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integer <> binary
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#include "emp-sh2pc/emp-sh2pc.h" | |
using namespace emp; | |
using namespace std; | |
const string circuit_file_location = macro_xstr(EMP_CIRCUIT_PATH); | |
int port, party; | |
string file = circuit_file_location+"/AES-non-expanded.txt";//adder_32bit.txt"; | |
CircuitFile cf(file.c_str()); | |
// test vector | |
const char *_key = "2b7e151628aed2a6abf7158809cf4f3c"; | |
const char *_pla = "6bc1bee22e409f96e93d7e117393172a"; | |
const char *_cph = "3ad77bb40d7a3660a89ecaf32466ef97"; | |
auto key_bin = hex_to_binary(_key); | |
auto plain_bin = hex_to_binary(_pla); | |
auto cipher_bin = hex_to_binary(_cph); | |
void test() { | |
auto start = clock_start(); | |
Integer a(128, 2, ALICE); | |
Integer b(128, 3, BOB); | |
Integer ref(128, 0, PUBLIC); | |
for (int i = 0; i < 128; i++) { | |
a[i] = key_bin[i] == '1'; | |
b[i] = plain_bin[i] == '1'; | |
ref[i] = cipher_bin[i] == '1'; | |
} | |
Integer c(128, 1, PUBLIC); | |
for(int i = 0; i < 10000; ++i) { | |
cf.compute((block*)c.bits, (block*)a.bits, (block*)b.bits); | |
} | |
cout << time_from(start)<<" "<<party<<" "<<c.reveal<string>(BOB)<<endl; | |
cout << "ref " << ref.reveal<string>(PUBLIC) << endl; | |
} | |
int main(int argc, char** argv) { | |
parse_party_and_port(argv, &party, &port); | |
NetIO* io = new NetIO(party==ALICE?nullptr:"127.0.0.1", port); | |
setup_semi_honest(io, party); | |
test(); | |
delete io; | |
} |
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