION_NONE,
  465. PARTICLES_COLLISION_TEXTURE,
  466. PARTICLES_COLLISION_CUBEMAP,
  467. };
  468. virtual void particles_set_collision(RID p_particles,ParticlesCollisionMode p_mode,const Transform&, p_xform,const RID p_depth_tex,const RID p_normal_tex)=0;
  469. */
  470. /* VIEWPORT TARGET API */
  471. virtual RID viewport_create() = 0;
  472. virtual void viewport_set_use_arvr(RID p_viewport, bool p_use_arvr) = 0;
  473. virtual void viewport_set_size(RID p_viewport, int p_width, int p_height) = 0;
  474. virtual void viewport_set_active(RID p_viewport, bool p_active) = 0;
  475. virtual void viewport_set_parent_viewport(RID p_viewport, RID p_parent_viewport) = 0;
  476. virtual void viewport_attach_to_screen(RID p_viewport, const Rect2 &p_rect = Rect2(), int p_screen = 0) = 0;
  477. virtual void viewport_detach(RID p_viewport) = 0;
  478. enum ViewportUpdateMode {
  479. VIEWPORT_UPDATE_DISABLED,
  480. VIEWPORT_UPDATE_ONCE, //then goes to disabled, must be manually updated
  481. VIEWPORT_UPDATE_WHEN_VISIBLE, // default
  482. VIEWPORT_UPDATE_ALWAYS
  483. };
  484. virtual void viewport_set_update_mode(RID p_viewport, ViewportUpdateMode p_mode) = 0;
  485. virtual void viewport_set_vflip(RID p_viewport, bool p_enable) = 0;
  486. enum ViewportClearMode {
  487. VIEWPORT_CLEAR_ALWAYS,
  488. VIEWPORT_CLEAR_NEVER,
  489. VIEWPORT_CLEAR_ONLY_NEXT_FRAME
  490. };
  491. virtual void viewport_set_clear_mode(RID p_viewport, ViewportClearMode p_clear_mode) = 0;
  492. virtual RID viewport_get_texture(RID p_viewport) const = 0;
  493. virtual void viewport_set_hide_scenario(RID p_viewport, bool p_hide) = 0;
  494. virtual void viewport_set_hide_canvas(RID p_viewport, bool p_hide) = 0;
  495. virtual void viewport_set_disable_environment(RID p_viewport, bool p_disable) = 0;
  496. virtual void viewport_set_disable_3d(RID p_viewport, bool p_disable) = 0;
  497. virtual void viewport_set_keep_3d_linear(RID p_viewport, bool p_disable) = 0;
  498. virtual void viewport_attach_camera(RID p_viewport, RID p_camera) = 0;
  499. virtual void viewport_set_scenario(RID p_viewport, RID p_scenario) = 0;
  500. virtual void viewport_attach_canvas(RID p_viewport, RID p_canvas) = 0;
  501. virtual void viewport_remove_canvas(RID p_viewport, RID p_canvas) = 0;
  502. virtual void viewport_set_canvas_transform(RID p_viewport, RID p_canvas, const Transform2D &p_offset) = 0;
  503. virtual void viewport_set_transparent_background(RID p_viewport, bool p_enabled) = 0;
  504. virtual void viewport_set_global_canvas_transform(RID p_viewport, const Transform2D &p_transform) = 0;
  505. virtual void viewport_set_canvas_stacking(RID p_viewport, RID p_canvas, int p_layer, int p_sublayer) = 0;
  506. virtual void viewport_set_shadow_atlas_size(RID p_viewport, int p_size) = 0;
  507. virtual void viewport_set_shadow_atlas_quadrant_subdivision(RID p_viewport, int p_quadrant, int p_subdiv) = 0;
  508. enum ViewportMSAA {
  509. VIEWPORT_MSAA_DISABLED,
  510. VIEWPORT_MSAA_2X,
  511. VIEWPORT_MSAA_4X,
  512. VIEWPORT_MSAA_8X,
  513. VIEWPORT_MSAA_16X,
  514. };
  515. virtual void viewport_set_msaa(RID p_viewport, ViewportMSAA p_msaa) = 0;
  516. enum ViewportUsage {
  517. VIEWPORT_USAGE_2D,
  518. VIEWPORT_USAGE_2D_NO_SAMPLING,
  519. VIEWPORT_USAGE_3D,
  520. VIEWPORT_USAGE_3D_NO_EFFECTS,
  521. };
  522. virtual void viewport_set_hdr(RID p_viewport, bool p_enabled) = 0;
  523. virtual void viewport_set_usage(RID p_viewport, ViewportUsage p_usage) = 0;
  524. enum ViewportRenderInfo {
  525. VIEWPORT_RENDER_INFO_OBJECTS_IN_FRAME,
  526. VIEWPORT_RENDER_INFO_VERTICES_IN_FRAME,
  527. VIEWPORT_RENDER_INFO_MATERIAL_CHANGES_IN_FRAME,
  528. VIEWPORT_RENDER_INFO_SHADER_CHANGES_IN_FRAME,
  529. VIEWPORT_RENDER_INFO_SURFACE_CHANGES_IN_FRAME,
  530. VIEWPORT_RENDER_INFO_DRAW_CALLS_IN_FRAME,
  531. VIEWPORT_RENDER_INFO_MAX
  532. };
  533. virtual int viewport_get_render_info(RID p_viewport, ViewportRenderInfo p_info) = 0;
  534. enum ViewportDebugDraw {
  535. VIEWPORT_DEBUG_DRAW_DISABLED,
  536. VIEWPORT_DEBUG_DRAW_UNSHADED,
  537. VIEWPORT_DEBUG_DRAW_OVERDRAW,
  538. VIEWPORT_DEBUG_DRAW_WIREFRAME,
  539. };
  540. virtual void viewport_set_debug_draw(RID p_viewport, ViewportDebugDraw p_draw) = 0;
  541. /* ENVIRONMENT API */
  542. virtual RID environment_create() = 0;
  543. enum EnvironmentBG {
  544. ENV_BG_CLEAR_COLOR,
  545. ENV_BG_COLOR,
  546. ENV_BG_SKY,
  547. ENV_BG_COLOR_SKY,
  548. ENV_BG_CANVAS,
  549. ENV_BG_KEEP,
  550. ENV_BG_MAX
  551. };
  552. virtual void environment_set_background(RID p_env, EnvironmentBG p_bg) = 0;
  553. virtual void environment_set_sky(RID p_env, RID p_sky) = 0;
  554. virtual void environment_set_sky_custom_fov(RID p_env, float p_scale) = 0;
  555. virtual void environment_set_sky_orientation(RID p_env, const Basis &p_orientation) = 0;
  556. virtual void environment_set_bg_color(RID p_env, const Color &p_color) = 0;
  557. virtual void environment_set_bg_energy(RID p_env, float p_energy) = 0;
  558. virtual void environment_set_canvas_max_layer(RID p_env, int p_max_layer) = 0;
  559. virtual void environment_set_ambient_light(RID p_env, const Color &p_color, float p_energy = 1.0, float p_sky_contribution = 0.0) = 0;
  560. //set default SSAO options
  561. //set default SSR options
  562. //set default SSSSS options
  563. enum EnvironmentDOFBlurQuality {
  564. ENV_DOF_BLUR_QUALITY_LOW,
  565. ENV_DOF_BLUR_QUALITY_MEDIUM,
  566. ENV_DOF_BLUR_QUALITY_HIGH,
  567. };
  568. virtual void environment_set_dof_blur_near(RID p_env, bool p_enable, float p_distance, float p_transition, float p_far_amount, EnvironmentDOFBlurQuality p_quality) = 0;
  569. virtual void environment_set_dof_blur_far(RID p_env, bool p_enable, float p_distance, float p_transition, float p_far_amount, EnvironmentDOFBlurQuality p_quality) = 0;
  570. enum EnvironmentGlowBlendMode {
  571. GLOW_BLEND_MODE_ADDITIVE,
  572. GLOW_BLEND_MODE_SCREEN,
  573. GLOW_BLEND_MODE_SOFTLIGHT,
  574. GLOW_BLEND_MODE_REPLACE,
  575. };
  576. virtual void environment_set_glow(RID p_env, bool p_enable, int p_level_flags, float p_intensity, float p_strength, float p_bloom_threshold, EnvironmentGlowBlendMode p_blend_mode, float p_hdr_bleed_threshold, float p_hdr_bleed_scale, float p_hdr_luminance_cap, bool p_bicubic_upscale) = 0;
  577. enum EnvironmentToneMapper {
  578. ENV_TONE_MAPPER_LINEAR,
  579. ENV_TONE_MAPPER_REINHARD,
  580. ENV_TONE_MAPPER_FILMIC,
  581. ENV_TONE_MAPPER_ACES
  582. };
  583. virtual void environment_set_tonemap(RID p_env, EnvironmentToneMapper p_tone_mapper, float p_exposure, float p_white, bool p_auto_exposure, float p_min_luminance, float p_max_luminance, float p_auto_exp_speed, float p_auto_exp_grey) = 0;
  584. virtual void environment_set_adjustment(RID p_env, bool p_enable, float p_brightness, float p_contrast, float p_saturation, RID p_ramp) = 0;
  585. virtual void environment_set_ssr(RID p_env, bool p_enable, int p_max_steps, float p_fade_in, float p_fade_out, float p_depth_tolerance, bool p_roughness) = 0;
  586. enum EnvironmentSSAOQuality {
  587. ENV_SSAO_QUALITY_LOW,
  588. ENV_SSAO_QUALITY_MEDIUM,
  589. ENV_SSAO_QUALITY_HIGH,
  590. };
  591. enum EnvironmentSSAOBlur {
  592. ENV_SSAO_BLUR_DISABLED,
  593. ENV_SSAO_BLUR_1x1,
  594. ENV_SSAO_BLUR_2x2,
  595. ENV_SSAO_BLUR_3x3,
  596. };
  597. virtual void environment_set_ssao(RID p_env, bool p_enable, float p_radius, float p_intensity, float p_radius2, float p_intensity2, float p_bias, float p_light_affect, float p_ao_channel_affect, const Color &p_color, EnvironmentSSAOQuality p_quality, EnvironmentSSAOBlur p_blur, float p_bilateral_sharpness) = 0;
  598. virtual void environment_set_fog(RID p_env, bool p_enable, const Color &p_color, const Color &p_sun_color, float p_sun_amount) = 0;
  599. virtual void environment_set_fog_depth(RID p_env, bool p_enable, float p_depth_begin, float p_depth_end, float p_depth_curve, bool p_transmit, float p_transmit_curve) = 0;
  600. virtual void environment_set_fog_height(RID p_env, bool p_enable, float p_min_height, float p_max_height, float p_height_curve) = 0;
  601. /* SCENARIO API */
  602. virtual RID scenario_create() = 0;
  603. enum ScenarioDebugMode {
  604. SCENARIO_DEBUG_DISABLED,
  605. SCENARIO_DEBUG_WIREFRAME,
  606. SCENARIO_DEBUG_OVERDRAW,
  607. SCENARIO_DEBUG_SHADELESS,
  608. };
  609. virtual void scenario_set_debug(RID p_scenario, ScenarioDebugMode p_debug_mode) = 0;
  610. virtual void scenario_set_environment(RID p_scenario, RID p_environment) = 0;
  611. virtual void scenario_set_reflection_atlas_size(RID p_scenario, int p_size, int p_subdiv) = 0;
  612. virtual void scenario_set_fallback_environment(RID p_scenario, RID p_environment) = 0;
  613. /* INSTANCING API */
  614. enum InstanceType {
  615. INSTANCE_NONE,
  616. INSTANCE_MESH,
  617. INSTANCE_MULTIMESH,
  618. INSTANCE_IMMEDIATE,
  619. INSTANCE_PARTICLES,
  620. INSTANCE_LIGHT,
  621. INSTANCE_REFLECTION_PROBE,
  622. INSTANCE_GI_PROBE,
  623. INSTANCE_LIGHTMAP_CAPTURE,
  624. INSTANCE_MAX,
  625. INSTANCE_GEOMETRY_MASK = (1 << INSTANCE_MESH) | (1 << INSTANCE_MULTIMESH) | (1 << INSTANCE_IMMEDIATE) | (1 << INSTANCE_PARTICLES)
  626. };
  627. virtual RID instance_create2(RID p_base, RID p_scenario);
  628. //virtual RID instance_create(RID p_base,RID p_scenario)=0; // from can be mesh, light, area and portal so far.
  629. virtual RID instance_create() = 0; // from can be mesh, light, poly, area and portal so far.
  630. virtual void instance_set_base(RID p_instance, RID p_base) = 0; // from can be mesh, light, poly, area and portal so far.
  631. virtual void instance_set_scenario(RID p_instance, RID p_scenario) = 0; // from can be mesh, light, poly, area and portal so far.
  632. virtual void instance_set_layer_mask(RID p_instance, uint32_t p_mask) = 0;
  633. virtual void instance_set_transform(RID p_instance, const Transform &p_transform) = 0;
  634. virtual void instance_attach_object_instance_id(RID p_instance, ObjectID p_ID) = 0;
  635. virtual void instance_set_blend_shape_weight(RID p_instance, int p_shape, float p_weight) = 0;
  636. virtual void instance_set_surface_material(RID p_instance, int p_surface, RID p_material) = 0;
  637. virtual void instance_set_visible(RID p_instance, bool p_visible) = 0;
  638. virtual void instance_set_use_lightmap(RID p_instance, RID p_lightmap_instance, RID p_lightmap) = 0;
  639. virtual void instance_set_custom_aabb(RID p_instance, AABB aabb) = 0;
  640. virtual void instance_attach_skeleton(RID p_instance, RID p_skeleton) = 0;
  641. virtual void instance_set_exterior(RID p_instance, bool p_enabled) = 0;
  642. virtual void instance_set_extra_visibility_margin(RID p_instance, real_t p_margin) = 0;
  643. // don't use these in a game!
  644. virtual Vector<ObjectID> instances_cull_aabb(const AABB &p_aabb, RID p_scenario = RID()) const = 0;
  645. virtual Vector<ObjectID> instances_cull_ray(const Vector3 &p_from, const Vector3 &p_to, RID p_scenario = RID()) const = 0;
  646. virtual Vector<ObjectID> instances_cull_convex(const Vector<Plane> &p_convex, RID p_scenario = RID()) const = 0;
  647. Array _instances_cull_aabb_bind(const AABB &p_aabb, RID p_scenario = RID()) const;
  648. Array _instances_cull_ray_bind(const Vector3 &p_from, const Vector3 &p_to, RID p_scenario = RID()) const;
  649. Array _instances_cull_convex_bind(const Array &p_convex, RID p_scenario = RID()) const;
  650. enum InstanceFlags {
  651. INSTANCE_FLAG_USE_BAKED_LIGHT,
  652. INSTANCE_FLAG_DRAW_NEXT_FRAME_IF_VISIBLE,
  653. INSTANCE_FLAG_MAX
  654. };
  655. enum ShadowCastingSetting {
  656. SHADOW_CASTING_SETTING_OFF,
  657. SHADOW_CASTING_SETTING_ON,
  658. SHADOW_CASTING_SETTING_DOUBLE_SIDED,
  659. SHADOW_CASTING_SETTING_SHADOWS_ONLY,
  660. };
  661. virtual void instance_geometry_set_flag(RID p_instance, InstanceFlags p_flags, bool p_enabled) = 0;
  662. virtual void instance_geometry_set_cast_shadows_setting(RID p_instance, ShadowCastingSetting p_shadow_casting_setting) = 0;
  663. virtual void instance_geometry_set_material_override(RID p_instance, RID p_material) = 0;
  664. virtual void instance_geometry_set_draw_range(RID p_instance, float p_min, float p_max, float p_min_margin, float p_max_margin) = 0;
  665. virtual void instance_geometry_set_as_instance_lod(RID p_instance, RID p_as_lod_of_instance) = 0;
  666. /* CANVAS (2D) */
  667. virtual RID canvas_create() = 0;
  668. virtual void canvas_set_item_mirroring(RID p_canvas, RID p_item, const Point2 &p_mirroring) = 0;
  669. virtual void canvas_set_modulate(RID p_canvas, const Color &p_color) = 0;
  670. virtual RID canvas_item_create() = 0;
  671. virtual void canvas_item_set_parent(RID p_item, RID p_parent) = 0;
  672. virtual void canvas_item_set_visible(RID p_item, bool p_visible) = 0;
  673. virtual void canvas_item_set_light_mask(RID p_item, int p_mask) = 0;
  674. virtual void canvas_item_set_update_when_visible(RID p_item, bool p_update) = 0;
  675. virtual void canvas_item_set_transform(RID p_item, const Transform2D &p_transform) = 0;
  676. virtual void canvas_item_set_clip(RID p_item, bool p_clip) = 0;
  677. virtual void canvas_item_set_distance_field_mode(RID p_item, bool p_enable) = 0;
  678. virtual void canvas_item_set_custom_rect(RID p_item, bool p_custom_rect, const Rect2 &p_rect = Rect2()) = 0;
  679. virtual void canvas_item_set_modulate(RID p_item, const Color &p_color) = 0;
  680. virtual void canvas_item_set_self_modulate(RID p_item, const Color &p_color) = 0;
  681. virtual void canvas_item_set_draw_behind_parent(RID p_item, bool p_enable) = 0;
  682. enum NinePatchAxisMode {
  683. NINE_PATCH_STRETCH,
  684. NINE_PATCH_TILE,
  685. NINE_PATCH_TILE_FIT,
  686. };
  687. virtual void canvas_item_add_line(RID p_item, const Point2 &p_from, const Point2 &p_to, const Color &p_color, float p_width = 1.0, bool p_antialiased = false) = 0;
  688. virtual void canvas_item_add_polyline(RID p_item, const Vector<Point2> &p_points, const Vector<Color> &p_colors, float p_width = 1.0, bool p_antialiased = false) = 0;
  689. virtual void canvas_item_add_multiline(RID p_item, const Vector<Point2> &p_points, const Vector<Color> &p_colors, float p_width = 1.0, bool p_antialiased = false) = 0;
  690. virtual void canvas_item_add_rect(RID p_item, const Rect2 &p_rect, const Color &p_color) = 0;
  691. virtual void canvas_item_add_circle(RID p_item, const Point2 &p_pos, float p_radius, const Color &p_color) = 0;
  692. virtual void canvas_item_add_texture_rect(RID p_item, const Rect2 &p_rect, RID p_texture, bool p_tile = false, const Color &p_modulate = Color(1, 1, 1), bool p_transpose = false, RID p_normal_map = RID()) = 0;
  693. virtual void canvas_item_add_texture_rect_region(RID p_item, const Rect2 &p_rect, RID p_texture, const Rect2 &p_src_rect, const Color &p_modulate = Color(1, 1, 1), bool p_transpose = false, RID p_normal_map = RID(), bool p_clip_uv = false) = 0;
  694. virtual void canvas_item_add_nine_patch(RID p_item, const Rect2 &p_rect, const Rect2 &p_source, RID p_texture, const Vector2 &p_topleft, const Vector2 &p_bottomright, NinePatchAxisMode p_x_axis_mode = NINE_PATCH_STRETCH, NinePatchAxisMode p_y_axis_mode = NINE_PATCH_STRETCH, bool p_draw_center = true, const Color &p_modulate = Color(1, 1, 1), RID p_normal_map = RID()) = 0;
  695. virtual void canvas_item_add_primitive(RID p_item, const Vector<Point2> &p_points, const Vector<Color> &p_colors, const Vector<Point2> &p_uvs, RID p_texture, float p_width = 1.0, RID p_normal_map = RID()) = 0;
  696. virtual void canvas_item_add_polygon(RID p_item, const Vector<Point2> &p_points, const Vector<Color> &p_colors, const Vector<Point2> &p_uvs = Vector<Point2>(), RID p_texture = RID(), RID p_normal_map = RID(), bool p_antialiased = false) = 0;
  697. virtual void canvas_item_add_triangle_array(RID p_item, const Vector<int> &p_indices, const Vector<Point2> &p_points, const Vector<Color> &p_colors, const Vector<Point2> &p_uvs = Vector<Point2>(), const Vector<int> &p_bones = Vector<int>(), const Vector<float> &p_weights = Vector<float>(), RID p_texture = RID(), int p_count = -1, RID p_normal_map = RID()) = 0;
  698. virtual void canvas_item_add_mesh(RID p_item, const RID &p_mesh, RID p_texture = RID(), RID p_normal_map = RID()) = 0;
  699. virtual void canvas_item_add_multimesh(RID p_item, RID p_mesh, RID p_texture = RID(), RID p_normal_map = RID()) = 0;
  700. virtual void canvas_item_add_particles(RID p_item, RID p_particles, RID p_texture, RID p_normal_map) = 0;
  701. virtual void canvas_item_add_set_transform(RID p_item, const Transform2D &p_transform) = 0;
  702. virtual void canvas_item_add_clip_ignore(RID p_item, bool p_ignore) = 0;
  703. virtual void canvas_item_set_sort_children_by_y(RID p_item, bool p_enable) = 0;
  704. virtual void canvas_item_set_z_index(RID p_item, int p_z) = 0;
  705. virtual void canvas_item_set_z_as_relative_to_parent(RID p_item, bool p_enable) = 0;
  706. virtual void canvas_item_set_copy_to_backbuffer(RID p_item, bool p_enable, const Rect2 &p_rect) = 0;
  707. virtual void canvas_item_attach_skeleton(RID p_item, RID p_skeleton) = 0;
  708. virtual void canvas_item_clear(RID p_item) = 0;
  709. virtual void canvas_item_set_draw_index(RID p_item, int p_index) = 0;
  710. virtual void canvas_item_set_material(RID p_item, RID p_material) = 0;
  711. virtual void canvas_item_set_use_parent_material(RID p_item, bool p_enable) = 0;
  712. virtual RID canvas_light_create() = 0;
  713. virtual void canvas_light_attach_to_canvas(RID p_light, RID p_canvas) = 0;
  714. virtual void canvas_light_set_enabled(RID p_light, bool p_enabled) = 0;
  715. virtual void canvas_light_set_scale(RID p_light, float p_scale) = 0;
  716. virtual void canvas_light_set_transform(RID p_light, const Transform2D &p_transform) = 0;
  717. virtual void canvas_light_set_texture(RID p_light, RID p_texture) = 0;
  718. virtual void canvas_light_set_texture_offset(RID p_light, const Vector2 &p_offset) = 0;
  719. virtual void canvas_light_set_color(RID p_light, const Color &p_color) = 0;
  720. virtual void canvas_light_set_height(RID p_light, float p_height) = 0;
  721. virtual void canvas_light_set_energy(RID p_light, float p_energy) = 0;
  722. virtual void canvas_light_set_z_range(RID p_light, int p_min_z, int p_max_z) = 0;
  723. virtual void canvas_light_set_layer_range(RID p_light, int p_min_layer, int p_max_layer) = 0;
  724. virtual void canvas_light_set_item_cull_mask(RID p_light, int p_mask) = 0;
  725. virtual void canvas_light_set_item_shadow_cull_mask(RID p_light, int p_mask) = 0;
  726. enum CanvasLightMode {
  727. CANVAS_LIGHT_MODE_ADD,
  728. CANVAS_LIGHT_MODE_SUB,
  729. CANVAS_LIGHT_MODE_MIX,
  730. CANVAS_LIGHT_MODE_MASK,
  731. };
  732. virtual void canvas_light_set_mode(RID p_light, CanvasLightMode p_mode) = 0;
  733. enum CanvasLightShadowFilter {
  734. CANVAS_LIGHT_FILTER_NONE,
  735. CANVAS_LIGHT_FILTER_PCF3,
  736. CANVAS_LIGHT_FILTER_PCF5,
  737. CANVAS_LIGHT_FILTER_PCF7,
  738. CANVAS_LIGHT_FILTER_PCF9,
  739. CANVAS_LIGHT_FILTER_PCF13,
  740. };
  741. virtual void canvas_light_set_shadow_enabled(RID p_light, bool p_enabled) = 0;
  742. virtual void canvas_light_set_shadow_buffer_size(RID p_light, int p_size) = 0;
  743. virtual void canvas_light_set_shadow_gradient_length(RID p_light, float p_length) = 0;
  744. virtual void canvas_light_set_shadow_filter(RID p_light, CanvasLightShadowFilter p_filter) = 0;
  745. virtual void canvas_light_set_shadow_color(RID p_light, const Color &p_color) = 0;
  746. virtual void canvas_light_set_shadow_smooth(RID p_light, float p_smooth) = 0;
  747. virtual RID canvas_light_occluder_create() = 0;
  748. virtual void canvas_light_occluder_attach_to_canvas(RID p_occluder, RID p_canvas) = 0;
  749. virtual void canvas_light_occluder_set_enabled(RID p_occluder, bool p_enabled) = 0;
  750. virtual void canvas_light_occluder_set_polygon(RID p_occluder, RID p_polygon) = 0;
  751. virtual void canvas_light_occluder_set_transform(RID p_occluder, const Transform2D &p_xform) = 0;
  752. virtual void canvas_light_occluder_set_light_mask(RID p_occluder, int p_mask) = 0;
  753. virtual RID canvas_occluder_polygon_create() = 0;
  754. virtual void canvas_occluder_polygon_set_shape(RID p_occluder_polygon, const PoolVector<Vector2> &p_shape, bool p_closed) = 0;
  755. virtual void canvas_occluder_polygon_set_shape_as_lines(RID p_occluder_polygon, const PoolVector<Vector2> &p_shape) = 0;
  756. enum CanvasOccluderPolygonCullMode {
  757. CANVAS_OCCLUDER_POLYGON_CULL_DISABLED,
  758. CANVAS_OCCLUDER_POLYGON_CULL_CLOCKWISE,
  759. CANVAS_OCCLUDER_POLYGON_CULL_COUNTER_CLOCKWISE,
  760. };
  761. virtual void canvas_occluder_polygon_set_cull_mode(RID p_occluder_polygon, CanvasOccluderPolygonCullMode p_mode) = 0;
  762. /* BLACK BARS */
  763. virtual void black_bars_set_margins(int p_left, int p_top, int p_right, int p_bottom) = 0;
  764. virtual void black_bars_set_images(RID p_left, RID p_top, RID p_right, RID p_bottom) = 0;
  765. /* FREE */
  766. virtual void free(RID p_rid) = 0; ///< free RIDs associated with the visual server
  767. virtual void request_frame_drawn_callback(Object *p_where, const StringName &p_method, const Variant &p_userdata) = 0;
  768. /* EVENT QUEUING */
  769. virtual void draw(bool p_swap_buffers = true, double frame_step = 0.0) = 0;
  770. virtual void sync() = 0;
  771. virtual bool has_changed() const = 0;
  772. virtual void init() = 0;
  773. virtual void finish() = 0;
  774. /* STATUS INFORMATION */
  775. enum RenderInfo {
  776. INFO_OBJECTS_IN_FRAME,
  777. INFO_VERTICES_IN_FRAME,
  778. INFO_MATERIAL_CHANGES_IN_FRAME,
  779. INFO_SHADER_CHANGES_IN_FRAME,
  780. INFO_SURFACE_CHANGES_IN_FRAME,
  781. INFO_DRAW_CALLS_IN_FRAME,
  782. INFO_USAGE_VIDEO_MEM_TOTAL,
  783. INFO_VIDEO_MEM_USED,
  784. INFO_TEXTURE_MEM_USED,
  785. INFO_VERTEX_MEM_USED,
  786. };
  787. virtual int get_render_info(RenderInfo p_info) = 0;
  788. /* Materials for 2D on 3D */
  789. /* TESTING */
  790. virtual RID get_test_cube() = 0;
  791. virtual RID get_test_texture();
  792. virtual RID get_white_texture();
  793. virtual RID make_sphere_mesh(int p_lats, int p_lons, float p_radius);
  794. virtual void mesh_add_surface_from_mesh_data(RID p_mesh, const Geometry::MeshData &p_mesh_data);
  795. virtual void mesh_add_surface_from_planes(RID p_mesh, const PoolVector<Plane> &p_planes);
  796. virtual void set_boot_image(const Ref<Image> &p_image, const Color &p_color, bool p_scale) = 0;
  797. virtual void set_default_clear_color(const Color &p_color) = 0;
  798. enum Features {
  799. FEATURE_SHADERS,
  800. FEATURE_MULTITHREADED,
  801. };
  802. virtual bool has_feature(Features p_feature) const = 0;
  803. virtual bool has_os_feature(const String &p_feature) const = 0;
  804. virtual void set_debug_generate_wireframes(bool p_generate) = 0;
  805. virtual void call_set_use_vsync(bool p_enable) = 0;
  806. virtual bool is_low_end() const = 0;
  807. VisualServer();
  808. virtual ~VisualServer();
  809. };
  810. // make variant understand the enums
  811. VARIANT_ENUM_CAST(VisualServer::CubeMapSide);
  812. VARIANT_ENUM_CAST(VisualServer::TextureFlags);
  813. VARIANT_ENUM_CAST(VisualServer::ShaderMode);
  814. VARIANT_ENUM_CAST(VisualServer::ArrayType);
  815. VARIANT_ENUM_CAST(VisualServer::ArrayFormat);
  816. VARIANT_ENUM_CAST(VisualServer::PrimitiveType);
  817. VARIANT_ENUM_CAST(VisualServer::BlendShapeMode);
  818. VARIANT_ENUM_CAST(VisualServer::LightType);
  819. VARIANT_ENUM_CAST(VisualServer::LightParam);
  820. VARIANT_ENUM_CAST(VisualServer::ViewportUpdateMode);
  821. VARIANT_ENUM_CAST(VisualServer::ViewportClearMode);
  822. VARIANT_ENUM_CAST(VisualServer::ViewportMSAA);
  823. VARIANT_ENUM_CAST(VisualServer::ViewportUsage);
  824. VARIANT_ENUM_CAST(VisualServer::ViewportRenderInfo);
  825. VARIANT_ENUM_CAST(VisualServer::ViewportDebugDraw);
  826. VARIANT_ENUM_CAST(VisualServer::ScenarioDebugMode);
  827. VARIANT_ENUM_CAST(VisualServer::InstanceType);
  828. VARIANT_ENUM_CAST(VisualServer::NinePatchAxisMode);
  829. VARIANT_ENUM_CAST(VisualServer::CanvasLightMode);
  830. VARIANT_ENUM_CAST(VisualServer::CanvasLightShadowFilter);
  831. VARIANT_ENUM_CAST(VisualServer::CanvasOccluderPolygonCullMode);
  832. VARIANT_ENUM_CAST(VisualServer::RenderInfo);
  833. VARIANT_ENUM_CAST(VisualServer::Features);
  834. VARIANT_ENUM_CAST(VisualServer::MultimeshTransformFormat);
  835. VARIANT_ENUM_CAST(VisualServer::MultimeshColorFormat);
  836. VARIANT_ENUM_CAST(VisualServer::MultimeshCustomDataFormat);
  837. VARIANT_ENUM_CAST(VisualServer::LightOmniShadowMode);
  838. VARIANT_ENUM_CAST(VisualServer::LightOmniShadowDetail);
  839. VARIANT_ENUM_CAST(VisualServer::LightDirectionalShadowMode);
  840. VARIANT_ENUM_CAST(VisualServer::LightDirectionalShadowDepthRangeMode);
  841. VARIANT_ENUM_CAST(VisualServer::ReflectionProbeUpdateMode);
  842. VARIANT_ENUM_CAST(VisualServer::ParticlesDrawOrder);
  843. VARIANT_ENUM_CAST(VisualServer::EnvironmentBG);
  844. VARIANT_ENUM_CAST(VisualServer::EnvironmentDOFBlurQuality);
  845. VARIANT_ENUM_CAST(VisualServer::EnvironmentGlowBlendMode);
  846. VARIANT_ENUM_CAST(VisualServer::EnvironmentToneMapper);
  847. VARIANT_ENUM_CAST(VisualServer::EnvironmentSSAOQuality);
  848. VARIANT_ENUM_CAST(VisualServer::EnvironmentSSAOBlur);
  849. VARIANT_ENUM_CAST(VisualServer::InstanceFlags);
  850. VARIANT_ENUM_CAST(VisualServer::ShadowCastingSetting);
  851. VARIANT_ENUM_CAST(VisualServer::TextureType);
  852. //typedef VisualServer VS; // makes it easier to use
  853. #define VS VisualServer
  854. #endif