mirror of
https://github.com/Atmosphere-NX/Atmosphere.git
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415 lines
18 KiB
C++
415 lines
18 KiB
C++
/*
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* Copyright (c) 2018 Atmosphère-NX
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <switch.h>
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#include <string.h>
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#include <stratosphere.hpp>
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#include "../utils.hpp"
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#include "fsmitm_romfsbuild.hpp"
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#include "../debug.hpp"
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void RomFSBuildContext::VisitDirectory(FsFileSystem *filesys, RomFSBuildDirectoryContext *parent) {
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FsDir dir;
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Result rc;
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std::vector<RomFSBuildDirectoryContext *> child_dirs;
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/* Open the current parent directory. */
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if (R_FAILED((rc = Utils::OpenRomFSDir(filesys, this->title_id, parent->path, &dir)))) {
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fatalSimple(rc);
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}
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u64 read_entries;
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while (R_SUCCEEDED((rc = fsDirRead(&dir, 0, &read_entries, 1, &this->dir_entry))) && read_entries == 1) {
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if (this->dir_entry.type == ENTRYTYPE_DIR) {
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RomFSBuildDirectoryContext *child = new RomFSBuildDirectoryContext({0});
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/* Set child's path. */
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child->cur_path_ofs = parent->path_len + 1;
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child->path_len = child->cur_path_ofs + strlen(this->dir_entry.name);
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child->path = new char[child->path_len + 1];
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strcpy(child->path, parent->path);
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if (child->path_len > FS_MAX_PATH - 1) {
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fatalSimple(ResultFsTooLongPath);
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}
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strcat(child->path + parent->path_len, "/");
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strcat(child->path + parent->path_len, this->dir_entry.name);
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if (!this->AddDirectory(parent, child, NULL)) {
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delete[] child->path;
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delete child;
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} else {
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child_dirs.push_back(child);
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}
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} else if (this->dir_entry.type == ENTRYTYPE_FILE) {
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RomFSBuildFileContext *child = new RomFSBuildFileContext({0});
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/* Set child's path. */
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child->cur_path_ofs = parent->path_len + 1;
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child->path_len = child->cur_path_ofs + strlen(this->dir_entry.name);
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child->path = new char[child->path_len + 1];
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strcpy(child->path, parent->path);
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if (child->path_len > FS_MAX_PATH - 1) {
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fatalSimple(ResultFsTooLongPath);
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}
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strcat(child->path + parent->path_len, "/");
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strcat(child->path + parent->path_len, this->dir_entry.name);
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child->source = this->cur_source_type;
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child->size = this->dir_entry.fileSize;
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if (!this->AddFile(parent, child)) {
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delete[] child->path;
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delete child;
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}
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} else {
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fatalSimple(rc);
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}
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}
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fsDirClose(&dir);
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for (auto &child : child_dirs) {
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this->VisitDirectory(filesys, child);
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}
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}
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void RomFSBuildContext::MergeSdFiles() {
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FsFileSystem sd_filesystem;
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FsDir dir;
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if (!Utils::IsSdInitialized()) {
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return;
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}
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if (R_FAILED((Utils::OpenSdDirForAtmosphere(this->title_id, "/romfs", &dir)))) {
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return;
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}
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fsDirClose(&dir);
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if (R_FAILED(fsMountSdcard(&sd_filesystem))) {
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return;
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}
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this->cur_source_type = RomFSDataSource::LooseFile;
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this->VisitDirectory(&sd_filesystem, this->root);
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fsFsClose(&sd_filesystem);
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}
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void RomFSBuildContext::VisitDirectory(RomFSBuildDirectoryContext *parent, u32 parent_offset, void *dir_table, size_t dir_table_size, void *file_table, size_t file_table_size) {
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RomFSDirectoryEntry *parent_entry = romfs_get_direntry(dir_table, parent_offset);
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if (parent_entry->file != ROMFS_ENTRY_EMPTY) {
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RomFSFileEntry *cur_file = romfs_get_fentry(file_table, parent_entry->file);
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while (cur_file != NULL) {
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RomFSBuildFileContext *child = new RomFSBuildFileContext({0});
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/* Set child's path. */
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child->cur_path_ofs = parent->path_len + 1;
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child->path_len = child->cur_path_ofs + cur_file->name_size;
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child->path = new char[child->path_len + 1];
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strcpy(child->path, parent->path);
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if (child->path_len > FS_MAX_PATH - 1) {
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fatalSimple(ResultFsTooLongPath);
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}
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strcat(child->path + parent->path_len, "/");
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strncat(child->path + parent->path_len, cur_file->name, cur_file->name_size);
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child->size = cur_file->size;
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child->source = this->cur_source_type;
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child->orig_offset = cur_file->offset;
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if (!this->AddFile(parent, child)) {
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delete[] child->path;
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delete child;
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}
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if (cur_file->sibling == ROMFS_ENTRY_EMPTY) {
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cur_file = NULL;
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} else {
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cur_file = romfs_get_fentry(file_table, cur_file->sibling);
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}
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}
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}
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if (parent_entry->child != ROMFS_ENTRY_EMPTY) {
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RomFSDirectoryEntry *cur_child = romfs_get_direntry(dir_table, parent_entry->child);
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u32 cur_child_offset = parent_entry->child;
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while (cur_child != NULL) {
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RomFSBuildDirectoryContext *child = new RomFSBuildDirectoryContext({0});
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/* Set child's path. */
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child->cur_path_ofs = parent->path_len + 1;
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child->path_len = child->cur_path_ofs + cur_child->name_size;
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child->path = new char[child->path_len + 1];
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strcpy(child->path, parent->path);
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if (child->path_len > FS_MAX_PATH - 1) {
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fatalSimple(ResultFsTooLongPath);
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}
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strcat(child->path + parent->path_len, "/");
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strncat(child->path + parent->path_len, cur_child->name, cur_child->name_size);
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RomFSBuildDirectoryContext *real = NULL;
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if (!this->AddDirectory(parent, child, &real)) {
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delete[] child->path;
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delete child;
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}
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if (real == NULL) {
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/* TODO: Better error. */
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fatalSimple(ResultKernelConnectionClosed);
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}
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this->VisitDirectory(real, cur_child_offset, dir_table, dir_table_size, file_table, file_table_size);
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if (cur_child->sibling == ROMFS_ENTRY_EMPTY) {
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cur_child = NULL;
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} else {
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cur_child_offset = cur_child->sibling;
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cur_child = romfs_get_direntry(dir_table, cur_child->sibling);
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}
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}
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}
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}
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void RomFSBuildContext::MergeRomStorage(IROStorage *storage, RomFSDataSource source) {
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Result rc;
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RomFSHeader header;
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if (R_FAILED((rc = storage->Read(&header, sizeof(header), 0)))) {
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fatalSimple(rc);
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}
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if (header.header_size != sizeof(header)) {
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/* what */
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return;
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}
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/* Read tables. */
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auto dir_table = std::make_unique<u8[]>(header.dir_table_size);
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auto file_table = std::make_unique<u8[]>(header.file_table_size);
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if (R_FAILED((rc = storage->Read(dir_table.get(), header.dir_table_size, header.dir_table_ofs)))) {
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fatalSimple(rc);
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}
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if (R_FAILED((rc = storage->Read(file_table.get(), header.file_table_size, header.file_table_ofs)))) {
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fatalSimple(rc);
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}
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this->cur_source_type = source;
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this->VisitDirectory(this->root, 0x0, dir_table.get(), (size_t)header.dir_table_size, file_table.get(), (size_t)header.file_table_size);
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}
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bool RomFSBuildContext::AddDirectory(RomFSBuildDirectoryContext *parent_dir_ctx, RomFSBuildDirectoryContext *dir_ctx, RomFSBuildDirectoryContext **out_dir_ctx) {
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/* Check whether it's already in the known directories. */
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auto existing = this->directories.find(dir_ctx->path);
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if (existing != this->directories.end()) {
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if (out_dir_ctx) {
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*out_dir_ctx = existing->second;
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}
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return false;
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}
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/* Add a new directory. */
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this->num_dirs++;
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this->dir_table_size += sizeof(RomFSDirectoryEntry) + ((dir_ctx->path_len - dir_ctx->cur_path_ofs + 3) & ~3);
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dir_ctx->parent = parent_dir_ctx;
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this->directories.insert({dir_ctx->path, dir_ctx});
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if (out_dir_ctx) {
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*out_dir_ctx = dir_ctx;
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}
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return true;
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}
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bool RomFSBuildContext::AddFile(RomFSBuildDirectoryContext *parent_dir_ctx, RomFSBuildFileContext *file_ctx) {
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/* Check whether it's already in the known files. */
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auto existing = this->files.find(file_ctx->path);
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if (existing != this->files.end()) {
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return false;
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}
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/* Add a new file. */
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this->num_files++;
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this->file_table_size += sizeof(RomFSFileEntry) + ((file_ctx->path_len - file_ctx->cur_path_ofs + 3) & ~3);
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file_ctx->parent = parent_dir_ctx;
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this->files.insert({file_ctx->path, file_ctx});
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return true;
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}
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void RomFSBuildContext::Build(std::vector<RomFSSourceInfo> *out_infos) {
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RomFSBuildFileContext *cur_file;
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RomFSBuildDirectoryContext *cur_dir;
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u32 entry_offset;
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u32 dir_hash_table_entry_count = romfs_get_hash_table_count(this->num_dirs);
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u32 file_hash_table_entry_count = romfs_get_hash_table_count(this->num_files);
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this->dir_hash_table_size = 4 * dir_hash_table_entry_count;
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this->file_hash_table_size = 4 * file_hash_table_entry_count;
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/* Assign metadata pointers */
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auto *header = reinterpret_cast<RomFSHeader*>(std::malloc(sizeof(RomFSHeader)));
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*header = {};
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const size_t metadata_size = this->dir_hash_table_size + this->dir_table_size + this->file_hash_table_size + this->file_table_size;
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u8 *metadata = reinterpret_cast<u8*>(std::malloc(metadata_size));
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u32 *dir_hash_table = (u32 *)((uintptr_t)metadata);
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RomFSDirectoryEntry *dir_table = (RomFSDirectoryEntry *)((uintptr_t)dir_hash_table + this->dir_hash_table_size);
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u32 *file_hash_table = (u32 *)((uintptr_t)dir_table + this->dir_table_size);
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RomFSFileEntry *file_table = (RomFSFileEntry *)((uintptr_t)file_hash_table + this->file_hash_table_size);
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/* Clear out hash tables. */
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for (u32 i = 0; i < dir_hash_table_entry_count; i++) {
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dir_hash_table[i] = ROMFS_ENTRY_EMPTY;
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}
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for (u32 i = 0; i < file_hash_table_entry_count; i++) {
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file_hash_table[i] = ROMFS_ENTRY_EMPTY;
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}
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out_infos->clear();
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out_infos->emplace_back(0, sizeof(*header), header, RomFSDataSource::Memory);
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/* Determine file offsets. */
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entry_offset = 0;
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RomFSBuildFileContext *prev_file = NULL;
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for (const auto &it : this->files) {
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cur_file = it.second;
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this->file_partition_size = (this->file_partition_size + 0xFULL) & ~0xFULL;
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/* Check for extra padding in the original romfs source and preserve it, to help ourselves later. */
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if (prev_file && prev_file->source == cur_file->source && (prev_file->source == RomFSDataSource::BaseRomFS || prev_file->source == RomFSDataSource::FileRomFS)) {
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u64 expected = (this->file_partition_size - prev_file->offset + prev_file->orig_offset);
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if (expected != cur_file->orig_offset) {
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if (expected > cur_file->orig_offset) {
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/* This case should NEVER happen. */
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/* TODO: Better error. */
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fatalSimple(ResultKernelConnectionClosed);
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}
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this->file_partition_size += cur_file->orig_offset - expected;
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}
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}
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cur_file->offset = this->file_partition_size;
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this->file_partition_size += cur_file->size;
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cur_file->entry_offset = entry_offset;
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entry_offset += sizeof(RomFSFileEntry) + ((cur_file->path_len - cur_file->cur_path_ofs + 3) & ~3);
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prev_file = cur_file;
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}
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/* Assign deferred parent/sibling ownership. */
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for (auto it = this->files.rbegin(); it != this->files.rend(); it++) {
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cur_file = it->second;
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cur_file->sibling = cur_file->parent->file;
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cur_file->parent->file = cur_file;
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}
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/* Determine directory offsets. */
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entry_offset = 0;
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for (const auto &it : this->directories) {
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cur_dir = it.second;
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cur_dir->entry_offset = entry_offset;
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entry_offset += sizeof(RomFSDirectoryEntry) + ((cur_dir->path_len - cur_dir->cur_path_ofs + 3) & ~3);
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}
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/* Assign deferred parent/sibling ownership. */
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for (auto it = this->directories.rbegin(); it->second != this->root; it++) {
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cur_dir = it->second;
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cur_dir->sibling = cur_dir->parent->child;
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cur_dir->parent->child = cur_dir;
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}
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/* Populate file tables. */
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for (const auto &it : this->files) {
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cur_file = it.second;
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RomFSFileEntry *cur_entry = romfs_get_fentry(file_table, cur_file->entry_offset);
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cur_entry->parent = cur_file->parent->entry_offset;
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cur_entry->sibling = (cur_file->sibling == NULL) ? ROMFS_ENTRY_EMPTY : cur_file->sibling->entry_offset;
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cur_entry->offset = cur_file->offset;
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cur_entry->size = cur_file->size;
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u32 name_size = cur_file->path_len - cur_file->cur_path_ofs;
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u32 hash = romfs_calc_path_hash(cur_file->parent->entry_offset, (unsigned char *)cur_file->path + cur_file->cur_path_ofs, 0, name_size);
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cur_entry->hash = file_hash_table[hash % file_hash_table_entry_count];
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file_hash_table[hash % file_hash_table_entry_count] = cur_file->entry_offset;
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cur_entry->name_size = name_size;
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memset(cur_entry->name, 0, (cur_entry->name_size + 3) & ~3);
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memcpy(cur_entry->name, cur_file->path + cur_file->cur_path_ofs, name_size);
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switch (cur_file->source) {
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case RomFSDataSource::BaseRomFS:
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case RomFSDataSource::FileRomFS:
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/* Try to compact, if possible. */
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if (out_infos->back().type == cur_file->source) {
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out_infos->back().size = cur_file->offset + ROMFS_FILEPARTITION_OFS + cur_file->size - out_infos->back().virtual_offset;
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} else {
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out_infos->emplace_back(cur_file->offset + ROMFS_FILEPARTITION_OFS, cur_file->size, cur_file->orig_offset + ROMFS_FILEPARTITION_OFS, cur_file->source);
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}
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break;
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case RomFSDataSource::LooseFile:
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{
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char *path = new char[cur_file->path_len + 1];
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strcpy(path, cur_file->path);
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out_infos->emplace_back(cur_file->offset + ROMFS_FILEPARTITION_OFS, cur_file->size, path, cur_file->source);
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}
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break;
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default:
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/* TODO: Better error. */
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fatalSimple(ResultKernelConnectionClosed);
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break;
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}
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}
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/* Populate dir tables. */
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for (const auto &it : this->directories) {
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cur_dir = it.second;
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RomFSDirectoryEntry *cur_entry = romfs_get_direntry(dir_table, cur_dir->entry_offset);
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cur_entry->parent = cur_dir == this->root ? 0 : cur_dir->parent->entry_offset;
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cur_entry->sibling = (cur_dir->sibling == NULL) ? ROMFS_ENTRY_EMPTY : cur_dir->sibling->entry_offset;
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cur_entry->child = (cur_dir->child == NULL) ? ROMFS_ENTRY_EMPTY : cur_dir->child->entry_offset;
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cur_entry->file = (cur_dir->file == NULL) ? ROMFS_ENTRY_EMPTY : cur_dir->file->entry_offset;
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u32 name_size = cur_dir->path_len - cur_dir->cur_path_ofs;
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u32 hash = romfs_calc_path_hash(cur_dir == this->root ? 0 : cur_dir->parent->entry_offset, (unsigned char *)cur_dir->path + cur_dir->cur_path_ofs, 0, name_size);
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cur_entry->hash = dir_hash_table[hash % dir_hash_table_entry_count];
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dir_hash_table[hash % dir_hash_table_entry_count] = cur_dir->entry_offset;
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cur_entry->name_size = name_size;
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memset(cur_entry->name, 0, (cur_entry->name_size + 3) & ~3);
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memcpy(cur_entry->name, cur_dir->path + cur_dir->cur_path_ofs, name_size);
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}
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/* Delete directories. */
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for (const auto &it : this->directories) {
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cur_dir = it.second;
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delete[] cur_dir->path;
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delete cur_dir;
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}
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this->root = NULL;
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this->directories.clear();
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/* Delete files. */
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for (const auto &it : this->files) {
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cur_file = it.second;
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delete[] cur_file->path;
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delete cur_file;
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}
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this->files.clear();
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/* Set header fields. */
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header->header_size = sizeof(*header);
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header->file_hash_table_size = this->file_hash_table_size;
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header->file_table_size = this->file_table_size;
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header->dir_hash_table_size = this->dir_hash_table_size;
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header->dir_table_size = this->dir_table_size;
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header->file_partition_ofs = ROMFS_FILEPARTITION_OFS;
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header->dir_hash_table_ofs = (header->file_partition_ofs + this->file_partition_size + 3ULL) & ~3ULL;
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header->dir_table_ofs = header->dir_hash_table_ofs + header->dir_hash_table_size;
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header->file_hash_table_ofs = header->dir_table_ofs + header->dir_table_size;
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header->file_table_ofs = header->file_hash_table_ofs + header->file_hash_table_size;
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/* Try to save metadata to the SD card, to save on memory space. */
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if (R_SUCCEEDED(Utils::SaveSdFileForAtmosphere(this->title_id, ROMFS_METADATA_FILE_PATH, metadata, metadata_size))) {
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out_infos->emplace_back(header->dir_hash_table_ofs, metadata_size, RomFSDataSource::MetaData);
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std::free(metadata);
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} else {
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out_infos->emplace_back(header->dir_hash_table_ofs, metadata_size, metadata, RomFSDataSource::Memory);
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}
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}
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