SpecParser.cpp 7.2 KB

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  1. /*
  2. * Copyright (c) 2023, Dan Klishch <danilklishch@gmail.com>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <AK/NonnullOwnPtr.h>
  7. #include <LibCore/File.h>
  8. #include <LibXML/Parser/Parser.h>
  9. #include "Function.h"
  10. #include "Parser/Lexer.h"
  11. #include "Parser/SpecParser.h"
  12. #include "Parser/TextParser.h"
  13. #include "Parser/XMLUtils.h"
  14. namespace JSSpecCompiler {
  15. ParseErrorOr<AlgorithmStep> AlgorithmStep::create(XML::Node const* node)
  16. {
  17. VERIFY(node->as_element().name == tag_li);
  18. auto [tokens, substeps] = TRY(tokenize_tree(node, true));
  19. AlgorithmStep result { .m_tokens = move(tokens), .m_node = node };
  20. if (substeps)
  21. result.m_substeps = TRY(AlgorithmStepList::create(substeps->as_element())).m_expression;
  22. result.m_expression = TRY(result.parse());
  23. return result;
  24. }
  25. ParseErrorOr<Tree> AlgorithmStep::parse()
  26. {
  27. TextParser parser(m_tokens, m_node);
  28. if (m_substeps)
  29. return parser.parse_step_with_substeps(RefPtr(m_substeps).release_nonnull());
  30. else
  31. return parser.parse_step_without_substeps();
  32. }
  33. ParseErrorOr<AlgorithmStepList> AlgorithmStepList::create(XML::Node::Element const& element)
  34. {
  35. VERIFY(element.name == tag_ol);
  36. AlgorithmStepList result;
  37. auto& steps = result.m_steps;
  38. Vector<Tree> step_expressions;
  39. for (auto const& child : element.children) {
  40. TRY(child->content.visit(
  41. [&](XML::Node::Element const& element) -> ParseErrorOr<void> {
  42. if (element.name != tag_li)
  43. return ParseError::create("<emu-alg> <ol> > :not(<li>) should not match any elements"sv, child);
  44. steps.append(TRY(AlgorithmStep::create(child)));
  45. step_expressions.append(steps.last().m_expression);
  46. return {};
  47. },
  48. [&](XML::Node::Text const&) -> ParseErrorOr<void> {
  49. if (!contains_empty_text(child))
  50. return ParseError::create("<emu-alg> <ol> should not have non-empty child text nodes"sv, child);
  51. return {};
  52. },
  53. move(ignore_comments)));
  54. }
  55. result.m_expression = make_ref_counted<TreeList>(move(step_expressions));
  56. return result;
  57. }
  58. ParseErrorOr<Algorithm> Algorithm::create(XML::Node const* node)
  59. {
  60. VERIFY(node->as_element().name == tag_emu_alg);
  61. XML::Node::Element const* steps_list = nullptr;
  62. for (auto const& child : node->as_element().children) {
  63. TRY(child->content.visit(
  64. [&](XML::Node::Element const& element) -> ParseErrorOr<void> {
  65. if (element.name == tag_ol) {
  66. if (steps_list != nullptr)
  67. return ParseError::create("<emu-alg> should have exactly one <ol> child"sv, child);
  68. steps_list = &element;
  69. return {};
  70. } else {
  71. return ParseError::create("<emu-alg> should not have children other than <ol>"sv, child);
  72. }
  73. },
  74. [&](XML::Node::Text const&) -> ParseErrorOr<void> {
  75. if (!contains_empty_text(child))
  76. return ParseError::create("<emu-alg> should not have non-empty child text nodes"sv, child);
  77. return {};
  78. },
  79. move(ignore_comments)));
  80. }
  81. if (steps_list == nullptr)
  82. return ParseError::create("<emu-alg> should have exactly one <ol> child"sv, node);
  83. Algorithm algorithm;
  84. algorithm.m_steps = TRY(AlgorithmStepList::create(*steps_list));
  85. algorithm.m_tree = algorithm.m_steps.m_expression;
  86. return algorithm;
  87. }
  88. ParseErrorOr<SpecFunction> SpecFunction::create(XML::Node const* element)
  89. {
  90. VERIFY(element->as_element().name == tag_emu_clause);
  91. SpecFunction result;
  92. result.m_id = TRY(get_attribute_by_name(element, attribute_id));
  93. result.m_name = TRY(get_attribute_by_name(element, attribute_aoid));
  94. u32 children_count = 0;
  95. bool has_definition = false;
  96. XML::Node const* algorithm_node = nullptr;
  97. XML::Node const* prose_node = nullptr;
  98. for (auto const& child : element->as_element().children) {
  99. TRY(child->content.visit(
  100. [&](XML::Node::Element const& element) -> ParseErrorOr<void> {
  101. ++children_count;
  102. if (element.name == tag_h1) {
  103. if (children_count != 1)
  104. return ParseError::create("<h1> should be the first child of a <emu-clause>"sv, child);
  105. TRY(result.parse_definition(child));
  106. has_definition = true;
  107. } else if (element.name == tag_p) {
  108. if (prose_node == nullptr)
  109. prose_node = child;
  110. } else if (element.name == tag_emu_alg) {
  111. algorithm_node = child;
  112. } else {
  113. return ParseError::create("Unknown child of <emu-clause>"sv, child);
  114. }
  115. return {};
  116. },
  117. [&](XML::Node::Text const&) -> ParseErrorOr<void> {
  118. if (!contains_empty_text(child)) {
  119. return ParseError::create("<emu-clause> should not have non-empty child text nodes"sv, child);
  120. }
  121. return {};
  122. },
  123. move(ignore_comments)));
  124. }
  125. if (algorithm_node == nullptr)
  126. return ParseError::create("No <emu-alg>"sv, element);
  127. if (prose_node == nullptr)
  128. return ParseError::create("No prose element"sv, element);
  129. if (!has_definition)
  130. return ParseError::create("Definition was not found"sv, element);
  131. result.m_algorithm = TRY(Algorithm::create(algorithm_node));
  132. return result;
  133. }
  134. ParseErrorOr<void> SpecFunction::parse_definition(XML::Node const* element)
  135. {
  136. auto tokens = TRY(tokenize_tree(element));
  137. TextParser parser(tokens.tokens, element);
  138. auto [section_number, function_name, arguments] = TRY(parser.parse_definition());
  139. if (function_name != m_name)
  140. return ParseError::create("Function name in definition differs from <emu-clause>[aoid]"sv, element);
  141. m_section_number = section_number;
  142. for (auto const& argument : arguments)
  143. m_arguments.append({ argument });
  144. return {};
  145. }
  146. SpecParsingStep::SpecParsingStep()
  147. : CompilationStep("parser"sv)
  148. {
  149. }
  150. SpecParsingStep::~SpecParsingStep() = default;
  151. void SpecParsingStep::run(TranslationUnitRef translation_unit)
  152. {
  153. auto filename = translation_unit->filename;
  154. auto file = Core::File::open_file_or_standard_stream(filename, Core::File::OpenMode::Read).release_value_but_fixme_should_propagate_errors();
  155. m_input = file->read_until_eof().release_value_but_fixme_should_propagate_errors();
  156. XML::Parser parser { m_input };
  157. auto document = parser.parse().release_value_but_fixme_should_propagate_errors();
  158. m_document = AK::adopt_own_if_nonnull(new XML::Document(move(document)));
  159. auto spec_function = SpecFunction::create(&m_document->root()).release_value_but_fixme_should_propagate_errors();
  160. auto* function = translation_unit->adopt_function(
  161. make_ref_counted<FunctionDefinition>(spec_function.m_name, spec_function.m_algorithm.m_tree));
  162. for (auto const& argument : spec_function.m_arguments)
  163. function->m_local_variables.set(argument.name, make_ref_counted<VariableDeclaration>(argument.name));
  164. }
  165. }