Document.cpp 13 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 <LibPDF/CommonNames.h>
  7. #include <LibPDF/Document.h>
  8. #include <LibPDF/Parser.h>
  9. namespace PDF {
  10. DeprecatedString OutlineItem::to_deprecated_string(int indent) const
  11. {
  12. auto indent_str = DeprecatedString::repeated(" "sv, indent + 1);
  13. StringBuilder child_builder;
  14. child_builder.append('[');
  15. for (auto& child : children)
  16. child_builder.appendff("{}\n", child.to_deprecated_string(indent + 1));
  17. child_builder.appendff("{}]", indent_str);
  18. StringBuilder builder;
  19. builder.append("OutlineItem {{\n"sv);
  20. builder.appendff("{}title={}\n", indent_str, title);
  21. builder.appendff("{}count={}\n", indent_str, count);
  22. builder.appendff("{}dest={}\n", indent_str, dest);
  23. builder.appendff("{}color={}\n", indent_str, color);
  24. builder.appendff("{}italic={}\n", indent_str, italic);
  25. builder.appendff("{}bold={}\n", indent_str, bold);
  26. builder.appendff("{}children={}\n", indent_str, child_builder.to_deprecated_string());
  27. builder.appendff("{}}}", DeprecatedString::repeated(" "sv, indent));
  28. return builder.to_deprecated_string();
  29. }
  30. PDFErrorOr<NonnullRefPtr<Document>> Document::create(ReadonlyBytes bytes)
  31. {
  32. auto parser = adopt_ref(*new DocumentParser({}, bytes));
  33. auto document = adopt_ref(*new Document(parser));
  34. TRY(parser->initialize());
  35. document->m_trailer = parser->trailer();
  36. document->m_catalog = TRY(parser->trailer()->get_dict(document, CommonNames::Root));
  37. if (document->m_trailer->contains(CommonNames::Encrypt)) {
  38. auto encryption_dict = TRY(document->m_trailer->get_dict(document, CommonNames::Encrypt));
  39. document->m_security_handler = TRY(SecurityHandler::create(document, encryption_dict));
  40. // Automatically attempt to unencrypt the document with the empty string. The
  41. // result is not important; it is the caller's responsibility to ensure the
  42. // document is unencrypted before calling initialize().
  43. document->m_security_handler->try_provide_user_password(""sv);
  44. }
  45. return document;
  46. }
  47. Document::Document(NonnullRefPtr<DocumentParser> const& parser)
  48. : m_parser(parser)
  49. {
  50. m_parser->set_document(this);
  51. }
  52. PDFErrorOr<void> Document::initialize()
  53. {
  54. if (m_security_handler)
  55. VERIFY(m_security_handler->has_user_password());
  56. TRY(build_page_tree());
  57. TRY(build_outline());
  58. return {};
  59. }
  60. PDFErrorOr<Value> Document::get_or_load_value(u32 index)
  61. {
  62. auto value = get_value(index);
  63. if (!value.has<Empty>()) // FIXME: Use Optional instead?
  64. return value;
  65. auto object = TRY(m_parser->parse_object_with_index(index));
  66. m_values.set(index, object);
  67. return object;
  68. }
  69. u32 Document::get_first_page_index() const
  70. {
  71. // FIXME: A PDF can have a different default first page, which
  72. // should be fetched and returned here
  73. return 0;
  74. }
  75. u32 Document::get_page_count() const
  76. {
  77. return m_page_object_indices.size();
  78. }
  79. PDFErrorOr<Page> Document::get_page(u32 index)
  80. {
  81. VERIFY(index < m_page_object_indices.size());
  82. auto cached_page = m_pages.get(index);
  83. if (cached_page.has_value())
  84. return cached_page.value();
  85. auto page_object_index = m_page_object_indices[index];
  86. auto page_object = TRY(get_or_load_value(page_object_index));
  87. auto raw_page_object = TRY(resolve_to<DictObject>(page_object));
  88. auto resources = TRY(get_inheritable_object(CommonNames::Resources, raw_page_object))->cast<DictObject>();
  89. auto contents = TRY(raw_page_object->get_object(this, CommonNames::Contents));
  90. auto media_box_array = TRY(get_inheritable_object(CommonNames::MediaBox, raw_page_object))->cast<ArrayObject>();
  91. auto media_box = Rectangle {
  92. media_box_array->at(0).to_float(),
  93. media_box_array->at(1).to_float(),
  94. media_box_array->at(2).to_float(),
  95. media_box_array->at(3).to_float(),
  96. };
  97. auto crop_box = media_box;
  98. if (raw_page_object->contains(CommonNames::CropBox)) {
  99. auto crop_box_array = TRY(raw_page_object->get_array(this, CommonNames::CropBox));
  100. crop_box = Rectangle {
  101. crop_box_array->at(0).to_float(),
  102. crop_box_array->at(1).to_float(),
  103. crop_box_array->at(2).to_float(),
  104. crop_box_array->at(3).to_float(),
  105. };
  106. }
  107. float user_unit = 1.0f;
  108. if (raw_page_object->contains(CommonNames::UserUnit))
  109. user_unit = raw_page_object->get_value(CommonNames::UserUnit).to_float();
  110. int rotate = 0;
  111. if (raw_page_object->contains(CommonNames::Rotate)) {
  112. rotate = raw_page_object->get_value(CommonNames::Rotate).get<int>();
  113. VERIFY(rotate % 90 == 0);
  114. }
  115. Page page { move(resources), move(contents), media_box, crop_box, user_unit, rotate };
  116. m_pages.set(index, page);
  117. return page;
  118. }
  119. PDFErrorOr<Value> Document::resolve(Value const& value)
  120. {
  121. if (value.has<Reference>()) {
  122. // FIXME: Surely indirect PDF objects can't contain another indirect PDF object,
  123. // right? Unsure from the spec, but if they can, these return values would have
  124. // to be wrapped with another resolve() call.
  125. return get_or_load_value(value.as_ref_index());
  126. }
  127. if (!value.has<NonnullRefPtr<Object>>())
  128. return value;
  129. auto& obj = value.get<NonnullRefPtr<Object>>();
  130. if (obj->is<IndirectValue>())
  131. return static_ptr_cast<IndirectValue>(obj)->value();
  132. return value;
  133. }
  134. PDFErrorOr<void> Document::build_page_tree()
  135. {
  136. auto page_tree = TRY(m_catalog->get_dict(this, CommonNames::Pages));
  137. return add_page_tree_node_to_page_tree(page_tree);
  138. }
  139. PDFErrorOr<void> Document::add_page_tree_node_to_page_tree(NonnullRefPtr<DictObject> const& page_tree)
  140. {
  141. auto kids_array = TRY(page_tree->get_array(this, CommonNames::Kids));
  142. auto page_count = page_tree->get(CommonNames::Count).value().get<int>();
  143. if (static_cast<size_t>(page_count) != kids_array->elements().size()) {
  144. // This page tree contains child page trees, so we recursively add
  145. // these pages to the overall page tree
  146. for (auto& value : *kids_array) {
  147. auto reference_index = value.as_ref_index();
  148. auto maybe_page_tree_node = TRY(m_parser->conditionally_parse_page_tree_node(reference_index));
  149. if (maybe_page_tree_node) {
  150. TRY(add_page_tree_node_to_page_tree(maybe_page_tree_node.release_nonnull()));
  151. } else {
  152. m_page_object_indices.append(reference_index);
  153. }
  154. }
  155. } else {
  156. // We know all of the kids are leaf nodes
  157. for (auto& value : *kids_array)
  158. m_page_object_indices.append(value.as_ref_index());
  159. }
  160. return {};
  161. }
  162. PDFErrorOr<void> Document::build_outline()
  163. {
  164. if (!m_catalog->contains(CommonNames::Outlines))
  165. return {};
  166. auto outline_dict = TRY(m_catalog->get_dict(this, CommonNames::Outlines));
  167. if (!outline_dict->contains(CommonNames::First))
  168. return {};
  169. if (!outline_dict->contains(CommonNames::Last))
  170. return {};
  171. auto first_ref = outline_dict->get_value(CommonNames::First);
  172. auto children = TRY(build_outline_item_chain(first_ref));
  173. m_outline = adopt_ref(*new OutlineDict());
  174. m_outline->children = move(children);
  175. if (outline_dict->contains(CommonNames::Count))
  176. m_outline->count = outline_dict->get_value(CommonNames::Count).get<int>();
  177. return {};
  178. }
  179. PDFErrorOr<Destination> Document::create_destination_from_parameters(NonnullRefPtr<ArrayObject> array)
  180. {
  181. auto page_ref = array->at(0);
  182. auto type_name = TRY(array->get_name_at(this, 1))->name();
  183. Vector<float> parameters;
  184. for (size_t i = 2; i < array->size(); i++)
  185. parameters.append(array->at(i).to_float());
  186. Destination::Type type;
  187. if (type_name == CommonNames::XYZ) {
  188. type = Destination::Type::XYZ;
  189. } else if (type_name == CommonNames::Fit) {
  190. type = Destination::Type::Fit;
  191. } else if (type_name == CommonNames::FitH) {
  192. type = Destination::Type::FitH;
  193. } else if (type_name == CommonNames::FitV) {
  194. type = Destination::Type::FitV;
  195. } else if (type_name == CommonNames::FitR) {
  196. type = Destination::Type::FitR;
  197. } else if (type_name == CommonNames::FitB) {
  198. type = Destination::Type::FitB;
  199. } else if (type_name == CommonNames::FitBH) {
  200. type = Destination::Type::FitBH;
  201. } else if (type_name == CommonNames::FitBV) {
  202. type = Destination::Type::FitBV;
  203. } else {
  204. VERIFY_NOT_REACHED();
  205. }
  206. return Destination { type, page_ref, parameters };
  207. }
  208. PDFErrorOr<NonnullRefPtr<Object>> Document::get_inheritable_object(FlyString const& name, NonnullRefPtr<DictObject> object)
  209. {
  210. if (!object->contains(name)) {
  211. auto parent = TRY(object->get_dict(this, CommonNames::Parent));
  212. return get_inheritable_object(name, parent);
  213. }
  214. return object->get_object(this, name);
  215. }
  216. PDFErrorOr<NonnullRefPtr<OutlineItem>> Document::build_outline_item(NonnullRefPtr<DictObject> const& outline_item_dict)
  217. {
  218. auto outline_item = adopt_ref(*new OutlineItem {});
  219. if (outline_item_dict->contains(CommonNames::First)) {
  220. VERIFY(outline_item_dict->contains(CommonNames::Last));
  221. auto first_ref = outline_item_dict->get_value(CommonNames::First);
  222. auto children = TRY(build_outline_item_chain(first_ref));
  223. outline_item->children = move(children);
  224. }
  225. outline_item->title = TRY(outline_item_dict->get_string(this, CommonNames::Title))->string();
  226. if (outline_item_dict->contains(CommonNames::Count))
  227. outline_item->count = outline_item_dict->get_value(CommonNames::Count).get<int>();
  228. if (outline_item_dict->contains(CommonNames::Dest)) {
  229. auto dest_obj = TRY(outline_item_dict->get_object(this, CommonNames::Dest));
  230. if (dest_obj->is<ArrayObject>()) {
  231. auto dest_arr = dest_obj->cast<ArrayObject>();
  232. outline_item->dest = TRY(create_destination_from_parameters(dest_arr));
  233. } else if (dest_obj->is<NameObject>()) {
  234. auto dest_name = dest_obj->cast<NameObject>()->name();
  235. if (auto dests_value = m_catalog->get(CommonNames::Dests); dests_value.has_value()) {
  236. auto dests = dests_value.value().get<NonnullRefPtr<Object>>()->cast<DictObject>();
  237. auto entry = MUST(dests->get_object(this, dest_name));
  238. if (entry->is<ArrayObject>()) {
  239. auto entry_array = entry->cast<ArrayObject>();
  240. outline_item->dest = TRY(create_destination_from_parameters(entry_array));
  241. } else {
  242. auto entry_dictionary = entry->cast<DictObject>();
  243. auto d_array = MUST(entry_dictionary->get_array(this, CommonNames::D));
  244. outline_item->dest = TRY(create_destination_from_parameters(d_array));
  245. }
  246. } else {
  247. return Error { Error::Type::MalformedPDF, "Malformed outline destination" };
  248. }
  249. }
  250. }
  251. if (outline_item_dict->contains(CommonNames::C)) {
  252. auto color_array = TRY(outline_item_dict->get_array(this, CommonNames::C));
  253. auto r = static_cast<int>(255.0f * color_array->at(0).get<float>());
  254. auto g = static_cast<int>(255.0f * color_array->at(1).get<float>());
  255. auto b = static_cast<int>(255.0f * color_array->at(2).get<float>());
  256. outline_item->color = Color(r, g, b);
  257. }
  258. if (outline_item_dict->contains(CommonNames::F)) {
  259. auto bitfield = outline_item_dict->get_value(CommonNames::F).get<int>();
  260. outline_item->italic = bitfield & 0x1;
  261. outline_item->bold = bitfield & 0x2;
  262. }
  263. return outline_item;
  264. }
  265. PDFErrorOr<NonnullRefPtrVector<OutlineItem>> Document::build_outline_item_chain(Value const& first_ref)
  266. {
  267. // We used to receive a last_ref parameter, which was what the parent of this chain
  268. // thought was this chain's last child. There are documents out there in the wild
  269. // where this cross-references don't match though, and it seems like simply following
  270. // the /First and /Next links is the way to go to construct the whole Outline
  271. // (we already ignore the /Parent attribute too, which can also be out of sync).
  272. VERIFY(first_ref.has<Reference>());
  273. NonnullRefPtrVector<OutlineItem> children;
  274. auto first_value = TRY(get_or_load_value(first_ref.as_ref_index())).get<NonnullRefPtr<Object>>();
  275. auto first_dict = first_value->cast<DictObject>();
  276. auto first = TRY(build_outline_item(first_dict));
  277. children.append(first);
  278. auto current_child_dict = first_dict;
  279. u32 current_child_index = first_ref.as_ref_index();
  280. while (current_child_dict->contains(CommonNames::Next)) {
  281. auto next_child_dict_ref = current_child_dict->get_value(CommonNames::Next);
  282. current_child_index = next_child_dict_ref.as_ref_index();
  283. auto next_child_value = TRY(get_or_load_value(current_child_index)).get<NonnullRefPtr<Object>>();
  284. auto next_child_dict = next_child_value->cast<DictObject>();
  285. auto next_child = TRY(build_outline_item(next_child_dict));
  286. children.append(next_child);
  287. current_child_dict = move(next_child_dict);
  288. }
  289. return children;
  290. }
  291. }