aere-contracts/contracts/zkverify/v6/SP1VerifierPlonk.sol
Aere Network a13a649b77
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Initial public release
Aere Network public source. Everything here can be checked against the live
chain (chain id 2800, https://rpc.aere.network).

Scope note, stated up front rather than buried: consensus on chain 2800 is
classical secp256k1 ECDSA QBFT. The post-quantum work in this repository is at
the signature, precompile, account and transport layers. Nothing here makes the
consensus post-quantum, and no document in it should be read as claiming so.
2026-07-20 01:02:37 +03:00

87 lines
3.3 KiB
Solidity

// SPDX-License-Identifier: MIT
pragma solidity ^0.8.20;
import {ISP1Verifier, ISP1VerifierWithHash} from "../ISP1Verifier.sol";
import {PlonkVerifier} from "./PlonkVerifier.sol";
/// @title SP1 Verifier
/// @author Succinct Labs
/// @notice This contracts implements a solidity verifier for SP1.
contract SP1Verifier is PlonkVerifier, ISP1VerifierWithHash {
/// @notice Thrown when the verifier selector from this proof does not match the one in this
/// verifier. This indicates that this proof was sent to the wrong verifier.
/// @param received The verifier selector from the first 4 bytes of the proof.
/// @param expected The verifier selector from the first 4 bytes of the VERIFIER_HASH().
error WrongVerifierSelector(bytes4 received, bytes4 expected);
/// @notice Thrown when the exit code is invalid.
error InvalidExitCode();
/// @notice Thrown when the proof is invalid.
error InvalidProof();
/// @notice Thrown when the vkRoot is invalid.
error InvalidVkRoot();
/// @notice The version of the circuit.
function VERSION() external pure returns (string memory) {
return "v6.1.0";
}
/// @inheritdoc ISP1VerifierWithHash
function VERIFIER_HASH() public pure returns (bytes32) {
return 0x5a093a2fcb46394f5cadfe55c44d4d572fad9cec7aeb38026b0278322ef07fac;
}
/// @notice The recursion vk root.
function VK_ROOT() public pure returns (bytes32) {
return 0x002f850ee998974d6cc00e50cd0814b098c05bfade466d28573240d057f25352;
}
/// @notice Hashes the public values to a field elements inside Bn254.
/// @param publicValues The public values.
function hashPublicValues(bytes calldata publicValues) public pure returns (bytes32) {
return sha256(publicValues) & bytes32(uint256((1 << 253) - 1));
}
/// @notice Verifies a proof with given public values and vkey.
/// @param programVKey The verification key for the RISC-V program.
/// @param publicValues The public values encoded as bytes.
/// @param proofBytes The proof of the program execution the SP1 zkVM encoded as bytes.
function verifyProof(
bytes32 programVKey,
bytes calldata publicValues,
bytes calldata proofBytes
) external view {
bytes4 receivedSelector = bytes4(proofBytes[:4]);
bytes4 expectedSelector = bytes4(VERIFIER_HASH());
if (receivedSelector != expectedSelector) {
revert WrongVerifierSelector(receivedSelector, expectedSelector);
}
uint256 expectedVkRoot = uint256(VK_ROOT());
bytes32 publicValuesDigest = hashPublicValues(publicValues);
uint256 exitCode = uint256(bytes32(proofBytes[4:36]));
uint256 vkRoot = uint256(bytes32(proofBytes[36:68]));
uint256 nonce = uint256(bytes32(proofBytes[68:100]));
uint256[] memory inputs = new uint256[](5);
inputs[0] = uint256(programVKey);
inputs[1] = uint256(publicValuesDigest);
inputs[2] = exitCode;
inputs[3] = vkRoot;
inputs[4] = nonce;
if (exitCode != 0) {
revert InvalidExitCode();
}
if (vkRoot != expectedVkRoot) {
revert InvalidVkRoot();
}
bool success = this.Verify(proofBytes[100:], inputs);
if (!success) {
revert InvalidProof();
}
}
}