global sys_extcodehash: // stack: kexit_info, address SWAP1 %u256_to_addr // stack: address, kexit_info DUP1 %insert_accessed_addresses // stack: cold_access, address, kexit_info PUSH @GAS_COLDACCOUNTACCESS_MINUS_WARMACCESS MUL PUSH @GAS_WARMACCESS ADD %stack (gas, address, kexit_info) -> (gas, kexit_info, address) %charge_gas // stack: kexit_info, address SWAP1 DUP1 %is_dead %jumpi(extcodehash_dead) %extcodehash // stack: hash, kexit_info SWAP1 EXIT_KERNEL extcodehash_dead: %stack (address, kexit_info) -> (kexit_info, 0) EXIT_KERNEL global extcodehash: // stack: address, retdest %mpt_read_state_trie // stack: account_ptr, retdest DUP1 ISZERO %jumpi(retzero) %add_const(3) // stack: codehash_ptr, retdest %mload_trie_data // stack: codehash, retdest SWAP1 JUMP retzero: %stack (account_ptr, retdest) -> (retdest, 0) JUMP %macro extcodehash %stack (address) -> (address, %%after) %jump(extcodehash) %%after: %endmacro %macro ext_code_empty %extcodehash %eq_const(@EMPTY_STRING_HASH) %endmacro %macro extcodesize %stack (address) -> (address, 0, @SEGMENT_KERNEL_ACCOUNT_CODE, %%after) %jump(load_code) %%after: %endmacro global sys_extcodesize: // stack: kexit_info, address SWAP1 %u256_to_addr // stack: address, kexit_info DUP1 %insert_accessed_addresses // stack: cold_access, address, kexit_info PUSH @GAS_COLDACCOUNTACCESS_MINUS_WARMACCESS MUL PUSH @GAS_WARMACCESS ADD %stack (gas, address, kexit_info) -> (gas, kexit_info, address) %charge_gas // stack: kexit_info, address SWAP1 // stack: address, kexit_info %extcodesize // stack: code_size, kexit_info SWAP1 EXIT_KERNEL global extcodesize: // stack: address, retdest %extcodesize // stack: extcodesize(address), retdest SWAP1 JUMP // Loads the code at `address` into memory, at the given context and segment, starting at offset 0. // Checks that the hash of the loaded code corresponds to the `codehash` in the state trie. // Pre stack: address, ctx, segment, retdest // Post stack: code_size global load_code: %stack (address, ctx, segment, retdest) -> (extcodehash, address, load_code_ctd, ctx, segment, retdest) JUMP load_code_ctd: // stack: codehash, ctx, segment, retdest DUP1 ISZERO %jumpi(load_code_non_existent_account) PROVER_INPUT(account_code::length) // stack: code_size, codehash, ctx, segment, retdest PUSH 0 // Loop non-deterministically querying `code[i]` and storing it in `SEGMENT_KERNEL_ACCOUNT_CODE` // at offset `i`, until `i==code_size`. load_code_loop: // stack: i, code_size, codehash, ctx, segment, retdest DUP2 DUP2 EQ // stack: i == code_size, i, code_size, codehash, ctx, segment, retdest %jumpi(load_code_check) PROVER_INPUT(account_code::get) // stack: opcode, i, code_size, codehash, ctx, segment, retdest DUP2 // stack: i, opcode, i, code_size, codehash, ctx, segment, retdest DUP7 // segment DUP7 // context MSTORE_GENERAL // stack: i, code_size, codehash, ctx, segment, retdest %increment // stack: i+1, code_size, codehash, ctx, segment, retdest %jump(load_code_loop) // Check that the hash of the loaded code equals `codehash`. load_code_check: // stack: i, code_size, codehash, ctx, segment, retdest %stack (i, code_size, codehash, ctx, segment, retdest) -> (ctx, segment, 0, code_size, codehash, retdest, code_size) KECCAK_GENERAL // stack: shouldbecodehash, codehash, retdest, code_size %assert_eq JUMP load_code_non_existent_account: %stack (codehash, ctx, segment, retdest) -> (retdest, 0) JUMP