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#ifndef _SECP256K1_NUM_OPENSSL_
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#define _SECP256K1_NUM_OPENSSL_
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#include <assert.h>
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#include <string>
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#include <string.h>
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#include <openssl/bn.h>
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#include <openssl/crypto.h>
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namespace secp256k1 {
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class Context {
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private:
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BN_CTX *bn_ctx;
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bool root;
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bool offspring;
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public:
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operator BN_CTX*() {
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return bn_ctx;
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}
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Context() {
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bn_ctx = BN_CTX_new();
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BN_CTX_start(bn_ctx);
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root = true;
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offspring = false;
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}
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Context(Context &par) {
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bn_ctx = par.bn_ctx;
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root = false;
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offspring = false;
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par.offspring = true;
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BN_CTX_start(bn_ctx);
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}
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~Context() {
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BN_CTX_end(bn_ctx);
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if (root)
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BN_CTX_free(bn_ctx);
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}
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BIGNUM *Get() {
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assert(offspring == false);
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return BN_CTX_get(bn_ctx);
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}
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};
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class Number {
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private:
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BIGNUM *bn;
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Number(const Number &x) {}
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public:
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Number(Context &ctx) : bn(ctx.Get()) {}
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Number(Context &ctx, const unsigned char *bin, int len) : bn(ctx.Get()) {
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SetBytes(bin,len);
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}
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void SetNumber(const Number &x) {
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BN_copy(bn, x.bn);
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}
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Number &operator=(const Number &x) {
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BN_copy(bn, x.bn);
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return *this;
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}
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void SetBytes(const unsigned char *bin, int len) {
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BN_bin2bn(bin, len, bn);
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}
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void GetBytes(unsigned char *bin, int len) {
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int size = BN_num_bytes(bn);
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assert(size <= len);
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memset(bin,0,len);
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BN_bn2bin(bn, bin + size - len);
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}
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void SetInt(int x) {
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BN_set_word(bn, x);
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}
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void SetModInverse(Context &ctx, const Number &x, const Number &m) {
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BN_mod_inverse(bn, x.bn, m.bn, ctx);
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}
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void SetModMul(Context &ctx, const Number &a, const Number &b, const Number &m) {
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BN_mod_mul(bn, a.bn, b.bn, m.bn, ctx);
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}
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void SetAdd(Context &ctx, const Number &a1, const Number &a2) {
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BN_add(bn, a1.bn, a2.bn);
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}
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void SetSub(Context &ctx, const Number &a1, const Number &a2) {
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BN_sub(bn, a1.bn, a2.bn);
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}
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void SetMult(Context &ctx, const Number &a1, const Number &a2) {
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BN_mul(bn, a1.bn, a2.bn, ctx);
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}
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void SetDiv(Context &ctx, const Number &a1, const Number &a2) {
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BN_div(bn, NULL, a1.bn, a2.bn, ctx);
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}
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void SetMod(Context &ctx, const Number &a, const Number &m) {
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BN_nnmod(bn, a.bn, m.bn, ctx);
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}
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int Compare(const Number &a) const {
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return BN_cmp(bn, a.bn);
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}
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int GetBits() const {
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return BN_num_bits(bn);
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}
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// return the lowest (rightmost) bits bits, and rshift them away
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int ShiftLowBits(Context &ctx, int bits) {
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Context ct(ctx);
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BIGNUM *tmp = ct.Get();
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BN_copy(tmp, bn);
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BN_mask_bits(tmp, bits);
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int ret = BN_get_word(tmp);
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BN_rshift(bn, bn, bits);
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return ret;
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}
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// check whether number is 0,
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bool IsZero() const {
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return BN_is_zero(bn);
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}
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bool IsOdd() const {
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return BN_is_odd(bn);
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}
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bool IsNeg() const {
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return BN_is_negative(bn);
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}
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void Negate() {
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BN_set_negative(bn, !IsNeg());
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}
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void Shift1() {
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BN_rshift1(bn,bn);
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}
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void Inc() {
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BN_add_word(bn,1);
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}
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void SetHex(const std::string &str) {
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BN_hex2bn(&bn, str.c_str());
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}
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void SetPseudoRand(const Number &max) {
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BN_pseudo_rand_range(bn, max.bn);
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}
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void SplitInto(Context &ctx, int bits, Number &low, Number &high) const {
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BN_copy(low.bn, bn);
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BN_mask_bits(low.bn, bits);
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BN_rshift(high.bn, bn, bits);
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}
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std::string ToString() {
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char *str = BN_bn2hex(bn);
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std::string ret(str);
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OPENSSL_free(str);
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return ret;
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}
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};
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}
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#endif
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