mirror of
https://github.com/google/flatbuffers.git
synced 2026-06-02 12:05:50 +00:00
1621 lines
60 KiB
C++
1621 lines
60 KiB
C++
/*
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* Copyright 2014 Google Inc. All rights reserved.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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// independent from idl_parser, since this code is not needed for most clients
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#include <algorithm>
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#include <cassert>
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#include <unordered_map>
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#include <unordered_set>
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#include "flatbuffers/code_generators.h"
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#include "flatbuffers/flatbuffers.h"
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#include "flatbuffers/idl.h"
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#include "flatbuffers/util.h"
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namespace flatbuffers {
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struct ImportDefinition {
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std::string name;
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std::string import_statement;
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std::string export_statement;
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std::string bare_file_path;
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std::string rel_file_path;
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const Definition *dependent;
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const Definition *dependency;
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};
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enum AnnotationType { kParam = 0, kType = 1, kReturns = 2 };
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namespace ts {
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// Iterate through all definitions we haven't generate code for (enums, structs,
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// and tables) and output them to a single file.
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class TsGenerator : public BaseGenerator {
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public:
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typedef std::map<std::string, ImportDefinition> import_set;
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TsGenerator(const Parser &parser, const std::string &path,
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const std::string &file_name)
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: BaseGenerator(parser, path, file_name, "", ".", "ts") {}
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bool generate() {
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generateEnums();
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generateStructs();
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generateEntry();
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return true;
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}
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// Save out the generated code for a single class while adding
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// declaration boilerplate.
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bool SaveType(const Definition &definition, const std::string &classcode,
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import_set &imports, import_set &bare_imports) const {
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if (!classcode.length()) return true;
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std::string code =
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"// " + std::string(FlatBuffersGeneratedWarning()) + "\n\n";
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for (auto it = bare_imports.begin(); it != bare_imports.end(); it++)
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code += it->second.import_statement + "\n";
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if (!bare_imports.empty()) code += "\n";
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for (auto it = imports.begin(); it != imports.end(); it++)
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if (it->second.dependency != &definition) // do not import itself
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code += it->second.import_statement + "\n";
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if (!imports.empty()) code += "\n\n";
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code += classcode;
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auto filename = NamespaceDir(*definition.defined_namespace, true) +
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ToDasherizedCase(definition.name) + ".ts";
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return SaveFile(filename.c_str(), code, false);
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}
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private:
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import_set imports_all_;
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// Generate code for all enums.
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void generateEnums() {
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for (auto it = parser_.enums_.vec.begin(); it != parser_.enums_.vec.end();
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++it) {
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import_set bare_imports;
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import_set imports;
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std::string enumcode;
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auto &enum_def = **it;
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GenEnum(enum_def, &enumcode, imports, false);
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GenEnum(enum_def, &enumcode, imports, true);
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SaveType(enum_def, enumcode, imports, bare_imports);
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imports_all_.insert(imports.begin(), imports.end());
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}
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}
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// Generate code for all structs.
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void generateStructs() {
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for (auto it = parser_.structs_.vec.begin();
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it != parser_.structs_.vec.end(); ++it) {
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import_set bare_imports;
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import_set imports;
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AddImport(bare_imports, "* as flatbuffers", "flatbuffers");
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auto &struct_def = **it;
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std::string declcode;
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GenStruct(parser_, struct_def, &declcode, imports);
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SaveType(struct_def, declcode, imports, bare_imports);
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imports_all_.insert(imports.begin(), imports.end());
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}
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}
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// Generate code for a single entry point module.
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void generateEntry() {
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std::string code;
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for (auto it = imports_all_.begin(); it != imports_all_.end(); it++)
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code += it->second.export_statement + "\n";
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std::string path = "./" + path_ + file_name_ + ".ts";
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SaveFile(path.c_str(), code, false);
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}
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// Generate a documentation comment, if available.
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static void GenDocComment(const std::vector<std::string> &dc,
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std::string *code_ptr,
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const char *indent = nullptr) {
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if (dc.empty()) {
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// Don't output empty comment blocks with 0 lines of comment content.
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return;
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}
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std::string &code = *code_ptr;
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if (indent) code += indent;
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code += "/**\n";
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for (auto it = dc.begin(); it != dc.end(); ++it) {
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if (indent) code += indent;
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code += " *" + *it + "\n";
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}
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if (indent) code += indent;
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code += " */\n";
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}
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static void GenDocComment(std::string *code_ptr) {
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GenDocComment(std::vector<std::string>(), code_ptr);
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}
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// Generate an enum declaration and an enum string lookup table.
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void GenEnum(EnumDef &enum_def, std::string *code_ptr, import_set &imports,
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bool reverse) {
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if (enum_def.generated) return;
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if (reverse) return; // FIXME.
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std::string &code = *code_ptr;
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GenDocComment(enum_def.doc_comment, code_ptr);
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std::string ns = GetNameSpace(enum_def);
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std::string enum_def_name = enum_def.name + (reverse ? "Name" : "");
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code += "export enum " + enum_def.name + "{\n";
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for (auto it = enum_def.Vals().begin(); it != enum_def.Vals().end(); ++it) {
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auto &ev = **it;
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if (!ev.doc_comment.empty()) {
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if (it != enum_def.Vals().begin()) { code += '\n'; }
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GenDocComment(ev.doc_comment, code_ptr, " ");
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}
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// Generate mapping between EnumName: EnumValue(int)
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if (reverse) {
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code += " '" + enum_def.ToString(ev) + "'";
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code += " = ";
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code += "'" + ev.name + "'";
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} else {
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code += " " + ev.name;
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code += " = ";
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code += enum_def.ToString(ev);
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}
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code += (it + 1) != enum_def.Vals().end() ? ",\n" : "\n";
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}
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code += "}";
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if (enum_def.is_union) {
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code += GenUnionConvFunc(enum_def.underlying_type, imports);
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}
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code += "\n\n";
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}
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static std::string GenType(const Type &type) {
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switch (type.base_type) {
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case BASE_TYPE_BOOL:
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case BASE_TYPE_CHAR: return "Int8";
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case BASE_TYPE_UTYPE:
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case BASE_TYPE_UCHAR: return "Uint8";
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case BASE_TYPE_SHORT: return "Int16";
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case BASE_TYPE_USHORT: return "Uint16";
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case BASE_TYPE_INT: return "Int32";
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case BASE_TYPE_UINT: return "Uint32";
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case BASE_TYPE_LONG: return "Int64";
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case BASE_TYPE_ULONG: return "Uint64";
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case BASE_TYPE_FLOAT: return "Float32";
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case BASE_TYPE_DOUBLE: return "Float64";
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case BASE_TYPE_STRING: return "String";
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case BASE_TYPE_VECTOR: return GenType(type.VectorType());
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case BASE_TYPE_STRUCT: return type.struct_def->name;
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default: return "flatbuffers.Table";
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}
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}
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std::string GenGetter(const Type &type, const std::string &arguments) {
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switch (type.base_type) {
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case BASE_TYPE_STRING: return GenBBAccess() + ".__string" + arguments;
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case BASE_TYPE_STRUCT: return GenBBAccess() + ".__struct" + arguments;
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case BASE_TYPE_UNION:
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if (!UnionHasStringType(*type.enum_def)) {
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return GenBBAccess() + ".__union" + arguments;
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}
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return GenBBAccess() + ".__union_with_string" + arguments;
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case BASE_TYPE_VECTOR: return GenGetter(type.VectorType(), arguments);
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default: {
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auto getter =
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GenBBAccess() + ".read" + MakeCamel(GenType(type)) + arguments;
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if (type.base_type == BASE_TYPE_BOOL) { getter = "!!" + getter; }
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return getter;
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}
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}
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}
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std::string GenBBAccess() const { return "this.bb!"; }
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std::string GenDefaultValue(const FieldDef &field, const std::string &context,
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import_set &imports) {
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if (field.IsScalarOptional()) { return "null"; }
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const auto &value = field.value;
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if (value.type.enum_def && value.type.base_type != BASE_TYPE_UNION &&
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value.type.base_type != BASE_TYPE_VECTOR) {
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if (auto val = value.type.enum_def->FindByValue(value.constant)) {
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return AddImport(imports, *value.type.enum_def, *value.type.enum_def) +
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"." + val->name;
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} else {
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return value.constant;
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}
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}
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switch (value.type.base_type) {
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case BASE_TYPE_BOOL: return value.constant == "0" ? "false" : "true";
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case BASE_TYPE_STRING:
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case BASE_TYPE_UNION:
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case BASE_TYPE_STRUCT: {
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return "null";
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}
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case BASE_TYPE_VECTOR: return "[]";
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case BASE_TYPE_LONG:
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case BASE_TYPE_ULONG: {
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int64_t constant = StringToInt(value.constant.c_str());
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std::string createLong = context + ".createLong";
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return createLong + "(" + NumToString(static_cast<int32_t>(constant)) +
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", " + NumToString(static_cast<int32_t>(constant >> 32)) + ")";
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}
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default: return value.constant;
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}
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}
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std::string GenTypeName(import_set &imports, const Definition &owner,
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const Type &type, bool input,
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bool allowNull = false) {
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if (!input) {
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if (IsString(type) || type.base_type == BASE_TYPE_STRUCT) {
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std::string name;
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if (IsString(type)) {
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name = "string|Uint8Array";
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} else {
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name = AddImport(imports, owner, *type.struct_def);
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}
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return allowNull ? (name + "|null") : name;
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}
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}
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switch (type.base_type) {
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case BASE_TYPE_BOOL: return allowNull ? "boolean|null" : "boolean";
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case BASE_TYPE_LONG:
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case BASE_TYPE_ULONG:
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return allowNull ? "flatbuffers.Long|null" : "flatbuffers.Long";
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default:
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if (IsScalar(type.base_type)) {
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if (type.enum_def) {
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const auto enum_name = AddImport(imports, owner, *type.enum_def);
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return allowNull ? (enum_name + "|null") : enum_name;
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}
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return allowNull ? "number|null" : "number";
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}
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return "flatbuffers.Offset";
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}
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}
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// Returns the method name for use with add/put calls.
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static std::string GenWriteMethod(const Type &type) {
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// Forward to signed versions since unsigned versions don't exist
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switch (type.base_type) {
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case BASE_TYPE_UTYPE:
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case BASE_TYPE_UCHAR: return GenWriteMethod(Type(BASE_TYPE_CHAR));
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case BASE_TYPE_USHORT: return GenWriteMethod(Type(BASE_TYPE_SHORT));
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case BASE_TYPE_UINT: return GenWriteMethod(Type(BASE_TYPE_INT));
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case BASE_TYPE_ULONG: return GenWriteMethod(Type(BASE_TYPE_LONG));
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default: break;
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}
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return IsScalar(type.base_type) ? MakeCamel(GenType(type))
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: (IsStruct(type) ? "Struct" : "Offset");
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}
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template<typename T> static std::string MaybeAdd(T value) {
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return value != 0 ? " + " + NumToString(value) : "";
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}
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template<typename T> static std::string MaybeScale(T value) {
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return value != 1 ? " * " + NumToString(value) : "";
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}
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void GenStructArgs(import_set &imports, const StructDef &struct_def,
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std::string *arguments, const std::string &nameprefix) {
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for (auto it = struct_def.fields.vec.begin();
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it != struct_def.fields.vec.end(); ++it) {
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auto &field = **it;
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if (IsStruct(field.value.type)) {
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// Generate arguments for a struct inside a struct. To ensure names
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// don't clash, and to make it obvious these arguments are constructing
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// a nested struct, prefix the name with the field name.
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GenStructArgs(imports, *field.value.type.struct_def, arguments,
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nameprefix + field.name + "_");
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} else {
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*arguments += ", " + nameprefix + field.name + ": " +
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GenTypeName(imports, field, field.value.type, true,
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field.IsOptional());
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}
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}
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}
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static void GenStructBody(const StructDef &struct_def, std::string *body,
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const std::string &nameprefix) {
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*body += " builder.prep(";
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*body += NumToString(struct_def.minalign) + ", ";
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*body += NumToString(struct_def.bytesize) + ");\n";
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for (auto it = struct_def.fields.vec.rbegin();
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it != struct_def.fields.vec.rend(); ++it) {
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auto &field = **it;
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if (field.padding) {
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*body += " builder.pad(" + NumToString(field.padding) + ");\n";
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}
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if (IsStruct(field.value.type)) {
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// Generate arguments for a struct inside a struct. To ensure names
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// don't clash, and to make it obvious these arguments are constructing
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// a nested struct, prefix the name with the field name.
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GenStructBody(*field.value.type.struct_def, body,
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nameprefix + field.name + "_");
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} else {
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*body += " builder.write" + GenWriteMethod(field.value.type) + "(";
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if (field.value.type.base_type == BASE_TYPE_BOOL) { *body += "+"; }
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*body += nameprefix + field.name + ");\n";
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}
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}
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}
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std::string GenerateNewExpression(const std::string &object_name) {
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return "new " + object_name + "()";
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}
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void GenerateRootAccessor(StructDef &struct_def, std::string *code_ptr,
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std::string &code, const std::string &object_name,
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bool size_prefixed) {
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if (!struct_def.fixed) {
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GenDocComment(code_ptr);
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std::string sizePrefixed("SizePrefixed");
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code += "static get" + (size_prefixed ? sizePrefixed : "") + "Root" +
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GetPrefixedName(struct_def, "As");
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code += "(bb:flatbuffers.ByteBuffer, obj?:" + object_name +
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"):" + object_name + " {\n";
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if (size_prefixed) {
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code +=
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" bb.setPosition(bb.position() + "
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"flatbuffers.SIZE_PREFIX_LENGTH);\n";
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}
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code += " return (obj || " + GenerateNewExpression(object_name);
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code += ").__init(bb.readInt32(bb.position()) + bb.position(), bb);\n";
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code += "}\n\n";
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}
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}
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void GenerateFinisher(StructDef &struct_def, std::string *code_ptr,
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std::string &code, bool size_prefixed) {
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if (parser_.root_struct_def_ == &struct_def) {
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std::string sizePrefixed("SizePrefixed");
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GenDocComment(code_ptr);
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code += "static finish" + (size_prefixed ? sizePrefixed : "") +
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GetPrefixedName(struct_def) + "Buffer";
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code += "(builder:flatbuffers.Builder, offset:flatbuffers.Offset) {\n";
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code += " builder.finish(offset";
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if (!parser_.file_identifier_.empty()) {
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code += ", '" + parser_.file_identifier_ + "'";
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}
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if (size_prefixed) {
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if (parser_.file_identifier_.empty()) { code += ", undefined"; }
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code += ", true";
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}
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code += ");\n";
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code += "}\n\n";
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}
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}
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static std::string GetObjApiClassName(const StructDef &sd,
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const IDLOptions &opts) {
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return GetObjApiClassName(sd.name, opts);
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}
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static std::string GetObjApiClassName(const std::string &name,
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const IDLOptions &opts) {
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return opts.object_prefix + name + opts.object_suffix;
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}
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bool UnionHasStringType(const EnumDef &union_enum) {
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return std::any_of(union_enum.Vals().begin(), union_enum.Vals().end(),
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[](const EnumVal *ev) {
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return !ev->IsZero() && IsString(ev->union_type);
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});
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}
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std::string GenUnionGenericTypeTS(const EnumDef &union_enum) {
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// TODO: make it work without any
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// return std::string("T") + (UnionHasStringType(union_enum) ? "|string" :
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// "");
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return std::string("any") +
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(UnionHasStringType(union_enum) ? "|string" : "");
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}
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std::string GenUnionTypeTS(const EnumDef &union_enum, import_set &imports) {
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std::string ret;
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std::set<std::string> type_list;
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for (auto it = union_enum.Vals().begin(); it != union_enum.Vals().end();
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++it) {
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const auto &ev = **it;
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if (ev.IsZero()) { continue; }
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std::string type = "";
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if (IsString(ev.union_type)) {
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type = "string"; // no need to wrap string type in namespace
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} else if (ev.union_type.base_type == BASE_TYPE_STRUCT) {
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type = AddImport(imports, union_enum, *ev.union_type.struct_def);
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} else {
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FLATBUFFERS_ASSERT(false);
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}
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type_list.insert(type);
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}
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for (auto it = type_list.begin(); it != type_list.end(); ++it) {
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ret += *it + ((std::next(it) == type_list.end()) ? "" : "|");
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}
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return ret;
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}
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std::string AddImport(import_set &imports, const Definition &dependent,
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const StructDef &dependency) {
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std::string ns;
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const auto &depc_comps = dependency.defined_namespace->components;
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for (auto it = depc_comps.begin(); it != depc_comps.end(); it++) ns += *it;
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std::string unique_name = ns + dependency.name;
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|
std::string import_name = dependency.name;
|
|
std::string long_import_name;
|
|
if (imports.find(unique_name) != imports.end())
|
|
return imports.find(unique_name)->second.name;
|
|
for (auto it = imports.begin(); it != imports.end(); it++) {
|
|
if (it->second.name == import_name) {
|
|
long_import_name = ns + import_name;
|
|
break;
|
|
}
|
|
}
|
|
std::string import_statement;
|
|
std::string export_statement;
|
|
import_statement += "import { ";
|
|
export_statement += "export { ";
|
|
std::string symbols_expression;
|
|
if (long_import_name.empty()) {
|
|
symbols_expression += import_name;
|
|
if (parser_.opts.generate_object_based_api)
|
|
symbols_expression += ", " + import_name + "T";
|
|
} else {
|
|
symbols_expression += dependency.name + " as " + long_import_name;
|
|
if (parser_.opts.generate_object_based_api)
|
|
symbols_expression +=
|
|
", " + dependency.name + "T as " + long_import_name + "T";
|
|
}
|
|
import_statement += symbols_expression + " } from '";
|
|
export_statement += symbols_expression + " } from '";
|
|
std::string bare_file_path;
|
|
std::string rel_file_path;
|
|
const auto &dep_comps = dependent.defined_namespace->components;
|
|
for (size_t i = 0; i < dep_comps.size(); i++)
|
|
rel_file_path += i == 0 ? ".." : (kPathSeparator + std::string(".."));
|
|
if (dep_comps.size() == 0) rel_file_path += ".";
|
|
for (auto it = depc_comps.begin(); it != depc_comps.end(); it++)
|
|
bare_file_path += kPathSeparator + ToDasherizedCase(*it);
|
|
bare_file_path += kPathSeparator + ToDasherizedCase(dependency.name);
|
|
rel_file_path += bare_file_path;
|
|
import_statement += rel_file_path + "';";
|
|
export_statement += "." + bare_file_path + "';";
|
|
ImportDefinition import;
|
|
import.name = long_import_name.empty() ? import_name : long_import_name;
|
|
import.bare_file_path = bare_file_path;
|
|
import.rel_file_path = rel_file_path;
|
|
import.import_statement = import_statement;
|
|
import.export_statement = export_statement;
|
|
import.dependency = &dependency;
|
|
import.dependent = &dependent;
|
|
imports.insert(std::make_pair(unique_name, import));
|
|
return import.name;
|
|
}
|
|
|
|
// TODO: largely (but not identical) duplicated code from above couln't find a
|
|
// good way to refactor
|
|
std::string AddImport(import_set &imports, const Definition &dependent,
|
|
const EnumDef &dependency) {
|
|
std::string ns;
|
|
const auto &depc_comps = dependency.defined_namespace->components;
|
|
for (auto it = depc_comps.begin(); it != depc_comps.end(); it++) ns += *it;
|
|
std::string unique_name = ns + dependency.name;
|
|
std::string import_name = dependency.name;
|
|
std::string long_import_name;
|
|
if (imports.find(unique_name) != imports.end())
|
|
return imports.find(unique_name)->second.name;
|
|
for (auto it = imports.begin(); it != imports.end(); it++) {
|
|
if (it->second.name == import_name) {
|
|
long_import_name = ns + import_name;
|
|
break;
|
|
}
|
|
}
|
|
std::string import_statement;
|
|
std::string export_statement;
|
|
import_statement += "import { ";
|
|
export_statement += "export { ";
|
|
std::string symbols_expression;
|
|
if (long_import_name.empty())
|
|
symbols_expression += import_name;
|
|
else
|
|
symbols_expression += dependency.name + " as " + long_import_name;
|
|
if (dependency.is_union) {
|
|
symbols_expression += ", unionTo" + import_name;
|
|
symbols_expression += ", unionListTo" + import_name;
|
|
}
|
|
import_statement += symbols_expression + " } from '";
|
|
export_statement += symbols_expression + " } from '";
|
|
std::string bare_file_path;
|
|
std::string rel_file_path;
|
|
const auto &dep_comps = dependent.defined_namespace->components;
|
|
for (size_t i = 0; i < dep_comps.size(); i++)
|
|
rel_file_path += i == 0 ? ".." : (kPathSeparator + std::string(".."));
|
|
if (dep_comps.size() == 0) rel_file_path += ".";
|
|
for (auto it = depc_comps.begin(); it != depc_comps.end(); it++)
|
|
bare_file_path += kPathSeparator + ToDasherizedCase(*it);
|
|
bare_file_path += kPathSeparator + ToDasherizedCase(dependency.name);
|
|
rel_file_path += bare_file_path;
|
|
import_statement += rel_file_path + "';";
|
|
export_statement += "." + bare_file_path + "';";
|
|
ImportDefinition import;
|
|
import.name = long_import_name.empty() ? import_name : long_import_name;
|
|
import.bare_file_path = bare_file_path;
|
|
import.rel_file_path = rel_file_path;
|
|
import.import_statement = import_statement;
|
|
import.export_statement = export_statement;
|
|
import.dependency = &dependency;
|
|
import.dependent = &dependent;
|
|
imports.insert(std::make_pair(unique_name, import));
|
|
return import.name;
|
|
}
|
|
|
|
void AddImport(import_set &imports, std::string import_name,
|
|
std::string fileName) {
|
|
ImportDefinition import;
|
|
import.name = import_name;
|
|
import.import_statement = "import " + import_name + " from '" + fileName + "';";
|
|
imports.insert(std::make_pair(import_name, import));
|
|
}
|
|
|
|
// Generate a TS union type based on a union's enum
|
|
std::string GenObjApiUnionTypeTS(import_set &imports, const IDLOptions &opts,
|
|
const EnumDef &union_enum) {
|
|
std::string ret = "";
|
|
std::set<std::string> type_list;
|
|
|
|
for (auto it = union_enum.Vals().begin(); it != union_enum.Vals().end();
|
|
++it) {
|
|
const auto &ev = **it;
|
|
if (ev.IsZero()) { continue; }
|
|
|
|
std::string type = "";
|
|
if (IsString(ev.union_type)) {
|
|
type = "string"; // no need to wrap string type in namespace
|
|
} else if (ev.union_type.base_type == BASE_TYPE_STRUCT) {
|
|
type = GetObjApiClassName(
|
|
AddImport(imports, union_enum, *ev.union_type.struct_def), opts);
|
|
} else {
|
|
FLATBUFFERS_ASSERT(false);
|
|
}
|
|
type_list.insert(type);
|
|
}
|
|
|
|
size_t totalPrinted = 0;
|
|
for (auto it = type_list.begin(); it != type_list.end(); ++it) {
|
|
++totalPrinted;
|
|
ret += *it + ((totalPrinted == type_list.size()) ? "" : "|");
|
|
}
|
|
|
|
return ret;
|
|
}
|
|
|
|
std::string GenUnionConvFuncName(const EnumDef &enum_def) {
|
|
return "unionTo" + enum_def.name;
|
|
}
|
|
|
|
std::string GenUnionListConvFuncName(const EnumDef &enum_def) {
|
|
return "unionListTo" + enum_def.name;
|
|
}
|
|
|
|
std::string GenUnionConvFunc(const Type &union_type, import_set &imports) {
|
|
if (union_type.enum_def) {
|
|
const auto &enum_def = *union_type.enum_def;
|
|
|
|
const auto valid_union_type = GenUnionTypeTS(enum_def, imports);
|
|
const auto valid_union_type_with_null = valid_union_type + "|null";
|
|
|
|
auto ret = "\n\nexport function " + GenUnionConvFuncName(enum_def) +
|
|
"(\n type: " + enum_def.name +
|
|
",\n accessor: (obj:" + valid_union_type + ") => " +
|
|
valid_union_type_with_null +
|
|
"\n): " + valid_union_type_with_null + " {\n";
|
|
|
|
const auto enum_type = AddImport(imports, enum_def, enum_def);
|
|
|
|
const auto union_enum_loop = [&](const std::string &accessor_str) {
|
|
ret += " switch(" + enum_type + "[type]) {\n";
|
|
ret += " case 'NONE': return null; \n";
|
|
|
|
for (auto it = enum_def.Vals().begin(); it != enum_def.Vals().end();
|
|
++it) {
|
|
const auto &ev = **it;
|
|
if (ev.IsZero()) { continue; }
|
|
|
|
ret += " case '" + ev.name + "': ";
|
|
|
|
if (IsString(ev.union_type)) {
|
|
ret += "return " + accessor_str + "'') as string;";
|
|
} else if (ev.union_type.base_type == BASE_TYPE_STRUCT) {
|
|
const auto type =
|
|
AddImport(imports, enum_def, *ev.union_type.struct_def);
|
|
ret += "return " + accessor_str + "new " + type + "())! as " +
|
|
type + ";";
|
|
} else {
|
|
FLATBUFFERS_ASSERT(false);
|
|
}
|
|
ret += "\n";
|
|
}
|
|
|
|
ret += " default: return null;\n";
|
|
ret += " }\n";
|
|
};
|
|
|
|
union_enum_loop("accessor(");
|
|
ret += "}";
|
|
|
|
ret += "\n\nexport function " + GenUnionListConvFuncName(enum_def) +
|
|
"(\n type: " + enum_def.name +
|
|
", \n accessor: (index: number, obj:" + valid_union_type +
|
|
") => " + valid_union_type_with_null +
|
|
", \n index: number\n): " + valid_union_type_with_null + " {\n";
|
|
union_enum_loop("accessor(index, ");
|
|
ret += "}";
|
|
|
|
return ret;
|
|
}
|
|
FLATBUFFERS_ASSERT(0);
|
|
return "";
|
|
}
|
|
|
|
// Used for generating a short function that returns the correct class
|
|
// based on union enum type. Assume the context is inside the non object api
|
|
// type
|
|
std::string GenUnionValTS(import_set &imports, const std::string &field_name,
|
|
const Type &union_type,
|
|
const bool is_array = false) {
|
|
if (union_type.enum_def) {
|
|
const auto &enum_def = *union_type.enum_def;
|
|
const auto enum_type = AddImport(imports, enum_def, enum_def);
|
|
const std::string union_accessor = "this." + field_name;
|
|
|
|
const auto union_has_string = UnionHasStringType(enum_def);
|
|
const auto field_binded_method = "this." + field_name + ".bind(this)";
|
|
|
|
std::string ret;
|
|
|
|
if (!is_array) {
|
|
const auto conversion_function = GenUnionConvFuncName(enum_def);
|
|
const auto target_enum = "this." + field_name + "Type()";
|
|
|
|
ret = "(() => {\n";
|
|
ret += " let temp = " + conversion_function + "(" + target_enum +
|
|
", " + field_binded_method + ");\n";
|
|
ret += " if(temp === null) { return null; }\n";
|
|
ret += union_has_string
|
|
? " if(typeof temp === 'string') { return temp; }\n"
|
|
: "";
|
|
ret += " return temp.unpack()\n";
|
|
ret += " })()";
|
|
} else {
|
|
const auto conversion_function = GenUnionListConvFuncName(enum_def);
|
|
const auto target_enum_accesor = "this." + field_name + "Type";
|
|
const auto target_enum_length = target_enum_accesor + "Length()";
|
|
|
|
ret = "(() => {\n";
|
|
ret += " let ret = [];\n";
|
|
ret += " for(let targetEnumIndex = 0; targetEnumIndex < " +
|
|
target_enum_length +
|
|
"; "
|
|
"++targetEnumIndex) {\n";
|
|
ret += " let targetEnum = " + target_enum_accesor +
|
|
"(targetEnumIndex);\n";
|
|
ret += " if(targetEnum === null || " + enum_type +
|
|
"[targetEnum!] === 'NONE') { "
|
|
"continue; }\n\n";
|
|
ret += " let temp = " + conversion_function + "(targetEnum, " +
|
|
field_binded_method + ", targetEnumIndex);\n";
|
|
ret += " if(temp === null) { continue; }\n";
|
|
ret += union_has_string ? " if(typeof temp === 'string') { "
|
|
"ret.push(temp); continue; }\n"
|
|
: "";
|
|
ret += " ret.push(temp.unpack());\n";
|
|
ret += " }\n";
|
|
ret += " return ret;\n";
|
|
ret += " })()";
|
|
}
|
|
|
|
return ret;
|
|
}
|
|
|
|
FLATBUFFERS_ASSERT(0);
|
|
return "";
|
|
}
|
|
|
|
static std::string GenNullCheckConditional(
|
|
const std::string &nullCheckVar, const std::string &trueVal,
|
|
const std::string &falseVal = "null") {
|
|
return "(" + nullCheckVar + " !== null ? " + trueVal + " : " + falseVal +
|
|
")";
|
|
}
|
|
|
|
std::string GenStructMemberValueTS(const StructDef &struct_def,
|
|
const std::string &prefix,
|
|
const std::string &delimiter,
|
|
const bool nullCheck = true) {
|
|
std::string ret;
|
|
for (auto it = struct_def.fields.vec.begin();
|
|
it != struct_def.fields.vec.end(); ++it) {
|
|
auto &field = **it;
|
|
|
|
const auto curr_member_accessor =
|
|
prefix + "." + MakeCamel(field.name, false);
|
|
if (IsStruct(field.value.type)) {
|
|
ret += GenStructMemberValueTS(*field.value.type.struct_def,
|
|
curr_member_accessor, delimiter);
|
|
} else {
|
|
if (nullCheck) {
|
|
ret +=
|
|
"(" + prefix + " === null ? 0 : " + curr_member_accessor + "!)";
|
|
} else {
|
|
ret += curr_member_accessor;
|
|
}
|
|
}
|
|
|
|
if (std::next(it) != struct_def.fields.vec.end()) { ret += delimiter; }
|
|
}
|
|
|
|
return ret;
|
|
}
|
|
|
|
void GenObjApi(const Parser &parser, StructDef &struct_def,
|
|
std::string &obj_api_unpack_func, std::string &obj_api_class,
|
|
import_set &imports) {
|
|
const auto class_name = GetObjApiClassName(struct_def, parser.opts);
|
|
|
|
std::string unpack_func = "\nunpack(): " + class_name +
|
|
" {\n return new " + class_name + "(" +
|
|
(struct_def.fields.vec.empty() ? "" : "\n");
|
|
std::string unpack_to_func = "\nunpackTo(_o: " + class_name + "): void {" +
|
|
+(struct_def.fields.vec.empty() ? "" : "\n");
|
|
|
|
std::string constructor_func = "constructor(";
|
|
constructor_func += (struct_def.fields.vec.empty() ? "" : "\n");
|
|
|
|
const auto has_create =
|
|
struct_def.fixed || CanCreateFactoryMethod(struct_def);
|
|
|
|
std::string pack_func_prototype =
|
|
"\npack(builder:flatbuffers.Builder): flatbuffers.Offset {\n";
|
|
|
|
std::string pack_func_offset_decl;
|
|
std::string pack_func_create_call;
|
|
|
|
const auto struct_name = AddImport(imports, struct_def, struct_def);
|
|
|
|
if (has_create) {
|
|
pack_func_create_call = " return " + struct_name + ".create" +
|
|
GetPrefixedName(struct_def) + "(builder" +
|
|
(struct_def.fields.vec.empty() ? "" : ",\n ");
|
|
} else {
|
|
pack_func_create_call = " " + struct_name + ".start" +
|
|
GetPrefixedName(struct_def) + "(builder);\n";
|
|
}
|
|
|
|
if (struct_def.fixed) {
|
|
// when packing struct, nested struct's members instead of the struct's
|
|
// offset are used
|
|
pack_func_create_call +=
|
|
GenStructMemberValueTS(struct_def, "this", ",\n ", false) + "\n ";
|
|
}
|
|
|
|
for (auto it = struct_def.fields.vec.begin();
|
|
it != struct_def.fields.vec.end(); ++it) {
|
|
auto &field = **it;
|
|
if (field.deprecated) continue;
|
|
|
|
const auto field_name = MakeCamel(field.name, false);
|
|
const std::string field_binded_method =
|
|
"this." + field_name + ".bind(this)";
|
|
|
|
std::string field_val;
|
|
std::string field_type;
|
|
// a string that declares a variable containing the
|
|
// offset for things that can't be generated inline
|
|
// empty otw
|
|
std::string field_offset_decl;
|
|
// a string that contains values for things that can be created inline or
|
|
// the variable name from field_offset_decl
|
|
std::string field_offset_val;
|
|
const auto field_default_val =
|
|
GenDefaultValue(field, "flatbuffers", imports);
|
|
|
|
// Emit a scalar field
|
|
const auto is_string = IsString(field.value.type);
|
|
if (IsScalar(field.value.type.base_type) || is_string) {
|
|
const auto has_null_default = is_string || HasNullDefault(field);
|
|
|
|
field_type += GenTypeName(imports, field, field.value.type, false,
|
|
has_null_default);
|
|
field_val = "this." + field_name + "()";
|
|
|
|
if (field.value.type.base_type != BASE_TYPE_STRING) {
|
|
field_offset_val = "this." + field_name;
|
|
} else {
|
|
field_offset_decl = GenNullCheckConditional(
|
|
"this." + field_name,
|
|
"builder.createString(this." + field_name + "!)", "0");
|
|
}
|
|
}
|
|
|
|
// Emit an object field
|
|
else {
|
|
auto is_vector = false;
|
|
switch (field.value.type.base_type) {
|
|
case BASE_TYPE_STRUCT: {
|
|
const auto &sd = *field.value.type.struct_def;
|
|
field_type += GetObjApiClassName(sd, parser.opts);
|
|
|
|
const std::string field_accessor = "this." + field_name + "()";
|
|
field_val = GenNullCheckConditional(field_accessor,
|
|
field_accessor + "!.unpack()");
|
|
auto packing = GenNullCheckConditional(
|
|
"this." + field_name, "this." + field_name + "!.pack(builder)",
|
|
"0");
|
|
|
|
if (sd.fixed) {
|
|
field_offset_val = std::move(packing);
|
|
} else {
|
|
field_offset_decl = std::move(packing);
|
|
}
|
|
|
|
break;
|
|
}
|
|
|
|
case BASE_TYPE_VECTOR: {
|
|
auto vectortype = field.value.type.VectorType();
|
|
auto vectortypename =
|
|
GenTypeName(imports, struct_def, vectortype, false);
|
|
is_vector = true;
|
|
|
|
field_type = "(";
|
|
|
|
switch (vectortype.base_type) {
|
|
case BASE_TYPE_STRUCT: {
|
|
const auto &sd = *field.value.type.struct_def;
|
|
field_type += GetObjApiClassName(sd, parser.opts);
|
|
field_type += ")[]";
|
|
|
|
field_val = GenBBAccess() + ".createObjList(" +
|
|
field_binded_method + ", this." + field_name +
|
|
"Length())";
|
|
|
|
if (sd.fixed) {
|
|
field_offset_decl =
|
|
"builder.createStructOffsetList(this." + field_name +
|
|
", " + AddImport(imports, struct_def, struct_def) +
|
|
".start" + MakeCamel(field_name) + "Vector)";
|
|
} else {
|
|
field_offset_decl =
|
|
AddImport(imports, struct_def, struct_def) + ".create" +
|
|
MakeCamel(field_name) +
|
|
"Vector(builder, builder.createObjectOffsetList(" +
|
|
"this." + field_name + "))";
|
|
}
|
|
|
|
break;
|
|
}
|
|
|
|
case BASE_TYPE_STRING: {
|
|
field_type += "string)[]";
|
|
field_val = GenBBAccess() + ".createScalarList(" +
|
|
field_binded_method + ", this." + field_name +
|
|
"Length())";
|
|
field_offset_decl =
|
|
AddImport(imports, struct_def, struct_def) + ".create" +
|
|
MakeCamel(field_name) +
|
|
"Vector(builder, builder.createObjectOffsetList(" +
|
|
"this." + field_name + "))";
|
|
break;
|
|
}
|
|
|
|
case BASE_TYPE_UNION: {
|
|
field_type += GenObjApiUnionTypeTS(imports, parser.opts,
|
|
*(vectortype.enum_def));
|
|
field_type += ")[]";
|
|
field_val =
|
|
GenUnionValTS(imports, field_name, vectortype, true);
|
|
|
|
field_offset_decl =
|
|
AddImport(imports, struct_def, struct_def) + ".create" +
|
|
MakeCamel(field_name) +
|
|
"Vector(builder, builder.createObjectOffsetList(" +
|
|
"this." + field_name + "))";
|
|
|
|
break;
|
|
}
|
|
default: {
|
|
if (vectortype.enum_def) {
|
|
field_type += GenTypeName(imports, struct_def, vectortype,
|
|
false, HasNullDefault(field));
|
|
} else {
|
|
field_type += vectortypename;
|
|
}
|
|
field_type += ")[]";
|
|
field_val = GenBBAccess() + ".createScalarList(" +
|
|
field_binded_method + ", this." + field_name +
|
|
"Length())";
|
|
|
|
field_offset_decl = AddImport(imports, struct_def, struct_def) +
|
|
".create" + MakeCamel(field_name) +
|
|
"Vector(builder, this." + field_name + ")";
|
|
|
|
break;
|
|
}
|
|
}
|
|
|
|
break;
|
|
}
|
|
|
|
case BASE_TYPE_UNION: {
|
|
field_type += GenObjApiUnionTypeTS(imports, parser.opts,
|
|
*(field.value.type.enum_def));
|
|
|
|
field_val = GenUnionValTS(imports, field_name, field.value.type);
|
|
field_offset_decl =
|
|
"builder.createObjectOffset(this." + field_name + ")";
|
|
break;
|
|
}
|
|
|
|
default: FLATBUFFERS_ASSERT(0); break;
|
|
}
|
|
|
|
// length 0 vector is simply empty instead of null
|
|
field_type += is_vector ? "" : "|null";
|
|
}
|
|
|
|
if (!field_offset_decl.empty()) {
|
|
field_offset_decl =
|
|
" const " + field_name + " = " + field_offset_decl + ";";
|
|
}
|
|
if (field_offset_val.empty()) { field_offset_val = field_name; }
|
|
|
|
unpack_func += " " + field_val;
|
|
unpack_to_func += " _o." + field_name + " = " + field_val + ";";
|
|
|
|
constructor_func += " public " + field_name + ": " + field_type + " = " +
|
|
field_default_val;
|
|
|
|
if (!struct_def.fixed) {
|
|
if (!field_offset_decl.empty()) {
|
|
pack_func_offset_decl += field_offset_decl + "\n";
|
|
}
|
|
|
|
if (has_create) {
|
|
pack_func_create_call += field_offset_val;
|
|
} else {
|
|
pack_func_create_call += " " + struct_name + ".add" +
|
|
MakeCamel(field.name) + "(builder, " +
|
|
field_offset_val + ");\n";
|
|
}
|
|
}
|
|
|
|
if (std::next(it) != struct_def.fields.vec.end()) {
|
|
constructor_func += ",\n";
|
|
|
|
if (!struct_def.fixed && has_create) {
|
|
pack_func_create_call += ",\n ";
|
|
}
|
|
|
|
unpack_func += ",\n";
|
|
unpack_to_func += "\n";
|
|
} else {
|
|
constructor_func += "\n";
|
|
if (!struct_def.fixed) {
|
|
pack_func_offset_decl += (pack_func_offset_decl.empty() ? "" : "\n");
|
|
pack_func_create_call += "\n ";
|
|
}
|
|
|
|
unpack_func += "\n ";
|
|
unpack_to_func += "\n";
|
|
}
|
|
}
|
|
|
|
constructor_func += "){}\n\n";
|
|
|
|
if (has_create) {
|
|
pack_func_create_call += ");";
|
|
} else {
|
|
pack_func_create_call += "return " + struct_name + ".end" +
|
|
GetPrefixedName(struct_def) + "(builder);";
|
|
}
|
|
|
|
obj_api_class = "\nexport class " +
|
|
GetObjApiClassName(struct_def, parser.opts) + " {\n";
|
|
|
|
obj_api_class += constructor_func;
|
|
obj_api_class += pack_func_prototype + pack_func_offset_decl +
|
|
pack_func_create_call + "\n}";
|
|
|
|
obj_api_class += "\n}\n";
|
|
|
|
unpack_func += ");\n}";
|
|
unpack_to_func += "}\n";
|
|
|
|
obj_api_unpack_func = unpack_func + "\n\n" + unpack_to_func;
|
|
}
|
|
|
|
static bool CanCreateFactoryMethod(const StructDef &struct_def) {
|
|
// to preserve backwards compatibility, we allow the first field to be a
|
|
// struct
|
|
return struct_def.fields.vec.size() < 2 ||
|
|
std::all_of(std::begin(struct_def.fields.vec) + 1,
|
|
std::end(struct_def.fields.vec),
|
|
[](const FieldDef *f) -> bool {
|
|
FLATBUFFERS_ASSERT(f != nullptr);
|
|
return f->value.type.base_type != BASE_TYPE_STRUCT;
|
|
});
|
|
}
|
|
|
|
// Generate an accessor struct with constructor for a flatbuffers struct.
|
|
void GenStruct(const Parser &parser, StructDef &struct_def,
|
|
std::string *code_ptr, import_set &imports) {
|
|
if (struct_def.generated) return;
|
|
std::string &code = *code_ptr;
|
|
|
|
std::string object_name;
|
|
std::string object_namespace = GetNameSpace(struct_def);
|
|
|
|
// Emit constructor
|
|
object_name = struct_def.name;
|
|
GenDocComment(struct_def.doc_comment, code_ptr);
|
|
code += "export class " + struct_def.name;
|
|
code += " {\n";
|
|
code += " bb: flatbuffers.ByteBuffer|null = null;\n";
|
|
code += " bb_pos = 0;\n";
|
|
|
|
// Generate the __init method that sets the field in a pre-existing
|
|
// accessor object. This is to allow object reuse.
|
|
code +=
|
|
"__init(i:number, bb:flatbuffers.ByteBuffer):" + object_name + " {\n";
|
|
code += " this.bb_pos = i;\n";
|
|
code += " this.bb = bb;\n";
|
|
code += " return this;\n";
|
|
code += "}\n\n";
|
|
|
|
// Generate special accessors for the table that when used as the root of a
|
|
// FlatBuffer
|
|
GenerateRootAccessor(struct_def, code_ptr, code, object_name, false);
|
|
GenerateRootAccessor(struct_def, code_ptr, code, object_name, true);
|
|
|
|
// Generate the identifier check method
|
|
if (!struct_def.fixed && parser_.root_struct_def_ == &struct_def &&
|
|
!parser_.file_identifier_.empty()) {
|
|
GenDocComment(code_ptr);
|
|
code +=
|
|
"static bufferHasIdentifier(bb:flatbuffers.ByteBuffer):boolean "
|
|
"{\n";
|
|
code += " return bb.__has_identifier('" + parser_.file_identifier_;
|
|
code += "');\n}\n\n";
|
|
}
|
|
|
|
// Emit field accessors
|
|
for (auto it = struct_def.fields.vec.begin();
|
|
it != struct_def.fields.vec.end(); ++it) {
|
|
auto &field = **it;
|
|
if (field.deprecated) continue;
|
|
auto offset_prefix =
|
|
" const offset = " + GenBBAccess() + ".__offset(this.bb_pos, " +
|
|
NumToString(field.value.offset) + ");\n return offset ? ";
|
|
|
|
// Emit a scalar field
|
|
const auto is_string = IsString(field.value.type);
|
|
if (IsScalar(field.value.type.base_type) || is_string) {
|
|
const auto has_null_default = is_string || HasNullDefault(field);
|
|
|
|
GenDocComment(field.doc_comment, code_ptr);
|
|
std::string prefix = MakeCamel(field.name, false) + "(";
|
|
if (is_string) {
|
|
code += prefix + "):string|null\n";
|
|
code +=
|
|
prefix + "optionalEncoding:flatbuffers.Encoding" + "):" +
|
|
GenTypeName(imports, struct_def, field.value.type, false, true) +
|
|
"\n";
|
|
code += prefix + "optionalEncoding?:any";
|
|
} else {
|
|
code += prefix;
|
|
}
|
|
if (field.value.type.enum_def) {
|
|
code += "):" +
|
|
GenTypeName(imports, struct_def, field.value.type, false,
|
|
field.IsOptional()) +
|
|
" {\n";
|
|
} else {
|
|
code += "):" +
|
|
GenTypeName(imports, struct_def, field.value.type, false,
|
|
has_null_default) +
|
|
" {\n";
|
|
}
|
|
|
|
if (struct_def.fixed) {
|
|
code +=
|
|
" return " +
|
|
GenGetter(field.value.type,
|
|
"(this.bb_pos" + MaybeAdd(field.value.offset) + ")") +
|
|
";\n";
|
|
} else {
|
|
std::string index = "this.bb_pos + offset";
|
|
if (is_string) { index += ", optionalEncoding"; }
|
|
code += offset_prefix +
|
|
GenGetter(field.value.type, "(" + index + ")") + " : " +
|
|
GenDefaultValue(field, GenBBAccess(), imports);
|
|
code += ";\n";
|
|
}
|
|
}
|
|
|
|
// Emit an object field
|
|
else {
|
|
switch (field.value.type.base_type) {
|
|
case BASE_TYPE_STRUCT: {
|
|
const auto type =
|
|
AddImport(imports, struct_def, *field.value.type.struct_def);
|
|
GenDocComment(field.doc_comment, code_ptr);
|
|
code += MakeCamel(field.name, false);
|
|
code += "(obj?:" + type + "):" + type + "|null {\n";
|
|
|
|
if (struct_def.fixed) {
|
|
code += " return (obj || " + GenerateNewExpression(type);
|
|
code += ").__init(this.bb_pos";
|
|
code +=
|
|
MaybeAdd(field.value.offset) + ", " + GenBBAccess() + ");\n";
|
|
} else {
|
|
code += offset_prefix + "(obj || " + GenerateNewExpression(type) +
|
|
").__init(";
|
|
code += field.value.type.struct_def->fixed
|
|
? "this.bb_pos + offset"
|
|
: GenBBAccess() + ".__indirect(this.bb_pos + offset)";
|
|
code += ", " + GenBBAccess() + ") : null;\n";
|
|
}
|
|
|
|
break;
|
|
}
|
|
|
|
case BASE_TYPE_VECTOR: {
|
|
auto vectortype = field.value.type.VectorType();
|
|
auto vectortypename =
|
|
GenTypeName(imports, struct_def, vectortype, false);
|
|
auto inline_size = InlineSize(vectortype);
|
|
auto index = GenBBAccess() +
|
|
".__vector(this.bb_pos + offset) + index" +
|
|
MaybeScale(inline_size);
|
|
std::string ret_type;
|
|
bool is_union = false;
|
|
switch (vectortype.base_type) {
|
|
case BASE_TYPE_STRUCT: ret_type = vectortypename; break;
|
|
case BASE_TYPE_STRING: ret_type = vectortypename; break;
|
|
case BASE_TYPE_UNION:
|
|
ret_type = "?flatbuffers.Table";
|
|
is_union = true;
|
|
break;
|
|
default: ret_type = vectortypename;
|
|
}
|
|
GenDocComment(field.doc_comment, code_ptr);
|
|
std::string prefix = MakeCamel(field.name, false);
|
|
// TODO: make it work without any
|
|
// if (is_union) { prefix += "<T extends flatbuffers.Table>"; }
|
|
if (is_union) { prefix += ""; }
|
|
prefix += "(index: number";
|
|
if (is_union) {
|
|
const auto union_type =
|
|
GenUnionGenericTypeTS(*(field.value.type.enum_def));
|
|
|
|
vectortypename = union_type;
|
|
code += prefix + ", obj:" + union_type;
|
|
} else if (vectortype.base_type == BASE_TYPE_STRUCT) {
|
|
code += prefix + ", obj?:" + vectortypename;
|
|
} else if (IsString(vectortype)) {
|
|
code += prefix + "):string\n";
|
|
code += prefix + ",optionalEncoding:flatbuffers.Encoding" +
|
|
"):" + vectortypename + "\n";
|
|
code += prefix + ",optionalEncoding?:any";
|
|
} else {
|
|
code += prefix;
|
|
}
|
|
code += "):" + vectortypename + "|null {\n";
|
|
|
|
if (vectortype.base_type == BASE_TYPE_STRUCT) {
|
|
code += offset_prefix + "(obj || " +
|
|
GenerateNewExpression(vectortypename);
|
|
code += ").__init(";
|
|
code += vectortype.struct_def->fixed
|
|
? index
|
|
: GenBBAccess() + ".__indirect(" + index + ")";
|
|
code += ", " + GenBBAccess() + ")";
|
|
} else {
|
|
if (is_union) {
|
|
index = "obj, " + index;
|
|
} else if (IsString(vectortype)) {
|
|
index += ", optionalEncoding";
|
|
}
|
|
code += offset_prefix + GenGetter(vectortype, "(" + index + ")");
|
|
}
|
|
code += " : ";
|
|
if (field.value.type.element == BASE_TYPE_BOOL) {
|
|
code += "false";
|
|
} else if (field.value.type.element == BASE_TYPE_LONG ||
|
|
field.value.type.element == BASE_TYPE_ULONG) {
|
|
code += GenBBAccess() + ".createLong(0, 0)";
|
|
} else if (IsScalar(field.value.type.element)) {
|
|
if (field.value.type.enum_def) {
|
|
code += field.value.constant;
|
|
} else {
|
|
code += "0";
|
|
}
|
|
} else {
|
|
code += "null";
|
|
}
|
|
code += ";\n";
|
|
break;
|
|
}
|
|
|
|
case BASE_TYPE_UNION: {
|
|
GenDocComment(field.doc_comment, code_ptr);
|
|
code += MakeCamel(field.name, false);
|
|
|
|
const auto &union_enum = *(field.value.type.enum_def);
|
|
const auto union_type = GenUnionGenericTypeTS(union_enum);
|
|
code += "<T extends flatbuffers.Table>(obj:" + union_type +
|
|
"):" + union_type +
|
|
"|null "
|
|
"{\n";
|
|
|
|
code += offset_prefix +
|
|
GenGetter(field.value.type, "(obj, this.bb_pos + offset)") +
|
|
" : null;\n";
|
|
break;
|
|
}
|
|
default: FLATBUFFERS_ASSERT(0);
|
|
}
|
|
}
|
|
code += "}\n\n";
|
|
|
|
// Adds the mutable scalar value to the output
|
|
if (IsScalar(field.value.type.base_type) && parser.opts.mutable_buffer &&
|
|
!IsUnion(field.value.type)) {
|
|
std::string type =
|
|
GenTypeName(imports, struct_def, field.value.type, true);
|
|
|
|
code += "mutate_" + field.name + "(value:" + type + "):boolean {\n";
|
|
|
|
if (struct_def.fixed) {
|
|
code += " " + GenBBAccess() + ".write" +
|
|
MakeCamel(GenType(field.value.type)) + "(this.bb_pos + " +
|
|
NumToString(field.value.offset) + ", ";
|
|
} else {
|
|
code += " const offset = " + GenBBAccess() +
|
|
".__offset(this.bb_pos, " + NumToString(field.value.offset) +
|
|
");\n\n";
|
|
code += " if (offset === 0) {\n";
|
|
code += " return false;\n";
|
|
code += " }\n\n";
|
|
|
|
// special case for bools, which are treated as uint8
|
|
code += " " + GenBBAccess() + ".write" +
|
|
MakeCamel(GenType(field.value.type)) +
|
|
"(this.bb_pos + offset, ";
|
|
if (field.value.type.base_type == BASE_TYPE_BOOL) { code += "+"; }
|
|
}
|
|
|
|
code += "value);\n";
|
|
code += " return true;\n";
|
|
code += "}\n\n";
|
|
}
|
|
|
|
// Emit vector helpers
|
|
if (IsVector(field.value.type)) {
|
|
// Emit a length helper
|
|
GenDocComment(code_ptr);
|
|
code += MakeCamel(field.name, false);
|
|
code += "Length():number {\n" + offset_prefix;
|
|
|
|
code +=
|
|
GenBBAccess() + ".__vector_len(this.bb_pos + offset) : 0;\n}\n\n";
|
|
|
|
// For scalar types, emit a typed array helper
|
|
auto vectorType = field.value.type.VectorType();
|
|
if (IsScalar(vectorType.base_type) && !IsLong(vectorType.base_type)) {
|
|
GenDocComment(code_ptr);
|
|
|
|
code += MakeCamel(field.name, false);
|
|
code += "Array():" + GenType(vectorType) + "Array|null {\n" +
|
|
offset_prefix;
|
|
|
|
code += "new " + GenType(vectorType) + "Array(" + GenBBAccess() +
|
|
".bytes().buffer, " + GenBBAccess() +
|
|
".bytes().byteOffset + " + GenBBAccess() +
|
|
".__vector(this.bb_pos + offset), " + GenBBAccess() +
|
|
".__vector_len(this.bb_pos + offset)) : null;\n}\n\n";
|
|
}
|
|
}
|
|
}
|
|
|
|
// Emit the fully qualified name
|
|
if (parser_.opts.generate_name_strings) {
|
|
GenDocComment(code_ptr);
|
|
code += "static getFullyQualifiedName():string {\n";
|
|
code += " return '" + WrapInNameSpace(struct_def) + "';\n";
|
|
code += "}\n\n";
|
|
}
|
|
|
|
// Emit the size of the struct.
|
|
if (struct_def.fixed) {
|
|
GenDocComment(code_ptr);
|
|
code += "static sizeOf():number {\n";
|
|
code += " return " + NumToString(struct_def.bytesize) + ";\n";
|
|
code += "}\n\n";
|
|
}
|
|
|
|
// Emit a factory constructor
|
|
if (struct_def.fixed) {
|
|
std::string arguments;
|
|
GenStructArgs(imports, struct_def, &arguments, "");
|
|
GenDocComment(code_ptr);
|
|
|
|
code += "static create" + GetPrefixedName(struct_def) +
|
|
"(builder:flatbuffers.Builder";
|
|
code += arguments + "):flatbuffers.Offset {\n";
|
|
|
|
GenStructBody(struct_def, &code, "");
|
|
code += " return builder.offset();\n}\n\n";
|
|
} else {
|
|
// Generate a method to start building a new object
|
|
GenDocComment(code_ptr);
|
|
|
|
code += "static start" + GetPrefixedName(struct_def) +
|
|
"(builder:flatbuffers.Builder) {\n";
|
|
|
|
code += " builder.startObject(" +
|
|
NumToString(struct_def.fields.vec.size()) + ");\n";
|
|
code += "}\n\n";
|
|
|
|
// Generate a set of static methods that allow table construction
|
|
for (auto it = struct_def.fields.vec.begin();
|
|
it != struct_def.fields.vec.end(); ++it) {
|
|
auto &field = **it;
|
|
if (field.deprecated) continue;
|
|
const auto argname = GetArgName(field);
|
|
|
|
// Generate the field insertion method
|
|
GenDocComment(code_ptr);
|
|
code += "static add" + MakeCamel(field.name);
|
|
code += "(builder:flatbuffers.Builder, " + argname + ":" +
|
|
GetArgType(imports, struct_def, field, false) + ") {\n";
|
|
code += " builder.addField" + GenWriteMethod(field.value.type) + "(";
|
|
code += NumToString(it - struct_def.fields.vec.begin()) + ", ";
|
|
if (field.value.type.base_type == BASE_TYPE_BOOL) { code += "+"; }
|
|
code += argname + ", ";
|
|
if (!IsScalar(field.value.type.base_type)) {
|
|
code += "0";
|
|
} else if (HasNullDefault(field)) {
|
|
if (IsLong(field.value.type.base_type)) {
|
|
code += "builder.createLong(0, 0)";
|
|
} else {
|
|
code += "0";
|
|
}
|
|
} else {
|
|
if (field.value.type.base_type == BASE_TYPE_BOOL) { code += "+"; }
|
|
code += GenDefaultValue(field, "builder", imports);
|
|
}
|
|
code += ");\n}\n\n";
|
|
|
|
if (IsVector(field.value.type)) {
|
|
auto vector_type = field.value.type.VectorType();
|
|
auto alignment = InlineAlignment(vector_type);
|
|
auto elem_size = InlineSize(vector_type);
|
|
|
|
// Generate a method to create a vector from a JavaScript array
|
|
if (!IsStruct(vector_type)) {
|
|
GenDocComment(code_ptr);
|
|
|
|
const std::string sig_begin =
|
|
"static create" + MakeCamel(field.name) +
|
|
"Vector(builder:flatbuffers.Builder, data:";
|
|
const std::string sig_end = "):flatbuffers.Offset";
|
|
std::string type =
|
|
GenTypeName(imports, struct_def, vector_type, true) + "[]";
|
|
if (type == "number[]") {
|
|
const auto &array_type = GenType(vector_type);
|
|
// the old type should be deprecated in the future
|
|
std::string type_old = "number[]|Uint8Array";
|
|
std::string type_new = "number[]|" + array_type + "Array";
|
|
if (type_old == type_new) {
|
|
type = type_new;
|
|
} else {
|
|
// add function overloads
|
|
code += sig_begin + type_new + sig_end + ";\n";
|
|
code +=
|
|
"/**\n * @deprecated This Uint8Array overload will "
|
|
"be removed in the future.\n */\n";
|
|
code += sig_begin + type_old + sig_end + ";\n";
|
|
type = type_new + "|Uint8Array";
|
|
}
|
|
}
|
|
code += sig_begin + type + sig_end + " {\n";
|
|
code += " builder.startVector(" + NumToString(elem_size);
|
|
code += ", data.length, " + NumToString(alignment) + ");\n";
|
|
code += " for (let i = data.length - 1; i >= 0; i--) {\n";
|
|
code += " builder.add" + GenWriteMethod(vector_type) + "(";
|
|
if (vector_type.base_type == BASE_TYPE_BOOL) { code += "+"; }
|
|
code += "data[i]!);\n";
|
|
code += " }\n";
|
|
code += " return builder.endVector();\n";
|
|
code += "}\n\n";
|
|
}
|
|
|
|
// Generate a method to start a vector, data to be added manually
|
|
// after
|
|
GenDocComment(code_ptr);
|
|
|
|
code += "static start" + MakeCamel(field.name);
|
|
code += "Vector(builder:flatbuffers.Builder, numElems:number) {\n";
|
|
code += " builder.startVector(" + NumToString(elem_size);
|
|
code += ", numElems, " + NumToString(alignment) + ");\n";
|
|
code += "}\n\n";
|
|
}
|
|
}
|
|
|
|
// Generate a method to stop building a new object
|
|
GenDocComment(code_ptr);
|
|
|
|
code += "static end" + GetPrefixedName(struct_def);
|
|
code += "(builder:flatbuffers.Builder):flatbuffers.Offset {\n";
|
|
|
|
code += " const offset = builder.endObject();\n";
|
|
for (auto it = struct_def.fields.vec.begin();
|
|
it != struct_def.fields.vec.end(); ++it) {
|
|
auto &field = **it;
|
|
if (!field.deprecated && field.IsRequired()) {
|
|
code += " builder.requiredField(offset, ";
|
|
code += NumToString(field.value.offset);
|
|
code += ") // " + field.name + "\n";
|
|
}
|
|
}
|
|
code += " return offset;\n";
|
|
code += "}\n\n";
|
|
|
|
// Generate the methods to complete buffer construction
|
|
GenerateFinisher(struct_def, code_ptr, code, false);
|
|
GenerateFinisher(struct_def, code_ptr, code, true);
|
|
|
|
// Generate a convenient CreateX function
|
|
if (CanCreateFactoryMethod(struct_def)) {
|
|
code += "static create" + GetPrefixedName(struct_def);
|
|
code += "(builder:flatbuffers.Builder";
|
|
for (auto it = struct_def.fields.vec.begin();
|
|
it != struct_def.fields.vec.end(); ++it) {
|
|
const auto &field = **it;
|
|
if (field.deprecated) continue;
|
|
code += ", " + GetArgName(field) + ":" +
|
|
GetArgType(imports, struct_def, field, true);
|
|
}
|
|
|
|
code += "):flatbuffers.Offset {\n";
|
|
code += " " + struct_def.name + ".start" +
|
|
GetPrefixedName(struct_def) + "(builder);\n";
|
|
|
|
std::string methodPrefix = struct_def.name;
|
|
for (auto it = struct_def.fields.vec.begin();
|
|
it != struct_def.fields.vec.end(); ++it) {
|
|
const auto &field = **it;
|
|
if (field.deprecated) continue;
|
|
|
|
const auto arg_name = GetArgName(field);
|
|
|
|
if (field.IsScalarOptional()) {
|
|
code += " if (" + arg_name + " !== null)\n ";
|
|
}
|
|
|
|
code += " " + methodPrefix + ".add" + MakeCamel(field.name) + "(";
|
|
code += "builder, " + arg_name + ");\n";
|
|
}
|
|
|
|
code += " return " + methodPrefix + ".end" +
|
|
GetPrefixedName(struct_def) + "(builder);\n";
|
|
code += "}\n";
|
|
}
|
|
}
|
|
|
|
if (!struct_def.fixed && parser_.services_.vec.size() != 0) {
|
|
auto name = GetPrefixedName(struct_def, "");
|
|
code += "\n";
|
|
code += "serialize():Uint8Array {\n";
|
|
code += " return this.bb!.bytes();\n";
|
|
code += "}\n";
|
|
|
|
code += "\n";
|
|
code += "static deserialize(buffer: Uint8Array):" + name + " {\n";
|
|
code += " return " + AddImport(imports, struct_def, struct_def) +
|
|
".getRootAs" + name + "(new flatbuffers.ByteBuffer(buffer))\n";
|
|
code += "}\n";
|
|
}
|
|
|
|
if (parser_.opts.generate_object_based_api) {
|
|
std::string obj_api_class;
|
|
std::string obj_api_unpack_func;
|
|
GenObjApi(parser_, struct_def, obj_api_unpack_func, obj_api_class,
|
|
imports);
|
|
|
|
code += obj_api_unpack_func + "}\n" + obj_api_class;
|
|
} else {
|
|
code += "}\n";
|
|
}
|
|
}
|
|
|
|
static bool HasNullDefault(const FieldDef &field) {
|
|
return field.IsOptional() && field.value.constant == "null";
|
|
}
|
|
|
|
std::string GetArgType(import_set &imports, const Definition &owner,
|
|
const FieldDef &field, bool allowNull) {
|
|
return GenTypeName(imports, owner, field.value.type, true,
|
|
allowNull && field.IsOptional());
|
|
}
|
|
|
|
static std::string GetArgName(const FieldDef &field) {
|
|
auto argname = MakeCamel(field.name, false);
|
|
if (!IsScalar(field.value.type.base_type)) { argname += "Offset"; }
|
|
|
|
return argname;
|
|
}
|
|
|
|
std::string GetPrefixedName(const StructDef &struct_def,
|
|
const char *prefix = "") {
|
|
return prefix + struct_def.name;
|
|
}
|
|
}; // namespace ts
|
|
} // namespace ts
|
|
|
|
bool GenerateTS(const Parser &parser, const std::string &path,
|
|
const std::string &file_name) {
|
|
ts::TsGenerator generator(parser, path, file_name);
|
|
return generator.generate();
|
|
}
|
|
|
|
std::string TSMakeRule(const Parser &parser, const std::string &path,
|
|
const std::string &file_name) {
|
|
FLATBUFFERS_ASSERT(parser.opts.lang <= IDLOptions::kMAX);
|
|
|
|
std::string filebase =
|
|
flatbuffers::StripPath(flatbuffers::StripExtension(file_name));
|
|
ts::TsGenerator generator(parser, path, file_name);
|
|
std::string make_rule =
|
|
generator.GeneratedFileName(path, filebase, parser.opts) + ": ";
|
|
|
|
auto included_files = parser.GetIncludedFilesRecursive(file_name);
|
|
for (auto it = included_files.begin(); it != included_files.end(); ++it) {
|
|
make_rule += " " + *it;
|
|
}
|
|
return make_rule;
|
|
}
|
|
|
|
} // namespace flatbuffers
|