forked from BigfootDev/flatbuffers
This change renames a few variables to fix the build in VS 2015. VS 2015 new warnings: http://blogs.msdn.com/b/vcblog/archive/2014/11/12/improvements-to-warnings-in-the-c-compiler.aspx Change-Id: Ic9c3f75ee717f0125960c813df442ed4fbcceb4a
221 lines
8.5 KiB
C++
Executable File
221 lines
8.5 KiB
C++
Executable File
/*
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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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#include "flatbuffers/flatbuffers.h"
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#include "flatbuffers/idl.h"
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#include "flatbuffers/util.h"
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static void Error(const char *err, const char *obj = nullptr,
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bool usage = false, bool show_exe_name = true);
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// This struct allows us to create a table of all possible output generators
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// for the various programming languages and formats we support.
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struct Generator {
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bool (*generate)(const flatbuffers::Parser &parser,
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const std::string &path,
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const std::string &file_name,
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const flatbuffers::GeneratorOptions &opts);
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const char *generator_opt;
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const char *lang_name;
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flatbuffers::GeneratorOptions::Language lang;
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const char *generator_help;
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std::string (*make_rule)(const flatbuffers::Parser &parser,
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const std::string &path,
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const std::string &file_name,
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const flatbuffers::GeneratorOptions &opts);
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};
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const Generator generators[] = {
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{ flatbuffers::GenerateBinary, "-b", "binary",
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flatbuffers::GeneratorOptions::kMAX,
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"Generate wire format binaries for any data definitions",
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flatbuffers::BinaryMakeRule },
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{ flatbuffers::GenerateTextFile, "-t", "text",
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flatbuffers::GeneratorOptions::kMAX,
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"Generate text output for any data definitions",
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flatbuffers::TextMakeRule },
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{ flatbuffers::GenerateCPP, "-c", "C++",
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flatbuffers::GeneratorOptions::kMAX,
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"Generate C++ headers for tables/structs",
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flatbuffers::CPPMakeRule },
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{ flatbuffers::GenerateGo, "-g", "Go",
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flatbuffers::GeneratorOptions::kGo,
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"Generate Go files for tables/structs",
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flatbuffers::GeneralMakeRule },
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{ flatbuffers::GenerateGeneral, "-j", "Java",
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flatbuffers::GeneratorOptions::kJava,
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"Generate Java classes for tables/structs",
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flatbuffers::GeneralMakeRule },
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{ flatbuffers::GenerateGeneral, "-n", "C#",
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flatbuffers::GeneratorOptions::kCSharp,
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"Generate C# classes for tables/structs",
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flatbuffers::GeneralMakeRule },
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};
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const char *program_name = NULL;
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static void Error(const char *err, const char *obj, bool usage,
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bool show_exe_name) {
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if (show_exe_name) printf("%s: ", program_name);
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printf("%s", err);
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if (obj) printf(": %s", obj);
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printf("\n");
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if (usage) {
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printf("usage: %s [OPTION]... FILE... [-- FILE...]\n", program_name);
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for (size_t i = 0; i < sizeof(generators) / sizeof(generators[0]); ++i)
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printf(" %s %s.\n",
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generators[i].generator_opt,
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generators[i].generator_help);
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printf(
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" -o PATH Prefix PATH to all generated files.\n"
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" -I PATH Search for includes in the specified path.\n"
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" -M Print make rules for generated files.\n"
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" --strict-json Strict JSON: field names must be / will be quoted,\n"
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" no trailing commas in tables/vectors.\n"
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" --no-prefix Don\'t prefix enum values with the enum type in C++.\n"
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" --gen-includes Generate include statements for included schemas the\n"
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" generated file depends on (C++).\n"
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" --proto Input is a .proto, translate to .fbs.\n"
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"FILEs may depend on declarations in earlier files.\n"
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"FILEs after the -- must be binary flatbuffer format files.\n"
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"Output files are named using the base file name of the input,\n"
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"and written to the current directory or the path given by -o.\n"
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"example: %s -c -b schema1.fbs schema2.fbs data.json\n",
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program_name);
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}
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exit(1);
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}
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int main(int argc, const char *argv[]) {
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program_name = argv[0];
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flatbuffers::GeneratorOptions opts;
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std::string output_path;
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const size_t num_generators = sizeof(generators) / sizeof(generators[0]);
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bool generator_enabled[num_generators] = { false };
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bool any_generator = false;
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bool print_make_rules = false;
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bool proto_mode = false;
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std::vector<std::string> filenames;
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std::vector<const char *> include_directories;
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size_t binary_files_from = std::numeric_limits<size_t>::max();
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for (int argi = 1; argi < argc; argi++) {
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const char *arg = argv[argi];
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if (arg[0] == '-') {
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if (filenames.size() && arg[1] != '-')
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Error("invalid option location", arg, true);
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std::string opt = arg;
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if (opt == "-o") {
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if (++argi >= argc) Error("missing path following", arg, true);
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output_path = flatbuffers::ConCatPathFileName(argv[argi], "");
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} else if(opt == "-I") {
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if (++argi >= argc) Error("missing path following", arg, true);
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include_directories.push_back(argv[argi]);
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} else if(opt == "--strict-json") {
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opts.strict_json = true;
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} else if(opt == "--no-prefix") {
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opts.prefixed_enums = false;
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} else if(opt == "--gen-includes") {
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opts.include_dependence_headers = true;
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} else if(opt == "--") { // Separator between text and binary inputs.
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binary_files_from = filenames.size();
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} else if(opt == "--proto") {
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proto_mode = true;
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any_generator = true;
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} else if(opt == "-M") {
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print_make_rules = true;
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} else {
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for (size_t i = 0; i < num_generators; ++i) {
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if (opt == generators[i].generator_opt) {
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generator_enabled[i] = true;
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any_generator = true;
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goto found;
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}
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}
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Error("unknown commandline argument", arg, true);
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found:;
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}
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} else {
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filenames.push_back(argv[argi]);
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}
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}
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if (!filenames.size()) Error("missing input files", nullptr, true);
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if (!any_generator)
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Error("no options", "specify one of -c -g -j -t -b etc.", true);
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// Now process the files:
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flatbuffers::Parser parser(opts.strict_json, proto_mode);
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for (auto file_it = filenames.begin();
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file_it != filenames.end();
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++file_it) {
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std::string contents;
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if (!flatbuffers::LoadFile(file_it->c_str(), true, &contents))
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Error("unable to load file", file_it->c_str());
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bool is_binary = static_cast<size_t>(file_it - filenames.begin()) >=
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binary_files_from;
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if (is_binary) {
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parser.builder_.Clear();
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parser.builder_.PushBytes(
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reinterpret_cast<const uint8_t *>(contents.c_str()),
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contents.length());
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} else {
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auto local_include_directory = flatbuffers::StripFileName(*file_it);
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include_directories.push_back(local_include_directory.c_str());
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include_directories.push_back(nullptr);
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if (!parser.Parse(contents.c_str(), &include_directories[0],
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file_it->c_str()))
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Error(parser.error_.c_str(), nullptr, false, false);
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include_directories.pop_back();
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include_directories.pop_back();
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}
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std::string filebase = flatbuffers::StripPath(
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flatbuffers::StripExtension(*file_it));
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for (size_t i = 0; i < num_generators; ++i) {
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opts.lang = generators[i].lang;
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if (generator_enabled[i]) {
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if (!print_make_rules) {
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flatbuffers::EnsureDirExists(output_path);
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if (!generators[i].generate(parser, output_path, filebase, opts)) {
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Error((std::string("Unable to generate ") +
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generators[i].lang_name +
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" for " +
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filebase).c_str());
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}
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} else {
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std::string make_rule = generators[i].make_rule(
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parser, output_path, *file_it, opts);
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if (!make_rule.empty())
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printf("%s\n", flatbuffers::WordWrap(
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make_rule, 80, " ", " \\").c_str());
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}
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}
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}
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if (proto_mode) GenerateFBS(parser, output_path, filebase, opts);
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// We do not want to generate code for the definitions in this file
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// in any files coming up next.
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parser.MarkGenerated();
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}
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return 0;
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}
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