difficulty: fix check_hash on big endian
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@ -34,7 +34,6 @@
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#include <vector>
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#include <string>
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#include <boost/multiprecision/cpp_int.hpp>
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#include "crypto/hash.h"
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namespace cryptonote
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@ -29,6 +29,7 @@
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#pragma once
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#include "string_tools.h"
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#include "int-util.h"
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#include "cryptonote_basic/difficulty.h"
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template<uint64_t hash_target_high, uint64_t hash_target_low, uint64_t difficulty_high, uint64_t difficulty_low>
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@ -44,13 +45,18 @@ public:
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difficulty = difficulty_high;
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difficulty = (difficulty << 64) | difficulty_low;
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boost::multiprecision::uint256_t hash_value = std::numeric_limits<boost::multiprecision::uint256_t>::max() / hash_target;
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((uint64_t*)&hash)[0] = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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uint64_t val;
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val = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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((uint64_t*)&hash)[0] = SWAP64LE(val);
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hash_value >>= 64;
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((uint64_t*)&hash)[1] = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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val = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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((uint64_t*)&hash)[1] = SWAP64LE(val);
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hash_value >>= 64;
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((uint64_t*)&hash)[2] = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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val = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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((uint64_t*)&hash)[2] = SWAP64LE(val);
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hash_value >>= 64;
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((uint64_t*)&hash)[3] = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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val = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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((uint64_t*)&hash)[3] = SWAP64LE(val);
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return true;
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}
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@ -27,6 +27,7 @@
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// THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#include "gtest/gtest.h"
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#include "int-util.h"
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#include "cryptonote_basic/difficulty.h"
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static cryptonote::difficulty_type MKDIFF(uint64_t high, uint64_t low)
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@ -42,13 +43,18 @@ static crypto::hash MKHASH(uint64_t high, uint64_t low)
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hash_target = (hash_target << 64) | low;
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boost::multiprecision::uint256_t hash_value = std::numeric_limits<boost::multiprecision::uint256_t>::max() / hash_target;
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crypto::hash h;
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((uint64_t*)&h)[0] = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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uint64_t val;
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val = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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((uint64_t*)&h)[0] = SWAP64LE(val);
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hash_value >>= 64;
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((uint64_t*)&h)[1] = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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val = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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((uint64_t*)&h)[1] = SWAP64LE(val);
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hash_value >>= 64;
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((uint64_t*)&h)[2] = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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val = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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((uint64_t*)&h)[2] = SWAP64LE(val);
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hash_value >>= 64;
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((uint64_t*)&h)[3] = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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val = (hash_value & 0xffffffffffffffff).convert_to<uint64_t>();
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((uint64_t*)&h)[3] = SWAP64LE(val);
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return h;
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}
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