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	* Switch to keybase go-crypto (for some elliptic curve key) + test
* Use assert.NoError 
and add a little more context to failing test description
* Use assert.(No)Error everywhere 🌈
and assert.Error in place of .Nil/.NotNil
		
	
		
			
				
	
	
		
			125 lines
		
	
	
		
			3.2 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			125 lines
		
	
	
		
			3.2 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
// Copyright 2011 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package packet
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import (
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	"compress/bzip2"
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	"compress/flate"
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	"compress/zlib"
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	"io"
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	"strconv"
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	"github.com/keybase/go-crypto/openpgp/errors"
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)
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// Compressed represents a compressed OpenPGP packet. The decompressed contents
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// will contain more OpenPGP packets. See RFC 4880, section 5.6.
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type Compressed struct {
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	Body io.Reader
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}
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const (
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	NoCompression      = flate.NoCompression
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	BestSpeed          = flate.BestSpeed
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	BestCompression    = flate.BestCompression
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	DefaultCompression = flate.DefaultCompression
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)
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// CompressionConfig contains compressor configuration settings.
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type CompressionConfig struct {
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	// Level is the compression level to use. It must be set to
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	// between -1 and 9, with -1 causing the compressor to use the
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	// default compression level, 0 causing the compressor to use
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	// no compression and 1 to 9 representing increasing (better,
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	// slower) compression levels. If Level is less than -1 or
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	// more then 9, a non-nil error will be returned during
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	// encryption. See the constants above for convenient common
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	// settings for Level.
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	Level int
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}
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func (c *Compressed) parse(r io.Reader) error {
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	var buf [1]byte
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	_, err := readFull(r, buf[:])
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	if err != nil {
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		return err
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	}
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	switch buf[0] {
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	case 1:
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		c.Body = flate.NewReader(r)
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	case 2:
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		c.Body, err = zlib.NewReader(r)
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	case 3:
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		c.Body = bzip2.NewReader(r)
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	default:
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		err = errors.UnsupportedError("unknown compression algorithm: " + strconv.Itoa(int(buf[0])))
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	}
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	return err
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}
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// compressedWriterCloser represents the serialized compression stream
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// header and the compressor. Its Close() method ensures that both the
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// compressor and serialized stream header are closed. Its Write()
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// method writes to the compressor.
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type compressedWriteCloser struct {
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	sh io.Closer      // Stream Header
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	c  io.WriteCloser // Compressor
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}
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func (cwc compressedWriteCloser) Write(p []byte) (int, error) {
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	return cwc.c.Write(p)
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}
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func (cwc compressedWriteCloser) Close() (err error) {
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	err = cwc.c.Close()
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	if err != nil {
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		return err
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	}
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	return cwc.sh.Close()
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}
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// SerializeCompressed serializes a compressed data packet to w and
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// returns a WriteCloser to which the literal data packets themselves
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// can be written and which MUST be closed on completion. If cc is
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// nil, sensible defaults will be used to configure the compression
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// algorithm.
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func SerializeCompressed(w io.WriteCloser, algo CompressionAlgo, cc *CompressionConfig) (literaldata io.WriteCloser, err error) {
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	compressed, err := serializeStreamHeader(w, packetTypeCompressed)
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	if err != nil {
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		return
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	}
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	_, err = compressed.Write([]byte{uint8(algo)})
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	if err != nil {
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		return
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	}
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	level := DefaultCompression
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	if cc != nil {
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		level = cc.Level
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	}
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	var compressor io.WriteCloser
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	switch algo {
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	case CompressionZIP:
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		compressor, err = flate.NewWriter(compressed, level)
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	case CompressionZLIB:
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		compressor, err = zlib.NewWriterLevel(compressed, level)
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	default:
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		s := strconv.Itoa(int(algo))
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		err = errors.UnsupportedError("Unsupported compression algorithm: " + s)
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	}
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	if err != nil {
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		return
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	}
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	literaldata = compressedWriteCloser{compressed, compressor}
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	return
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}
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