Files
CodenameEngine/source/funkin/backend/utils/SysZip.hx
T
2023-04-22 12:15:49 +02:00

158 lines
3.9 KiB
Haxe

package funkin.backend.utils;
#if sys
import haxe.io.Input;
import haxe.zip.Entry;
import haxe.zip.Reader;
import sys.io.File;
import sys.io.FileInput;
import haxe.zip.InflateImpl;
/**
* Class that extends Reader allowing you to load ZIP entries without blowing your RAM up!!
* Half of the code is taken from haxe libraries btw
*/
class SysZip extends Reader {
var input:Input;
var fileInput:FileInput;
public var entries:List<SysZipEntry>;
/**
* Opens a zip from a specified path.
* @param path Path to the zip file.
*/
public static function openFromFile(path:String) {
return new SysZip(File.read(path, true));
}
/**
* Creates a new SysZip from a specified file input.
* @param input File input.
*/
public function new(input:FileInput) {
super(input);
fileInput = input;
}
/**
* Reads all the data present in a specified entry.
* NOTE: If the entry is compressed, the data won't be decompressed. For decompression, use `unzipEntry`.
* @param e Entry
*/
public function readEntryData(e:SysZipEntry) {
var bytes:haxe.io.Bytes = null;
var buf = null;
var tmp = null;
fileInput.seek(e.seekPos, SeekBegin);
if (e.crc32 == null) {
if (e.compressed) {
#if neko
// enter progressive mode : we use a different input which has
// a temporary buffer, this is necessary since we have to uncompress
// progressively, and after that we might have pending read data
// that needs to be processed
var bufSize = 65536;
if (buf == null) {
buf = new haxe.io.BufferInput(i, haxe.io.Bytes.alloc(bufSize));
tmp = haxe.io.Bytes.alloc(bufSize);
i = buf;
}
var out = new haxe.io.BytesBuffer();
var z = new neko.zip.Uncompress(-15);
z.setFlushMode(neko.zip.Flush.SYNC);
while (true) {
if (buf.available == 0)
buf.refill();
var p = bufSize - buf.available;
if (p != buf.pos) {
// because of lack of "srcLen" in zip api, we need to always be stuck to the buffer end
buf.buf.blit(p, buf.buf, buf.pos, buf.available);
buf.pos = p;
}
var r = z.execute(buf.buf, buf.pos, tmp, 0);
out.addBytes(tmp, 0, r.write);
buf.pos += r.read;
buf.available -= r.read;
if (r.done)
break;
}
bytes = out.getBytes();
#else
var bufSize = 65536;
if (tmp == null)
tmp = haxe.io.Bytes.alloc(bufSize);
var out = new haxe.io.BytesBuffer();
var z = new InflateImpl(i, false, false);
while (true) {
var n = z.readBytes(tmp, 0, bufSize);
out.addBytes(tmp, 0, n);
if (n < bufSize)
break;
}
bytes = out.getBytes();
#end
} else
bytes = i.read(e.dataSize);
e.crc32 = i.readInt32();
if (e.crc32 == 0x08074b50)
e.crc32 = i.readInt32();
e.dataSize = i.readInt32();
e.fileSize = i.readInt32();
// set data to uncompressed
e.dataSize = e.fileSize;
e.compressed = false;
} else
bytes = i.read(e.dataSize);
return bytes;
}
/**
* Unzips and returns all of the data present in an entry.
* @param f Entry to read from.
*/
public function unzipEntry(f:SysZipEntry) {
var data = readEntryData(f);
if (!f.compressed)
return data;
var c = new haxe.zip.Uncompress(-15);
var s = haxe.io.Bytes.alloc(f.fileSize);
var r = c.execute(data, 0, s, 0);
c.close();
if (!r.done || r.read != data.length || r.write != f.fileSize)
throw "Invalid compressed data for " + f.fileName;
data = s;
return data;
}
public override function read():List<Entry> {
if (entries != null)
return entries;
entries = new List();
while (true) {
var e = readEntryHeader();
if (e == null)
break;
var zipEntry:SysZipEntry = cast e;
zipEntry.seekPos = fileInput.tell();
entries.add(zipEntry);
fileInput.seek(e.dataSize, SeekCur);
}
return entries;
}
public function dispose() {
if (input != null)
input.close();
}
}
typedef SysZipEntry = {
> Entry,
var seekPos:Int;
}
#end