
49万USDT钱包资产被转走之到底是不是朋友干的?
话题背景wu351256@discord 有谁知道我的代币为什么会在我不知情的情况下下被转走,我查记录上面说是触发了什么智能合约。我是新手有大神带我理解一下嘛? 如果是触发了什么智能合约怎么找到这个合约并且解除合约进入正题@bmlcwenwu 是不是点了什么钓鱼链接?赶快去解除授权 @42069Imtoken里边有教程,先解除授权 @夜与昼 这种币被盗了,报警说不立案,imtoken客服说报警,投诉无门,欲哭无泪 @42069 国内加密货币属于非法,警察不立案。 @夜与昼 对啊,国内,我被盗了49万usdt夜与昼 @42069 这么多U,没想到用冷钱包吗 @夜与昼 我最后一次转账用我朋友的id下载的app,现在就是不知道会不会是他盗的 @42069 什么app? @夜与昼 Imtoken钱包 @42069 不是假的吧 @夜与昼 用他的id后,商城里下载的,登录进去给他转了一笔钱,一个星期后钱包被盗 @42069 登录之后退出id了吗?只是商城登录id没事 夜与昼登录后退出了,登录的时候还双重认证了, *[2:39 PM]*Icloud就会自动登陆 *[2:39 PM]*Iclou...
Etherscan事务交易详细分类
TransferERC21https://cn.etherscan.com/tx/0xc261caa5556785d46fbf5f715f4e5686288304a5a510d34336d763b060dc37b6Swap案例1: https://cn.etherscan.com/tx/0xf09f3b3dcd29552dac6fd14040bb457f3f462ab497dd4a885fcf1bcc026f10ff https://cn.etherscan.com/tx/0x23fdb4a895877af5d2091d541d05f6ae874267c8d82e73bb7f186d8839781c92ApproveERC20ERC721ERC1159https://cn.etherscan.com/tx/0x00ff492f7c93e50b47c1c341d935e5d5cac201455d7d7f8a491fd5f0a7d93746MintERC721MethodID: 0xa0712d68Function: mint(uint256 _mintAmount) MethodI...

以太坊签名验签原理揭秘
签名三大作用讨论密码学中的签名时,我们其实是在讨论所有权、有效性和完整性证明。举例来说,这些签名可以用来:证明你拥有地址的私钥(即认证功能);确保信息(例如,邮件)没有被篡改;验证你下载的 文件是合法有效的。签名基础原理:基于数学公式输入:一个输入消息、一个私钥和一个(通常情况下是秘密的)随机数,就可以得到一串数字作为输出值,也就是签名。 输出:使用另一个数学公式可以进行反向计算,在不知道私钥和随机数的情况下进行验证(译者注:即验证该签名是否出自跟某个公钥对应的私钥)。 这类算法有很多,如 RSA 和 AES,但是以太坊(和比特币)采用的都是椭圆曲线数字签名算法(ECDSA)。请注意,ECDSA 只是签名算法。与 RSA 和 AES 不同,这种算法不能用于加密。以太坊采用的是 secp256k1曲线。 签名方案由哈希算法和签名算法组成。以太坊选择的签名算法是secp256k1,哈希算法选择了keccak256,这是一个从字节串。不可逆计算通过椭圆曲线点乘算法(elliptic curve point manipulation),我们可以使用私钥计算出一个不可逆向计算的值(译者注:...
The infinite past has the present as its destination, and the infinite future has the present as its origin.

49万USDT钱包资产被转走之到底是不是朋友干的?
话题背景wu351256@discord 有谁知道我的代币为什么会在我不知情的情况下下被转走,我查记录上面说是触发了什么智能合约。我是新手有大神带我理解一下嘛? 如果是触发了什么智能合约怎么找到这个合约并且解除合约进入正题@bmlcwenwu 是不是点了什么钓鱼链接?赶快去解除授权 @42069Imtoken里边有教程,先解除授权 @夜与昼 这种币被盗了,报警说不立案,imtoken客服说报警,投诉无门,欲哭无泪 @42069 国内加密货币属于非法,警察不立案。 @夜与昼 对啊,国内,我被盗了49万usdt夜与昼 @42069 这么多U,没想到用冷钱包吗 @夜与昼 我最后一次转账用我朋友的id下载的app,现在就是不知道会不会是他盗的 @42069 什么app? @夜与昼 Imtoken钱包 @42069 不是假的吧 @夜与昼 用他的id后,商城里下载的,登录进去给他转了一笔钱,一个星期后钱包被盗 @42069 登录之后退出id了吗?只是商城登录id没事 夜与昼登录后退出了,登录的时候还双重认证了, *[2:39 PM]*Icloud就会自动登陆 *[2:39 PM]*Iclou...
Etherscan事务交易详细分类
TransferERC21https://cn.etherscan.com/tx/0xc261caa5556785d46fbf5f715f4e5686288304a5a510d34336d763b060dc37b6Swap案例1: https://cn.etherscan.com/tx/0xf09f3b3dcd29552dac6fd14040bb457f3f462ab497dd4a885fcf1bcc026f10ff https://cn.etherscan.com/tx/0x23fdb4a895877af5d2091d541d05f6ae874267c8d82e73bb7f186d8839781c92ApproveERC20ERC721ERC1159https://cn.etherscan.com/tx/0x00ff492f7c93e50b47c1c341d935e5d5cac201455d7d7f8a491fd5f0a7d93746MintERC721MethodID: 0xa0712d68Function: mint(uint256 _mintAmount) MethodI...

以太坊签名验签原理揭秘
签名三大作用讨论密码学中的签名时,我们其实是在讨论所有权、有效性和完整性证明。举例来说,这些签名可以用来:证明你拥有地址的私钥(即认证功能);确保信息(例如,邮件)没有被篡改;验证你下载的 文件是合法有效的。签名基础原理:基于数学公式输入:一个输入消息、一个私钥和一个(通常情况下是秘密的)随机数,就可以得到一串数字作为输出值,也就是签名。 输出:使用另一个数学公式可以进行反向计算,在不知道私钥和随机数的情况下进行验证(译者注:即验证该签名是否出自跟某个公钥对应的私钥)。 这类算法有很多,如 RSA 和 AES,但是以太坊(和比特币)采用的都是椭圆曲线数字签名算法(ECDSA)。请注意,ECDSA 只是签名算法。与 RSA 和 AES 不同,这种算法不能用于加密。以太坊采用的是 secp256k1曲线。 签名方案由哈希算法和签名算法组成。以太坊选择的签名算法是secp256k1,哈希算法选择了keccak256,这是一个从字节串。不可逆计算通过椭圆曲线点乘算法(elliptic curve point manipulation),我们可以使用私钥计算出一个不可逆向计算的值(译者注:...
The infinite past has the present as its destination, and the infinite future has the present as its origin.
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The ENS registry is specified in EIP-137 https://eips.ethereum.org/EIPS/eip-137
The ENS registry is specified in EIP-137 https://eips.ethereum.org/EIPS/eip-137
The reverse registrar is specified in EIP 181 https://eips.ethereum.org/EIPS/eip-181
EIP 137 - Contract address interface (addr()).
EIP 165 - Interface Detection (supportsInterface()).
EIP 181 - Reverse resolution (name()).
EIP 205 - ABI support (ABI()).
EIP 619 - SECP256k1 public keys (pubkey()).
EIP 634 - Text records (text()).
EIP 1577 - Content hash support (contenthash()).
EIP 2304 - Multicoin support (addr()).
Tld : Top Level Domain 顶级域名
ENS has two principal components: the registry, and resolvers.

The ENS registry consists of a single smart contract that maintains a list of all domains and subdomains, and stores three critical pieces of information about each:
The owner of the domain
The resolver for the domain
The caching time-to-live for all records under the domain

ENS has documentation for a variety of audiences, including dapp developers and contract developers, as well as reference documentation.
Check out the dapp developer guide, starting with ENS Enabling your Dapp. You'll want to choose one of the many available ENS Libraries to get started working with ENS.
Check out the Contract Developer Guide, starting with Resolving Names On-chain. You can also write your own resolver (to customise the process of looking up names), or your own registrar (to customise the process of registering new names).
Check out the Contract API Reference. We have reference documentation for ENS's core contract, the registry, for resolvers, and for commonly-used registrars such as the Test registrar, reverse registrar, and the .eth registrar.
The ENS registry is specified in EIP-137 https://eips.ethereum.org/EIPS/eip-137
The ENS registry is specified in EIP-137 https://eips.ethereum.org/EIPS/eip-137
The reverse registrar is specified in EIP 181 https://eips.ethereum.org/EIPS/eip-181
EIP 137 - Contract address interface (addr()).
EIP 165 - Interface Detection (supportsInterface()).
EIP 181 - Reverse resolution (name()).
EIP 205 - ABI support (ABI()).
EIP 619 - SECP256k1 public keys (pubkey()).
EIP 634 - Text records (text()).
EIP 1577 - Content hash support (contenthash()).
EIP 2304 - Multicoin support (addr()).
Tld : Top Level Domain 顶级域名
ENS has two principal components: the registry, and resolvers.

The ENS registry consists of a single smart contract that maintains a list of all domains and subdomains, and stores three critical pieces of information about each:
The owner of the domain
The resolver for the domain
The caching time-to-live for all records under the domain

ENS has documentation for a variety of audiences, including dapp developers and contract developers, as well as reference documentation.
Check out the dapp developer guide, starting with ENS Enabling your Dapp. You'll want to choose one of the many available ENS Libraries to get started working with ENS.
Check out the Contract Developer Guide, starting with Resolving Names On-chain. You can also write your own resolver (to customise the process of looking up names), or your own registrar (to customise the process of registering new names).
Check out the Contract API Reference. We have reference documentation for ENS's core contract, the registry, for resolvers, and for commonly-used registrars such as the Test registrar, reverse registrar, and the .eth registrar.
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