github.com/miolini/go@v0.0.0-20160405192216-fca68c8cb408/src/hash/crc32/crc32.go (about)

     1  // Copyright 2009 The Go Authors. All rights reserved.
     2  // Use of this source code is governed by a BSD-style
     3  // license that can be found in the LICENSE file.
     4  
     5  // Package crc32 implements the 32-bit cyclic redundancy check, or CRC-32,
     6  // checksum. See http://en.wikipedia.org/wiki/Cyclic_redundancy_check for
     7  // information.
     8  //
     9  // Polynomials are represented in LSB-first form also known as reversed representation.
    10  //
    11  // See http://en.wikipedia.org/wiki/Mathematics_of_cyclic_redundancy_checks#Reversed_representations_and_reciprocal_polynomials
    12  // for information.
    13  package crc32
    14  
    15  import (
    16  	"hash"
    17  	"sync"
    18  )
    19  
    20  // The size of a CRC-32 checksum in bytes.
    21  const Size = 4
    22  
    23  // Use "slice by 8" when payload >= this value.
    24  const sliceBy8Cutoff = 16
    25  
    26  // Predefined polynomials.
    27  const (
    28  	// IEEE is by far and away the most common CRC-32 polynomial.
    29  	// Used by ethernet (IEEE 802.3), v.42, fddi, gzip, zip, png, ...
    30  	IEEE = 0xedb88320
    31  
    32  	// Castagnoli's polynomial, used in iSCSI.
    33  	// Has better error detection characteristics than IEEE.
    34  	// http://dx.doi.org/10.1109/26.231911
    35  	Castagnoli = 0x82f63b78
    36  
    37  	// Koopman's polynomial.
    38  	// Also has better error detection characteristics than IEEE.
    39  	// http://dx.doi.org/10.1109/DSN.2002.1028931
    40  	Koopman = 0xeb31d82e
    41  )
    42  
    43  // Table is a 256-word table representing the polynomial for efficient processing.
    44  type Table [256]uint32
    45  
    46  // castagnoliTable points to a lazily initialized Table for the Castagnoli
    47  // polynomial. MakeTable will always return this value when asked to make a
    48  // Castagnoli table so we can compare against it to find when the caller is
    49  // using this polynomial.
    50  var castagnoliTable *Table
    51  var castagnoliTable8 *slicing8Table
    52  var castagnoliOnce sync.Once
    53  
    54  func castagnoliInit() {
    55  	castagnoliTable = makeTable(Castagnoli)
    56  	castagnoliTable8 = makeTable8(Castagnoli)
    57  }
    58  
    59  // IEEETable is the table for the IEEE polynomial.
    60  var IEEETable = makeTable(IEEE)
    61  
    62  // slicing8Table is array of 8 Tables
    63  type slicing8Table [8]Table
    64  
    65  // ieeeTable8 is the slicing8Table for IEEE
    66  var ieeeTable8 *slicing8Table
    67  var ieeeTable8Once sync.Once
    68  
    69  // MakeTable returns a Table constructed from the specified polynomial.
    70  // The contents of this Table must not be modified.
    71  func MakeTable(poly uint32) *Table {
    72  	switch poly {
    73  	case IEEE:
    74  		return IEEETable
    75  	case Castagnoli:
    76  		castagnoliOnce.Do(castagnoliInit)
    77  		return castagnoliTable
    78  	}
    79  	return makeTable(poly)
    80  }
    81  
    82  // makeTable returns the Table constructed from the specified polynomial.
    83  func makeTable(poly uint32) *Table {
    84  	t := new(Table)
    85  	for i := 0; i < 256; i++ {
    86  		crc := uint32(i)
    87  		for j := 0; j < 8; j++ {
    88  			if crc&1 == 1 {
    89  				crc = (crc >> 1) ^ poly
    90  			} else {
    91  				crc >>= 1
    92  			}
    93  		}
    94  		t[i] = crc
    95  	}
    96  	return t
    97  }
    98  
    99  // makeTable8 returns slicing8Table constructed from the specified polynomial.
   100  func makeTable8(poly uint32) *slicing8Table {
   101  	t := new(slicing8Table)
   102  	t[0] = *makeTable(poly)
   103  	for i := 0; i < 256; i++ {
   104  		crc := t[0][i]
   105  		for j := 1; j < 8; j++ {
   106  			crc = t[0][crc&0xFF] ^ (crc >> 8)
   107  			t[j][i] = crc
   108  		}
   109  	}
   110  	return t
   111  }
   112  
   113  // digest represents the partial evaluation of a checksum.
   114  type digest struct {
   115  	crc uint32
   116  	tab *Table
   117  }
   118  
   119  // New creates a new hash.Hash32 computing the CRC-32 checksum
   120  // using the polynomial represented by the Table.
   121  // Its Sum method will lay the value out in big-endian byte order.
   122  func New(tab *Table) hash.Hash32 { return &digest{0, tab} }
   123  
   124  // NewIEEE creates a new hash.Hash32 computing the CRC-32 checksum
   125  // using the IEEE polynomial.
   126  // Its Sum method will lay the value out in big-endian byte order.
   127  func NewIEEE() hash.Hash32 { return New(IEEETable) }
   128  
   129  func (d *digest) Size() int { return Size }
   130  
   131  func (d *digest) BlockSize() int { return 1 }
   132  
   133  func (d *digest) Reset() { d.crc = 0 }
   134  
   135  func update(crc uint32, tab *Table, p []byte) uint32 {
   136  	crc = ^crc
   137  	for _, v := range p {
   138  		crc = tab[byte(crc)^v] ^ (crc >> 8)
   139  	}
   140  	return ^crc
   141  }
   142  
   143  // updateSlicingBy8 updates CRC using Slicing-by-8
   144  func updateSlicingBy8(crc uint32, tab *slicing8Table, p []byte) uint32 {
   145  	crc = ^crc
   146  	for len(p) > 8 {
   147  		crc ^= uint32(p[0]) | uint32(p[1])<<8 | uint32(p[2])<<16 | uint32(p[3])<<24
   148  		crc = tab[0][p[7]] ^ tab[1][p[6]] ^ tab[2][p[5]] ^ tab[3][p[4]] ^
   149  			tab[4][crc>>24] ^ tab[5][(crc>>16)&0xFF] ^
   150  			tab[6][(crc>>8)&0xFF] ^ tab[7][crc&0xFF]
   151  		p = p[8:]
   152  	}
   153  	crc = ^crc
   154  	if len(p) == 0 {
   155  		return crc
   156  	}
   157  	return update(crc, &tab[0], p)
   158  }
   159  
   160  // Update returns the result of adding the bytes in p to the crc.
   161  func Update(crc uint32, tab *Table, p []byte) uint32 {
   162  	switch tab {
   163  	case castagnoliTable:
   164  		return updateCastagnoli(crc, p)
   165  	case IEEETable:
   166  		return updateIEEE(crc, p)
   167  	}
   168  	return update(crc, tab, p)
   169  }
   170  
   171  func (d *digest) Write(p []byte) (n int, err error) {
   172  	d.crc = Update(d.crc, d.tab, p)
   173  	return len(p), nil
   174  }
   175  
   176  func (d *digest) Sum32() uint32 { return d.crc }
   177  
   178  func (d *digest) Sum(in []byte) []byte {
   179  	s := d.Sum32()
   180  	return append(in, byte(s>>24), byte(s>>16), byte(s>>8), byte(s))
   181  }
   182  
   183  // Checksum returns the CRC-32 checksum of data
   184  // using the polynomial represented by the Table.
   185  func Checksum(data []byte, tab *Table) uint32 { return Update(0, tab, data) }
   186  
   187  // ChecksumIEEE returns the CRC-32 checksum of data
   188  // using the IEEE polynomial.
   189  func ChecksumIEEE(data []byte) uint32 { return updateIEEE(0, data) }