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AttestationRequestData\",\"name\":\"data\",\"type\":\"tuple\"}],\"internalType\":\"struct AttestationRequest\",\"name\":\"request\",\"type\":\"tuple\"}],\"name\":\"attest\",\"outputs\":[{\"internalType\":\"bytes32\",\"name\":\"\",\"type\":\"bytes32\"}],\"stateMutability\":\"payable\",\"type\":\"function\"},{\"inputs\":[{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"schema\",\"type\":\"bytes32\"},{\"components\":[{\"internalType\":\"address\",\"name\":\"recipient\",\"type\":\"address\"},{\"internalType\":\"uint64\",\"name\":\"expirationTime\",\"type\":\"uint64\"},{\"internalType\":\"bool\",\"name\":\"revocable\",\"type\":\"bool\"},{\"internalType\":\"bytes32\",\"name\":\"refUID\",\"type\":\"bytes32\"},{\"internalType\":\"bytes\",\"name\":\"data\",\"type\":\"bytes\"},{\"internalType\":\"uint256\",\"name\":\"value\",\"type\":\"uint256\"}],\"internalType\":\"struct 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DelegatedAttestationRequest\",\"name\":\"delegatedRequest\",\"type\":\"tuple\"}],\"name\":\"attestByDelegation\",\"outputs\":[{\"internalType\":\"bytes32\",\"name\":\"\",\"type\":\"bytes32\"}],\"stateMutability\":\"payable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"eip712Domain\",\"outputs\":[{\"internalType\":\"bytes1\",\"name\":\"fields\",\"type\":\"bytes1\"},{\"internalType\":\"string\",\"name\":\"name\",\"type\":\"string\"},{\"internalType\":\"string\",\"name\":\"version\",\"type\":\"string\"},{\"internalType\":\"uint256\",\"name\":\"chainId\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"verifyingContract\",\"type\":\"address\"},{\"internalType\":\"bytes32\",\"name\":\"salt\",\"type\":\"bytes32\"},{\"internalType\":\"uint256[]\",\"name\":\"extensions\",\"type\":\"uint256[]\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"getAttestTypeHash\",\"outputs\":[{\"internalType\":\"bytes32\",\"name\":\"\",\"type\":\"bytes32\"}],\"stateMutability\":\"pure\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"bytes32\",\"name\":\"uid\",\"type\":\"bytes32\"}],\"name\":\"getAttestation\",\"outputs\":[{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"uid\",\"type\":\"bytes32\"},{\"internalType\":\"bytes32\",\"name\":\"schema\",\"type\":\"bytes32\"},{\"internalType\":\"uint64\",\"name\":\"time\",\"type\":\"uint64\"},{\"internalType\":\"uint64\",\"name\":\"expirationTime\",\"type\":\"uint64\"},{\"internalType\":\"uint64\",\"name\":\"revocationTime\",\"type\":\"uint64\"},{\"internalType\":\"bytes32\",\"name\":\"refUID\",\"type\":\"bytes32\"},{\"internalType\":\"address\",\"name\":\"recipient\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"attester\",\"type\":\"address\"},{\"internalType\":\"bool\",\"name\":\"revocable\",\"type\":\"bool\"},{\"internalType\":\"bytes\",\"name\":\"data\",\"type\":\"bytes\"}],\"internalType\":\"struct Attestation\",\"name\":\"\",\"type\":\"tuple\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"getDomainSeparator\",\"outputs\":[{\"internalType\":\"bytes32\",\"name\":\"\",\"type\":\"bytes32\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"getName\",\"outputs\":[{\"internalType\":\"string\",\"name\":\"\",\"type\":\"string\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"account\",\"type\":\"address\"}],\"name\":\"getNonce\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"revoker\",\"type\":\"address\"},{\"internalType\":\"bytes32\",\"name\":\"data\",\"type\":\"bytes32\"}],\"name\":\"getRevokeOffchain\",\"outputs\":[{\"internalType\":\"uint64\",\"name\":\"\",\"type\":\"uint64\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"getRevokeTypeHash\",\"outputs\":[{\"internalType\":\"bytes32\",\"name\":\"\",\"type\":\"bytes32\"}],\"stateMutability\":\"pure\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"getSchemaRegistry\",\"outputs\":[{\"internalType\":\"contract ISchemaRegistry\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"bytes32\",\"name\":\"data\",\"type\":\"bytes32\"}],\"name\":\"getTimestamp\",\"outputs\":[{\"internalType\":\"uint64\",\"name\":\"\",\"type\":\"uint64\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"newNonce\",\"type\":\"uint256\"}],\"name\":\"increaseNonce\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"bytes32\",\"name\":\"uid\",\"type\":\"bytes32\"}],\"name\":\"isAttestationValid\",\"outputs\":[{\"internalType\":\"bool\",\"name\":\"\",\"type\":\"bool\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"schema\",\"type\":\"bytes32\"},{\"components\":[{\"internalType\":\"address\",\"name\":\"recipient\",\"type\":\"address\"},{\"internalType\":\"uint64\",\"name\":\"expirationTime\",\"type\":\"uint64\"},{\"internalType\":\"bool\",\"name\":\"revocable\",\"type\":\"bool\"},{\"internalType\":\"bytes32\",\"name\":\"refUID\",\"type\":\"bytes32\"},{\"internalType\":\"bytes\",\"name\":\"data\",\"type\":\"bytes\"},{\"internalType\":\"uint256\",\"name\":\"value\",\"type\":\"uint256\"}],\"internalType\":\"struct AttestationRequestData[]\",\"name\":\"data\",\"type\":\"tuple[]\"}],\"internalType\":\"struct MultiAttestationRequest[]\",\"name\":\"multiRequests\",\"type\":\"tuple[]\"}],\"name\":\"multiAttest\",\"outputs\":[{\"internalType\":\"bytes32[]\",\"name\":\"\",\"type\":\"bytes32[]\"}],\"stateMutability\":\"payable\",\"type\":\"function\"},{\"inputs\":[{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"schema\",\"type\":\"bytes32\"},{\"components\":[{\"internalType\":\"address\",\"name\":\"recipient\",\"type\":\"address\"},{\"internalType\":\"uint64\",\"name\":\"expirationTime\",\"type\":\"uint64\"},{\"internalType\":\"bool\",\"name\":\"revocable\",\"type\":\"bool\"},{\"internalType\":\"bytes32\",\"name\":\"refUID\",\"type\":\"bytes32\"},{\"internalType\":\"bytes\",\"name\":\"data\",\"type\":\"bytes\"},{\"internalType\":\"uint256\",\"name\":\"value\",\"type\":\"uint256\"}],\"internalType\":\"struct AttestationRequestData[]\",\"name\":\"data\",\"type\":\"tuple[]\"},{\"components\":[{\"internalType\":\"uint8\",\"name\":\"v\",\"type\":\"uint8\"},{\"internalType\":\"bytes32\",\"name\":\"r\",\"type\":\"bytes32\"},{\"internalType\":\"bytes32\",\"name\":\"s\",\"type\":\"bytes32\"}],\"internalType\":\"struct Signature[]\",\"name\":\"signatures\",\"type\":\"tuple[]\"},{\"internalType\":\"address\",\"name\":\"attester\",\"type\":\"address\"},{\"internalType\":\"uint64\",\"name\":\"deadline\",\"type\":\"uint64\"}],\"internalType\":\"struct MultiDelegatedAttestationRequest[]\",\"name\":\"multiDelegatedRequests\",\"type\":\"tuple[]\"}],\"name\":\"multiAttestByDelegation\",\"outputs\":[{\"internalType\":\"bytes32[]\",\"name\":\"\",\"type\":\"bytes32[]\"}],\"stateMutability\":\"payable\",\"type\":\"function\"},{\"inputs\":[{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"schema\",\"type\":\"bytes32\"},{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"uid\",\"type\":\"bytes32\"},{\"internalType\":\"uint256\",\"name\":\"value\",\"type\":\"uint256\"}],\"internalType\":\"struct RevocationRequestData[]\",\"name\":\"data\",\"type\":\"tuple[]\"}],\"internalType\":\"struct MultiRevocationRequest[]\",\"name\":\"multiRequests\",\"type\":\"tuple[]\"}],\"name\":\"multiRevoke\",\"outputs\":[],\"stateMutability\":\"payable\",\"type\":\"function\"},{\"inputs\":[{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"schema\",\"type\":\"bytes32\"},{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"uid\",\"type\":\"bytes32\"},{\"internalType\":\"uint256\",\"name\":\"value\",\"type\":\"uint256\"}],\"internalType\":\"struct RevocationRequestData[]\",\"name\":\"data\",\"type\":\"tuple[]\"},{\"components\":[{\"internalType\":\"uint8\",\"name\":\"v\",\"type\":\"uint8\"},{\"internalType\":\"bytes32\",\"name\":\"r\",\"type\":\"bytes32\"},{\"internalType\":\"bytes32\",\"name\":\"s\",\"type\":\"bytes32\"}],\"internalType\":\"struct Signature[]\",\"name\":\"signatures\",\"type\":\"tuple[]\"},{\"internalType\":\"address\",\"name\":\"revoker\",\"type\":\"address\"},{\"internalType\":\"uint64\",\"name\":\"deadline\",\"type\":\"uint64\"}],\"internalType\":\"struct MultiDelegatedRevocationRequest[]\",\"name\":\"multiDelegatedRequests\",\"type\":\"tuple[]\"}],\"name\":\"multiRevokeByDelegation\",\"outputs\":[],\"stateMutability\":\"payable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"bytes32[]\",\"name\":\"data\",\"type\":\"bytes32[]\"}],\"name\":\"multiRevokeOffchain\",\"outputs\":[{\"internalType\":\"uint64\",\"name\":\"\",\"type\":\"uint64\"}],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"bytes32[]\",\"name\":\"data\",\"type\":\"bytes32[]\"}],\"name\":\"multiTimestamp\",\"outputs\":[{\"internalType\":\"uint64\",\"name\":\"\",\"type\":\"uint64\"}],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"schema\",\"type\":\"bytes32\"},{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"uid\",\"type\":\"bytes32\"},{\"internalType\":\"uint256\",\"name\":\"value\",\"type\":\"uint256\"}],\"internalType\":\"struct RevocationRequestData\",\"name\":\"data\",\"type\":\"tuple\"}],\"internalType\":\"struct RevocationRequest\",\"name\":\"request\",\"type\":\"tuple\"}],\"name\":\"revoke\",\"outputs\":[],\"stateMutability\":\"payable\",\"type\":\"function\"},{\"inputs\":[{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"schema\",\"type\":\"bytes32\"},{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"uid\",\"type\":\"bytes32\"},{\"internalType\":\"uint256\",\"name\":\"value\",\"type\":\"uint256\"}],\"internalType\":\"struct RevocationRequestData\",\"name\":\"data\",\"type\":\"tuple\"},{\"components\":[{\"internalType\":\"uint8\",\"name\":\"v\",\"type\":\"uint8\"},{\"internalType\":\"bytes32\",\"name\":\"r\",\"type\":\"bytes32\"},{\"internalType\":\"bytes32\",\"name\":\"s\",\"type\":\"bytes32\"}],\"internalType\":\"struct Signature\",\"name\":\"signature\",\"type\":\"tuple\"},{\"internalType\":\"address\",\"name\":\"revoker\",\"type\":\"address\"},{\"internalType\":\"uint64\",\"name\":\"deadline\",\"type\":\"uint64\"}],\"internalType\":\"struct DelegatedRevocationRequest\",\"name\":\"delegatedRequest\",\"type\":\"tuple\"}],\"name\":\"revokeByDelegation\",\"outputs\":[],\"stateMutability\":\"payable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"bytes32\",\"name\":\"data\",\"type\":\"bytes32\"}],\"name\":\"revokeOffchain\",\"outputs\":[{\"internalType\":\"uint64\",\"name\":\"\",\"type\":\"uint64\"}],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"bytes32\",\"name\":\"data\",\"type\":\"bytes32\"}],\"name\":\"timestamp\",\"outputs\":[{\"internalType\":\"uint64\",\"name\":\"\",\"type\":\"uint64\"}],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"version\",\"outputs\":[{\"internalType\":\"string\",\"name\":\"\",\"type\":\"string\"}],\"stateMutability\":\"view\",\"type\":\"function\"}],\"devdoc\":{\"events\":{\"Attested(address,address,bytes32,bytes32)\":{\"params\":{\"attester\":\"The attesting account.\",\"recipient\":\"The recipient of the attestation.\",\"schemaUID\":\"The UID of the schema.\",\"uid\":\"The UID the revoked attestation.\"}},\"EIP712DomainChanged()\":{\"details\":\"MAY be emitted to signal that the domain could have changed.\"},\"NonceIncreased(uint256,uint256)\":{\"params\":{\"newNonce\":\"The new value.\",\"oldNonce\":\"The previous nonce.\"}},\"Revoked(address,address,bytes32,bytes32)\":{\"params\":{\"attester\":\"The attesting account.\",\"recipient\":\"The recipient of the attestation.\",\"schemaUID\":\"The UID of the schema.\",\"uid\":\"The UID the revoked attestation.\"}},\"RevokedOffchain(address,bytes32,uint64)\":{\"params\":{\"data\":\"The data.\",\"revoker\":\"The address of the revoker.\",\"timestamp\":\"The timestamp.\"}},\"Timestamped(bytes32,uint64)\":{\"params\":{\"data\":\"The data.\",\"timestamp\":\"The timestamp.\"}}},\"kind\":\"dev\",\"methods\":{\"attest((bytes32,(address,uint64,bool,bytes32,bytes,uint256)))\":{\"params\":{\"request\":\"The arguments of the attestation request.\"},\"returns\":{\"_0\":\"The UID of the new attestation. Example: attest({ schema: \\\"0facc36681cbe2456019c1b0d1e7bedd6d1d40f6f324bf3dd3a4cef2999200a0\\\", data: { recipient: \\\"0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf\\\", expirationTime: 0, revocable: true, refUID: \\\"0x0000000000000000000000000000000000000000000000000000000000000000\\\", data: \\\"0xF00D\\\", value: 0 } })\"}},\"attestByDelegation((bytes32,(address,uint64,bool,bytes32,bytes,uint256),(uint8,bytes32,bytes32),address,uint64))\":{\"params\":{\"delegatedRequest\":\"The arguments of the delegated attestation request.\"},\"returns\":{\"_0\":\"The UID of the new attestation. Example: attestByDelegation({ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: { recipient: '0xf39Fd6e51aad88F6F4ce6aB8827279cffFb92266', expirationTime: 1673891048, revocable: true, refUID: '0x0000000000000000000000000000000000000000000000000000000000000000', data: '0x1234', value: 0 }, signature: { v: 28, r: '0x148c...b25b', s: '0x5a72...be22' }, attester: '0xc5E8740aD971409492b1A63Db8d83025e0Fc427e', deadline: 1673891048 })\"}},\"constructor\":{\"details\":\"Creates a new EAS instance.\",\"params\":{\"registry\":\"The address of the global schema registry.\"}},\"eip712Domain()\":{\"details\":\"See {EIP-5267}. _Available since v4.9._\"},\"getAttestTypeHash()\":{\"returns\":{\"_0\":\"The EIP712 type hash for the attest function.\"}},\"getAttestation(bytes32)\":{\"params\":{\"uid\":\"The UID of the attestation to retrieve.\"},\"returns\":{\"_0\":\"The attestation data members.\"}},\"getDomainSeparator()\":{\"returns\":{\"_0\":\"The domain separator used in the encoding of the signatures for attest, and revoke.\"}},\"getName()\":{\"returns\":{\"_0\":\"The EIP712 name.\"}},\"getNonce(address)\":{\"params\":{\"account\":\"The requested account.\"},\"returns\":{\"_0\":\"The current nonce.\"}},\"getRevokeOffchain(address,bytes32)\":{\"params\":{\"data\":\"The data to query.\"},\"returns\":{\"_0\":\"The timestamp the data was timestamped with.\"}},\"getRevokeTypeHash()\":{\"returns\":{\"_0\":\"The EIP712 type hash for the revoke function.\"}},\"getSchemaRegistry()\":{\"returns\":{\"_0\":\"The address of the global schema registry.\"}},\"getTimestamp(bytes32)\":{\"params\":{\"data\":\"The data to query.\"},\"returns\":{\"_0\":\"The timestamp the data was timestamped with.\"}},\"increaseNonce(uint256)\":{\"params\":{\"newNonce\":\"The (higher) new value.\"}},\"isAttestationValid(bytes32)\":{\"params\":{\"uid\":\"The UID of the attestation to retrieve.\"},\"returns\":{\"_0\":\"Whether an attestation exists.\"}},\"multiAttest((bytes32,(address,uint64,bool,bytes32,bytes,uint256)[])[])\":{\"params\":{\"multiRequests\":\"The arguments of the multi attestation requests. The requests should be grouped by distinct schema ids to benefit from the best batching optimization.\"},\"returns\":{\"_0\":\"The UIDs of the new attestations. Example: multiAttest([{ schema: '0x33e9094830a5cba5554d1954310e4fbed2ef5f859ec1404619adea4207f391fd', data: [{ recipient: '0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf', expirationTime: 1673891048, revocable: true, refUID: '0x0000000000000000000000000000000000000000000000000000000000000000', data: '0x1234', value: 1000 }, { recipient: '0xf39Fd6e51aad88F6F4ce6aB8827279cffFb92266', expirationTime: 0, revocable: false, refUID: '0x480df4a039efc31b11bfdf491b383ca138b6bde160988222a2a3509c02cee174', data: '0x00', value: 0 }], }, { schema: '0x5ac273ce41e3c8bfa383efe7c03e54c5f0bff29c9f11ef6ffa930fc84ca32425', data: [{ recipient: '0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf', expirationTime: 0, revocable: true, refUID: '0x75bf2ed8dca25a8190c50c52db136664de25b2449535839008ccfdab469b214f', data: '0x12345678', value: 0 }, }])\"}},\"multiAttestByDelegation((bytes32,(address,uint64,bool,bytes32,bytes,uint256)[],(uint8,bytes32,bytes32)[],address,uint64)[])\":{\"params\":{\"multiDelegatedRequests\":\"The arguments of the delegated multi attestation requests. The requests should be grouped by distinct schema ids to benefit from the best batching optimization.\"},\"returns\":{\"_0\":\"The UIDs of the new attestations. Example: multiAttestByDelegation([{ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: [{ recipient: '0xf39Fd6e51aad88F6F4ce6aB8827279cffFb92266', expirationTime: 1673891048, revocable: true, refUID: '0x0000000000000000000000000000000000000000000000000000000000000000', data: '0x1234', value: 0 }, { recipient: '0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf', expirationTime: 0, revocable: false, refUID: '0x0000000000000000000000000000000000000000000000000000000000000000', data: '0x00', value: 0 }], signatures: [{ v: 28, r: '0x148c...b25b', s: '0x5a72...be22' }, { v: 28, r: '0x487s...67bb', s: '0x12ad...2366' }], attester: '0x1D86495b2A7B524D747d2839b3C645Bed32e8CF4', deadline: 1673891048 }])\"}},\"multiRevoke((bytes32,(bytes32,uint256)[])[])\":{\"params\":{\"multiRequests\":\"The arguments of the multi revocation requests. The requests should be grouped by distinct schema ids to benefit from the best batching optimization. Example: multiRevoke([{ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: [{ uid: '0x211296a1ca0d7f9f2cfebf0daaa575bea9b20e968d81aef4e743d699c6ac4b25', value: 1000 }, { uid: '0xe160ac1bd3606a287b4d53d5d1d6da5895f65b4b4bab6d93aaf5046e48167ade', value: 0 }], }, { schema: '0x5ac273ce41e3c8bfa383efe7c03e54c5f0bff29c9f11ef6ffa930fc84ca32425', data: [{ uid: '0x053d42abce1fd7c8fcddfae21845ad34dae287b2c326220b03ba241bc5a8f019', value: 0 }, }])\"}},\"multiRevokeByDelegation((bytes32,(bytes32,uint256)[],(uint8,bytes32,bytes32)[],address,uint64)[])\":{\"params\":{\"multiDelegatedRequests\":\"The arguments of the delegated multi revocation attestation requests. The requests should be grouped by distinct schema ids to benefit from the best batching optimization. Example: multiRevokeByDelegation([{ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: [{ uid: '0x211296a1ca0d7f9f2cfebf0daaa575bea9b20e968d81aef4e743d699c6ac4b25', value: 1000 }, { uid: '0xe160ac1bd3606a287b4d53d5d1d6da5895f65b4b4bab6d93aaf5046e48167ade', value: 0 }], signatures: [{ v: 28, r: '0x148c...b25b', s: '0x5a72...be22' }, { v: 28, r: '0x487s...67bb', s: '0x12ad...2366' }], revoker: '0x244934dd3e31bE2c81f84ECf0b3E6329F5381992', deadline: 1673891048 }])\"}},\"multiRevokeOffchain(bytes32[])\":{\"params\":{\"data\":\"The data to timestamp.\"},\"returns\":{\"_0\":\"The timestamp the data was revoked with.\"}},\"multiTimestamp(bytes32[])\":{\"params\":{\"data\":\"The data to timestamp.\"},\"returns\":{\"_0\":\"The timestamp the data was timestamped with.\"}},\"revoke((bytes32,(bytes32,uint256)))\":{\"params\":{\"request\":\"The arguments of the revocation request. Example: revoke({ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: { uid: '0x101032e487642ee04ee17049f99a70590c735b8614079fc9275f9dd57c00966d', value: 0 } })\"}},\"revokeByDelegation((bytes32,(bytes32,uint256),(uint8,bytes32,bytes32),address,uint64))\":{\"params\":{\"delegatedRequest\":\"The arguments of the delegated revocation request. Example: revokeByDelegation({ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: { uid: '0xcbbc12102578c642a0f7b34fe7111e41afa25683b6cd7b5a14caf90fa14d24ba', value: 0 }, signature: { v: 27, r: '0xb593...7142', s: '0x0f5b...2cce' }, revoker: '0x244934dd3e31bE2c81f84ECf0b3E6329F5381992', deadline: 1673891048 })\"}},\"revokeOffchain(bytes32)\":{\"params\":{\"data\":\"The data to timestamp.\"},\"returns\":{\"_0\":\"The timestamp the data was revoked with.\"}},\"timestamp(bytes32)\":{\"params\":{\"data\":\"The data to timestamp.\"},\"returns\":{\"_0\":\"The timestamp the data was timestamped with.\"}},\"version()\":{\"returns\":{\"_0\":\"Semver contract version as a string.\"}}},\"title\":\"EAS\",\"version\":1},\"userdoc\":{\"events\":{\"Attested(address,address,bytes32,bytes32)\":{\"notice\":\"Emitted when an attestation has been made.\"},\"NonceIncreased(uint256,uint256)\":{\"notice\":\"Emitted when users invalidate nonces by increasing their nonces to (higher) new values.\"},\"Revoked(address,address,bytes32,bytes32)\":{\"notice\":\"Emitted when an attestation has been revoked.\"},\"RevokedOffchain(address,bytes32,uint64)\":{\"notice\":\"Emitted when a data has been revoked.\"},\"Timestamped(bytes32,uint64)\":{\"notice\":\"Emitted when a data has been timestamped.\"}},\"kind\":\"user\",\"methods\":{\"attest((bytes32,(address,uint64,bool,bytes32,bytes,uint256)))\":{\"notice\":\"Attests to a specific schema.\"},\"attestByDelegation((bytes32,(address,uint64,bool,bytes32,bytes,uint256),(uint8,bytes32,bytes32),address,uint64))\":{\"notice\":\"Attests to a specific schema via the provided ECDSA signature.\"},\"getAttestTypeHash()\":{\"notice\":\"Returns the EIP712 type hash for the attest function.\"},\"getAttestation(bytes32)\":{\"notice\":\"Returns an existing attestation by UID.\"},\"getDomainSeparator()\":{\"notice\":\"Returns the domain separator used in the encoding of the signatures for attest, and revoke.\"},\"getName()\":{\"notice\":\"Returns the EIP712 name.\"},\"getNonce(address)\":{\"notice\":\"Returns the current nonce per-account.\"},\"getRevokeOffchain(address,bytes32)\":{\"notice\":\"Returns the timestamp that the specified data was timestamped with.\"},\"getRevokeTypeHash()\":{\"notice\":\"Returns the EIP712 type hash for the revoke function.\"},\"getSchemaRegistry()\":{\"notice\":\"Returns the address of the global schema registry.\"},\"getTimestamp(bytes32)\":{\"notice\":\"Returns the timestamp that the specified data was timestamped with.\"},\"increaseNonce(uint256)\":{\"notice\":\"Provides users an option to invalidate nonces by increasing their nonces to (higher) new values.\"},\"isAttestationValid(bytes32)\":{\"notice\":\"Checks whether an attestation exists.\"},\"multiAttest((bytes32,(address,uint64,bool,bytes32,bytes,uint256)[])[])\":{\"notice\":\"Attests to multiple schemas.\"},\"multiAttestByDelegation((bytes32,(address,uint64,bool,bytes32,bytes,uint256)[],(uint8,bytes32,bytes32)[],address,uint64)[])\":{\"notice\":\"Attests to multiple schemas using via provided ECDSA signatures.\"},\"multiRevoke((bytes32,(bytes32,uint256)[])[])\":{\"notice\":\"Revokes existing attestations to multiple schemas.\"},\"multiRevokeByDelegation((bytes32,(bytes32,uint256)[],(uint8,bytes32,bytes32)[],address,uint64)[])\":{\"notice\":\"Revokes existing attestations to multiple schemas via provided ECDSA signatures.\"},\"multiRevokeOffchain(bytes32[])\":{\"notice\":\"Revokes the specified multiple bytes32 data.\"},\"multiTimestamp(bytes32[])\":{\"notice\":\"Timestamps the specified multiple bytes32 data.\"},\"revoke((bytes32,(bytes32,uint256)))\":{\"notice\":\"Revokes an existing attestation to a specific schema.\"},\"revokeByDelegation((bytes32,(bytes32,uint256),(uint8,bytes32,bytes32),address,uint64))\":{\"notice\":\"Revokes an existing attestation to a specific schema via the provided ECDSA signature.\"},\"revokeOffchain(bytes32)\":{\"notice\":\"Revokes the specified bytes32 data.\"},\"timestamp(bytes32)\":{\"notice\":\"Timestamps the specified bytes32 data.\"},\"version()\":{\"notice\":\"Returns the full semver contract version.\"}},\"notice\":\"The Ethereum Attestation Service protocol.\",\"version\":1}},\"settings\":{\"compilationTarget\":{\"contracts/EAS.sol\":\"EAS\"},\"evmVersion\":\"paris\",\"libraries\":{},\"metadata\":{\"bytecodeHash\":\"none\",\"useLiteralContent\":true},\"optimizer\":{\"enabled\":true,\"runs\":1000000},\"remappings\":[]},\"sources\":{\"@openzeppelin/contracts/interfaces/IERC1271.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts v4.4.1 (interfaces/IERC1271.sol)\\n\\npragma solidity ^0.8.0;\\n\\n/**\\n * @dev Interface of the ERC1271 standard signature validation method for\\n * contracts as defined in https://eips.ethereum.org/EIPS/eip-1271[ERC-1271].\\n *\\n * _Available since v4.1._\\n */\\ninterface IERC1271 {\\n /**\\n * @dev Should return whether the signature provided is valid for the provided data\\n * @param hash Hash of the data to be signed\\n * @param signature Signature byte array associated with _data\\n */\\n function isValidSignature(bytes32 hash, bytes memory signature) external view returns (bytes4 magicValue);\\n}\\n\",\"keccak256\":\"0x0705a4b1b86d7b0bd8432118f226ba139c44b9dcaba0a6eafba2dd7d0639c544\",\"license\":\"MIT\"},\"@openzeppelin/contracts/interfaces/IERC5267.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v4.9.0) (interfaces/IERC5267.sol)\\n\\npragma solidity ^0.8.0;\\n\\ninterface IERC5267 {\\n /**\\n * @dev MAY be emitted to signal that the domain could have changed.\\n */\\n event EIP712DomainChanged();\\n\\n /**\\n * @dev returns the fields and values that describe the domain separator used by this contract for EIP-712\\n * signature.\\n */\\n function eip712Domain()\\n external\\n view\\n returns (\\n bytes1 fields,\\n string memory name,\\n string memory version,\\n uint256 chainId,\\n address verifyingContract,\\n bytes32 salt,\\n uint256[] memory extensions\\n );\\n}\\n\",\"keccak256\":\"0xac6c2efc64baccbde4904ae18ed45139c9aa8cff96d6888344d1e4d2eb8b659f\",\"license\":\"MIT\"},\"@openzeppelin/contracts/utils/Address.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v4.9.0) (utils/Address.sol)\\n\\npragma solidity ^0.8.1;\\n\\n/**\\n * @dev Collection of functions related to the address type\\n */\\nlibrary Address {\\n /**\\n * @dev Returns true if `account` is a contract.\\n *\\n * [IMPORTANT]\\n * ====\\n * It is unsafe to assume that an address for which this function returns\\n * false is an externally-owned account (EOA) and not a contract.\\n *\\n * Among others, `isContract` will return false for the following\\n * types of addresses:\\n *\\n * - an externally-owned account\\n * - a contract in construction\\n * - an address where a contract will be created\\n * - an address where a contract lived, but was destroyed\\n *\\n * Furthermore, `isContract` will also return true if the target contract within\\n * the same transaction is already scheduled for destruction by `SELFDESTRUCT`,\\n * which only has an effect at the end of a transaction.\\n * ====\\n *\\n * [IMPORTANT]\\n * ====\\n * You shouldn't rely on `isContract` to protect against flash loan attacks!\\n *\\n * Preventing calls from contracts is highly discouraged. It breaks composability, breaks support for smart wallets\\n * like Gnosis Safe, and does not provide security since it can be circumvented by calling from a contract\\n * constructor.\\n * ====\\n */\\n function isContract(address account) internal view returns (bool) {\\n // This method relies on extcodesize/address.code.length, which returns 0\\n // for contracts in construction, since the code is only stored at the end\\n // of the constructor execution.\\n\\n return account.code.length > 0;\\n }\\n\\n /**\\n * @dev Replacement for Solidity's `transfer`: sends `amount` wei to\\n * `recipient`, forwarding all available gas and reverting on errors.\\n *\\n * https://eips.ethereum.org/EIPS/eip-1884[EIP1884] increases the gas cost\\n * of certain opcodes, possibly making contracts go over the 2300 gas limit\\n * imposed by `transfer`, making them unable to receive funds via\\n * `transfer`. {sendValue} removes this limitation.\\n *\\n * https://consensys.net/diligence/blog/2019/09/stop-using-soliditys-transfer-now/[Learn more].\\n *\\n * IMPORTANT: because control is transferred to `recipient`, care must be\\n * taken to not create reentrancy vulnerabilities. Consider using\\n * {ReentrancyGuard} or the\\n * https://solidity.readthedocs.io/en/v0.8.0/security-considerations.html#use-the-checks-effects-interactions-pattern[checks-effects-interactions pattern].\\n */\\n function sendValue(address payable recipient, uint256 amount) internal {\\n require(address(this).balance >= amount, \\\"Address: insufficient balance\\\");\\n\\n (bool success, ) = recipient.call{value: amount}(\\\"\\\");\\n require(success, \\\"Address: unable to send value, recipient may have reverted\\\");\\n }\\n\\n /**\\n * @dev Performs a Solidity function call using a low level `call`. A\\n * plain `call` is an unsafe replacement for a function call: use this\\n * function instead.\\n *\\n * If `target` reverts with a revert reason, it is bubbled up by this\\n * function (like regular Solidity function calls).\\n *\\n * Returns the raw returned data. To convert to the expected return value,\\n * use https://solidity.readthedocs.io/en/latest/units-and-global-variables.html?highlight=abi.decode#abi-encoding-and-decoding-functions[`abi.decode`].\\n *\\n * Requirements:\\n *\\n * - `target` must be a contract.\\n * - calling `target` with `data` must not revert.\\n *\\n * _Available since v3.1._\\n */\\n function functionCall(address target, bytes memory data) internal returns (bytes memory) {\\n return functionCallWithValue(target, data, 0, \\\"Address: low-level call failed\\\");\\n }\\n\\n /**\\n * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`], but with\\n * `errorMessage` as a fallback revert reason when `target` reverts.\\n *\\n * _Available since v3.1._\\n */\\n function functionCall(\\n address target,\\n bytes memory data,\\n string memory errorMessage\\n ) internal returns (bytes memory) {\\n return functionCallWithValue(target, data, 0, errorMessage);\\n }\\n\\n /**\\n * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],\\n * but also transferring `value` wei to `target`.\\n *\\n * Requirements:\\n *\\n * - the calling contract must have an ETH balance of at least `value`.\\n * - the called Solidity function must be `payable`.\\n *\\n * _Available since v3.1._\\n */\\n function functionCallWithValue(address target, bytes memory data, uint256 value) internal returns (bytes memory) {\\n return functionCallWithValue(target, data, value, \\\"Address: low-level call with value failed\\\");\\n }\\n\\n /**\\n * @dev Same as {xref-Address-functionCallWithValue-address-bytes-uint256-}[`functionCallWithValue`], but\\n * with `errorMessage` as a fallback revert reason when `target` reverts.\\n *\\n * _Available since v3.1._\\n */\\n function functionCallWithValue(\\n address target,\\n bytes memory data,\\n uint256 value,\\n string memory errorMessage\\n ) internal returns (bytes memory) {\\n require(address(this).balance >= value, \\\"Address: insufficient balance for call\\\");\\n (bool success, bytes memory returndata) = target.call{value: value}(data);\\n return verifyCallResultFromTarget(target, success, returndata, errorMessage);\\n }\\n\\n /**\\n * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],\\n * but performing a static call.\\n *\\n * _Available since v3.3._\\n */\\n function functionStaticCall(address target, bytes memory data) internal view returns (bytes memory) {\\n return functionStaticCall(target, data, \\\"Address: low-level static call failed\\\");\\n }\\n\\n /**\\n * @dev Same as {xref-Address-functionCall-address-bytes-string-}[`functionCall`],\\n * but performing a static call.\\n *\\n * _Available since v3.3._\\n */\\n function functionStaticCall(\\n address target,\\n bytes memory data,\\n string memory errorMessage\\n ) internal view returns (bytes memory) {\\n (bool success, bytes memory returndata) = target.staticcall(data);\\n return verifyCallResultFromTarget(target, success, returndata, errorMessage);\\n }\\n\\n /**\\n * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],\\n * but performing a delegate call.\\n *\\n * _Available since v3.4._\\n */\\n function functionDelegateCall(address target, bytes memory data) internal returns (bytes memory) {\\n return functionDelegateCall(target, data, \\\"Address: low-level delegate call failed\\\");\\n }\\n\\n /**\\n * @dev Same as {xref-Address-functionCall-address-bytes-string-}[`functionCall`],\\n * but performing a delegate call.\\n *\\n * _Available since v3.4._\\n */\\n function functionDelegateCall(\\n address target,\\n bytes memory data,\\n string memory errorMessage\\n ) internal returns (bytes memory) {\\n (bool success, bytes memory returndata) = target.delegatecall(data);\\n return verifyCallResultFromTarget(target, success, returndata, errorMessage);\\n }\\n\\n /**\\n * @dev Tool to verify that a low level call to smart-contract was successful, and revert (either by bubbling\\n * the revert reason or using the provided one) in case of unsuccessful call or if target was not a contract.\\n *\\n * _Available since v4.8._\\n */\\n function verifyCallResultFromTarget(\\n address target,\\n bool success,\\n bytes memory returndata,\\n string memory errorMessage\\n ) internal view returns (bytes memory) {\\n if (success) {\\n if (returndata.length == 0) {\\n // only check isContract if the call was successful and the return data is empty\\n // otherwise we already know that it was a contract\\n require(isContract(target), \\\"Address: call to non-contract\\\");\\n }\\n return returndata;\\n } else {\\n _revert(returndata, errorMessage);\\n }\\n }\\n\\n /**\\n * @dev Tool to verify that a low level call was successful, and revert if it wasn't, either by bubbling the\\n * revert reason or using the provided one.\\n *\\n * _Available since v4.3._\\n */\\n function verifyCallResult(\\n bool success,\\n bytes memory returndata,\\n string memory errorMessage\\n ) internal pure returns (bytes memory) {\\n if (success) {\\n return returndata;\\n } else {\\n _revert(returndata, errorMessage);\\n }\\n }\\n\\n function _revert(bytes memory returndata, string memory errorMessage) private pure {\\n // Look for revert reason and bubble it up if present\\n if (returndata.length > 0) {\\n // The easiest way to bubble the revert reason is using memory via assembly\\n /// @solidity memory-safe-assembly\\n assembly {\\n let returndata_size := mload(returndata)\\n revert(add(32, returndata), returndata_size)\\n }\\n } else {\\n revert(errorMessage);\\n }\\n }\\n}\\n\",\"keccak256\":\"0x006dd67219697fe68d7fbfdea512e7c4cb64a43565ed86171d67e844982da6fa\",\"license\":\"MIT\"},\"@openzeppelin/contracts/utils/ShortStrings.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v4.9.0) (utils/ShortStrings.sol)\\n\\npragma solidity ^0.8.8;\\n\\nimport \\\"./StorageSlot.sol\\\";\\n\\n// | string | 0xAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA |\\n// | length | 0x BB |\\ntype ShortString is bytes32;\\n\\n/**\\n * @dev This library provides functions to convert short memory strings\\n * into a `ShortString` type that can be used as an immutable variable.\\n *\\n * Strings of arbitrary length can be optimized using this library if\\n * they are short enough (up to 31 bytes) by packing them with their\\n * length (1 byte) in a single EVM word (32 bytes). Additionally, a\\n * fallback mechanism can be used for every other case.\\n *\\n * Usage example:\\n *\\n * ```solidity\\n * contract Named {\\n * using ShortStrings for *;\\n *\\n * ShortString private immutable _name;\\n * string private _nameFallback;\\n *\\n * constructor(string memory contractName) {\\n * _name = contractName.toShortStringWithFallback(_nameFallback);\\n * }\\n *\\n * function name() external view returns (string memory) {\\n * return _name.toStringWithFallback(_nameFallback);\\n * }\\n * }\\n * ```\\n */\\nlibrary ShortStrings {\\n // Used as an identifier for strings longer than 31 bytes.\\n bytes32 private constant _FALLBACK_SENTINEL = 0x00000000000000000000000000000000000000000000000000000000000000FF;\\n\\n error StringTooLong(string str);\\n error InvalidShortString();\\n\\n /**\\n * @dev Encode a string of at most 31 chars into a `ShortString`.\\n *\\n * This will trigger a `StringTooLong` error is the input string is too long.\\n */\\n function toShortString(string memory str) internal pure returns (ShortString) {\\n bytes memory bstr = bytes(str);\\n if (bstr.length > 31) {\\n revert StringTooLong(str);\\n }\\n return ShortString.wrap(bytes32(uint256(bytes32(bstr)) | bstr.length));\\n }\\n\\n /**\\n * @dev Decode a `ShortString` back to a \\\"normal\\\" string.\\n */\\n function toString(ShortString sstr) internal pure returns (string memory) {\\n uint256 len = byteLength(sstr);\\n // using `new string(len)` would work locally but is not memory safe.\\n string memory str = new string(32);\\n /// @solidity memory-safe-assembly\\n assembly {\\n mstore(str, len)\\n mstore(add(str, 0x20), sstr)\\n }\\n return str;\\n }\\n\\n /**\\n * @dev Return the length of a `ShortString`.\\n */\\n function byteLength(ShortString sstr) internal pure returns (uint256) {\\n uint256 result = uint256(ShortString.unwrap(sstr)) & 0xFF;\\n if (result > 31) {\\n revert InvalidShortString();\\n }\\n return result;\\n }\\n\\n /**\\n * @dev Encode a string into a `ShortString`, or write it to storage if it is too long.\\n */\\n function toShortStringWithFallback(string memory value, string storage store) internal returns (ShortString) {\\n if (bytes(value).length < 32) {\\n return toShortString(value);\\n } else {\\n StorageSlot.getStringSlot(store).value = value;\\n return ShortString.wrap(_FALLBACK_SENTINEL);\\n }\\n }\\n\\n /**\\n * @dev Decode a string that was encoded to `ShortString` or written to storage using {setWithFallback}.\\n */\\n function toStringWithFallback(ShortString value, string storage store) internal pure returns (string memory) {\\n if (ShortString.unwrap(value) != _FALLBACK_SENTINEL) {\\n return toString(value);\\n } else {\\n return store;\\n }\\n }\\n\\n /**\\n * @dev Return the length of a string that was encoded to `ShortString` or written to storage using {setWithFallback}.\\n *\\n * WARNING: This will return the \\\"byte length\\\" of the string. This may not reflect the actual length in terms of\\n * actual characters as the UTF-8 encoding of a single character can span over multiple bytes.\\n */\\n function byteLengthWithFallback(ShortString value, string storage store) internal view returns (uint256) {\\n if (ShortString.unwrap(value) != _FALLBACK_SENTINEL) {\\n return byteLength(value);\\n } else {\\n return bytes(store).length;\\n }\\n }\\n}\\n\",\"keccak256\":\"0xc0e310c163edf15db45d4ff938113ab357f94fa86e61ea8e790853c4d2e13256\",\"license\":\"MIT\"},\"@openzeppelin/contracts/utils/StorageSlot.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v4.9.0) (utils/StorageSlot.sol)\\n// This file was procedurally generated from scripts/generate/templates/StorageSlot.js.\\n\\npragma solidity ^0.8.0;\\n\\n/**\\n * @dev Library for reading and writing primitive types to specific storage slots.\\n *\\n * Storage slots are often used to avoid storage conflict when dealing with upgradeable contracts.\\n * This library helps with reading and writing to such slots without the need for inline assembly.\\n *\\n * The functions in this library return Slot structs that contain a `value` member that can be used to read or write.\\n *\\n * Example usage to set ERC1967 implementation slot:\\n * ```solidity\\n * contract ERC1967 {\\n * bytes32 internal constant _IMPLEMENTATION_SLOT = 0x360894a13ba1a3210667c828492db98dca3e2076cc3735a920a3ca505d382bbc;\\n *\\n * function _getImplementation() internal view returns (address) {\\n * return StorageSlot.getAddressSlot(_IMPLEMENTATION_SLOT).value;\\n * }\\n *\\n * function _setImplementation(address newImplementation) internal {\\n * require(Address.isContract(newImplementation), \\\"ERC1967: new implementation is not a contract\\\");\\n * StorageSlot.getAddressSlot(_IMPLEMENTATION_SLOT).value = newImplementation;\\n * }\\n * }\\n * ```\\n *\\n * _Available since v4.1 for `address`, `bool`, `bytes32`, `uint256`._\\n * _Available since v4.9 for `string`, `bytes`._\\n */\\nlibrary StorageSlot {\\n struct AddressSlot {\\n address value;\\n }\\n\\n struct BooleanSlot {\\n bool value;\\n }\\n\\n struct Bytes32Slot {\\n bytes32 value;\\n }\\n\\n struct Uint256Slot {\\n uint256 value;\\n }\\n\\n struct StringSlot {\\n string value;\\n }\\n\\n struct BytesSlot {\\n bytes value;\\n }\\n\\n /**\\n * @dev Returns an `AddressSlot` with member `value` located at `slot`.\\n */\\n function getAddressSlot(bytes32 slot) internal pure returns (AddressSlot storage r) {\\n /// @solidity memory-safe-assembly\\n assembly {\\n r.slot := slot\\n }\\n }\\n\\n /**\\n * @dev Returns an `BooleanSlot` with member `value` located at `slot`.\\n */\\n function getBooleanSlot(bytes32 slot) internal pure returns (BooleanSlot storage r) {\\n /// @solidity memory-safe-assembly\\n assembly {\\n r.slot := slot\\n }\\n }\\n\\n /**\\n * @dev Returns an `Bytes32Slot` with member `value` located at `slot`.\\n */\\n function getBytes32Slot(bytes32 slot) internal pure returns (Bytes32Slot storage r) {\\n /// @solidity memory-safe-assembly\\n assembly {\\n r.slot := slot\\n }\\n }\\n\\n /**\\n * @dev Returns an `Uint256Slot` with member `value` located at `slot`.\\n */\\n function getUint256Slot(bytes32 slot) internal pure returns (Uint256Slot storage r) {\\n /// @solidity memory-safe-assembly\\n assembly {\\n r.slot := slot\\n }\\n }\\n\\n /**\\n * @dev Returns an `StringSlot` with member `value` located at `slot`.\\n */\\n function getStringSlot(bytes32 slot) internal pure returns (StringSlot storage r) {\\n /// @solidity memory-safe-assembly\\n assembly {\\n r.slot := slot\\n }\\n }\\n\\n /**\\n * @dev Returns an `StringSlot` representation of the string storage pointer `store`.\\n */\\n function getStringSlot(string storage store) internal pure returns (StringSlot storage r) {\\n /// @solidity memory-safe-assembly\\n assembly {\\n r.slot := store.slot\\n }\\n }\\n\\n /**\\n * @dev Returns an `BytesSlot` with member `value` located at `slot`.\\n */\\n function getBytesSlot(bytes32 slot) internal pure returns (BytesSlot storage r) {\\n /// @solidity memory-safe-assembly\\n assembly {\\n r.slot := slot\\n }\\n }\\n\\n /**\\n * @dev Returns an `BytesSlot` representation of the bytes storage pointer `store`.\\n */\\n function getBytesSlot(bytes storage store) internal pure returns (BytesSlot storage r) {\\n /// @solidity memory-safe-assembly\\n assembly {\\n r.slot := store.slot\\n }\\n }\\n}\\n\",\"keccak256\":\"0xf09e68aa0dc6722a25bc46490e8d48ed864466d17313b8a0b254c36b54e49899\",\"license\":\"MIT\"},\"@openzeppelin/contracts/utils/Strings.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v4.9.0) (utils/Strings.sol)\\n\\npragma solidity ^0.8.0;\\n\\nimport \\\"./math/Math.sol\\\";\\nimport \\\"./math/SignedMath.sol\\\";\\n\\n/**\\n * @dev String operations.\\n */\\nlibrary Strings {\\n bytes16 private constant _SYMBOLS = \\\"0123456789abcdef\\\";\\n uint8 private constant _ADDRESS_LENGTH = 20;\\n\\n /**\\n * @dev Converts a `uint256` to its ASCII `string` decimal representation.\\n */\\n function toString(uint256 value) internal pure returns (string memory) {\\n unchecked {\\n uint256 length = Math.log10(value) + 1;\\n string memory buffer = new string(length);\\n uint256 ptr;\\n /// @solidity memory-safe-assembly\\n assembly {\\n ptr := add(buffer, add(32, length))\\n }\\n while (true) {\\n ptr--;\\n /// @solidity memory-safe-assembly\\n assembly {\\n mstore8(ptr, byte(mod(value, 10), _SYMBOLS))\\n }\\n value /= 10;\\n if (value == 0) break;\\n }\\n return buffer;\\n }\\n }\\n\\n /**\\n * @dev Converts a `int256` to its ASCII `string` decimal representation.\\n */\\n function toString(int256 value) internal pure returns (string memory) {\\n return string(abi.encodePacked(value < 0 ? \\\"-\\\" : \\\"\\\", toString(SignedMath.abs(value))));\\n }\\n\\n /**\\n * @dev Converts a `uint256` to its ASCII `string` hexadecimal representation.\\n */\\n function toHexString(uint256 value) internal pure returns (string memory) {\\n unchecked {\\n return toHexString(value, Math.log256(value) + 1);\\n }\\n }\\n\\n /**\\n * @dev Converts a `uint256` to its ASCII `string` hexadecimal representation with fixed length.\\n */\\n function toHexString(uint256 value, uint256 length) internal pure returns (string memory) {\\n bytes memory buffer = new bytes(2 * length + 2);\\n buffer[0] = \\\"0\\\";\\n buffer[1] = \\\"x\\\";\\n for (uint256 i = 2 * length + 1; i > 1; --i) {\\n buffer[i] = _SYMBOLS[value & 0xf];\\n value >>= 4;\\n }\\n require(value == 0, \\\"Strings: hex length insufficient\\\");\\n return string(buffer);\\n }\\n\\n /**\\n * @dev Converts an `address` with fixed length of 20 bytes to its not checksummed ASCII `string` hexadecimal representation.\\n */\\n function toHexString(address addr) internal pure returns (string memory) {\\n return toHexString(uint256(uint160(addr)), _ADDRESS_LENGTH);\\n }\\n\\n /**\\n * @dev Returns true if the two strings are equal.\\n */\\n function equal(string memory a, string memory b) internal pure returns (bool) {\\n return keccak256(bytes(a)) == keccak256(bytes(b));\\n }\\n}\\n\",\"keccak256\":\"0x3088eb2868e8d13d89d16670b5f8612c4ab9ff8956272837d8e90106c59c14a0\",\"license\":\"MIT\"},\"@openzeppelin/contracts/utils/cryptography/ECDSA.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v4.9.0) (utils/cryptography/ECDSA.sol)\\n\\npragma solidity ^0.8.0;\\n\\nimport \\\"../Strings.sol\\\";\\n\\n/**\\n * @dev Elliptic Curve Digital Signature Algorithm (ECDSA) operations.\\n *\\n * These functions can be used to verify that a message was signed by the holder\\n * of the private keys of a given address.\\n */\\nlibrary ECDSA {\\n enum RecoverError {\\n NoError,\\n InvalidSignature,\\n InvalidSignatureLength,\\n InvalidSignatureS,\\n InvalidSignatureV // Deprecated in v4.8\\n }\\n\\n function _throwError(RecoverError error) private pure {\\n if (error == RecoverError.NoError) {\\n return; // no error: do nothing\\n } else if (error == RecoverError.InvalidSignature) {\\n revert(\\\"ECDSA: invalid signature\\\");\\n } else if (error == RecoverError.InvalidSignatureLength) {\\n revert(\\\"ECDSA: invalid signature length\\\");\\n } else if (error == RecoverError.InvalidSignatureS) {\\n revert(\\\"ECDSA: invalid signature 's' value\\\");\\n }\\n }\\n\\n /**\\n * @dev Returns the address that signed a hashed message (`hash`) with\\n * `signature` or error string. This address can then be used for verification purposes.\\n *\\n * The `ecrecover` EVM opcode allows for malleable (non-unique) signatures:\\n * this function rejects them by requiring the `s` value to be in the lower\\n * half order, and the `v` value to be either 27 or 28.\\n *\\n * IMPORTANT: `hash` _must_ be the result of a hash operation for the\\n * verification to be secure: it is possible to craft signatures that\\n * recover to arbitrary addresses for non-hashed data. A safe way to ensure\\n * this is by receiving a hash of the original message (which may otherwise\\n * be too long), and then calling {toEthSignedMessageHash} on it.\\n *\\n * Documentation for signature generation:\\n * - with https://web3js.readthedocs.io/en/v1.3.4/web3-eth-accounts.html#sign[Web3.js]\\n * - with https://docs.ethers.io/v5/api/signer/#Signer-signMessage[ethers]\\n *\\n * _Available since v4.3._\\n */\\n function tryRecover(bytes32 hash, bytes memory signature) internal pure returns (address, RecoverError) {\\n if (signature.length == 65) {\\n bytes32 r;\\n bytes32 s;\\n uint8 v;\\n // ecrecover takes the signature parameters, and the only way to get them\\n // currently is to use assembly.\\n /// @solidity memory-safe-assembly\\n assembly {\\n r := mload(add(signature, 0x20))\\n s := mload(add(signature, 0x40))\\n v := byte(0, mload(add(signature, 0x60)))\\n }\\n return tryRecover(hash, v, r, s);\\n } else {\\n return (address(0), RecoverError.InvalidSignatureLength);\\n }\\n }\\n\\n /**\\n * @dev Returns the address that signed a hashed message (`hash`) with\\n * `signature`. This address can then be used for verification purposes.\\n *\\n * The `ecrecover` EVM opcode allows for malleable (non-unique) signatures:\\n * this function rejects them by requiring the `s` value to be in the lower\\n * half order, and the `v` value to be either 27 or 28.\\n *\\n * IMPORTANT: `hash` _must_ be the result of a hash operation for the\\n * verification to be secure: it is possible to craft signatures that\\n * recover to arbitrary addresses for non-hashed data. A safe way to ensure\\n * this is by receiving a hash of the original message (which may otherwise\\n * be too long), and then calling {toEthSignedMessageHash} on it.\\n */\\n function recover(bytes32 hash, bytes memory signature) internal pure returns (address) {\\n (address recovered, RecoverError error) = tryRecover(hash, signature);\\n _throwError(error);\\n return recovered;\\n }\\n\\n /**\\n * @dev Overload of {ECDSA-tryRecover} that receives the `r` and `vs` short-signature fields separately.\\n *\\n * See https://eips.ethereum.org/EIPS/eip-2098[EIP-2098 short signatures]\\n *\\n * _Available since v4.3._\\n */\\n function tryRecover(bytes32 hash, bytes32 r, bytes32 vs) internal pure returns (address, RecoverError) {\\n bytes32 s = vs & bytes32(0x7fffffffffffffffffffffffffffffffffffffffffffffffffffffffffffffff);\\n uint8 v = uint8((uint256(vs) >> 255) + 27);\\n return tryRecover(hash, v, r, s);\\n }\\n\\n /**\\n * @dev Overload of {ECDSA-recover} that receives the `r and `vs` short-signature fields separately.\\n *\\n * _Available since v4.2._\\n */\\n function recover(bytes32 hash, bytes32 r, bytes32 vs) internal pure returns (address) {\\n (address recovered, RecoverError error) = tryRecover(hash, r, vs);\\n _throwError(error);\\n return recovered;\\n }\\n\\n /**\\n * @dev Overload of {ECDSA-tryRecover} that receives the `v`,\\n * `r` and `s` signature fields separately.\\n *\\n * _Available since v4.3._\\n */\\n function tryRecover(bytes32 hash, uint8 v, bytes32 r, bytes32 s) internal pure returns (address, RecoverError) {\\n // EIP-2 still allows signature malleability for ecrecover(). Remove this possibility and make the signature\\n // unique. Appendix F in the Ethereum Yellow paper (https://ethereum.github.io/yellowpaper/paper.pdf), defines\\n // the valid range for s in (301): 0 < s < secp256k1n \\u00f7 2 + 1, and for v in (302): v \\u2208 {27, 28}. Most\\n // signatures from current libraries generate a unique signature with an s-value in the lower half order.\\n //\\n // If your library generates malleable signatures, such as s-values in the upper range, calculate a new s-value\\n // with 0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEBAAEDCE6AF48A03BBFD25E8CD0364141 - s1 and flip v from 27 to 28 or\\n // vice versa. If your library also generates signatures with 0/1 for v instead 27/28, add 27 to v to accept\\n // these malleable signatures as well.\\n if (uint256(s) > 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF5D576E7357A4501DDFE92F46681B20A0) {\\n return (address(0), RecoverError.InvalidSignatureS);\\n }\\n\\n // If the signature is valid (and not malleable), return the signer address\\n address signer = ecrecover(hash, v, r, s);\\n if (signer == address(0)) {\\n return (address(0), RecoverError.InvalidSignature);\\n }\\n\\n return (signer, RecoverError.NoError);\\n }\\n\\n /**\\n * @dev Overload of {ECDSA-recover} that receives the `v`,\\n * `r` and `s` signature fields separately.\\n */\\n function recover(bytes32 hash, uint8 v, bytes32 r, bytes32 s) internal pure returns (address) {\\n (address recovered, RecoverError error) = tryRecover(hash, v, r, s);\\n _throwError(error);\\n return recovered;\\n }\\n\\n /**\\n * @dev Returns an Ethereum Signed Message, created from a `hash`. This\\n * produces hash corresponding to the one signed with the\\n * https://eth.wiki/json-rpc/API#eth_sign[`eth_sign`]\\n * JSON-RPC method as part of EIP-191.\\n *\\n * See {recover}.\\n */\\n function toEthSignedMessageHash(bytes32 hash) internal pure returns (bytes32 message) {\\n // 32 is the length in bytes of hash,\\n // enforced by the type signature above\\n /// @solidity memory-safe-assembly\\n assembly {\\n mstore(0x00, \\\"\\\\x19Ethereum Signed Message:\\\\n32\\\")\\n mstore(0x1c, hash)\\n message := keccak256(0x00, 0x3c)\\n }\\n }\\n\\n /**\\n * @dev Returns an Ethereum Signed Message, created from `s`. This\\n * produces hash corresponding to the one signed with the\\n * https://eth.wiki/json-rpc/API#eth_sign[`eth_sign`]\\n * JSON-RPC method as part of EIP-191.\\n *\\n * See {recover}.\\n */\\n function toEthSignedMessageHash(bytes memory s) internal pure returns (bytes32) {\\n return keccak256(abi.encodePacked(\\\"\\\\x19Ethereum Signed Message:\\\\n\\\", Strings.toString(s.length), s));\\n }\\n\\n /**\\n * @dev Returns an Ethereum Signed Typed Data, created from a\\n * `domainSeparator` and a `structHash`. This produces hash corresponding\\n * to the one signed with the\\n * https://eips.ethereum.org/EIPS/eip-712[`eth_signTypedData`]\\n * JSON-RPC method as part of EIP-712.\\n *\\n * See {recover}.\\n */\\n function toTypedDataHash(bytes32 domainSeparator, bytes32 structHash) internal pure returns (bytes32 data) {\\n /// @solidity memory-safe-assembly\\n assembly {\\n let ptr := mload(0x40)\\n mstore(ptr, \\\"\\\\x19\\\\x01\\\")\\n mstore(add(ptr, 0x02), domainSeparator)\\n mstore(add(ptr, 0x22), structHash)\\n data := keccak256(ptr, 0x42)\\n }\\n }\\n\\n /**\\n * @dev Returns an Ethereum Signed Data with intended validator, created from a\\n * `validator` and `data` according to the version 0 of EIP-191.\\n *\\n * See {recover}.\\n */\\n function toDataWithIntendedValidatorHash(address validator, bytes memory data) internal pure returns (bytes32) {\\n return keccak256(abi.encodePacked(\\\"\\\\x19\\\\x00\\\", validator, data));\\n }\\n}\\n\",\"keccak256\":\"0x809bc3edb4bcbef8263fa616c1b60ee0004b50a8a1bfa164d8f57fd31f520c58\",\"license\":\"MIT\"},\"@openzeppelin/contracts/utils/cryptography/EIP712.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v4.9.0) (utils/cryptography/EIP712.sol)\\n\\npragma solidity ^0.8.8;\\n\\nimport \\\"./ECDSA.sol\\\";\\nimport \\\"../ShortStrings.sol\\\";\\nimport \\\"../../interfaces/IERC5267.sol\\\";\\n\\n/**\\n * @dev https://eips.ethereum.org/EIPS/eip-712[EIP 712] is a standard for hashing and signing of typed structured data.\\n *\\n * The encoding specified in the EIP is very generic, and such a generic implementation in Solidity is not feasible,\\n * thus this contract does not implement the encoding itself. Protocols need to implement the type-specific encoding\\n * they need in their contracts using a combination of `abi.encode` and `keccak256`.\\n *\\n * This contract implements the EIP 712 domain separator ({_domainSeparatorV4}) that is used as part of the encoding\\n * scheme, and the final step of the encoding to obtain the message digest that is then signed via ECDSA\\n * ({_hashTypedDataV4}).\\n *\\n * The implementation of the domain separator was designed to be as efficient as possible while still properly updating\\n * the chain id to protect against replay attacks on an eventual fork of the chain.\\n *\\n * NOTE: This contract implements the version of the encoding known as \\\"v4\\\", as implemented by the JSON RPC method\\n * https://docs.metamask.io/guide/signing-data.html[`eth_signTypedDataV4` in MetaMask].\\n *\\n * NOTE: In the upgradeable version of this contract, the cached values will correspond to the address, and the domain\\n * separator of the implementation contract. This will cause the `_domainSeparatorV4` function to always rebuild the\\n * separator from the immutable values, which is cheaper than accessing a cached version in cold storage.\\n *\\n * _Available since v3.4._\\n *\\n * @custom:oz-upgrades-unsafe-allow state-variable-immutable state-variable-assignment\\n */\\nabstract contract EIP712 is IERC5267 {\\n using ShortStrings for *;\\n\\n bytes32 private constant _TYPE_HASH =\\n keccak256(\\\"EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)\\\");\\n\\n // Cache the domain separator as an immutable value, but also store the chain id that it corresponds to, in order to\\n // invalidate the cached domain separator if the chain id changes.\\n bytes32 private immutable _cachedDomainSeparator;\\n uint256 private immutable _cachedChainId;\\n address private immutable _cachedThis;\\n\\n bytes32 private immutable _hashedName;\\n bytes32 private immutable _hashedVersion;\\n\\n ShortString private immutable _name;\\n ShortString private immutable _version;\\n string private _nameFallback;\\n string private _versionFallback;\\n\\n /**\\n * @dev Initializes the domain separator and parameter caches.\\n *\\n * The meaning of `name` and `version` is specified in\\n * https://eips.ethereum.org/EIPS/eip-712#definition-of-domainseparator[EIP 712]:\\n *\\n * - `name`: the user readable name of the signing domain, i.e. the name of the DApp or the protocol.\\n * - `version`: the current major version of the signing domain.\\n *\\n * NOTE: These parameters cannot be changed except through a xref:learn::upgrading-smart-contracts.adoc[smart\\n * contract upgrade].\\n */\\n constructor(string memory name, string memory version) {\\n _name = name.toShortStringWithFallback(_nameFallback);\\n _version = version.toShortStringWithFallback(_versionFallback);\\n _hashedName = keccak256(bytes(name));\\n _hashedVersion = keccak256(bytes(version));\\n\\n _cachedChainId = block.chainid;\\n _cachedDomainSeparator = _buildDomainSeparator();\\n _cachedThis = address(this);\\n }\\n\\n /**\\n * @dev Returns the domain separator for the current chain.\\n */\\n function _domainSeparatorV4() internal view returns (bytes32) {\\n if (address(this) == _cachedThis && block.chainid == _cachedChainId) {\\n return _cachedDomainSeparator;\\n } else {\\n return _buildDomainSeparator();\\n }\\n }\\n\\n function _buildDomainSeparator() private view returns (bytes32) {\\n return keccak256(abi.encode(_TYPE_HASH, _hashedName, _hashedVersion, block.chainid, address(this)));\\n }\\n\\n /**\\n * @dev Given an already https://eips.ethereum.org/EIPS/eip-712#definition-of-hashstruct[hashed struct], this\\n * function returns the hash of the fully encoded EIP712 message for this domain.\\n *\\n * This hash can be used together with {ECDSA-recover} to obtain the signer of a message. For example:\\n *\\n * ```solidity\\n * bytes32 digest = _hashTypedDataV4(keccak256(abi.encode(\\n * keccak256(\\\"Mail(address to,string contents)\\\"),\\n * mailTo,\\n * keccak256(bytes(mailContents))\\n * )));\\n * address signer = ECDSA.recover(digest, signature);\\n * ```\\n */\\n function _hashTypedDataV4(bytes32 structHash) internal view virtual returns (bytes32) {\\n return ECDSA.toTypedDataHash(_domainSeparatorV4(), structHash);\\n }\\n\\n /**\\n * @dev See {EIP-5267}.\\n *\\n * _Available since v4.9._\\n */\\n function eip712Domain()\\n public\\n view\\n virtual\\n override\\n returns (\\n bytes1 fields,\\n string memory name,\\n string memory version,\\n uint256 chainId,\\n address verifyingContract,\\n bytes32 salt,\\n uint256[] memory extensions\\n )\\n {\\n return (\\n hex\\\"0f\\\", // 01111\\n _name.toStringWithFallback(_nameFallback),\\n _version.toStringWithFallback(_versionFallback),\\n block.chainid,\\n address(this),\\n bytes32(0),\\n new uint256[](0)\\n );\\n }\\n}\\n\",\"keccak256\":\"0x8432884527a7ad91e6eed1cfc5a0811ae2073e5bca107bd0ca442e9236b03dbd\",\"license\":\"MIT\"},\"@openzeppelin/contracts/utils/cryptography/SignatureChecker.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v4.9.0) (utils/cryptography/SignatureChecker.sol)\\n\\npragma solidity ^0.8.0;\\n\\nimport \\\"./ECDSA.sol\\\";\\nimport \\\"../../interfaces/IERC1271.sol\\\";\\n\\n/**\\n * @dev Signature verification helper that can be used instead of `ECDSA.recover` to seamlessly support both ECDSA\\n * signatures from externally owned accounts (EOAs) as well as ERC1271 signatures from smart contract wallets like\\n * Argent and Gnosis Safe.\\n *\\n * _Available since v4.1._\\n */\\nlibrary SignatureChecker {\\n /**\\n * @dev Checks if a signature is valid for a given signer and data hash. If the signer is a smart contract, the\\n * signature is validated against that smart contract using ERC1271, otherwise it's validated using `ECDSA.recover`.\\n *\\n * NOTE: Unlike ECDSA signatures, contract signatures are revocable, and the outcome of this function can thus\\n * change through time. It could return true at block N and false at block N+1 (or the opposite).\\n */\\n function isValidSignatureNow(address signer, bytes32 hash, bytes memory signature) internal view returns (bool) {\\n (address recovered, ECDSA.RecoverError error) = ECDSA.tryRecover(hash, signature);\\n return\\n (error == ECDSA.RecoverError.NoError && recovered == signer) ||\\n isValidERC1271SignatureNow(signer, hash, signature);\\n }\\n\\n /**\\n * @dev Checks if a signature is valid for a given signer and data hash. The signature is validated\\n * against the signer smart contract using ERC1271.\\n *\\n * NOTE: Unlike ECDSA signatures, contract signatures are revocable, and the outcome of this function can thus\\n * change through time. It could return true at block N and false at block N+1 (or the opposite).\\n */\\n function isValidERC1271SignatureNow(\\n address signer,\\n bytes32 hash,\\n bytes memory signature\\n ) internal view returns (bool) {\\n (bool success, bytes memory result) = signer.staticcall(\\n abi.encodeWithSelector(IERC1271.isValidSignature.selector, hash, signature)\\n );\\n return (success &&\\n result.length >= 32 &&\\n abi.decode(result, (bytes32)) == bytes32(IERC1271.isValidSignature.selector));\\n }\\n}\\n\",\"keccak256\":\"0x3af3ca86df39aac39a0514c84459d691434a108d2151c8ce9d69f32e315cab80\",\"license\":\"MIT\"},\"@openzeppelin/contracts/utils/math/Math.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v4.9.0) (utils/math/Math.sol)\\n\\npragma solidity ^0.8.0;\\n\\n/**\\n * @dev Standard math utilities missing in the Solidity language.\\n */\\nlibrary Math {\\n enum Rounding {\\n Down, // Toward negative infinity\\n Up, // Toward infinity\\n Zero // Toward zero\\n }\\n\\n /**\\n * @dev Returns the largest of two numbers.\\n */\\n function max(uint256 a, uint256 b) internal pure returns (uint256) {\\n return a > b ? a : b;\\n }\\n\\n /**\\n * @dev Returns the smallest of two numbers.\\n */\\n function min(uint256 a, uint256 b) internal pure returns (uint256) {\\n return a < b ? a : b;\\n }\\n\\n /**\\n * @dev Returns the average of two numbers. The result is rounded towards\\n * zero.\\n */\\n function average(uint256 a, uint256 b) internal pure returns (uint256) {\\n // (a + b) / 2 can overflow.\\n return (a & b) + (a ^ b) / 2;\\n }\\n\\n /**\\n * @dev Returns the ceiling of the division of two numbers.\\n *\\n * This differs from standard division with `/` in that it rounds up instead\\n * of rounding down.\\n */\\n function ceilDiv(uint256 a, uint256 b) internal pure returns (uint256) {\\n // (a + b - 1) / b can overflow on addition, so we distribute.\\n return a == 0 ? 0 : (a - 1) / b + 1;\\n }\\n\\n /**\\n * @notice Calculates floor(x * y / denominator) with full precision. Throws if result overflows a uint256 or denominator == 0\\n * @dev Original credit to Remco Bloemen under MIT license (https://xn--2-umb.com/21/muldiv)\\n * with further edits by Uniswap Labs also under MIT license.\\n */\\n function mulDiv(uint256 x, uint256 y, uint256 denominator) internal pure returns (uint256 result) {\\n unchecked {\\n // 512-bit multiply [prod1 prod0] = x * y. Compute the product mod 2^256 and mod 2^256 - 1, then use\\n // use the Chinese Remainder Theorem to reconstruct the 512 bit result. The result is stored in two 256\\n // variables such that product = prod1 * 2^256 + prod0.\\n uint256 prod0; // Least significant 256 bits of the product\\n uint256 prod1; // Most significant 256 bits of the product\\n assembly {\\n let mm := mulmod(x, y, not(0))\\n prod0 := mul(x, y)\\n prod1 := sub(sub(mm, prod0), lt(mm, prod0))\\n }\\n\\n // Handle non-overflow cases, 256 by 256 division.\\n if (prod1 == 0) {\\n // Solidity will revert if denominator == 0, unlike the div opcode on its own.\\n // The surrounding unchecked block does not change this fact.\\n // See https://docs.soliditylang.org/en/latest/control-structures.html#checked-or-unchecked-arithmetic.\\n return prod0 / denominator;\\n }\\n\\n // Make sure the result is less than 2^256. Also prevents denominator == 0.\\n require(denominator > prod1, \\\"Math: mulDiv overflow\\\");\\n\\n ///////////////////////////////////////////////\\n // 512 by 256 division.\\n ///////////////////////////////////////////////\\n\\n // Make division exact by subtracting the remainder from [prod1 prod0].\\n uint256 remainder;\\n assembly {\\n // Compute remainder using mulmod.\\n remainder := mulmod(x, y, denominator)\\n\\n // Subtract 256 bit number from 512 bit number.\\n prod1 := sub(prod1, gt(remainder, prod0))\\n prod0 := sub(prod0, remainder)\\n }\\n\\n // Factor powers of two out of denominator and compute largest power of two divisor of denominator. Always >= 1.\\n // See https://cs.stackexchange.com/q/138556/92363.\\n\\n // Does not overflow because the denominator cannot be zero at this stage in the function.\\n uint256 twos = denominator & (~denominator + 1);\\n assembly {\\n // Divide denominator by twos.\\n denominator := div(denominator, twos)\\n\\n // Divide [prod1 prod0] by twos.\\n prod0 := div(prod0, twos)\\n\\n // Flip twos such that it is 2^256 / twos. If twos is zero, then it becomes one.\\n twos := add(div(sub(0, twos), twos), 1)\\n }\\n\\n // Shift in bits from prod1 into prod0.\\n prod0 |= prod1 * twos;\\n\\n // Invert denominator mod 2^256. Now that denominator is an odd number, it has an inverse modulo 2^256 such\\n // that denominator * inv = 1 mod 2^256. Compute the inverse by starting with a seed that is correct for\\n // four bits. That is, denominator * inv = 1 mod 2^4.\\n uint256 inverse = (3 * denominator) ^ 2;\\n\\n // Use the Newton-Raphson iteration to improve the precision. Thanks to Hensel's lifting lemma, this also works\\n // in modular arithmetic, doubling the correct bits in each step.\\n inverse *= 2 - denominator * inverse; // inverse mod 2^8\\n inverse *= 2 - denominator * inverse; // inverse mod 2^16\\n inverse *= 2 - denominator * inverse; // inverse mod 2^32\\n inverse *= 2 - denominator * inverse; // inverse mod 2^64\\n inverse *= 2 - denominator * inverse; // inverse mod 2^128\\n inverse *= 2 - denominator * inverse; // inverse mod 2^256\\n\\n // Because the division is now exact we can divide by multiplying with the modular inverse of denominator.\\n // This will give us the correct result modulo 2^256. Since the preconditions guarantee that the outcome is\\n // less than 2^256, this is the final result. We don't need to compute the high bits of the result and prod1\\n // is no longer required.\\n result = prod0 * inverse;\\n return result;\\n }\\n }\\n\\n /**\\n * @notice Calculates x * y / denominator with full precision, following the selected rounding direction.\\n */\\n function mulDiv(uint256 x, uint256 y, uint256 denominator, Rounding rounding) internal pure returns (uint256) {\\n uint256 result = mulDiv(x, y, denominator);\\n if (rounding == Rounding.Up && mulmod(x, y, denominator) > 0) {\\n result += 1;\\n }\\n return result;\\n }\\n\\n /**\\n * @dev Returns the square root of a number. If the number is not a perfect square, the value is rounded down.\\n *\\n * Inspired by Henry S. Warren, Jr.'s \\\"Hacker's Delight\\\" (Chapter 11).\\n */\\n function sqrt(uint256 a) internal pure returns (uint256) {\\n if (a == 0) {\\n return 0;\\n }\\n\\n // For our first guess, we get the biggest power of 2 which is smaller than the square root of the target.\\n //\\n // We know that the \\\"msb\\\" (most significant bit) of our target number `a` is a power of 2 such that we have\\n // `msb(a) <= a < 2*msb(a)`. This value can be written `msb(a)=2**k` with `k=log2(a)`.\\n //\\n // This can be rewritten `2**log2(a) <= a < 2**(log2(a) + 1)`\\n // \\u2192 `sqrt(2**k) <= sqrt(a) < sqrt(2**(k+1))`\\n // \\u2192 `2**(k/2) <= sqrt(a) < 2**((k+1)/2) <= 2**(k/2 + 1)`\\n //\\n // Consequently, `2**(log2(a) / 2)` is a good first approximation of `sqrt(a)` with at least 1 correct bit.\\n uint256 result = 1 << (log2(a) >> 1);\\n\\n // At this point `result` is an estimation with one bit of precision. We know the true value is a uint128,\\n // since it is the square root of a uint256. Newton's method converges quadratically (precision doubles at\\n // every iteration). We thus need at most 7 iteration to turn our partial result with one bit of precision\\n // into the expected uint128 result.\\n unchecked {\\n result = (result + a / result) >> 1;\\n result = (result + a / result) >> 1;\\n result = (result + a / result) >> 1;\\n result = (result + a / result) >> 1;\\n result = (result + a / result) >> 1;\\n result = (result + a / result) >> 1;\\n result = (result + a / result) >> 1;\\n return min(result, a / result);\\n }\\n }\\n\\n /**\\n * @notice Calculates sqrt(a), following the selected rounding direction.\\n */\\n function sqrt(uint256 a, Rounding rounding) internal pure returns (uint256) {\\n unchecked {\\n uint256 result = sqrt(a);\\n return result + (rounding == Rounding.Up && result * result < a ? 1 : 0);\\n }\\n }\\n\\n /**\\n * @dev Return the log in base 2, rounded down, of a positive value.\\n * Returns 0 if given 0.\\n */\\n function log2(uint256 value) internal pure returns (uint256) {\\n uint256 result = 0;\\n unchecked {\\n if (value >> 128 > 0) {\\n value >>= 128;\\n result += 128;\\n }\\n if (value >> 64 > 0) {\\n value >>= 64;\\n result += 64;\\n }\\n if (value >> 32 > 0) {\\n value >>= 32;\\n result += 32;\\n }\\n if (value >> 16 > 0) {\\n value >>= 16;\\n result += 16;\\n }\\n if (value >> 8 > 0) {\\n value >>= 8;\\n result += 8;\\n }\\n if (value >> 4 > 0) {\\n value >>= 4;\\n result += 4;\\n }\\n if (value >> 2 > 0) {\\n value >>= 2;\\n result += 2;\\n }\\n if (value >> 1 > 0) {\\n result += 1;\\n }\\n }\\n return result;\\n }\\n\\n /**\\n * @dev Return the log in base 2, following the selected rounding direction, of a positive value.\\n * Returns 0 if given 0.\\n */\\n function log2(uint256 value, Rounding rounding) internal pure returns (uint256) {\\n unchecked {\\n uint256 result = log2(value);\\n return result + (rounding == Rounding.Up && 1 << result < value ? 1 : 0);\\n }\\n }\\n\\n /**\\n * @dev Return the log in base 10, rounded down, of a positive value.\\n * Returns 0 if given 0.\\n */\\n function log10(uint256 value) internal pure returns (uint256) {\\n uint256 result = 0;\\n unchecked {\\n if (value >= 10 ** 64) {\\n value /= 10 ** 64;\\n result += 64;\\n }\\n if (value >= 10 ** 32) {\\n value /= 10 ** 32;\\n result += 32;\\n }\\n if (value >= 10 ** 16) {\\n value /= 10 ** 16;\\n result += 16;\\n }\\n if (value >= 10 ** 8) {\\n value /= 10 ** 8;\\n result += 8;\\n }\\n if (value >= 10 ** 4) {\\n value /= 10 ** 4;\\n result += 4;\\n }\\n if (value >= 10 ** 2) {\\n value /= 10 ** 2;\\n result += 2;\\n }\\n if (value >= 10 ** 1) {\\n result += 1;\\n }\\n }\\n return result;\\n }\\n\\n /**\\n * @dev Return the log in base 10, following the selected rounding direction, of a positive value.\\n * Returns 0 if given 0.\\n */\\n function log10(uint256 value, Rounding rounding) internal pure returns (uint256) {\\n unchecked {\\n uint256 result = log10(value);\\n return result + (rounding == Rounding.Up && 10 ** result < value ? 1 : 0);\\n }\\n }\\n\\n /**\\n * @dev Return the log in base 256, rounded down, of a positive value.\\n * Returns 0 if given 0.\\n *\\n * Adding one to the result gives the number of pairs of hex symbols needed to represent `value` as a hex string.\\n */\\n function log256(uint256 value) internal pure returns (uint256) {\\n uint256 result = 0;\\n unchecked {\\n if (value >> 128 > 0) {\\n value >>= 128;\\n result += 16;\\n }\\n if (value >> 64 > 0) {\\n value >>= 64;\\n result += 8;\\n }\\n if (value >> 32 > 0) {\\n value >>= 32;\\n result += 4;\\n }\\n if (value >> 16 > 0) {\\n value >>= 16;\\n result += 2;\\n }\\n if (value >> 8 > 0) {\\n result += 1;\\n }\\n }\\n return result;\\n }\\n\\n /**\\n * @dev Return the log in base 256, following the selected rounding direction, of a positive value.\\n * Returns 0 if given 0.\\n */\\n function log256(uint256 value, Rounding rounding) internal pure returns (uint256) {\\n unchecked {\\n uint256 result = log256(value);\\n return result + (rounding == Rounding.Up && 1 << (result << 3) < value ? 1 : 0);\\n }\\n }\\n}\\n\",\"keccak256\":\"0xe4455ac1eb7fc497bb7402579e7b4d64d928b846fce7d2b6fde06d366f21c2b3\",\"license\":\"MIT\"},\"@openzeppelin/contracts/utils/math/SignedMath.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v4.8.0) (utils/math/SignedMath.sol)\\n\\npragma solidity ^0.8.0;\\n\\n/**\\n * @dev Standard signed math utilities missing in the Solidity language.\\n */\\nlibrary SignedMath {\\n /**\\n * @dev Returns the largest of two signed numbers.\\n */\\n function max(int256 a, int256 b) internal pure returns (int256) {\\n return a > b ? a : b;\\n }\\n\\n /**\\n * @dev Returns the smallest of two signed numbers.\\n */\\n function min(int256 a, int256 b) internal pure returns (int256) {\\n return a < b ? a : b;\\n }\\n\\n /**\\n * @dev Returns the average of two signed numbers without overflow.\\n * The result is rounded towards zero.\\n */\\n function average(int256 a, int256 b) internal pure returns (int256) {\\n // Formula from the book \\\"Hacker's Delight\\\"\\n int256 x = (a & b) + ((a ^ b) >> 1);\\n return x + (int256(uint256(x) >> 255) & (a ^ b));\\n }\\n\\n /**\\n * @dev Returns the absolute unsigned value of a signed value.\\n */\\n function abs(int256 n) internal pure returns (uint256) {\\n unchecked {\\n // must be unchecked in order to support `n = type(int256).min`\\n return uint256(n >= 0 ? n : -n);\\n }\\n }\\n}\\n\",\"keccak256\":\"0xf92515413956f529d95977adc9b0567d583c6203fc31ab1c23824c35187e3ddc\",\"license\":\"MIT\"},\"contracts/Common.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.0;\\n\\n// A representation of an empty/uninitialized UID.\\nbytes32 constant EMPTY_UID = 0;\\n\\n// A zero expiration represents an non-expiring attestation.\\nuint64 constant NO_EXPIRATION_TIME = 0;\\n\\nerror AccessDenied();\\nerror DeadlineExpired();\\nerror InvalidEAS();\\nerror InvalidLength();\\nerror InvalidSignature();\\nerror NotFound();\\n\\n/// @notice A struct representing ECDSA signature data.\\nstruct Signature {\\n uint8 v; // The recovery ID.\\n bytes32 r; // The x-coordinate of the nonce R.\\n bytes32 s; // The signature data.\\n}\\n\\n/// @notice A struct representing a single attestation.\\nstruct Attestation {\\n bytes32 uid; // A unique identifier of the attestation.\\n bytes32 schema; // The unique identifier of the schema.\\n uint64 time; // The time when the attestation was created (Unix timestamp).\\n uint64 expirationTime; // The time when the attestation expires (Unix timestamp).\\n uint64 revocationTime; // The time when the attestation was revoked (Unix timestamp).\\n bytes32 refUID; // The UID of the related attestation.\\n address recipient; // The recipient of the attestation.\\n address attester; // The attester/sender of the attestation.\\n bool revocable; // Whether the attestation is revocable.\\n bytes data; // Custom attestation data.\\n}\\n\\n/// @notice A helper function to work with unchecked iterators in loops.\\nfunction uncheckedInc(uint256 i) pure returns (uint256 j) {\\n unchecked {\\n j = i + 1;\\n }\\n}\\n\",\"keccak256\":\"0x957bd2e6d0d6d637f86208b135c29fbaf4412cb08e5e7a61ede16b80561bf685\",\"license\":\"MIT\"},\"contracts/EAS.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.8.19;\\n\\nimport { Address } from \\\"@openzeppelin/contracts/utils/Address.sol\\\";\\n\\nimport { EIP1271Verifier } from \\\"./eip1271/EIP1271Verifier.sol\\\";\\n\\nimport { ISchemaResolver } from \\\"./resolver/ISchemaResolver.sol\\\";\\n\\n// prettier-ignore\\nimport {\\n AccessDenied,\\n EMPTY_UID,\\n Signature,\\n InvalidLength,\\n NotFound,\\n NO_EXPIRATION_TIME,\\n uncheckedInc\\n} from \\\"./Common.sol\\\";\\n\\n// prettier-ignore\\nimport {\\n Attestation,\\n AttestationRequest,\\n AttestationRequestData,\\n DelegatedAttestationRequest,\\n DelegatedRevocationRequest,\\n IEAS,\\n MultiAttestationRequest,\\n MultiDelegatedAttestationRequest,\\n MultiDelegatedRevocationRequest,\\n MultiRevocationRequest,\\n RevocationRequest,\\n RevocationRequestData\\n} from \\\"./IEAS.sol\\\";\\n\\nimport { Semver } from \\\"./Semver.sol\\\";\\nimport { ISchemaRegistry, SchemaRecord } from \\\"./ISchemaRegistry.sol\\\";\\n\\n/// @title EAS\\n/// @notice The Ethereum Attestation Service protocol.\\ncontract EAS is IEAS, Semver, EIP1271Verifier {\\n using Address for address payable;\\n\\n error AlreadyRevoked();\\n error AlreadyRevokedOffchain();\\n error AlreadyTimestamped();\\n error InsufficientValue();\\n error InvalidAttestation();\\n error InvalidAttestations();\\n error InvalidExpirationTime();\\n error InvalidOffset();\\n error InvalidRegistry();\\n error InvalidRevocation();\\n error InvalidRevocations();\\n error InvalidSchema();\\n error InvalidVerifier();\\n error Irrevocable();\\n error NotPayable();\\n error WrongSchema();\\n\\n /// @notice A struct representing an internal attestation result.\\n struct AttestationsResult {\\n uint256 usedValue; // Total ETH amount that was sent to resolvers.\\n bytes32[] uids; // UIDs of the new attestations.\\n }\\n\\n // The global schema registry.\\n ISchemaRegistry private immutable _schemaRegistry;\\n\\n // The global mapping between attestations and their UIDs.\\n mapping(bytes32 uid => Attestation attestation) private _db;\\n\\n // The global mapping between data and their timestamps.\\n mapping(bytes32 data => uint64 timestamp) private _timestamps;\\n\\n // The global mapping between data and their revocation timestamps.\\n mapping(address revoker => mapping(bytes32 data => uint64 timestamp) timestamps) private _revocationsOffchain;\\n\\n /// @dev Creates a new EAS instance.\\n /// @param registry The address of the global schema registry.\\n constructor(ISchemaRegistry registry) Semver(1, 3, 0) EIP1271Verifier(\\\"EAS\\\", \\\"1.3.0\\\") {\\n if (address(registry) == address(0)) {\\n revert InvalidRegistry();\\n }\\n\\n _schemaRegistry = registry;\\n }\\n\\n /// @inheritdoc IEAS\\n function getSchemaRegistry() external view returns (ISchemaRegistry) {\\n return _schemaRegistry;\\n }\\n\\n /// @inheritdoc IEAS\\n function attest(AttestationRequest calldata request) external payable returns (bytes32) {\\n AttestationRequestData[] memory data = new AttestationRequestData[](1);\\n data[0] = request.data;\\n\\n return _attest(request.schema, data, msg.sender, msg.value, true).uids[0];\\n }\\n\\n /// @inheritdoc IEAS\\n function attestByDelegation(\\n DelegatedAttestationRequest calldata delegatedRequest\\n ) external payable returns (bytes32) {\\n _verifyAttest(delegatedRequest);\\n\\n AttestationRequestData[] memory data = new AttestationRequestData[](1);\\n data[0] = delegatedRequest.data;\\n\\n return _attest(delegatedRequest.schema, data, delegatedRequest.attester, msg.value, true).uids[0];\\n }\\n\\n /// @inheritdoc IEAS\\n function multiAttest(MultiAttestationRequest[] calldata multiRequests) external payable returns (bytes32[] memory) {\\n // Since a multi-attest call is going to make multiple attestations for multiple schemas, we'd need to collect\\n // all the returned UIDs into a single list.\\n uint256 length = multiRequests.length;\\n bytes32[][] memory totalUIDs = new bytes32[][](length);\\n uint256 totalUIDCount = 0;\\n\\n // We are keeping track of the total available ETH amount that can be sent to resolvers and will keep deducting\\n // from it to verify that there isn't any attempt to send too much ETH to resolvers. Please note that unless\\n // some ETH was stuck in the contract by accident (which shouldn't happen in normal conditions), it won't be\\n // possible to send too much ETH anyway.\\n uint256 availableValue = msg.value;\\n\\n for (uint256 i = 0; i < length; i = uncheckedInc(i)) {\\n // The last batch is handled slightly differently: if the total available ETH wasn't spent in full and there\\n // is a remainder - it will be refunded back to the attester (something that we can only verify during the\\n // last and final batch).\\n bool last;\\n unchecked {\\n last = i == length - 1;\\n }\\n\\n // Process the current batch of attestations.\\n MultiAttestationRequest calldata multiRequest = multiRequests[i];\\n\\n // Ensure that data isn't empty.\\n if (multiRequest.data.length == 0) {\\n revert InvalidLength();\\n }\\n\\n AttestationsResult memory res = _attest(\\n multiRequest.schema,\\n multiRequest.data,\\n msg.sender,\\n availableValue,\\n last\\n );\\n\\n // Ensure to deduct the ETH that was forwarded to the resolver during the processing of this batch.\\n availableValue -= res.usedValue;\\n\\n // Collect UIDs (and merge them later).\\n totalUIDs[i] = res.uids;\\n unchecked {\\n totalUIDCount += res.uids.length;\\n }\\n }\\n\\n // Merge all the collected UIDs and return them as a flatten array.\\n return _mergeUIDs(totalUIDs, totalUIDCount);\\n }\\n\\n /// @inheritdoc IEAS\\n function multiAttestByDelegation(\\n MultiDelegatedAttestationRequest[] calldata multiDelegatedRequests\\n ) external payable returns (bytes32[] memory) {\\n // Since a multi-attest call is going to make multiple attestations for multiple schemas, we'd need to collect\\n // all the returned UIDs into a single list.\\n uint256 length = multiDelegatedRequests.length;\\n bytes32[][] memory totalUIDs = new bytes32[][](length);\\n uint256 totalUIDCount = 0;\\n\\n // We are keeping track of the total available ETH amount that can be sent to resolvers and will keep deducting\\n // from it to verify that there isn't any attempt to send too much ETH to resolvers. Please note that unless\\n // some ETH was stuck in the contract by accident (which shouldn't happen in normal conditions), it won't be\\n // possible to send too much ETH anyway.\\n uint256 availableValue = msg.value;\\n\\n for (uint256 i = 0; i < length; i = uncheckedInc(i)) {\\n // The last batch is handled slightly differently: if the total available ETH wasn't spent in full and there\\n // is a remainder - it will be refunded back to the attester (something that we can only verify during the\\n // last and final batch).\\n bool last;\\n unchecked {\\n last = i == length - 1;\\n }\\n\\n MultiDelegatedAttestationRequest calldata multiDelegatedRequest = multiDelegatedRequests[i];\\n AttestationRequestData[] calldata data = multiDelegatedRequest.data;\\n\\n // Ensure that no inputs are missing.\\n uint256 dataLength = data.length;\\n if (dataLength == 0 || dataLength != multiDelegatedRequest.signatures.length) {\\n revert InvalidLength();\\n }\\n\\n // Verify signatures. Please note that the signatures are assumed to be signed with increasing nonces.\\n for (uint256 j = 0; j < dataLength; j = uncheckedInc(j)) {\\n _verifyAttest(\\n DelegatedAttestationRequest({\\n schema: multiDelegatedRequest.schema,\\n data: data[j],\\n signature: multiDelegatedRequest.signatures[j],\\n attester: multiDelegatedRequest.attester,\\n deadline: multiDelegatedRequest.deadline\\n })\\n );\\n }\\n\\n // Process the current batch of attestations.\\n AttestationsResult memory res = _attest(\\n multiDelegatedRequest.schema,\\n data,\\n multiDelegatedRequest.attester,\\n availableValue,\\n last\\n );\\n\\n // Ensure to deduct the ETH that was forwarded to the resolver during the processing of this batch.\\n availableValue -= res.usedValue;\\n\\n // Collect UIDs (and merge them later).\\n totalUIDs[i] = res.uids;\\n unchecked {\\n totalUIDCount += res.uids.length;\\n }\\n }\\n\\n // Merge all the collected UIDs and return them as a flatten array.\\n return _mergeUIDs(totalUIDs, totalUIDCount);\\n }\\n\\n /// @inheritdoc IEAS\\n function revoke(RevocationRequest calldata request) external payable {\\n RevocationRequestData[] memory data = new RevocationRequestData[](1);\\n data[0] = request.data;\\n\\n _revoke(request.schema, data, msg.sender, msg.value, true);\\n }\\n\\n /// @inheritdoc IEAS\\n function revokeByDelegation(DelegatedRevocationRequest calldata delegatedRequest) external payable {\\n _verifyRevoke(delegatedRequest);\\n\\n RevocationRequestData[] memory data = new RevocationRequestData[](1);\\n data[0] = delegatedRequest.data;\\n\\n _revoke(delegatedRequest.schema, data, delegatedRequest.revoker, msg.value, true);\\n }\\n\\n /// @inheritdoc IEAS\\n function multiRevoke(MultiRevocationRequest[] calldata multiRequests) external payable {\\n // We are keeping track of the total available ETH amount that can be sent to resolvers and will keep deducting\\n // from it to verify that there isn't any attempt to send too much ETH to resolvers. Please note that unless\\n // some ETH was stuck in the contract by accident (which shouldn't happen in normal conditions), it won't be\\n // possible to send too much ETH anyway.\\n uint256 availableValue = msg.value;\\n\\n uint256 length = multiRequests.length;\\n for (uint256 i = 0; i < length; i = uncheckedInc(i)) {\\n // The last batch is handled slightly differently: if the total available ETH wasn't spent in full and there\\n // is a remainder - it will be refunded back to the attester (something that we can only verify during the\\n // last and final batch).\\n bool last;\\n unchecked {\\n last = i == length - 1;\\n }\\n\\n MultiRevocationRequest calldata multiRequest = multiRequests[i];\\n\\n // Ensure to deduct the ETH that was forwarded to the resolver during the processing of this batch.\\n availableValue -= _revoke(multiRequest.schema, multiRequest.data, msg.sender, availableValue, last);\\n }\\n }\\n\\n /// @inheritdoc IEAS\\n function multiRevokeByDelegation(\\n MultiDelegatedRevocationRequest[] calldata multiDelegatedRequests\\n ) external payable {\\n // We are keeping track of the total available ETH amount that can be sent to resolvers and will keep deducting\\n // from it to verify that there isn't any attempt to send too much ETH to resolvers. Please note that unless\\n // some ETH was stuck in the contract by accident (which shouldn't happen in normal conditions), it won't be\\n // possible to send too much ETH anyway.\\n uint256 availableValue = msg.value;\\n\\n uint256 length = multiDelegatedRequests.length;\\n for (uint256 i = 0; i < length; i = uncheckedInc(i)) {\\n // The last batch is handled slightly differently: if the total available ETH wasn't spent in full and there\\n // is a remainder - it will be refunded back to the attester (something that we can only verify during the\\n // last and final batch).\\n bool last;\\n unchecked {\\n last = i == length - 1;\\n }\\n\\n MultiDelegatedRevocationRequest memory multiDelegatedRequest = multiDelegatedRequests[i];\\n RevocationRequestData[] memory data = multiDelegatedRequest.data;\\n\\n // Ensure that no inputs are missing.\\n uint256 dataLength = data.length;\\n if (dataLength == 0 || dataLength != multiDelegatedRequest.signatures.length) {\\n revert InvalidLength();\\n }\\n\\n // Verify signatures. Please note that the signatures are assumed to be signed with increasing nonces.\\n for (uint256 j = 0; j < dataLength; j = uncheckedInc(j)) {\\n _verifyRevoke(\\n DelegatedRevocationRequest({\\n schema: multiDelegatedRequest.schema,\\n data: data[j],\\n signature: multiDelegatedRequest.signatures[j],\\n revoker: multiDelegatedRequest.revoker,\\n deadline: multiDelegatedRequest.deadline\\n })\\n );\\n }\\n\\n // Ensure to deduct the ETH that was forwarded to the resolver during the processing of this batch.\\n availableValue -= _revoke(\\n multiDelegatedRequest.schema,\\n data,\\n multiDelegatedRequest.revoker,\\n availableValue,\\n last\\n );\\n }\\n }\\n\\n /// @inheritdoc IEAS\\n function timestamp(bytes32 data) external returns (uint64) {\\n uint64 time = _time();\\n\\n _timestamp(data, time);\\n\\n return time;\\n }\\n\\n /// @inheritdoc IEAS\\n function revokeOffchain(bytes32 data) external returns (uint64) {\\n uint64 time = _time();\\n\\n _revokeOffchain(msg.sender, data, time);\\n\\n return time;\\n }\\n\\n /// @inheritdoc IEAS\\n function multiRevokeOffchain(bytes32[] calldata data) external returns (uint64) {\\n uint64 time = _time();\\n\\n uint256 length = data.length;\\n for (uint256 i = 0; i < length; i = uncheckedInc(i)) {\\n _revokeOffchain(msg.sender, data[i], time);\\n }\\n\\n return time;\\n }\\n\\n /// @inheritdoc IEAS\\n function multiTimestamp(bytes32[] calldata data) external returns (uint64) {\\n uint64 time = _time();\\n\\n uint256 length = data.length;\\n for (uint256 i = 0; i < length; i = uncheckedInc(i)) {\\n _timestamp(data[i], time);\\n }\\n\\n return time;\\n }\\n\\n /// @inheritdoc IEAS\\n function getAttestation(bytes32 uid) external view returns (Attestation memory) {\\n return _db[uid];\\n }\\n\\n /// @inheritdoc IEAS\\n function isAttestationValid(bytes32 uid) public view returns (bool) {\\n return _db[uid].uid != EMPTY_UID;\\n }\\n\\n /// @inheritdoc IEAS\\n function getTimestamp(bytes32 data) external view returns (uint64) {\\n return _timestamps[data];\\n }\\n\\n /// @inheritdoc IEAS\\n function getRevokeOffchain(address revoker, bytes32 data) external view returns (uint64) {\\n return _revocationsOffchain[revoker][data];\\n }\\n\\n /// @dev Attests to a specific schema.\\n /// @param schemaUID The unique identifier of the schema to attest to.\\n /// @param data The arguments of the attestation requests.\\n /// @param attester The attesting account.\\n /// @param availableValue The total available ETH amount that can be sent to the resolver.\\n /// @param last Whether this is the last attestations/revocations set.\\n /// @return The UID of the new attestations and the total sent ETH amount.\\n function _attest(\\n bytes32 schemaUID,\\n AttestationRequestData[] memory data,\\n address attester,\\n uint256 availableValue,\\n bool last\\n ) private returns (AttestationsResult memory) {\\n uint256 length = data.length;\\n\\n AttestationsResult memory res;\\n res.uids = new bytes32[](length);\\n\\n // Ensure that we aren't attempting to attest to a non-existing schema.\\n SchemaRecord memory schemaRecord = _schemaRegistry.getSchema(schemaUID);\\n if (schemaRecord.uid == EMPTY_UID) {\\n revert InvalidSchema();\\n }\\n\\n Attestation[] memory attestations = new Attestation[](length);\\n uint256[] memory values = new uint256[](length);\\n\\n for (uint256 i = 0; i < length; i = uncheckedInc(i)) {\\n AttestationRequestData memory request = data[i];\\n\\n // Ensure that either no expiration time was set or that it was set in the future.\\n if (request.expirationTime != NO_EXPIRATION_TIME && request.expirationTime <= _time()) {\\n revert InvalidExpirationTime();\\n }\\n\\n // Ensure that we aren't trying to make a revocable attestation for a non-revocable schema.\\n if (!schemaRecord.revocable && request.revocable) {\\n revert Irrevocable();\\n }\\n\\n Attestation memory attestation = Attestation({\\n uid: EMPTY_UID,\\n schema: schemaUID,\\n refUID: request.refUID,\\n time: _time(),\\n expirationTime: request.expirationTime,\\n revocationTime: 0,\\n recipient: request.recipient,\\n attester: attester,\\n revocable: request.revocable,\\n data: request.data\\n });\\n\\n // Look for the first non-existing UID (and use a bump seed/nonce in the rare case of a conflict).\\n bytes32 uid;\\n uint32 bump = 0;\\n while (true) {\\n uid = _getUID(attestation, bump);\\n if (_db[uid].uid == EMPTY_UID) {\\n break;\\n }\\n\\n unchecked {\\n ++bump;\\n }\\n }\\n attestation.uid = uid;\\n\\n _db[uid] = attestation;\\n\\n if (request.refUID != EMPTY_UID) {\\n // Ensure that we aren't trying to attest to a non-existing referenced UID.\\n if (!isAttestationValid(request.refUID)) {\\n revert NotFound();\\n }\\n }\\n\\n attestations[i] = attestation;\\n values[i] = request.value;\\n\\n res.uids[i] = uid;\\n\\n emit Attested(request.recipient, attester, uid, schemaUID);\\n }\\n\\n res.usedValue = _resolveAttestations(schemaRecord, attestations, values, false, availableValue, last);\\n\\n return res;\\n }\\n\\n /// @dev Revokes an existing attestation to a specific schema.\\n /// @param schemaUID The unique identifier of the schema to attest to.\\n /// @param data The arguments of the revocation requests.\\n /// @param revoker The revoking account.\\n /// @param availableValue The total available ETH amount that can be sent to the resolver.\\n /// @param last Whether this is the last attestations/revocations set.\\n /// @return Returns the total sent ETH amount.\\n function _revoke(\\n bytes32 schemaUID,\\n RevocationRequestData[] memory data,\\n address revoker,\\n uint256 availableValue,\\n bool last\\n ) private returns (uint256) {\\n // Ensure that a non-existing schema ID wasn't passed by accident.\\n SchemaRecord memory schemaRecord = _schemaRegistry.getSchema(schemaUID);\\n if (schemaRecord.uid == EMPTY_UID) {\\n revert InvalidSchema();\\n }\\n\\n uint256 length = data.length;\\n Attestation[] memory attestations = new Attestation[](length);\\n uint256[] memory values = new uint256[](length);\\n\\n for (uint256 i = 0; i < length; i = uncheckedInc(i)) {\\n RevocationRequestData memory request = data[i];\\n\\n Attestation storage attestation = _db[request.uid];\\n\\n // Ensure that we aren't attempting to revoke a non-existing attestation.\\n if (attestation.uid == EMPTY_UID) {\\n revert NotFound();\\n }\\n\\n // Ensure that a wrong schema ID wasn't passed by accident.\\n if (attestation.schema != schemaUID) {\\n revert InvalidSchema();\\n }\\n\\n // Allow only original attesters to revoke their attestations.\\n if (attestation.attester != revoker) {\\n revert AccessDenied();\\n }\\n\\n // Please note that also checking of the schema itself is revocable is unnecessary, since it's not possible to\\n // make revocable attestations to an irrevocable schema.\\n if (!attestation.revocable) {\\n revert Irrevocable();\\n }\\n\\n // Ensure that we aren't trying to revoke the same attestation twice.\\n if (attestation.revocationTime != 0) {\\n revert AlreadyRevoked();\\n }\\n attestation.revocationTime = _time();\\n\\n attestations[i] = attestation;\\n values[i] = request.value;\\n\\n emit Revoked(attestations[i].recipient, revoker, request.uid, schemaUID);\\n }\\n\\n return _resolveAttestations(schemaRecord, attestations, values, true, availableValue, last);\\n }\\n\\n /// @dev Resolves a new attestation or a revocation of an existing attestation.\\n /// @param schemaRecord The schema of the attestation.\\n /// @param attestation The data of the attestation to make/revoke.\\n /// @param value An explicit ETH amount to send to the resolver.\\n /// @param isRevocation Whether to resolve an attestation or its revocation.\\n /// @param availableValue The total available ETH amount that can be sent to the resolver.\\n /// @param last Whether this is the last attestations/revocations set.\\n /// @return Returns the total sent ETH amount.\\n function _resolveAttestation(\\n SchemaRecord memory schemaRecord,\\n Attestation memory attestation,\\n uint256 value,\\n bool isRevocation,\\n uint256 availableValue,\\n bool last\\n ) private returns (uint256) {\\n ISchemaResolver resolver = schemaRecord.resolver;\\n if (address(resolver) == address(0)) {\\n // Ensure that we don't accept payments if there is no resolver.\\n if (value != 0) {\\n revert NotPayable();\\n }\\n\\n if (last) {\\n _refund(availableValue);\\n }\\n\\n return 0;\\n }\\n\\n // Ensure that we don't accept payments which can't be forwarded to the resolver.\\n if (value != 0) {\\n if (!resolver.isPayable()) {\\n revert NotPayable();\\n }\\n\\n // Ensure that the attester/revoker doesn't try to spend more than available.\\n if (value > availableValue) {\\n revert InsufficientValue();\\n }\\n\\n // Ensure to deduct the sent value explicitly.\\n unchecked {\\n availableValue -= value;\\n }\\n }\\n\\n if (isRevocation) {\\n if (!resolver.revoke{ value: value }(attestation)) {\\n revert InvalidRevocation();\\n }\\n } else if (!resolver.attest{ value: value }(attestation)) {\\n revert InvalidAttestation();\\n }\\n\\n if (last) {\\n _refund(availableValue);\\n }\\n\\n return value;\\n }\\n\\n /// @dev Resolves multiple attestations or revocations of existing attestations.\\n /// @param schemaRecord The schema of the attestation.\\n /// @param attestations The data of the attestations to make/revoke.\\n /// @param values Explicit ETH amounts to send to the resolver.\\n /// @param isRevocation Whether to resolve an attestation or its revocation.\\n /// @param availableValue The total available ETH amount that can be sent to the resolver.\\n /// @param last Whether this is the last attestations/revocations set.\\n /// @return Returns the total sent ETH amount.\\n function _resolveAttestations(\\n SchemaRecord memory schemaRecord,\\n Attestation[] memory attestations,\\n uint256[] memory values,\\n bool isRevocation,\\n uint256 availableValue,\\n bool last\\n ) private returns (uint256) {\\n uint256 length = attestations.length;\\n if (length == 1) {\\n return _resolveAttestation(schemaRecord, attestations[0], values[0], isRevocation, availableValue, last);\\n }\\n\\n ISchemaResolver resolver = schemaRecord.resolver;\\n if (address(resolver) == address(0)) {\\n // Ensure that we don't accept payments if there is no resolver.\\n for (uint256 i = 0; i < length; i = uncheckedInc(i)) {\\n if (values[i] != 0) {\\n revert NotPayable();\\n }\\n }\\n\\n if (last) {\\n _refund(availableValue);\\n }\\n\\n return 0;\\n }\\n\\n uint256 totalUsedValue = 0;\\n bool isResolverPayable = resolver.isPayable();\\n\\n for (uint256 i = 0; i < length; i = uncheckedInc(i)) {\\n uint256 value = values[i];\\n\\n // Ensure that we don't accept payments which can't be forwarded to the resolver.\\n if (value == 0) {\\n continue;\\n }\\n\\n if (!isResolverPayable) {\\n revert NotPayable();\\n }\\n\\n // Ensure that the attester/revoker doesn't try to spend more than available.\\n if (value > availableValue) {\\n revert InsufficientValue();\\n }\\n\\n // Ensure to deduct the sent value explicitly and add it to the total used value by the batch.\\n unchecked {\\n availableValue -= value;\\n totalUsedValue += value;\\n }\\n }\\n\\n if (isRevocation) {\\n if (!resolver.multiRevoke{ value: totalUsedValue }(attestations, values)) {\\n revert InvalidRevocations();\\n }\\n } else if (!resolver.multiAttest{ value: totalUsedValue }(attestations, values)) {\\n revert InvalidAttestations();\\n }\\n\\n if (last) {\\n _refund(availableValue);\\n }\\n\\n return totalUsedValue;\\n }\\n\\n /// @dev Calculates a UID for a given attestation.\\n /// @param attestation The input attestation.\\n /// @param bump A bump value to use in case of a UID conflict.\\n /// @return Attestation UID.\\n function _getUID(Attestation memory attestation, uint32 bump) private pure returns (bytes32) {\\n return\\n keccak256(\\n abi.encodePacked(\\n attestation.schema,\\n attestation.recipient,\\n attestation.attester,\\n attestation.time,\\n attestation.expirationTime,\\n attestation.revocable,\\n attestation.refUID,\\n attestation.data,\\n bump\\n )\\n );\\n }\\n\\n /// @dev Refunds remaining ETH amount to the attester.\\n /// @param remainingValue The remaining ETH amount that was not sent to the resolver.\\n function _refund(uint256 remainingValue) private {\\n if (remainingValue > 0) {\\n // Using a regular transfer here might revert, for some non-EOA attesters, due to exceeding of the 2300\\n // gas limit which is why we're using call instead (via sendValue), which the 2300 gas limit does not\\n // apply for.\\n payable(msg.sender).sendValue(remainingValue);\\n }\\n }\\n\\n /// @dev Timestamps the specified bytes32 data.\\n /// @param data The data to timestamp.\\n /// @param time The timestamp.\\n function _timestamp(bytes32 data, uint64 time) private {\\n if (_timestamps[data] != 0) {\\n revert AlreadyTimestamped();\\n }\\n\\n _timestamps[data] = time;\\n\\n emit Timestamped(data, time);\\n }\\n\\n /// @dev Revokes the specified bytes32 data.\\n /// @param revoker The revoking account.\\n /// @param data The data to revoke.\\n /// @param time The timestamp the data was revoked with.\\n function _revokeOffchain(address revoker, bytes32 data, uint64 time) private {\\n mapping(bytes32 data => uint64 timestamp) storage revocations = _revocationsOffchain[revoker];\\n\\n if (revocations[data] != 0) {\\n revert AlreadyRevokedOffchain();\\n }\\n\\n revocations[data] = time;\\n\\n emit RevokedOffchain(revoker, data, time);\\n }\\n\\n /// @dev Merges lists of UIDs.\\n /// @param uidLists The provided lists of UIDs.\\n /// @param uidCount Total UID count.\\n /// @return A merged and flatten list of all the UIDs.\\n function _mergeUIDs(bytes32[][] memory uidLists, uint256 uidCount) private pure returns (bytes32[] memory) {\\n bytes32[] memory uids = new bytes32[](uidCount);\\n\\n uint256 currentIndex = 0;\\n uint256 uidListLength = uidLists.length;\\n for (uint256 i = 0; i < uidListLength; i = uncheckedInc(i)) {\\n bytes32[] memory currentUIDs = uidLists[i];\\n uint256 currentUIDsLength = currentUIDs.length;\\n for (uint256 j = 0; j < currentUIDsLength; j = uncheckedInc(j)) {\\n uids[currentIndex] = currentUIDs[j];\\n\\n unchecked {\\n ++currentIndex;\\n }\\n }\\n }\\n\\n return uids;\\n }\\n}\\n\",\"keccak256\":\"0x0ccad8feb72c73528fddde76e00bd7717233711079e744165e34312169f85684\",\"license\":\"MIT\"},\"contracts/IEAS.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.0;\\n\\nimport { ISchemaRegistry } from \\\"./ISchemaRegistry.sol\\\";\\nimport { ISemver } from \\\"./ISemver.sol\\\";\\nimport { Attestation, Signature } from \\\"./Common.sol\\\";\\n\\n/// @notice A struct representing the arguments of the attestation request.\\nstruct AttestationRequestData {\\n address recipient; // The recipient of the attestation.\\n uint64 expirationTime; // The time when the attestation expires (Unix timestamp).\\n bool revocable; // Whether the attestation is revocable.\\n bytes32 refUID; // The UID of the related attestation.\\n bytes data; // Custom attestation data.\\n uint256 value; // An explicit ETH amount to send to the resolver. This is important to prevent accidental user errors.\\n}\\n\\n/// @notice A struct representing the full arguments of the attestation request.\\nstruct AttestationRequest {\\n bytes32 schema; // The unique identifier of the schema.\\n AttestationRequestData data; // The arguments of the attestation request.\\n}\\n\\n/// @notice A struct representing the full arguments of the full delegated attestation request.\\nstruct DelegatedAttestationRequest {\\n bytes32 schema; // The unique identifier of the schema.\\n AttestationRequestData data; // The arguments of the attestation request.\\n Signature signature; // The ECDSA signature data.\\n address attester; // The attesting account.\\n uint64 deadline; // The deadline of the signature/request.\\n}\\n\\n/// @notice A struct representing the full arguments of the multi attestation request.\\nstruct MultiAttestationRequest {\\n bytes32 schema; // The unique identifier of the schema.\\n AttestationRequestData[] data; // The arguments of the attestation request.\\n}\\n\\n/// @notice A struct representing the full arguments of the delegated multi attestation request.\\nstruct MultiDelegatedAttestationRequest {\\n bytes32 schema; // The unique identifier of the schema.\\n AttestationRequestData[] data; // The arguments of the attestation requests.\\n Signature[] signatures; // The ECDSA signatures data. Please note that the signatures are assumed to be signed with increasing nonces.\\n address attester; // The attesting account.\\n uint64 deadline; // The deadline of the signature/request.\\n}\\n\\n/// @notice A struct representing the arguments of the revocation request.\\nstruct RevocationRequestData {\\n bytes32 uid; // The UID of the attestation to revoke.\\n uint256 value; // An explicit ETH amount to send to the resolver. This is important to prevent accidental user errors.\\n}\\n\\n/// @notice A struct representing the full arguments of the revocation request.\\nstruct RevocationRequest {\\n bytes32 schema; // The unique identifier of the schema.\\n RevocationRequestData data; // The arguments of the revocation request.\\n}\\n\\n/// @notice A struct representing the arguments of the full delegated revocation request.\\nstruct DelegatedRevocationRequest {\\n bytes32 schema; // The unique identifier of the schema.\\n RevocationRequestData data; // The arguments of the revocation request.\\n Signature signature; // The ECDSA signature data.\\n address revoker; // The revoking account.\\n uint64 deadline; // The deadline of the signature/request.\\n}\\n\\n/// @notice A struct representing the full arguments of the multi revocation request.\\nstruct MultiRevocationRequest {\\n bytes32 schema; // The unique identifier of the schema.\\n RevocationRequestData[] data; // The arguments of the revocation request.\\n}\\n\\n/// @notice A struct representing the full arguments of the delegated multi revocation request.\\nstruct MultiDelegatedRevocationRequest {\\n bytes32 schema; // The unique identifier of the schema.\\n RevocationRequestData[] data; // The arguments of the revocation requests.\\n Signature[] signatures; // The ECDSA signatures data. Please note that the signatures are assumed to be signed with increasing nonces.\\n address revoker; // The revoking account.\\n uint64 deadline; // The deadline of the signature/request.\\n}\\n\\n/// @title IEAS\\n/// @notice EAS - Ethereum Attestation Service interface.\\ninterface IEAS is ISemver {\\n /// @notice Emitted when an attestation has been made.\\n /// @param recipient The recipient of the attestation.\\n /// @param attester The attesting account.\\n /// @param uid The UID the revoked attestation.\\n /// @param schemaUID The UID of the schema.\\n event Attested(address indexed recipient, address indexed attester, bytes32 uid, bytes32 indexed schemaUID);\\n\\n /// @notice Emitted when an attestation has been revoked.\\n /// @param recipient The recipient of the attestation.\\n /// @param attester The attesting account.\\n /// @param schemaUID The UID of the schema.\\n /// @param uid The UID the revoked attestation.\\n event Revoked(address indexed recipient, address indexed attester, bytes32 uid, bytes32 indexed schemaUID);\\n\\n /// @notice Emitted when a data has been timestamped.\\n /// @param data The data.\\n /// @param timestamp The timestamp.\\n event Timestamped(bytes32 indexed data, uint64 indexed timestamp);\\n\\n /// @notice Emitted when a data has been revoked.\\n /// @param revoker The address of the revoker.\\n /// @param data The data.\\n /// @param timestamp The timestamp.\\n event RevokedOffchain(address indexed revoker, bytes32 indexed data, uint64 indexed timestamp);\\n\\n /// @notice Returns the address of the global schema registry.\\n /// @return The address of the global schema registry.\\n function getSchemaRegistry() external view returns (ISchemaRegistry);\\n\\n /// @notice Attests to a specific schema.\\n /// @param request The arguments of the attestation request.\\n /// @return The UID of the new attestation.\\n ///\\n /// Example:\\n /// attest({\\n /// schema: \\\"0facc36681cbe2456019c1b0d1e7bedd6d1d40f6f324bf3dd3a4cef2999200a0\\\",\\n /// data: {\\n /// recipient: \\\"0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf\\\",\\n /// expirationTime: 0,\\n /// revocable: true,\\n /// refUID: \\\"0x0000000000000000000000000000000000000000000000000000000000000000\\\",\\n /// data: \\\"0xF00D\\\",\\n /// value: 0\\n /// }\\n /// })\\n function attest(AttestationRequest calldata request) external payable returns (bytes32);\\n\\n /// @notice Attests to a specific schema via the provided ECDSA signature.\\n /// @param delegatedRequest The arguments of the delegated attestation request.\\n /// @return The UID of the new attestation.\\n ///\\n /// Example:\\n /// attestByDelegation({\\n /// schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc',\\n /// data: {\\n /// recipient: '0xf39Fd6e51aad88F6F4ce6aB8827279cffFb92266',\\n /// expirationTime: 1673891048,\\n /// revocable: true,\\n /// refUID: '0x0000000000000000000000000000000000000000000000000000000000000000',\\n /// data: '0x1234',\\n /// value: 0\\n /// },\\n /// signature: {\\n /// v: 28,\\n /// r: '0x148c...b25b',\\n /// s: '0x5a72...be22'\\n /// },\\n /// attester: '0xc5E8740aD971409492b1A63Db8d83025e0Fc427e',\\n /// deadline: 1673891048\\n /// })\\n function attestByDelegation(\\n DelegatedAttestationRequest calldata delegatedRequest\\n ) external payable returns (bytes32);\\n\\n /// @notice Attests to multiple schemas.\\n /// @param multiRequests The arguments of the multi attestation requests. The requests should be grouped by distinct\\n /// schema ids to benefit from the best batching optimization.\\n /// @return The UIDs of the new attestations.\\n ///\\n /// Example:\\n /// multiAttest([{\\n /// schema: '0x33e9094830a5cba5554d1954310e4fbed2ef5f859ec1404619adea4207f391fd',\\n /// data: [{\\n /// recipient: '0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf',\\n /// expirationTime: 1673891048,\\n /// revocable: true,\\n /// refUID: '0x0000000000000000000000000000000000000000000000000000000000000000',\\n /// data: '0x1234',\\n /// value: 1000\\n /// },\\n /// {\\n /// recipient: '0xf39Fd6e51aad88F6F4ce6aB8827279cffFb92266',\\n /// expirationTime: 0,\\n /// revocable: false,\\n /// refUID: '0x480df4a039efc31b11bfdf491b383ca138b6bde160988222a2a3509c02cee174',\\n /// data: '0x00',\\n /// value: 0\\n /// }],\\n /// },\\n /// {\\n /// schema: '0x5ac273ce41e3c8bfa383efe7c03e54c5f0bff29c9f11ef6ffa930fc84ca32425',\\n /// data: [{\\n /// recipient: '0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf',\\n /// expirationTime: 0,\\n /// revocable: true,\\n /// refUID: '0x75bf2ed8dca25a8190c50c52db136664de25b2449535839008ccfdab469b214f',\\n /// data: '0x12345678',\\n /// value: 0\\n /// },\\n /// }])\\n function multiAttest(MultiAttestationRequest[] calldata multiRequests) external payable returns (bytes32[] memory);\\n\\n /// @notice Attests to multiple schemas using via provided ECDSA signatures.\\n /// @param multiDelegatedRequests The arguments of the delegated multi attestation requests. The requests should be\\n /// grouped by distinct schema ids to benefit from the best batching optimization.\\n /// @return The UIDs of the new attestations.\\n ///\\n /// Example:\\n /// multiAttestByDelegation([{\\n /// schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc',\\n /// data: [{\\n /// recipient: '0xf39Fd6e51aad88F6F4ce6aB8827279cffFb92266',\\n /// expirationTime: 1673891048,\\n /// revocable: true,\\n /// refUID: '0x0000000000000000000000000000000000000000000000000000000000000000',\\n /// data: '0x1234',\\n /// value: 0\\n /// },\\n /// {\\n /// recipient: '0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf',\\n /// expirationTime: 0,\\n /// revocable: false,\\n /// refUID: '0x0000000000000000000000000000000000000000000000000000000000000000',\\n /// data: '0x00',\\n /// value: 0\\n /// }],\\n /// signatures: [{\\n /// v: 28,\\n /// r: '0x148c...b25b',\\n /// s: '0x5a72...be22'\\n /// },\\n /// {\\n /// v: 28,\\n /// r: '0x487s...67bb',\\n /// s: '0x12ad...2366'\\n /// }],\\n /// attester: '0x1D86495b2A7B524D747d2839b3C645Bed32e8CF4',\\n /// deadline: 1673891048\\n /// }])\\n function multiAttestByDelegation(\\n MultiDelegatedAttestationRequest[] calldata multiDelegatedRequests\\n ) external payable returns (bytes32[] memory);\\n\\n /// @notice Revokes an existing attestation to a specific schema.\\n /// @param request The arguments of the revocation request.\\n ///\\n /// Example:\\n /// revoke({\\n /// schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc',\\n /// data: {\\n /// uid: '0x101032e487642ee04ee17049f99a70590c735b8614079fc9275f9dd57c00966d',\\n /// value: 0\\n /// }\\n /// })\\n function revoke(RevocationRequest calldata request) external payable;\\n\\n /// @notice Revokes an existing attestation to a specific schema via the provided ECDSA signature.\\n /// @param delegatedRequest The arguments of the delegated revocation request.\\n ///\\n /// Example:\\n /// revokeByDelegation({\\n /// schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc',\\n /// data: {\\n /// uid: '0xcbbc12102578c642a0f7b34fe7111e41afa25683b6cd7b5a14caf90fa14d24ba',\\n /// value: 0\\n /// },\\n /// signature: {\\n /// v: 27,\\n /// r: '0xb593...7142',\\n /// s: '0x0f5b...2cce'\\n /// },\\n /// revoker: '0x244934dd3e31bE2c81f84ECf0b3E6329F5381992',\\n /// deadline: 1673891048\\n /// })\\n function revokeByDelegation(DelegatedRevocationRequest calldata delegatedRequest) external payable;\\n\\n /// @notice Revokes existing attestations to multiple schemas.\\n /// @param multiRequests The arguments of the multi revocation requests. The requests should be grouped by distinct\\n /// schema ids to benefit from the best batching optimization.\\n ///\\n /// Example:\\n /// multiRevoke([{\\n /// schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc',\\n /// data: [{\\n /// uid: '0x211296a1ca0d7f9f2cfebf0daaa575bea9b20e968d81aef4e743d699c6ac4b25',\\n /// value: 1000\\n /// },\\n /// {\\n /// uid: '0xe160ac1bd3606a287b4d53d5d1d6da5895f65b4b4bab6d93aaf5046e48167ade',\\n /// value: 0\\n /// }],\\n /// },\\n /// {\\n /// schema: '0x5ac273ce41e3c8bfa383efe7c03e54c5f0bff29c9f11ef6ffa930fc84ca32425',\\n /// data: [{\\n /// uid: '0x053d42abce1fd7c8fcddfae21845ad34dae287b2c326220b03ba241bc5a8f019',\\n /// value: 0\\n /// },\\n /// }])\\n function multiRevoke(MultiRevocationRequest[] calldata multiRequests) external payable;\\n\\n /// @notice Revokes existing attestations to multiple schemas via provided ECDSA signatures.\\n /// @param multiDelegatedRequests The arguments of the delegated multi revocation attestation requests. The requests\\n /// should be grouped by distinct schema ids to benefit from the best batching optimization.\\n ///\\n /// Example:\\n /// multiRevokeByDelegation([{\\n /// schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc',\\n /// data: [{\\n /// uid: '0x211296a1ca0d7f9f2cfebf0daaa575bea9b20e968d81aef4e743d699c6ac4b25',\\n /// value: 1000\\n /// },\\n /// {\\n /// uid: '0xe160ac1bd3606a287b4d53d5d1d6da5895f65b4b4bab6d93aaf5046e48167ade',\\n /// value: 0\\n /// }],\\n /// signatures: [{\\n /// v: 28,\\n /// r: '0x148c...b25b',\\n /// s: '0x5a72...be22'\\n /// },\\n /// {\\n /// v: 28,\\n /// r: '0x487s...67bb',\\n /// s: '0x12ad...2366'\\n /// }],\\n /// revoker: '0x244934dd3e31bE2c81f84ECf0b3E6329F5381992',\\n /// deadline: 1673891048\\n /// }])\\n function multiRevokeByDelegation(\\n MultiDelegatedRevocationRequest[] calldata multiDelegatedRequests\\n ) external payable;\\n\\n /// @notice Timestamps the specified bytes32 data.\\n /// @param data The data to timestamp.\\n /// @return The timestamp the data was timestamped with.\\n function timestamp(bytes32 data) external returns (uint64);\\n\\n /// @notice Timestamps the specified multiple bytes32 data.\\n /// @param data The data to timestamp.\\n /// @return The timestamp the data was timestamped with.\\n function multiTimestamp(bytes32[] calldata data) external returns (uint64);\\n\\n /// @notice Revokes the specified bytes32 data.\\n /// @param data The data to timestamp.\\n /// @return The timestamp the data was revoked with.\\n function revokeOffchain(bytes32 data) external returns (uint64);\\n\\n /// @notice Revokes the specified multiple bytes32 data.\\n /// @param data The data to timestamp.\\n /// @return The timestamp the data was revoked with.\\n function multiRevokeOffchain(bytes32[] calldata data) external returns (uint64);\\n\\n /// @notice Returns an existing attestation by UID.\\n /// @param uid The UID of the attestation to retrieve.\\n /// @return The attestation data members.\\n function getAttestation(bytes32 uid) external view returns (Attestation memory);\\n\\n /// @notice Checks whether an attestation exists.\\n /// @param uid The UID of the attestation to retrieve.\\n /// @return Whether an attestation exists.\\n function isAttestationValid(bytes32 uid) external view returns (bool);\\n\\n /// @notice Returns the timestamp that the specified data was timestamped with.\\n /// @param data The data to query.\\n /// @return The timestamp the data was timestamped with.\\n function getTimestamp(bytes32 data) external view returns (uint64);\\n\\n /// @notice Returns the timestamp that the specified data was timestamped with.\\n /// @param data The data to query.\\n /// @return The timestamp the data was timestamped with.\\n function getRevokeOffchain(address revoker, bytes32 data) external view returns (uint64);\\n}\\n\",\"keccak256\":\"0x242e0203b314c8539fd4ad3c1f0b7a9c1178fe55b223f4bc007eb9cbf271854c\",\"license\":\"MIT\"},\"contracts/ISchemaRegistry.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.0;\\n\\nimport { ISemver } from \\\"./ISemver.sol\\\";\\n\\nimport { ISchemaResolver } from \\\"./resolver/ISchemaResolver.sol\\\";\\n\\n/// @notice A struct representing a record for a submitted schema.\\nstruct SchemaRecord {\\n bytes32 uid; // The unique identifier of the schema.\\n ISchemaResolver resolver; // Optional schema resolver.\\n bool revocable; // Whether the schema allows revocations explicitly.\\n string schema; // Custom specification of the schema (e.g., an ABI).\\n}\\n\\n/// @title ISchemaRegistry\\n/// @notice The interface of global attestation schemas for the Ethereum Attestation Service protocol.\\ninterface ISchemaRegistry is ISemver {\\n /// @notice Emitted when a new schema has been registered\\n /// @param uid The schema UID.\\n /// @param registerer The address of the account used to register the schema.\\n /// @param schema The schema data.\\n event Registered(bytes32 indexed uid, address indexed registerer, SchemaRecord schema);\\n\\n /// @notice Submits and reserves a new schema\\n /// @param schema The schema data schema.\\n /// @param resolver An optional schema resolver.\\n /// @param revocable Whether the schema allows revocations explicitly.\\n /// @return The UID of the new schema.\\n function register(string calldata schema, ISchemaResolver resolver, bool revocable) external returns (bytes32);\\n\\n /// @notice Returns an existing schema by UID\\n /// @param uid The UID of the schema to retrieve.\\n /// @return The schema data members.\\n function getSchema(bytes32 uid) external view returns (SchemaRecord memory);\\n}\\n\",\"keccak256\":\"0xea97dcd36a0c422169cbaac06698249e199049b627c16bff93fb8ab829058754\",\"license\":\"MIT\"},\"contracts/ISemver.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.0;\\n\\n/// @title ISemver\\n/// @notice A semver interface.\\ninterface ISemver {\\n /// @notice Returns the full semver contract version.\\n /// @return Semver contract version as a string.\\n function version() external view returns (string memory);\\n}\\n\",\"keccak256\":\"0x04a67939b4e1a8d0a51101b8f69f8882930bbdc66319f38023828625b5d1ff18\",\"license\":\"MIT\"},\"contracts/Semver.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.4;\\n\\nimport { Strings } from \\\"@openzeppelin/contracts/utils/Strings.sol\\\";\\n\\nimport { ISemver } from \\\"./ISemver.sol\\\";\\n\\n/// @title Semver\\n/// @notice A simple contract for managing contract versions.\\ncontract Semver is ISemver {\\n // Contract's major version number.\\n uint256 private immutable _major;\\n\\n // Contract's minor version number.\\n uint256 private immutable _minor;\\n\\n // Contract's patch version number.\\n uint256 private immutable _path;\\n\\n /// @dev Create a new Semver instance.\\n /// @param major Major version number.\\n /// @param minor Minor version number.\\n /// @param patch Patch version number.\\n constructor(uint256 major, uint256 minor, uint256 patch) {\\n _major = major;\\n _minor = minor;\\n _path = patch;\\n }\\n\\n /// @notice Returns the full semver contract version.\\n /// @return Semver contract version as a string.\\n function version() external view returns (string memory) {\\n return\\n string(\\n abi.encodePacked(Strings.toString(_major), \\\".\\\", Strings.toString(_minor), \\\".\\\", Strings.toString(_path))\\n );\\n }\\n}\\n\",\"keccak256\":\"0xb26a2b03bed18631e2195fa6331167604fdc2672563c4daf87209d07fa1aaaba\",\"license\":\"MIT\"},\"contracts/eip1271/EIP1271Verifier.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.8.19;\\n\\nimport { EIP712 } from \\\"@openzeppelin/contracts/utils/cryptography/EIP712.sol\\\";\\nimport { SignatureChecker } from \\\"@openzeppelin/contracts/utils/cryptography/SignatureChecker.sol\\\";\\nimport { Address } from \\\"@openzeppelin/contracts/utils/Address.sol\\\";\\n\\n// prettier-ignore\\nimport {\\n AttestationRequestData,\\n DelegatedAttestationRequest,\\n DelegatedRevocationRequest,\\n RevocationRequestData\\n} from \\\"../IEAS.sol\\\";\\n\\nimport { DeadlineExpired, NO_EXPIRATION_TIME, Signature, InvalidSignature } from \\\"../Common.sol\\\";\\n\\n/// @title EIP1271Verifier\\n/// @notice EIP1271Verifier typed signatures verifier for EAS delegated attestations.\\nabstract contract EIP1271Verifier is EIP712 {\\n using Address for address;\\n\\n error InvalidNonce();\\n\\n // The hash of the data type used to relay calls to the attest function. It's the value of\\n // keccak256(\\\"Attest(address attester,bytes32 schema,address recipient,uint64 expirationTime,bool revocable,bytes32 refUID,bytes data,uint256 value,uint256 nonce,uint64 deadline)\\\").\\n bytes32 private constant ATTEST_TYPEHASH = 0xfeb2925a02bae3dae48d424a0437a2b6ac939aa9230ddc55a1a76f065d988076;\\n\\n // The hash of the data type used to relay calls to the revoke function. It's the value of\\n // keccak256(\\\"Revoke(address revoker,bytes32 schema,bytes32 uid,uint256 value,uint256 nonce,uint64 deadline)\\\").\\n bytes32 private constant REVOKE_TYPEHASH = 0xb5d556f07587ec0f08cf386545cc4362c702a001650c2058002615ee5c9d1e75;\\n\\n // The user readable name of the signing domain.\\n string private _name;\\n\\n // Replay protection nonces.\\n mapping(address attester => uint256 nonce) private _nonces;\\n\\n /// @notice Emitted when users invalidate nonces by increasing their nonces to (higher) new values.\\n /// @param oldNonce The previous nonce.\\n /// @param newNonce The new value.\\n event NonceIncreased(uint256 oldNonce, uint256 newNonce);\\n\\n /// @dev Creates a new EIP1271Verifier instance.\\n /// @param version The current major version of the signing domain\\n constructor(string memory name, string memory version) EIP712(name, version) {\\n _name = name;\\n }\\n\\n /// @notice Returns the domain separator used in the encoding of the signatures for attest, and revoke.\\n /// @return The domain separator used in the encoding of the signatures for attest, and revoke.\\n function getDomainSeparator() external view returns (bytes32) {\\n return _domainSeparatorV4();\\n }\\n\\n /// @notice Returns the current nonce per-account.\\n /// @param account The requested account.\\n /// @return The current nonce.\\n function getNonce(address account) external view returns (uint256) {\\n return _nonces[account];\\n }\\n\\n /// @notice Returns the EIP712 type hash for the attest function.\\n /// @return The EIP712 type hash for the attest function.\\n function getAttestTypeHash() external pure returns (bytes32) {\\n return ATTEST_TYPEHASH;\\n }\\n\\n /// @notice Returns the EIP712 type hash for the revoke function.\\n /// @return The EIP712 type hash for the revoke function.\\n function getRevokeTypeHash() external pure returns (bytes32) {\\n return REVOKE_TYPEHASH;\\n }\\n\\n /// @notice Returns the EIP712 name.\\n /// @return The EIP712 name.\\n function getName() external view returns (string memory) {\\n return _name;\\n }\\n\\n /// @notice Provides users an option to invalidate nonces by increasing their nonces to (higher) new values.\\n /// @param newNonce The (higher) new value.\\n function increaseNonce(uint256 newNonce) external {\\n uint256 oldNonce = _nonces[msg.sender];\\n if (newNonce <= oldNonce) {\\n revert InvalidNonce();\\n }\\n\\n _nonces[msg.sender] = newNonce;\\n\\n emit NonceIncreased({ oldNonce: oldNonce, newNonce: newNonce });\\n }\\n\\n /// @dev Verifies delegated attestation request.\\n /// @param request The arguments of the delegated attestation request.\\n function _verifyAttest(DelegatedAttestationRequest memory request) internal {\\n if (request.deadline != NO_EXPIRATION_TIME && request.deadline < _time()) {\\n revert DeadlineExpired();\\n }\\n\\n AttestationRequestData memory data = request.data;\\n Signature memory signature = request.signature;\\n\\n bytes32 hash = _hashTypedDataV4(\\n keccak256(\\n abi.encode(\\n ATTEST_TYPEHASH,\\n request.attester,\\n request.schema,\\n data.recipient,\\n data.expirationTime,\\n data.revocable,\\n data.refUID,\\n keccak256(data.data),\\n data.value,\\n _nonces[request.attester]++,\\n request.deadline\\n )\\n )\\n );\\n if (\\n !SignatureChecker.isValidSignatureNow(\\n request.attester,\\n hash,\\n abi.encodePacked(signature.r, signature.s, signature.v)\\n )\\n ) {\\n revert InvalidSignature();\\n }\\n }\\n\\n /// @dev Verifies delegated revocation request.\\n /// @param request The arguments of the delegated revocation request.\\n function _verifyRevoke(DelegatedRevocationRequest memory request) internal {\\n if (request.deadline != NO_EXPIRATION_TIME && request.deadline < _time()) {\\n revert DeadlineExpired();\\n }\\n\\n RevocationRequestData memory data = request.data;\\n Signature memory signature = request.signature;\\n\\n bytes32 hash = _hashTypedDataV4(\\n keccak256(\\n abi.encode(\\n REVOKE_TYPEHASH,\\n request.revoker,\\n request.schema,\\n data.uid,\\n data.value,\\n _nonces[request.revoker]++,\\n request.deadline\\n )\\n )\\n );\\n if (\\n !SignatureChecker.isValidSignatureNow(\\n request.revoker,\\n hash,\\n abi.encodePacked(signature.r, signature.s, signature.v)\\n )\\n ) {\\n revert InvalidSignature();\\n }\\n }\\n\\n /// @dev Returns the current's block timestamp. This method is overridden during tests and used to simulate the\\n /// current block time.\\n function _time() internal view virtual returns (uint64) {\\n return uint64(block.timestamp);\\n }\\n}\\n\",\"keccak256\":\"0x8a6310b2a5d70bfd849fbf470507a545df5fb4934b59cd95337014ba017e485a\",\"license\":\"MIT\"},\"contracts/resolver/ISchemaResolver.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.0;\\n\\nimport { ISemver } from \\\"../ISemver.sol\\\";\\nimport { Attestation } from \\\"../Common.sol\\\";\\n\\n/// @title ISchemaResolver\\n/// @notice The interface of an optional schema resolver.\\ninterface ISchemaResolver is ISemver {\\n /// @notice Checks if the resolver can be sent ETH.\\n /// @return Whether the resolver supports ETH transfers.\\n function isPayable() external pure returns (bool);\\n\\n /// @notice Processes an attestation and verifies whether it's valid.\\n /// @param attestation The new attestation.\\n /// @return Whether the attestation is valid.\\n function attest(Attestation calldata attestation) external payable returns (bool);\\n\\n /// @notice Processes multiple attestations and verifies whether they are valid.\\n /// @param attestations The new attestations.\\n /// @param values Explicit ETH amounts which were sent with each attestation.\\n /// @return Whether all the attestations are valid.\\n function multiAttest(\\n Attestation[] calldata attestations,\\n uint256[] calldata values\\n ) external payable returns (bool);\\n\\n /// @notice Processes an attestation revocation and verifies if it can be revoked.\\n /// @param attestation The existing attestation to be revoked.\\n /// @return Whether the attestation can be revoked.\\n function revoke(Attestation calldata attestation) external payable returns (bool);\\n\\n /// @notice Processes revocation of multiple attestation and verifies they can be revoked.\\n /// @param attestations The existing attestations to be revoked.\\n /// @param values Explicit ETH amounts which were sent with each revocation.\\n /// @return Whether the attestations can be revoked.\\n function multiRevoke(\\n Attestation[] calldata attestations,\\n uint256[] calldata values\\n ) external payable returns (bool);\\n}\\n\",\"keccak256\":\"0x479f39f03425df5385d790cd2c7447b8250aeb9733d13029d3da8c5982b6604b\",\"license\":\"MIT\"}},\"version\":1}", "bytecode": 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"devdoc": { "events": { "Attested(address,address,bytes32,bytes32)": { "params": { "attester": "The attesting account.", "recipient": "The recipient of the attestation.", "schemaUID": "The UID of the schema.", "uid": "The UID the revoked attestation." } }, "EIP712DomainChanged()": { "details": "MAY be emitted to signal that the domain could have changed." }, "NonceIncreased(uint256,uint256)": { "params": { "newNonce": "The new value.", "oldNonce": "The previous nonce." } }, "Revoked(address,address,bytes32,bytes32)": { "params": { "attester": "The attesting account.", "recipient": "The recipient of the attestation.", "schemaUID": "The UID of the schema.", "uid": "The UID the revoked attestation." } }, "RevokedOffchain(address,bytes32,uint64)": { "params": { "data": "The data.", "revoker": "The address of the revoker.", "timestamp": "The timestamp." } }, "Timestamped(bytes32,uint64)": { "params": { "data": "The data.", "timestamp": "The timestamp." } } }, "kind": "dev", "methods": { "attest((bytes32,(address,uint64,bool,bytes32,bytes,uint256)))": { "params": { "request": "The arguments of the attestation request." }, "returns": { "_0": "The UID of the new attestation. Example: attest({ schema: \"0facc36681cbe2456019c1b0d1e7bedd6d1d40f6f324bf3dd3a4cef2999200a0\", data: { recipient: \"0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf\", expirationTime: 0, revocable: true, refUID: \"0x0000000000000000000000000000000000000000000000000000000000000000\", data: \"0xF00D\", value: 0 } })" } }, "attestByDelegation((bytes32,(address,uint64,bool,bytes32,bytes,uint256),(uint8,bytes32,bytes32),address,uint64))": { "params": { "delegatedRequest": "The arguments of the delegated attestation request." }, "returns": { "_0": "The UID of the new attestation. Example: attestByDelegation({ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: { recipient: '0xf39Fd6e51aad88F6F4ce6aB8827279cffFb92266', expirationTime: 1673891048, revocable: true, refUID: '0x0000000000000000000000000000000000000000000000000000000000000000', data: '0x1234', value: 0 }, signature: { v: 28, r: '0x148c...b25b', s: '0x5a72...be22' }, attester: '0xc5E8740aD971409492b1A63Db8d83025e0Fc427e', deadline: 1673891048 })" } }, "constructor": { "details": "Creates a new EAS instance.", "params": { "registry": "The address of the global schema registry." } }, "eip712Domain()": { "details": "See {EIP-5267}. _Available since v4.9._" }, "getAttestTypeHash()": { "returns": { "_0": "The EIP712 type hash for the attest function." } }, "getAttestation(bytes32)": { "params": { "uid": "The UID of the attestation to retrieve." }, "returns": { "_0": "The attestation data members." } }, "getDomainSeparator()": { "returns": { "_0": "The domain separator used in the encoding of the signatures for attest, and revoke." } }, "getName()": { "returns": { "_0": "The EIP712 name." } }, "getNonce(address)": { "params": { "account": "The requested account." }, "returns": { "_0": "The current nonce." } }, "getRevokeOffchain(address,bytes32)": { "params": { "data": "The data to query." }, "returns": { "_0": "The timestamp the data was timestamped with." } }, "getRevokeTypeHash()": { "returns": { "_0": "The EIP712 type hash for the revoke function." } }, "getSchemaRegistry()": { "returns": { "_0": "The address of the global schema registry." } }, "getTimestamp(bytes32)": { "params": { "data": "The data to query." }, "returns": { "_0": "The timestamp the data was timestamped with." } }, "increaseNonce(uint256)": { "params": { "newNonce": "The (higher) new value." } }, "isAttestationValid(bytes32)": { "params": { "uid": "The UID of the attestation to retrieve." }, "returns": { "_0": "Whether an attestation exists." } }, "multiAttest((bytes32,(address,uint64,bool,bytes32,bytes,uint256)[])[])": { "params": { "multiRequests": "The arguments of the multi attestation requests. The requests should be grouped by distinct schema ids to benefit from the best batching optimization." }, "returns": { "_0": "The UIDs of the new attestations. Example: multiAttest([{ schema: '0x33e9094830a5cba5554d1954310e4fbed2ef5f859ec1404619adea4207f391fd', data: [{ recipient: '0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf', expirationTime: 1673891048, revocable: true, refUID: '0x0000000000000000000000000000000000000000000000000000000000000000', data: '0x1234', value: 1000 }, { recipient: '0xf39Fd6e51aad88F6F4ce6aB8827279cffFb92266', expirationTime: 0, revocable: false, refUID: '0x480df4a039efc31b11bfdf491b383ca138b6bde160988222a2a3509c02cee174', data: '0x00', value: 0 }], }, { schema: '0x5ac273ce41e3c8bfa383efe7c03e54c5f0bff29c9f11ef6ffa930fc84ca32425', data: [{ recipient: '0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf', expirationTime: 0, revocable: true, refUID: '0x75bf2ed8dca25a8190c50c52db136664de25b2449535839008ccfdab469b214f', data: '0x12345678', value: 0 }, }])" } }, "multiAttestByDelegation((bytes32,(address,uint64,bool,bytes32,bytes,uint256)[],(uint8,bytes32,bytes32)[],address,uint64)[])": { "params": { "multiDelegatedRequests": "The arguments of the delegated multi attestation requests. The requests should be grouped by distinct schema ids to benefit from the best batching optimization." }, "returns": { "_0": "The UIDs of the new attestations. Example: multiAttestByDelegation([{ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: [{ recipient: '0xf39Fd6e51aad88F6F4ce6aB8827279cffFb92266', expirationTime: 1673891048, revocable: true, refUID: '0x0000000000000000000000000000000000000000000000000000000000000000', data: '0x1234', value: 0 }, { recipient: '0xdEADBeAFdeAdbEafdeadbeafDeAdbEAFdeadbeaf', expirationTime: 0, revocable: false, refUID: '0x0000000000000000000000000000000000000000000000000000000000000000', data: '0x00', value: 0 }], signatures: [{ v: 28, r: '0x148c...b25b', s: '0x5a72...be22' }, { v: 28, r: '0x487s...67bb', s: '0x12ad...2366' }], attester: '0x1D86495b2A7B524D747d2839b3C645Bed32e8CF4', deadline: 1673891048 }])" } }, "multiRevoke((bytes32,(bytes32,uint256)[])[])": { "params": { "multiRequests": "The arguments of the multi revocation requests. The requests should be grouped by distinct schema ids to benefit from the best batching optimization. Example: multiRevoke([{ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: [{ uid: '0x211296a1ca0d7f9f2cfebf0daaa575bea9b20e968d81aef4e743d699c6ac4b25', value: 1000 }, { uid: '0xe160ac1bd3606a287b4d53d5d1d6da5895f65b4b4bab6d93aaf5046e48167ade', value: 0 }], }, { schema: '0x5ac273ce41e3c8bfa383efe7c03e54c5f0bff29c9f11ef6ffa930fc84ca32425', data: [{ uid: '0x053d42abce1fd7c8fcddfae21845ad34dae287b2c326220b03ba241bc5a8f019', value: 0 }, }])" } }, "multiRevokeByDelegation((bytes32,(bytes32,uint256)[],(uint8,bytes32,bytes32)[],address,uint64)[])": { "params": { "multiDelegatedRequests": "The arguments of the delegated multi revocation attestation requests. The requests should be grouped by distinct schema ids to benefit from the best batching optimization. Example: multiRevokeByDelegation([{ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: [{ uid: '0x211296a1ca0d7f9f2cfebf0daaa575bea9b20e968d81aef4e743d699c6ac4b25', value: 1000 }, { uid: '0xe160ac1bd3606a287b4d53d5d1d6da5895f65b4b4bab6d93aaf5046e48167ade', value: 0 }], signatures: [{ v: 28, r: '0x148c...b25b', s: '0x5a72...be22' }, { v: 28, r: '0x487s...67bb', s: '0x12ad...2366' }], revoker: '0x244934dd3e31bE2c81f84ECf0b3E6329F5381992', deadline: 1673891048 }])" } }, "multiRevokeOffchain(bytes32[])": { "params": { "data": "The data to timestamp." }, "returns": { "_0": "The timestamp the data was revoked with." } }, "multiTimestamp(bytes32[])": { "params": { "data": "The data to timestamp." }, "returns": { "_0": "The timestamp the data was timestamped with." } }, "revoke((bytes32,(bytes32,uint256)))": { "params": { "request": "The arguments of the revocation request. Example: revoke({ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: { uid: '0x101032e487642ee04ee17049f99a70590c735b8614079fc9275f9dd57c00966d', value: 0 } })" } }, "revokeByDelegation((bytes32,(bytes32,uint256),(uint8,bytes32,bytes32),address,uint64))": { "params": { "delegatedRequest": "The arguments of the delegated revocation request. Example: revokeByDelegation({ schema: '0x8e72f5bc0a8d4be6aa98360baa889040c50a0e51f32dbf0baa5199bd93472ebc', data: { uid: '0xcbbc12102578c642a0f7b34fe7111e41afa25683b6cd7b5a14caf90fa14d24ba', value: 0 }, signature: { v: 27, r: '0xb593...7142', s: '0x0f5b...2cce' }, revoker: '0x244934dd3e31bE2c81f84ECf0b3E6329F5381992', deadline: 1673891048 })" } }, "revokeOffchain(bytes32)": { "params": { "data": "The data to timestamp." }, "returns": { "_0": "The timestamp the data was revoked with." } }, "timestamp(bytes32)": { "params": { "data": "The data to timestamp." }, "returns": { "_0": "The timestamp the data was timestamped with." } }, "version()": { "returns": { "_0": "Semver contract version as a string." } } }, "title": "EAS", "version": 1 }, "userdoc": { "events": { "Attested(address,address,bytes32,bytes32)": { "notice": "Emitted when an attestation has been made." }, "NonceIncreased(uint256,uint256)": { "notice": "Emitted when users invalidate nonces by increasing their nonces to (higher) new values." }, "Revoked(address,address,bytes32,bytes32)": { "notice": "Emitted when an attestation has been revoked." }, "RevokedOffchain(address,bytes32,uint64)": { "notice": "Emitted when a data has been revoked." }, "Timestamped(bytes32,uint64)": { "notice": "Emitted when a data has been timestamped." } }, "kind": "user", "methods": { "attest((bytes32,(address,uint64,bool,bytes32,bytes,uint256)))": { "notice": "Attests to a specific schema." }, "attestByDelegation((bytes32,(address,uint64,bool,bytes32,bytes,uint256),(uint8,bytes32,bytes32),address,uint64))": { "notice": "Attests to a specific schema via the provided ECDSA signature." }, "getAttestTypeHash()": { "notice": "Returns the EIP712 type hash for the attest function." }, "getAttestation(bytes32)": { "notice": "Returns an existing attestation by UID." }, "getDomainSeparator()": { "notice": "Returns the domain separator used in the encoding of the signatures for attest, and revoke." }, "getName()": { "notice": "Returns the EIP712 name." }, "getNonce(address)": { "notice": "Returns the current nonce per-account." }, "getRevokeOffchain(address,bytes32)": { "notice": "Returns the timestamp that the specified data was timestamped with." }, "getRevokeTypeHash()": { "notice": "Returns the EIP712 type hash for the revoke function." }, "getSchemaRegistry()": { "notice": "Returns the address of the global schema registry." }, "getTimestamp(bytes32)": { "notice": "Returns the timestamp that the specified data was timestamped with." }, "increaseNonce(uint256)": { "notice": "Provides users an option to invalidate nonces by increasing their nonces to (higher) new values." }, "isAttestationValid(bytes32)": { "notice": "Checks whether an attestation exists." }, "multiAttest((bytes32,(address,uint64,bool,bytes32,bytes,uint256)[])[])": { "notice": "Attests to multiple schemas." }, "multiAttestByDelegation((bytes32,(address,uint64,bool,bytes32,bytes,uint256)[],(uint8,bytes32,bytes32)[],address,uint64)[])": { "notice": "Attests to multiple schemas using via provided ECDSA signatures." }, "multiRevoke((bytes32,(bytes32,uint256)[])[])": { "notice": "Revokes existing attestations to multiple schemas." }, "multiRevokeByDelegation((bytes32,(bytes32,uint256)[],(uint8,bytes32,bytes32)[],address,uint64)[])": { "notice": "Revokes existing attestations to multiple schemas via provided ECDSA signatures." }, "multiRevokeOffchain(bytes32[])": { "notice": "Revokes the specified multiple bytes32 data." }, "multiTimestamp(bytes32[])": { "notice": "Timestamps the specified multiple bytes32 data." }, "revoke((bytes32,(bytes32,uint256)))": { "notice": "Revokes an existing attestation to a specific schema." }, "revokeByDelegation((bytes32,(bytes32,uint256),(uint8,bytes32,bytes32),address,uint64))": { "notice": "Revokes an existing attestation to a specific schema via the provided ECDSA signature." }, "revokeOffchain(bytes32)": { "notice": "Revokes the specified bytes32 data." }, "timestamp(bytes32)": { "notice": "Timestamps the specified bytes32 data." }, "version()": { "notice": "Returns the full semver contract version." } }, "notice": "The Ethereum Attestation Service protocol.", "version": 1 }, "storageLayout": { "storage": [ { "astId": 2559, "contract": "contracts/EAS.sol:EAS", "label": "_nameFallback", "offset": 0, "slot": "0", "type": "t_string_storage" }, { "astId": 2561, "contract": "contracts/EAS.sol:EAS", "label": "_versionFallback", "offset": 0, "slot": "1", "type": "t_string_storage" }, { "astId": 6959, "contract": "contracts/EAS.sol:EAS", "label": "_name", "offset": 0, "slot": "2", "type": "t_string_storage" }, { "astId": 6963, "contract": "contracts/EAS.sol:EAS", "label": "_nonces", "offset": 0, "slot": "3", "type": "t_mapping(t_address,t_uint256)" }, { "astId": 3954, "contract": "contracts/EAS.sol:EAS", "label": "_db", "offset": 0, "slot": "4", "type": "t_mapping(t_bytes32,t_struct(Attestation)3848_storage)" }, { "astId": 3958, "contract": "contracts/EAS.sol:EAS", "label": "_timestamps", "offset": 0, "slot": "5", "type": "t_mapping(t_bytes32,t_uint64)" }, { "astId": 3964, "contract": "contracts/EAS.sol:EAS", "label": "_revocationsOffchain", "offset": 0, "slot": "6", "type": "t_mapping(t_address,t_mapping(t_bytes32,t_uint64))" } ], "types": { "t_address": { "encoding": "inplace", "label": "address", "numberOfBytes": "20" }, "t_bool": { "encoding": "inplace", "label": "bool", "numberOfBytes": "1" }, "t_bytes32": { "encoding": "inplace", "label": "bytes32", "numberOfBytes": "32" }, "t_bytes_storage": { "encoding": "bytes", "label": "bytes", "numberOfBytes": "32" }, "t_mapping(t_address,t_mapping(t_bytes32,t_uint64))": { "encoding": "mapping", "key": "t_address", "label": "mapping(address => mapping(bytes32 => uint64))", "numberOfBytes": "32", "value": "t_mapping(t_bytes32,t_uint64)" }, "t_mapping(t_address,t_uint256)": { "encoding": "mapping", "key": "t_address", "label": "mapping(address => uint256)", "numberOfBytes": "32", "value": "t_uint256" }, "t_mapping(t_bytes32,t_struct(Attestation)3848_storage)": { "encoding": "mapping", "key": "t_bytes32", "label": "mapping(bytes32 => struct Attestation)", "numberOfBytes": "32", "value": "t_struct(Attestation)3848_storage" }, "t_mapping(t_bytes32,t_uint64)": { "encoding": "mapping", "key": "t_bytes32", "label": "mapping(bytes32 => uint64)", "numberOfBytes": "32", "value": "t_uint64" }, "t_string_storage": { "encoding": "bytes", "label": "string", "numberOfBytes": "32" }, "t_struct(Attestation)3848_storage": { "encoding": "inplace", "label": "struct Attestation", "members": [ { "astId": 3829, "contract": "contracts/EAS.sol:EAS", "label": "uid", "offset": 0, "slot": "0", "type": "t_bytes32" }, { "astId": 3831, "contract": "contracts/EAS.sol:EAS", "label": "schema", "offset": 0, "slot": "1", "type": "t_bytes32" }, { "astId": 3833, "contract": "contracts/EAS.sol:EAS", "label": "time", "offset": 0, "slot": "2", "type": "t_uint64" }, { "astId": 3835, "contract": "contracts/EAS.sol:EAS", "label": "expirationTime", "offset": 8, "slot": "2", "type": "t_uint64" }, { "astId": 3837, "contract": "contracts/EAS.sol:EAS", "label": "revocationTime", "offset": 16, "slot": "2", "type": "t_uint64" }, { "astId": 3839, "contract": "contracts/EAS.sol:EAS", "label": "refUID", "offset": 0, "slot": "3", "type": "t_bytes32" }, { "astId": 3841, "contract": "contracts/EAS.sol:EAS", "label": "recipient", "offset": 0, "slot": "4", "type": "t_address" }, { "astId": 3843, "contract": "contracts/EAS.sol:EAS", "label": "attester", "offset": 0, "slot": "5", "type": "t_address" }, { "astId": 3845, "contract": "contracts/EAS.sol:EAS", "label": "revocable", "offset": 20, "slot": "5", "type": "t_bool" }, { "astId": 3847, "contract": "contracts/EAS.sol:EAS", "label": "data", "offset": 0, "slot": "6", "type": "t_bytes_storage" } ], "numberOfBytes": "224" }, "t_uint256": { "encoding": "inplace", "label": "uint256", "numberOfBytes": "32" }, "t_uint64": { "encoding": "inplace", "label": "uint64", "numberOfBytes": "8" } } } }