libgocryptfs/gocryptfs-xray/xray_main.go

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package main
import (
"encoding/hex"
"flag"
"fmt"
"io"
"os"
"github.com/rfjakob/gocryptfs/internal/contentenc"
"github.com/rfjakob/gocryptfs/internal/cryptocore"
)
const (
IVLen = contentenc.DefaultIVBits / 8
blockSize = contentenc.DefaultBS + IVLen + cryptocore.AuthTagLen
)
func errExit(err error) {
fmt.Println(err)
os.Exit(1)
}
func prettyPrintHeader(h *contentenc.FileHeader) {
id := hex.EncodeToString(h.Id)
fmt.Printf("Header: Version: %d, Id: %s\n", h.Version, id)
}
func main() {
flag.Parse()
if flag.NArg() != 1 {
fmt.Printf("Usage: xray FILE\n")
os.Exit(1)
}
f := flag.Arg(0)
fd, err := os.Open(f)
if err != nil {
errExit(err)
}
headerBytes := make([]byte, contentenc.HEADER_LEN)
n, err := fd.ReadAt(headerBytes, 0)
if err == io.EOF && n == 0 {
fmt.Println("empty file")
os.Exit(0)
} else if err == io.EOF {
fmt.Printf("incomplete file header: read %d bytes, want %d\n", n, contentenc.HEADER_LEN)
os.Exit(1)
} else if err != nil {
errExit(err)
}
header, err := contentenc.ParseHeader(headerBytes)
if err != nil {
errExit(err)
}
prettyPrintHeader(header)
var i int64
for i = 0; ; i++ {
blockLen := int64(blockSize)
off := contentenc.HEADER_LEN + i*blockSize
iv := make([]byte, IVLen)
_, err := fd.ReadAt(iv, off)
if err == io.EOF {
break
} else if err != nil {
errExit(err)
}
tag := make([]byte, cryptocore.AuthTagLen)
_, err = fd.ReadAt(tag, off+blockSize-cryptocore.AuthTagLen)
if err == io.EOF {
fi, err2 := fd.Stat()
if err2 != nil {
errExit(err2)
}
_, err2 = fd.ReadAt(tag, fi.Size()-cryptocore.AuthTagLen)
if err2 != nil {
errExit(err2)
}
blockLen = (fi.Size() - contentenc.HEADER_LEN) % blockSize
} else if err != nil {
errExit(err)
}
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fmt.Printf("Block %2d: IV: %s, Tag: %s, Offset: %5d Len: %d\n",
i, hex.EncodeToString(iv), hex.EncodeToString(tag), off, blockLen)
}
}