Update Go Callisto from upstream

This commit is contained in:
Yohan Graterol 2018-01-20 21:18:21 -05:00
commit b5a1e42b91
No known key found for this signature in database
GPG key ID: D8C4A70CC26A1F90
98 changed files with 4415 additions and 7112 deletions

2
.gitignore vendored
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@ -38,4 +38,4 @@ profile.cov
/dashboard/assets/flow-typed
/dashboard/assets/node_modules
/dashboard/assets/stats.json
/dashboard/assets/public/bundle.js
/dashboard/assets/bundle.js

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@ -40,6 +40,7 @@ matrix:
- os: osx
go: 1.9.x
script:
- unset -f cd # workaround for https://github.com/travis-ci/travis-ci/issues/8703
- brew update
- brew install caskroom/cask/brew-cask
- brew cask install osxfuse

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@ -45,9 +45,13 @@ clean:
devtools:
env GOBIN= go get -u golang.org/x/tools/cmd/stringer
env GOBIN= go get -u github.com/jteeuwen/go-bindata/go-bindata
env GOBIN= go get -u github.com/kevinburke/go-bindata/go-bindata
env GOBIN= go get -u github.com/fjl/gencodec
env GOBIN= go get -u github.com/golang/protobuf/protoc-gen-go
env GOBIN= go install ./cmd/abigen
@type "npm" 2> /dev/null || echo 'Please install node.js and npm'
@type "solc" 2> /dev/null || echo 'Please install solc'
@type "protoc" 2> /dev/null || echo 'Please install protoc'
# Cross Compilation Targets (xgo)

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@ -2,6 +2,8 @@
// https://github.com/trezor/trezor-common/blob/master/protob/messages.proto
// dated 28.07.2017, commit dd8ec3231fb5f7992360aff9bdfe30bb58130f4b.
syntax = "proto2";
/**
* Messages for TREZOR communication
*/

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@ -18,7 +18,7 @@
// wallets. The wire protocol spec can be found on the SatoshiLabs website:
// https://doc.satoshilabs.com/trezor-tech/api-protobuf.html
//go:generate protoc --go_out=Mgoogle/protobuf/descriptor.proto=github.com/golang/protobuf/protoc-gen-go/descriptor,import_path=trezor:. types.proto messages.proto
//go:generate protoc --go_out=import_path=trezor:. types.proto messages.proto
// Package trezor contains the wire protocol wrapper in Go.
package trezor

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@ -2,6 +2,8 @@
// https://github.com/trezor/trezor-common/blob/master/protob/types.proto
// dated 28.07.2017, commit dd8ec3231fb5f7992360aff9bdfe30bb58130f4b.
syntax = "proto2";
/**
* Types for TREZOR communication
*

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@ -1,8 +1,23 @@
// Copyright 2017 The go-ethereum Authors
// This file is part of go-ethereum.
//
// go-ethereum is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// go-ethereum is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License
// along with go-ethereum. If not, see <http://www.gnu.org/licenses/>.
package main
import (
"crypto/ecdsa"
"crypto/rand"
"fmt"
"io/ioutil"
"os"
@ -26,16 +41,16 @@ var commandGenerate = cli.Command{
ArgsUsage: "[ <keyfile> ]",
Description: `
Generate a new keyfile.
If you want to use an existing private key to use in the keyfile, it can be
specified by setting --privatekey with the location of the file containing the
private key.`,
If you want to encrypt an existing private key, it can be specified by setting
--privatekey with the location of the file containing the private key.
`,
Flags: []cli.Flag{
passphraseFlag,
jsonFlag,
cli.StringFlag{
Name: "privatekey",
Usage: "the file from where to read the private key to " +
"generate a keyfile for",
Usage: "file containing a raw private key to encrypt",
},
},
Action: func(ctx *cli.Context) error {
@ -51,32 +66,19 @@ private key.`,
}
var privateKey *ecdsa.PrivateKey
// First check if a private key file is provided.
privateKeyFile := ctx.String("privatekey")
if privateKeyFile != "" {
privateKeyBytes, err := ioutil.ReadFile(privateKeyFile)
var err error
if file := ctx.String("privatekey"); file != "" {
// Load private key from file.
privateKey, err = crypto.LoadECDSA(file)
if err != nil {
utils.Fatalf("Failed to read the private key file '%s': %v",
privateKeyFile, err)
utils.Fatalf("Can't load private key: %v", err)
}
pk, err := crypto.HexToECDSA(string(privateKeyBytes))
if err != nil {
utils.Fatalf(
"Could not construct ECDSA private key from file content: %v",
err)
}
privateKey = pk
}
} else {
// If not loaded, generate random.
if privateKey == nil {
pk, err := ecdsa.GenerateKey(crypto.S256(), rand.Reader)
privateKey, err = crypto.GenerateKey()
if err != nil {
utils.Fatalf("Failed to generate random private key: %v", err)
}
privateKey = pk
}
// Create the keyfile object with a random UUID.
@ -89,8 +91,7 @@ private key.`,
// Encrypt key with passphrase.
passphrase := getPassPhrase(ctx, true)
keyjson, err := keystore.EncryptKey(key, passphrase,
keystore.StandardScryptN, keystore.StandardScryptP)
keyjson, err := keystore.EncryptKey(key, passphrase, keystore.StandardScryptN, keystore.StandardScryptP)
if err != nil {
utils.Fatalf("Error encrypting key: %v", err)
}
@ -110,7 +111,7 @@ private key.`,
if ctx.Bool(jsonFlag.Name) {
mustPrintJSON(out)
} else {
fmt.Println("Address: ", out.Address)
fmt.Println("Address:", out.Address)
}
return nil
},

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@ -23,6 +23,7 @@ var commandInspect = cli.Command{
ArgsUsage: "<keyfile>",
Description: `
Print various information about the keyfile.
Private key information can be printed by using the --private flag;
make sure to use this feature with great caution!`,
Flags: []cli.Flag{

View file

@ -28,30 +28,11 @@ const (
defaultKeyfileName = "keyfile.json"
)
var (
gitCommit = "" // Git SHA1 commit hash of the release (set via linker flags)
// Git SHA1 commit hash of the release (set via linker flags)
var gitCommit = ""
app *cli.App // the main app instance
)
var app *cli.App
var ( // Commonly used command line flags.
passphraseFlag = cli.StringFlag{
Name: "passwordfile",
Usage: "the file that contains the passphrase for the keyfile",
}
jsonFlag = cli.BoolFlag{
Name: "json",
Usage: "output JSON instead of human-readable format",
}
messageFlag = cli.StringFlag{
Name: "message",
Usage: "the file that contains the message to sign/verify",
}
)
// Configure the app instance.
func init() {
app = utils.NewApp(gitCommit, "an Ethereum key manager")
app.Commands = []cli.Command{
@ -62,6 +43,22 @@ func init() {
}
}
// Commonly used command line flags.
var (
passphraseFlag = cli.StringFlag{
Name: "passwordfile",
Usage: "the file that contains the passphrase for the keyfile",
}
jsonFlag = cli.BoolFlag{
Name: "json",
Usage: "output JSON instead of human-readable format",
}
messageFlag = cli.StringFlag{
Name: "message",
Usage: "the file that contains the message to sign/verify",
}
)
func main() {
if err := app.Run(os.Args); err != nil {
fmt.Fprintln(os.Stderr, err)

View file

@ -1,11 +1,25 @@
// Copyright 2017 The go-ethereum Authors
// This file is part of go-ethereum.
//
// go-ethereum is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// go-ethereum is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License
// along with go-ethereum. If not, see <http://www.gnu.org/licenses/>.
package main
import (
"encoding/hex"
"fmt"
"io/ioutil"
"os"
"strings"
"github.com/EthereumCommonwealth/go-callisto/accounts/keystore"
"github.com/EthereumCommonwealth/go-callisto/cmd/utils"
@ -18,26 +32,33 @@ type outputSign struct {
Signature string
}
var msgfileFlag = cli.StringFlag{
Name: "msgfile",
Usage: "file containing the message to sign/verify",
}
var commandSignMessage = cli.Command{
Name: "signmessage",
Usage: "sign a message",
ArgsUsage: "<keyfile> <message/file>",
ArgsUsage: "<keyfile> <message>",
Description: `
Sign the message with a keyfile.
It is possible to refer to a file containing the message.`,
To sign a message contained in a file, use the --msgfile flag.
`,
Flags: []cli.Flag{
passphraseFlag,
jsonFlag,
msgfileFlag,
},
Action: func(ctx *cli.Context) error {
keyfilepath := ctx.Args().First()
message := []byte(ctx.Args().Get(1))
message := getMessage(ctx, 1)
// Load the keyfile.
keyfilepath := ctx.Args().First()
keyjson, err := ioutil.ReadFile(keyfilepath)
if err != nil {
utils.Fatalf("Failed to read the keyfile at '%s': %v",
keyfilepath, err)
utils.Fatalf("Failed to read the keyfile at '%s': %v", keyfilepath, err)
}
// Decrypt key with passphrase.
@ -47,29 +68,15 @@ It is possible to refer to a file containing the message.`,
utils.Fatalf("Error decrypting key: %v", err)
}
if len(message) == 0 {
utils.Fatalf("A message must be provided")
}
// Read message if file.
if _, err := os.Stat(string(message)); err == nil {
message, err = ioutil.ReadFile(string(message))
if err != nil {
utils.Fatalf("Failed to read the message file: %v", err)
}
}
signature, err := crypto.Sign(signHash(message), key.PrivateKey)
if err != nil {
utils.Fatalf("Failed to sign message: %v", err)
}
out := outputSign{
Signature: hex.EncodeToString(signature),
}
out := outputSign{Signature: hex.EncodeToString(signature)}
if ctx.Bool(jsonFlag.Name) {
mustPrintJSON(out)
} else {
fmt.Println("Signature: ", out.Signature)
fmt.Println("Signature:", out.Signature)
}
return nil
},
@ -84,53 +91,40 @@ type outputVerify struct {
var commandVerifyMessage = cli.Command{
Name: "verifymessage",
Usage: "verify the signature of a signed message",
ArgsUsage: "<address> <signature> <message/file>",
ArgsUsage: "<address> <signature> <message>",
Description: `
Verify the signature of the message.
It is possible to refer to a file containing the message.`,
Flags: []cli.Flag{
jsonFlag,
msgfileFlag,
},
Action: func(ctx *cli.Context) error {
addressStr := ctx.Args().First()
signatureHex := ctx.Args().Get(1)
message := []byte(ctx.Args().Get(2))
message := getMessage(ctx, 2)
// Determine whether it is a keyfile, public key or address.
if !common.IsHexAddress(addressStr) {
utils.Fatalf("Invalid address: %s", addressStr)
}
address := common.HexToAddress(addressStr)
signature, err := hex.DecodeString(signatureHex)
if err != nil {
utils.Fatalf("Signature encoding is not hexadecimal: %v", err)
}
if len(message) == 0 {
utils.Fatalf("A message must be provided")
}
// Read message if file.
if _, err := os.Stat(string(message)); err == nil {
message, err = ioutil.ReadFile(string(message))
if err != nil {
utils.Fatalf("Failed to read the message file: %v", err)
}
}
recoveredPubkey, err := crypto.SigToPub(signHash(message), signature)
if err != nil || recoveredPubkey == nil {
utils.Fatalf("Signature verification failed: %v", err)
}
recoveredPubkeyBytes := crypto.FromECDSAPub(recoveredPubkey)
recoveredAddress := crypto.PubkeyToAddress(*recoveredPubkey)
success := address == recoveredAddress
out := outputVerify{
Success: success,
RecoveredPublicKey: hex.EncodeToString(recoveredPubkeyBytes),
RecoveredAddress: strings.ToLower(recoveredAddress.Hex()),
RecoveredAddress: recoveredAddress.Hex(),
}
if ctx.Bool(jsonFlag.Name) {
mustPrintJSON(out)
@ -140,9 +134,26 @@ It is possible to refer to a file containing the message.`,
} else {
fmt.Println("Signature verification failed!")
}
fmt.Println("Recovered public key: ", out.RecoveredPublicKey)
fmt.Println("Recovered address: ", out.RecoveredAddress)
fmt.Println("Recovered public key:", out.RecoveredPublicKey)
fmt.Println("Recovered address:", out.RecoveredAddress)
}
return nil
},
}
func getMessage(ctx *cli.Context, msgarg int) []byte {
if file := ctx.String("msgfile"); file != "" {
if len(ctx.Args()) > msgarg {
utils.Fatalf("Can't use --msgfile and message argument at the same time.")
}
msg, err := ioutil.ReadFile(file)
if err != nil {
utils.Fatalf("Can't read message file: %v", err)
}
return msg
} else if len(ctx.Args()) == msgarg+1 {
return []byte(ctx.Args().Get(msgarg))
}
utils.Fatalf("Invalid number of arguments: want %d, got %d", msgarg+1, len(ctx.Args()))
return nil
}

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@ -0,0 +1,70 @@
// Copyright 2017 The go-ethereum Authors
// This file is part of go-ethereum.
//
// go-ethereum is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// go-ethereum is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License
// along with go-ethereum. If not, see <http://www.gnu.org/licenses/>.
package main
import (
"io/ioutil"
"os"
"path/filepath"
"testing"
)
func TestMessageSignVerify(t *testing.T) {
tmpdir, err := ioutil.TempDir("", "ethkey-test")
if err != nil {
t.Fatal("Can't create temporary directory:", err)
}
defer os.RemoveAll(tmpdir)
keyfile := filepath.Join(tmpdir, "the-keyfile")
message := "test message"
// Create the key.
generate := runEthkey(t, "generate", keyfile)
generate.Expect(`
!! Unsupported terminal, password will be echoed.
Passphrase: {{.InputLine "foobar"}}
Repeat passphrase: {{.InputLine "foobar"}}
`)
_, matches := generate.ExpectRegexp(`Address: (0x[0-9a-fA-F]{40})\n`)
address := matches[1]
generate.ExpectExit()
// Sign a message.
sign := runEthkey(t, "signmessage", keyfile, message)
sign.Expect(`
!! Unsupported terminal, password will be echoed.
Passphrase: {{.InputLine "foobar"}}
`)
_, matches = sign.ExpectRegexp(`Signature: ([0-9a-f]+)\n`)
signature := matches[1]
sign.ExpectExit()
// Verify the message.
verify := runEthkey(t, "verifymessage", address, signature, message)
_, matches = verify.ExpectRegexp(`
Signature verification successful!
Recovered public key: [0-9a-f]+
Recovered address: (0x[0-9a-fA-F]{40})
`)
recovered := matches[1]
verify.ExpectExit()
if recovered != address {
t.Error("recovered address doesn't match generated key")
}
}

54
cmd/ethkey/run_test.go Normal file
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@ -0,0 +1,54 @@
// Copyright 2017 The go-ethereum Authors
// This file is part of go-ethereum.
//
// go-ethereum is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// go-ethereum is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License
// along with go-ethereum. If not, see <http://www.gnu.org/licenses/>.
package main
import (
"fmt"
"os"
"testing"
"github.com/docker/docker/pkg/reexec"
"github.com/EthereumCommonwealth/go-callisto/internal/cmdtest"
)
type testEthkey struct {
*cmdtest.TestCmd
}
// spawns ethkey with the given command line args.
func runEthkey(t *testing.T, args ...string) *testEthkey {
tt := new(testEthkey)
tt.TestCmd = cmdtest.NewTestCmd(t, tt)
tt.Run("ethkey-test", args...)
return tt
}
func TestMain(m *testing.M) {
// Run the app if we've been exec'd as "ethkey-test" in runEthkey.
reexec.Register("ethkey-test", func() {
if err := app.Run(os.Args); err != nil {
fmt.Fprintln(os.Stderr, err)
os.Exit(1)
}
os.Exit(0)
})
// check if we have been reexec'd
if reexec.Init() {
return
}
os.Exit(m.Run())
}

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@ -18,6 +18,7 @@
package main
//go:generate go-bindata -nometadata -o website.go faucet.html
//go:generate gofmt -w -s website.go
import (
"bytes"

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@ -1,7 +1,6 @@
// Code generated by go-bindata.
// Code generated by go-bindata. DO NOT EDIT.
// sources:
// faucet.html
// DO NOT EDIT!
package main
@ -92,8 +91,8 @@ func faucetHtml() (*asset, error) {
// It returns an error if the asset could not be found or
// could not be loaded.
func Asset(name string) ([]byte, error) {
cannonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[cannonicalName]; ok {
canonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[canonicalName]; ok {
a, err := f()
if err != nil {
return nil, fmt.Errorf("Asset %s can't read by error: %v", name, err)
@ -118,8 +117,8 @@ func MustAsset(name string) []byte {
// It returns an error if the asset could not be found or
// could not be loaded.
func AssetInfo(name string) (os.FileInfo, error) {
cannonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[cannonicalName]; ok {
canonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[canonicalName]; ok {
a, err := f()
if err != nil {
return nil, fmt.Errorf("AssetInfo %s can't read by error: %v", name, err)
@ -159,8 +158,8 @@ var _bindata = map[string]func() (*asset, error){
func AssetDir(name string) ([]string, error) {
node := _bintree
if len(name) != 0 {
cannonicalName := strings.Replace(name, "\\", "/", -1)
pathList := strings.Split(cannonicalName, "/")
canonicalName := strings.Replace(name, "\\", "/", -1)
pathList := strings.Split(canonicalName, "/")
for _, p := range pathList {
node = node.Children[p]
if node == nil {
@ -205,11 +204,7 @@ func RestoreAsset(dir, name string) error {
if err != nil {
return err
}
err = os.Chtimes(_filePath(dir, name), info.ModTime(), info.ModTime())
if err != nil {
return err
}
return nil
return os.Chtimes(_filePath(dir, name), info.ModTime(), info.ModTime())
}
// RestoreAssets restores an asset under the given directory recursively
@ -230,6 +225,6 @@ func RestoreAssets(dir, name string) error {
}
func _filePath(dir, name string) string {
cannonicalName := strings.Replace(name, "\\", "/", -1)
return filepath.Join(append([]string{dir}, strings.Split(cannonicalName, "/")...)...)
canonicalName := strings.Replace(name, "\\", "/", -1)
return filepath.Join(append([]string{dir}, strings.Split(canonicalName, "/")...)...)
}

View file

@ -158,7 +158,7 @@ func makeFullNode(ctx *cli.Context) *node.Node {
utils.RegisterEthService(stack, &cfg.Eth)
if ctx.GlobalBool(utils.DashboardEnabledFlag.Name) {
utils.RegisterDashboardService(stack, &cfg.Dashboard)
utils.RegisterDashboardService(stack, &cfg.Dashboard, gitCommit)
}
// Whisper must be explicitly enabled by specifying at least 1 whisper flag or in dev mode
shhEnabled := enableWhisper(ctx)

View file

@ -278,9 +278,12 @@ func startNode(ctx *cli.Context, stack *node.Node) {
// Start auxiliary services if enabled
if ctx.GlobalBool(utils.MiningEnabledFlag.Name) || ctx.GlobalBool(utils.DeveloperFlag.Name) {
// Mining only makes sense if a full Ethereum node is running
if ctx.GlobalBool(utils.LightModeFlag.Name) || ctx.GlobalString(utils.SyncModeFlag.Name) == "light" {
utils.Fatalf("Light clients do not support mining")
}
var ethereum *eth.Ethereum
if err := stack.Service(&ethereum); err != nil {
utils.Fatalf("ethereum service not running: %v", err)
utils.Fatalf("Ethereum service not running: %v", err)
}
// Use a reduced number of threads if requested
if threads := ctx.GlobalInt(utils.MinerThreadsFlag.Name); threads > 0 {

View file

@ -31,6 +31,7 @@ import (
"github.com/EthereumCommonwealth/go-callisto/accounts"
"github.com/EthereumCommonwealth/go-callisto/accounts/keystore"
"github.com/EthereumCommonwealth/go-callisto/common"
"github.com/EthereumCommonwealth/go-callisto/common/fdlimit"
"github.com/EthereumCommonwealth/go-callisto/consensus"
"github.com/EthereumCommonwealth/go-callisto/consensus/clique"
"github.com/EthereumCommonwealth/go-callisto/consensus/ethash"
@ -721,10 +722,10 @@ func setIPC(ctx *cli.Context, cfg *node.Config) {
// makeDatabaseHandles raises out the number of allowed file handles per process
// for Geth and returns half of the allowance to assign to the database.
func makeDatabaseHandles() int {
if err := raiseFdLimit(2048); err != nil {
if err := fdlimit.Raise(2048); err != nil {
Fatalf("Failed to raise file descriptor allowance: %v", err)
}
limit, err := getFdLimit()
limit, err := fdlimit.Current()
if err != nil {
Fatalf("Failed to retrieve file descriptor allowance: %v", err)
}
@ -1103,9 +1104,9 @@ func RegisterEthService(stack *node.Node, cfg *eth.Config) {
}
// RegisterDashboardService adds a dashboard to the stack.
func RegisterDashboardService(stack *node.Node, cfg *dashboard.Config) {
func RegisterDashboardService(stack *node.Node, cfg *dashboard.Config, commit string) {
stack.Register(func(ctx *node.ServiceContext) (node.Service, error) {
return dashboard.New(cfg)
return dashboard.New(cfg, commit)
})
}

View file

@ -16,7 +16,7 @@
// +build freebsd
package utils
package fdlimit
import "syscall"
@ -24,9 +24,9 @@ import "syscall"
// but Rlimit fields have type int64 on FreeBSD so it needs
// an extra conversion.
// raiseFdLimit tries to maximize the file descriptor allowance of this process
// Raise tries to maximize the file descriptor allowance of this process
// to the maximum hard-limit allowed by the OS.
func raiseFdLimit(max uint64) error {
func Raise(max uint64) error {
// Get the current limit
var limit syscall.Rlimit
if err := syscall.Getrlimit(syscall.RLIMIT_NOFILE, &limit); err != nil {
@ -43,9 +43,9 @@ func raiseFdLimit(max uint64) error {
return nil
}
// getFdLimit retrieves the number of file descriptors allowed to be opened by this
// Current retrieves the number of file descriptors allowed to be opened by this
// process.
func getFdLimit() (int, error) {
func Current() (int, error) {
var limit syscall.Rlimit
if err := syscall.Getrlimit(syscall.RLIMIT_NOFILE, &limit); err != nil {
return 0, err
@ -53,9 +53,9 @@ func getFdLimit() (int, error) {
return int(limit.Cur), nil
}
// getFdMaxLimit retrieves the maximum number of file descriptors this process is
// Maximum retrieves the maximum number of file descriptors this process is
// allowed to request for itself.
func getFdMaxLimit() (int, error) {
func Maximum() (int, error) {
var limit syscall.Rlimit
if err := syscall.Getrlimit(syscall.RLIMIT_NOFILE, &limit); err != nil {
return 0, err

View file

@ -14,7 +14,7 @@
// You should have received a copy of the GNU General Public License
// along with go-ethereum. If not, see <http://www.gnu.org/licenses/>.
package utils
package fdlimit
import (
"fmt"
@ -25,7 +25,7 @@ import (
// per this process can be retrieved.
func TestFileDescriptorLimits(t *testing.T) {
target := 4096
hardlimit, err := getFdMaxLimit()
hardlimit, err := Maximum()
if err != nil {
t.Fatal(err)
}
@ -33,13 +33,13 @@ func TestFileDescriptorLimits(t *testing.T) {
t.Skip(fmt.Sprintf("system limit is less than desired test target: %d < %d", hardlimit, target))
}
if limit, err := getFdLimit(); err != nil || limit <= 0 {
if limit, err := Current(); err != nil || limit <= 0 {
t.Fatalf("failed to retrieve file descriptor limit (%d): %v", limit, err)
}
if err := raiseFdLimit(uint64(target)); err != nil {
if err := Raise(uint64(target)); err != nil {
t.Fatalf("failed to raise file allowance")
}
if limit, err := getFdLimit(); err != nil || limit < target {
if limit, err := Current(); err != nil || limit < target {
t.Fatalf("failed to retrieve raised descriptor limit (have %v, want %v): %v", limit, target, err)
}
}

View file

@ -16,13 +16,13 @@
// +build linux darwin netbsd openbsd solaris
package utils
package fdlimit
import "syscall"
// raiseFdLimit tries to maximize the file descriptor allowance of this process
// Raise tries to maximize the file descriptor allowance of this process
// to the maximum hard-limit allowed by the OS.
func raiseFdLimit(max uint64) error {
func Raise(max uint64) error {
// Get the current limit
var limit syscall.Rlimit
if err := syscall.Getrlimit(syscall.RLIMIT_NOFILE, &limit); err != nil {
@ -39,9 +39,9 @@ func raiseFdLimit(max uint64) error {
return nil
}
// getFdLimit retrieves the number of file descriptors allowed to be opened by this
// Current retrieves the number of file descriptors allowed to be opened by this
// process.
func getFdLimit() (int, error) {
func Current() (int, error) {
var limit syscall.Rlimit
if err := syscall.Getrlimit(syscall.RLIMIT_NOFILE, &limit); err != nil {
return 0, err
@ -49,9 +49,9 @@ func getFdLimit() (int, error) {
return int(limit.Cur), nil
}
// getFdMaxLimit retrieves the maximum number of file descriptors this process is
// Maximum retrieves the maximum number of file descriptors this process is
// allowed to request for itself.
func getFdMaxLimit() (int, error) {
func Maximum() (int, error) {
var limit syscall.Rlimit
if err := syscall.Getrlimit(syscall.RLIMIT_NOFILE, &limit); err != nil {
return 0, err

View file

@ -14,13 +14,13 @@
// You should have received a copy of the GNU General Public License
// along with go-ethereum. If not, see <http://www.gnu.org/licenses/>.
package utils
package fdlimit
import "errors"
// raiseFdLimit tries to maximize the file descriptor allowance of this process
// Raise tries to maximize the file descriptor allowance of this process
// to the maximum hard-limit allowed by the OS.
func raiseFdLimit(max uint64) error {
func Raise(max uint64) error {
// This method is NOP by design:
// * Linux/Darwin counterparts need to manually increase per process limits
// * On Windows Go uses the CreateFile API, which is limited to 16K files, non
@ -33,15 +33,15 @@ func raiseFdLimit(max uint64) error {
return nil
}
// getFdLimit retrieves the number of file descriptors allowed to be opened by this
// Current retrieves the number of file descriptors allowed to be opened by this
// process.
func getFdLimit() (int, error) {
// Please see raiseFdLimit for the reason why we use hard coded 16K as the limit
func Current() (int, error) {
// Please see Raise for the reason why we use hard coded 16K as the limit
return 16384, nil
}
// getFdMaxLimit retrieves the maximum number of file descriptors this process is
// Maximum retrieves the maximum number of file descriptors this process is
// allowed to request for itself.
func getFdMaxLimit() (int, error) {
return getFdLimit()
func Maximum() (int, error) {
return Current()
}

View file

@ -400,7 +400,7 @@ func calcDifficultyByzantium(time uint64, parent *types.Header) *big.Int {
if x.Cmp(bigMinus99) < 0 {
x.Set(bigMinus99)
}
// (parent_diff + parent_diff // 2048 * max(1 - (block_timestamp - parent_timestamp) // 10, -99))
// parent_diff + (parent_diff / 2048 * max((2 if len(parent.uncles) else 1) - ((timestamp - parent.timestamp) // 9), -99))
y.Div(parent.Difficulty, params.DifficultyBoundDivisor)
x.Mul(y, x)
x.Add(parent.Difficulty, x)

View file

@ -21,7 +21,7 @@
// as well as (auto)depositing ether to the chequebook contract.
package chequebook
//go:generate abigen --sol contract/chequebook.sol --pkg contract --out contract/chequebook.go
//go:generate abigen --sol contract/chequebook.sol --exc contract/mortal.sol:mortal,contract/owned.sol:owned --pkg contract --out contract/chequebook.go
//go:generate go run ./gencode.go
import (

View file

@ -1,5 +1,5 @@
// This file is an automatically generated Go binding. Do not modify as any
// change will likely be lost upon the next re-generation!
// Code generated - DO NOT EDIT.
// This file is a generated binding and any manual changes will be lost.
package contract
@ -14,10 +14,10 @@ import (
)
// ChequebookABI is the input ABI used to generate the binding from.
const ChequebookABI = `[{"constant":false,"inputs":[],"name":"kill","outputs":[],"type":"function"},{"constant":true,"inputs":[{"name":"","type":"address"}],"name":"sent","outputs":[{"name":"","type":"uint256"}],"type":"function"},{"constant":false,"inputs":[{"name":"beneficiary","type":"address"},{"name":"amount","type":"uint256"},{"name":"sig_v","type":"uint8"},{"name":"sig_r","type":"bytes32"},{"name":"sig_s","type":"bytes32"}],"name":"cash","outputs":[],"type":"function"},{"anonymous":false,"inputs":[{"indexed":false,"name":"deadbeat","type":"address"}],"name":"Overdraft","type":"event"}]`
const ChequebookABI = "[{\"constant\":false,\"inputs\":[],\"name\":\"kill\",\"outputs\":[],\"payable\":false,\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"constant\":true,\"inputs\":[{\"name\":\"\",\"type\":\"address\"}],\"name\":\"sent\",\"outputs\":[{\"name\":\"\",\"type\":\"uint256\"}],\"payable\":false,\"stateMutability\":\"view\",\"type\":\"function\"},{\"constant\":false,\"inputs\":[{\"name\":\"beneficiary\",\"type\":\"address\"},{\"name\":\"amount\",\"type\":\"uint256\"},{\"name\":\"sig_v\",\"type\":\"uint8\"},{\"name\":\"sig_r\",\"type\":\"bytes32\"},{\"name\":\"sig_s\",\"type\":\"bytes32\"}],\"name\":\"cash\",\"outputs\":[],\"payable\":false,\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"payable\":true,\"stateMutability\":\"payable\",\"type\":\"fallback\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"name\":\"deadbeat\",\"type\":\"address\"}],\"name\":\"Overdraft\",\"type\":\"event\"}]"
// ChequebookBin is the compiled bytecode used for deploying new contracts.
const ChequebookBin = `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`
const ChequebookBin = `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`
// DeployChequebook deploys a new Ethereum contract, binding an instance of Chequebook to it.
func DeployChequebook(auth *bind.TransactOpts, backend bind.ContractBackend) (common.Address, *types.Transaction, *Chequebook, error) {
@ -226,316 +226,3 @@ func (_Chequebook *ChequebookSession) Kill() (*types.Transaction, error) {
func (_Chequebook *ChequebookTransactorSession) Kill() (*types.Transaction, error) {
return _Chequebook.Contract.Kill(&_Chequebook.TransactOpts)
}
// MortalABI is the input ABI used to generate the binding from.
const MortalABI = `[{"constant":false,"inputs":[],"name":"kill","outputs":[],"type":"function"}]`
// MortalBin is the compiled bytecode used for deploying new contracts.
const MortalBin = `0x606060405260008054600160a060020a03191633179055605c8060226000396000f3606060405260e060020a600035046341c0e1b58114601a575b005b60186000543373ffffffffffffffffffffffffffffffffffffffff90811691161415605a5760005473ffffffffffffffffffffffffffffffffffffffff16ff5b56`
// DeployMortal deploys a new Ethereum contract, binding an instance of Mortal to it.
func DeployMortal(auth *bind.TransactOpts, backend bind.ContractBackend) (common.Address, *types.Transaction, *Mortal, error) {
parsed, err := abi.JSON(strings.NewReader(MortalABI))
if err != nil {
return common.Address{}, nil, nil, err
}
address, tx, contract, err := bind.DeployContract(auth, parsed, common.FromHex(MortalBin), backend)
if err != nil {
return common.Address{}, nil, nil, err
}
return address, tx, &Mortal{MortalCaller: MortalCaller{contract: contract}, MortalTransactor: MortalTransactor{contract: contract}}, nil
}
// Mortal is an auto generated Go binding around an Ethereum contract.
type Mortal struct {
MortalCaller // Read-only binding to the contract
MortalTransactor // Write-only binding to the contract
}
// MortalCaller is an auto generated read-only Go binding around an Ethereum contract.
type MortalCaller struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// MortalTransactor is an auto generated write-only Go binding around an Ethereum contract.
type MortalTransactor struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// MortalSession is an auto generated Go binding around an Ethereum contract,
// with pre-set call and transact options.
type MortalSession struct {
Contract *Mortal // Generic contract binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// MortalCallerSession is an auto generated read-only Go binding around an Ethereum contract,
// with pre-set call options.
type MortalCallerSession struct {
Contract *MortalCaller // Generic contract caller binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
}
// MortalTransactorSession is an auto generated write-only Go binding around an Ethereum contract,
// with pre-set transact options.
type MortalTransactorSession struct {
Contract *MortalTransactor // Generic contract transactor binding to set the session for
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// MortalRaw is an auto generated low-level Go binding around an Ethereum contract.
type MortalRaw struct {
Contract *Mortal // Generic contract binding to access the raw methods on
}
// MortalCallerRaw is an auto generated low-level read-only Go binding around an Ethereum contract.
type MortalCallerRaw struct {
Contract *MortalCaller // Generic read-only contract binding to access the raw methods on
}
// MortalTransactorRaw is an auto generated low-level write-only Go binding around an Ethereum contract.
type MortalTransactorRaw struct {
Contract *MortalTransactor // Generic write-only contract binding to access the raw methods on
}
// NewMortal creates a new instance of Mortal, bound to a specific deployed contract.
func NewMortal(address common.Address, backend bind.ContractBackend) (*Mortal, error) {
contract, err := bindMortal(address, backend, backend)
if err != nil {
return nil, err
}
return &Mortal{MortalCaller: MortalCaller{contract: contract}, MortalTransactor: MortalTransactor{contract: contract}}, nil
}
// NewMortalCaller creates a new read-only instance of Mortal, bound to a specific deployed contract.
func NewMortalCaller(address common.Address, caller bind.ContractCaller) (*MortalCaller, error) {
contract, err := bindMortal(address, caller, nil)
if err != nil {
return nil, err
}
return &MortalCaller{contract: contract}, nil
}
// NewMortalTransactor creates a new write-only instance of Mortal, bound to a specific deployed contract.
func NewMortalTransactor(address common.Address, transactor bind.ContractTransactor) (*MortalTransactor, error) {
contract, err := bindMortal(address, nil, transactor)
if err != nil {
return nil, err
}
return &MortalTransactor{contract: contract}, nil
}
// bindMortal binds a generic wrapper to an already deployed contract.
func bindMortal(address common.Address, caller bind.ContractCaller, transactor bind.ContractTransactor) (*bind.BoundContract, error) {
parsed, err := abi.JSON(strings.NewReader(MortalABI))
if err != nil {
return nil, err
}
return bind.NewBoundContract(address, parsed, caller, transactor), nil
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_Mortal *MortalRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _Mortal.Contract.MortalCaller.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_Mortal *MortalRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _Mortal.Contract.MortalTransactor.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_Mortal *MortalRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _Mortal.Contract.MortalTransactor.contract.Transact(opts, method, params...)
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_Mortal *MortalCallerRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _Mortal.Contract.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_Mortal *MortalTransactorRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _Mortal.Contract.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_Mortal *MortalTransactorRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _Mortal.Contract.contract.Transact(opts, method, params...)
}
// Kill is a paid mutator transaction binding the contract method 0x41c0e1b5.
//
// Solidity: function kill() returns()
func (_Mortal *MortalTransactor) Kill(opts *bind.TransactOpts) (*types.Transaction, error) {
return _Mortal.contract.Transact(opts, "kill")
}
// Kill is a paid mutator transaction binding the contract method 0x41c0e1b5.
//
// Solidity: function kill() returns()
func (_Mortal *MortalSession) Kill() (*types.Transaction, error) {
return _Mortal.Contract.Kill(&_Mortal.TransactOpts)
}
// Kill is a paid mutator transaction binding the contract method 0x41c0e1b5.
//
// Solidity: function kill() returns()
func (_Mortal *MortalTransactorSession) Kill() (*types.Transaction, error) {
return _Mortal.Contract.Kill(&_Mortal.TransactOpts)
}
// OwnedABI is the input ABI used to generate the binding from.
const OwnedABI = `[{"inputs":[],"type":"constructor"}]`
// OwnedBin is the compiled bytecode used for deploying new contracts.
const OwnedBin = `0x606060405260008054600160a060020a0319163317905560068060226000396000f3606060405200`
// DeployOwned deploys a new Ethereum contract, binding an instance of Owned to it.
func DeployOwned(auth *bind.TransactOpts, backend bind.ContractBackend) (common.Address, *types.Transaction, *Owned, error) {
parsed, err := abi.JSON(strings.NewReader(OwnedABI))
if err != nil {
return common.Address{}, nil, nil, err
}
address, tx, contract, err := bind.DeployContract(auth, parsed, common.FromHex(OwnedBin), backend)
if err != nil {
return common.Address{}, nil, nil, err
}
return address, tx, &Owned{OwnedCaller: OwnedCaller{contract: contract}, OwnedTransactor: OwnedTransactor{contract: contract}}, nil
}
// Owned is an auto generated Go binding around an Ethereum contract.
type Owned struct {
OwnedCaller // Read-only binding to the contract
OwnedTransactor // Write-only binding to the contract
}
// OwnedCaller is an auto generated read-only Go binding around an Ethereum contract.
type OwnedCaller struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// OwnedTransactor is an auto generated write-only Go binding around an Ethereum contract.
type OwnedTransactor struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// OwnedSession is an auto generated Go binding around an Ethereum contract,
// with pre-set call and transact options.
type OwnedSession struct {
Contract *Owned // Generic contract binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// OwnedCallerSession is an auto generated read-only Go binding around an Ethereum contract,
// with pre-set call options.
type OwnedCallerSession struct {
Contract *OwnedCaller // Generic contract caller binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
}
// OwnedTransactorSession is an auto generated write-only Go binding around an Ethereum contract,
// with pre-set transact options.
type OwnedTransactorSession struct {
Contract *OwnedTransactor // Generic contract transactor binding to set the session for
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// OwnedRaw is an auto generated low-level Go binding around an Ethereum contract.
type OwnedRaw struct {
Contract *Owned // Generic contract binding to access the raw methods on
}
// OwnedCallerRaw is an auto generated low-level read-only Go binding around an Ethereum contract.
type OwnedCallerRaw struct {
Contract *OwnedCaller // Generic read-only contract binding to access the raw methods on
}
// OwnedTransactorRaw is an auto generated low-level write-only Go binding around an Ethereum contract.
type OwnedTransactorRaw struct {
Contract *OwnedTransactor // Generic write-only contract binding to access the raw methods on
}
// NewOwned creates a new instance of Owned, bound to a specific deployed contract.
func NewOwned(address common.Address, backend bind.ContractBackend) (*Owned, error) {
contract, err := bindOwned(address, backend, backend)
if err != nil {
return nil, err
}
return &Owned{OwnedCaller: OwnedCaller{contract: contract}, OwnedTransactor: OwnedTransactor{contract: contract}}, nil
}
// NewOwnedCaller creates a new read-only instance of Owned, bound to a specific deployed contract.
func NewOwnedCaller(address common.Address, caller bind.ContractCaller) (*OwnedCaller, error) {
contract, err := bindOwned(address, caller, nil)
if err != nil {
return nil, err
}
return &OwnedCaller{contract: contract}, nil
}
// NewOwnedTransactor creates a new write-only instance of Owned, bound to a specific deployed contract.
func NewOwnedTransactor(address common.Address, transactor bind.ContractTransactor) (*OwnedTransactor, error) {
contract, err := bindOwned(address, nil, transactor)
if err != nil {
return nil, err
}
return &OwnedTransactor{contract: contract}, nil
}
// bindOwned binds a generic wrapper to an already deployed contract.
func bindOwned(address common.Address, caller bind.ContractCaller, transactor bind.ContractTransactor) (*bind.BoundContract, error) {
parsed, err := abi.JSON(strings.NewReader(OwnedABI))
if err != nil {
return nil, err
}
return bind.NewBoundContract(address, parsed, caller, transactor), nil
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_Owned *OwnedRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _Owned.Contract.OwnedCaller.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_Owned *OwnedRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _Owned.Contract.OwnedTransactor.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_Owned *OwnedRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _Owned.Contract.OwnedTransactor.contract.Transact(opts, method, params...)
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_Owned *OwnedCallerRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _Owned.Contract.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_Owned *OwnedTransactorRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _Owned.Contract.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_Owned *OwnedTransactorRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _Owned.Contract.contract.Transact(opts, method, params...)
}

View file

@ -1,6 +1,6 @@
pragma solidity ^0.4.18;
import "https://github.com/ethereum/solidity/std/mortal.sol";
import "./mortal.sol";
/// @title Chequebook for Ethereum micropayments
/// @author Daniel A. Nagy <daniel@ethereum.org>
@ -11,6 +11,9 @@ contract chequebook is mortal {
/// @notice Overdraft event
event Overdraft(address deadbeat);
// Allow sending ether to the chequebook.
function() public payable { }
/// @notice Cash cheque
///
/// @param beneficiary beneficiary address
@ -19,8 +22,7 @@ contract chequebook is mortal {
/// @param sig_r signature parameter r
/// @param sig_s signature parameter s
/// The digital signature is calculated on the concatenated triplet of contract address, beneficiary address and cumulative amount
function cash(address beneficiary, uint256 amount,
uint8 sig_v, bytes32 sig_r, bytes32 sig_s) {
function cash(address beneficiary, uint256 amount, uint8 sig_v, bytes32 sig_r, bytes32 sig_s) public {
// Check if the cheque is old.
// Only cheques that are more recent than the last cashed one are considered.
require(amount > sent[beneficiary]);

View file

@ -2,4 +2,4 @@ package contract
// ContractDeployedCode is used to detect suicides. This constant needs to be
// updated when the contract code is changed.
const ContractDeployedCode = "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"
const ContractDeployedCode = "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"

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@ -0,0 +1,10 @@
pragma solidity ^0.4.0;
import "./owned.sol";
contract mortal is owned {
function kill() public {
if (msg.sender == owner)
selfdestruct(owner);
}
}

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@ -0,0 +1,15 @@
pragma solidity ^0.4.0;
contract owned {
address owner;
modifier onlyowner() {
if (msg.sender == owner) {
_;
}
}
function owned() public {
owner = msg.sender;
}
}

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@ -34,14 +34,13 @@ import (
var (
testKey, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
testAccount = core.GenesisAccount{
Address: crypto.PubkeyToAddress(testKey.PublicKey),
Balance: big.NewInt(500000000000),
testAlloc = core.GenesisAlloc{
crypto.PubkeyToAddress(testKey.PublicKey): {Balance: big.NewInt(500000000000)},
}
)
func main() {
backend := backends.NewSimulatedBackend(testAccount)
backend := backends.NewSimulatedBackend(testAlloc)
auth := bind.NewKeyedTransactor(testKey)
// Deploy the contract, get the code.

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@ -0,0 +1,23 @@
pragma solidity ^0.4.0;
contract AbstractENS {
function owner(bytes32 node) constant returns(address);
function resolver(bytes32 node) constant returns(address);
function ttl(bytes32 node) constant returns(uint64);
function setOwner(bytes32 node, address owner);
function setSubnodeOwner(bytes32 node, bytes32 label, address owner);
function setResolver(bytes32 node, address resolver);
function setTTL(bytes32 node, uint64 ttl);
// Logged when the owner of a node assigns a new owner to a subnode.
event NewOwner(bytes32 indexed node, bytes32 indexed label, address owner);
// Logged when the owner of a node transfers ownership to a new account.
event Transfer(bytes32 indexed node, address owner);
// Logged when the resolver for a node changes.
event NewResolver(bytes32 indexed node, address resolver);
// Logged when the TTL of a node changes
event NewTTL(bytes32 indexed node, uint64 ttl);
}

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@ -0,0 +1,94 @@
pragma solidity ^0.4.0;
import './AbstractENS.sol';
/**
* The ENS registry contract.
*/
contract ENS is AbstractENS {
struct Record {
address owner;
address resolver;
uint64 ttl;
}
mapping(bytes32=>Record) records;
// Permits modifications only by the owner of the specified node.
modifier only_owner(bytes32 node) {
if (records[node].owner != msg.sender) throw;
_;
}
/**
* Constructs a new ENS registrar.
*/
function ENS() {
records[0].owner = msg.sender;
}
/**
* Returns the address that owns the specified node.
*/
function owner(bytes32 node) constant returns (address) {
return records[node].owner;
}
/**
* Returns the address of the resolver for the specified node.
*/
function resolver(bytes32 node) constant returns (address) {
return records[node].resolver;
}
/**
* Returns the TTL of a node, and any records associated with it.
*/
function ttl(bytes32 node) constant returns (uint64) {
return records[node].ttl;
}
/**
* Transfers ownership of a node to a new address. May only be called by the current
* owner of the node.
* @param node The node to transfer ownership of.
* @param owner The address of the new owner.
*/
function setOwner(bytes32 node, address owner) only_owner(node) {
Transfer(node, owner);
records[node].owner = owner;
}
/**
* Transfers ownership of a subnode sha3(node, label) to a new address. May only be
* called by the owner of the parent node.
* @param node The parent node.
* @param label The hash of the label specifying the subnode.
* @param owner The address of the new owner.
*/
function setSubnodeOwner(bytes32 node, bytes32 label, address owner) only_owner(node) {
var subnode = sha3(node, label);
NewOwner(node, label, owner);
records[subnode].owner = owner;
}
/**
* Sets the resolver address for the specified node.
* @param node The node to update.
* @param resolver The address of the resolver.
*/
function setResolver(bytes32 node, address resolver) only_owner(node) {
NewResolver(node, resolver);
records[node].resolver = resolver;
}
/**
* Sets the TTL for the specified node.
* @param node The node to update.
* @param ttl The TTL in seconds.
*/
function setTTL(bytes32 node, uint64 ttl) only_owner(node) {
NewTTL(node, ttl);
records[node].ttl = ttl;
}
}

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@ -0,0 +1,39 @@
pragma solidity ^0.4.0;
import './AbstractENS.sol';
/**
* A registrar that allocates subdomains to the first person to claim them.
*/
contract FIFSRegistrar {
AbstractENS ens;
bytes32 rootNode;
modifier only_owner(bytes32 subnode) {
var node = sha3(rootNode, subnode);
var currentOwner = ens.owner(node);
if (currentOwner != 0 && currentOwner != msg.sender) throw;
_;
}
/**
* Constructor.
* @param ensAddr The address of the ENS registry.
* @param node The node that this registrar administers.
*/
function FIFSRegistrar(AbstractENS ensAddr, bytes32 node) {
ens = ensAddr;
rootNode = node;
}
/**
* Register a name, or change the owner of an existing registration.
* @param subnode The hash of the label to register.
* @param owner The address of the new owner.
*/
function register(bytes32 subnode, address owner) only_owner(subnode) {
ens.setSubnodeOwner(rootNode, subnode, owner);
}
}

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@ -0,0 +1,212 @@
pragma solidity ^0.4.0;
import './AbstractENS.sol';
/**
* A simple resolver anyone can use; only allows the owner of a node to set its
* address.
*/
contract PublicResolver {
bytes4 constant INTERFACE_META_ID = 0x01ffc9a7;
bytes4 constant ADDR_INTERFACE_ID = 0x3b3b57de;
bytes4 constant CONTENT_INTERFACE_ID = 0xd8389dc5;
bytes4 constant NAME_INTERFACE_ID = 0x691f3431;
bytes4 constant ABI_INTERFACE_ID = 0x2203ab56;
bytes4 constant PUBKEY_INTERFACE_ID = 0xc8690233;
bytes4 constant TEXT_INTERFACE_ID = 0x59d1d43c;
event AddrChanged(bytes32 indexed node, address a);
event ContentChanged(bytes32 indexed node, bytes32 hash);
event NameChanged(bytes32 indexed node, string name);
event ABIChanged(bytes32 indexed node, uint256 indexed contentType);
event PubkeyChanged(bytes32 indexed node, bytes32 x, bytes32 y);
event TextChanged(bytes32 indexed node, string indexed indexedKey, string key);
struct PublicKey {
bytes32 x;
bytes32 y;
}
struct Record {
address addr;
bytes32 content;
string name;
PublicKey pubkey;
mapping(string=>string) text;
mapping(uint256=>bytes) abis;
}
AbstractENS ens;
mapping(bytes32=>Record) records;
modifier only_owner(bytes32 node) {
if (ens.owner(node) != msg.sender) throw;
_;
}
/**
* Constructor.
* @param ensAddr The ENS registrar contract.
*/
function PublicResolver(AbstractENS ensAddr) {
ens = ensAddr;
}
/**
* Returns true if the resolver implements the interface specified by the provided hash.
* @param interfaceID The ID of the interface to check for.
* @return True if the contract implements the requested interface.
*/
function supportsInterface(bytes4 interfaceID) constant returns (bool) {
return interfaceID == ADDR_INTERFACE_ID ||
interfaceID == CONTENT_INTERFACE_ID ||
interfaceID == NAME_INTERFACE_ID ||
interfaceID == ABI_INTERFACE_ID ||
interfaceID == PUBKEY_INTERFACE_ID ||
interfaceID == TEXT_INTERFACE_ID ||
interfaceID == INTERFACE_META_ID;
}
/**
* Returns the address associated with an ENS node.
* @param node The ENS node to query.
* @return The associated address.
*/
function addr(bytes32 node) constant returns (address ret) {
ret = records[node].addr;
}
/**
* Sets the address associated with an ENS node.
* May only be called by the owner of that node in the ENS registry.
* @param node The node to update.
* @param addr The address to set.
*/
function setAddr(bytes32 node, address addr) only_owner(node) {
records[node].addr = addr;
AddrChanged(node, addr);
}
/**
* Returns the content hash associated with an ENS node.
* Note that this resource type is not standardized, and will likely change
* in future to a resource type based on multihash.
* @param node The ENS node to query.
* @return The associated content hash.
*/
function content(bytes32 node) constant returns (bytes32 ret) {
ret = records[node].content;
}
/**
* Sets the content hash associated with an ENS node.
* May only be called by the owner of that node in the ENS registry.
* Note that this resource type is not standardized, and will likely change
* in future to a resource type based on multihash.
* @param node The node to update.
* @param hash The content hash to set
*/
function setContent(bytes32 node, bytes32 hash) only_owner(node) {
records[node].content = hash;
ContentChanged(node, hash);
}
/**
* Returns the name associated with an ENS node, for reverse records.
* Defined in EIP181.
* @param node The ENS node to query.
* @return The associated name.
*/
function name(bytes32 node) constant returns (string ret) {
ret = records[node].name;
}
/**
* Sets the name associated with an ENS node, for reverse records.
* May only be called by the owner of that node in the ENS registry.
* @param node The node to update.
* @param name The name to set.
*/
function setName(bytes32 node, string name) only_owner(node) {
records[node].name = name;
NameChanged(node, name);
}
/**
* Returns the ABI associated with an ENS node.
* Defined in EIP205.
* @param node The ENS node to query
* @param contentTypes A bitwise OR of the ABI formats accepted by the caller.
* @return contentType The content type of the return value
* @return data The ABI data
*/
function ABI(bytes32 node, uint256 contentTypes) constant returns (uint256 contentType, bytes data) {
var record = records[node];
for(contentType = 1; contentType <= contentTypes; contentType <<= 1) {
if ((contentType & contentTypes) != 0 && record.abis[contentType].length > 0) {
data = record.abis[contentType];
return;
}
}
contentType = 0;
}
/**
* Sets the ABI associated with an ENS node.
* Nodes may have one ABI of each content type. To remove an ABI, set it to
* the empty string.
* @param node The node to update.
* @param contentType The content type of the ABI
* @param data The ABI data.
*/
function setABI(bytes32 node, uint256 contentType, bytes data) only_owner(node) {
// Content types must be powers of 2
if (((contentType - 1) & contentType) != 0) throw;
records[node].abis[contentType] = data;
ABIChanged(node, contentType);
}
/**
* Returns the SECP256k1 public key associated with an ENS node.
* Defined in EIP 619.
* @param node The ENS node to query
* @return x, y the X and Y coordinates of the curve point for the public key.
*/
function pubkey(bytes32 node) constant returns (bytes32 x, bytes32 y) {
return (records[node].pubkey.x, records[node].pubkey.y);
}
/**
* Sets the SECP256k1 public key associated with an ENS node.
* @param node The ENS node to query
* @param x the X coordinate of the curve point for the public key.
* @param y the Y coordinate of the curve point for the public key.
*/
function setPubkey(bytes32 node, bytes32 x, bytes32 y) only_owner(node) {
records[node].pubkey = PublicKey(x, y);
PubkeyChanged(node, x, y);
}
/**
* Returns the text data associated with an ENS node and key.
* @param node The ENS node to query.
* @param key The text data key to query.
* @return The associated text data.
*/
function text(bytes32 node, string key) constant returns (string ret) {
ret = records[node].text[key];
}
/**
* Sets the text data associated with an ENS node and key.
* May only be called by the owner of that node in the ENS registry.
* @param node The node to update.
* @param key The key to set.
* @param value The text data value to set.
*/
function setText(bytes32 node, string key, string value) only_owner(node) {
records[node].text[key] = value;
TextChanged(node, key, key);
}
}

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@ -1,5 +1,5 @@
// This file is an automatically generated Go binding. Do not modify as any
// change will likely be lost upon the next re-generation!
// Code generated - DO NOT EDIT.
// This file is a generated binding and any manual changes will be lost.
package contract
@ -13,18 +13,18 @@ import (
)
// ENSABI is the input ABI used to generate the binding from.
const ENSABI = `[{"constant":true,"inputs":[{"name":"node","type":"bytes32"}],"name":"resolver","outputs":[{"name":"","type":"address"}],"type":"function"},{"constant":true,"inputs":[{"name":"node","type":"bytes32"}],"name":"owner","outputs":[{"name":"","type":"address"}],"type":"function"},{"constant":false,"inputs":[{"name":"node","type":"bytes32"},{"name":"label","type":"bytes32"},{"name":"owner","type":"address"}],"name":"setSubnodeOwner","outputs":[],"type":"function"},{"constant":false,"inputs":[{"name":"node","type":"bytes32"},{"name":"resolver","type":"address"}],"name":"setResolver","outputs":[],"type":"function"},{"constant":false,"inputs":[{"name":"node","type":"bytes32"},{"name":"owner","type":"address"}],"name":"setOwner","outputs":[],"type":"function"},{"inputs":[{"name":"owner","type":"address"}],"type":"constructor"},{"anonymous":false,"inputs":[{"indexed":true,"name":"node","type":"bytes32"},{"indexed":true,"name":"label","type":"bytes32"},{"indexed":false,"name":"owner","type":"address"}],"name":"NewOwner","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"name":"node","type":"bytes32"},{"indexed":false,"name":"owner","type":"address"}],"name":"Transfer","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"name":"node","type":"bytes32"},{"indexed":false,"name":"resolver","type":"address"}],"name":"NewResolver","type":"event"}]`
const ENSABI = "[{\"constant\":true,\"inputs\":[{\"name\":\"node\",\"type\":\"bytes32\"}],\"name\":\"resolver\",\"outputs\":[{\"name\":\"\",\"type\":\"address\"}],\"payable\":false,\"stateMutability\":\"view\",\"type\":\"function\"},{\"constant\":true,\"inputs\":[{\"name\":\"node\",\"type\":\"bytes32\"}],\"name\":\"owner\",\"outputs\":[{\"name\":\"\",\"type\":\"address\"}],\"payable\":false,\"stateMutability\":\"view\",\"type\":\"function\"},{\"constant\":false,\"inputs\":[{\"name\":\"node\",\"type\":\"bytes32\"},{\"name\":\"label\",\"type\":\"bytes32\"},{\"name\":\"owner\",\"type\":\"address\"}],\"name\":\"setSubnodeOwner\",\"outputs\":[],\"payable\":false,\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"constant\":false,\"inputs\":[{\"name\":\"node\",\"type\":\"bytes32\"},{\"name\":\"ttl\",\"type\":\"uint64\"}],\"name\":\"setTTL\",\"outputs\":[],\"payable\":false,\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"constant\":true,\"inputs\":[{\"name\":\"node\",\"type\":\"bytes32\"}],\"name\":\"ttl\",\"outputs\":[{\"name\":\"\",\"type\":\"uint64\"}],\"payable\":false,\"stateMutability\":\"view\",\"type\":\"function\"},{\"constant\":false,\"inputs\":[{\"name\":\"node\",\"type\":\"bytes32\"},{\"name\":\"resolver\",\"type\":\"address\"}],\"name\":\"setResolver\",\"outputs\":[],\"payable\":false,\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"constant\":false,\"inputs\":[{\"name\":\"node\",\"type\":\"bytes32\"},{\"name\":\"owner\",\"type\":\"address\"}],\"name\":\"setOwner\",\"outputs\":[],\"payable\":false,\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"payable\":false,\"stateMutability\":\"nonpayable\",\"type\":\"constructor\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":true,\"name\":\"node\",\"type\":\"bytes32\"},{\"indexed\":true,\"name\":\"label\",\"type\":\"bytes32\"},{\"indexed\":false,\"name\":\"owner\",\"type\":\"address\"}],\"name\":\"NewOwner\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":true,\"name\":\"node\",\"type\":\"bytes32\"},{\"indexed\":false,\"name\":\"owner\",\"type\":\"address\"}],\"name\":\"Transfer\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":true,\"name\":\"node\",\"type\":\"bytes32\"},{\"indexed\":false,\"name\":\"resolver\",\"type\":\"address\"}],\"name\":\"NewResolver\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":true,\"name\":\"node\",\"type\":\"bytes32\"},{\"indexed\":false,\"name\":\"ttl\",\"type\":\"uint64\"}],\"name\":\"NewTTL\",\"type\":\"event\"}]"
// ENSBin is the compiled bytecode used for deploying new contracts.
const ENSBin = `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`
const ENSBin = `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`
// DeployENS deploys a new Ethereum contract, binding an instance of ENS to it.
func DeployENS(auth *bind.TransactOpts, backend bind.ContractBackend, owner common.Address) (common.Address, *types.Transaction, *ENS, error) {
func DeployENS(auth *bind.TransactOpts, backend bind.ContractBackend) (common.Address, *types.Transaction, *ENS, error) {
parsed, err := abi.JSON(strings.NewReader(ENSABI))
if err != nil {
return common.Address{}, nil, nil, err
}
address, tx, contract, err := bind.DeployContract(auth, parsed, common.FromHex(ENSBin), backend, owner)
address, tx, contract, err := bind.DeployContract(auth, parsed, common.FromHex(ENSBin), backend)
if err != nil {
return common.Address{}, nil, nil, err
}
@ -210,6 +210,32 @@ func (_ENS *ENSCallerSession) Resolver(node [32]byte) (common.Address, error) {
return _ENS.Contract.Resolver(&_ENS.CallOpts, node)
}
// Ttl is a free data retrieval call binding the contract method 0x16a25cbd.
//
// Solidity: function ttl(node bytes32) constant returns(uint64)
func (_ENS *ENSCaller) Ttl(opts *bind.CallOpts, node [32]byte) (uint64, error) {
var (
ret0 = new(uint64)
)
out := ret0
err := _ENS.contract.Call(opts, out, "ttl", node)
return *ret0, err
}
// Ttl is a free data retrieval call binding the contract method 0x16a25cbd.
//
// Solidity: function ttl(node bytes32) constant returns(uint64)
func (_ENS *ENSSession) Ttl(node [32]byte) (uint64, error) {
return _ENS.Contract.Ttl(&_ENS.CallOpts, node)
}
// Ttl is a free data retrieval call binding the contract method 0x16a25cbd.
//
// Solidity: function ttl(node bytes32) constant returns(uint64)
func (_ENS *ENSCallerSession) Ttl(node [32]byte) (uint64, error) {
return _ENS.Contract.Ttl(&_ENS.CallOpts, node)
}
// SetOwner is a paid mutator transaction binding the contract method 0x5b0fc9c3.
//
// Solidity: function setOwner(node bytes32, owner address) returns()
@ -273,649 +299,23 @@ func (_ENS *ENSTransactorSession) SetSubnodeOwner(node [32]byte, label [32]byte,
return _ENS.Contract.SetSubnodeOwner(&_ENS.TransactOpts, node, label, owner)
}
// FIFSRegistrarABI is the input ABI used to generate the binding from.
const FIFSRegistrarABI = `[{"constant":false,"inputs":[{"name":"subnode","type":"bytes32"},{"name":"owner","type":"address"}],"name":"register","outputs":[],"type":"function"},{"inputs":[{"name":"ensAddr","type":"address"},{"name":"node","type":"bytes32"}],"type":"constructor"}]`
// FIFSRegistrarBin is the compiled bytecode used for deploying new contracts.
const FIFSRegistrarBin = `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`
// DeployFIFSRegistrar deploys a new Ethereum contract, binding an instance of FIFSRegistrar to it.
func DeployFIFSRegistrar(auth *bind.TransactOpts, backend bind.ContractBackend, ensAddr common.Address, node [32]byte) (common.Address, *types.Transaction, *FIFSRegistrar, error) {
parsed, err := abi.JSON(strings.NewReader(FIFSRegistrarABI))
if err != nil {
return common.Address{}, nil, nil, err
}
address, tx, contract, err := bind.DeployContract(auth, parsed, common.FromHex(FIFSRegistrarBin), backend, ensAddr, node)
if err != nil {
return common.Address{}, nil, nil, err
}
return address, tx, &FIFSRegistrar{FIFSRegistrarCaller: FIFSRegistrarCaller{contract: contract}, FIFSRegistrarTransactor: FIFSRegistrarTransactor{contract: contract}}, nil
}
// FIFSRegistrar is an auto generated Go binding around an Ethereum contract.
type FIFSRegistrar struct {
FIFSRegistrarCaller // Read-only binding to the contract
FIFSRegistrarTransactor // Write-only binding to the contract
}
// FIFSRegistrarCaller is an auto generated read-only Go binding around an Ethereum contract.
type FIFSRegistrarCaller struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// FIFSRegistrarTransactor is an auto generated write-only Go binding around an Ethereum contract.
type FIFSRegistrarTransactor struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// FIFSRegistrarSession is an auto generated Go binding around an Ethereum contract,
// with pre-set call and transact options.
type FIFSRegistrarSession struct {
Contract *FIFSRegistrar // Generic contract binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// FIFSRegistrarCallerSession is an auto generated read-only Go binding around an Ethereum contract,
// with pre-set call options.
type FIFSRegistrarCallerSession struct {
Contract *FIFSRegistrarCaller // Generic contract caller binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
}
// FIFSRegistrarTransactorSession is an auto generated write-only Go binding around an Ethereum contract,
// with pre-set transact options.
type FIFSRegistrarTransactorSession struct {
Contract *FIFSRegistrarTransactor // Generic contract transactor binding to set the session for
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// FIFSRegistrarRaw is an auto generated low-level Go binding around an Ethereum contract.
type FIFSRegistrarRaw struct {
Contract *FIFSRegistrar // Generic contract binding to access the raw methods on
}
// FIFSRegistrarCallerRaw is an auto generated low-level read-only Go binding around an Ethereum contract.
type FIFSRegistrarCallerRaw struct {
Contract *FIFSRegistrarCaller // Generic read-only contract binding to access the raw methods on
}
// FIFSRegistrarTransactorRaw is an auto generated low-level write-only Go binding around an Ethereum contract.
type FIFSRegistrarTransactorRaw struct {
Contract *FIFSRegistrarTransactor // Generic write-only contract binding to access the raw methods on
}
// NewFIFSRegistrar creates a new instance of FIFSRegistrar, bound to a specific deployed contract.
func NewFIFSRegistrar(address common.Address, backend bind.ContractBackend) (*FIFSRegistrar, error) {
contract, err := bindFIFSRegistrar(address, backend, backend)
if err != nil {
return nil, err
}
return &FIFSRegistrar{FIFSRegistrarCaller: FIFSRegistrarCaller{contract: contract}, FIFSRegistrarTransactor: FIFSRegistrarTransactor{contract: contract}}, nil
}
// NewFIFSRegistrarCaller creates a new read-only instance of FIFSRegistrar, bound to a specific deployed contract.
func NewFIFSRegistrarCaller(address common.Address, caller bind.ContractCaller) (*FIFSRegistrarCaller, error) {
contract, err := bindFIFSRegistrar(address, caller, nil)
if err != nil {
return nil, err
}
return &FIFSRegistrarCaller{contract: contract}, nil
}
// NewFIFSRegistrarTransactor creates a new write-only instance of FIFSRegistrar, bound to a specific deployed contract.
func NewFIFSRegistrarTransactor(address common.Address, transactor bind.ContractTransactor) (*FIFSRegistrarTransactor, error) {
contract, err := bindFIFSRegistrar(address, nil, transactor)
if err != nil {
return nil, err
}
return &FIFSRegistrarTransactor{contract: contract}, nil
}
// bindFIFSRegistrar binds a generic wrapper to an already deployed contract.
func bindFIFSRegistrar(address common.Address, caller bind.ContractCaller, transactor bind.ContractTransactor) (*bind.BoundContract, error) {
parsed, err := abi.JSON(strings.NewReader(FIFSRegistrarABI))
if err != nil {
return nil, err
}
return bind.NewBoundContract(address, parsed, caller, transactor), nil
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_FIFSRegistrar *FIFSRegistrarRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _FIFSRegistrar.Contract.FIFSRegistrarCaller.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_FIFSRegistrar *FIFSRegistrarRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.FIFSRegistrarTransactor.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_FIFSRegistrar *FIFSRegistrarRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.FIFSRegistrarTransactor.contract.Transact(opts, method, params...)
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_FIFSRegistrar *FIFSRegistrarCallerRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _FIFSRegistrar.Contract.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_FIFSRegistrar *FIFSRegistrarTransactorRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_FIFSRegistrar *FIFSRegistrarTransactorRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.contract.Transact(opts, method, params...)
}
// Register is a paid mutator transaction binding the contract method 0xd22057a9.
// SetTTL is a paid mutator transaction binding the contract method 0x14ab9038.
//
// Solidity: function register(subnode bytes32, owner address) returns()
func (_FIFSRegistrar *FIFSRegistrarTransactor) Register(opts *bind.TransactOpts, subnode [32]byte, owner common.Address) (*types.Transaction, error) {
return _FIFSRegistrar.contract.Transact(opts, "register", subnode, owner)
// Solidity: function setTTL(node bytes32, ttl uint64) returns()
func (_ENS *ENSTransactor) SetTTL(opts *bind.TransactOpts, node [32]byte, ttl uint64) (*types.Transaction, error) {
return _ENS.contract.Transact(opts, "setTTL", node, ttl)
}
// Register is a paid mutator transaction binding the contract method 0xd22057a9.
// SetTTL is a paid mutator transaction binding the contract method 0x14ab9038.
//
// Solidity: function register(subnode bytes32, owner address) returns()
func (_FIFSRegistrar *FIFSRegistrarSession) Register(subnode [32]byte, owner common.Address) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.Register(&_FIFSRegistrar.TransactOpts, subnode, owner)
// Solidity: function setTTL(node bytes32, ttl uint64) returns()
func (_ENS *ENSSession) SetTTL(node [32]byte, ttl uint64) (*types.Transaction, error) {
return _ENS.Contract.SetTTL(&_ENS.TransactOpts, node, ttl)
}
// Register is a paid mutator transaction binding the contract method 0xd22057a9.
// SetTTL is a paid mutator transaction binding the contract method 0x14ab9038.
//
// Solidity: function register(subnode bytes32, owner address) returns()
func (_FIFSRegistrar *FIFSRegistrarTransactorSession) Register(subnode [32]byte, owner common.Address) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.Register(&_FIFSRegistrar.TransactOpts, subnode, owner)
}
// PublicResolverABI is the input ABI used to generate the binding from.
const PublicResolverABI = `[{"constant":true,"inputs":[{"name":"node","type":"bytes32"}],"name":"content","outputs":[{"name":"ret","type":"bytes32"}],"type":"function"},{"constant":true,"inputs":[{"name":"node","type":"bytes32"}],"name":"addr","outputs":[{"name":"ret","type":"address"}],"type":"function"},{"constant":false,"inputs":[{"name":"node","type":"bytes32"},{"name":"kind","type":"bytes32"}],"name":"has","outputs":[{"name":"","type":"bool"}],"type":"function"},{"constant":false,"inputs":[{"name":"node","type":"bytes32"},{"name":"hash","type":"bytes32"}],"name":"setContent","outputs":[],"type":"function"},{"constant":false,"inputs":[{"name":"node","type":"bytes32"},{"name":"addr","type":"address"}],"name":"setAddr","outputs":[],"type":"function"},{"inputs":[{"name":"ensAddr","type":"address"}],"type":"constructor"},{"anonymous":false,"inputs":[{"indexed":true,"name":"node","type":"bytes32"},{"indexed":false,"name":"a","type":"address"}],"name":"AddrChanged","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"name":"node","type":"bytes32"},{"indexed":false,"name":"hash","type":"bytes32"}],"name":"ContentChanged","type":"event"}]`
// PublicResolverBin is the compiled bytecode used for deploying new contracts.
const PublicResolverBin = `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`
// DeployPublicResolver deploys a new Ethereum contract, binding an instance of PublicResolver to it.
func DeployPublicResolver(auth *bind.TransactOpts, backend bind.ContractBackend, ensAddr common.Address) (common.Address, *types.Transaction, *PublicResolver, error) {
parsed, err := abi.JSON(strings.NewReader(PublicResolverABI))
if err != nil {
return common.Address{}, nil, nil, err
}
address, tx, contract, err := bind.DeployContract(auth, parsed, common.FromHex(PublicResolverBin), backend, ensAddr)
if err != nil {
return common.Address{}, nil, nil, err
}
return address, tx, &PublicResolver{PublicResolverCaller: PublicResolverCaller{contract: contract}, PublicResolverTransactor: PublicResolverTransactor{contract: contract}}, nil
}
// PublicResolver is an auto generated Go binding around an Ethereum contract.
type PublicResolver struct {
PublicResolverCaller // Read-only binding to the contract
PublicResolverTransactor // Write-only binding to the contract
}
// PublicResolverCaller is an auto generated read-only Go binding around an Ethereum contract.
type PublicResolverCaller struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// PublicResolverTransactor is an auto generated write-only Go binding around an Ethereum contract.
type PublicResolverTransactor struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// PublicResolverSession is an auto generated Go binding around an Ethereum contract,
// with pre-set call and transact options.
type PublicResolverSession struct {
Contract *PublicResolver // Generic contract binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// PublicResolverCallerSession is an auto generated read-only Go binding around an Ethereum contract,
// with pre-set call options.
type PublicResolverCallerSession struct {
Contract *PublicResolverCaller // Generic contract caller binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
}
// PublicResolverTransactorSession is an auto generated write-only Go binding around an Ethereum contract,
// with pre-set transact options.
type PublicResolverTransactorSession struct {
Contract *PublicResolverTransactor // Generic contract transactor binding to set the session for
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// PublicResolverRaw is an auto generated low-level Go binding around an Ethereum contract.
type PublicResolverRaw struct {
Contract *PublicResolver // Generic contract binding to access the raw methods on
}
// PublicResolverCallerRaw is an auto generated low-level read-only Go binding around an Ethereum contract.
type PublicResolverCallerRaw struct {
Contract *PublicResolverCaller // Generic read-only contract binding to access the raw methods on
}
// PublicResolverTransactorRaw is an auto generated low-level write-only Go binding around an Ethereum contract.
type PublicResolverTransactorRaw struct {
Contract *PublicResolverTransactor // Generic write-only contract binding to access the raw methods on
}
// NewPublicResolver creates a new instance of PublicResolver, bound to a specific deployed contract.
func NewPublicResolver(address common.Address, backend bind.ContractBackend) (*PublicResolver, error) {
contract, err := bindPublicResolver(address, backend, backend)
if err != nil {
return nil, err
}
return &PublicResolver{PublicResolverCaller: PublicResolverCaller{contract: contract}, PublicResolverTransactor: PublicResolverTransactor{contract: contract}}, nil
}
// NewPublicResolverCaller creates a new read-only instance of PublicResolver, bound to a specific deployed contract.
func NewPublicResolverCaller(address common.Address, caller bind.ContractCaller) (*PublicResolverCaller, error) {
contract, err := bindPublicResolver(address, caller, nil)
if err != nil {
return nil, err
}
return &PublicResolverCaller{contract: contract}, nil
}
// NewPublicResolverTransactor creates a new write-only instance of PublicResolver, bound to a specific deployed contract.
func NewPublicResolverTransactor(address common.Address, transactor bind.ContractTransactor) (*PublicResolverTransactor, error) {
contract, err := bindPublicResolver(address, nil, transactor)
if err != nil {
return nil, err
}
return &PublicResolverTransactor{contract: contract}, nil
}
// bindPublicResolver binds a generic wrapper to an already deployed contract.
func bindPublicResolver(address common.Address, caller bind.ContractCaller, transactor bind.ContractTransactor) (*bind.BoundContract, error) {
parsed, err := abi.JSON(strings.NewReader(PublicResolverABI))
if err != nil {
return nil, err
}
return bind.NewBoundContract(address, parsed, caller, transactor), nil
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_PublicResolver *PublicResolverRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _PublicResolver.Contract.PublicResolverCaller.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_PublicResolver *PublicResolverRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _PublicResolver.Contract.PublicResolverTransactor.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_PublicResolver *PublicResolverRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _PublicResolver.Contract.PublicResolverTransactor.contract.Transact(opts, method, params...)
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_PublicResolver *PublicResolverCallerRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _PublicResolver.Contract.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_PublicResolver *PublicResolverTransactorRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _PublicResolver.Contract.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_PublicResolver *PublicResolverTransactorRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _PublicResolver.Contract.contract.Transact(opts, method, params...)
}
// Addr is a free data retrieval call binding the contract method 0x3b3b57de.
//
// Solidity: function addr(node bytes32) constant returns(ret address)
func (_PublicResolver *PublicResolverCaller) Addr(opts *bind.CallOpts, node [32]byte) (common.Address, error) {
var (
ret0 = new(common.Address)
)
out := ret0
err := _PublicResolver.contract.Call(opts, out, "addr", node)
return *ret0, err
}
// Addr is a free data retrieval call binding the contract method 0x3b3b57de.
//
// Solidity: function addr(node bytes32) constant returns(ret address)
func (_PublicResolver *PublicResolverSession) Addr(node [32]byte) (common.Address, error) {
return _PublicResolver.Contract.Addr(&_PublicResolver.CallOpts, node)
}
// Addr is a free data retrieval call binding the contract method 0x3b3b57de.
//
// Solidity: function addr(node bytes32) constant returns(ret address)
func (_PublicResolver *PublicResolverCallerSession) Addr(node [32]byte) (common.Address, error) {
return _PublicResolver.Contract.Addr(&_PublicResolver.CallOpts, node)
}
// Content is a free data retrieval call binding the contract method 0x2dff6941.
//
// Solidity: function content(node bytes32) constant returns(ret bytes32)
func (_PublicResolver *PublicResolverCaller) Content(opts *bind.CallOpts, node [32]byte) ([32]byte, error) {
var (
ret0 = new([32]byte)
)
out := ret0
err := _PublicResolver.contract.Call(opts, out, "content", node)
return *ret0, err
}
// Content is a free data retrieval call binding the contract method 0x2dff6941.
//
// Solidity: function content(node bytes32) constant returns(ret bytes32)
func (_PublicResolver *PublicResolverSession) Content(node [32]byte) ([32]byte, error) {
return _PublicResolver.Contract.Content(&_PublicResolver.CallOpts, node)
}
// Content is a free data retrieval call binding the contract method 0x2dff6941.
//
// Solidity: function content(node bytes32) constant returns(ret bytes32)
func (_PublicResolver *PublicResolverCallerSession) Content(node [32]byte) ([32]byte, error) {
return _PublicResolver.Contract.Content(&_PublicResolver.CallOpts, node)
}
// Has is a paid mutator transaction binding the contract method 0x41b9dc2b.
//
// Solidity: function has(node bytes32, kind bytes32) returns(bool)
func (_PublicResolver *PublicResolverTransactor) Has(opts *bind.TransactOpts, node [32]byte, kind [32]byte) (*types.Transaction, error) {
return _PublicResolver.contract.Transact(opts, "has", node, kind)
}
// Has is a paid mutator transaction binding the contract method 0x41b9dc2b.
//
// Solidity: function has(node bytes32, kind bytes32) returns(bool)
func (_PublicResolver *PublicResolverSession) Has(node [32]byte, kind [32]byte) (*types.Transaction, error) {
return _PublicResolver.Contract.Has(&_PublicResolver.TransactOpts, node, kind)
}
// Has is a paid mutator transaction binding the contract method 0x41b9dc2b.
//
// Solidity: function has(node bytes32, kind bytes32) returns(bool)
func (_PublicResolver *PublicResolverTransactorSession) Has(node [32]byte, kind [32]byte) (*types.Transaction, error) {
return _PublicResolver.Contract.Has(&_PublicResolver.TransactOpts, node, kind)
}
// SetAddr is a paid mutator transaction binding the contract method 0xd5fa2b00.
//
// Solidity: function setAddr(node bytes32, addr address) returns()
func (_PublicResolver *PublicResolverTransactor) SetAddr(opts *bind.TransactOpts, node [32]byte, addr common.Address) (*types.Transaction, error) {
return _PublicResolver.contract.Transact(opts, "setAddr", node, addr)
}
// SetAddr is a paid mutator transaction binding the contract method 0xd5fa2b00.
//
// Solidity: function setAddr(node bytes32, addr address) returns()
func (_PublicResolver *PublicResolverSession) SetAddr(node [32]byte, addr common.Address) (*types.Transaction, error) {
return _PublicResolver.Contract.SetAddr(&_PublicResolver.TransactOpts, node, addr)
}
// SetAddr is a paid mutator transaction binding the contract method 0xd5fa2b00.
//
// Solidity: function setAddr(node bytes32, addr address) returns()
func (_PublicResolver *PublicResolverTransactorSession) SetAddr(node [32]byte, addr common.Address) (*types.Transaction, error) {
return _PublicResolver.Contract.SetAddr(&_PublicResolver.TransactOpts, node, addr)
}
// SetContent is a paid mutator transaction binding the contract method 0xc3d014d6.
//
// Solidity: function setContent(node bytes32, hash bytes32) returns()
func (_PublicResolver *PublicResolverTransactor) SetContent(opts *bind.TransactOpts, node [32]byte, hash [32]byte) (*types.Transaction, error) {
return _PublicResolver.contract.Transact(opts, "setContent", node, hash)
}
// SetContent is a paid mutator transaction binding the contract method 0xc3d014d6.
//
// Solidity: function setContent(node bytes32, hash bytes32) returns()
func (_PublicResolver *PublicResolverSession) SetContent(node [32]byte, hash [32]byte) (*types.Transaction, error) {
return _PublicResolver.Contract.SetContent(&_PublicResolver.TransactOpts, node, hash)
}
// SetContent is a paid mutator transaction binding the contract method 0xc3d014d6.
//
// Solidity: function setContent(node bytes32, hash bytes32) returns()
func (_PublicResolver *PublicResolverTransactorSession) SetContent(node [32]byte, hash [32]byte) (*types.Transaction, error) {
return _PublicResolver.Contract.SetContent(&_PublicResolver.TransactOpts, node, hash)
}
// ResolverABI is the input ABI used to generate the binding from.
const ResolverABI = `[{"constant":true,"inputs":[{"name":"node","type":"bytes32"}],"name":"content","outputs":[{"name":"ret","type":"bytes32"}],"type":"function"},{"constant":true,"inputs":[{"name":"node","type":"bytes32"}],"name":"addr","outputs":[{"name":"ret","type":"address"}],"type":"function"},{"constant":false,"inputs":[{"name":"node","type":"bytes32"},{"name":"kind","type":"bytes32"}],"name":"has","outputs":[{"name":"","type":"bool"}],"type":"function"},{"anonymous":false,"inputs":[{"indexed":true,"name":"node","type":"bytes32"},{"indexed":false,"name":"a","type":"address"}],"name":"AddrChanged","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"name":"node","type":"bytes32"},{"indexed":false,"name":"hash","type":"bytes32"}],"name":"ContentChanged","type":"event"}]`
// ResolverBin is the compiled bytecode used for deploying new contracts.
const ResolverBin = `0x`
// DeployResolver deploys a new Ethereum contract, binding an instance of Resolver to it.
func DeployResolver(auth *bind.TransactOpts, backend bind.ContractBackend) (common.Address, *types.Transaction, *Resolver, error) {
parsed, err := abi.JSON(strings.NewReader(ResolverABI))
if err != nil {
return common.Address{}, nil, nil, err
}
address, tx, contract, err := bind.DeployContract(auth, parsed, common.FromHex(ResolverBin), backend)
if err != nil {
return common.Address{}, nil, nil, err
}
return address, tx, &Resolver{ResolverCaller: ResolverCaller{contract: contract}, ResolverTransactor: ResolverTransactor{contract: contract}}, nil
}
// Resolver is an auto generated Go binding around an Ethereum contract.
type Resolver struct {
ResolverCaller // Read-only binding to the contract
ResolverTransactor // Write-only binding to the contract
}
// ResolverCaller is an auto generated read-only Go binding around an Ethereum contract.
type ResolverCaller struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// ResolverTransactor is an auto generated write-only Go binding around an Ethereum contract.
type ResolverTransactor struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// ResolverSession is an auto generated Go binding around an Ethereum contract,
// with pre-set call and transact options.
type ResolverSession struct {
Contract *Resolver // Generic contract binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// ResolverCallerSession is an auto generated read-only Go binding around an Ethereum contract,
// with pre-set call options.
type ResolverCallerSession struct {
Contract *ResolverCaller // Generic contract caller binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
}
// ResolverTransactorSession is an auto generated write-only Go binding around an Ethereum contract,
// with pre-set transact options.
type ResolverTransactorSession struct {
Contract *ResolverTransactor // Generic contract transactor binding to set the session for
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// ResolverRaw is an auto generated low-level Go binding around an Ethereum contract.
type ResolverRaw struct {
Contract *Resolver // Generic contract binding to access the raw methods on
}
// ResolverCallerRaw is an auto generated low-level read-only Go binding around an Ethereum contract.
type ResolverCallerRaw struct {
Contract *ResolverCaller // Generic read-only contract binding to access the raw methods on
}
// ResolverTransactorRaw is an auto generated low-level write-only Go binding around an Ethereum contract.
type ResolverTransactorRaw struct {
Contract *ResolverTransactor // Generic write-only contract binding to access the raw methods on
}
// NewResolver creates a new instance of Resolver, bound to a specific deployed contract.
func NewResolver(address common.Address, backend bind.ContractBackend) (*Resolver, error) {
contract, err := bindResolver(address, backend, backend)
if err != nil {
return nil, err
}
return &Resolver{ResolverCaller: ResolverCaller{contract: contract}, ResolverTransactor: ResolverTransactor{contract: contract}}, nil
}
// NewResolverCaller creates a new read-only instance of Resolver, bound to a specific deployed contract.
func NewResolverCaller(address common.Address, caller bind.ContractCaller) (*ResolverCaller, error) {
contract, err := bindResolver(address, caller, nil)
if err != nil {
return nil, err
}
return &ResolverCaller{contract: contract}, nil
}
// NewResolverTransactor creates a new write-only instance of Resolver, bound to a specific deployed contract.
func NewResolverTransactor(address common.Address, transactor bind.ContractTransactor) (*ResolverTransactor, error) {
contract, err := bindResolver(address, nil, transactor)
if err != nil {
return nil, err
}
return &ResolverTransactor{contract: contract}, nil
}
// bindResolver binds a generic wrapper to an already deployed contract.
func bindResolver(address common.Address, caller bind.ContractCaller, transactor bind.ContractTransactor) (*bind.BoundContract, error) {
parsed, err := abi.JSON(strings.NewReader(ResolverABI))
if err != nil {
return nil, err
}
return bind.NewBoundContract(address, parsed, caller, transactor), nil
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_Resolver *ResolverRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _Resolver.Contract.ResolverCaller.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_Resolver *ResolverRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _Resolver.Contract.ResolverTransactor.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_Resolver *ResolverRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _Resolver.Contract.ResolverTransactor.contract.Transact(opts, method, params...)
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_Resolver *ResolverCallerRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _Resolver.Contract.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_Resolver *ResolverTransactorRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _Resolver.Contract.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_Resolver *ResolverTransactorRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _Resolver.Contract.contract.Transact(opts, method, params...)
}
// Addr is a free data retrieval call binding the contract method 0x3b3b57de.
//
// Solidity: function addr(node bytes32) constant returns(ret address)
func (_Resolver *ResolverCaller) Addr(opts *bind.CallOpts, node [32]byte) (common.Address, error) {
var (
ret0 = new(common.Address)
)
out := ret0
err := _Resolver.contract.Call(opts, out, "addr", node)
return *ret0, err
}
// Addr is a free data retrieval call binding the contract method 0x3b3b57de.
//
// Solidity: function addr(node bytes32) constant returns(ret address)
func (_Resolver *ResolverSession) Addr(node [32]byte) (common.Address, error) {
return _Resolver.Contract.Addr(&_Resolver.CallOpts, node)
}
// Addr is a free data retrieval call binding the contract method 0x3b3b57de.
//
// Solidity: function addr(node bytes32) constant returns(ret address)
func (_Resolver *ResolverCallerSession) Addr(node [32]byte) (common.Address, error) {
return _Resolver.Contract.Addr(&_Resolver.CallOpts, node)
}
// Content is a free data retrieval call binding the contract method 0x2dff6941.
//
// Solidity: function content(node bytes32) constant returns(ret bytes32)
func (_Resolver *ResolverCaller) Content(opts *bind.CallOpts, node [32]byte) ([32]byte, error) {
var (
ret0 = new([32]byte)
)
out := ret0
err := _Resolver.contract.Call(opts, out, "content", node)
return *ret0, err
}
// Content is a free data retrieval call binding the contract method 0x2dff6941.
//
// Solidity: function content(node bytes32) constant returns(ret bytes32)
func (_Resolver *ResolverSession) Content(node [32]byte) ([32]byte, error) {
return _Resolver.Contract.Content(&_Resolver.CallOpts, node)
}
// Content is a free data retrieval call binding the contract method 0x2dff6941.
//
// Solidity: function content(node bytes32) constant returns(ret bytes32)
func (_Resolver *ResolverCallerSession) Content(node [32]byte) ([32]byte, error) {
return _Resolver.Contract.Content(&_Resolver.CallOpts, node)
}
// Has is a paid mutator transaction binding the contract method 0x41b9dc2b.
//
// Solidity: function has(node bytes32, kind bytes32) returns(bool)
func (_Resolver *ResolverTransactor) Has(opts *bind.TransactOpts, node [32]byte, kind [32]byte) (*types.Transaction, error) {
return _Resolver.contract.Transact(opts, "has", node, kind)
}
// Has is a paid mutator transaction binding the contract method 0x41b9dc2b.
//
// Solidity: function has(node bytes32, kind bytes32) returns(bool)
func (_Resolver *ResolverSession) Has(node [32]byte, kind [32]byte) (*types.Transaction, error) {
return _Resolver.Contract.Has(&_Resolver.TransactOpts, node, kind)
}
// Has is a paid mutator transaction binding the contract method 0x41b9dc2b.
//
// Solidity: function has(node bytes32, kind bytes32) returns(bool)
func (_Resolver *ResolverTransactorSession) Has(node [32]byte, kind [32]byte) (*types.Transaction, error) {
return _Resolver.Contract.Has(&_Resolver.TransactOpts, node, kind)
// Solidity: function setTTL(node bytes32, ttl uint64) returns()
func (_ENS *ENSTransactorSession) SetTTL(node [32]byte, ttl uint64) (*types.Transaction, error) {
return _ENS.Contract.SetTTL(&_ENS.TransactOpts, node, ttl)
}

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@ -1,226 +0,0 @@
// Ethereum Name Service contracts by Nick Johnson <nick@ethereum.org>
//
// To the extent possible under law, the person who associated CC0 with
// ENS contracts has waived all copyright and related or neighboring rights
// to ENS.
//
// You should have received a copy of the CC0 legalcode along with this
// work. If not, see <http://creativecommons.org/publicdomain/zero/1.0/>.
/**
* The ENS registry contract.
*/
contract ENS {
struct Record {
address owner;
address resolver;
}
mapping(bytes32=>Record) records;
// Logged when the owner of a node assigns a new owner to a subnode.
event NewOwner(bytes32 indexed node, bytes32 indexed label, address owner);
// Logged when the owner of a node transfers ownership to a new account.
event Transfer(bytes32 indexed node, address owner);
// Logged when the owner of a node changes the resolver for that node.
event NewResolver(bytes32 indexed node, address resolver);
// Permits modifications only by the owner of the specified node.
modifier only_owner(bytes32 node) {
if(records[node].owner != msg.sender) throw;
_
}
/**
* Constructs a new ENS registrar, with the provided address as the owner of the root node.
*/
function ENS(address owner) {
records[0].owner = owner;
}
/**
* Returns the address that owns the specified node.
*/
function owner(bytes32 node) constant returns (address) {
return records[node].owner;
}
/**
* Returns the address of the resolver for the specified node.
*/
function resolver(bytes32 node) constant returns (address) {
return records[node].resolver;
}
/**
* Transfers ownership of a node to a new address. May only be called by the current
* owner of the node.
* @param node The node to transfer ownership of.
* @param owner The address of the new owner.
*/
function setOwner(bytes32 node, address owner) only_owner(node) {
Transfer(node, owner);
records[node].owner = owner;
}
/**
* Transfers ownership of a subnode sha3(node, label) to a new address. May only be
* called by the owner of the parent node.
* @param node The parent node.
* @param label The hash of the label specifying the subnode.
* @param owner The address of the new owner.
*/
function setSubnodeOwner(bytes32 node, bytes32 label, address owner) only_owner(node) {
var subnode = sha3(node, label);
NewOwner(node, label, owner);
records[subnode].owner = owner;
}
/**
* Sets the resolver address for the specified node.
* @param node The node to update.
* @param resolver The address of the resolver.
*/
function setResolver(bytes32 node, address resolver) only_owner(node) {
NewResolver(node, resolver);
records[node].resolver = resolver;
}
}
/**
* A registrar that allocates subdomains to the first person to claim them. It also deploys
* a simple resolver contract and sets that as the default resolver on new names for
* convenience.
*/
contract FIFSRegistrar {
ENS ens;
PublicResolver defaultResolver;
bytes32 rootNode;
/**
* Constructor.
* @param ensAddr The address of the ENS registry.
* @param node The node that this registrar administers.
*/
function FIFSRegistrar(address ensAddr, bytes32 node) {
ens = ENS(ensAddr);
defaultResolver = new PublicResolver(ensAddr);
rootNode = node;
}
/**
* Register a name, or change the owner of an existing registration.
* @param subnode The hash of the label to register.
* @param owner The address of the new owner.
*/
function register(bytes32 subnode, address owner) {
var node = sha3(rootNode, subnode);
var currentOwner = ens.owner(node);
if(currentOwner != 0 && currentOwner != msg.sender)
throw;
// Temporarily set ourselves as the owner
ens.setSubnodeOwner(rootNode, subnode, this);
// Set up the default resolver
ens.setResolver(node, defaultResolver);
// Set the owner to the real owner
ens.setOwner(node, owner);
}
}
contract Resolver {
event AddrChanged(bytes32 indexed node, address a);
event ContentChanged(bytes32 indexed node, bytes32 hash);
function has(bytes32 node, bytes32 kind) returns (bool);
function addr(bytes32 node) constant returns (address ret);
function content(bytes32 node) constant returns (bytes32 ret);
}
/**
* A simple resolver anyone can use; only allows the owner of a node to set its
* address.
*/
contract PublicResolver is Resolver {
ENS ens;
mapping(bytes32=>address) addresses;
mapping(bytes32=>bytes32) contents;
modifier only_owner(bytes32 node) {
if(ens.owner(node) != msg.sender) throw;
_
}
/**
* Constructor.
* @param ensAddr The ENS registrar contract.
*/
function PublicResolver(address ensAddr) {
ens = ENS(ensAddr);
}
/**
* Fallback function.
*/
function() {
throw;
}
/**
* Returns true if the specified node has the specified record type.
* @param node The ENS node to query.
* @param kind The record type name, as specified in EIP137.
* @return True if this resolver has a record of the provided type on the
* provided node.
*/
function has(bytes32 node, bytes32 kind) returns (bool) {
return (kind == "addr" && addresses[node] != 0) ||
(kind == "content" && contents[node] != 0);
}
/**
* Returns the address associated with an ENS node.
* @param node The ENS node to query.
* @return The associated address.
*/
function addr(bytes32 node) constant returns (address ret) {
ret = addresses[node];
if(ret == 0)
throw;
}
/**
* Returns the content hash associated with an ENS node.
* @param node The ENS node to query.
* @return The associated content hash.
*/
function content(bytes32 node) constant returns (bytes32 ret) {
ret = contents[node];
if(ret == 0)
throw;
}
/**
* Sets the address associated with an ENS node.
* May only be called by the owner of that node in the ENS registry.
* @param node The node to update.
* @param addr The address to set.
*/
function setAddr(bytes32 node, address addr) only_owner(node) {
addresses[node] = addr;
AddrChanged(node, addr);
}
/**
* Sets the content hash associated with an ENS node.
* May only be called by the owner of that node in the ENS registry.
* @param node The node to update.
* @param hash The content hash to set.
*/
function setContent(bytes32 node, bytes32 hash) only_owner(node) {
contents[node] = hash;
ContentChanged(node, hash);
}
}

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@ -0,0 +1,180 @@
// Code generated - DO NOT EDIT.
// This file is a generated binding and any manual changes will be lost.
package contract
import (
"strings"
"github.com/EthereumCommonwealth/go-callisto/accounts/abi"
"github.com/EthereumCommonwealth/go-callisto/accounts/abi/bind"
"github.com/EthereumCommonwealth/go-callisto/common"
"github.com/EthereumCommonwealth/go-callisto/core/types"
)
// FIFSRegistrarABI is the input ABI used to generate the binding from.
const FIFSRegistrarABI = "[{\"constant\":false,\"inputs\":[{\"name\":\"subnode\",\"type\":\"bytes32\"},{\"name\":\"owner\",\"type\":\"address\"}],\"name\":\"register\",\"outputs\":[],\"payable\":false,\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"name\":\"ensAddr\",\"type\":\"address\"},{\"name\":\"node\",\"type\":\"bytes32\"}],\"payable\":false,\"stateMutability\":\"nonpayable\",\"type\":\"constructor\"}]"
// FIFSRegistrarBin is the compiled bytecode used for deploying new contracts.
const FIFSRegistrarBin = `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`
// DeployFIFSRegistrar deploys a new Ethereum contract, binding an instance of FIFSRegistrar to it.
func DeployFIFSRegistrar(auth *bind.TransactOpts, backend bind.ContractBackend, ensAddr common.Address, node [32]byte) (common.Address, *types.Transaction, *FIFSRegistrar, error) {
parsed, err := abi.JSON(strings.NewReader(FIFSRegistrarABI))
if err != nil {
return common.Address{}, nil, nil, err
}
address, tx, contract, err := bind.DeployContract(auth, parsed, common.FromHex(FIFSRegistrarBin), backend, ensAddr, node)
if err != nil {
return common.Address{}, nil, nil, err
}
return address, tx, &FIFSRegistrar{FIFSRegistrarCaller: FIFSRegistrarCaller{contract: contract}, FIFSRegistrarTransactor: FIFSRegistrarTransactor{contract: contract}}, nil
}
// FIFSRegistrar is an auto generated Go binding around an Ethereum contract.
type FIFSRegistrar struct {
FIFSRegistrarCaller // Read-only binding to the contract
FIFSRegistrarTransactor // Write-only binding to the contract
}
// FIFSRegistrarCaller is an auto generated read-only Go binding around an Ethereum contract.
type FIFSRegistrarCaller struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// FIFSRegistrarTransactor is an auto generated write-only Go binding around an Ethereum contract.
type FIFSRegistrarTransactor struct {
contract *bind.BoundContract // Generic contract wrapper for the low level calls
}
// FIFSRegistrarSession is an auto generated Go binding around an Ethereum contract,
// with pre-set call and transact options.
type FIFSRegistrarSession struct {
Contract *FIFSRegistrar // Generic contract binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// FIFSRegistrarCallerSession is an auto generated read-only Go binding around an Ethereum contract,
// with pre-set call options.
type FIFSRegistrarCallerSession struct {
Contract *FIFSRegistrarCaller // Generic contract caller binding to set the session for
CallOpts bind.CallOpts // Call options to use throughout this session
}
// FIFSRegistrarTransactorSession is an auto generated write-only Go binding around an Ethereum contract,
// with pre-set transact options.
type FIFSRegistrarTransactorSession struct {
Contract *FIFSRegistrarTransactor // Generic contract transactor binding to set the session for
TransactOpts bind.TransactOpts // Transaction auth options to use throughout this session
}
// FIFSRegistrarRaw is an auto generated low-level Go binding around an Ethereum contract.
type FIFSRegistrarRaw struct {
Contract *FIFSRegistrar // Generic contract binding to access the raw methods on
}
// FIFSRegistrarCallerRaw is an auto generated low-level read-only Go binding around an Ethereum contract.
type FIFSRegistrarCallerRaw struct {
Contract *FIFSRegistrarCaller // Generic read-only contract binding to access the raw methods on
}
// FIFSRegistrarTransactorRaw is an auto generated low-level write-only Go binding around an Ethereum contract.
type FIFSRegistrarTransactorRaw struct {
Contract *FIFSRegistrarTransactor // Generic write-only contract binding to access the raw methods on
}
// NewFIFSRegistrar creates a new instance of FIFSRegistrar, bound to a specific deployed contract.
func NewFIFSRegistrar(address common.Address, backend bind.ContractBackend) (*FIFSRegistrar, error) {
contract, err := bindFIFSRegistrar(address, backend, backend)
if err != nil {
return nil, err
}
return &FIFSRegistrar{FIFSRegistrarCaller: FIFSRegistrarCaller{contract: contract}, FIFSRegistrarTransactor: FIFSRegistrarTransactor{contract: contract}}, nil
}
// NewFIFSRegistrarCaller creates a new read-only instance of FIFSRegistrar, bound to a specific deployed contract.
func NewFIFSRegistrarCaller(address common.Address, caller bind.ContractCaller) (*FIFSRegistrarCaller, error) {
contract, err := bindFIFSRegistrar(address, caller, nil)
if err != nil {
return nil, err
}
return &FIFSRegistrarCaller{contract: contract}, nil
}
// NewFIFSRegistrarTransactor creates a new write-only instance of FIFSRegistrar, bound to a specific deployed contract.
func NewFIFSRegistrarTransactor(address common.Address, transactor bind.ContractTransactor) (*FIFSRegistrarTransactor, error) {
contract, err := bindFIFSRegistrar(address, nil, transactor)
if err != nil {
return nil, err
}
return &FIFSRegistrarTransactor{contract: contract}, nil
}
// bindFIFSRegistrar binds a generic wrapper to an already deployed contract.
func bindFIFSRegistrar(address common.Address, caller bind.ContractCaller, transactor bind.ContractTransactor) (*bind.BoundContract, error) {
parsed, err := abi.JSON(strings.NewReader(FIFSRegistrarABI))
if err != nil {
return nil, err
}
return bind.NewBoundContract(address, parsed, caller, transactor), nil
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_FIFSRegistrar *FIFSRegistrarRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _FIFSRegistrar.Contract.FIFSRegistrarCaller.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_FIFSRegistrar *FIFSRegistrarRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.FIFSRegistrarTransactor.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_FIFSRegistrar *FIFSRegistrarRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.FIFSRegistrarTransactor.contract.Transact(opts, method, params...)
}
// Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named
// returns.
func (_FIFSRegistrar *FIFSRegistrarCallerRaw) Call(opts *bind.CallOpts, result interface{}, method string, params ...interface{}) error {
return _FIFSRegistrar.Contract.contract.Call(opts, result, method, params...)
}
// Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available.
func (_FIFSRegistrar *FIFSRegistrarTransactorRaw) Transfer(opts *bind.TransactOpts) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.contract.Transfer(opts)
}
// Transact invokes the (paid) contract method with params as input values.
func (_FIFSRegistrar *FIFSRegistrarTransactorRaw) Transact(opts *bind.TransactOpts, method string, params ...interface{}) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.contract.Transact(opts, method, params...)
}
// Register is a paid mutator transaction binding the contract method 0xd22057a9.
//
// Solidity: function register(subnode bytes32, owner address) returns()
func (_FIFSRegistrar *FIFSRegistrarTransactor) Register(opts *bind.TransactOpts, subnode [32]byte, owner common.Address) (*types.Transaction, error) {
return _FIFSRegistrar.contract.Transact(opts, "register", subnode, owner)
}
// Register is a paid mutator transaction binding the contract method 0xd22057a9.
//
// Solidity: function register(subnode bytes32, owner address) returns()
func (_FIFSRegistrar *FIFSRegistrarSession) Register(subnode [32]byte, owner common.Address) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.Register(&_FIFSRegistrar.TransactOpts, subnode, owner)
}
// Register is a paid mutator transaction binding the contract method 0xd22057a9.
//
// Solidity: function register(subnode bytes32, owner address) returns()
func (_FIFSRegistrar *FIFSRegistrarTransactorSession) Register(subnode [32]byte, owner common.Address) (*types.Transaction, error) {
return _FIFSRegistrar.Contract.Register(&_FIFSRegistrar.TransactOpts, subnode, owner)
}

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@ -16,7 +16,9 @@
package ens
//go:generate abigen --sol contract/ens.sol --pkg contract --out contract/ens.go
//go:generate abigen --sol contract/ENS.sol --exc contract/AbstractENS.sol:AbstractENS --pkg contract --out contract/ens.go
//go:generate abigen --sol contract/FIFSRegistrar.sol --exc contract/AbstractENS.sol:AbstractENS --pkg contract --out contract/fifsregistrar.go
//go:generate abigen --sol contract/PublicResolver.sol --exc contract/AbstractENS.sol:AbstractENS --pkg contract --out contract/publicresolver.go
import (
"strings"
@ -57,31 +59,29 @@ func NewENS(transactOpts *bind.TransactOpts, contractAddr common.Address, contra
}
// DeployENS deploys an instance of the ENS nameservice, with a 'first-in, first-served' root registrar.
func DeployENS(transactOpts *bind.TransactOpts, contractBackend bind.ContractBackend) (*ENS, error) {
// Deploy the ENS registry
ensAddr, _, _, err := contract.DeployENS(transactOpts, contractBackend, transactOpts.From)
func DeployENS(transactOpts *bind.TransactOpts, contractBackend bind.ContractBackend) (common.Address, *ENS, error) {
// Deploy the ENS registry.
ensAddr, _, _, err := contract.DeployENS(transactOpts, contractBackend)
if err != nil {
return nil, err
return ensAddr, nil, err
}
ens, err := NewENS(transactOpts, ensAddr, contractBackend)
if err != nil {
return nil, err
return ensAddr, nil, err
}
// Deploy the registrar
// Deploy the registrar.
regAddr, _, _, err := contract.DeployFIFSRegistrar(transactOpts, contractBackend, ensAddr, [32]byte{})
if err != nil {
return nil, err
return ensAddr, nil, err
}
// Set the registrar as owner of the ENS root.
if _, err = ens.SetOwner([32]byte{}, regAddr); err != nil {
return ensAddr, nil, err
}
// Set the registrar as owner of the ENS root
_, err = ens.SetOwner([32]byte{}, regAddr)
if err != nil {
return nil, err
}
return ens, nil
return ensAddr, ens, nil
}
func ensParentNode(name string) (common.Hash, common.Hash) {
@ -155,15 +155,11 @@ func (self *ENS) Resolve(name string) (common.Hash, error) {
// Only works if the registrar for the parent domain implements the FIFS registrar protocol.
func (self *ENS) Register(name string) (*types.Transaction, error) {
parentNode, label := ensParentNode(name)
registrar, err := self.getRegistrar(parentNode)
if err != nil {
return nil, err
}
opts := self.TransactOpts
opts.GasLimit = 200000
return registrar.Contract.Register(&opts, label, self.TransactOpts.From)
return registrar.Contract.Register(&self.TransactOpts, label, self.TransactOpts.From)
}
// SetContentHash sets the content hash associated with a name. Only works if the caller

View file

@ -22,6 +22,7 @@ import (
"github.com/EthereumCommonwealth/go-callisto/accounts/abi/bind"
"github.com/EthereumCommonwealth/go-callisto/accounts/abi/bind/backends"
"github.com/EthereumCommonwealth/go-callisto/contracts/ens/contract"
"github.com/EthereumCommonwealth/go-callisto/core"
"github.com/EthereumCommonwealth/go-callisto/crypto"
)
@ -36,27 +37,36 @@ var (
func TestENS(t *testing.T) {
contractBackend := backends.NewSimulatedBackend(core.GenesisAlloc{addr: {Balance: big.NewInt(1000000000)}})
transactOpts := bind.NewKeyedTransactor(key)
// Workaround for bug estimating gas in the call to Register
transactOpts.GasLimit = 1000000
ens, err := DeployENS(transactOpts, contractBackend)
ensAddr, ens, err := DeployENS(transactOpts, contractBackend)
if err != nil {
t.Fatalf("expected no error, got %v", err)
t.Fatalf("can't deploy root registry: %v", err)
}
contractBackend.Commit()
_, err = ens.Register(name)
if err != nil {
t.Fatalf("expected no error, got %v", err)
// Set ourself as the owner of the name.
if _, err := ens.Register(name); err != nil {
t.Fatalf("can't register: %v", err)
}
contractBackend.Commit()
_, err = ens.SetContentHash(name, hash)
// Deploy a resolver and make it responsible for the name.
resolverAddr, _, _, err := contract.DeployPublicResolver(transactOpts, contractBackend, ensAddr)
if err != nil {
t.Fatalf("expected no error, got %v", err)
t.Fatalf("can't deploy resolver: %v", err)
}
if _, err := ens.SetResolver(ensNode(name), resolverAddr); err != nil {
t.Fatalf("can't set resolver: %v", err)
}
contractBackend.Commit()
// Set the content hash for the name.
if _, err = ens.SetContentHash(name, hash); err != nil {
t.Fatalf("can't set content hash: %v", err)
}
contractBackend.Commit()
// Try to resolve the name.
vhost, err := ens.Resolve(name)
if err != nil {
t.Fatalf("expected no error, got %v", err)

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@ -14,6 +14,8 @@
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
pragma solidity ^0.4.18;
// ReleaseOracle is an Ethereum contract to store the current and previous
// versions of the go-ethereum implementation. Its goal is to allow Geth to
// check for new releases automatically without the need to consult a central
@ -58,7 +60,7 @@ contract ReleaseOracle {
// isSigner is a modifier to authorize contract transactions.
modifier isSigner() {
if (authorised[msg.sender]) {
_
_;
}
}

View file

@ -44,6 +44,11 @@ func (gp *GasPool) SubGas(amount uint64) error {
return nil
}
// Gas returns the amount of gas remaining in the pool.
func (gp *GasPool) Gas() uint64 {
return uint64(*gp)
}
func (gp *GasPool) String() string {
return fmt.Sprintf("%d", *gp)
}

View file

@ -56,7 +56,7 @@ func (g *Genesis) UnmarshalJSON(input []byte) error {
Config *params.ChainConfig `json:"config"`
Nonce *math.HexOrDecimal64 `json:"nonce"`
Timestamp *math.HexOrDecimal64 `json:"timestamp"`
ExtraData hexutil.Bytes `json:"extraData"`
ExtraData *hexutil.Bytes `json:"extraData"`
GasLimit *math.HexOrDecimal64 `json:"gasLimit" gencodec:"required"`
Difficulty *math.HexOrDecimal256 `json:"difficulty" gencodec:"required"`
Mixhash *common.Hash `json:"mixHash"`
@ -80,7 +80,7 @@ func (g *Genesis) UnmarshalJSON(input []byte) error {
g.Timestamp = uint64(*dec.Timestamp)
}
if dec.ExtraData != nil {
g.ExtraData = dec.ExtraData
g.ExtraData = *dec.ExtraData
}
if dec.GasLimit == nil {
return errors.New("missing required field 'gasLimit' for Genesis")

View file

@ -38,18 +38,18 @@ func (g GenesisAccount) MarshalJSON() ([]byte, error) {
func (g *GenesisAccount) UnmarshalJSON(input []byte) error {
type GenesisAccount struct {
Code hexutil.Bytes `json:"code,omitempty"`
Code *hexutil.Bytes `json:"code,omitempty"`
Storage map[storageJSON]storageJSON `json:"storage,omitempty"`
Balance *math.HexOrDecimal256 `json:"balance" gencodec:"required"`
Nonce *math.HexOrDecimal64 `json:"nonce,omitempty"`
PrivateKey hexutil.Bytes `json:"secretKey,omitempty"`
PrivateKey *hexutil.Bytes `json:"secretKey,omitempty"`
}
var dec GenesisAccount
if err := json.Unmarshal(input, &dec); err != nil {
return err
}
if dec.Code != nil {
g.Code = dec.Code
g.Code = *dec.Code
}
if dec.Storage != nil {
g.Storage = make(map[common.Hash]common.Hash, len(dec.Storage))
@ -65,7 +65,7 @@ func (g *GenesisAccount) UnmarshalJSON(input []byte) error {
g.Nonce = uint64(*dec.Nonce)
}
if dec.PrivateKey != nil {
g.PrivateKey = dec.PrivateKey
g.PrivateKey = *dec.PrivateKey
}
return nil
}

View file

@ -89,8 +89,8 @@ type Header struct {
type headerMarshaling struct {
Difficulty *hexutil.Big
Number *hexutil.Big
GasLimit *hexutil.Uint64
GasUsed *hexutil.Uint64
GasLimit hexutil.Uint64
GasUsed hexutil.Uint64
Time *hexutil.Big
Extra hexutil.Bytes
Hash common.Hash `json:"hash"` // adds call to Hash() in MarshalJSON

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@ -11,6 +11,8 @@ import (
"github.com/EthereumCommonwealth/go-callisto/common/hexutil"
)
var _ = (*headerMarshaling)(nil)
func (h Header) MarshalJSON() ([]byte, error) {
type Header struct {
ParentHash common.Hash `json:"parentHash" gencodec:"required"`
@ -64,7 +66,7 @@ func (h *Header) UnmarshalJSON(input []byte) error {
GasLimit *hexutil.Uint64 `json:"gasLimit" gencodec:"required"`
GasUsed *hexutil.Uint64 `json:"gasUsed" gencodec:"required"`
Time *hexutil.Big `json:"timestamp" gencodec:"required"`
Extra hexutil.Bytes `json:"extraData" gencodec:"required"`
Extra *hexutil.Bytes `json:"extraData" gencodec:"required"`
MixDigest *common.Hash `json:"mixHash" gencodec:"required"`
Nonce *BlockNonce `json:"nonce" gencodec:"required"`
}
@ -111,11 +113,11 @@ func (h *Header) UnmarshalJSON(input []byte) error {
if dec.GasLimit == nil {
return errors.New("missing required field 'gasLimit' for Header")
}
h.GasLimit = (uint64)(*dec.GasLimit)
h.GasLimit = uint64(*dec.GasLimit)
if dec.GasUsed == nil {
return errors.New("missing required field 'gasUsed' for Header")
}
h.GasUsed = (uint64)(*dec.GasUsed)
h.GasUsed = uint64(*dec.GasUsed)
if dec.Time == nil {
return errors.New("missing required field 'timestamp' for Header")
}
@ -123,7 +125,7 @@ func (h *Header) UnmarshalJSON(input []byte) error {
if dec.Extra == nil {
return errors.New("missing required field 'extraData' for Header")
}
h.Extra = dec.Extra
h.Extra = *dec.Extra
if dec.MixDigest == nil {
return errors.New("missing required field 'mixHash' for Header")
}

View file

@ -10,6 +10,8 @@ import (
"github.com/EthereumCommonwealth/go-callisto/common/hexutil"
)
var _ = (*logMarshaling)(nil)
func (l Log) MarshalJSON() ([]byte, error) {
type Log struct {
Address common.Address `json:"address" gencodec:"required"`
@ -39,7 +41,7 @@ func (l *Log) UnmarshalJSON(input []byte) error {
type Log struct {
Address *common.Address `json:"address" gencodec:"required"`
Topics []common.Hash `json:"topics" gencodec:"required"`
Data hexutil.Bytes `json:"data" gencodec:"required"`
Data *hexutil.Bytes `json:"data" gencodec:"required"`
BlockNumber *hexutil.Uint64 `json:"blockNumber"`
TxHash *common.Hash `json:"transactionHash" gencodec:"required"`
TxIndex *hexutil.Uint `json:"transactionIndex" gencodec:"required"`
@ -62,7 +64,7 @@ func (l *Log) UnmarshalJSON(input []byte) error {
if dec.Data == nil {
return errors.New("missing required field 'data' for Log")
}
l.Data = dec.Data
l.Data = *dec.Data
if dec.BlockNumber != nil {
l.BlockNumber = uint64(*dec.BlockNumber)
}

View file

@ -10,6 +10,8 @@ import (
"github.com/EthereumCommonwealth/go-callisto/common/hexutil"
)
var _ = (*receiptMarshaling)(nil)
func (r Receipt) MarshalJSON() ([]byte, error) {
type Receipt struct {
PostState hexutil.Bytes `json:"root"`
@ -35,7 +37,7 @@ func (r Receipt) MarshalJSON() ([]byte, error) {
func (r *Receipt) UnmarshalJSON(input []byte) error {
type Receipt struct {
PostState hexutil.Bytes `json:"root"`
PostState *hexutil.Bytes `json:"root"`
Status *hexutil.Uint `json:"status"`
CumulativeGasUsed *hexutil.Uint64 `json:"cumulativeGasUsed" gencodec:"required"`
Bloom *Bloom `json:"logsBloom" gencodec:"required"`
@ -49,7 +51,7 @@ func (r *Receipt) UnmarshalJSON(input []byte) error {
return err
}
if dec.PostState != nil {
r.PostState = dec.PostState
r.PostState = *dec.PostState
}
if dec.Status != nil {
r.Status = uint(*dec.Status)

View file

@ -11,6 +11,8 @@ import (
"github.com/EthereumCommonwealth/go-callisto/common/hexutil"
)
var _ = (*txdataMarshaling)(nil)
func (t txdata) MarshalJSON() ([]byte, error) {
type txdata struct {
AccountNonce hexutil.Uint64 `json:"nonce" gencodec:"required"`
@ -45,7 +47,7 @@ func (t *txdata) UnmarshalJSON(input []byte) error {
GasLimit *hexutil.Uint64 `json:"gas" gencodec:"required"`
Recipient *common.Address `json:"to" rlp:"nil"`
Amount *hexutil.Big `json:"value" gencodec:"required"`
Payload hexutil.Bytes `json:"input" gencodec:"required"`
Payload *hexutil.Bytes `json:"input" gencodec:"required"`
V *hexutil.Big `json:"v" gencodec:"required"`
R *hexutil.Big `json:"r" gencodec:"required"`
S *hexutil.Big `json:"s" gencodec:"required"`
@ -77,7 +79,7 @@ func (t *txdata) UnmarshalJSON(input []byte) error {
if dec.Payload == nil {
return errors.New("missing required field 'input' for txdata")
}
t.Payload = dec.Payload
t.Payload = *dec.Payload
if dec.V == nil {
return errors.New("missing required field 'v' for txdata")
}

View file

@ -391,7 +391,7 @@ func (evm *EVM) Create(caller ContractRef, code []byte, gas uint64, value *big.I
return ret, contractAddr, contract.Gas, err
}
// ChainConfig returns the evmironment's chain configuration
// ChainConfig returns the environment's chain configuration
func (evm *EVM) ChainConfig() *params.ChainConfig { return evm.chainConfig }
// Interpreter returns the EVM interpreter

View file

@ -11,6 +11,8 @@ import (
"github.com/EthereumCommonwealth/go-callisto/common/math"
)
var _ = (*structLogMarshaling)(nil)
func (s StructLog) MarshalJSON() ([]byte, error) {
type StructLog struct {
Pc uint64 `json:"pc"`
@ -22,8 +24,9 @@ func (s StructLog) MarshalJSON() ([]byte, error) {
Stack []*math.HexOrDecimal256 `json:"stack"`
Storage map[common.Hash]common.Hash `json:"-"`
Depth int `json:"depth"`
Err error `json:"error"`
Err error `json:"-"`
OpName string `json:"opName"`
ErrorString string `json:"error"`
}
var enc StructLog
enc.Pc = s.Pc
@ -42,6 +45,7 @@ func (s StructLog) MarshalJSON() ([]byte, error) {
enc.Depth = s.Depth
enc.Err = s.Err
enc.OpName = s.OpName()
enc.ErrorString = s.ErrorString()
return json.Marshal(&enc)
}
@ -51,12 +55,12 @@ func (s *StructLog) UnmarshalJSON(input []byte) error {
Op *OpCode `json:"op"`
Gas *math.HexOrDecimal64 `json:"gas"`
GasCost *math.HexOrDecimal64 `json:"gasCost"`
Memory hexutil.Bytes `json:"memory"`
Memory *hexutil.Bytes `json:"memory"`
MemorySize *int `json:"memSize"`
Stack []*math.HexOrDecimal256 `json:"stack"`
Storage map[common.Hash]common.Hash `json:"-"`
Depth *int `json:"depth"`
Err *error `json:"error"`
Err error `json:"-"`
}
var dec StructLog
if err := json.Unmarshal(input, &dec); err != nil {
@ -75,7 +79,7 @@ func (s *StructLog) UnmarshalJSON(input []byte) error {
s.GasCost = uint64(*dec.GasCost)
}
if dec.Memory != nil {
s.Memory = dec.Memory
s.Memory = *dec.Memory
}
if dec.MemorySize != nil {
s.MemorySize = *dec.MemorySize
@ -93,7 +97,7 @@ func (s *StructLog) UnmarshalJSON(input []byte) error {
s.Depth = *dec.Depth
}
if dec.Err != nil {
s.Err = *dec.Err
s.Err = dec.Err
}
return nil
}

View file

@ -62,7 +62,7 @@ type StructLog struct {
Stack []*big.Int `json:"stack"`
Storage map[common.Hash]common.Hash `json:"-"`
Depth int `json:"depth"`
Err error `json:"error"`
Err error `json:"-"`
}
// overrides for gencodec
@ -71,13 +71,21 @@ type structLogMarshaling struct {
Gas math.HexOrDecimal64
GasCost math.HexOrDecimal64
Memory hexutil.Bytes
OpName string `json:"opName"`
OpName string `json:"opName"` // adds call to OpName() in MarshalJSON
ErrorString string `json:"error"` // adds call to ErrorString() in MarshalJSON
}
func (s *StructLog) OpName() string {
return s.Op.String()
}
func (s *StructLog) ErrorString() string {
if s.Err != nil {
return s.Err.Error()
}
return ""
}
// Tracer is used to collect execution traces from an EVM transaction
// execution. CaptureState is called for each step of the VM with the
// current VM state.

View file

@ -20,7 +20,7 @@ Normally the dashboard assets are bundled into Geth via `go-bindata` to avoid ex
```
$ (cd dashboard/assets && ./node_modules/.bin/webpack --watch)
$ geth --dashboard --dashboard.assets=dashboard/assets/public --vmodule=dashboard=5
$ geth --dashboard --dashboard.assets=dashboard/assets --vmodule=dashboard=5
```
To bundle up the final UI into Geth, run `go generate`:

File diff suppressed because one or more lines are too long

View file

@ -62,32 +62,4 @@ export type MenuProp = {|...ProvidedMenuProp, id: string|};
// This way the mistyping is prevented.
export const MENU: Map<string, {...MenuProp}> = new Map(menuSkeletons.map(({id, menu}) => ([id, {id, ...menu}])));
type ProvidedSampleProp = {|limit: number|};
const sampleSkeletons: Array<{|id: string, sample: ProvidedSampleProp|}> = [
{
id: 'memory',
sample: {
limit: 200,
},
}, {
id: 'traffic',
sample: {
limit: 200,
},
}, {
id: 'logs',
sample: {
limit: 200,
},
},
];
export type SampleProp = {|...ProvidedSampleProp, id: string|};
export const SAMPLE: Map<string, {...SampleProp}> = new Map(sampleSkeletons.map(({id, sample}) => ([id, {id, ...sample}])));
export const DURATION = 200;
export const LENS: Map<string, string> = new Map([
'content',
...menuSkeletons.map(({id}) => id),
...sampleSkeletons.map(({id}) => id),
].map(lens => [lens, lens]));

View file

@ -19,37 +19,99 @@
import React, {Component} from 'react';
import withStyles from 'material-ui/styles/withStyles';
import {lensPath, view, set} from 'ramda';
import Header from './Header';
import Body from './Body';
import {MENU, SAMPLE} from './Common';
import type {Message, HomeMessage, LogsMessage, Chart} from '../types/message';
import Footer from './Footer';
import {MENU} from './Common';
import type {Content} from '../types/content';
// appender appends an array (A) to the end of another array (B) in the state.
// lens is the path of B in the state, samples is A, and limit is the maximum size of the changed array.
// deepUpdate updates an object corresponding to the given update data, which has
// the shape of the same structure as the original object. updater also has the same
// structure, except that it contains functions where the original data needs to be
// updated. These functions are used to handle the update.
//
// appender retrieves a function, which overrides the state's value at lens, and returns with the overridden state.
const appender = (lens, samples, limit) => (state) => {
const newSamples = [
...view(lens, state), // retrieves a specific value of the state at the given path (lens).
...samples,
];
// set is a function of ramda.js, which needs the path, the new value, the original state, and retrieves
// the altered state.
return set(
lens,
newSamples.slice(newSamples.length > limit ? newSamples.length - limit : 0),
state
);
// Since the messages have the same shape as the state content, this approach allows
// the generalization of the message handling. The only necessary thing is to set a
// handler function for every path of the state in order to maximize the flexibility
// of the update.
const deepUpdate = (prev: Object, update: Object, updater: Object) => {
if (typeof update === 'undefined') {
// TODO (kurkomisi): originally this was deep copy, investigate it.
return prev;
}
if (typeof updater === 'function') {
return updater(prev, update);
}
const updated = {};
Object.keys(prev).forEach((key) => {
updated[key] = deepUpdate(prev[key], update[key], updater[key]);
});
return updated;
};
// Lenses for specific data fields in the state, used for a clearer deep update.
// NOTE: This solution will be changed very likely.
const memoryLens = lensPath(['content', 'home', 'memory']);
const trafficLens = lensPath(['content', 'home', 'traffic']);
const logLens = lensPath(['content', 'logs', 'log']);
// styles retrieves the styles for the Dashboard component.
// shouldUpdate returns the structure of a message. It is used to prevent unnecessary render
// method triggerings. In the affected component's shouldComponentUpdate method it can be checked
// whether the involved data was changed or not by checking the message structure.
//
// We could return the message itself too, but it's safer not to give access to it.
const shouldUpdate = (msg: Object, updater: Object) => {
const su = {};
Object.keys(msg).forEach((key) => {
su[key] = typeof updater[key] !== 'function' ? shouldUpdate(msg[key], updater[key]) : true;
});
return su;
};
// appender is a state update generalization function, which appends the update data
// to the existing data. limit defines the maximum allowed size of the created array.
const appender = <T>(limit: number) => (prev: Array<T>, update: Array<T>) => [...prev, ...update].slice(-limit);
// replacer is a state update generalization function, which replaces the original data.
const replacer = <T>(prev: T, update: T) => update;
// defaultContent is the initial value of the state content.
const defaultContent: Content = {
general: {
version: null,
commit: null,
},
home: {
memory: [],
traffic: [],
},
chain: {},
txpool: {},
network: {},
system: {},
logs: {
log: [],
},
};
// updaters contains the state update generalization functions for each path of the state.
// TODO (kurkomisi): Define a tricky type which embraces the content and the handlers.
const updaters = {
general: {
version: replacer,
commit: replacer,
},
home: {
memory: appender(200),
traffic: appender(200),
},
chain: null,
txpool: null,
network: null,
system: null,
logs: {
log: appender(200),
},
};
// styles returns the styles for the Dashboard component.
const styles = theme => ({
dashboard: {
display: 'flex',
@ -61,15 +123,18 @@ const styles = theme => ({
overflow: 'hidden',
},
});
export type Props = {
classes: Object,
};
type State = {
active: string, // active menu
sideBar: boolean, // true if the sidebar is opened
content: $Shape<Content>, // the visualized data
shouldUpdate: Set<string> // labels for the components, which need to rerender based on the incoming message
content: Content, // the visualized data
shouldUpdate: Object // labels for the components, which need to rerender based on the incoming message
};
// Dashboard is the main component, which renders the whole page, makes connection with the server and
// listens for messages. When there is an incoming message, updates the page's content correspondingly.
class Dashboard extends Component<Props, State> {
@ -78,8 +143,8 @@ class Dashboard extends Component<Props, State> {
this.state = {
active: MENU.get('home').id,
sideBar: true,
content: {home: {memory: [], traffic: []}, logs: {log: []}},
shouldUpdate: new Set(),
content: defaultContent,
shouldUpdate: {},
};
}
@ -91,13 +156,14 @@ class Dashboard extends Component<Props, State> {
// reconnect establishes a websocket connection with the server, listens for incoming messages
// and tries to reconnect on connection loss.
reconnect = () => {
this.setState({
content: {home: {memory: [], traffic: []}, logs: {log: []}},
});
const server = new WebSocket(`${((window.location.protocol === 'https:') ? 'wss://' : 'ws://') + window.location.host}/api`);
server.onopen = () => {
this.setState({content: defaultContent, shouldUpdate: {}});
};
server.onmessage = (event) => {
const msg: Message = JSON.parse(event.data);
const msg: $Shape<Content> = JSON.parse(event.data);
if (!msg) {
console.error(`Incoming message is ${msg}`);
return;
}
this.update(msg);
@ -107,56 +173,12 @@ class Dashboard extends Component<Props, State> {
};
};
// samples retrieves the raw data of a chart field from the incoming message.
samples = (chart: Chart) => {
let s = [];
if (chart.history) {
s = chart.history.map(({value}) => (value || 0)); // traffic comes without value at the beginning
}
if (chart.new) {
s = [...s, chart.new.value || 0];
}
return s;
};
// handleHome changes the home-menu related part of the state.
handleHome = (home: HomeMessage) => {
this.setState((prevState) => {
let newState = prevState;
newState.shouldUpdate = new Set();
if (home.memory) {
newState = appender(memoryLens, this.samples(home.memory), SAMPLE.get('memory').limit)(newState);
newState.shouldUpdate.add('memory');
}
if (home.traffic) {
newState = appender(trafficLens, this.samples(home.traffic), SAMPLE.get('traffic').limit)(newState);
newState.shouldUpdate.add('traffic');
}
return newState;
});
};
// handleLogs changes the logs-menu related part of the state.
handleLogs = (logs: LogsMessage) => {
this.setState((prevState) => {
let newState = prevState;
newState.shouldUpdate = new Set();
if (logs.log) {
newState = appender(logLens, [logs.log], SAMPLE.get('logs').limit)(newState);
newState.shouldUpdate.add('logs');
}
return newState;
});
};
// update analyzes the incoming message, and updates the charts' content correspondingly.
update = (msg: Message) => {
if (msg.home) {
this.handleHome(msg.home);
}
if (msg.logs) {
this.handleLogs(msg.logs);
}
// update updates the content corresponding to the incoming message.
update = (msg: $Shape<Content>) => {
this.setState(prevState => ({
content: deepUpdate(prevState.content, msg, updaters),
shouldUpdate: shouldUpdate(msg, updaters),
}));
};
// changeContent sets the active label, which is used at the content rendering.
@ -191,6 +213,13 @@ class Dashboard extends Component<Props, State> {
content={this.state.content}
shouldUpdate={this.state.shouldUpdate}
/>
<Footer
opened={this.state.sideBar}
openSideBar={this.openSideBar}
closeSideBar={this.closeSideBar}
general={this.state.content.general}
shouldUpdate={this.state.shouldUpdate}
/>
</div>
);
}

View file

@ -0,0 +1,80 @@
// @flow
// Copyright 2017 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
import React, {Component} from 'react';
import withStyles from 'material-ui/styles/withStyles';
import AppBar from 'material-ui/AppBar';
import Toolbar from 'material-ui/Toolbar';
import Typography from 'material-ui/Typography';
import type {General} from '../types/content';
// styles contains styles for the Header component.
const styles = theme => ({
footer: {
backgroundColor: theme.palette.background.appBar,
color: theme.palette.getContrastText(theme.palette.background.appBar),
zIndex: theme.zIndex.appBar,
},
toolbar: {
paddingLeft: theme.spacing.unit,
paddingRight: theme.spacing.unit,
display: 'flex',
justifyContent: 'flex-end',
},
light: {
color: 'rgba(255, 255, 255, 0.54)',
},
});
export type Props = {
general: General,
classes: Object,
};
// TODO (kurkomisi): If the structure is appropriate, make an abstraction of the common parts with the Header.
// Footer renders the header of the dashboard.
class Footer extends Component<Props> {
shouldComponentUpdate(nextProps) {
return typeof nextProps.shouldUpdate.logs !== 'undefined';
}
info = (about: string, data: string) => (
<Typography type="caption" color="inherit">
<span className={this.props.classes.light}>{about}</span> {data}
</Typography>
);
render() {
const {classes, general} = this.props; // The classes property is injected by withStyles().
const geth = general.version ? this.info('Geth', general.version) : null;
const commit = general.commit ? this.info('Commit', general.commit.substring(0, 7)) : null;
return (
<AppBar position="static" className={classes.footer}>
<Toolbar className={classes.toolbar}>
<div>
{geth}
{commit}
</div>
</Toolbar>
</AppBar>
);
}
}
export default withStyles(styles)(Footer);

View file

@ -22,7 +22,7 @@ import withTheme from 'material-ui/styles/withTheme';
import {LineChart, AreaChart, Area, YAxis, CartesianGrid, Line} from 'recharts';
import ChartGrid from './ChartGrid';
import type {ChartEntry} from '../types/message';
import type {ChartEntry} from '../types/content';
export type Props = {
theme: Object,
@ -40,11 +40,16 @@ class Home extends Component<Props> {
}
shouldComponentUpdate(nextProps) {
return nextProps.shouldUpdate.has('memory') || nextProps.shouldUpdate.has('traffic');
return typeof nextProps.shouldUpdate.home !== 'undefined';
}
memoryColor: Object;
trafficColor: Object;
render() {
const {memory, traffic} = this.props;
let {memory, traffic} = this.props;
memory = memory.map(({value}) => (value || 0));
traffic = traffic.map(({value}) => (value || 0));
return (
<ChartGrid spacing={24}>

View file

@ -1574,6 +1574,7 @@
"requires": {
"anymatch": "1.3.2",
"async-each": "1.0.1",
"fsevents": "1.1.3",
"glob-parent": "2.0.0",
"inherits": "2.0.3",
"is-binary-path": "1.0.1",
@ -2977,6 +2978,795 @@
"resolved": "https://registry.npmjs.org/fs.realpath/-/fs.realpath-1.0.0.tgz",
"integrity": "sha1-FQStJSMVjKpA20onh8sBQRmU6k8="
},
"fsevents": {
"version": "1.1.3",
"resolved": "https://registry.npmjs.org/fsevents/-/fsevents-1.1.3.tgz",
"integrity": "sha512-WIr7iDkdmdbxu/Gh6eKEZJL6KPE74/5MEsf2whTOFNxbIoIixogroLdKYqB6FDav4Wavh/lZdzzd3b2KxIXC5Q==",
"optional": true,
"requires": {
"nan": "2.8.0",
"node-pre-gyp": "0.6.39"
},
"dependencies": {
"abbrev": {
"version": "1.1.0",
"bundled": true,
"optional": true
},
"ajv": {
"version": "4.11.8",
"bundled": true,
"optional": true,
"requires": {
"co": "4.6.0",
"json-stable-stringify": "1.0.1"
}
},
"ansi-regex": {
"version": "2.1.1",
"bundled": true
},
"aproba": {
"version": "1.1.1",
"bundled": true,
"optional": true
},
"are-we-there-yet": {
"version": "1.1.4",
"bundled": true,
"optional": true,
"requires": {
"delegates": "1.0.0",
"readable-stream": "2.2.9"
}
},
"asn1": {
"version": "0.2.3",
"bundled": true,
"optional": true
},
"assert-plus": {
"version": "0.2.0",
"bundled": true,
"optional": true
},
"asynckit": {
"version": "0.4.0",
"bundled": true,
"optional": true
},
"aws-sign2": {
"version": "0.6.0",
"bundled": true,
"optional": true
},
"aws4": {
"version": "1.6.0",
"bundled": true,
"optional": true
},
"balanced-match": {
"version": "0.4.2",
"bundled": true
},
"bcrypt-pbkdf": {
"version": "1.0.1",
"bundled": true,
"optional": true,
"requires": {
"tweetnacl": "0.14.5"
}
},
"block-stream": {
"version": "0.0.9",
"bundled": true,
"requires": {
"inherits": "2.0.3"
}
},
"boom": {
"version": "2.10.1",
"bundled": true,
"requires": {
"hoek": "2.16.3"
}
},
"brace-expansion": {
"version": "1.1.7",
"bundled": true,
"requires": {
"balanced-match": "0.4.2",
"concat-map": "0.0.1"
}
},
"buffer-shims": {
"version": "1.0.0",
"bundled": true
},
"caseless": {
"version": "0.12.0",
"bundled": true,
"optional": true
},
"co": {
"version": "4.6.0",
"bundled": true,
"optional": true
},
"code-point-at": {
"version": "1.1.0",
"bundled": true
},
"combined-stream": {
"version": "1.0.5",
"bundled": true,
"requires": {
"delayed-stream": "1.0.0"
}
},
"concat-map": {
"version": "0.0.1",
"bundled": true
},
"console-control-strings": {
"version": "1.1.0",
"bundled": true
},
"core-util-is": {
"version": "1.0.2",
"bundled": true
},
"cryptiles": {
"version": "2.0.5",
"bundled": true,
"requires": {
"boom": "2.10.1"
}
},
"dashdash": {
"version": "1.14.1",
"bundled": true,
"optional": true,
"requires": {
"assert-plus": "1.0.0"
},
"dependencies": {
"assert-plus": {
"version": "1.0.0",
"bundled": true,
"optional": true
}
}
},
"debug": {
"version": "2.6.8",
"bundled": true,
"optional": true,
"requires": {
"ms": "2.0.0"
}
},
"deep-extend": {
"version": "0.4.2",
"bundled": true,
"optional": true
},
"delayed-stream": {
"version": "1.0.0",
"bundled": true
},
"delegates": {
"version": "1.0.0",
"bundled": true,
"optional": true
},
"detect-libc": {
"version": "1.0.2",
"bundled": true,
"optional": true
},
"ecc-jsbn": {
"version": "0.1.1",
"bundled": true,
"optional": true,
"requires": {
"jsbn": "0.1.1"
}
},
"extend": {
"version": "3.0.1",
"bundled": true,
"optional": true
},
"extsprintf": {
"version": "1.0.2",
"bundled": true
},
"forever-agent": {
"version": "0.6.1",
"bundled": true,
"optional": true
},
"form-data": {
"version": "2.1.4",
"bundled": true,
"optional": true,
"requires": {
"asynckit": "0.4.0",
"combined-stream": "1.0.5",
"mime-types": "2.1.15"
}
},
"fs.realpath": {
"version": "1.0.0",
"bundled": true
},
"fstream": {
"version": "1.0.11",
"bundled": true,
"requires": {
"graceful-fs": "4.1.11",
"inherits": "2.0.3",
"mkdirp": "0.5.1",
"rimraf": "2.6.1"
}
},
"fstream-ignore": {
"version": "1.0.5",
"bundled": true,
"optional": true,
"requires": {
"fstream": "1.0.11",
"inherits": "2.0.3",
"minimatch": "3.0.4"
}
},
"gauge": {
"version": "2.7.4",
"bundled": true,
"optional": true,
"requires": {
"aproba": "1.1.1",
"console-control-strings": "1.1.0",
"has-unicode": "2.0.1",
"object-assign": "4.1.1",
"signal-exit": "3.0.2",
"string-width": "1.0.2",
"strip-ansi": "3.0.1",
"wide-align": "1.1.2"
}
},
"getpass": {
"version": "0.1.7",
"bundled": true,
"optional": true,
"requires": {
"assert-plus": "1.0.0"
},
"dependencies": {
"assert-plus": {
"version": "1.0.0",
"bundled": true,
"optional": true
}
}
},
"glob": {
"version": "7.1.2",
"bundled": true,
"requires": {
"fs.realpath": "1.0.0",
"inflight": "1.0.6",
"inherits": "2.0.3",
"minimatch": "3.0.4",
"once": "1.4.0",
"path-is-absolute": "1.0.1"
}
},
"graceful-fs": {
"version": "4.1.11",
"bundled": true
},
"har-schema": {
"version": "1.0.5",
"bundled": true,
"optional": true
},
"har-validator": {
"version": "4.2.1",
"bundled": true,
"optional": true,
"requires": {
"ajv": "4.11.8",
"har-schema": "1.0.5"
}
},
"has-unicode": {
"version": "2.0.1",
"bundled": true,
"optional": true
},
"hawk": {
"version": "3.1.3",
"bundled": true,
"requires": {
"boom": "2.10.1",
"cryptiles": "2.0.5",
"hoek": "2.16.3",
"sntp": "1.0.9"
}
},
"hoek": {
"version": "2.16.3",
"bundled": true
},
"http-signature": {
"version": "1.1.1",
"bundled": true,
"optional": true,
"requires": {
"assert-plus": "0.2.0",
"jsprim": "1.4.0",
"sshpk": "1.13.0"
}
},
"inflight": {
"version": "1.0.6",
"bundled": true,
"requires": {
"once": "1.4.0",
"wrappy": "1.0.2"
}
},
"inherits": {
"version": "2.0.3",
"bundled": true
},
"ini": {
"version": "1.3.4",
"bundled": true,
"optional": true
},
"is-fullwidth-code-point": {
"version": "1.0.0",
"bundled": true,
"requires": {
"number-is-nan": "1.0.1"
}
},
"is-typedarray": {
"version": "1.0.0",
"bundled": true,
"optional": true
},
"isarray": {
"version": "1.0.0",
"bundled": true
},
"isstream": {
"version": "0.1.2",
"bundled": true,
"optional": true
},
"jodid25519": {
"version": "1.0.2",
"bundled": true,
"optional": true,
"requires": {
"jsbn": "0.1.1"
}
},
"jsbn": {
"version": "0.1.1",
"bundled": true,
"optional": true
},
"json-schema": {
"version": "0.2.3",
"bundled": true,
"optional": true
},
"json-stable-stringify": {
"version": "1.0.1",
"bundled": true,
"optional": true,
"requires": {
"jsonify": "0.0.0"
}
},
"json-stringify-safe": {
"version": "5.0.1",
"bundled": true,
"optional": true
},
"jsonify": {
"version": "0.0.0",
"bundled": true,
"optional": true
},
"jsprim": {
"version": "1.4.0",
"bundled": true,
"optional": true,
"requires": {
"assert-plus": "1.0.0",
"extsprintf": "1.0.2",
"json-schema": "0.2.3",
"verror": "1.3.6"
},
"dependencies": {
"assert-plus": {
"version": "1.0.0",
"bundled": true,
"optional": true
}
}
},
"mime-db": {
"version": "1.27.0",
"bundled": true
},
"mime-types": {
"version": "2.1.15",
"bundled": true,
"requires": {
"mime-db": "1.27.0"
}
},
"minimatch": {
"version": "3.0.4",
"bundled": true,
"requires": {
"brace-expansion": "1.1.7"
}
},
"minimist": {
"version": "0.0.8",
"bundled": true
},
"mkdirp": {
"version": "0.5.1",
"bundled": true,
"requires": {
"minimist": "0.0.8"
}
},
"ms": {
"version": "2.0.0",
"bundled": true,
"optional": true
},
"node-pre-gyp": {
"version": "0.6.39",
"bundled": true,
"optional": true,
"requires": {
"detect-libc": "1.0.2",
"hawk": "3.1.3",
"mkdirp": "0.5.1",
"nopt": "4.0.1",
"npmlog": "4.1.0",
"rc": "1.2.1",
"request": "2.81.0",
"rimraf": "2.6.1",
"semver": "5.3.0",
"tar": "2.2.1",
"tar-pack": "3.4.0"
}
},
"nopt": {
"version": "4.0.1",
"bundled": true,
"optional": true,
"requires": {
"abbrev": "1.1.0",
"osenv": "0.1.4"
}
},
"npmlog": {
"version": "4.1.0",
"bundled": true,
"optional": true,
"requires": {
"are-we-there-yet": "1.1.4",
"console-control-strings": "1.1.0",
"gauge": "2.7.4",
"set-blocking": "2.0.0"
}
},
"number-is-nan": {
"version": "1.0.1",
"bundled": true
},
"oauth-sign": {
"version": "0.8.2",
"bundled": true,
"optional": true
},
"object-assign": {
"version": "4.1.1",
"bundled": true,
"optional": true
},
"once": {
"version": "1.4.0",
"bundled": true,
"requires": {
"wrappy": "1.0.2"
}
},
"os-homedir": {
"version": "1.0.2",
"bundled": true,
"optional": true
},
"os-tmpdir": {
"version": "1.0.2",
"bundled": true,
"optional": true
},
"osenv": {
"version": "0.1.4",
"bundled": true,
"optional": true,
"requires": {
"os-homedir": "1.0.2",
"os-tmpdir": "1.0.2"
}
},
"path-is-absolute": {
"version": "1.0.1",
"bundled": true
},
"performance-now": {
"version": "0.2.0",
"bundled": true,
"optional": true
},
"process-nextick-args": {
"version": "1.0.7",
"bundled": true
},
"punycode": {
"version": "1.4.1",
"bundled": true,
"optional": true
},
"qs": {
"version": "6.4.0",
"bundled": true,
"optional": true
},
"rc": {
"version": "1.2.1",
"bundled": true,
"optional": true,
"requires": {
"deep-extend": "0.4.2",
"ini": "1.3.4",
"minimist": "1.2.0",
"strip-json-comments": "2.0.1"
},
"dependencies": {
"minimist": {
"version": "1.2.0",
"bundled": true,
"optional": true
}
}
},
"readable-stream": {
"version": "2.2.9",
"bundled": true,
"requires": {
"buffer-shims": "1.0.0",
"core-util-is": "1.0.2",
"inherits": "2.0.3",
"isarray": "1.0.0",
"process-nextick-args": "1.0.7",
"string_decoder": "1.0.1",
"util-deprecate": "1.0.2"
}
},
"request": {
"version": "2.81.0",
"bundled": true,
"optional": true,
"requires": {
"aws-sign2": "0.6.0",
"aws4": "1.6.0",
"caseless": "0.12.0",
"combined-stream": "1.0.5",
"extend": "3.0.1",
"forever-agent": "0.6.1",
"form-data": "2.1.4",
"har-validator": "4.2.1",
"hawk": "3.1.3",
"http-signature": "1.1.1",
"is-typedarray": "1.0.0",
"isstream": "0.1.2",
"json-stringify-safe": "5.0.1",
"mime-types": "2.1.15",
"oauth-sign": "0.8.2",
"performance-now": "0.2.0",
"qs": "6.4.0",
"safe-buffer": "5.0.1",
"stringstream": "0.0.5",
"tough-cookie": "2.3.2",
"tunnel-agent": "0.6.0",
"uuid": "3.0.1"
}
},
"rimraf": {
"version": "2.6.1",
"bundled": true,
"requires": {
"glob": "7.1.2"
}
},
"safe-buffer": {
"version": "5.0.1",
"bundled": true
},
"semver": {
"version": "5.3.0",
"bundled": true,
"optional": true
},
"set-blocking": {
"version": "2.0.0",
"bundled": true,
"optional": true
},
"signal-exit": {
"version": "3.0.2",
"bundled": true,
"optional": true
},
"sntp": {
"version": "1.0.9",
"bundled": true,
"requires": {
"hoek": "2.16.3"
}
},
"sshpk": {
"version": "1.13.0",
"bundled": true,
"optional": true,
"requires": {
"asn1": "0.2.3",
"assert-plus": "1.0.0",
"bcrypt-pbkdf": "1.0.1",
"dashdash": "1.14.1",
"ecc-jsbn": "0.1.1",
"getpass": "0.1.7",
"jodid25519": "1.0.2",
"jsbn": "0.1.1",
"tweetnacl": "0.14.5"
},
"dependencies": {
"assert-plus": {
"version": "1.0.0",
"bundled": true,
"optional": true
}
}
},
"string-width": {
"version": "1.0.2",
"bundled": true,
"requires": {
"code-point-at": "1.1.0",
"is-fullwidth-code-point": "1.0.0",
"strip-ansi": "3.0.1"
}
},
"string_decoder": {
"version": "1.0.1",
"bundled": true,
"requires": {
"safe-buffer": "5.0.1"
}
},
"stringstream": {
"version": "0.0.5",
"bundled": true,
"optional": true
},
"strip-ansi": {
"version": "3.0.1",
"bundled": true,
"requires": {
"ansi-regex": "2.1.1"
}
},
"strip-json-comments": {
"version": "2.0.1",
"bundled": true,
"optional": true
},
"tar": {
"version": "2.2.1",
"bundled": true,
"requires": {
"block-stream": "0.0.9",
"fstream": "1.0.11",
"inherits": "2.0.3"
}
},
"tar-pack": {
"version": "3.4.0",
"bundled": true,
"optional": true,
"requires": {
"debug": "2.6.8",
"fstream": "1.0.11",
"fstream-ignore": "1.0.5",
"once": "1.4.0",
"readable-stream": "2.2.9",
"rimraf": "2.6.1",
"tar": "2.2.1",
"uid-number": "0.0.6"
}
},
"tough-cookie": {
"version": "2.3.2",
"bundled": true,
"optional": true,
"requires": {
"punycode": "1.4.1"
}
},
"tunnel-agent": {
"version": "0.6.0",
"bundled": true,
"optional": true,
"requires": {
"safe-buffer": "5.0.1"
}
},
"tweetnacl": {
"version": "0.14.5",
"bundled": true,
"optional": true
},
"uid-number": {
"version": "0.0.6",
"bundled": true,
"optional": true
},
"util-deprecate": {
"version": "1.0.2",
"bundled": true
},
"uuid": {
"version": "3.0.1",
"bundled": true,
"optional": true
},
"verror": {
"version": "1.3.6",
"bundled": true,
"optional": true,
"requires": {
"extsprintf": "1.0.2"
}
},
"wide-align": {
"version": "1.1.2",
"bundled": true,
"optional": true,
"requires": {
"string-width": "1.0.2"
}
},
"wrappy": {
"version": "1.0.2",
"bundled": true
}
}
},
"fstream": {
"version": "0.1.31",
"resolved": "https://registry.npmjs.org/fstream/-/fstream-0.1.31.tgz",
@ -4272,6 +5062,12 @@
"resolved": "https://registry.npmjs.org/mute-stream/-/mute-stream-0.0.7.tgz",
"integrity": "sha1-MHXOk7whuPq0PhvE2n6BFe0ee6s="
},
"nan": {
"version": "2.8.0",
"resolved": "https://registry.npmjs.org/nan/-/nan-2.8.0.tgz",
"integrity": "sha1-7XFfP+neArV6XmJS2QqWZ14fCFo=",
"optional": true
},
"natives": {
"version": "1.1.1",
"resolved": "https://registry.npmjs.org/natives/-/natives-1.1.1.tgz",

View file

@ -1,7 +1,7 @@
{
"dependencies": {
"babel-core": "^6.26.0",
"babel-eslint": "^8.0.3",
"babel-eslint": "^8.1.2",
"babel-loader": "^7.1.2",
"babel-plugin-transform-class-properties": "^6.24.1",
"babel-plugin-transform-decorators-legacy": "^1.3.4",
@ -12,28 +12,28 @@
"babel-preset-stage-0": "^6.24.1",
"babel-runtime": "^6.26.0",
"classnames": "^2.2.5",
"css-loader": "^0.28.7",
"eslint": "^4.13.1",
"css-loader": "^0.28.8",
"eslint": "^4.15.0",
"eslint-config-airbnb": "^16.1.0",
"eslint-loader": "^1.9.0",
"eslint-plugin-import": "^2.8.0",
"eslint-plugin-jsx-a11y": "^6.0.3",
"eslint-plugin-react": "^7.5.1",
"eslint-plugin-flowtype": "^2.40.1",
"eslint-plugin-flowtype": "^2.41.0",
"file-loader": "^1.1.6",
"flow-bin": "^0.61.0",
"flow-bin": "^0.63.1",
"flow-bin-loader": "^1.0.2",
"flow-typed": "^2.2.3",
"material-ui": "^1.0.0-beta.24",
"material-ui-icons": "^1.0.0-beta.17",
"path": "^0.12.7",
"ramda": "^0.25.0",
"react": "^16.2.0",
"react-dom": "^16.2.0",
"react-fa": "^5.0.0",
"react-transition-group": "^2.2.1",
"recharts": "^1.0.0-beta.6",
"recharts": "^1.0.0-beta.7",
"style-loader": "^0.19.1",
"typeface-roboto": "^0.0.50",
"url": "^0.11.0",
"url-loader": "^0.6.2",
"webpack": "^3.10.0"

View file

@ -16,9 +16,8 @@
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
import type {ChartEntry} from './message';
export type Content = {
general: General,
home: Home,
chain: Chain,
txpool: TxPool,
@ -27,9 +26,21 @@ export type Content = {
logs: Logs,
};
export type General = {
version: ?string,
commit: ?string,
};
export type Home = {
memory: Array<ChartEntry>,
traffic: Array<ChartEntry>,
memory: ChartEntries,
traffic: ChartEntries,
};
export type ChartEntries = Array<ChartEntry>;
export type ChartEntry = {
time: Date,
value: number,
};
export type Chain = {

View file

@ -1,61 +0,0 @@
// @flow
// Copyright 2017 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
export type Message = {
home?: HomeMessage,
chain?: ChainMessage,
txpool?: TxPoolMessage,
network?: NetworkMessage,
system?: SystemMessage,
logs?: LogsMessage,
};
export type HomeMessage = {
memory?: Chart,
traffic?: Chart,
};
export type Chart = {
history?: Array<ChartEntry>,
new?: ChartEntry,
};
export type ChartEntry = {
time: Date,
value: number,
};
export type ChainMessage = {
/* TODO (kurkomisi) */
};
export type TxPoolMessage = {
/* TODO (kurkomisi) */
};
export type NetworkMessage = {
/* TODO (kurkomisi) */
};
export type SystemMessage = {
/* TODO (kurkomisi) */
};
export type LogsMessage = {
log: string,
};

View file

@ -23,7 +23,7 @@ module.exports = {
},
entry: './index',
output: {
path: path.resolve(__dirname, 'public'),
path: path.resolve(__dirname, ''),
filename: 'bundle.js',
},
plugins: [

View file

@ -16,10 +16,12 @@
package dashboard
//go:generate npm --prefix ./assets install
//go:generate ./assets/node_modules/.bin/webpack --config ./assets/webpack.config.js --context ./assets
//go:generate go-bindata -nometadata -o assets.go -prefix assets -nocompress -pkg dashboard assets/public/...
//go:generate gofmt -s -w assets.go
//go:generate sed -i "s#var _public#//nolint:misspell\\n&#" assets.go
//go:generate go-bindata -nometadata -o assets.go -prefix assets -nocompress -pkg dashboard assets/dashboard.html assets/bundle.js
//go:generate sh -c "sed 's#var _bundleJs#//nolint:misspell\\\n&#' assets.go > assets.go.tmp && mv assets.go.tmp assets.go"
//go:generate sh -c "sed 's#var _dashboardHtml#//nolint:misspell\\\n&#' assets.go > assets.go.tmp && mv assets.go.tmp assets.go"
//go:generate gofmt -w -s assets.go
import (
"fmt"
@ -33,6 +35,7 @@ import (
"github.com/EthereumCommonwealth/go-callisto/log"
"github.com/EthereumCommonwealth/go-callisto/p2p"
"github.com/EthereumCommonwealth/go-callisto/params"
"github.com/EthereumCommonwealth/go-callisto/rpc"
"github.com/rcrowley/go-metrics"
"golang.org/x/net/websocket"
@ -52,6 +55,7 @@ type Dashboard struct {
listener net.Listener
conns map[uint32]*client // Currently live websocket connections
charts *HomeMessage
commit string
lock sync.RWMutex // Lock protecting the dashboard's internals
quit chan chan error // Channel used for graceful exit
@ -66,15 +70,16 @@ type client struct {
}
// New creates a new dashboard instance with the given configuration.
func New(config *Config) (*Dashboard, error) {
func New(config *Config, commit string) (*Dashboard, error) {
return &Dashboard{
conns: make(map[uint32]*client),
config: config,
quit: make(chan chan error),
charts: &HomeMessage{
Memory: &Chart{},
Traffic: &Chart{},
Memory: ChartEntries{},
Traffic: ChartEntries{},
},
commit: commit,
}, nil
}
@ -86,6 +91,8 @@ func (db *Dashboard) APIs() []rpc.API { return nil }
// Start implements node.Service, starting the data collection thread and the listening server of the dashboard.
func (db *Dashboard) Start(server *p2p.Server) error {
log.Info("Starting dashboard")
db.wg.Add(2)
go db.collectData()
go db.collectLogs() // In case of removing this line change 2 back to 1 in wg.Add.
@ -159,7 +166,7 @@ func (db *Dashboard) webHandler(w http.ResponseWriter, r *http.Request) {
w.Write(blob)
return
}
blob, err := Asset(filepath.Join("public", path))
blob, err := Asset(path[1:])
if err != nil {
log.Warn("Failed to load the asset", "path", path, "err", err)
http.Error(w, "not found", http.StatusNotFound)
@ -196,15 +203,20 @@ func (db *Dashboard) apiHandler(conn *websocket.Conn) {
}
}
}()
versionMeta := ""
if len(params.VersionMeta) > 0 {
versionMeta = fmt.Sprintf(" (%s)", params.VersionMeta)
}
// Send the past data.
client.msg <- Message{
General: &GeneralMessage{
Version: fmt.Sprintf("v%d.%d.%d%s", params.VersionMajor, params.VersionMinor, params.VersionPatch, versionMeta),
Commit: db.commit,
},
Home: &HomeMessage{
Memory: &Chart{
History: db.charts.Memory.History,
},
Traffic: &Chart{
History: db.charts.Traffic.History,
},
Memory: db.charts.Memory,
Traffic: db.charts.Traffic,
},
}
// Start tracking the connection and drop at connection loss.
@ -248,24 +260,20 @@ func (db *Dashboard) collectData() {
Value: inboundTraffic,
}
first := 0
if len(db.charts.Memory.History) == memorySampleLimit {
if len(db.charts.Memory) == memorySampleLimit {
first = 1
}
db.charts.Memory.History = append(db.charts.Memory.History[first:], memory)
db.charts.Memory = append(db.charts.Memory[first:], memory)
first = 0
if len(db.charts.Traffic.History) == trafficSampleLimit {
if len(db.charts.Traffic) == trafficSampleLimit {
first = 1
}
db.charts.Traffic.History = append(db.charts.Traffic.History[first:], traffic)
db.charts.Traffic = append(db.charts.Traffic[first:], traffic)
db.sendToAll(&Message{
Home: &HomeMessage{
Memory: &Chart{
New: memory,
},
Traffic: &Chart{
New: traffic,
},
Memory: ChartEntries{memory},
Traffic: ChartEntries{traffic},
},
})
}
@ -286,7 +294,7 @@ func (db *Dashboard) collectLogs() {
case <-time.After(db.config.Refresh / 2):
db.sendToAll(&Message{
Logs: &LogsMessage{
Log: fmt.Sprintf("%-4d: This is a fake log.", id),
Log: []string{fmt.Sprintf("%-4d: This is a fake log.", id)},
},
})
id++

View file

@ -19,6 +19,7 @@ package dashboard
import "time"
type Message struct {
General *GeneralMessage `json:"general,omitempty"`
Home *HomeMessage `json:"home,omitempty"`
Chain *ChainMessage `json:"chain,omitempty"`
TxPool *TxPoolMessage `json:"txpool,omitempty"`
@ -27,16 +28,18 @@ type Message struct {
Logs *LogsMessage `json:"logs,omitempty"`
}
type HomeMessage struct {
Memory *Chart `json:"memory,omitempty"`
Traffic *Chart `json:"traffic,omitempty"`
type GeneralMessage struct {
Version string `json:"version,omitempty"`
Commit string `json:"commit,omitempty"`
}
type Chart struct {
History []*ChartEntry `json:"history,omitempty"`
New *ChartEntry `json:"new,omitempty"`
type HomeMessage struct {
Memory ChartEntries `json:"memory,omitempty"`
Traffic ChartEntries `json:"traffic,omitempty"`
}
type ChartEntries []*ChartEntry
type ChartEntry struct {
Time time.Time `json:"time,omitempty"`
Value float64 `json:"value,omitempty"`
@ -59,5 +62,5 @@ type SystemMessage struct {
}
type LogsMessage struct {
Log string `json:"log,omitempty"`
Log []string `json:"log,omitempty"`
}

View file

@ -49,8 +49,8 @@ var DefaultConfig = Config{
TxPool: core.DefaultTxPoolConfig,
GPO: gasprice.Config{
Blocks: 10,
Percentile: 50,
Blocks: 20,
Percentile: 60,
},
}

View file

@ -23,6 +23,7 @@ import (
"sync"
"github.com/EthereumCommonwealth/go-callisto/common"
"github.com/EthereumCommonwealth/go-callisto/core/types"
"github.com/EthereumCommonwealth/go-callisto/internal/ethapi"
"github.com/EthereumCommonwealth/go-callisto/params"
"github.com/EthereumCommonwealth/go-callisto/rpc"
@ -101,9 +102,9 @@ func (gpo *Oracle) SuggestPrice(ctx context.Context) (*big.Int, error) {
ch := make(chan getBlockPricesResult, gpo.checkBlocks)
sent := 0
exp := 0
var txPrices []*big.Int
var blockPrices []*big.Int
for sent < gpo.checkBlocks && blockNum > 0 {
go gpo.getBlockPrices(ctx, blockNum, ch)
go gpo.getBlockPrices(ctx, types.MakeSigner(gpo.backend.ChainConfig(), big.NewInt(int64(blockNum))), blockNum, ch)
sent++
exp++
blockNum--
@ -115,8 +116,8 @@ func (gpo *Oracle) SuggestPrice(ctx context.Context) (*big.Int, error) {
return lastPrice, res.err
}
exp--
if len(res.prices) > 0 {
txPrices = append(txPrices, res.prices...)
if res.price != nil {
blockPrices = append(blockPrices, res.price)
continue
}
if maxEmpty > 0 {
@ -124,16 +125,16 @@ func (gpo *Oracle) SuggestPrice(ctx context.Context) (*big.Int, error) {
continue
}
if blockNum > 0 && sent < gpo.maxBlocks {
go gpo.getBlockPrices(ctx, blockNum, ch)
go gpo.getBlockPrices(ctx, types.MakeSigner(gpo.backend.ChainConfig(), big.NewInt(int64(blockNum))), blockNum, ch)
sent++
exp++
blockNum--
}
}
price := lastPrice
if len(txPrices) > 0 {
sort.Sort(bigIntArray(txPrices))
price = txPrices[(len(txPrices)-1)*gpo.percentile/100]
if len(blockPrices) > 0 {
sort.Sort(bigIntArray(blockPrices))
price = blockPrices[(len(blockPrices)-1)*gpo.percentile/100]
}
if price.Cmp(maxPrice) > 0 {
price = new(big.Int).Set(maxPrice)
@ -147,24 +148,38 @@ func (gpo *Oracle) SuggestPrice(ctx context.Context) (*big.Int, error) {
}
type getBlockPricesResult struct {
prices []*big.Int
price *big.Int
err error
}
// getLowestPrice calculates the lowest transaction gas price in a given block
type transactionsByGasPrice []*types.Transaction
func (t transactionsByGasPrice) Len() int { return len(t) }
func (t transactionsByGasPrice) Swap(i, j int) { t[i], t[j] = t[j], t[i] }
func (t transactionsByGasPrice) Less(i, j int) bool { return t[i].GasPrice().Cmp(t[j].GasPrice()) < 0 }
// getBlockPrices calculates the lowest transaction gas price in a given block
// and sends it to the result channel. If the block is empty, price is nil.
func (gpo *Oracle) getBlockPrices(ctx context.Context, blockNum uint64, ch chan getBlockPricesResult) {
func (gpo *Oracle) getBlockPrices(ctx context.Context, signer types.Signer, blockNum uint64, ch chan getBlockPricesResult) {
block, err := gpo.backend.BlockByNumber(ctx, rpc.BlockNumber(blockNum))
if block == nil {
ch <- getBlockPricesResult{nil, err}
return
}
txs := block.Transactions()
prices := make([]*big.Int, len(txs))
for i, tx := range txs {
prices[i] = tx.GasPrice()
blockTxs := block.Transactions()
txs := make([]*types.Transaction, len(blockTxs))
copy(txs, blockTxs)
sort.Sort(transactionsByGasPrice(txs))
for _, tx := range txs {
sender, err := types.Sender(signer, tx)
if err == nil && sender != block.Coinbase() {
ch <- getBlockPricesResult{tx.GasPrice(), nil}
return
}
ch <- getBlockPricesResult{prices, nil}
}
ch <- getBlockPricesResult{nil, nil}
}
type bigIntArray []*big.Int

View file

@ -13,6 +13,8 @@ import (
"github.com/EthereumCommonwealth/go-callisto/eth/gasprice"
)
var _ = (*configMarshaling)(nil)
func (c Config) MarshalTOML() (interface{}, error) {
type Config struct {
Genesis *core.Genesis `toml:",omitempty"`
@ -20,7 +22,6 @@ func (c Config) MarshalTOML() (interface{}, error) {
SyncMode downloader.SyncMode
LightServ int `toml:",omitempty"`
LightPeers int `toml:",omitempty"`
MaxPeers int `toml:"-"`
SkipBcVersionCheck bool `toml:"-"`
DatabaseHandles int `toml:"-"`
DatabaseCache int
@ -28,17 +29,11 @@ func (c Config) MarshalTOML() (interface{}, error) {
MinerThreads int `toml:",omitempty"`
ExtraData hexutil.Bytes `toml:",omitempty"`
GasPrice *big.Int
EthashCacheDir string
EthashCachesInMem int
EthashCachesOnDisk int
EthashDatasetDir string
EthashDatasetsInMem int
EthashDatasetsOnDisk int
Ethash ethash.Config
TxPool core.TxPoolConfig
GPO gasprice.Config
EnablePreimageRecording bool
DocRoot string `toml:"-"`
PowMode ethash.Mode `toml:"-"`
}
var enc Config
enc.Genesis = c.Genesis
@ -53,17 +48,11 @@ func (c Config) MarshalTOML() (interface{}, error) {
enc.MinerThreads = c.MinerThreads
enc.ExtraData = c.ExtraData
enc.GasPrice = c.GasPrice
enc.EthashCacheDir = c.Ethash.CacheDir
enc.EthashCachesInMem = c.Ethash.CachesInMem
enc.EthashCachesOnDisk = c.Ethash.CachesOnDisk
enc.EthashDatasetDir = c.Ethash.DatasetDir
enc.EthashDatasetsInMem = c.Ethash.DatasetsInMem
enc.EthashDatasetsOnDisk = c.Ethash.DatasetsOnDisk
enc.Ethash = c.Ethash
enc.TxPool = c.TxPool
enc.GPO = c.GPO
enc.EnablePreimageRecording = c.EnablePreimageRecording
enc.DocRoot = c.DocRoot
enc.PowMode = c.Ethash.PowMode
return &enc, nil
}
@ -74,25 +63,18 @@ func (c *Config) UnmarshalTOML(unmarshal func(interface{}) error) error {
SyncMode *downloader.SyncMode
LightServ *int `toml:",omitempty"`
LightPeers *int `toml:",omitempty"`
MaxPeers *int `toml:"-"`
SkipBcVersionCheck *bool `toml:"-"`
DatabaseHandles *int `toml:"-"`
DatabaseCache *int
Etherbase *common.Address `toml:",omitempty"`
MinerThreads *int `toml:",omitempty"`
ExtraData hexutil.Bytes `toml:",omitempty"`
ExtraData *hexutil.Bytes `toml:",omitempty"`
GasPrice *big.Int
EthashCacheDir *string
EthashCachesInMem *int
EthashCachesOnDisk *int
EthashDatasetDir *string
EthashDatasetsInMem *int
EthashDatasetsOnDisk *int
Ethash *ethash.Config
TxPool *core.TxPoolConfig
GPO *gasprice.Config
EnablePreimageRecording *bool
DocRoot *string `toml:"-"`
PowMode *ethash.Mode `toml:"-"`
}
var dec Config
if err := unmarshal(&dec); err != nil {
@ -129,28 +111,13 @@ func (c *Config) UnmarshalTOML(unmarshal func(interface{}) error) error {
c.MinerThreads = *dec.MinerThreads
}
if dec.ExtraData != nil {
c.ExtraData = dec.ExtraData
c.ExtraData = *dec.ExtraData
}
if dec.GasPrice != nil {
c.GasPrice = dec.GasPrice
}
if dec.EthashCacheDir != nil {
c.Ethash.CacheDir = *dec.EthashCacheDir
}
if dec.EthashCachesInMem != nil {
c.Ethash.CachesInMem = *dec.EthashCachesInMem
}
if dec.EthashCachesOnDisk != nil {
c.Ethash.CachesOnDisk = *dec.EthashCachesOnDisk
}
if dec.EthashDatasetDir != nil {
c.Ethash.DatasetDir = *dec.EthashDatasetDir
}
if dec.EthashDatasetsInMem != nil {
c.Ethash.DatasetsInMem = *dec.EthashDatasetsInMem
}
if dec.EthashDatasetsOnDisk != nil {
c.Ethash.DatasetsOnDisk = *dec.EthashDatasetsOnDisk
if dec.Ethash != nil {
c.Ethash = *dec.Ethash
}
if dec.TxPool != nil {
c.TxPool = *dec.TxPool
@ -164,8 +131,5 @@ func (c *Config) UnmarshalTOML(unmarshal func(interface{}) error) error {
if dec.DocRoot != nil {
c.DocRoot = *dec.DocRoot
}
if dec.PowMode != nil {
c.Ethash.PowMode = *dec.PowMode
}
return nil
}

View file

@ -1,4 +1,4 @@
// Code generated by go-bindata.
// Code generated by go-bindata. DO NOT EDIT.
// sources:
// 4byte_tracer.js
// call_tracer.js
@ -6,7 +6,6 @@
// noop_tracer.js
// opcount_tracer.js
// prestate_tracer.js
// DO NOT EDIT!
package tracers
@ -197,8 +196,8 @@ func prestate_tracerJs() (*asset, error) {
// It returns an error if the asset could not be found or
// could not be loaded.
func Asset(name string) ([]byte, error) {
cannonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[cannonicalName]; ok {
canonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[canonicalName]; ok {
a, err := f()
if err != nil {
return nil, fmt.Errorf("Asset %s can't read by error: %v", name, err)
@ -223,8 +222,8 @@ func MustAsset(name string) []byte {
// It returns an error if the asset could not be found or
// could not be loaded.
func AssetInfo(name string) (os.FileInfo, error) {
cannonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[cannonicalName]; ok {
canonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[canonicalName]; ok {
a, err := f()
if err != nil {
return nil, fmt.Errorf("AssetInfo %s can't read by error: %v", name, err)
@ -246,10 +245,15 @@ func AssetNames() []string {
// _bindata is a table, holding each asset generator, mapped to its name.
var _bindata = map[string]func() (*asset, error){
"4byte_tracer.js": _4byte_tracerJs,
"call_tracer.js": call_tracerJs,
"evmdis_tracer.js": evmdis_tracerJs,
"noop_tracer.js": noop_tracerJs,
"opcount_tracer.js": opcount_tracerJs,
"prestate_tracer.js": prestate_tracerJs,
}
@ -269,8 +273,8 @@ var _bindata = map[string]func() (*asset, error){
func AssetDir(name string) ([]string, error) {
node := _bintree
if len(name) != 0 {
cannonicalName := strings.Replace(name, "\\", "/", -1)
pathList := strings.Split(cannonicalName, "/")
canonicalName := strings.Replace(name, "\\", "/", -1)
pathList := strings.Split(canonicalName, "/")
for _, p := range pathList {
node = node.Children[p]
if node == nil {
@ -320,11 +324,7 @@ func RestoreAsset(dir, name string) error {
if err != nil {
return err
}
err = os.Chtimes(_filePath(dir, name), info.ModTime(), info.ModTime())
if err != nil {
return err
}
return nil
return os.Chtimes(_filePath(dir, name), info.ModTime(), info.ModTime())
}
// RestoreAssets restores an asset under the given directory recursively
@ -345,6 +345,6 @@ func RestoreAssets(dir, name string) error {
}
func _filePath(dir, name string) string {
cannonicalName := strings.Replace(name, "\\", "/", -1)
return filepath.Join(append([]string{dir}, strings.Split(cannonicalName, "/")...)...)
canonicalName := strings.Replace(name, "\\", "/", -1)
return filepath.Join(append([]string{dir}, strings.Split(canonicalName, "/")...)...)
}

View file

@ -613,6 +613,7 @@ func (s *Service) reportHistory(conn *websocket.Conn, list []uint64) error {
}
// Ran out of blocks, cut the report short and send
history = history[len(history)-i:]
break
}
// Assemble the history report and send it to the server
if len(history) > 0 {

View file

@ -25,6 +25,7 @@ import (
"os"
"os/exec"
"regexp"
"strings"
"sync"
"testing"
"text/template"
@ -141,9 +142,10 @@ func (tt *TestCmd) matchExactOutput(want []byte) error {
// Note that an arbitrary amount of output may be consumed by the
// regular expression. This usually means that expect cannot be used
// after ExpectRegexp.
func (tt *TestCmd) ExpectRegexp(resource string) (*regexp.Regexp, []string) {
func (tt *TestCmd) ExpectRegexp(regex string) (*regexp.Regexp, []string) {
regex = strings.TrimPrefix(regex, "\n")
var (
re = regexp.MustCompile(resource)
re = regexp.MustCompile(regex)
rtee = &runeTee{in: tt.stdout}
matches []int
)
@ -151,7 +153,7 @@ func (tt *TestCmd) ExpectRegexp(resource string) (*regexp.Regexp, []string) {
output := rtee.buf.Bytes()
if matches == nil {
tt.Fatalf("Output did not match:\n---------------- (stdout text)\n%s\n---------------- (regular expression)\n%s",
output, resource)
output, regex)
return re, nil
}
tt.Logf("Matched stdout text:\n%s", output)

View file

@ -1,8 +1,7 @@
// Code generated by go-bindata.
// Code generated by go-bindata. DO NOT EDIT.
// sources:
// bignumber.js
// web3.js
// DO NOT EDIT!
package deps
@ -113,8 +112,8 @@ func web3Js() (*asset, error) {
// It returns an error if the asset could not be found or
// could not be loaded.
func Asset(name string) ([]byte, error) {
cannonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[cannonicalName]; ok {
canonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[canonicalName]; ok {
a, err := f()
if err != nil {
return nil, fmt.Errorf("Asset %s can't read by error: %v", name, err)
@ -139,8 +138,8 @@ func MustAsset(name string) []byte {
// It returns an error if the asset could not be found or
// could not be loaded.
func AssetInfo(name string) (os.FileInfo, error) {
cannonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[cannonicalName]; ok {
canonicalName := strings.Replace(name, "\\", "/", -1)
if f, ok := _bindata[canonicalName]; ok {
a, err := f()
if err != nil {
return nil, fmt.Errorf("AssetInfo %s can't read by error: %v", name, err)
@ -162,6 +161,7 @@ func AssetNames() []string {
// _bindata is a table, holding each asset generator, mapped to its name.
var _bindata = map[string]func() (*asset, error){
"bignumber.js": bignumberJs,
"web3.js": web3Js,
}
@ -181,8 +181,8 @@ var _bindata = map[string]func() (*asset, error){
func AssetDir(name string) ([]string, error) {
node := _bintree
if len(name) != 0 {
cannonicalName := strings.Replace(name, "\\", "/", -1)
pathList := strings.Split(cannonicalName, "/")
canonicalName := strings.Replace(name, "\\", "/", -1)
pathList := strings.Split(canonicalName, "/")
for _, p := range pathList {
node = node.Children[p]
if node == nil {
@ -228,11 +228,7 @@ func RestoreAsset(dir, name string) error {
if err != nil {
return err
}
err = os.Chtimes(_filePath(dir, name), info.ModTime(), info.ModTime())
if err != nil {
return err
}
return nil
return os.Chtimes(_filePath(dir, name), info.ModTime(), info.ModTime())
}
// RestoreAssets restores an asset under the given directory recursively
@ -253,6 +249,6 @@ func RestoreAssets(dir, name string) error {
}
func _filePath(dir, name string) string {
cannonicalName := strings.Replace(name, "\\", "/", -1)
return filepath.Join(append([]string{dir}, strings.Split(cannonicalName, "/")...)...)
canonicalName := strings.Replace(name, "\\", "/", -1)
return filepath.Join(append([]string{dir}, strings.Split(canonicalName, "/")...)...)
}

View file

@ -846,8 +846,8 @@ func (pm *ProtocolManager) handleMsg(p *peer) error {
}
if header := pm.blockchain.GetHeaderByNumber(req.BlockNum); header != nil {
sectionHead := core.GetCanonicalHash(pm.chainDb, (req.ChtNum+1)*light.ChtV1Frequency-1)
if root := light.GetChtRoot(pm.chainDb, req.ChtNum, sectionHead); root != (common.Hash{}) {
sectionHead := core.GetCanonicalHash(pm.chainDb, req.ChtNum*light.ChtV1Frequency-1)
if root := light.GetChtRoot(pm.chainDb, req.ChtNum-1, sectionHead); root != (common.Hash{}) {
if tr, _ := trie.New(root, trieDb); tr != nil {
var encNumber [8]byte
binary.BigEndian.PutUint64(encNumber[:], req.BlockNum)

View file

@ -296,7 +296,7 @@ func (p *peer) RequestHelperTrieProofs(reqID, cost uint64, reqs []HelperTrieReq)
}
blockNum := binary.BigEndian.Uint64(req.Key)
// convert HelperTrie request to old CHT request
reqsV1[i] = ChtReq{ChtNum: (req.TrieIdx+1)*(light.ChtFrequency/light.ChtV1Frequency) - 1, BlockNum: blockNum, FromLevel: req.FromLevel}
reqsV1[i] = ChtReq{ChtNum: (req.TrieIdx + 1) * (light.ChtFrequency / light.ChtV1Frequency), BlockNum: blockNum, FromLevel: req.FromLevel}
}
return sendRequest(p.rw, GetHeaderProofsMsg, reqID, cost, reqsV1)
case lpv2:

View file

@ -512,6 +512,11 @@ func (env *Work) commitTransactions(mux *event.TypeMux, txs *types.TransactionsB
var coalescedLogs []*types.Log
for {
// If we don't have enough gas for any further transactions then we're done
if gp.Gas() < params.TxGas {
log.Trace("Not enough gas for further transactions", "gp", gp)
break
}
// Retrieve the next transaction and abort if all done
tx := txs.Peek()
if tx == nil {

View file

@ -1,8 +1,8 @@
// Code generated by "stringer -type nodeEvent"; DO NOT EDIT
// Code generated by "stringer -type=nodeEvent"; DO NOT EDIT.
package discv5
import "fmt"
import "strconv"
const (
_nodeEvent_name_0 = "invalidEventpingPacketpongPacketfindnodePacketneighborsPacketfindnodeHashPackettopicRegisterPackettopicQueryPackettopicNodesPacket"
@ -22,6 +22,6 @@ func (i nodeEvent) String() string {
i -= 265
return _nodeEvent_name_1[_nodeEvent_index_1[i]:_nodeEvent_index_1[i+1]]
default:
return fmt.Sprintf("nodeEvent(%d)", i)
return "nodeEvent(" + strconv.FormatInt(int64(i), 10) + ")"
}
}

View file

@ -86,8 +86,8 @@ type btHeaderMarshaling struct {
ExtraData hexutil.Bytes
Number *math.HexOrDecimal256
Difficulty *math.HexOrDecimal256
GasLimit *math.HexOrDecimal64
GasUsed *math.HexOrDecimal64
GasLimit math.HexOrDecimal64
GasUsed math.HexOrDecimal64
Timestamp *math.HexOrDecimal256
}

View file

@ -47,8 +47,8 @@ func (b btHeader) MarshalJSON() ([]byte, error) {
enc.UncleHash = b.UncleHash
enc.ExtraData = b.ExtraData
enc.Difficulty = (*math.HexOrDecimal256)(b.Difficulty)
enc.GasLimit = (math.HexOrDecimal64)(b.GasLimit)
enc.GasUsed = (math.HexOrDecimal64)(b.GasUsed)
enc.GasLimit = math.HexOrDecimal64(b.GasLimit)
enc.GasUsed = math.HexOrDecimal64(b.GasUsed)
enc.Timestamp = (*math.HexOrDecimal256)(b.Timestamp)
return json.Marshal(&enc)
}
@ -66,7 +66,7 @@ func (b *btHeader) UnmarshalJSON(input []byte) error {
StateRoot *common.Hash
TransactionsTrie *common.Hash
UncleHash *common.Hash
ExtraData hexutil.Bytes
ExtraData *hexutil.Bytes
Difficulty *math.HexOrDecimal256
GasLimit *math.HexOrDecimal64
GasUsed *math.HexOrDecimal64
@ -110,7 +110,7 @@ func (b *btHeader) UnmarshalJSON(input []byte) error {
b.UncleHash = *dec.UncleHash
}
if dec.ExtraData != nil {
b.ExtraData = dec.ExtraData
b.ExtraData = *dec.ExtraData
}
if dec.Difficulty != nil {
b.Difficulty = (*big.Int)(dec.Difficulty)

View file

@ -46,7 +46,7 @@ func (s *stTransaction) UnmarshalJSON(input []byte) error {
Data []string `json:"data"`
GasLimit []math.HexOrDecimal64 `json:"gasLimit"`
Value []string `json:"value"`
PrivateKey hexutil.Bytes `json:"secretKey"`
PrivateKey *hexutil.Bytes `json:"secretKey"`
}
var dec stTransaction
if err := json.Unmarshal(input, &dec); err != nil {
@ -74,7 +74,7 @@ func (s *stTransaction) UnmarshalJSON(input []byte) error {
s.Value = dec.Value
}
if dec.PrivateKey != nil {
s.PrivateKey = dec.PrivateKey
s.PrivateKey = *dec.PrivateKey
}
return nil
}

View file

@ -28,7 +28,7 @@ func (t ttTransaction) MarshalJSON() ([]byte, error) {
}
var enc ttTransaction
enc.Data = t.Data
enc.GasLimit = (math.HexOrDecimal64)(t.GasLimit)
enc.GasLimit = math.HexOrDecimal64(t.GasLimit)
enc.GasPrice = (*math.HexOrDecimal256)(t.GasPrice)
enc.Nonce = math.HexOrDecimal64(t.Nonce)
enc.Value = (*math.HexOrDecimal256)(t.Value)
@ -41,7 +41,7 @@ func (t ttTransaction) MarshalJSON() ([]byte, error) {
func (t *ttTransaction) UnmarshalJSON(input []byte) error {
type ttTransaction struct {
Data hexutil.Bytes `gencodec:"required"`
Data *hexutil.Bytes `gencodec:"required"`
GasLimit *math.HexOrDecimal64 `gencodec:"required"`
GasPrice *math.HexOrDecimal256 `gencodec:"required"`
Nonce *math.HexOrDecimal64 `gencodec:"required"`
@ -58,7 +58,7 @@ func (t *ttTransaction) UnmarshalJSON(input []byte) error {
if dec.Data == nil {
return errors.New("missing required field 'data' for ttTransaction")
}
t.Data = dec.Data
t.Data = *dec.Data
if dec.GasLimit == nil {
return errors.New("missing required field 'gasLimit' for ttTransaction")
}

View file

@ -42,8 +42,8 @@ func (v *vmExec) UnmarshalJSON(input []byte) error {
Address *common.UnprefixedAddress `json:"address" gencodec:"required"`
Caller *common.UnprefixedAddress `json:"caller" gencodec:"required"`
Origin *common.UnprefixedAddress `json:"origin" gencodec:"required"`
Code hexutil.Bytes `json:"code" gencodec:"required"`
Data hexutil.Bytes `json:"data" gencodec:"required"`
Code *hexutil.Bytes `json:"code" gencodec:"required"`
Data *hexutil.Bytes `json:"data" gencodec:"required"`
Value *math.HexOrDecimal256 `json:"value" gencodec:"required"`
GasLimit *math.HexOrDecimal64 `json:"gas" gencodec:"required"`
GasPrice *math.HexOrDecimal256 `json:"gasPrice" gencodec:"required"`
@ -67,11 +67,11 @@ func (v *vmExec) UnmarshalJSON(input []byte) error {
if dec.Code == nil {
return errors.New("missing required field 'code' for vmExec")
}
v.Code = dec.Code
v.Code = *dec.Code
if dec.Data == nil {
return errors.New("missing required field 'data' for vmExec")
}
v.Data = dec.Data
v.Data = *dec.Data
if dec.Value == nil {
return errors.New("missing required field 'value' for vmExec")
}

View file

@ -26,46 +26,27 @@ import (
"github.com/EthereumCommonwealth/go-callisto/rlp"
)
// calculator is a utility used by the hasher to calculate the hash value of the tree node.
type calculator struct {
type hasher struct {
tmp *bytes.Buffer
sha hash.Hash
buffer *bytes.Buffer
cachegen, cachelimit uint16
}
// calculatorPool is a set of temporary calculators that may be individually saved and retrieved.
var calculatorPool = sync.Pool{
// hashers live in a global pool.
var hasherPool = sync.Pool{
New: func() interface{} {
return &calculator{buffer: new(bytes.Buffer), sha: sha3.NewKeccak256()}
return &hasher{tmp: new(bytes.Buffer), sha: sha3.NewKeccak256()}
},
}
// hasher hasher is used to calculate the hash value of the whole tree.
type hasher struct {
cachegen uint16
cachelimit uint16
threaded bool
mu sync.Mutex
}
func newHasher(cachegen, cachelimit uint16) *hasher {
h := &hasher{
cachegen: cachegen,
cachelimit: cachelimit,
}
h := hasherPool.Get().(*hasher)
h.cachegen, h.cachelimit = cachegen, cachelimit
return h
}
// newCalculator retrieves a cleaned calculator from calculator pool.
func (h *hasher) newCalculator() *calculator {
calculator := calculatorPool.Get().(*calculator)
calculator.buffer.Reset()
calculator.sha.Reset()
return calculator
}
// returnCalculator returns a no longer used calculator to the pool.
func (h *hasher) returnCalculator(calculator *calculator) {
calculatorPool.Put(calculator)
func returnHasherToPool(h *hasher) {
hasherPool.Put(h)
}
// hash collapses a node down into a hash node, also returning a copy of the
@ -142,49 +123,16 @@ func (h *hasher) hashChildren(original node, db DatabaseWriter) (node, node, err
// Hash the full node's children, caching the newly hashed subtrees
collapsed, cached := n.copy(), n.copy()
// hashChild is a helper to hash a single child, which is called either on the
// same thread as the caller or in a goroutine for the toplevel branching.
hashChild := func(index int, wg *sync.WaitGroup) {
if wg != nil {
defer wg.Done()
}
// Ensure that nil children are encoded as empty strings.
if collapsed.Children[index] == nil {
collapsed.Children[index] = valueNode(nil)
return
}
// Hash all other children properly
var herr error
collapsed.Children[index], cached.Children[index], herr = h.hash(n.Children[index], db, false)
if herr != nil {
h.mu.Lock() // rarely if ever locked, no congenstion
err = herr
h.mu.Unlock()
}
}
// If we're not running in threaded mode yet, span a goroutine for each child
if !h.threaded {
// Disable further threading
h.threaded = true
// Hash all the children concurrently
var wg sync.WaitGroup
for i := 0; i < 16; i++ {
wg.Add(1)
go hashChild(i, &wg)
}
wg.Wait()
// Reenable threading for subsequent hash calls
h.threaded = false
} else {
for i := 0; i < 16; i++ {
hashChild(i, nil)
}
}
if n.Children[i] != nil {
collapsed.Children[i], cached.Children[i], err = h.hash(n.Children[i], db, false)
if err != nil {
return original, original, err
}
} else {
collapsed.Children[i] = valueNode(nil) // Ensure that nil children are encoded as empty strings.
}
}
cached.Children[16] = n.Children[16]
if collapsed.Children[16] == nil {
collapsed.Children[16] = valueNode(nil)
@ -202,29 +150,24 @@ func (h *hasher) store(n node, db DatabaseWriter, force bool) (node, error) {
if _, isHash := n.(hashNode); n == nil || isHash {
return n, nil
}
calculator := h.newCalculator()
defer h.returnCalculator(calculator)
// Generate the RLP encoding of the node
if err := rlp.Encode(calculator.buffer, n); err != nil {
h.tmp.Reset()
if err := rlp.Encode(h.tmp, n); err != nil {
panic("encode error: " + err.Error())
}
if calculator.buffer.Len() < 32 && !force {
if h.tmp.Len() < 32 && !force {
return n, nil // Nodes smaller than 32 bytes are stored inside their parent
}
// Larger nodes are replaced by their hash and stored in the database.
hash, _ := n.cache()
if hash == nil {
calculator.sha.Write(calculator.buffer.Bytes())
hash = hashNode(calculator.sha.Sum(nil))
h.sha.Reset()
h.sha.Write(h.tmp.Bytes())
hash = hashNode(h.sha.Sum(nil))
}
if db != nil {
// db might be a leveldb batch, which is not safe for concurrent writes
h.mu.Lock()
err := db.Put(hash, calculator.buffer.Bytes())
h.mu.Unlock()
return hash, err
return hash, db.Put(hash, h.tmp.Bytes())
}
return hash, nil
}

View file

@ -199,10 +199,10 @@ func (t *SecureTrie) secKey(key []byte) []byte {
// invalid on the next call to hashKey or secKey.
func (t *SecureTrie) hashKey(key []byte) []byte {
h := newHasher(0, 0)
calculator := h.newCalculator()
calculator.sha.Write(key)
buf := calculator.sha.Sum(t.hashKeyBuf[:0])
h.returnCalculator(calculator)
h.sha.Reset()
h.sha.Write(key)
buf := h.sha.Sum(t.hashKeyBuf[:0])
returnHasherToPool(h)
return buf
}

View file

@ -501,5 +501,6 @@ func (t *Trie) hashRoot(db DatabaseWriter) (node, node, error) {
return hashNode(emptyRoot.Bytes()), nil, nil
}
h := newHasher(t.cachegen, t.cachelimit)
defer returnHasherToPool(h)
return h.hash(t.root, db, true)
}

View file

@ -33,7 +33,7 @@ func (c *Criteria) UnmarshalJSON(input []byte) error {
type Criteria struct {
SymKeyID *string `json:"symKeyID"`
PrivateKeyID *string `json:"privateKeyID"`
Sig hexutil.Bytes `json:"sig"`
Sig *hexutil.Bytes `json:"sig"`
MinPow *float64 `json:"minPow"`
Topics []TopicType `json:"topics"`
AllowP2P *bool `json:"allowP2P"`
@ -49,7 +49,7 @@ func (c *Criteria) UnmarshalJSON(input []byte) error {
c.PrivateKeyID = *dec.PrivateKeyID
}
if dec.Sig != nil {
c.Sig = dec.Sig
c.Sig = *dec.Sig
}
if dec.MinPow != nil {
c.MinPow = *dec.MinPow

View file

@ -37,22 +37,22 @@ func (m Message) MarshalJSON() ([]byte, error) {
func (m *Message) UnmarshalJSON(input []byte) error {
type Message struct {
Sig hexutil.Bytes `json:"sig,omitempty"`
Sig *hexutil.Bytes `json:"sig,omitempty"`
TTL *uint32 `json:"ttl"`
Timestamp *uint32 `json:"timestamp"`
Topic *TopicType `json:"topic"`
Payload hexutil.Bytes `json:"payload"`
Padding hexutil.Bytes `json:"padding"`
Payload *hexutil.Bytes `json:"payload"`
Padding *hexutil.Bytes `json:"padding"`
PoW *float64 `json:"pow"`
Hash hexutil.Bytes `json:"hash"`
Dst hexutil.Bytes `json:"recipientPublicKey,omitempty"`
Hash *hexutil.Bytes `json:"hash"`
Dst *hexutil.Bytes `json:"recipientPublicKey,omitempty"`
}
var dec Message
if err := json.Unmarshal(input, &dec); err != nil {
return err
}
if dec.Sig != nil {
m.Sig = dec.Sig
m.Sig = *dec.Sig
}
if dec.TTL != nil {
m.TTL = *dec.TTL
@ -64,19 +64,19 @@ func (m *Message) UnmarshalJSON(input []byte) error {
m.Topic = *dec.Topic
}
if dec.Payload != nil {
m.Payload = dec.Payload
m.Payload = *dec.Payload
}
if dec.Padding != nil {
m.Padding = dec.Padding
m.Padding = *dec.Padding
}
if dec.PoW != nil {
m.PoW = *dec.PoW
}
if dec.Hash != nil {
m.Hash = dec.Hash
m.Hash = *dec.Hash
}
if dec.Dst != nil {
m.Dst = dec.Dst
m.Dst = *dec.Dst
}
return nil
}

View file

@ -40,12 +40,12 @@ func (n NewMessage) MarshalJSON() ([]byte, error) {
func (n *NewMessage) UnmarshalJSON(input []byte) error {
type NewMessage struct {
SymKeyID *string `json:"symKeyID"`
PublicKey hexutil.Bytes `json:"pubKey"`
PublicKey *hexutil.Bytes `json:"pubKey"`
Sig *string `json:"sig"`
TTL *uint32 `json:"ttl"`
Topic *TopicType `json:"topic"`
Payload hexutil.Bytes `json:"payload"`
Padding hexutil.Bytes `json:"padding"`
Payload *hexutil.Bytes `json:"payload"`
Padding *hexutil.Bytes `json:"padding"`
PowTime *uint32 `json:"powTime"`
PowTarget *float64 `json:"powTarget"`
TargetPeer *string `json:"targetPeer"`
@ -58,7 +58,7 @@ func (n *NewMessage) UnmarshalJSON(input []byte) error {
n.SymKeyID = *dec.SymKeyID
}
if dec.PublicKey != nil {
n.PublicKey = dec.PublicKey
n.PublicKey = *dec.PublicKey
}
if dec.Sig != nil {
n.Sig = *dec.Sig
@ -70,10 +70,10 @@ func (n *NewMessage) UnmarshalJSON(input []byte) error {
n.Topic = *dec.Topic
}
if dec.Payload != nil {
n.Payload = dec.Payload
n.Payload = *dec.Payload
}
if dec.Padding != nil {
n.Padding = dec.Padding
n.Padding = *dec.Padding
}
if dec.PowTime != nil {
n.PowTime = *dec.PowTime

View file

@ -116,12 +116,17 @@ func (api *PublicWhisperAPI) SetMaxMessageSize(ctx context.Context, size uint32)
return true, api.w.SetMaxMessageSize(size)
}
// SetMinPow sets the minimum PoW for a message before it is accepted.
// SetMinPow sets the minimum PoW, and notifies the peers.
func (api *PublicWhisperAPI) SetMinPoW(ctx context.Context, pow float64) (bool, error) {
return true, api.w.SetMinimumPoW(pow)
}
// MarkTrustedPeer marks a peer trusted. , which will allow it to send historic (expired) messages.
// SetBloomFilter sets the new value of bloom filter, and notifies the peers.
func (api *PublicWhisperAPI) SetBloomFilter(ctx context.Context, bloom hexutil.Bytes) (bool, error) {
return true, api.w.SetBloomFilter(bloom)
}
// MarkTrustedPeer marks a peer trusted, which will allow it to send historic (expired) messages.
// Note: This function is not adding new nodes, the node needs to exists as a peer.
func (api *PublicWhisperAPI) MarkTrustedPeer(ctx context.Context, enode string) (bool, error) {
n, err := discover.ParseNode(enode)

View file

@ -35,7 +35,6 @@ import (
)
const (
EnvelopeVersion = uint64(0)
ProtocolVersion = uint64(6)
ProtocolVersionStr = "6.0"
ProtocolName = "shh"
@ -52,11 +51,14 @@ const (
paddingMask = byte(3)
signatureFlag = byte(4)
TopicLength = 4
signatureLength = 65
aesKeyLength = 32
AESNonceLength = 12
keyIdSize = 32
TopicLength = 4 // in bytes
signatureLength = 65 // in bytes
aesKeyLength = 32 // in bytes
AESNonceLength = 12 // in bytes
keyIdSize = 32 // in bytes
bloomFilterSize = 64 // in bytes
EnvelopeHeaderLength = 20
MaxMessageSize = uint32(10 * 1024 * 1024) // maximum accepted size of a message.
DefaultMaxMessageSize = uint32(1024 * 1024)
@ -69,9 +71,7 @@ const (
transmissionCycle = 300 * time.Millisecond
DefaultTTL = 50 // seconds
SynchAllowance = 10 // seconds
EnvelopeHeaderLength = 20
DefaultSyncAllowance = 10 // seconds
)
type unknownVersionError uint64

View file

@ -43,8 +43,10 @@ type Envelope struct {
Nonce uint64
pow float64 // Message-specific PoW as described in the Whisper specification.
// the following variables should not be accessed directly, use the corresponding function instead: Hash(), Bloom()
hash common.Hash // Cached hash of the envelope to avoid rehashing every time.
// Don't access hash directly, use Hash() function instead.
bloom []byte
}
// size returns the size of envelope as it is sent (i.e. public fields only)
@ -227,3 +229,30 @@ func (e *Envelope) Open(watcher *Filter) (msg *ReceivedMessage) {
}
return msg
}
// Bloom maps 4-bytes Topic into 64-byte bloom filter with 3 bits set (at most).
func (e *Envelope) Bloom() []byte {
if e.bloom == nil {
e.bloom = TopicToBloom(e.Topic)
}
return e.bloom
}
// TopicToBloom converts the topic (4 bytes) to the bloom filter (64 bytes)
func TopicToBloom(topic TopicType) []byte {
b := make([]byte, bloomFilterSize)
var index [3]int
for j := 0; j < 3; j++ {
index[j] = int(topic[j])
if (topic[3] & (1 << uint(j))) != 0 {
index[j] += 256
}
}
for j := 0; j < 3; j++ {
byteIndex := index[j] / 8
bitIndex := index[j] % 8
b[byteIndex] = (1 << uint(bitIndex))
}
return b
}

View file

@ -33,7 +33,7 @@ func (c *Criteria) UnmarshalJSON(input []byte) error {
type Criteria struct {
SymKeyID *string `json:"symKeyID"`
PrivateKeyID *string `json:"privateKeyID"`
Sig hexutil.Bytes `json:"sig"`
Sig *hexutil.Bytes `json:"sig"`
MinPow *float64 `json:"minPow"`
Topics []TopicType `json:"topics"`
AllowP2P *bool `json:"allowP2P"`
@ -49,7 +49,7 @@ func (c *Criteria) UnmarshalJSON(input []byte) error {
c.PrivateKeyID = *dec.PrivateKeyID
}
if dec.Sig != nil {
c.Sig = dec.Sig
c.Sig = *dec.Sig
}
if dec.MinPow != nil {
c.MinPow = *dec.MinPow

View file

@ -37,22 +37,22 @@ func (m Message) MarshalJSON() ([]byte, error) {
func (m *Message) UnmarshalJSON(input []byte) error {
type Message struct {
Sig hexutil.Bytes `json:"sig,omitempty"`
Sig *hexutil.Bytes `json:"sig,omitempty"`
TTL *uint32 `json:"ttl"`
Timestamp *uint32 `json:"timestamp"`
Topic *TopicType `json:"topic"`
Payload hexutil.Bytes `json:"payload"`
Padding hexutil.Bytes `json:"padding"`
Payload *hexutil.Bytes `json:"payload"`
Padding *hexutil.Bytes `json:"padding"`
PoW *float64 `json:"pow"`
Hash hexutil.Bytes `json:"hash"`
Dst hexutil.Bytes `json:"recipientPublicKey,omitempty"`
Hash *hexutil.Bytes `json:"hash"`
Dst *hexutil.Bytes `json:"recipientPublicKey,omitempty"`
}
var dec Message
if err := json.Unmarshal(input, &dec); err != nil {
return err
}
if dec.Sig != nil {
m.Sig = dec.Sig
m.Sig = *dec.Sig
}
if dec.TTL != nil {
m.TTL = *dec.TTL
@ -64,19 +64,19 @@ func (m *Message) UnmarshalJSON(input []byte) error {
m.Topic = *dec.Topic
}
if dec.Payload != nil {
m.Payload = dec.Payload
m.Payload = *dec.Payload
}
if dec.Padding != nil {
m.Padding = dec.Padding
m.Padding = *dec.Padding
}
if dec.PoW != nil {
m.PoW = *dec.PoW
}
if dec.Hash != nil {
m.Hash = dec.Hash
m.Hash = *dec.Hash
}
if dec.Dst != nil {
m.Dst = dec.Dst
m.Dst = *dec.Dst
}
return nil
}

View file

@ -40,12 +40,12 @@ func (n NewMessage) MarshalJSON() ([]byte, error) {
func (n *NewMessage) UnmarshalJSON(input []byte) error {
type NewMessage struct {
SymKeyID *string `json:"symKeyID"`
PublicKey hexutil.Bytes `json:"pubKey"`
PublicKey *hexutil.Bytes `json:"pubKey"`
Sig *string `json:"sig"`
TTL *uint32 `json:"ttl"`
Topic *TopicType `json:"topic"`
Payload hexutil.Bytes `json:"payload"`
Padding hexutil.Bytes `json:"padding"`
Payload *hexutil.Bytes `json:"payload"`
Padding *hexutil.Bytes `json:"padding"`
PowTime *uint32 `json:"powTime"`
PowTarget *float64 `json:"powTarget"`
TargetPeer *string `json:"targetPeer"`
@ -58,7 +58,7 @@ func (n *NewMessage) UnmarshalJSON(input []byte) error {
n.SymKeyID = *dec.SymKeyID
}
if dec.PublicKey != nil {
n.PublicKey = dec.PublicKey
n.PublicKey = *dec.PublicKey
}
if dec.Sig != nil {
n.Sig = *dec.Sig
@ -70,10 +70,10 @@ func (n *NewMessage) UnmarshalJSON(input []byte) error {
n.Topic = *dec.Topic
}
if dec.Payload != nil {
n.Payload = dec.Payload
n.Payload = *dec.Payload
}
if dec.Padding != nil {
n.Padding = dec.Padding
n.Padding = *dec.Padding
}
if dec.PowTime != nil {
n.PowTime = *dec.PowTime

View file

@ -36,6 +36,7 @@ type Peer struct {
trusted bool
powRequirement float64
bloomFilter []byte // may contain nil in case of full node
known *set.Set // Messages already known by the peer to avoid wasting bandwidth
@ -74,8 +75,12 @@ func (p *Peer) handshake() error {
// Send the handshake status message asynchronously
errc := make(chan error, 1)
go func() {
errc <- p2p.Send(p.ws, statusCode, ProtocolVersion)
pow := p.host.MinPow()
powConverted := math.Float64bits(pow)
bloom := p.host.BloomFilter()
errc <- p2p.SendItems(p.ws, statusCode, ProtocolVersion, powConverted, bloom)
}()
// Fetch the remote status packet and verify protocol match
packet, err := p.ws.ReadMsg()
if err != nil {
@ -85,14 +90,42 @@ func (p *Peer) handshake() error {
return fmt.Errorf("peer [%x] sent packet %x before status packet", p.ID(), packet.Code)
}
s := rlp.NewStream(packet.Payload, uint64(packet.Size))
peerVersion, err := s.Uint()
_, err = s.List()
if err != nil {
return fmt.Errorf("peer [%x] sent bad status message: %v", p.ID(), err)
}
peerVersion, err := s.Uint()
if err != nil {
return fmt.Errorf("peer [%x] sent bad status message (unable to decode version): %v", p.ID(), err)
}
if peerVersion != ProtocolVersion {
return fmt.Errorf("peer [%x]: protocol version mismatch %d != %d", p.ID(), peerVersion, ProtocolVersion)
}
// Wait until out own status is consumed too
// only version is mandatory, subsequent parameters are optional
powRaw, err := s.Uint()
if err == nil {
pow := math.Float64frombits(powRaw)
if math.IsInf(pow, 0) || math.IsNaN(pow) || pow < 0.0 {
return fmt.Errorf("peer [%x] sent bad status message: invalid pow", p.ID())
}
p.powRequirement = pow
var bloom []byte
err = s.Decode(&bloom)
if err == nil {
sz := len(bloom)
if sz != bloomFilterSize && sz != 0 {
return fmt.Errorf("peer [%x] sent bad status message: wrong bloom filter size %d", p.ID(), sz)
}
if isFullNode(bloom) {
p.bloomFilter = nil
} else {
p.bloomFilter = bloom
}
}
}
if err := <-errc; err != nil {
return fmt.Errorf("peer [%x] failed to send status packet: %v", p.ID(), err)
}
@ -156,7 +189,7 @@ func (p *Peer) broadcast() error {
envelopes := p.host.Envelopes()
bundle := make([]*Envelope, 0, len(envelopes))
for _, envelope := range envelopes {
if !p.marked(envelope) && envelope.PoW() >= p.powRequirement {
if !p.marked(envelope) && envelope.PoW() >= p.powRequirement && p.bloomMatch(envelope) {
bundle = append(bundle, envelope)
}
}
@ -186,3 +219,16 @@ func (p *Peer) notifyAboutPowRequirementChange(pow float64) error {
i := math.Float64bits(pow)
return p2p.Send(p.ws, powRequirementCode, i)
}
func (p *Peer) notifyAboutBloomFilterChange(bloom []byte) error {
return p2p.Send(p.ws, bloomFilterExCode, bloom)
}
func (p *Peer) bloomMatch(env *Envelope) bool {
if p.bloomFilter == nil {
// no filter - full node, accepts all envelops
return true
}
return bloomFilterMatch(p.bloomFilter, env.Bloom())
}

View file

@ -20,6 +20,7 @@ import (
"bytes"
"crypto/ecdsa"
"fmt"
mrand "math/rand"
"net"
"sync"
"testing"
@ -87,6 +88,9 @@ var nodes [NumNodes]*TestNode
var sharedKey []byte = []byte("some arbitrary data here")
var sharedTopic TopicType = TopicType{0xF, 0x1, 0x2, 0}
var expectedMessage []byte = []byte("per rectum ad astra")
var masterBloomFilter []byte
var masterPow = 0.00000001
var round int = 1
func TestSimulation(t *testing.T) {
// create a chain of whisper nodes,
@ -104,8 +108,13 @@ func TestSimulation(t *testing.T) {
// check if each node have received and decrypted exactly one message
checkPropagation(t, true)
// send protocol-level messages (powRequirementCode) and check the new PoW requirement values
powReqExchange(t)
// check if Status message was correctly decoded
checkBloomFilterExchange(t)
checkPowExchange(t)
// send new pow and bloom exchange messages
resetParams(t)
round++
// node #1 sends one expected (decryptable) message
sendMsg(t, true, 1)
@ -113,18 +122,65 @@ func TestSimulation(t *testing.T) {
// check if each node (except node #0) have received and decrypted exactly one message
checkPropagation(t, false)
for i := 1; i < NumNodes; i++ {
time.Sleep(20 * time.Millisecond)
sendMsg(t, true, i)
}
// check if corresponding protocol-level messages were correctly decoded
checkPowExchangeForNodeZero(t)
checkBloomFilterExchange(t)
stopServers()
}
func resetParams(t *testing.T) {
// change pow only for node zero
masterPow = 7777777.0
nodes[0].shh.SetMinimumPoW(masterPow)
// change bloom for all nodes
masterBloomFilter = TopicToBloom(sharedTopic)
for i := 0; i < NumNodes; i++ {
nodes[i].shh.SetBloomFilter(masterBloomFilter)
}
}
func initBloom(t *testing.T) {
masterBloomFilter = make([]byte, bloomFilterSize)
_, err := mrand.Read(masterBloomFilter)
if err != nil {
t.Fatalf("rand failed: %s.", err)
}
msgBloom := TopicToBloom(sharedTopic)
masterBloomFilter = addBloom(masterBloomFilter, msgBloom)
for i := 0; i < 32; i++ {
masterBloomFilter[i] = 0xFF
}
if !bloomFilterMatch(masterBloomFilter, msgBloom) {
t.Fatalf("bloom mismatch on initBloom.")
}
}
func initialize(t *testing.T) {
initBloom(t)
var err error
ip := net.IPv4(127, 0, 0, 1)
port0 := 30303
for i := 0; i < NumNodes; i++ {
var node TestNode
b := make([]byte, bloomFilterSize)
copy(b, masterBloomFilter)
node.shh = New(&DefaultConfig)
node.shh.SetMinimumPowTest(0.00000001)
node.shh.SetMinimumPoW(masterPow)
node.shh.SetBloomFilter(b)
if !bytes.Equal(node.shh.BloomFilter(), masterBloomFilter) {
t.Fatalf("bloom mismatch on init.")
}
node.shh.Start(nil)
topics := make([]TopicType, 0)
topics = append(topics, sharedTopic)
@ -206,7 +262,7 @@ func checkPropagation(t *testing.T, includingNodeZero bool) {
for i := first; i < NumNodes; i++ {
f := nodes[i].shh.GetFilter(nodes[i].filerId)
if f == nil {
t.Fatalf("failed to get filterId %s from node %d.", nodes[i].filerId, i)
t.Fatalf("failed to get filterId %s from node %d, round %d.", nodes[i].filerId, i, round)
}
mail := f.Retrieve()
@ -332,34 +388,43 @@ func TestPeerBasic(t *testing.T) {
}
}
func powReqExchange(t *testing.T) {
for i, node := range nodes {
for peer := range node.shh.peers {
if peer.powRequirement > 1000.0 {
t.Fatalf("node %d: one of the peers' pow requirement is too big (%f).", i, peer.powRequirement)
}
}
}
const pow float64 = 7777777.0
nodes[0].shh.SetMinimumPoW(pow)
// wait until all the messages are delivered
time.Sleep(64 * time.Millisecond)
func checkPowExchangeForNodeZero(t *testing.T) {
cnt := 0
for i, node := range nodes {
for peer := range node.shh.peers {
if peer.peer.ID() == discover.PubkeyID(&nodes[0].id.PublicKey) {
cnt++
if peer.powRequirement != pow {
if peer.powRequirement != masterPow {
t.Fatalf("node %d: failed to set the new pow requirement.", i)
}
}
}
}
if cnt == 0 {
t.Fatalf("no matching peers found.")
}
}
func checkPowExchange(t *testing.T) {
for i, node := range nodes {
for peer := range node.shh.peers {
if peer.peer.ID() != discover.PubkeyID(&nodes[0].id.PublicKey) {
if peer.powRequirement != masterPow {
t.Fatalf("node %d: failed to exchange pow requirement in round %d; expected %f, got %f",
i, round, masterPow, peer.powRequirement)
}
}
}
}
}
func checkBloomFilterExchange(t *testing.T) {
for i, node := range nodes {
for peer := range node.shh.peers {
if !bytes.Equal(peer.bloomFilter, masterBloomFilter) {
t.Fatalf("node %d: failed to exchange bloom filter requirement in round %d. \n%x expected \n%x got",
i, round, masterBloomFilter, peer.bloomFilter)
}
}
}
}

View file

@ -48,9 +48,12 @@ type Statistics struct {
}
const (
minPowIdx = iota // Minimal PoW required by the whisper node
maxMsgSizeIdx = iota // Maximal message length allowed by the whisper node
overflowIdx = iota // Indicator of message queue overflow
overflowIdx // Indicator of message queue overflow
minPowIdx // Minimal PoW required by the whisper node
minPowToleranceIdx // Minimal PoW tolerated by the whisper node for a limited time
bloomFilterIdx // Bloom filter for topics of interest for this node
bloomFilterToleranceIdx // Bloom filter tolerated by the whisper node for a limited time
)
// Whisper represents a dark communication interface through the Ethereum
@ -76,7 +79,7 @@ type Whisper struct {
settings syncmap.Map // holds configuration settings that can be dynamically changed
reactionAllowance int // maximum time in seconds allowed to process the whisper-related messages
syncAllowance int // maximum time in seconds allowed to process the whisper-related messages
statsMu sync.Mutex // guard stats
stats Statistics // Statistics of whisper node
@ -99,7 +102,7 @@ func New(cfg *Config) *Whisper {
messageQueue: make(chan *Envelope, messageQueueLimit),
p2pMsgQueue: make(chan *Envelope, messageQueueLimit),
quit: make(chan struct{}),
reactionAllowance: SynchAllowance,
syncAllowance: DefaultSyncAllowance,
}
whisper.filters = NewFilters(whisper)
@ -126,11 +129,55 @@ func New(cfg *Config) *Whisper {
return whisper
}
// MinPow returns the PoW value required by this node.
func (w *Whisper) MinPow() float64 {
val, _ := w.settings.Load(minPowIdx)
val, exist := w.settings.Load(minPowIdx)
if !exist || val == nil {
return DefaultMinimumPoW
}
v, ok := val.(float64)
if !ok {
log.Error("Error loading minPowIdx, using default")
return DefaultMinimumPoW
}
return v
}
// MinPowTolerance returns the value of minimum PoW which is tolerated for a limited
// time after PoW was changed. If sufficient time have elapsed or no change of PoW
// have ever occurred, the return value will be the same as return value of MinPow().
func (w *Whisper) MinPowTolerance() float64 {
val, exist := w.settings.Load(minPowToleranceIdx)
if !exist || val == nil {
return DefaultMinimumPoW
}
return val.(float64)
}
// BloomFilter returns the aggregated bloom filter for all the topics of interest.
// The nodes are required to send only messages that match the advertised bloom filter.
// If a message does not match the bloom, it will tantamount to spam, and the peer will
// be disconnected.
func (w *Whisper) BloomFilter() []byte {
val, exist := w.settings.Load(bloomFilterIdx)
if !exist || val == nil {
return nil
}
return val.([]byte)
}
// BloomFilterTolerance returns the bloom filter which is tolerated for a limited
// time after new bloom was advertised to the peers. If sufficient time have elapsed
// or no change of bloom filter have ever occurred, the return value will be the same
// as return value of BloomFilter().
func (w *Whisper) BloomFilterTolerance() []byte {
val, exist := w.settings.Load(bloomFilterToleranceIdx)
if !exist || val == nil {
return nil
}
return val.([]byte)
}
// MaxMessageSize returns the maximum accepted message size.
func (w *Whisper) MaxMessageSize() uint32 {
val, _ := w.settings.Load(maxMsgSizeIdx)
@ -180,18 +227,40 @@ func (w *Whisper) SetMaxMessageSize(size uint32) error {
return nil
}
// SetBloomFilter sets the new bloom filter
func (w *Whisper) SetBloomFilter(bloom []byte) error {
if len(bloom) != bloomFilterSize {
return fmt.Errorf("invalid bloom filter size: %d", len(bloom))
}
b := make([]byte, bloomFilterSize)
copy(b, bloom)
w.settings.Store(bloomFilterIdx, b)
w.notifyPeersAboutBloomFilterChange(b)
go func() {
// allow some time before all the peers have processed the notification
time.Sleep(time.Duration(w.syncAllowance) * time.Second)
w.settings.Store(bloomFilterToleranceIdx, b)
}()
return nil
}
// SetMinimumPoW sets the minimal PoW required by this node
func (w *Whisper) SetMinimumPoW(val float64) error {
if val < 0.0 {
return fmt.Errorf("invalid PoW: %f", val)
}
w.settings.Store(minPowIdx, val)
w.notifyPeersAboutPowRequirementChange(val)
go func() {
// allow some time before all the peers have processed the notification
time.Sleep(time.Duration(w.reactionAllowance) * time.Second)
w.settings.Store(minPowIdx, val)
time.Sleep(time.Duration(w.syncAllowance) * time.Second)
w.settings.Store(minPowToleranceIdx, val)
}()
return nil
@ -199,21 +268,13 @@ func (w *Whisper) SetMinimumPoW(val float64) error {
// SetMinimumPoW sets the minimal PoW in test environment
func (w *Whisper) SetMinimumPowTest(val float64) {
w.notifyPeersAboutPowRequirementChange(val)
w.settings.Store(minPowIdx, val)
w.notifyPeersAboutPowRequirementChange(val)
w.settings.Store(minPowToleranceIdx, val)
}
func (w *Whisper) notifyPeersAboutPowRequirementChange(pow float64) {
arr := make([]*Peer, len(w.peers))
i := 0
w.peerMu.Lock()
for p := range w.peers {
arr[i] = p
i++
}
w.peerMu.Unlock()
arr := w.getPeers()
for _, p := range arr {
err := p.notifyAboutPowRequirementChange(pow)
if err != nil {
@ -221,11 +282,37 @@ func (w *Whisper) notifyPeersAboutPowRequirementChange(pow float64) {
err = p.notifyAboutPowRequirementChange(pow)
}
if err != nil {
log.Warn("oversized message received", "peer", p.ID(), "error", err)
log.Warn("failed to notify peer about new pow requirement", "peer", p.ID(), "error", err)
}
}
}
func (w *Whisper) notifyPeersAboutBloomFilterChange(bloom []byte) {
arr := w.getPeers()
for _, p := range arr {
err := p.notifyAboutBloomFilterChange(bloom)
if err != nil {
// allow one retry
err = p.notifyAboutBloomFilterChange(bloom)
}
if err != nil {
log.Warn("failed to notify peer about new bloom filter", "peer", p.ID(), "error", err)
}
}
}
func (w *Whisper) getPeers() []*Peer {
arr := make([]*Peer, len(w.peers))
i := 0
w.peerMu.Lock()
for p := range w.peers {
arr[i] = p
i++
}
w.peerMu.Unlock()
return arr
}
// getPeer retrieves peer by ID
func (w *Whisper) getPeer(peerID []byte) (*Peer, error) {
w.peerMu.Lock()
@ -459,7 +546,28 @@ func (w *Whisper) GetSymKey(id string) ([]byte, error) {
// Subscribe installs a new message handler used for filtering, decrypting
// and subsequent storing of incoming messages.
func (w *Whisper) Subscribe(f *Filter) (string, error) {
return w.filters.Install(f)
s, err := w.filters.Install(f)
if err == nil {
w.updateBloomFilter(f)
}
return s, err
}
// updateBloomFilter recalculates the new value of bloom filter,
// and informs the peers if necessary.
func (w *Whisper) updateBloomFilter(f *Filter) {
aggregate := make([]byte, bloomFilterSize)
for _, t := range f.Topics {
top := BytesToTopic(t)
b := TopicToBloom(top)
aggregate = addBloom(aggregate, b)
}
if !bloomFilterMatch(w.BloomFilter(), aggregate) {
// existing bloom filter must be updated
aggregate = addBloom(w.BloomFilter(), aggregate)
w.SetBloomFilter(aggregate)
}
}
// GetFilter returns the filter by id.
@ -592,7 +700,21 @@ func (wh *Whisper) runMessageLoop(p *Peer, rw p2p.MsgReadWriter) error {
}
p.powRequirement = f
case bloomFilterExCode:
// to be implemented
var bloom []byte
err := packet.Decode(&bloom)
if err == nil && len(bloom) != bloomFilterSize {
err = fmt.Errorf("wrong bloom filter size %d", len(bloom))
}
if err != nil {
log.Warn("failed to decode bloom filter exchange message, peer will be disconnected", "peer", p.peer.ID(), "err", err)
return errors.New("invalid bloom filter exchange message")
}
if isFullNode(bloom) {
p.bloomFilter = nil
} else {
p.bloomFilter = bloom
}
case p2pMessageCode:
// peer-to-peer message, sent directly to peer bypassing PoW checks, etc.
// this message is not supposed to be forwarded to other peers, and
@ -633,7 +755,7 @@ func (wh *Whisper) add(envelope *Envelope) (bool, error) {
sent := envelope.Expiry - envelope.TTL
if sent > now {
if sent-SynchAllowance > now {
if sent-DefaultSyncAllowance > now {
return false, fmt.Errorf("envelope created in the future [%x]", envelope.Hash())
} else {
// recalculate PoW, adjusted for the time difference, plus one second for latency
@ -642,7 +764,7 @@ func (wh *Whisper) add(envelope *Envelope) (bool, error) {
}
if envelope.Expiry < now {
if envelope.Expiry+SynchAllowance*2 < now {
if envelope.Expiry+DefaultSyncAllowance*2 < now {
return false, fmt.Errorf("very old message")
} else {
log.Debug("expired envelope dropped", "hash", envelope.Hash().Hex())
@ -655,11 +777,22 @@ func (wh *Whisper) add(envelope *Envelope) (bool, error) {
}
if envelope.PoW() < wh.MinPow() {
log.Debug("envelope with low PoW dropped", "PoW", envelope.PoW(), "hash", envelope.Hash().Hex())
return false, nil // drop envelope without error for now
// maybe the value was recently changed, and the peers did not adjust yet.
// in this case the previous value is retrieved by MinPowTolerance()
// for a short period of peer synchronization.
if envelope.PoW() < wh.MinPowTolerance() {
return false, fmt.Errorf("envelope with low PoW received: PoW=%f, hash=[%v]", envelope.PoW(), envelope.Hash().Hex())
}
}
// once the status message includes the PoW requirement, an error should be returned here:
//return false, fmt.Errorf("envelope with low PoW dropped: PoW=%f, hash=[%v]", envelope.PoW(), envelope.Hash().Hex())
if !bloomFilterMatch(wh.BloomFilter(), envelope.Bloom()) {
// maybe the value was recently changed, and the peers did not adjust yet.
// in this case the previous value is retrieved by BloomFilterTolerance()
// for a short period of peer synchronization.
if !bloomFilterMatch(wh.BloomFilterTolerance(), envelope.Bloom()) {
return false, fmt.Errorf("envelope does not match bloom filter, hash=[%v], bloom: \n%x \n%x \n%x",
envelope.Hash().Hex(), wh.BloomFilter(), envelope.Bloom(), envelope.Topic)
}
}
hash := envelope.Hash()
@ -897,3 +1030,40 @@ func GenerateRandomID() (id string, err error) {
id = common.Bytes2Hex(buf)
return id, err
}
func isFullNode(bloom []byte) bool {
if bloom == nil {
return true
}
for _, b := range bloom {
if b != 255 {
return false
}
}
return true
}
func bloomFilterMatch(filter, sample []byte) bool {
if filter == nil {
// full node, accepts all messages
return true
}
for i := 0; i < bloomFilterSize; i++ {
f := filter[i]
s := sample[i]
if (f | s) != f {
return false
}
}
return true
}
func addBloom(a, b []byte) []byte {
c := make([]byte, bloomFilterSize)
for i := 0; i < bloomFilterSize; i++ {
c[i] = a[i] | b[i]
}
return c
}

View file

@ -843,3 +843,64 @@ func TestSymmetricSendKeyMismatch(t *testing.T) {
t.Fatalf("received a message when keys weren't matching")
}
}
func TestBloom(t *testing.T) {
topic := TopicType{0, 0, 255, 6}
b := TopicToBloom(topic)
x := make([]byte, bloomFilterSize)
x[0] = byte(1)
x[32] = byte(1)
x[bloomFilterSize-1] = byte(128)
if !bloomFilterMatch(x, b) || !bloomFilterMatch(b, x) {
t.Fatalf("bloom filter does not match the mask")
}
_, err := mrand.Read(b)
if err != nil {
t.Fatalf("math rand error")
}
_, err = mrand.Read(x)
if err != nil {
t.Fatalf("math rand error")
}
if !bloomFilterMatch(b, b) {
t.Fatalf("bloom filter does not match self")
}
x = addBloom(x, b)
if !bloomFilterMatch(x, b) {
t.Fatalf("bloom filter does not match combined bloom")
}
if !isFullNode(nil) {
t.Fatalf("isFullNode did not recognize nil as full node")
}
x[17] = 254
if isFullNode(x) {
t.Fatalf("isFullNode false positive")
}
for i := 0; i < bloomFilterSize; i++ {
b[i] = byte(255)
}
if !isFullNode(b) {
t.Fatalf("isFullNode false negative")
}
if bloomFilterMatch(x, b) {
t.Fatalf("bloomFilterMatch false positive")
}
if !bloomFilterMatch(b, x) {
t.Fatalf("bloomFilterMatch false negative")
}
w := New(&DefaultConfig)
f := w.BloomFilter()
if f != nil {
t.Fatalf("wrong bloom on creation")
}
err = w.SetBloomFilter(x)
if err != nil {
t.Fatalf("failed to set bloom filter: %s", err)
}
f = w.BloomFilter()
if !bloomFilterMatch(f, x) || !bloomFilterMatch(x, f) {
t.Fatalf("retireved wrong bloom filter")
}
}