Exemplo n.º 1
0
func TestWithCompressorDeflateConcrete(t *testing.T) {
	testWithCompressorConcrete(t, httputil.CompressDeflate, func(r io.Reader) string {
		fr := flate.NewReader(r)
		defer fr.Close()
		var un = make([]byte, 1024)
		fr.Read(un)
		return string(un)
	})
}
Exemplo n.º 2
0
func init() {
	registerEncoder(FormatFlate, "kp",
		func(w io.Writer, lvl int) io.WriteCloser {
			zw, err := flate.NewWriter(w, lvl)
			if err != nil {
				panic(err)
			}
			return zw
		})
	registerDecoder(FormatFlate, "kp",
		func(r io.Reader) io.ReadCloser {
			return flate.NewReader(r)
		})
}
Exemplo n.º 3
0
func (z *reader) Reset(r io.Reader, dict []byte) error {
	*z = reader{decompressor: z.decompressor}
	if fr, ok := r.(flate.Reader); ok {
		z.r = fr
	} else {
		z.r = bufio.NewReader(r)
	}

	// Read the header (RFC 1950 section 2.2.).
	_, z.err = io.ReadFull(z.r, z.scratch[0:2])
	if z.err != nil {
		if z.err == io.EOF {
			z.err = io.ErrUnexpectedEOF
		}
		return z.err
	}
	h := uint(z.scratch[0])<<8 | uint(z.scratch[1])
	if (z.scratch[0]&0x0f != zlibDeflate) || (h%31 != 0) {
		z.err = ErrHeader
		return z.err
	}
	haveDict := z.scratch[1]&0x20 != 0
	if haveDict {
		_, z.err = io.ReadFull(z.r, z.scratch[0:4])
		if z.err != nil {
			if z.err == io.EOF {
				z.err = io.ErrUnexpectedEOF
			}
			return z.err
		}
		checksum := uint32(z.scratch[0])<<24 | uint32(z.scratch[1])<<16 | uint32(z.scratch[2])<<8 | uint32(z.scratch[3])
		if checksum != adler32.Checksum(dict) {
			z.err = ErrDictionary
			return z.err
		}
	}

	if z.decompressor == nil {
		if haveDict {
			z.decompressor = flate.NewReaderDict(z.r, dict)
		} else {
			z.decompressor = flate.NewReader(z.r)
		}
	} else {
		z.decompressor.(flate.Resetter).Reset(z.r, dict)
	}
	z.digest = adler32.New()
	return nil
}
Exemplo n.º 4
0
func (z *reader) Reset(r io.Reader, dict []byte) error {
	if fr, ok := r.(flate.Reader); ok {
		z.r = fr
	} else {
		z.r = bufio.NewReader(r)
	}
	_, err := io.ReadFull(z.r, z.scratch[0:2])
	if err != nil {
		return err
	}
	h := uint(z.scratch[0])<<8 | uint(z.scratch[1])
	if (z.scratch[0]&0x0f != zlibDeflate) || (h%31 != 0) {
		return ErrHeader
	}
	haveDict := z.scratch[1]&0x20 != 0
	if haveDict {
		_, err = io.ReadFull(z.r, z.scratch[0:4])
		if err != nil {
			return err
		}
		checksum := uint32(z.scratch[0])<<24 | uint32(z.scratch[1])<<16 | uint32(z.scratch[2])<<8 | uint32(z.scratch[3])
		if checksum != adler32.Checksum(dict) {
			return ErrDictionary
		}
	}
	if z.decompressor == nil {
		if haveDict {
			z.decompressor = flate.NewReaderDict(z.r, dict)
		} else {
			z.decompressor = flate.NewReader(z.r)
		}
	} else {
		z.decompressor.(flate.Resetter).Reset(z.r, dict)
	}
	z.digest = adler32.New()
	return nil
}
Exemplo n.º 5
0
func (z *Reader) readHeader(save bool) error {
	_, err := io.ReadFull(z.r, z.buf[0:10])
	if err != nil {
		return err
	}
	if z.buf[0] != gzipID1 || z.buf[1] != gzipID2 || z.buf[2] != gzipDeflate {
		return ErrHeader
	}
	z.flg = z.buf[3]
	if save {
		z.ModTime = time.Unix(int64(get4(z.buf[4:8])), 0)
		// z.buf[8] is xfl, ignored
		z.OS = z.buf[9]
	}
	z.digest.Reset()
	z.digest.Write(z.buf[0:10])

	if z.flg&flagExtra != 0 {
		n, err := z.read2()
		if err != nil {
			return err
		}
		data := make([]byte, n)
		if _, err = io.ReadFull(z.r, data); err != nil {
			return err
		}
		if save {
			z.Extra = data
		}
	}

	var s string
	if z.flg&flagName != 0 {
		if s, err = z.readString(); err != nil {
			return err
		}
		if save {
			z.Name = s
		}
	}

	if z.flg&flagComment != 0 {
		if s, err = z.readString(); err != nil {
			return err
		}
		if save {
			z.Comment = s
		}
	}

	if z.flg&flagHdrCrc != 0 {
		n, err := z.read2()
		if err != nil {
			return err
		}
		sum := z.digest.Sum32() & 0xFFFF
		if n != sum {
			return ErrHeader
		}
	}

	z.digest.Reset()
	if z.decompressor == nil {
		z.decompressor = flate.NewReader(z.r)
	} else {
		z.decompressor.(flate.Resetter).Reset(z.r, nil)
	}
	return nil
}
Exemplo n.º 6
0
// readHeader reads the GZIP header according to section 2.3.1.
// This method does not set z.err.
func (z *Reader) readHeader() (hdr Header, err error) {
	if _, err = io.ReadFull(z.r, z.buf[:10]); err != nil {
		// RFC 1952, section 2.2, says the following:
		//	A gzip file consists of a series of "members" (compressed data sets).
		//
		// Other than this, the specification does not clarify whether a
		// "series" is defined as "one or more" or "zero or more". To err on the
		// side of caution, Go interprets this to mean "zero or more".
		// Thus, it is okay to return io.EOF here.
		return hdr, err
	}
	if z.buf[0] != gzipID1 || z.buf[1] != gzipID2 || z.buf[2] != gzipDeflate {
		return hdr, ErrHeader
	}
	flg := z.buf[3]
	hdr.ModTime = time.Unix(int64(le.Uint32(z.buf[4:8])), 0)
	// z.buf[8] is XFL and is currently ignored.
	hdr.OS = z.buf[9]
	z.digest = crc32.ChecksumIEEE(z.buf[:10])

	if flg&flagExtra != 0 {
		if _, err = io.ReadFull(z.r, z.buf[:2]); err != nil {
			return hdr, noEOF(err)
		}
		z.digest = crc32.Update(z.digest, crc32.IEEETable, z.buf[:2])
		data := make([]byte, le.Uint16(z.buf[:2]))
		if _, err = io.ReadFull(z.r, data); err != nil {
			return hdr, noEOF(err)
		}
		z.digest = crc32.Update(z.digest, crc32.IEEETable, data)
		hdr.Extra = data
	}

	var s string
	if flg&flagName != 0 {
		if s, err = z.readString(); err != nil {
			return hdr, err
		}
		hdr.Name = s
	}

	if flg&flagComment != 0 {
		if s, err = z.readString(); err != nil {
			return hdr, err
		}
		hdr.Comment = s
	}

	if flg&flagHdrCrc != 0 {
		if _, err = io.ReadFull(z.r, z.buf[:2]); err != nil {
			return hdr, noEOF(err)
		}
		digest := le.Uint16(z.buf[:2])
		if digest != uint16(z.digest) {
			return hdr, ErrHeader
		}
	}

	z.digest = 0
	if z.decompressor == nil {
		z.decompressor = flate.NewReader(z.r)
	} else {
		z.decompressor.(flate.Resetter).Reset(z.r, nil)
	}
	return hdr, nil
}