/* This file is part of Nekopack. Copyright (C) 2017 Jakob Tsar-Fox, All Rights Reserved. Nekopack is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. Nekopack is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Nekopack. If not, see . */ #include #include #include #include #include "extract.h" #include "file.h" #define ADLR_MAGIC 0x726c6461 #define SEGM_MAGIC 0x6d676573 #define INFO_MAGIC 0x6f666e69 #define TIME_MAGIC 0x656d6974 void read_info_chunk(memory_stream *data_stream, file_node *parsed); void read_adlr_chunk(memory_stream *data_stream, file_node *parsed); void read_time_chunk(memory_stream *data_stream, file_node *parsed); void read_segm_chunk(memory_stream *data_stream, file_node *parsed, uint64_t segment_count); /* Creates a node for a File entry, which can be deferred in a linked list. NULL will be returned if there isn't enough memory to contain the node structure. */ file_node *read_file_entry(memory_stream *data_stream, Bytef *section_end) { uint32_t entry_magic; uint64_t entry_size; file_node *parsed = calloc(sizeof(file_node), 1); if (parsed == NULL) return NULL; while (data_stream->data < section_end) { read_stream(&entry_magic, &data_stream->data, sizeof(uint32_t)); read_stream(&entry_size, &data_stream->data, sizeof(uint64_t)); switch (entry_magic) { case ADLR_MAGIC: read_adlr_chunk(data_stream, parsed); break; case SEGM_MAGIC: /* The segment count is not included in the table and has to be calculated. Segments are 28 bytes each. */ read_segm_chunk(data_stream, parsed, entry_size / 28); /* There can't really be a check for this in read_segm_chunk, so it's done here. */ if (parsed->segments == NULL) { free(parsed); return NULL; } break; case INFO_MAGIC: read_info_chunk(data_stream, parsed); break; case TIME_MAGIC: read_time_chunk(data_stream, parsed); break; default: printf("Unknown magic: %" PRIx32 "\n", entry_magic); } } return parsed; } /* Reads the contents of an info chunk into a file node. */ void read_info_chunk(memory_stream *data_stream, file_node *parsed) { uint32_t encrypted; uint64_t decompressed_size, compressed_size; uint16_t file_name_size; read_stream(&encrypted, &data_stream->data, sizeof(uint32_t)); read_stream(&decompressed_size, &data_stream->data, sizeof(uint64_t)); read_stream(&compressed_size, &data_stream->data, sizeof(uint64_t)); read_stream(&file_name_size, &data_stream->data, sizeof(uint16_t)); parsed->encrypted = encrypted; char *file_name = malloc(file_name_size * 2 + 2); read_stream(file_name, &data_stream->data, file_name_size * 2 + 2); free(file_name); } /* Reads the contents of a segm chunk into a file node. */ void read_segm_chunk(memory_stream *data_stream, file_node *parsed, uint64_t segment_count) { /* Segments are stored in an array of segment pointers. */ segment **segments = malloc(sizeof(segment *) * segment_count); if (segments == NULL) return; for (uint64_t i = 0; i < segment_count; i++) { segments[i] = malloc(sizeof(segment)); read_stream(&segments[i]->compressed, &data_stream->data, sizeof(uint32_t)); read_stream(&segments[i]->offset, &data_stream->data, sizeof(uint64_t)); read_stream(&segments[i]->decompressed_size, &data_stream->data, sizeof(uint64_t)); read_stream(&segments[i]->compressed_size, &data_stream->data, sizeof(uint64_t)); parsed->file_size += segments[i]->decompressed_size; } parsed->segment_count = segment_count; parsed->segments = segments; } /* Reads the contents of an adlr chunk into a file_node. */ void read_adlr_chunk(memory_stream *data_stream, file_node *parsed) { uint32_t key; read_stream(&key, &data_stream->data, sizeof(uint32_t)); parsed->key = key; } /* Reads the contents of a time chunk into a file_node. */ void read_time_chunk(memory_stream *data_stream, file_node *parsed) { uint64_t timestamp; read_stream(×tamp, &data_stream->data, sizeof(uint64_t)); }