XZ to TAR Converter
FileFlip converts XZ to TAR entirely inside your browser, using libarchive compiled to WebAssembly. The file is never uploaded to a server: it is read off your disk, converted on your own machine, and saved back by the browser. That means no file-size limit, no queue and no account.
How do I convert an XZ file to TAR?#
- Drop your XZ file onto the converter at the top of this page, or click it to pick one from your computer. You can add as many as you like.
- Leave the target set to TAR and the conversion starts on its own. FileFlip downloads 1.0 MB of WebAssembly the first time and nothing after that, then runs libarchive on your own machine.
- Save the TAR file. Your browser writes it straight to your downloads folder, because there was never a server holding it.
Does converting XZ to TAR lose quality?#
No. Converting XZ to TAR does not touch the files inside the archive. Each member is read out and written back byte for byte, so only the wrapper around them changes and nothing is recompressed.
Is it safe to convert XZ files online?#
Yes, because nothing is uploaded. FileFlip converts XZ files inside the browser tab you already have open, using WebAssembly builds of the same engines a desktop converter would install. Your file is read from your own disk into the page's memory, and no request carrying it is ever made.
You do not have to take that on trust. Open your browser's network panel, run a conversion, and you will see the engine come down and your file go nowhere. There is no upload, no server-side copy, no retention window, and no account tied to what you converted.
How FileFlip works lists every engine, its version and its download size, and shows how to check for yourself that nothing leaves your machine.
What XZ to TAR actually does to the file#
Converting XZ to TAR runs on libarchive, downloads 1.0 MB of WebAssembly the first time and nothing after that, copies the archived files through unchanged, keeps file contents, and drops file timestamps and file permissions.
| Engine | libarchive |
|---|---|
| Conversion path | 2 steps: XZ → the unpacked files → TAR |
| Downloaded to your browser | 1.0 MB, once, then cached by your browser |
| Quality | Lossless, contents copied unchanged |
| You get back | One file |
| Where it runs | On the page's own thread, so a very large file will make the tab wait |
What survives the conversion
| What is in the file | This conversion | Why |
|---|---|---|
| File contents | Kept | Carried through into the converted file. |
| File timestamps | Dropped | The target format has nowhere to put it. |
| File permissions | Dropped | The target format has nowhere to put it. |
Worth knowing before you start:
- the built-in ZIP and TAR writer records no timestamps, permissions, or ownership
- every entry is extracted into memory before anything is written, so a very large archive can exhaust it
- this conversion runs on the page's own thread, so a large file will freeze the tab while it works
What is an XZ file?#
An XZ file is a single stream compressed with LZMA2 inside a container that adds framing, size fields and a CRC or SHA-256 integrity check, specified by the Tukaani project's xz format starting in 2009.
Use XZ when the smallest practical archive size matters more than how long compression takes, which is why Linux distributions compress their packages and kernel source with it.
Convert XZ to GZ when the archive needs to decompress on something old or constrained enough that gzip's lighter decoder matters.
What is a TAR file?#
A TAR file concatenates files, directories and 512-byte headers recording each item's owner, permissions and modification time into one stream, a format Unix introduced in 1979 for writing straight to magnetic tape with no compression involved.
Use TAR when file ownership, permissions and symlinks have to survive the trip, which matters for backups and Unix software distribution and doesn't matter for a folder of photos.
Convert an uncompressed TAR to a compressed variant like TGZ or TXZ when the archive is being stored or transferred and its size actually matters.
XZ to TAR questions people ask#
Why do Linux distributions use .xz for packages?
xz compresses tighter than gzip or bzip2 on most data while still decompressing quickly, which matters because package managers decompress far more often than they compress. That ratio-versus-decompression-speed balance is why Debian, Fedora and the Linux kernel have shipped source and package archives as .xz for years.
Is xz the same as LZMA?
xz is a container format built around LZMA2, an improved version of the older LZMA algorithm, adding a proper file header, block structure and a CRC or SHA-256 integrity check that raw LZMA files never had. The Tukaani Project's .xz format specification was first released in 2009.
Why is xz compression so slow?
xz's LZMA2 algorithm searches harder for redundancy than gzip's DEFLATE or bzip2's Burrows-Wheeler transform, which is exactly what gives it a better compression ratio, but that search takes real CPU time and memory, especially at higher presets. Decompression doesn't carry this cost and stays fast.
Was the xz format itself compromised in the 2024 backdoor?
No. The 2024 incident, CVE-2024-3094, planted malicious code in the XZ Utils build scripts and the liblzma library in versions 5.6.0 and 5.6.1, not in the .xz file format itself. Files compressed as .xz were never the vector; the risk was in that specific compromised version of the software that reads and writes them.