#include #include "types.h" #include "utils.h" #include "ivfc.h" /* RomFS functions... */ static void romfs_visit_file(romfs_ctx_t *ctx, uint32_t file_offset, filepath_t *dir_path) { filepath_t *cur_path = calloc(1, sizeof(filepath_t)); if (cur_path == NULL) { fprintf(stderr, "Failed to allocate filepath!\n"); exit(EXIT_FAILURE); } while (file_offset != ROMFS_ENTRY_EMPTY) { romfs_fentry_t *entry = romfs_get_fentry(ctx->files, file_offset); filepath_copy(cur_path, dir_path); if (entry->name_size) { filepath_append_n(cur_path, entry->name_size, "%s", entry->name); } /* If we're extracting... */ if ((ctx->tool_ctx->action & ACTION_LISTROMFS) == 0) { printf("Saving %s...\n", cur_path->char_path); save_file_section(ctx->file, ctx->romfs_offset + ctx->header.data_offset + entry->offset, entry->size, cur_path); } else { printf("rom:%s\n", cur_path->char_path); } file_offset = entry->sibling; } free(cur_path); } static void romfs_visit_dir(romfs_ctx_t *ctx, uint32_t dir_offset, filepath_t *parent_path) { romfs_direntry_t *entry = romfs_get_direntry(ctx->directories, dir_offset); filepath_t *cur_path = calloc(1, sizeof(filepath_t)); if (cur_path == NULL) { fprintf(stderr, "Failed to allocate filepath!\n"); exit(EXIT_FAILURE); } filepath_copy(cur_path, parent_path); if (entry->name_size) { filepath_append_n(cur_path, entry->name_size, "%s", entry->name); } /* If we're actually extracting the romfs, make directory. */ if ((ctx->tool_ctx->action & ACTION_LISTROMFS) == 0) { os_makedir(cur_path->os_path); } if (entry->file != ROMFS_ENTRY_EMPTY) { romfs_visit_file(ctx, entry->file, cur_path); } if (entry->child != ROMFS_ENTRY_EMPTY) { romfs_visit_dir(ctx, entry->child, cur_path); } if (entry->sibling != ROMFS_ENTRY_EMPTY) { romfs_visit_dir(ctx, entry->sibling, parent_path); } free(cur_path); } void romfs_process(romfs_ctx_t *ctx) { ctx->romfs_offset = 0; fseeko64(ctx->file, ctx->romfs_offset, SEEK_SET); if (fread(&ctx->header, 1, sizeof(romfs_hdr_t), ctx->file) != sizeof(romfs_hdr_t)) { fprintf(stderr, "Failed to read RomFS header!\n"); return; } if ((ctx->tool_ctx->action & (ACTION_EXTRACT | ACTION_LISTROMFS)) && ctx->header.header_size == ROMFS_HEADER_SIZE) { /* Pre-load the file/data entry caches. */ ctx->directories = calloc(1, ctx->header.dir_meta_table_size); if (ctx->directories == NULL) { fprintf(stderr, "Failed to allocate RomFS directory cache!\n"); exit(EXIT_FAILURE); } fseeko64(ctx->file, ctx->romfs_offset + ctx->header.dir_meta_table_offset, SEEK_SET); if (fread(ctx->directories, 1, ctx->header.dir_meta_table_size, ctx->file) != ctx->header.dir_meta_table_size) { fprintf(stderr, "Failed to read RomFS directory cache!\n"); exit(EXIT_FAILURE); } ctx->files = calloc(1, ctx->header.file_meta_table_size); if (ctx->files == NULL) { fprintf(stderr, "Failed to allocate RomFS file cache!\n"); exit(EXIT_FAILURE); } fseeko64(ctx->file, ctx->romfs_offset + ctx->header.file_meta_table_offset, SEEK_SET); if (fread(ctx->files, 1, ctx->header.file_meta_table_size, ctx->file) != ctx->header.file_meta_table_size) { fprintf(stderr, "Failed to read RomFS file cache!\n"); exit(EXIT_FAILURE); } } /* If there's ever anything meaningful to print about RomFS, uncomment and implement. * * if (ctx->tool_ctx->action & ACTION_INFO) { * romfs_print(ctx); * } */ if (ctx->tool_ctx->action & ACTION_EXTRACT) { romfs_save(ctx); } } void romfs_save(romfs_ctx_t *ctx) { if (ctx->tool_ctx->action & ACTION_LISTROMFS) { filepath_t fakepath; filepath_init(&fakepath); filepath_set(&fakepath, ""); printf("Visiting romfs\n"); romfs_visit_dir(ctx, 0, &fakepath); } else { /* Extract to directory. */ filepath_t *dirpath = NULL; if (ctx->tool_ctx->settings.romfs_dir_path.enabled) { dirpath = &ctx->tool_ctx->settings.romfs_dir_path.path; } if ((dirpath == NULL || dirpath->valid != VALIDITY_VALID) && (ctx->tool_ctx->file_type == FILETYPE_ROMFS && ctx->tool_ctx->settings.out_dir_path.enabled)) { dirpath = &ctx->tool_ctx->settings.out_dir_path.path; } if (dirpath != NULL && dirpath->valid == VALIDITY_VALID) { os_makedir(dirpath->os_path); romfs_visit_dir(ctx, 0, dirpath); } } } void romfs_print(romfs_ctx_t *ctx) { /* Is there anything meaningful to print here? */ fprintf(stderr, "Error: RomFS printing not implemented.\n"); }