Felix Lange 318ad3c1e4 common/hexutil: fix Test{Decode,Unmarshal}Uint64 on 32bit arch (#3363) преди 9 години
..
compiler 1a9e66915b common/compiler: simplify solc wrapper преди 9 години
hexutil 318ad3c1e4 common/hexutil: fix Test{Decode,Unmarshal}Uint64 on 32bit arch (#3363) преди 9 години
math b8bd9a71c8 all: update license information преди 9 години
mclock 9f8d192991 les: light client protocol and API преди 9 години
number bfbcfbe4a9 all: fix license headers one more time преди 10 години
.gitignore b523441361 Moved ethutil => common преди 10 години
.travis.yml b523441361 Moved ethutil => common преди 10 години
README.md 4ce3dfe9c8 common: Update README.md for the current package name преди 10 години
big.go 2db9798646 common, crypto: add ICAP functions преди 10 години
big_test.go bfbcfbe4a9 all: fix license headers one more time преди 10 години
bytes.go b59c8399fb internal/ethapi: add personal_sign and fix eth_sign to hash message (#2940) преди 9 години
bytes_test.go e6af65d02a common: Remove dead code преди 9 години
debug.go f0cbebb19f core: added basic chain configuration преди 9 години
format.go 64500ab0fa common, core, eth/downloader: adjust import log formatting преди 9 години
icap.go 2db9798646 common, crypto: add ICAP functions преди 10 години
icap_test.go 2db9798646 common, crypto: add ICAP functions преди 10 години
list.go bfbcfbe4a9 all: fix license headers one more time преди 10 години
main_test.go bfbcfbe4a9 all: fix license headers one more time преди 10 години
path.go b42a5b118f common, node: move datadir defaults into package node преди 9 години
size.go bfbcfbe4a9 all: fix license headers one more time преди 10 години
size_test.go 78b101e15d common: remove windows path functions преди 10 години
test_utils.go bfbcfbe4a9 all: fix license headers one more time преди 10 години
types.go 37e5816bcd common: use package hexutil for fixed size type encoding преди 9 години
types_template.go bfbcfbe4a9 all: fix license headers one more time преди 10 години
types_test.go 37e5816bcd common: use package hexutil for fixed size type encoding преди 9 години

README.md

common

Build
Status

The common package contains the ethereum utility library.

Installation

As a subdirectory the main go-ethereum repository, you get it with go get github.com/ethereum/go-ethereum.

Usage

RLP (Recursive Linear Prefix) Encoding

RLP Encoding is an encoding scheme used by the Ethereum project. It encodes any native value or list to a string.

More in depth information about the encoding scheme see the Wiki article.

rlp := common.Encode("doge")
fmt.Printf("%q\n", rlp) // => "\0x83dog"

rlp = common.Encode([]interface{}{"dog", "cat"})
fmt.Printf("%q\n", rlp) // => "\0xc8\0x83dog\0x83cat"
decoded := common.Decode(rlp)
fmt.Println(decoded) // => ["dog" "cat"]

Patricia Trie

Patricie Tree is a merkle trie used by the Ethereum project.

More in depth information about the (modified) Patricia Trie can be found on the Wiki.

The patricia trie uses a db as backend and could be anything as long as it satisfies the Database interface found in common/db.go.

db := NewDatabase()

// db, root
trie := common.NewTrie(db, "")

trie.Put("puppy", "dog")
trie.Put("horse", "stallion")
trie.Put("do", "verb")
trie.Put("doge", "coin")

// Look up the key "do" in the trie
out := trie.Get("do")
fmt.Println(out) // => verb

trie.Delete("puppy")

The patricia trie, in combination with RLP, provides a robust, cryptographically authenticated data structure that can be used to store all (key, value) bindings.

// ... Create db/trie

// Note that RLP uses interface slices as list
value := common.Encode([]interface{}{"one", 2, "three", []interface{}{42}})
// Store the RLP encoded value of the list
trie.Put("mykey", value)

Value

Value is a Generic Value which is used in combination with RLP data or ([])interface{} structures. It may serve as a bridge between RLP data and actual real values and takes care of all the type checking and casting. Unlike Go's reflect.Value it does not panic if it's unable to cast to the requested value. It simple returns the base value of that type (e.g. Slice() returns []interface{}, Uint() return 0, etc).

Creating a new Value

NewEmptyValue() returns a new *Value with it's initial value set to a []interface{}

AppendList() appends a list to the current value.

Append(v) appends the value (v) to the current value/list.

val := common.NewEmptyValue().Append(1).Append("2")
val.AppendList().Append(3)

Retrieving values

Get(i) returns the i item in the list.

Uint() returns the value as an unsigned int64.

Slice() returns the value as a interface slice.

Str() returns the value as a string.

Bytes() returns the value as a byte slice.

Len() assumes current to be a slice and returns its length.

Byte() returns the value as a single byte.

val := common.NewValue([]interface{}{1,"2",[]interface{}{3}})
val.Get(0).Uint() // => 1
val.Get(1).Str()  // => "2"
s := val.Get(2)   // => Value([]interface{}{3})
s.Get(0).Uint()   // => 3

Decoding

Decoding streams of RLP data is simplified

val := common.NewValueFromBytes(rlpData)
val.Get(0).Uint()

Encoding

Encoding from Value to RLP is done with the Encode method. The underlying value can be anything RLP can encode (int, str, lists, bytes)

val := common.NewValue([]interface{}{1,"2",[]interface{}{3}})
rlp := val.Encode()
// Store the rlp data
Store(rlp)