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225 lines
8.8 KiB
Solidity
225 lines
8.8 KiB
Solidity
// SPDX-License-Identifier: MIT
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pragma solidity ^0.8.0;
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import "./Memory.sol";
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import "./StorageSlotFactory.sol";
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library StorageHelperV2 {
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// StorageSlotSelfDestructableV2 compiled via solc 0.8.7 optimized 200
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bytes internal constant STORAGE_SLOT_CODE_V2 =
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hex"6080604052348015600f57600080fd5b506004361060285760003560e01c80632b68b9c614602d575b600080fd5b60336035565b005b336001600160a01b037f0000000000000000000000000000000000000000000000000000000000000000161460965760405162461bcd60e51b81526020600482015260036024820152624e464f60e81b604482015260640160405180910390fd5b7f00000000000000000000000000000000000000000000000000000000000000006001600160a01b0316fffea2646970667358221220154417754813d1989858c876ab2ded2ba1aa380679fff7a4c8faea076ba020e664736f6c63430008070033";
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uint256 internal constant OWNER_ADDR_OFF = 64;
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uint256 internal constant USER_ADDR_OFF = 152;
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// StorageSlotFactoryFromInput compiled via solc 0.8.7 optimized 200 + STORAGE_SLOT_CODE
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bytes internal constant FACTORY_CODE =
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hex"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";
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uint256 internal constant FACTORY_SIZE_OFF = 305;
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uint256 internal constant FACTORY_ADDR_OFF0 = 305 + 32 + OWNER_ADDR_OFF;
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uint256 internal constant FACTORY_ADDR_OFF1 = 305 + 32 + USER_ADDR_OFF;
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function putRawFromCalldata(
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bytes calldata data,
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uint256 value
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) internal returns (address) {
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bytes memory bytecode = bytes.concat(STORAGE_SLOT_CODE_V2, data);
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address userAddr = msg.sender;
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{
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// revise the owner to the contract (so that it is destructable)
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uint256 off = OWNER_ADDR_OFF + 0x20;
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assembly {
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mstore(add(bytecode, off), address())
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}
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off = USER_ADDR_OFF + 0x20;
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assembly {
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mstore(add(bytecode, off), userAddr)
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}
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}
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StorageSlotFactoryFromInput c = new StorageSlotFactoryFromInput{
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value: value
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}(bytecode);
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return address(c);
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}
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function putRaw(
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bytes memory data,
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uint256 value
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) internal returns (address) {
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// create the new contract code with the data
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bytes memory bytecode = STORAGE_SLOT_CODE_V2;
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uint256 bytecodeLen = bytecode.length;
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uint256 newSize = bytecode.length + data.length;
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assembly {
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// in-place resize of bytecode bytes
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// note that this must be done when bytecode is the last allocated object by solidity.
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mstore(bytecode, newSize)
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// notify solidity about the memory size increase, must be 32-bytes aligned
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mstore(
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0x40,
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add(bytecode, and(add(add(newSize, 0x20), 0x1f), not(0x1f)))
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)
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}
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// append data to self-destruct byte code
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Memory.copy(
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Memory.dataPtr(data),
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Memory.dataPtr(bytecode) + bytecodeLen,
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data.length
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);
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address userAddr = msg.sender;
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{
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// revise the owner to the contract (so that it is destructable)
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uint256 off = OWNER_ADDR_OFF + 0x20;
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assembly {
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mstore(add(bytecode, off), address())
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}
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off = USER_ADDR_OFF + 0x20;
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assembly {
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mstore(add(bytecode, off), userAddr)
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}
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}
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StorageSlotFactoryFromInput c = new StorageSlotFactoryFromInput{
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value: value
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}(bytecode);
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return address(c);
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}
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function putRaw2(
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bytes32 key,
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bytes memory data,
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uint256 value
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) internal returns (address) {
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// create the new contract code with the data
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bytes memory bytecode = FACTORY_CODE;
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uint256 bytecodeLen = bytecode.length;
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uint256 newSize = bytecode.length + data.length;
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assembly {
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// in-place resize of bytecode bytes
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// note that this must be done when bytecode is the last allocated object by solidity.
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mstore(bytecode, newSize)
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// notify solidity about the memory size increase, must be 32-bytes aligned
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mstore(
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0x40,
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add(bytecode, and(add(add(newSize, 0x20), 0x1f), not(0x1f)))
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)
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}
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// append data to self-destruct byte code
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Memory.copy(
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Memory.dataPtr(data),
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Memory.dataPtr(bytecode) + bytecodeLen,
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data.length
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);
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{
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// revise the size of calldata
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uint256 calldataSize = STORAGE_SLOT_CODE_V2.length + data.length;
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uint256 off = FACTORY_SIZE_OFF + 0x20;
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assembly {
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mstore(add(bytecode, off), calldataSize)
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}
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}
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{
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// revise the owner to the contract (so that it is destructable)
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uint256 off = FACTORY_ADDR_OFF0 + 0x20;
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assembly {
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mstore(add(bytecode, off), address())
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}
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off = FACTORY_ADDR_OFF1 + 0x20;
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assembly {
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mstore(add(bytecode, off), address())
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}
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}
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address addr;
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assembly {
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addr := create2(
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value,
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add(bytecode, 0x20), // data offset
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mload(bytecode), // size
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key
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)
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if iszero(extcodesize(addr)) {
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revert(0, 0)
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}
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}
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return addr;
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}
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function sizeRaw(address addr) internal view returns (uint256, bool) {
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if (addr == address(0x0)) {
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return (0, false);
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}
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uint256 codeSize;
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uint256 off = STORAGE_SLOT_CODE_V2.length;
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assembly {
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codeSize := extcodesize(addr)
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}
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if (codeSize < off) {
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return (0, false);
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}
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return (codeSize - off, true);
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}
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function getRaw(address addr) internal view returns (bytes memory, bool) {
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(uint256 dataSize, bool found) = sizeRaw(addr);
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if (!found) {
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return (new bytes(0), false);
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}
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// copy the data without the "code"
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bytes memory data = new bytes(dataSize);
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uint256 off = STORAGE_SLOT_CODE_V2.length;
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assembly {
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// retrieve data size
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extcodecopy(addr, add(data, 0x20), off, dataSize)
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}
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return (data, true);
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}
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function getRawAt(
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address addr,
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uint256 memoryPtr
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) internal view returns (uint256, bool) {
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(uint256 dataSize, bool found) = sizeRaw(addr);
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if (!found) {
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return (0, false);
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}
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uint256 off = STORAGE_SLOT_CODE_V2.length;
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assembly {
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// retrieve data size
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extcodecopy(addr, memoryPtr, off, dataSize)
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}
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return (dataSize, true);
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}
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function returnBytesInplace(bytes memory content) internal pure {
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// equal to return abi.encode(content)
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uint256 size = content.length + 0x40; // pointer + size
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size = (size + 0x20 + 0x1f) & ~uint256(0x1f);
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assembly {
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// (DATA CORRUPTION): the caller method must be "external returns (bytes)", cannot be public!
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mstore(sub(content, 0x20), 0x20)
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return(sub(content, 0x20), size)
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}
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}
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function calculateValueForData(
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uint256 datalen,
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uint256 chunkSize,
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uint256 codeStakingPerChunk
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) internal pure returns (uint256) {
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return
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((datalen + STORAGE_SLOT_CODE_V2.length - 1) / chunkSize) *
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codeStakingPerChunk;
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}
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function storageSlotCodeLength() internal pure returns (uint256) {
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return STORAGE_SLOT_CODE_V2.length;
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}
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}
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