forked from cerc-io/plugeth
399 lines
12 KiB
Go
399 lines
12 KiB
Go
package registrar
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import (
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"encoding/binary"
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"fmt"
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"math/big"
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"regexp"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/logger"
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"github.com/ethereum/go-ethereum/logger/glog"
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)
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/*
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Registrar implements the Ethereum name registrar services mapping
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- arbitrary strings to ethereum addresses
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- hashes to hashes
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- hashes to arbitrary strings
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(likely will provide lookup service for all three)
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The Registrar is used by
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* the roundtripper transport implementation of
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url schemes to resolve domain names and services that register these names
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* contract info retrieval (NatSpec).
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The Registrar uses 3 contracts on the blockchain:
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* GlobalRegistrar: Name (string) -> Address (Owner)
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* HashReg : Key Hash (hash of domain name or contract code) -> Content Hash
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* UrlHint : Content Hash -> Url Hint
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These contracts are (currently) not included in the genesis block.
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Each Set<X> needs to be called once on each blockchain/network once.
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Contract addresses need to be set (HashReg and UrlHint retrieved from the global
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registrar the first time any Registrar method is called in a client session
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So the caller needs to make sure the relevant environment initialised the desired
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contracts
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*/
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var (
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UrlHintAddr = "0x0"
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HashRegAddr = "0x0"
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// GlobalRegistrarAddr = "0x0"
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GlobalRegistrarAddr = "0xc6d9d2cd449a754c494264e1809c50e34d64562b"
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zero = regexp.MustCompile("^(0x)?0*$")
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)
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const (
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trueHex = "0000000000000000000000000000000000000000000000000000000000000001"
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falseHex = "0000000000000000000000000000000000000000000000000000000000000000"
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)
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func abiSignature(s string) string {
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return common.ToHex(crypto.Sha3([]byte(s))[:4])
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}
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var (
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HashRegName = "HashReg"
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UrlHintName = "UrlHint"
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registerContentHashAbi = abiSignature("register(uint256,uint256)")
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registerUrlAbi = abiSignature("register(uint256,uint8,uint256)")
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setOwnerAbi = abiSignature("setowner()")
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reserveAbi = abiSignature("reserve(bytes32)")
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resolveAbi = abiSignature("addr(bytes32)")
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registerAbi = abiSignature("setAddress(bytes32,address,bool)")
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addressAbiPrefix = falseHex[:24]
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)
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// Registrar's backend is defined as an interface (implemented by xeth, but could be remote)
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type Backend interface {
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StorageAt(string, string) string
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Transact(fromStr, toStr, nonceStr, valueStr, gasStr, gasPriceStr, codeStr string) (string, error)
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Call(fromStr, toStr, valueStr, gasStr, gasPriceStr, codeStr string) (string, string, error)
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}
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// TODO Registrar should also just implement The Resolver and Registry interfaces
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// Simplify for now.
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type VersionedRegistrar interface {
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Resolver(*big.Int) *Registrar
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Registry() *Registrar
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}
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type Registrar struct {
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backend Backend
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}
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func New(b Backend) (res *Registrar) {
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res = &Registrar{b}
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return
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}
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func (self *Registrar) SetGlobalRegistrar(namereg string, addr common.Address) (err error) {
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if namereg != "" {
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GlobalRegistrarAddr = namereg
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return
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}
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if GlobalRegistrarAddr == "0x0" || GlobalRegistrarAddr == "0x" {
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if (addr == common.Address{}) {
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err = fmt.Errorf("GlobalRegistrar address not found and sender for creation not given")
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return
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} else {
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GlobalRegistrarAddr, err = self.backend.Transact(addr.Hex(), "", "", "", "800000", "", GlobalRegistrarCode)
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if err != nil {
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err = fmt.Errorf("GlobalRegistrar address not found and sender for creation failed: %v", err)
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return
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}
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}
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}
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return
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}
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func (self *Registrar) SetHashReg(hashreg string, addr common.Address) (err error) {
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if hashreg != "" {
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HashRegAddr = hashreg
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} else {
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if !zero.MatchString(HashRegAddr) {
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return
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}
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nameHex, extra := encodeName(HashRegName, 2)
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hashRegAbi := resolveAbi + nameHex + extra
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glog.V(logger.Detail).Infof("\ncall HashRegAddr %v with %v\n", GlobalRegistrarAddr, hashRegAbi)
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HashRegAddr, _, err = self.backend.Call("", GlobalRegistrarAddr, "", "", "", hashRegAbi)
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if err != nil || zero.MatchString(HashRegAddr) {
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if (addr == common.Address{}) {
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err = fmt.Errorf("HashReg address not found and sender for creation not given")
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return
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}
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HashRegAddr, err = self.backend.Transact(addr.Hex(), "", "", "", "", "", HashRegCode)
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if err != nil {
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err = fmt.Errorf("HashReg address not found and sender for creation failed: %v", err)
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}
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glog.V(logger.Detail).Infof("created HashRegAddr @ %v\n", HashRegAddr)
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} else {
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glog.V(logger.Detail).Infof("HashRegAddr found at @ %v\n", HashRegAddr)
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return
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}
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}
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// register as HashReg
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self.ReserveName(addr, HashRegName)
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self.SetAddressToName(addr, HashRegName, common.HexToAddress(HashRegAddr))
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return
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}
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func (self *Registrar) SetUrlHint(urlhint string, addr common.Address) (err error) {
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if urlhint != "" {
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UrlHintAddr = urlhint
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} else {
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if !zero.MatchString(UrlHintAddr) {
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return
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}
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nameHex, extra := encodeName(UrlHintName, 2)
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urlHintAbi := resolveAbi + nameHex + extra
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glog.V(logger.Detail).Infof("UrlHint address query data: %s to %s", urlHintAbi, GlobalRegistrarAddr)
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UrlHintAddr, _, err = self.backend.Call("", GlobalRegistrarAddr, "", "", "", urlHintAbi)
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if err != nil || zero.MatchString(UrlHintAddr) {
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if (addr == common.Address{}) {
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err = fmt.Errorf("UrlHint address not found and sender for creation not given")
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return
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}
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UrlHintAddr, err = self.backend.Transact(addr.Hex(), "", "", "", "210000", "", UrlHintCode)
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if err != nil {
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err = fmt.Errorf("UrlHint address not found and sender for creation failed: %v", err)
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}
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glog.V(logger.Detail).Infof("created UrlHint @ %v\n", HashRegAddr)
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} else {
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glog.V(logger.Detail).Infof("UrlHint found @ %v\n", HashRegAddr)
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return
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}
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}
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// register as UrlHint
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self.ReserveName(addr, UrlHintName)
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self.SetAddressToName(addr, UrlHintName, common.HexToAddress(UrlHintAddr))
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return
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}
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// ReserveName(from, name) reserves name for the sender address in the globalRegistrar
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// the tx needs to be mined to take effect
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func (self *Registrar) ReserveName(address common.Address, name string) (txh string, err error) {
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nameHex, extra := encodeName(name, 2)
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abi := reserveAbi + nameHex + extra
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glog.V(logger.Detail).Infof("Reserve data: %s", abi)
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return self.backend.Transact(
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address.Hex(),
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GlobalRegistrarAddr,
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"", "", "", "",
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abi,
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)
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}
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// SetAddressToName(from, name, addr) will set the Address to address for name
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// in the globalRegistrar using from as the sender of the transaction
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// the tx needs to be mined to take effect
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func (self *Registrar) SetAddressToName(from common.Address, name string, address common.Address) (txh string, err error) {
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nameHex, extra := encodeName(name, 6)
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addrHex := encodeAddress(address)
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abi := registerAbi + nameHex + addrHex + trueHex + extra
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glog.V(logger.Detail).Infof("SetAddressToName data: %s to %s ", abi, GlobalRegistrarAddr)
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return self.backend.Transact(
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from.Hex(),
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GlobalRegistrarAddr,
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"", "", "", "",
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abi,
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)
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}
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// NameToAddr(from, name) queries the registrar for the address on name
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func (self *Registrar) NameToAddr(from common.Address, name string) (address common.Address, err error) {
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nameHex, extra := encodeName(name, 2)
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abi := resolveAbi + nameHex + extra
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glog.V(logger.Detail).Infof("NameToAddr data: %s", abi)
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res, _, err := self.backend.Call(
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from.Hex(),
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GlobalRegistrarAddr,
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"", "", "",
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abi,
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)
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if err != nil {
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return
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}
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address = common.HexToAddress(res)
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return
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}
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// called as first step in the registration process on HashReg
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func (self *Registrar) SetOwner(address common.Address) (txh string, err error) {
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return self.backend.Transact(
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address.Hex(),
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HashRegAddr,
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"", "", "", "",
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setOwnerAbi,
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)
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}
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// registers some content hash to a key/code hash
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// e.g., the contract Info combined Json Doc's ContentHash
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// to CodeHash of a contract or hash of a domain
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func (self *Registrar) SetHashToHash(address common.Address, codehash, dochash common.Hash) (txh string, err error) {
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_, err = self.SetOwner(address)
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if err != nil {
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return
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}
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codehex := common.Bytes2Hex(codehash[:])
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dochex := common.Bytes2Hex(dochash[:])
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data := registerContentHashAbi + codehex + dochex
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glog.V(logger.Detail).Infof("SetHashToHash data: %s sent to %v\n", data, HashRegAddr)
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return self.backend.Transact(
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address.Hex(),
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HashRegAddr,
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"", "", "", "",
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data,
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)
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}
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// SetUrlToHash(from, hash, url) registers a url to a content hash so that the content can be fetched
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// address is used as sender for the transaction and will be the owner of a new
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// registry entry on first time use
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// FIXME: silently doing nothing if sender is not the owner
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// note that with content addressed storage, this step is no longer necessary
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func (self *Registrar) SetUrlToHash(address common.Address, hash common.Hash, url string) (txh string, err error) {
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hashHex := common.Bytes2Hex(hash[:])
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var urlHex string
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urlb := []byte(url)
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var cnt byte
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n := len(urlb)
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for n > 0 {
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if n > 32 {
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n = 32
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}
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urlHex = common.Bytes2Hex(urlb[:n])
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urlb = urlb[n:]
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n = len(urlb)
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bcnt := make([]byte, 32)
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bcnt[31] = cnt
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data := registerUrlAbi +
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hashHex +
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common.Bytes2Hex(bcnt) +
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common.Bytes2Hex(common.Hex2BytesFixed(urlHex, 32))
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txh, err = self.backend.Transact(
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address.Hex(),
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UrlHintAddr,
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"", "", "", "",
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data,
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)
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if err != nil {
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return
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}
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cnt++
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}
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return
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}
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// HashToHash(key) resolves contenthash for key (a hash) using HashReg
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// resolution is costless non-transactional
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// implemented as direct retrieval from db
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func (self *Registrar) HashToHash(khash common.Hash) (chash common.Hash, err error) {
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// look up in hashReg
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at := HashRegAddr[2:]
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key := storageAddress(storageMapping(storageIdx2Addr(1), khash[:]))
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hash := self.backend.StorageAt(at, key)
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if hash == "0x0" || len(hash) < 3 || (hash == common.Hash{}.Hex()) {
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err = fmt.Errorf("content hash not found for '%v'", khash.Hex())
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return
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}
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copy(chash[:], common.Hex2BytesFixed(hash[2:], 32))
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return
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}
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// HashToUrl(contenthash) resolves the url for contenthash using UrlHint
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// resolution is costless non-transactional
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// implemented as direct retrieval from db
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// if we use content addressed storage, this step is no longer necessary
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func (self *Registrar) HashToUrl(chash common.Hash) (uri string, err error) {
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// look up in URL reg
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var str string = " "
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var idx uint32
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for len(str) > 0 {
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mapaddr := storageMapping(storageIdx2Addr(1), chash[:])
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key := storageAddress(storageFixedArray(mapaddr, storageIdx2Addr(idx)))
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hex := self.backend.StorageAt(UrlHintAddr[2:], key)
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str = string(common.Hex2Bytes(hex[2:]))
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l := len(str)
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for (l > 0) && (str[l-1] == 0) {
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l--
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}
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str = str[:l]
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uri = uri + str
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idx++
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}
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l := 0
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for (l < len(uri)) && (uri[l] == 0) {
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l++
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}
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uri = uri[l:]
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if len(uri) == 0 {
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err = fmt.Errorf("GetURLhint: URL hint not found for '%v'", chash.Hex())
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}
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return
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}
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func storageIdx2Addr(varidx uint32) []byte {
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data := make([]byte, 32)
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binary.BigEndian.PutUint32(data[28:32], varidx)
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return data
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}
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func storageMapping(addr, key []byte) []byte {
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data := make([]byte, 64)
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copy(data[0:32], key[0:32])
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copy(data[32:64], addr[0:32])
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sha := crypto.Sha3(data)
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return sha
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}
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func storageFixedArray(addr, idx []byte) []byte {
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var carry byte
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for i := 31; i >= 0; i-- {
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var b byte = addr[i] + idx[i] + carry
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if b < addr[i] {
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carry = 1
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} else {
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carry = 0
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}
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addr[i] = b
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}
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return addr
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}
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func storageAddress(addr []byte) string {
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return common.ToHex(addr)
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}
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func encodeAddress(address common.Address) string {
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return addressAbiPrefix + address.Hex()[2:]
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}
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func encodeName(name string, index uint8) (string, string) {
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extra := common.Bytes2Hex([]byte(name))
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if len(name) > 32 {
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return fmt.Sprintf("%064x", index), extra
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}
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return extra + falseHex[len(extra):], ""
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}
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