library: hash/{crc32, adler32}

This commit is contained in:
xushiwei
2024-07-30 19:36:36 +08:00
parent 3212f059ff
commit 1eaf124d4e
6 changed files with 161 additions and 2 deletions

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@@ -298,6 +298,8 @@ Here are the Go packages that can be imported correctly:
* [encoding/base64](https://pkg.go.dev/encoding/base64)
* [encoding/csv](https://pkg.go.dev/encoding/csv)
* [hash](https://pkg.go.dev/hash)
* [hash/adler32](https://pkg.go.dev/hash/adler32)
* [hash/crc32](https://pkg.go.dev/hash/crc32) (partially)
* [hash/crc64](https://pkg.go.dev/hash/crc64)
* [crypto/md5](https://pkg.go.dev/crypto/md5)
* [regexp](https://pkg.go.dev/regexp)

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@@ -2,10 +2,27 @@ package main
import (
"fmt"
"hash/adler32"
"hash/crc32"
"hash/crc64"
)
func main() {
func crc64Demo() {
crc := crc64.MakeTable(crc64.ECMA)
fmt.Printf("%016x\n", crc64.Checksum([]byte("Hello world"), crc))
}
func crc32Demo() {
crc32q := crc32.MakeTable(crc32.IEEE)
fmt.Printf("%08x\n", crc32.Checksum([]byte("Hello world"), crc32q))
}
func adler32Demo() {
fmt.Printf("%08x\n", adler32.Checksum([]byte("Hello world")))
}
func main() {
adler32Demo()
crc32Demo()
crc64Demo()
}

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@@ -0,0 +1,11 @@
package main
import (
"fmt"
"github.com/goplus/llgo/c/zlib"
)
func main() {
fmt.Printf("%08x\n", zlib.Crc32ZString(0, "Hello world"))
}

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@@ -17,7 +17,7 @@
package zlib
import (
_ "unsafe"
"unsafe"
"github.com/goplus/llgo/c"
)
@@ -186,6 +186,14 @@ Same as crc32(), but with a size_t length.
//go:linkname Crc32Z C.crc32_z
func Crc32Z(crc c.Ulong, buf *byte, len uintptr) c.Ulong
func Crc32ZBytes(crc c.Ulong, buf []byte) c.Ulong {
return Crc32Z(crc, unsafe.SliceData(buf), uintptr(len(buf)))
}
func Crc32ZString(crc c.Ulong, buf string) c.Ulong {
return Crc32Z(crc, unsafe.StringData(buf), uintptr(len(buf)))
}
/*
ZEXTERN uLong ZEXPORT crc32_combine OF((uLong crc1, uLong crc2, z_off_t len2));
@@ -228,6 +236,14 @@ Same as adler32(), but with a size_t length.
//go:linkname Adler32Z C.adler32_z
func Adler32Z(adler c.Ulong, buf *byte, len uintptr) c.Ulong
func Adler32ZBytes(adler c.Ulong, buf []byte) c.Ulong {
return Adler32Z(adler, unsafe.SliceData(buf), uintptr(len(buf)))
}
func Adler32ZString(adler c.Ulong, buf string) c.Ulong {
return Adler32Z(adler, unsafe.StringData(buf), uintptr(len(buf)))
}
/*
ZEXTERN uLong ZEXPORT adler32_combine OF((uLong adler1, uLong adler2, z_off_t len2));

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@@ -759,6 +759,7 @@ type none struct{}
var hasAltPkg = map[string]none{
"crypto/md5": {},
"fmt": {},
"hash/crc32": {},
"internal/abi": {},
"internal/bytealg": {},
"internal/itoa": {},

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@@ -0,0 +1,112 @@
/*
* Copyright (c) 2024 The GoPlus Authors (goplus.org). All rights reserved.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package crc32
// llgo:skipall
import (
"hash"
"github.com/goplus/llgo/c"
"github.com/goplus/llgo/c/zlib"
)
// The size of a CRC-32 checksum in bytes.
const Size = 4
// Predefined polynomials.
const (
// IEEE is by far and away the most common CRC-32 polynomial.
// Used by ethernet (IEEE 802.3), v.42, fddi, gzip, zip, png, ...
IEEE = 0xedb88320
// Castagnoli's polynomial, used in iSCSI.
// Has better error detection characteristics than IEEE.
// https://dx.doi.org/10.1109/26.231911
Castagnoli = 0x82f63b78
// Koopman's polynomial.
// Also has better error detection characteristics than IEEE.
// https://dx.doi.org/10.1109/DSN.2002.1028931
Koopman = 0xeb31d82e
)
// Table is a 256-word table representing the polynomial for efficient processing.
type Table [256]uint32
// IEEETable is the table for the IEEE polynomial.
var IEEETable *Table = new(Table)
// MakeTable returns a Table constructed from the specified polynomial.
// The contents of this Table must not be modified.
func MakeTable(poly uint32) *Table {
if poly == IEEE {
return IEEETable
}
panic("todo: hash/crc32.MakeTable")
}
type digest uint32
func (d *digest) Size() int { return Size }
func (d *digest) BlockSize() int { return 1 }
func (d *digest) Reset() { *d = 0 }
func (d *digest) Write(p []byte) (n int, err error) {
*d = digest(zlib.Crc32ZBytes(c.Ulong(*d), p))
return len(p), nil
}
func (d *digest) Sum32() uint32 { return uint32(*d) }
func (d *digest) Sum(in []byte) []byte {
s := d.Sum32()
return append(in, byte(s>>24), byte(s>>16), byte(s>>8), byte(s))
}
func New(tab *Table) hash.Hash32 {
if tab == IEEETable {
return new(digest)
}
panic("todo: hash/crc32.New")
}
// NewIEEE creates a new hash.Hash32 computing the CRC-32 checksum using
// the IEEE polynomial. Its Sum method will lay the value out in
// big-endian byte order. The returned Hash32 also implements
// encoding.BinaryMarshaler and encoding.BinaryUnmarshaler to marshal
// and unmarshal the internal state of the hash.
func NewIEEE() hash.Hash32 { return New(IEEETable) }
// Update returns the result of adding the bytes in p to the crc.
func Update(crc uint32, tab *Table, p []byte) uint32 {
if tab == IEEETable {
return uint32(zlib.Crc32ZBytes(c.Ulong(crc), p))
}
panic("todo: hash/crc32.Update")
}
// Checksum returns the CRC-32 checksum of data
// using the polynomial represented by the Table.
func Checksum(data []byte, tab *Table) uint32 { return Update(0, tab, data) }
// ChecksumIEEE returns the CRC-32 checksum of data
// using the IEEE polynomial.
func ChecksumIEEE(data []byte) uint32 {
return uint32(zlib.Crc32ZBytes(0, data))
}