// Copyright (c) 2016, the Dart project authors. Please see the AUTHORS file // for details. All rights reserved. Use of this source code is governed by a // BSD-style license that can be found in the LICENSE file. #ifndef RUNTIME_VM_KERNEL_H_ #define RUNTIME_VM_KERNEL_H_ #if !defined(DART_PRECOMPILED_RUNTIME) #include "platform/assert.h" #include "vm/allocation.h" #include "vm/globals.h" #include "vm/growable_array.h" #include "vm/object.h" #include "vm/token_position.h" namespace dart { class Field; class ParsedFunction; class Zone; namespace kernel { class Reader; class StringIndex { public: StringIndex() : value_(-1) {} explicit StringIndex(int value) : value_(value) {} operator int() const { return value_; } private: int value_; }; class NameIndex { public: NameIndex() : value_(-1) {} explicit NameIndex(int value) : value_(value) {} operator int() const { return value_; } private: int value_; }; const uint8_t kNativeYieldFlags = 0x2; enum LogicalOperator { kAnd, kOr }; class Program { public: ~Program() { if (buffer_ownership_ && kernel_data_ != NULL) { ASSERT(release_callback != NULL); release_callback(const_cast(kernel_data_)); } kernel_data_ = NULL; } /** * Read a kernel Program from the given Reader. Note the returned Program * can potentially contain several "sub programs", though the library count * etc will reference the last "sub program" only. * @param reader * @param take_buffer_ownership if set to true, the release callback will be * called upon Program destruction, i.e. the data from reader will likely be * released. If set to false the data will not be released. This is for * instance useful for creating Programs out of "sub programs" where each * "sub program" should not try to release the buffer. * @return */ static Program* ReadFrom(Reader* reader, bool take_buffer_ownership = true); bool is_single_program() { return single_program_; } NameIndex main_method() { return main_method_reference_; } intptr_t source_table_offset() const { return source_table_offset_; } intptr_t string_table_offset() const { return string_table_offset_; } intptr_t name_table_offset() const { return name_table_offset_; } const uint8_t* kernel_data() { return kernel_data_; } intptr_t kernel_data_size() { return kernel_data_size_; } intptr_t library_count() { return library_count_; } void set_release_buffer_callback(Dart_ReleaseBufferCallback callback) { release_callback = callback; } private: Program() : kernel_data_(NULL), kernel_data_size_(-1), release_callback(NULL) {} bool single_program_; bool buffer_ownership_; NameIndex main_method_reference_; // Procedure. intptr_t library_count_; // The offset from the start of the binary to the start of the source table. intptr_t source_table_offset_; // The offset from the start of the binary to the canonical name table. intptr_t name_table_offset_; // The offset from the start of the binary to the start of the string table. intptr_t string_table_offset_; const uint8_t* kernel_data_; intptr_t kernel_data_size_; Dart_ReleaseBufferCallback release_callback; DISALLOW_COPY_AND_ASSIGN(Program); }; ParsedFunction* ParseStaticFieldInitializer(Zone* zone, const Field& field); bool FieldHasFunctionLiteralInitializer(const Field& field, TokenPosition* start, TokenPosition* end); } // namespace kernel kernel::Program* ReadPrecompiledKernelFromBuffer(const uint8_t* buffer, intptr_t buffer_length); } // namespace dart #endif // !defined(DART_PRECOMPILED_RUNTIME) #endif // RUNTIME_VM_KERNEL_H_