image.h 18 KB

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  1. /**************************************************************************/
  2. /* image.h */
  3. /**************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /**************************************************************************/
  8. /* Copyright (c) 2014-present Godot Engine contributors (see AUTHORS.md). */
  9. /* Copyright (c) 2007-2014 Juan Linietsky, Ariel Manzur. */
  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 IMAGE_H
  31. #define IMAGE_H
  32. #include "core/io/resource.h"
  33. #include "core/math/color.h"
  34. #include "core/math/rect2.h"
  35. /**
  36. * Image storage class. This is used to store an image in user memory, as well as
  37. * providing some basic methods for image manipulation.
  38. * Images can be loaded from a file, or registered into the Render object as textures.
  39. */
  40. class Image;
  41. typedef Error (*SavePNGFunc)(const String &p_path, const Ref<Image> &p_img);
  42. typedef Vector<uint8_t> (*SavePNGBufferFunc)(const Ref<Image> &p_img);
  43. typedef Error (*SaveJPGFunc)(const String &p_path, const Ref<Image> &p_img, float p_quality);
  44. typedef Vector<uint8_t> (*SaveJPGBufferFunc)(const Ref<Image> &p_img, float p_quality);
  45. typedef Ref<Image> (*ImageMemLoadFunc)(const uint8_t *p_png, int p_size);
  46. typedef Ref<Image> (*ScalableImageMemLoadFunc)(const uint8_t *p_data, int p_size, float p_scale);
  47. typedef Error (*SaveWebPFunc)(const String &p_path, const Ref<Image> &p_img, const bool p_lossy, const float p_quality);
  48. typedef Vector<uint8_t> (*SaveWebPBufferFunc)(const Ref<Image> &p_img, const bool p_lossy, const float p_quality);
  49. typedef Error (*SaveEXRFunc)(const String &p_path, const Ref<Image> &p_img, bool p_grayscale);
  50. typedef Vector<uint8_t> (*SaveEXRBufferFunc)(const Ref<Image> &p_img, bool p_grayscale);
  51. class Image : public Resource {
  52. GDCLASS(Image, Resource);
  53. public:
  54. static SavePNGFunc save_png_func;
  55. static SaveJPGFunc save_jpg_func;
  56. static SaveEXRFunc save_exr_func;
  57. static SavePNGBufferFunc save_png_buffer_func;
  58. static SaveEXRBufferFunc save_exr_buffer_func;
  59. static SaveJPGBufferFunc save_jpg_buffer_func;
  60. static SaveWebPFunc save_webp_func;
  61. static SaveWebPBufferFunc save_webp_buffer_func;
  62. enum {
  63. MAX_WIDTH = (1 << 24), // force a limit somehow
  64. MAX_HEIGHT = (1 << 24), // force a limit somehow
  65. MAX_PIXELS = 268435456
  66. };
  67. enum Format {
  68. FORMAT_L8, //luminance
  69. FORMAT_LA8, //luminance-alpha
  70. FORMAT_R8,
  71. FORMAT_RG8,
  72. FORMAT_RGB8,
  73. FORMAT_RGBA8,
  74. FORMAT_RGBA4444,
  75. FORMAT_RGB565,
  76. FORMAT_RF, //float
  77. FORMAT_RGF,
  78. FORMAT_RGBF,
  79. FORMAT_RGBAF,
  80. FORMAT_RH, //half float
  81. FORMAT_RGH,
  82. FORMAT_RGBH,
  83. FORMAT_RGBAH,
  84. FORMAT_RGBE9995,
  85. FORMAT_DXT1, //s3tc bc1
  86. FORMAT_DXT3, //bc2
  87. FORMAT_DXT5, //bc3
  88. FORMAT_RGTC_R,
  89. FORMAT_RGTC_RG,
  90. FORMAT_BPTC_RGBA, //btpc bc7
  91. FORMAT_BPTC_RGBF, //float bc6h
  92. FORMAT_BPTC_RGBFU, //unsigned float bc6hu
  93. FORMAT_ETC, //etc1
  94. FORMAT_ETC2_R11, //etc2
  95. FORMAT_ETC2_R11S, //signed, NOT srgb.
  96. FORMAT_ETC2_RG11,
  97. FORMAT_ETC2_RG11S,
  98. FORMAT_ETC2_RGB8,
  99. FORMAT_ETC2_RGBA8,
  100. FORMAT_ETC2_RGB8A1,
  101. FORMAT_ETC2_RA_AS_RG, //used to make basis universal happy
  102. FORMAT_DXT5_RA_AS_RG, //used to make basis universal happy
  103. FORMAT_ASTC_4x4,
  104. FORMAT_ASTC_4x4_HDR,
  105. FORMAT_ASTC_8x8,
  106. FORMAT_ASTC_8x8_HDR,
  107. FORMAT_MAX
  108. };
  109. static const char *format_names[FORMAT_MAX];
  110. enum Interpolation {
  111. INTERPOLATE_NEAREST,
  112. INTERPOLATE_BILINEAR,
  113. INTERPOLATE_CUBIC,
  114. INTERPOLATE_TRILINEAR,
  115. INTERPOLATE_LANCZOS,
  116. /* INTERPOLATE_TRICUBIC, */
  117. /* INTERPOLATE GAUSS */
  118. };
  119. //this is used for compression
  120. enum UsedChannels {
  121. USED_CHANNELS_L,
  122. USED_CHANNELS_LA,
  123. USED_CHANNELS_R,
  124. USED_CHANNELS_RG,
  125. USED_CHANNELS_RGB,
  126. USED_CHANNELS_RGBA,
  127. };
  128. //some functions provided by something else
  129. enum ASTCFormat {
  130. ASTC_FORMAT_4x4,
  131. ASTC_FORMAT_8x8,
  132. };
  133. static ImageMemLoadFunc _png_mem_loader_func;
  134. static ImageMemLoadFunc _png_mem_unpacker_func;
  135. static ImageMemLoadFunc _jpg_mem_loader_func;
  136. static ImageMemLoadFunc _webp_mem_loader_func;
  137. static ImageMemLoadFunc _tga_mem_loader_func;
  138. static ImageMemLoadFunc _bmp_mem_loader_func;
  139. static ScalableImageMemLoadFunc _svg_scalable_mem_loader_func;
  140. static ImageMemLoadFunc _ktx_mem_loader_func;
  141. static void (*_image_compress_bc_func)(Image *, UsedChannels p_channels);
  142. static void (*_image_compress_bptc_func)(Image *, UsedChannels p_channels);
  143. static void (*_image_compress_etc1_func)(Image *);
  144. static void (*_image_compress_etc2_func)(Image *, UsedChannels p_channels);
  145. static void (*_image_compress_astc_func)(Image *, ASTCFormat p_format);
  146. static void (*_image_decompress_bc)(Image *);
  147. static void (*_image_decompress_bptc)(Image *);
  148. static void (*_image_decompress_etc1)(Image *);
  149. static void (*_image_decompress_etc2)(Image *);
  150. static void (*_image_decompress_astc)(Image *);
  151. static Vector<uint8_t> (*webp_lossy_packer)(const Ref<Image> &p_image, float p_quality);
  152. static Vector<uint8_t> (*webp_lossless_packer)(const Ref<Image> &p_image);
  153. static Ref<Image> (*webp_unpacker)(const Vector<uint8_t> &p_buffer);
  154. static Vector<uint8_t> (*png_packer)(const Ref<Image> &p_image);
  155. static Ref<Image> (*png_unpacker)(const Vector<uint8_t> &p_buffer);
  156. static Vector<uint8_t> (*basis_universal_packer)(const Ref<Image> &p_image, UsedChannels p_channels);
  157. static Ref<Image> (*basis_universal_unpacker)(const Vector<uint8_t> &p_buffer);
  158. static Ref<Image> (*basis_universal_unpacker_ptr)(const uint8_t *p_data, int p_size);
  159. _FORCE_INLINE_ Color _get_color_at_ofs(const uint8_t *ptr, uint32_t ofs) const;
  160. _FORCE_INLINE_ void _set_color_at_ofs(uint8_t *ptr, uint32_t ofs, const Color &p_color);
  161. protected:
  162. static void _bind_methods();
  163. private:
  164. Format format = FORMAT_L8;
  165. Vector<uint8_t> data;
  166. int width = 0;
  167. int height = 0;
  168. bool mipmaps = false;
  169. void _copy_internals_from(const Image &p_image) {
  170. format = p_image.format;
  171. width = p_image.width;
  172. height = p_image.height;
  173. mipmaps = p_image.mipmaps;
  174. data = p_image.data;
  175. }
  176. _FORCE_INLINE_ void _get_mipmap_offset_and_size(int p_mipmap, int64_t &r_offset, int &r_width, int &r_height) const; //get where the mipmap begins in data
  177. static int64_t _get_dst_image_size(int p_width, int p_height, Format p_format, int &r_mipmaps, int p_mipmaps = -1, int *r_mm_width = nullptr, int *r_mm_height = nullptr);
  178. bool _can_modify(Format p_format) const;
  179. _FORCE_INLINE_ void _get_clipped_src_and_dest_rects(const Ref<Image> &p_src, const Rect2i &p_src_rect, const Point2i &p_dest, Rect2i &r_clipped_src_rect, Rect2i &r_clipped_dest_rect) const;
  180. _FORCE_INLINE_ void _put_pixelb(int p_x, int p_y, uint32_t p_pixel_size, uint8_t *p_data, const uint8_t *p_pixel);
  181. _FORCE_INLINE_ void _get_pixelb(int p_x, int p_y, uint32_t p_pixel_size, const uint8_t *p_data, uint8_t *p_pixel);
  182. _FORCE_INLINE_ void _repeat_pixel_over_subsequent_memory(uint8_t *p_pixel, int p_pixel_size, int p_count);
  183. void _set_data(const Dictionary &p_data);
  184. Dictionary _get_data() const;
  185. Error _load_from_buffer(const Vector<uint8_t> &p_array, ImageMemLoadFunc p_loader);
  186. static void average_4_uint8(uint8_t &p_out, const uint8_t &p_a, const uint8_t &p_b, const uint8_t &p_c, const uint8_t &p_d);
  187. static void average_4_float(float &p_out, const float &p_a, const float &p_b, const float &p_c, const float &p_d);
  188. static void average_4_half(uint16_t &p_out, const uint16_t &p_a, const uint16_t &p_b, const uint16_t &p_c, const uint16_t &p_d);
  189. static void average_4_rgbe9995(uint32_t &p_out, const uint32_t &p_a, const uint32_t &p_b, const uint32_t &p_c, const uint32_t &p_d);
  190. static void renormalize_uint8(uint8_t *p_rgb);
  191. static void renormalize_float(float *p_rgb);
  192. static void renormalize_half(uint16_t *p_rgb);
  193. static void renormalize_rgbe9995(uint32_t *p_rgb);
  194. public:
  195. int get_width() const; ///< Get image width
  196. int get_height() const; ///< Get image height
  197. Size2i get_size() const;
  198. bool has_mipmaps() const;
  199. int get_mipmap_count() const;
  200. /**
  201. * Convert the image to another format, conversion only to raw byte format
  202. */
  203. void convert(Format p_new_format);
  204. /**
  205. * Get the current image format.
  206. */
  207. Format get_format() const;
  208. /**
  209. * Get where the mipmap begins in data.
  210. */
  211. int64_t get_mipmap_offset(int p_mipmap) const;
  212. void get_mipmap_offset_and_size(int p_mipmap, int64_t &r_ofs, int64_t &r_size) const;
  213. void get_mipmap_offset_size_and_dimensions(int p_mipmap, int64_t &r_ofs, int64_t &r_size, int &w, int &h) const;
  214. enum Image3DValidateError {
  215. VALIDATE_3D_OK,
  216. VALIDATE_3D_ERR_IMAGE_EMPTY,
  217. VALIDATE_3D_ERR_MISSING_IMAGES,
  218. VALIDATE_3D_ERR_EXTRA_IMAGES,
  219. VALIDATE_3D_ERR_IMAGE_SIZE_MISMATCH,
  220. VALIDATE_3D_ERR_IMAGE_FORMAT_MISMATCH,
  221. VALIDATE_3D_ERR_IMAGE_HAS_MIPMAPS,
  222. };
  223. static Image3DValidateError validate_3d_image(Format p_format, int p_width, int p_height, int p_depth, bool p_mipmaps, const Vector<Ref<Image>> &p_images);
  224. static String get_3d_image_validation_error_text(Image3DValidateError p_error);
  225. /**
  226. * Resize the image, using the preferred interpolation method.
  227. */
  228. void resize_to_po2(bool p_square = false, Interpolation p_interpolation = INTERPOLATE_BILINEAR);
  229. void resize(int p_width, int p_height, Interpolation p_interpolation = INTERPOLATE_BILINEAR);
  230. void shrink_x2();
  231. bool is_size_po2() const;
  232. /**
  233. * Crop the image to a specific size, if larger, then the image is filled by black
  234. */
  235. void crop_from_point(int p_x, int p_y, int p_width, int p_height);
  236. void crop(int p_width, int p_height);
  237. void rotate_90(ClockDirection p_direction);
  238. void rotate_180();
  239. void flip_x();
  240. void flip_y();
  241. /**
  242. * Generate a mipmap to an image (creates an image 1/4 the size, with averaging of 4->1)
  243. */
  244. Error generate_mipmaps(bool p_renormalize = false);
  245. enum RoughnessChannel {
  246. ROUGHNESS_CHANNEL_R,
  247. ROUGHNESS_CHANNEL_G,
  248. ROUGHNESS_CHANNEL_B,
  249. ROUGHNESS_CHANNEL_A,
  250. ROUGHNESS_CHANNEL_L,
  251. };
  252. Error generate_mipmap_roughness(RoughnessChannel p_roughness_channel, const Ref<Image> &p_normal_map);
  253. void clear_mipmaps();
  254. void normalize(); //for normal maps
  255. /**
  256. * Creates new internal image data of a given size and format. Current image will be lost.
  257. */
  258. void initialize_data(int p_width, int p_height, bool p_use_mipmaps, Format p_format);
  259. void initialize_data(int p_width, int p_height, bool p_use_mipmaps, Format p_format, const Vector<uint8_t> &p_data);
  260. void initialize_data(const char **p_xpm);
  261. /**
  262. * returns true when the image is empty (0,0) in size
  263. */
  264. bool is_empty() const;
  265. Vector<uint8_t> get_data() const;
  266. Error load(const String &p_path);
  267. static Ref<Image> load_from_file(const String &p_path);
  268. Error save_png(const String &p_path) const;
  269. Error save_jpg(const String &p_path, float p_quality = 0.75) const;
  270. Vector<uint8_t> save_png_to_buffer() const;
  271. Vector<uint8_t> save_jpg_to_buffer(float p_quality = 0.75) const;
  272. Vector<uint8_t> save_exr_to_buffer(bool p_grayscale = false) const;
  273. Error save_exr(const String &p_path, bool p_grayscale = false) const;
  274. Error save_webp(const String &p_path, const bool p_lossy = false, const float p_quality = 0.75f) const;
  275. Vector<uint8_t> save_webp_to_buffer(const bool p_lossy = false, const float p_quality = 0.75f) const;
  276. static Ref<Image> create_empty(int p_width, int p_height, bool p_use_mipmaps, Format p_format);
  277. static Ref<Image> create_from_data(int p_width, int p_height, bool p_use_mipmaps, Format p_format, const Vector<uint8_t> &p_data);
  278. void set_data(int p_width, int p_height, bool p_use_mipmaps, Format p_format, const Vector<uint8_t> &p_data);
  279. /**
  280. * create an empty image
  281. */
  282. Image() {}
  283. /**
  284. * create an empty image of a specific size and format
  285. */
  286. Image(int p_width, int p_height, bool p_use_mipmaps, Format p_format);
  287. /**
  288. * import an image of a specific size and format from a pointer
  289. */
  290. Image(int p_width, int p_height, bool p_mipmaps, Format p_format, const Vector<uint8_t> &p_data);
  291. ~Image() {}
  292. enum AlphaMode {
  293. ALPHA_NONE,
  294. ALPHA_BIT,
  295. ALPHA_BLEND
  296. };
  297. AlphaMode detect_alpha() const;
  298. bool is_invisible() const;
  299. static int get_format_pixel_size(Format p_format);
  300. static int get_format_pixel_rshift(Format p_format);
  301. static int get_format_block_size(Format p_format);
  302. static void get_format_min_pixel_size(Format p_format, int &r_w, int &r_h);
  303. static int64_t get_image_data_size(int p_width, int p_height, Format p_format, bool p_mipmaps = false);
  304. static int get_image_required_mipmaps(int p_width, int p_height, Format p_format);
  305. static Size2i get_image_mipmap_size(int p_width, int p_height, Format p_format, int p_mipmap);
  306. static int64_t get_image_mipmap_offset(int p_width, int p_height, Format p_format, int p_mipmap);
  307. static int64_t get_image_mipmap_offset_and_dimensions(int p_width, int p_height, Format p_format, int p_mipmap, int &r_w, int &r_h);
  308. enum CompressMode {
  309. COMPRESS_S3TC,
  310. COMPRESS_ETC,
  311. COMPRESS_ETC2,
  312. COMPRESS_BPTC,
  313. COMPRESS_ASTC,
  314. COMPRESS_MAX,
  315. };
  316. enum CompressSource {
  317. COMPRESS_SOURCE_GENERIC,
  318. COMPRESS_SOURCE_SRGB,
  319. COMPRESS_SOURCE_NORMAL,
  320. COMPRESS_SOURCE_MAX,
  321. };
  322. Error compress(CompressMode p_mode, CompressSource p_source = COMPRESS_SOURCE_GENERIC, ASTCFormat p_astc_format = ASTC_FORMAT_4x4);
  323. Error compress_from_channels(CompressMode p_mode, UsedChannels p_channels, ASTCFormat p_astc_format = ASTC_FORMAT_4x4);
  324. Error decompress();
  325. bool is_compressed() const;
  326. static bool is_format_compressed(Format p_format);
  327. void fix_alpha_edges();
  328. void premultiply_alpha();
  329. void srgb_to_linear();
  330. void normal_map_to_xy();
  331. Ref<Image> rgbe_to_srgb();
  332. Ref<Image> get_image_from_mipmap(int p_mipmap) const;
  333. void bump_map_to_normal_map(float bump_scale = 1.0);
  334. void blit_rect(const Ref<Image> &p_src, const Rect2i &p_src_rect, const Point2i &p_dest);
  335. void blit_rect_mask(const Ref<Image> &p_src, const Ref<Image> &p_mask, const Rect2i &p_src_rect, const Point2i &p_dest);
  336. void blend_rect(const Ref<Image> &p_src, const Rect2i &p_src_rect, const Point2i &p_dest);
  337. void blend_rect_mask(const Ref<Image> &p_src, const Ref<Image> &p_mask, const Rect2i &p_src_rect, const Point2i &p_dest);
  338. void fill(const Color &p_color);
  339. void fill_rect(const Rect2i &p_rect, const Color &p_color);
  340. Rect2i get_used_rect() const;
  341. Ref<Image> get_region(const Rect2i &p_area) const;
  342. static void set_compress_bc_func(void (*p_compress_func)(Image *, UsedChannels));
  343. static void set_compress_bptc_func(void (*p_compress_func)(Image *, UsedChannels));
  344. static String get_format_name(Format p_format);
  345. Error load_png_from_buffer(const Vector<uint8_t> &p_array);
  346. Error load_jpg_from_buffer(const Vector<uint8_t> &p_array);
  347. Error load_webp_from_buffer(const Vector<uint8_t> &p_array);
  348. Error load_tga_from_buffer(const Vector<uint8_t> &p_array);
  349. Error load_bmp_from_buffer(const Vector<uint8_t> &p_array);
  350. Error load_ktx_from_buffer(const Vector<uint8_t> &p_array);
  351. Error load_svg_from_buffer(const Vector<uint8_t> &p_array, float scale = 1.0);
  352. Error load_svg_from_string(const String &p_svg_str, float scale = 1.0);
  353. void convert_rg_to_ra_rgba8();
  354. void convert_ra_rgba8_to_rg();
  355. void convert_rgba8_to_bgra8();
  356. Image(const uint8_t *p_mem_png_jpg, int p_len = -1);
  357. Image(const char **p_xpm);
  358. virtual Ref<Resource> duplicate(bool p_subresources = false) const override;
  359. UsedChannels detect_used_channels(CompressSource p_source = COMPRESS_SOURCE_GENERIC) const;
  360. void optimize_channels();
  361. Color get_pixelv(const Point2i &p_point) const;
  362. Color get_pixel(int p_x, int p_y) const;
  363. void set_pixelv(const Point2i &p_point, const Color &p_color);
  364. void set_pixel(int p_x, int p_y, const Color &p_color);
  365. const uint8_t *ptr() const;
  366. uint8_t *ptrw();
  367. int64_t get_data_size() const;
  368. void adjust_bcs(float p_brightness, float p_contrast, float p_saturation);
  369. void set_as_black();
  370. void copy_internals_from(const Ref<Image> &p_image) {
  371. ERR_FAIL_COND_MSG(p_image.is_null(), "Cannot copy image internals: invalid Image object.");
  372. format = p_image->format;
  373. width = p_image->width;
  374. height = p_image->height;
  375. mipmaps = p_image->mipmaps;
  376. data = p_image->data;
  377. }
  378. Dictionary compute_image_metrics(const Ref<Image> p_compared_image, bool p_luma_metric = true);
  379. };
  380. VARIANT_ENUM_CAST(Image::Format)
  381. VARIANT_ENUM_CAST(Image::Interpolation)
  382. VARIANT_ENUM_CAST(Image::CompressMode)
  383. VARIANT_ENUM_CAST(Image::CompressSource)
  384. VARIANT_ENUM_CAST(Image::UsedChannels)
  385. VARIANT_ENUM_CAST(Image::AlphaMode)
  386. VARIANT_ENUM_CAST(Image::RoughnessChannel)
  387. VARIANT_ENUM_CAST(Image::ASTCFormat)
  388. #endif // IMAGE_H