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//#define MCLBN_FP_UNIT_SIZE 8
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#include <cybozu/test.hpp>
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#include <mcl/aggregate_sig.hpp>
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#include <cybozu/benchmark.hpp>
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#include <cybozu/xorshift.hpp>
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using namespace mcl::aggs;
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CYBOZU_TEST_AUTO(init)
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{
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AGGS::init();
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// AGGS::init(mcl::bn::CurveFp382_1);
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// AGGS::init(mcl::bn::CurveFp462);
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SecretKey sec;
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sec.init();
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PublicKey pub;
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sec.getPublicKey(pub);
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const std::string m = "abc";
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Signature sig;
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sec.sign(sig, m);
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CYBOZU_TEST_ASSERT(pub.verify(sig, m));
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}
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void aggregateTest(const std::vector<std::string>& msgVec)
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{
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const size_t n = msgVec.size();
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std::vector<SecretKey> secVec(n);
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std::vector<PublicKey> pubVec(n);
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std::vector<Signature> sigVec(n);
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Signature aggSig;
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for (size_t i = 0; i < n; i++) {
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secVec[i].init();
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secVec[i].getPublicKey(pubVec[i]);
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secVec[i].sign(sigVec[i], msgVec[i]);
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CYBOZU_TEST_ASSERT(pubVec[i].verify(sigVec[i], msgVec[i]));
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}
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aggSig.aggregate(sigVec);
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CYBOZU_TEST_ASSERT(aggSig.verify(msgVec, pubVec));
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CYBOZU_BENCH_C("aggSig.verify", 10, aggSig.verify, msgVec, pubVec);
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}
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CYBOZU_TEST_AUTO(aggregate)
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{
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#if 0
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/*
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Core i7-7700 CPU @ 3.60GHz
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BN254 Fp382 Fp462
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security bit 100 115? 128
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# of sig 100 69 200 476
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1000 693 2037 4731
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10000 6969 20448 47000(Mclk)
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*/
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const size_t n = 1000;
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const size_t msgSize = 16;
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std::vector<std::string> msgVec(n);
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cybozu::XorShift rg;
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for (size_t i = 0; i < n; i++) {
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std::string& msg = msgVec[i];
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msg.resize(msgSize);
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for (size_t j = 0; j < msgSize; j++) {
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msg[j] = (char)rg();
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}
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}
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aggregateTest(msgVec);
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#else
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const std::string msgArray[] = { "abc", "12345", "xyz", "pqr", "aggregate signature" };
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const size_t n = sizeof(msgArray) / sizeof(msgArray[0]);
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std::vector<std::string> msgVec(n);
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for (size_t i = 0; i < n; i++) {
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msgVec[i] = msgArray[i];
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}
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aggregateTest(msgVec);
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#endif
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}
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