solidity/test/cmdlineTests/name_simplifier/output

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Optimized IR:
/*******************************************************
* WARNING *
* Solidity to Yul compilation is still EXPERIMENTAL *
* It can result in LOSS OF FUNDS or worse *
* !USE AT YOUR OWN RISK! *
*******************************************************/
object "C_59" {
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code {
{
mstore(64, 128)
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if callvalue() { revert(0, 0) }
let _1 := datasize("C_59_deployed")
codecopy(0, dataoffset("C_59_deployed"), _1)
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return(0, _1)
}
}
object "C_59_deployed" {
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code {
{
mstore(64, 128)
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if iszero(lt(calldatasize(), 4))
{
let _1 := 0
if eq(0xf8eddcc6, shr(224, calldataload(_1)))
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{
if callvalue() { revert(_1, _1) }
let _2 := 32
if slt(add(calldatasize(), not(3)), _2) { revert(_1, _1) }
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let offset := calldataload(4)
let _3 := 0xffffffffffffffff
if gt(offset, _3) { revert(_1, _1) }
if iszero(slt(add(offset, 35), calldatasize())) { revert(_1, _1) }
let _4 := calldataload(add(4, offset))
if gt(_4, _3) { panic_error_0x41() }
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let _5 := shl(5, _4)
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let dst := allocate_memory(add(_5, _2))
let dst_1 := dst
mstore(dst, _4)
dst := add(dst, _2)
let src := add(offset, 36)
if gt(add(add(offset, _5), 36), calldatasize()) { revert(_1, _1) }
let i := _1
for { } lt(i, _4) { i := add(i, 1) }
{
if slt(sub(calldatasize(), src), _2) { revert(_1, _1) }
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let value := allocate_memory(_2)
mstore(value, calldataload(src))
mstore(dst, value)
dst := add(dst, _2)
src := add(src, _2)
}
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let ret, ret_1 := fun_sumArray(dst_1)
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let memPos := allocate_memory(_1)
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return(memPos, sub(abi_encode_uint256_string(memPos, ret, ret_1), memPos))
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}
}
revert(0, 0)
}
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function abi_encode_uint256_string(headStart, value0, value1) -> tail
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{
mstore(headStart, value0)
let _1 := 32
mstore(add(headStart, _1), 64)
let length := mload(value1)
mstore(add(headStart, 64), length)
let i := tail
for { } lt(i, length) { i := add(i, _1) }
{
mstore(add(add(headStart, i), 96), mload(add(add(value1, i), _1)))
}
if gt(i, length)
{
mstore(add(add(headStart, length), 96), tail)
}
tail := add(add(headStart, and(add(length, 31), not(31))), 96)
}
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function allocate_memory(size) -> memPtr
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{
memPtr := mload(64)
let newFreePtr := add(memPtr, and(add(size, 31), not(31)))
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if or(gt(newFreePtr, 0xffffffffffffffff), lt(newFreePtr, memPtr)) { panic_error_0x41() }
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mstore(64, newFreePtr)
}
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function copy_literal_to_memory_64902fd228f7ef267f3b474dd6ef84bae434cf5546eee948e7ca26df3eda1927() -> memPtr
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{
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let memPtr_1 := allocate_memory(160)
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mstore(memPtr_1, 100)
memPtr := memPtr_1
mstore(add(memPtr_1, 0x20), "longstringlongstringlongstringlo")
mstore(add(memPtr_1, 64), "ngstringlongstringlongstringlong")
mstore(add(memPtr_1, 96), "stringlongstringlongstringlongst")
mstore(add(memPtr_1, 128), "ring")
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}
function extract_from_storage_value_dynamict_uint256(slot_value, offset) -> value
{
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value := shr(shl(3, offset), slot_value)
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}
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function fun_sumArray(var_s_mpos) -> var, var_mpos
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{
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if iszero(lt(var_mpos, mload(var_s_mpos))) { panic_error_0x32() }
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let _1 := mload(mload(add(add(var_s_mpos, shl(5, var_mpos)), 32)))
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let _2, _3 := storage_array_index_access_struct_S(var_mpos, var_mpos)
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sstore(_2, _1)
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if iszero(lt(0x01, mload(var_s_mpos))) { panic_error_0x32() }
let _4 := mload(mload(add(var_s_mpos, 64)))
if iszero(lt(var_mpos, 0x02)) { panic_error_0x32() }
let slot := add(0x02, var_mpos)
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let _5 := sload(slot)
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let shiftBits := shl(3, var_mpos)
let mask := shl(shiftBits, not(0))
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sstore(slot, or(and(_5, not(mask)), and(shl(shiftBits, _4), mask)))
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let _6, _7 := storage_array_index_access_struct_S(0x02, var_mpos)
var := extract_from_storage_value_dynamict_uint256(sload(_6), _7)
var_mpos := copy_literal_to_memory_64902fd228f7ef267f3b474dd6ef84bae434cf5546eee948e7ca26df3eda1927()
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}
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function panic_error_0x32()
{
mstore(0, shl(224, 0x4e487b71))
mstore(4, 0x32)
revert(0, 0x24)
}
function panic_error_0x41()
{
mstore(0, shl(224, 0x4e487b71))
mstore(4, 0x41)
revert(0, 0x24)
}
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function storage_array_index_access_struct_S(array, index) -> slot, offset
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{
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if iszero(lt(index, 0x02)) { panic_error_0x32() }
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slot := add(array, index)
offset := offset
}
}
}
}