Renderer.cpp 44 KB

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  1. /*
  2. * Copyright (c) 2021-2022, Matthew Olsson <mattco@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <AK/Utf8View.h>
  7. #include <LibPDF/CommonNames.h>
  8. #include <LibPDF/Fonts/PDFFont.h>
  9. #include <LibPDF/Interpolation.h>
  10. #include <LibPDF/Renderer.h>
  11. #define RENDERER_HANDLER(name) \
  12. PDFErrorOr<void> Renderer::handle_##name([[maybe_unused]] ReadonlySpan<Value> args, [[maybe_unused]] Optional<NonnullRefPtr<DictObject>> extra_resources)
  13. #define RENDERER_TODO(name) \
  14. RENDERER_HANDLER(name) \
  15. { \
  16. return Error(Error::Type::RenderingUnsupported, "draw operation: " #name); \
  17. }
  18. namespace PDF {
  19. // Use a RAII object to restore the graphics state, to make sure it gets restored even if
  20. // a TRY(handle_operator()) causes us to exit the operators loop early.
  21. // Explicitly resize stack size at the end so that if the recursive document contains
  22. // `q q unsupportedop Q Q`, we undo the stack pushes from the inner `q q` even if
  23. // `unsupportedop` terminates processing the inner instruction stream before `Q Q`
  24. // would normally pop state.
  25. class Renderer::ScopedState {
  26. public:
  27. ScopedState(Renderer& renderer)
  28. : m_renderer(renderer)
  29. , m_starting_stack_depth(m_renderer.m_graphics_state_stack.size())
  30. {
  31. MUST(m_renderer.handle_save_state({}));
  32. }
  33. ~ScopedState()
  34. {
  35. m_renderer.m_graphics_state_stack.shrink(m_starting_stack_depth);
  36. }
  37. private:
  38. Renderer& m_renderer;
  39. size_t m_starting_stack_depth;
  40. };
  41. PDFErrorsOr<void> Renderer::render(Document& document, Page const& page, RefPtr<Gfx::Bitmap> bitmap, Color background_color, RenderingPreferences rendering_preferences)
  42. {
  43. return Renderer(document, page, bitmap, background_color, rendering_preferences).render();
  44. }
  45. static void rect_path(Gfx::Path& path, float x, float y, float width, float height)
  46. {
  47. path.move_to({ x, y });
  48. path.line_to({ x + width, y });
  49. path.line_to({ x + width, y + height });
  50. path.line_to({ x, y + height });
  51. path.close();
  52. }
  53. template<typename T>
  54. static void rect_path(Gfx::Path& path, Gfx::Rect<T> rect)
  55. {
  56. return rect_path(path, rect.x(), rect.y(), rect.width(), rect.height());
  57. }
  58. template<typename T>
  59. static Gfx::Path rect_path(Gfx::Rect<T> const& rect)
  60. {
  61. Gfx::Path path;
  62. rect_path(path, rect);
  63. return path;
  64. }
  65. Renderer::Renderer(RefPtr<Document> document, Page const& page, RefPtr<Gfx::Bitmap> bitmap, Color background_color, RenderingPreferences rendering_preferences)
  66. : m_document(document)
  67. , m_bitmap(bitmap)
  68. , m_page(page)
  69. , m_painter(*bitmap)
  70. , m_anti_aliasing_painter(m_painter)
  71. , m_rendering_preferences(rendering_preferences)
  72. {
  73. auto media_box = m_page.media_box;
  74. Gfx::AffineTransform userspace_matrix;
  75. userspace_matrix.translate(media_box.lower_left_x, media_box.lower_left_y);
  76. float width = media_box.width();
  77. float height = media_box.height();
  78. float scale_x = static_cast<float>(bitmap->width()) / width;
  79. float scale_y = static_cast<float>(bitmap->height()) / height;
  80. userspace_matrix.scale(scale_x, scale_y);
  81. // PDF user-space coordinate y axis increases from bottom to top, so we have to
  82. // insert a horizontal reflection about the vertical midpoint into our transformation
  83. // matrix
  84. static Gfx::AffineTransform horizontal_reflection_matrix = { 1, 0, 0, -1, 0, 0 };
  85. userspace_matrix.multiply(horizontal_reflection_matrix);
  86. userspace_matrix.translate(0.0f, -height);
  87. auto initial_clipping_path = rect_path(userspace_matrix.map(Gfx::FloatRect(0, 0, width, height)));
  88. m_graphics_state_stack.append(GraphicsState { userspace_matrix, { initial_clipping_path, initial_clipping_path } });
  89. m_bitmap->fill(background_color);
  90. }
  91. PDFErrorsOr<void> Renderer::render()
  92. {
  93. auto operators = TRY(Parser::parse_operators(m_document, TRY(m_page.page_contents(*m_document))));
  94. Errors errors;
  95. for (auto& op : operators) {
  96. auto maybe_error = handle_operator(op);
  97. if (maybe_error.is_error()) {
  98. errors.add_error(maybe_error.release_error());
  99. }
  100. }
  101. if (!errors.errors().is_empty())
  102. return errors;
  103. return {};
  104. }
  105. PDFErrorOr<void> Renderer::handle_operator(Operator const& op, Optional<NonnullRefPtr<DictObject>> extra_resources)
  106. {
  107. switch (op.type()) {
  108. #define V(name, snake_name, symbol) \
  109. case OperatorType::name: \
  110. TRY(handle_##snake_name(op.arguments(), extra_resources)); \
  111. break;
  112. ENUMERATE_OPERATORS(V)
  113. #undef V
  114. case OperatorType::TextNextLineShowString:
  115. TRY(handle_text_next_line_show_string(op.arguments()));
  116. break;
  117. case OperatorType::TextNextLineShowStringSetSpacing:
  118. TRY(handle_text_next_line_show_string_set_spacing(op.arguments()));
  119. break;
  120. }
  121. return {};
  122. }
  123. RENDERER_HANDLER(save_state)
  124. {
  125. m_graphics_state_stack.append(state());
  126. return {};
  127. }
  128. RENDERER_HANDLER(restore_state)
  129. {
  130. m_graphics_state_stack.take_last();
  131. return {};
  132. }
  133. RENDERER_HANDLER(concatenate_matrix)
  134. {
  135. Gfx::AffineTransform new_transform(
  136. args[0].to_float(),
  137. args[1].to_float(),
  138. args[2].to_float(),
  139. args[3].to_float(),
  140. args[4].to_float(),
  141. args[5].to_float());
  142. state().ctm.multiply(new_transform);
  143. m_text_rendering_matrix_is_dirty = true;
  144. return {};
  145. }
  146. RENDERER_HANDLER(set_line_width)
  147. {
  148. state().line_width = args[0].to_float();
  149. return {};
  150. }
  151. RENDERER_HANDLER(set_line_cap)
  152. {
  153. state().line_cap_style = static_cast<LineCapStyle>(args[0].get<int>());
  154. return {};
  155. }
  156. RENDERER_HANDLER(set_line_join)
  157. {
  158. state().line_join_style = static_cast<LineJoinStyle>(args[0].get<int>());
  159. return {};
  160. }
  161. RENDERER_HANDLER(set_miter_limit)
  162. {
  163. state().miter_limit = args[0].to_float();
  164. return {};
  165. }
  166. RENDERER_HANDLER(set_dash_pattern)
  167. {
  168. auto dash_array = MUST(m_document->resolve_to<ArrayObject>(args[0]));
  169. Vector<int> pattern;
  170. for (auto& element : *dash_array)
  171. pattern.append(element.to_int());
  172. state().line_dash_pattern = LineDashPattern { pattern, args[1].to_int() };
  173. return {};
  174. }
  175. RENDERER_HANDLER(set_color_rendering_intent)
  176. {
  177. state().color_rendering_intent = MUST(m_document->resolve_to<NameObject>(args[0]))->name();
  178. return {};
  179. }
  180. RENDERER_HANDLER(set_flatness_tolerance)
  181. {
  182. state().flatness_tolerance = args[0].to_float();
  183. return {};
  184. }
  185. RENDERER_HANDLER(set_graphics_state_from_dict)
  186. {
  187. auto resources = extra_resources.value_or(m_page.resources);
  188. auto dict_name = MUST(m_document->resolve_to<NameObject>(args[0]))->name();
  189. auto ext_gstate_dict = MUST(resources->get_dict(m_document, CommonNames::ExtGState));
  190. auto target_dict = MUST(ext_gstate_dict->get_dict(m_document, dict_name));
  191. TRY(set_graphics_state_from_dict(target_dict));
  192. return {};
  193. }
  194. RENDERER_HANDLER(path_move)
  195. {
  196. m_current_path.move_to(map(args[0].to_float(), args[1].to_float()));
  197. return {};
  198. }
  199. RENDERER_HANDLER(path_line)
  200. {
  201. VERIFY(!m_current_path.segments().is_empty());
  202. m_current_path.line_to(map(args[0].to_float(), args[1].to_float()));
  203. return {};
  204. }
  205. RENDERER_HANDLER(path_cubic_bezier_curve)
  206. {
  207. VERIFY(args.size() == 6);
  208. m_current_path.cubic_bezier_curve_to(
  209. map(args[0].to_float(), args[1].to_float()),
  210. map(args[2].to_float(), args[3].to_float()),
  211. map(args[4].to_float(), args[5].to_float()));
  212. return {};
  213. }
  214. RENDERER_HANDLER(path_cubic_bezier_curve_no_first_control)
  215. {
  216. VERIFY(args.size() == 4);
  217. VERIFY(!m_current_path.segments().is_empty());
  218. auto current_point = (*m_current_path.segments().rbegin())->point();
  219. m_current_path.cubic_bezier_curve_to(
  220. current_point,
  221. map(args[0].to_float(), args[1].to_float()),
  222. map(args[2].to_float(), args[3].to_float()));
  223. return {};
  224. }
  225. RENDERER_HANDLER(path_cubic_bezier_curve_no_second_control)
  226. {
  227. VERIFY(args.size() == 4);
  228. VERIFY(!m_current_path.segments().is_empty());
  229. auto first_control_point = map(args[0].to_float(), args[1].to_float());
  230. auto second_control_point = map(args[2].to_float(), args[3].to_float());
  231. m_current_path.cubic_bezier_curve_to(
  232. first_control_point,
  233. second_control_point,
  234. second_control_point);
  235. return {};
  236. }
  237. RENDERER_HANDLER(path_close)
  238. {
  239. m_current_path.close();
  240. return {};
  241. }
  242. RENDERER_HANDLER(path_append_rect)
  243. {
  244. auto rect = Gfx::FloatRect(args[0].to_float(), args[1].to_float(), args[2].to_float(), args[3].to_float());
  245. rect_path(m_current_path, map(rect));
  246. return {};
  247. }
  248. ///
  249. // Path painting operations
  250. ///
  251. void Renderer::begin_path_paint()
  252. {
  253. auto bounding_box = state().clipping_paths.current.bounding_box();
  254. m_painter.clear_clip_rect();
  255. if (m_rendering_preferences.show_clipping_paths) {
  256. m_painter.stroke_path(rect_path(bounding_box), Color::Black, 1);
  257. }
  258. m_painter.add_clip_rect(bounding_box.to_type<int>());
  259. }
  260. void Renderer::end_path_paint()
  261. {
  262. m_current_path.clear();
  263. m_painter.clear_clip_rect();
  264. state().clipping_paths.current = state().clipping_paths.next;
  265. }
  266. RENDERER_HANDLER(path_stroke)
  267. {
  268. begin_path_paint();
  269. if (state().stroke_style.has<NonnullRefPtr<Gfx::PaintStyle>>()) {
  270. m_anti_aliasing_painter.stroke_path(m_current_path, state().stroke_style.get<NonnullRefPtr<Gfx::PaintStyle>>(), state().ctm.x_scale() * state().line_width);
  271. } else {
  272. m_anti_aliasing_painter.stroke_path(m_current_path, state().stroke_style.get<Color>(), state().ctm.x_scale() * state().line_width);
  273. }
  274. end_path_paint();
  275. return {};
  276. }
  277. RENDERER_HANDLER(path_close_and_stroke)
  278. {
  279. m_current_path.close();
  280. TRY(handle_path_stroke(args));
  281. return {};
  282. }
  283. RENDERER_HANDLER(path_fill_nonzero)
  284. {
  285. begin_path_paint();
  286. m_current_path.close_all_subpaths();
  287. if (state().paint_style.has<NonnullRefPtr<Gfx::PaintStyle>>()) {
  288. m_anti_aliasing_painter.fill_path(m_current_path, state().paint_style.get<NonnullRefPtr<Gfx::PaintStyle>>(), 1.0, Gfx::Painter::WindingRule::Nonzero);
  289. } else {
  290. m_anti_aliasing_painter.fill_path(m_current_path, state().paint_style.get<Color>(), Gfx::Painter::WindingRule::Nonzero);
  291. }
  292. end_path_paint();
  293. return {};
  294. }
  295. RENDERER_HANDLER(path_fill_nonzero_deprecated)
  296. {
  297. return handle_path_fill_nonzero(args);
  298. }
  299. RENDERER_HANDLER(path_fill_evenodd)
  300. {
  301. begin_path_paint();
  302. m_current_path.close_all_subpaths();
  303. if (state().paint_style.has<NonnullRefPtr<Gfx::PaintStyle>>()) {
  304. m_anti_aliasing_painter.fill_path(m_current_path, state().paint_style.get<NonnullRefPtr<Gfx::PaintStyle>>(), 1.0, Gfx::Painter::WindingRule::EvenOdd);
  305. } else {
  306. m_anti_aliasing_painter.fill_path(m_current_path, state().paint_style.get<Color>(), Gfx::Painter::WindingRule::EvenOdd);
  307. }
  308. end_path_paint();
  309. return {};
  310. }
  311. RENDERER_HANDLER(path_fill_stroke_nonzero)
  312. {
  313. if (state().stroke_style.has<NonnullRefPtr<Gfx::PaintStyle>>()) {
  314. m_anti_aliasing_painter.stroke_path(m_current_path, state().stroke_style.get<NonnullRefPtr<Gfx::PaintStyle>>(), state().ctm.x_scale() * state().line_width);
  315. } else {
  316. m_anti_aliasing_painter.stroke_path(m_current_path, state().stroke_style.get<Color>(), state().ctm.x_scale() * state().line_width);
  317. }
  318. return handle_path_fill_nonzero(args);
  319. }
  320. RENDERER_HANDLER(path_fill_stroke_evenodd)
  321. {
  322. if (state().stroke_style.has<NonnullRefPtr<Gfx::PaintStyle>>()) {
  323. m_anti_aliasing_painter.stroke_path(m_current_path, state().stroke_style.get<NonnullRefPtr<Gfx::PaintStyle>>(), state().ctm.x_scale() * state().line_width);
  324. } else {
  325. m_anti_aliasing_painter.stroke_path(m_current_path, state().stroke_style.get<Color>(), state().ctm.x_scale() * state().line_width);
  326. }
  327. return handle_path_fill_evenodd(args);
  328. }
  329. RENDERER_HANDLER(path_close_fill_stroke_nonzero)
  330. {
  331. m_current_path.close();
  332. return handle_path_fill_stroke_nonzero(args);
  333. }
  334. RENDERER_HANDLER(path_close_fill_stroke_evenodd)
  335. {
  336. m_current_path.close();
  337. return handle_path_fill_stroke_evenodd(args);
  338. }
  339. RENDERER_HANDLER(path_end)
  340. {
  341. begin_path_paint();
  342. end_path_paint();
  343. return {};
  344. }
  345. RENDERER_HANDLER(path_intersect_clip_nonzero)
  346. {
  347. // FIXME: Support arbitrary path clipping in Path and utilize that here
  348. auto next_clipping_bbox = state().clipping_paths.next.bounding_box();
  349. next_clipping_bbox.intersect(m_current_path.bounding_box());
  350. state().clipping_paths.next = rect_path(next_clipping_bbox);
  351. return {};
  352. }
  353. RENDERER_HANDLER(path_intersect_clip_evenodd)
  354. {
  355. // FIXME: Should have different behavior than path_intersect_clip_nonzero
  356. return handle_path_intersect_clip_nonzero(args);
  357. }
  358. RENDERER_HANDLER(text_begin)
  359. {
  360. m_text_matrix = Gfx::AffineTransform();
  361. m_text_line_matrix = Gfx::AffineTransform();
  362. m_text_rendering_matrix_is_dirty = true;
  363. return {};
  364. }
  365. RENDERER_HANDLER(text_end)
  366. {
  367. // FIXME: Do we need to do anything here?
  368. return {};
  369. }
  370. RENDERER_HANDLER(text_set_char_space)
  371. {
  372. text_state().character_spacing = args[0].to_float();
  373. return {};
  374. }
  375. RENDERER_HANDLER(text_set_word_space)
  376. {
  377. text_state().word_spacing = args[0].to_float();
  378. return {};
  379. }
  380. RENDERER_HANDLER(text_set_horizontal_scale)
  381. {
  382. m_text_rendering_matrix_is_dirty = true;
  383. text_state().horizontal_scaling = args[0].to_float() / 100.0f;
  384. return {};
  385. }
  386. RENDERER_HANDLER(text_set_leading)
  387. {
  388. text_state().leading = args[0].to_float();
  389. return {};
  390. }
  391. PDFErrorOr<NonnullRefPtr<PDFFont>> Renderer::get_font(FontCacheKey const& key)
  392. {
  393. auto it = m_font_cache.find(key);
  394. if (it != m_font_cache.end()) {
  395. // Update the potentially-stale size set in text_set_matrix_and_line_matrix().
  396. it->value->set_font_size(key.font_size);
  397. return it->value;
  398. }
  399. auto font = TRY(PDFFont::create(m_document, key.font_dictionary, key.font_size));
  400. m_font_cache.set(key, font);
  401. return font;
  402. }
  403. RENDERER_HANDLER(text_set_font)
  404. {
  405. auto target_font_name = MUST(m_document->resolve_to<NameObject>(args[0]))->name();
  406. text_state().font_size = args[1].to_float();
  407. auto& text_rendering_matrix = calculate_text_rendering_matrix();
  408. auto font_size = text_rendering_matrix.x_scale() * text_state().font_size;
  409. auto resources = extra_resources.value_or(m_page.resources);
  410. auto fonts_dictionary = MUST(resources->get_dict(m_document, CommonNames::Font));
  411. auto font_dictionary = MUST(fonts_dictionary->get_dict(m_document, target_font_name));
  412. FontCacheKey cache_key { move(font_dictionary), font_size };
  413. text_state().font = TRY(get_font(cache_key));
  414. m_text_rendering_matrix_is_dirty = true;
  415. return {};
  416. }
  417. RENDERER_HANDLER(text_set_rendering_mode)
  418. {
  419. text_state().rendering_mode = static_cast<TextRenderingMode>(args[0].get<int>());
  420. return {};
  421. }
  422. RENDERER_HANDLER(text_set_rise)
  423. {
  424. m_text_rendering_matrix_is_dirty = true;
  425. text_state().rise = args[0].to_float();
  426. return {};
  427. }
  428. RENDERER_HANDLER(text_next_line_offset)
  429. {
  430. Gfx::AffineTransform transform(1.0f, 0.0f, 0.0f, 1.0f, args[0].to_float(), args[1].to_float());
  431. m_text_line_matrix.multiply(transform);
  432. m_text_matrix = m_text_line_matrix;
  433. m_text_rendering_matrix_is_dirty = true;
  434. return {};
  435. }
  436. RENDERER_HANDLER(text_next_line_and_set_leading)
  437. {
  438. text_state().leading = -args[1].to_float();
  439. TRY(handle_text_next_line_offset(args));
  440. return {};
  441. }
  442. RENDERER_HANDLER(text_set_matrix_and_line_matrix)
  443. {
  444. Gfx::AffineTransform new_transform(
  445. args[0].to_float(),
  446. args[1].to_float(),
  447. args[2].to_float(),
  448. args[3].to_float(),
  449. args[4].to_float(),
  450. args[5].to_float());
  451. m_text_line_matrix = new_transform;
  452. m_text_matrix = new_transform;
  453. m_text_rendering_matrix_is_dirty = true;
  454. // Settings the text/line matrix retroactively affects fonts
  455. if (text_state().font) {
  456. auto new_text_rendering_matrix = calculate_text_rendering_matrix();
  457. text_state().font->set_font_size(text_state().font_size * new_text_rendering_matrix.x_scale());
  458. }
  459. return {};
  460. }
  461. RENDERER_HANDLER(text_next_line)
  462. {
  463. TRY(handle_text_next_line_offset(Array<Value, 2> { 0.0f, -text_state().leading }));
  464. return {};
  465. }
  466. RENDERER_HANDLER(text_show_string)
  467. {
  468. auto text = MUST(m_document->resolve_to<StringObject>(args[0]))->string();
  469. TRY(show_text(text));
  470. return {};
  471. }
  472. RENDERER_HANDLER(text_next_line_show_string)
  473. {
  474. TRY(handle_text_next_line(args));
  475. TRY(handle_text_show_string(args));
  476. return {};
  477. }
  478. RENDERER_HANDLER(text_next_line_show_string_set_spacing)
  479. {
  480. TRY(handle_text_set_word_space(args.slice(0, 1)));
  481. TRY(handle_text_set_char_space(args.slice(1, 1)));
  482. TRY(handle_text_next_line_show_string(args.slice(2)));
  483. return {};
  484. }
  485. RENDERER_HANDLER(text_show_string_array)
  486. {
  487. auto elements = MUST(m_document->resolve_to<ArrayObject>(args[0]))->elements();
  488. for (auto& element : elements) {
  489. if (element.has<int>()) {
  490. float shift = (float)element.get<int>() / 1000.0f;
  491. m_text_matrix.translate(-shift * text_state().font_size * text_state().horizontal_scaling, 0.0f);
  492. } else if (element.has<float>()) {
  493. float shift = element.get<float>() / 1000.0f;
  494. m_text_matrix.translate(-shift * text_state().font_size * text_state().horizontal_scaling, 0.0f);
  495. } else {
  496. auto str = element.get<NonnullRefPtr<Object>>()->cast<StringObject>()->string();
  497. TRY(show_text(str));
  498. }
  499. }
  500. return {};
  501. }
  502. RENDERER_HANDLER(type3_font_set_glyph_width)
  503. {
  504. // FIXME: Do something with this.
  505. return {};
  506. }
  507. RENDERER_HANDLER(type3_font_set_glyph_width_and_bbox)
  508. {
  509. // FIXME: Do something with this.
  510. return {};
  511. }
  512. RENDERER_HANDLER(set_stroking_space)
  513. {
  514. state().stroke_color_space = TRY(get_color_space_from_resources(args[0], extra_resources.value_or(m_page.resources)));
  515. VERIFY(state().stroke_color_space);
  516. return {};
  517. }
  518. RENDERER_HANDLER(set_painting_space)
  519. {
  520. state().paint_color_space = TRY(get_color_space_from_resources(args[0], extra_resources.value_or(m_page.resources)));
  521. VERIFY(state().paint_color_space);
  522. return {};
  523. }
  524. RENDERER_HANDLER(set_stroking_color)
  525. {
  526. state().stroke_style = TRY(state().stroke_color_space->style(args));
  527. return {};
  528. }
  529. RENDERER_HANDLER(set_stroking_color_extended)
  530. {
  531. // FIXME: Handle Pattern color spaces
  532. auto last_arg = args.last();
  533. if (last_arg.has<NonnullRefPtr<Object>>() && last_arg.get<NonnullRefPtr<Object>>()->is<NameObject>()) {
  534. dbgln("pattern space {}", last_arg.get<NonnullRefPtr<Object>>()->cast<NameObject>()->name());
  535. return Error::rendering_unsupported_error("Pattern color spaces not yet implemented");
  536. }
  537. state().stroke_style = TRY(state().stroke_color_space->style(args));
  538. return {};
  539. }
  540. RENDERER_HANDLER(set_painting_color)
  541. {
  542. state().paint_style = TRY(state().paint_color_space->style(args));
  543. return {};
  544. }
  545. RENDERER_HANDLER(set_painting_color_extended)
  546. {
  547. // FIXME: Handle Pattern color spaces
  548. auto last_arg = args.last();
  549. if (last_arg.has<NonnullRefPtr<Object>>() && last_arg.get<NonnullRefPtr<Object>>()->is<NameObject>()) {
  550. dbgln("pattern space {}", last_arg.get<NonnullRefPtr<Object>>()->cast<NameObject>()->name());
  551. return Error::rendering_unsupported_error("Pattern color spaces not yet implemented");
  552. }
  553. state().paint_style = TRY(state().paint_color_space->style(args));
  554. return {};
  555. }
  556. RENDERER_HANDLER(set_stroking_color_and_space_to_gray)
  557. {
  558. state().stroke_color_space = DeviceGrayColorSpace::the();
  559. state().stroke_style = TRY(state().stroke_color_space->style(args));
  560. return {};
  561. }
  562. RENDERER_HANDLER(set_painting_color_and_space_to_gray)
  563. {
  564. state().paint_color_space = DeviceGrayColorSpace::the();
  565. state().paint_style = TRY(state().paint_color_space->style(args));
  566. return {};
  567. }
  568. RENDERER_HANDLER(set_stroking_color_and_space_to_rgb)
  569. {
  570. state().stroke_color_space = DeviceRGBColorSpace::the();
  571. state().stroke_style = TRY(state().stroke_color_space->style(args));
  572. return {};
  573. }
  574. RENDERER_HANDLER(set_painting_color_and_space_to_rgb)
  575. {
  576. state().paint_color_space = DeviceRGBColorSpace::the();
  577. state().paint_style = TRY(state().paint_color_space->style(args));
  578. return {};
  579. }
  580. RENDERER_HANDLER(set_stroking_color_and_space_to_cmyk)
  581. {
  582. state().stroke_color_space = DeviceCMYKColorSpace::the();
  583. state().stroke_style = TRY(state().stroke_color_space->style(args));
  584. return {};
  585. }
  586. RENDERER_HANDLER(set_painting_color_and_space_to_cmyk)
  587. {
  588. state().paint_color_space = DeviceCMYKColorSpace::the();
  589. state().paint_style = TRY(state().paint_color_space->style(args));
  590. return {};
  591. }
  592. RENDERER_TODO(shade)
  593. RENDERER_HANDLER(inline_image_begin)
  594. {
  595. // The parser only calls the inline_image_end handler for inline images.
  596. VERIFY_NOT_REACHED();
  597. }
  598. RENDERER_HANDLER(inline_image_begin_data)
  599. {
  600. // The parser only calls the inline_image_end handler for inline images.
  601. VERIFY_NOT_REACHED();
  602. }
  603. static PDFErrorOr<Value> expand_inline_image_value(Value const& value, HashMap<DeprecatedFlyString, DeprecatedFlyString> const& value_expansions)
  604. {
  605. if (!value.has<NonnullRefPtr<Object>>())
  606. return value;
  607. auto const& object = value.get<NonnullRefPtr<Object>>();
  608. if (object->is<NameObject>()) {
  609. auto const& name = object->cast<NameObject>()->name();
  610. auto expanded_name = value_expansions.get(name);
  611. if (!expanded_name.has_value())
  612. return value;
  613. return Value { make_object<NameObject>(expanded_name.value()) };
  614. }
  615. // For the Filters array.
  616. if (object->is<ArrayObject>()) {
  617. auto const& array = object->cast<ArrayObject>()->elements();
  618. Vector<Value> expanded_array;
  619. for (auto const& element : array) {
  620. auto expanded_element = TRY(expand_inline_image_value(element, value_expansions));
  621. expanded_array.append(expanded_element);
  622. }
  623. return Value { make_object<ArrayObject>(move(expanded_array)) };
  624. }
  625. // For the DecodeParms dict. It might be fine to just `return value` here, I'm not sure if there can really be abbreviations in here.
  626. if (object->is<DictObject>()) {
  627. auto const& dict = object->cast<DictObject>()->map();
  628. HashMap<DeprecatedFlyString, Value> expanded_dict;
  629. for (auto const& [key, value] : dict) {
  630. auto expanded_value = TRY(expand_inline_image_value(value, value_expansions));
  631. expanded_dict.set(key, expanded_value);
  632. }
  633. return Value { make_object<DictObject>(move(expanded_dict)) };
  634. }
  635. VERIFY_NOT_REACHED();
  636. }
  637. static PDFErrorOr<Value> expand_inline_image_colorspace(Value color_space_value, NonnullRefPtr<DictObject> resources, RefPtr<Document> document)
  638. {
  639. // PDF 1.7 spec, 4.8.6 Inline Images:
  640. // "Beginning with PDF 1.2, the value of the ColorSpace entry may also be the name
  641. // of a color space in the ColorSpace subdictionary of the current resource dictionary."
  642. // But PDF 1.7 spec, 4.5.2 Color Space Families:
  643. // "Outside a content stream, certain objects, such as image XObjects,
  644. // specify a color space as an explicit parameter, often associated with
  645. // the key ColorSpace. In this case, the color space array or name is
  646. // always defined directly as a PDF object, not by an entry in the
  647. // ColorSpace resource subdictionary."
  648. // This converts a named color space of an inline image to an explicit color space object,
  649. // so that the regular image drawing code tolerates it.
  650. if (!color_space_value.has<NonnullRefPtr<Object>>())
  651. return color_space_value;
  652. auto const& object = color_space_value.get<NonnullRefPtr<Object>>();
  653. if (!object->is<NameObject>())
  654. return color_space_value;
  655. auto const& name = object->cast<NameObject>()->name();
  656. if (name == "DeviceGray" || name == "DeviceRGB" || name == "DeviceCMYK")
  657. return color_space_value;
  658. auto color_space_resource_dict = TRY(resources->get_dict(document, CommonNames::ColorSpace));
  659. return color_space_resource_dict->get_object(document, name);
  660. }
  661. static PDFErrorOr<NonnullRefPtr<StreamObject>> expand_inline_image_abbreviations(NonnullRefPtr<StreamObject> inline_stream, NonnullRefPtr<DictObject> resources, RefPtr<Document> document)
  662. {
  663. // TABLE 4.43 Entries in an inline image object
  664. static HashMap<DeprecatedFlyString, DeprecatedFlyString> key_expansions {
  665. { "BPC", "BitsPerComponent" },
  666. { "CS", "ColorSpace" },
  667. { "D", "Decode" },
  668. { "DP", "DecodeParms" },
  669. { "F", "Filter" },
  670. { "H", "Height" },
  671. { "IM", "ImageMask" },
  672. { "I", "Interpolate" },
  673. { "Intent", "Intent" }, // "No abbreviation"
  674. { "L", "Length" }, // PDF 2.0; would make more sense to read in Parser.
  675. { "W", "Width" },
  676. };
  677. // TABLE 4.44 Additional abbreviations in an inline image object
  678. // "Also note that JBIG2Decode and JPXDecode are not listed in Table 4.44
  679. // because those filters can be applied only to image XObjects."
  680. static HashMap<DeprecatedFlyString, DeprecatedFlyString> value_expansions {
  681. { "G", "DeviceGray" },
  682. { "RGB", "DeviceRGB" },
  683. { "CMYK", "DeviceCMYK" },
  684. { "I", "Indexed" },
  685. { "AHx", "ASCIIHexDecode" },
  686. { "A85", "ASCII85Decode" },
  687. { "LZW", "LZWDecode" },
  688. { "Fl", "FlateDecode" },
  689. { "RL", "RunLengthDecode" },
  690. { "CCF", "CCITTFaxDecode" },
  691. { "DCT", "DCTDecode" },
  692. };
  693. // The values in key_expansions, that is the final expansions, are the valid keys in an inline image dict.
  694. HashTable<DeprecatedFlyString> valid_keys;
  695. for (auto const& [key, value] : key_expansions)
  696. valid_keys.set(value);
  697. HashMap<DeprecatedFlyString, Value> expanded_dict;
  698. for (auto const& [key, value] : inline_stream->dict()->map()) {
  699. DeprecatedFlyString expanded_key = key_expansions.get(key).value_or(key);
  700. // "Entries other than those listed are ignored"
  701. if (!valid_keys.contains(expanded_key)) {
  702. dbgln("PDF: Ignoring invalid inline image key '{}'", expanded_key);
  703. continue;
  704. }
  705. Value expanded_value = TRY(expand_inline_image_value(value, value_expansions));
  706. if (expanded_key == "ColorSpace")
  707. expanded_value = TRY(expand_inline_image_colorspace(expanded_value, resources, document));
  708. expanded_dict.set(expanded_key, expanded_value);
  709. }
  710. auto map_object = make_object<DictObject>(move(expanded_dict));
  711. return make_object<StreamObject>(move(map_object), MUST(ByteBuffer::copy(inline_stream->bytes())));
  712. }
  713. RENDERER_HANDLER(inline_image_end)
  714. {
  715. VERIFY(args.size() == 1);
  716. auto inline_stream = args[0].get<NonnullRefPtr<Object>>()->cast<StreamObject>();
  717. auto resources = extra_resources.value_or(m_page.resources);
  718. auto expanded_inline_stream = TRY(expand_inline_image_abbreviations(inline_stream, resources, m_document));
  719. TRY(m_document->unfilter_stream(expanded_inline_stream));
  720. TRY(show_image(expanded_inline_stream));
  721. return {};
  722. }
  723. RENDERER_HANDLER(paint_xobject)
  724. {
  725. VERIFY(args.size() > 0);
  726. auto resources = extra_resources.value_or(m_page.resources);
  727. auto xobject_name = args[0].get<NonnullRefPtr<Object>>()->cast<NameObject>()->name();
  728. auto xobjects_dict = TRY(resources->get_dict(m_document, CommonNames::XObject));
  729. auto xobject = TRY(xobjects_dict->get_stream(m_document, xobject_name));
  730. Optional<NonnullRefPtr<DictObject>> xobject_resources {};
  731. if (xobject->dict()->contains(CommonNames::Resources)) {
  732. xobject_resources = xobject->dict()->get_dict(m_document, CommonNames::Resources).value();
  733. }
  734. auto subtype = MUST(xobject->dict()->get_name(m_document, CommonNames::Subtype))->name();
  735. if (subtype == CommonNames::Image) {
  736. TRY(show_image(xobject));
  737. return {};
  738. }
  739. ScopedState scoped_state { *this };
  740. Vector<Value> matrix;
  741. if (xobject->dict()->contains(CommonNames::Matrix)) {
  742. matrix = xobject->dict()->get_array(m_document, CommonNames::Matrix).value()->elements();
  743. } else {
  744. matrix = Vector { Value { 1 }, Value { 0 }, Value { 0 }, Value { 1 }, Value { 0 }, Value { 0 } };
  745. }
  746. MUST(handle_concatenate_matrix(matrix));
  747. auto operators = TRY(Parser::parse_operators(m_document, xobject->bytes()));
  748. for (auto& op : operators)
  749. TRY(handle_operator(op, xobject_resources));
  750. return {};
  751. }
  752. RENDERER_HANDLER(marked_content_point)
  753. {
  754. // nop
  755. return {};
  756. }
  757. RENDERER_HANDLER(marked_content_designate)
  758. {
  759. // nop
  760. return {};
  761. }
  762. RENDERER_HANDLER(marked_content_begin)
  763. {
  764. // nop
  765. return {};
  766. }
  767. RENDERER_HANDLER(marked_content_begin_with_property_list)
  768. {
  769. // nop
  770. return {};
  771. }
  772. RENDERER_HANDLER(marked_content_end)
  773. {
  774. // nop
  775. return {};
  776. }
  777. RENDERER_TODO(compatibility_begin)
  778. RENDERER_TODO(compatibility_end)
  779. template<typename T>
  780. Gfx::Point<T> Renderer::map(T x, T y) const
  781. {
  782. return state().ctm.map(Gfx::Point<T> { x, y });
  783. }
  784. template<typename T>
  785. Gfx::Size<T> Renderer::map(Gfx::Size<T> size) const
  786. {
  787. return state().ctm.map(size);
  788. }
  789. template<typename T>
  790. Gfx::Rect<T> Renderer::map(Gfx::Rect<T> rect) const
  791. {
  792. return state().ctm.map(rect);
  793. }
  794. PDFErrorOr<void> Renderer::set_graphics_state_from_dict(NonnullRefPtr<DictObject> dict)
  795. {
  796. // ISO 32000 (PDF 2.0), 8.4.5 Graphics state parameter dictionaries
  797. if (dict->contains(CommonNames::LW))
  798. TRY(handle_set_line_width(Array { dict->get_value(CommonNames::LW) }));
  799. if (dict->contains(CommonNames::LC))
  800. TRY(handle_set_line_cap(Array { dict->get_value(CommonNames::LC) }));
  801. if (dict->contains(CommonNames::LJ))
  802. TRY(handle_set_line_join(Array { dict->get_value(CommonNames::LJ) }));
  803. if (dict->contains(CommonNames::ML))
  804. TRY(handle_set_miter_limit(Array { dict->get_value(CommonNames::ML) }));
  805. if (dict->contains(CommonNames::D)) {
  806. auto array = MUST(dict->get_array(m_document, CommonNames::D));
  807. TRY(handle_set_dash_pattern(array->elements()));
  808. }
  809. if (dict->contains(CommonNames::RI))
  810. TRY(handle_set_color_rendering_intent(Array { dict->get_value(CommonNames::RI) }));
  811. // FIXME: OP
  812. // FIXME: op
  813. // FIXME: OPM
  814. // FIXME: Font
  815. // FIXME: BG
  816. // FIXME: BG2
  817. // FIXME: UCR
  818. // FIXME: UCR2
  819. // FIXME: TR
  820. // FIXME: TR2
  821. // FIXME: HT
  822. if (dict->contains(CommonNames::FL))
  823. TRY(handle_set_flatness_tolerance(Array { dict->get_value(CommonNames::FL) }));
  824. // FIXME: SM
  825. // FIXME: SA
  826. // FIXME: BM
  827. // FIXME: SMask
  828. // FIXME: CA
  829. // FIXME: ca
  830. // FIXME: AIS
  831. // FIXME: TK
  832. // FIXME: UseBlackPtComp
  833. // FIXME: HTO
  834. return {};
  835. }
  836. PDFErrorOr<void> Renderer::show_text(ByteString const& string)
  837. {
  838. if (!text_state().font)
  839. return Error::rendering_unsupported_error("Can't draw text because an invalid font was in use");
  840. auto const& text_rendering_matrix = calculate_text_rendering_matrix();
  841. auto start_position = text_rendering_matrix.map(Gfx::FloatPoint { 0.0f, 0.0f });
  842. auto end_position = TRY(text_state().font->draw_string(m_painter, start_position, string, *this));
  843. // Update text matrix
  844. auto delta_x = end_position.x() - start_position.x();
  845. m_text_rendering_matrix_is_dirty = true;
  846. m_text_matrix.translate(delta_x / text_rendering_matrix.x_scale(), 0.0f);
  847. return {};
  848. }
  849. enum UpsampleMode {
  850. StoreValuesUnchanged,
  851. UpsampleTo8Bit,
  852. };
  853. static Vector<u8> upsample_to_8_bit(ReadonlyBytes content, int samples_per_line, int bits_per_component, UpsampleMode mode)
  854. {
  855. VERIFY(bits_per_component == 1 || bits_per_component == 2 || bits_per_component == 4);
  856. Vector<u8> upsampled_storage;
  857. upsampled_storage.ensure_capacity(content.size() * 8 / bits_per_component);
  858. u8 const mask = (1 << bits_per_component) - 1;
  859. int x = 0;
  860. for (auto byte : content) {
  861. for (int i = 0; i < 8; i += bits_per_component) {
  862. auto value = (byte >> (8 - bits_per_component - i)) & mask;
  863. if (mode == UpsampleMode::UpsampleTo8Bit)
  864. upsampled_storage.append(value * (255 / mask));
  865. else
  866. upsampled_storage.append(value);
  867. ++x;
  868. // "Byte boundaries are ignored, except that each row of sample data must begin on a byte boundary."
  869. if (x == samples_per_line) {
  870. x = 0;
  871. break;
  872. }
  873. }
  874. }
  875. return upsampled_storage;
  876. }
  877. PDFErrorOr<Renderer::LoadedImage> Renderer::load_image(NonnullRefPtr<StreamObject> image)
  878. {
  879. auto image_dict = image->dict();
  880. auto width = TRY(m_document->resolve_to<int>(image_dict->get_value(CommonNames::Width)));
  881. auto height = TRY(m_document->resolve_to<int>(image_dict->get_value(CommonNames::Height)));
  882. auto is_filter = [&](DeprecatedFlyString const& name) -> PDFErrorOr<bool> {
  883. if (!image_dict->contains(CommonNames::Filter))
  884. return false;
  885. auto filter_object = TRY(image_dict->get_object(m_document, CommonNames::Filter));
  886. if (filter_object->is<NameObject>())
  887. return filter_object->cast<NameObject>()->name() == name;
  888. auto filters = filter_object->cast<ArrayObject>();
  889. if (filters->elements().is_empty())
  890. return false;
  891. auto last_filter_index = filters->elements().size() - 1;
  892. return MUST(filters->get_name_at(m_document, last_filter_index))->name() == name;
  893. };
  894. if (TRY(is_filter(CommonNames::JPXDecode))) {
  895. return Error(Error::Type::RenderingUnsupported, "JPXDecode filter");
  896. }
  897. bool is_image_mask = false;
  898. if (image_dict->contains(CommonNames::ImageMask)) {
  899. is_image_mask = TRY(m_document->resolve_to<bool>(image_dict->get_value(CommonNames::ImageMask)));
  900. }
  901. // "(Required for images, except those that use the JPXDecode filter; not allowed for image masks) [...]
  902. // it can be any type of color space except Pattern."
  903. NonnullRefPtr<ColorSpace> color_space = DeviceGrayColorSpace::the();
  904. if (!is_image_mask) {
  905. auto color_space_object = MUST(image_dict->get_object(m_document, CommonNames::ColorSpace));
  906. color_space = TRY(get_color_space_from_document(color_space_object));
  907. }
  908. auto color_rendering_intent = state().color_rendering_intent;
  909. if (image_dict->contains(CommonNames::Intent))
  910. color_rendering_intent = TRY(image_dict->get_name(m_document, CommonNames::Intent))->name();
  911. // FIXME: Do something with color_rendering_intent.
  912. // "Valid values are 1, 2, 4, 8, and (in PDF 1.5) 16."
  913. // Per spec, this is required even for /Mask images, but it's required to be 1 there.
  914. // In practice, it's sometimes missing for /Mask images.
  915. auto bits_per_component = 1;
  916. if (!is_image_mask)
  917. bits_per_component = TRY(m_document->resolve_to<int>(image_dict->get_value(CommonNames::BitsPerComponent)));
  918. switch (bits_per_component) {
  919. case 1:
  920. case 2:
  921. case 4:
  922. case 8:
  923. case 16:
  924. // Ok!
  925. break;
  926. default:
  927. return Error(Error::Type::MalformedPDF, "Image's /BitsPerComponent invalid");
  928. }
  929. auto content = image->bytes();
  930. int const n_components = color_space->number_of_components();
  931. Vector<u8> resampled_storage;
  932. if (bits_per_component < 8) {
  933. UpsampleMode mode = color_space->family() == ColorSpaceFamily::Indexed ? UpsampleMode::StoreValuesUnchanged : UpsampleMode::UpsampleTo8Bit;
  934. resampled_storage = upsample_to_8_bit(content, width * n_components, bits_per_component, mode);
  935. content = resampled_storage;
  936. bits_per_component = 8;
  937. if (is_image_mask) {
  938. // "a sample value of 0 marks the page with the current color, and a 1 leaves the previous contents unchanged."
  939. // That's opposite of the normal alpha convention, and we're upsampling masks to 8 bit and use that as normal alpha.
  940. for (u8& byte : resampled_storage)
  941. byte = ~byte;
  942. }
  943. } else if (bits_per_component == 16) {
  944. if (color_space->family() == ColorSpaceFamily::Indexed)
  945. return Error(Error::Type::RenderingUnsupported, "16 bpp indexed images not yet supported");
  946. // PDF 1.7 spec, 4.8.2 Sample Representation:
  947. // "units of 16 bits are given with the most significant byte first"
  948. // FIXME: Eventually use all 16 bits instead of throwing away the lower 8 bits.
  949. resampled_storage.ensure_capacity(content.size() / 2);
  950. for (size_t i = 0; i < content.size(); i += 2)
  951. resampled_storage.append(content[i]);
  952. content = resampled_storage;
  953. bits_per_component = 8;
  954. }
  955. Vector<float> decode_array;
  956. if (image_dict->contains(CommonNames::Decode)) {
  957. decode_array = MUST(image_dict->get_array(m_document, CommonNames::Decode))->float_elements();
  958. } else {
  959. decode_array = color_space->default_decode();
  960. }
  961. Vector<LinearInterpolation1D> component_value_decoders;
  962. component_value_decoders.ensure_capacity(decode_array.size());
  963. for (size_t i = 0; i < decode_array.size(); i += 2) {
  964. auto dmin = decode_array[i];
  965. auto dmax = decode_array[i + 1];
  966. component_value_decoders.empend(0.0f, 255.0f, dmin, dmax);
  967. }
  968. auto bitmap = MUST(Gfx::Bitmap::create(Gfx::BitmapFormat::BGRA8888, { width, height }));
  969. int x = 0;
  970. int y = 0;
  971. auto const bytes_per_component = bits_per_component / 8;
  972. Vector<float> component_values;
  973. component_values.resize(n_components);
  974. while (!content.is_empty() && y < height) {
  975. auto sample = content.slice(0, bytes_per_component * n_components);
  976. content = content.slice(bytes_per_component * n_components);
  977. for (int i = 0; i < n_components; ++i) {
  978. auto component = sample.slice(0, bytes_per_component);
  979. sample = sample.slice(bytes_per_component);
  980. component_values[i] = component_value_decoders[i].interpolate(component[0]);
  981. }
  982. auto color = TRY(color_space->style(component_values)).get<Color>();
  983. bitmap->set_pixel(x, y, color);
  984. ++x;
  985. if (x == width) {
  986. x = 0;
  987. ++y;
  988. }
  989. }
  990. return LoadedImage { bitmap, is_image_mask };
  991. }
  992. Gfx::AffineTransform Renderer::calculate_image_space_transformation(int width, int height)
  993. {
  994. // Image space maps to a 1x1 unit of user space and starts at the top-left
  995. auto image_space = state().ctm;
  996. image_space.multiply(Gfx::AffineTransform(
  997. 1.0f / width,
  998. 0.0f,
  999. 0.0f,
  1000. -1.0f / height,
  1001. 0.0f,
  1002. 1.0f));
  1003. return image_space;
  1004. }
  1005. void Renderer::show_empty_image(int width, int height)
  1006. {
  1007. auto image_space_transformation = calculate_image_space_transformation(width, height);
  1008. auto image_border = image_space_transformation.map(Gfx::IntRect { 0, 0, width, height });
  1009. m_painter.stroke_path(rect_path(image_border), Color::Black, 1);
  1010. }
  1011. static ErrorOr<void> apply_alpha_channel(NonnullRefPtr<Gfx::Bitmap> image_bitmap, NonnullRefPtr<const Gfx::Bitmap> mask_bitmap)
  1012. {
  1013. // Make alpha mask same size as image.
  1014. if (mask_bitmap->size() != image_bitmap->size())
  1015. mask_bitmap = TRY(mask_bitmap->scaled_to_size(image_bitmap->size()));
  1016. image_bitmap->add_alpha_channel();
  1017. for (int j = 0; j < image_bitmap->height(); ++j) {
  1018. for (int i = 0; i < image_bitmap->width(); ++i) {
  1019. auto image_color = image_bitmap->get_pixel(i, j);
  1020. auto mask_color = mask_bitmap->get_pixel(i, j);
  1021. image_color = image_color.with_alpha(mask_color.luminosity());
  1022. image_bitmap->set_pixel(i, j, image_color);
  1023. }
  1024. }
  1025. return {};
  1026. }
  1027. PDFErrorOr<void> Renderer::show_image(NonnullRefPtr<StreamObject> image)
  1028. {
  1029. auto image_dict = image->dict();
  1030. auto width = TRY(m_document->resolve_to<int>(image_dict->get_value(CommonNames::Width)));
  1031. auto height = TRY(m_document->resolve_to<int>(image_dict->get_value(CommonNames::Height)));
  1032. if (!m_rendering_preferences.show_images) {
  1033. show_empty_image(width, height);
  1034. return {};
  1035. }
  1036. auto image_bitmap = TRY(load_image(image));
  1037. if (image_bitmap.is_image_mask) {
  1038. // PDF 1.7 spec, 4.8.5 Masked Images, Stencil Masking:
  1039. // "An image mask (an image XObject whose ImageMask entry is true) [...] is treated as a stencil mask [...].
  1040. // Sample values [...] designate places on the page that should either be marked with the current color or masked out (not marked at all)."
  1041. if (!state().paint_style.has<Gfx::Color>())
  1042. return Error(Error::Type::RenderingUnsupported, "Image masks with pattern fill not yet implemented");
  1043. // Move mask to alpha channel, and put current color in RGB.
  1044. auto current_color = state().paint_style.get<Gfx::Color>();
  1045. for (auto& pixel : *image_bitmap.bitmap) {
  1046. u8 mask_alpha = Color::from_argb(pixel).luminosity();
  1047. pixel = current_color.with_alpha(mask_alpha).value();
  1048. }
  1049. } else if (image_dict->contains(CommonNames::SMask)) {
  1050. auto smask_bitmap = TRY(load_image(TRY(image_dict->get_stream(m_document, CommonNames::SMask))));
  1051. TRY(apply_alpha_channel(image_bitmap.bitmap, smask_bitmap.bitmap));
  1052. } else if (image_dict->contains(CommonNames::Mask)) {
  1053. auto mask_object = TRY(image_dict->get_object(m_document, CommonNames::Mask));
  1054. if (mask_object->is<StreamObject>()) {
  1055. auto mask_bitmap = TRY(load_image(mask_object->cast<StreamObject>()));
  1056. TRY(apply_alpha_channel(image_bitmap.bitmap, mask_bitmap.bitmap));
  1057. } else if (mask_object->is<ArrayObject>()) {
  1058. return Error::rendering_unsupported_error("/Mask array objects not yet implemented");
  1059. }
  1060. }
  1061. auto image_space = calculate_image_space_transformation(width, height);
  1062. auto image_rect = Gfx::FloatRect { 0, 0, width, height };
  1063. m_painter.draw_scaled_bitmap_with_transform(image_bitmap.bitmap->rect(), image_bitmap.bitmap, image_rect, image_space);
  1064. return {};
  1065. }
  1066. PDFErrorOr<NonnullRefPtr<ColorSpace>> Renderer::get_color_space_from_resources(Value const& value, NonnullRefPtr<DictObject> resources)
  1067. {
  1068. auto color_space_name = value.get<NonnullRefPtr<Object>>()->cast<NameObject>()->name();
  1069. auto maybe_color_space_family = ColorSpaceFamily::get(color_space_name);
  1070. if (!maybe_color_space_family.is_error()) {
  1071. auto color_space_family = maybe_color_space_family.release_value();
  1072. if (color_space_family.may_be_specified_directly()) {
  1073. return ColorSpace::create(color_space_name, *this);
  1074. }
  1075. }
  1076. auto color_space_resource_dict = TRY(resources->get_dict(m_document, CommonNames::ColorSpace));
  1077. if (!color_space_resource_dict->contains(color_space_name)) {
  1078. dbgln("missing key {}", color_space_name);
  1079. return Error::rendering_unsupported_error("Missing entry for color space name");
  1080. }
  1081. return get_color_space_from_document(TRY(color_space_resource_dict->get_object(m_document, color_space_name)));
  1082. }
  1083. PDFErrorOr<NonnullRefPtr<ColorSpace>> Renderer::get_color_space_from_document(NonnullRefPtr<Object> color_space_object)
  1084. {
  1085. return ColorSpace::create(m_document, color_space_object, *this);
  1086. }
  1087. Gfx::AffineTransform const& Renderer::calculate_text_rendering_matrix() const
  1088. {
  1089. if (m_text_rendering_matrix_is_dirty) {
  1090. m_text_rendering_matrix = Gfx::AffineTransform(
  1091. text_state().horizontal_scaling,
  1092. 0.0f,
  1093. 0.0f,
  1094. 1.0f,
  1095. 0.0f,
  1096. text_state().rise);
  1097. m_text_rendering_matrix.multiply(state().ctm);
  1098. m_text_rendering_matrix.multiply(m_text_matrix);
  1099. m_text_rendering_matrix_is_dirty = false;
  1100. }
  1101. return m_text_rendering_matrix;
  1102. }
  1103. PDFErrorOr<void> Renderer::render_type3_glyph(Gfx::FloatPoint point, StreamObject const& glyph_data, Gfx::AffineTransform const& font_matrix, Optional<NonnullRefPtr<DictObject>> resources)
  1104. {
  1105. ScopedState scoped_state { *this };
  1106. auto text_rendering_matrix = calculate_text_rendering_matrix();
  1107. text_rendering_matrix.set_translation(point);
  1108. state().ctm = text_rendering_matrix;
  1109. state().ctm.scale(text_state().font_size, text_state().font_size);
  1110. state().ctm.multiply(font_matrix);
  1111. m_text_rendering_matrix_is_dirty = true;
  1112. auto operators = TRY(Parser::parse_operators(m_document, glyph_data.bytes()));
  1113. for (auto& op : operators)
  1114. TRY(handle_operator(op, resources));
  1115. return {};
  1116. }
  1117. }