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rct: avoid repeated unnecessary conversions when accummulating
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11dbfbc5b3
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@ -252,6 +252,25 @@ namespace rct {
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return k;
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}
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rct::key addKeys(const keyV &A) {
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if (A.empty())
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return rct::identity();
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ge_p3 p3, tmp;
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CHECK_AND_ASSERT_THROW_MES_L1(ge_frombytes_vartime(&p3, A[0].bytes) == 0, "ge_frombytes_vartime failed at "+boost::lexical_cast<std::string>(__LINE__));
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for (size_t i = 1; i < A.size(); ++i)
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{
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CHECK_AND_ASSERT_THROW_MES_L1(ge_frombytes_vartime(&tmp, A[i].bytes) == 0, "ge_frombytes_vartime failed at "+boost::lexical_cast<std::string>(__LINE__));
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ge_cached p2;
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ge_p3_to_cached(&p2, &tmp);
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ge_p1p1 p1;
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ge_add(&p1, &p3, &p2);
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ge_p1p1_to_p3(&p3, &p1);
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}
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rct::key res;
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ge_p3_tobytes(res.bytes, &p3);
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return res;
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}
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//addKeys1
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//aGB = aG + B where a is a scalar, G is the basepoint, and B is a point
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void addKeys1(key &aGB, const key &a, const key & B) {
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@ -132,6 +132,7 @@ namespace rct {
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//for curve points: AB = A + B
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void addKeys(key &AB, const key &A, const key &B);
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rct::key addKeys(const key &A, const key &B);
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rct::key addKeys(const keyV &A);
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//aGB = aG + B where a is a scalar, G is the basepoint, and B is a point
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void addKeys1(key &aGB, const key &a, const key & B);
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//aGbB = aG + bB where a, b are scalars, G is the basepoint and B is a point
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@ -963,18 +963,16 @@ namespace rct {
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const bool bulletproof = is_rct_bulletproof(rv.type);
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const keyV &pseudoOuts = bulletproof ? rv.p.pseudoOuts : rv.pseudoOuts;
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key sumOutpks = identity();
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rct::keyV masks(rv.outPk.size());
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for (size_t i = 0; i < rv.outPk.size(); i++) {
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addKeys(sumOutpks, sumOutpks, rv.outPk[i].mask);
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masks[i] = rv.outPk[i].mask;
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}
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key sumOutpks = addKeys(masks);
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DP(sumOutpks);
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key txnFeeKey = scalarmultH(d2h(rv.txnFee));
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const key txnFeeKey = scalarmultH(d2h(rv.txnFee));
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addKeys(sumOutpks, txnFeeKey, sumOutpks);
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key sumPseudoOuts = identity();
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for (size_t i = 0 ; i < pseudoOuts.size() ; i++) {
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addKeys(sumPseudoOuts, sumPseudoOuts, pseudoOuts[i]);
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}
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key sumPseudoOuts = addKeys(pseudoOuts);
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DP(sumPseudoOuts);
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//check pseudoOuts vs Outs..
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