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@ -48,23 +48,24 @@ public: |
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/*
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compute log_P(xP) for |x| <= hashSize * tryNum |
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*/ |
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void init(const G& P, int hashSize, size_t tryNum = 0) |
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void init(const G& P, size_t hashSize, size_t tryNum = 0) |
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{ |
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if (hashSize == 0) { |
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kcv.clear(); |
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return; |
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} |
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if (hashSize >= 0x80000000u) throw cybozu::Exception("EcHashTable:init:hashSize is too large"); |
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this->P = P; |
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this->hashSize = hashSize; |
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this->hashSize = (int)hashSize; |
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this->tryNum = tryNum; |
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kcv.resize(hashSize); |
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G xP; |
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xP.clear(); |
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for (int i = 1; i <= hashSize; i++) { |
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for (size_t i = 1; i <= (int)hashSize; i++) { |
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xP += P; |
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xP.normalize(); |
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kcv[i - 1].key = uint32_t(*xP.x.getUnit()); |
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kcv[i - 1].count = xP.y.isOdd() ? i : -i; |
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kcv[i - 1].count = xP.y.isOdd() ? i : -1; |
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} |
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nextP = xP; |
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G::dbl(nextP, nextP); |
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@ -121,7 +122,7 @@ public: |
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compute log_P(xP) |
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call basicLog at most 2 * tryNum |
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*/ |
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int64_t log(const G& xP) const |
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int log(const G& xP) const |
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{ |
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bool ok; |
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int c = basicLog(xP, &ok); |
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@ -129,9 +130,9 @@ public: |
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return c; |
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} |
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G posP = xP, negP = xP; |
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int64_t posCenter = 0; |
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int64_t negCenter = 0; |
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int64_t next = hashSize * 2 + 1; |
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int posCenter = 0; |
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int negCenter = 0; |
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int next = hashSize * 2 + 1; |
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for (size_t i = 1; i < tryNum; i++) { |
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posP -= nextP; |
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posCenter += next; |
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@ -164,18 +165,19 @@ public: |
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/*
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compute log_P(g^x) for |x| <= hashSize * tryNum |
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*/ |
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void init(const GT& g, int hashSize, size_t tryNum = 0) |
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void init(const GT& g, size_t hashSize, size_t tryNum = 0) |
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{ |
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if (hashSize == 0) { |
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kcv.clear(); |
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return; |
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} |
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if (hashSize >= 0x80000000u) throw cybozu::Exception("GTHashTable:init:hashSize is too large"); |
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this->g = g; |
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this->hashSize = hashSize; |
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this->hashSize = (int)hashSize; |
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this->tryNum = tryNum; |
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kcv.resize(hashSize); |
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GT gx = 1; |
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for (int i = 1; i <= hashSize; i++) { |
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for (int i = 1; i <= (int)hashSize; i++) { |
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gx *= g; |
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kcv[i - 1].key = uint32_t(*gx.getFp0()->getUnit()); |
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kcv[i - 1].count = gx.b.a.a.isOdd() ? i : -i; |
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@ -233,7 +235,7 @@ public: |
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compute log_P(g^x) |
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call basicLog at most 2 * tryNum |
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*/ |
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int64_t log(const GT& gx) const |
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int log(const GT& gx) const |
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{ |
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bool ok; |
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int c = basicLog(gx, &ok); |
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@ -241,9 +243,9 @@ public: |
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return c; |
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} |
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GT pos = gx, neg = gx; |
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int64_t posCenter = 0; |
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int64_t negCenter = 0; |
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int64_t next = hashSize * 2 + 1; |
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int posCenter = 0; |
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int negCenter = 0; |
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int next = hashSize * 2 + 1; |
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for (size_t i = 1; i < tryNum; i++) { |
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pos *= nextgInv; |
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posCenter += next; |
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@ -484,7 +486,7 @@ public: |
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throw cybozu::Exception("BGN:dec:log:not found"); |
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} |
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#endif |
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int64_t dec(const CipherTextG1& c) const |
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int dec(const CipherTextG1& c) const |
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{ |
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/*
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S = myP + rP |
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@ -496,11 +498,11 @@ public: |
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R -= c.T; |
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return g1HashTbl.log(R); |
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} |
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int64_t dec(const CipherTextA& c) const |
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int dec(const CipherTextA& c) const |
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{ |
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return dec(c.c1); |
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} |
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int64_t dec(const CipherTextM& c) const |
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int dec(const CipherTextM& c) const |
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{ |
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/*
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(s, t, u, v) := (e(S, S'), e(S, T'), e(T, S'), e(T, T')) |
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@ -522,7 +524,7 @@ public: |
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return gtHashTbl.log(s); |
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// return log(g, s);
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} |
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int64_t dec(const CipherText& c) const |
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int dec(const CipherText& c) const |
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{ |
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if (c.isMultiplied()) { |
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return dec(c.m); |
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