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ringct: add a few consts where possible
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@ -320,7 +320,7 @@ namespace rct {
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//be careful these are also in crypto namespace
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//be careful these are also in crypto namespace
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//cn_fast_hash for arbitrary multiples of 32 bytes
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//cn_fast_hash for arbitrary multiples of 32 bytes
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void cn_fast_hash(key &hash, const void * data, const std::size_t l) {
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void cn_fast_hash(key &hash, const void * data, const std::size_t l) {
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keccak((uint8_t *)data, l, hash.bytes, 32);
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keccak((const uint8_t *)data, l, hash.bytes, 32);
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}
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}
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void hash_to_scalar(key &hash, const void * data, const std::size_t l) {
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void hash_to_scalar(key &hash, const void * data, const std::size_t l) {
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@ -330,7 +330,7 @@ namespace rct {
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//cn_fast_hash for a 32 byte key
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//cn_fast_hash for a 32 byte key
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void cn_fast_hash(key & hash, const key & in) {
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void cn_fast_hash(key & hash, const key & in) {
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keccak((uint8_t *)in.bytes, 32, hash.bytes, 32);
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keccak((const uint8_t *)in.bytes, 32, hash.bytes, 32);
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}
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}
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void hash_to_scalar(key & hash, const key & in) {
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void hash_to_scalar(key & hash, const key & in) {
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@ -341,7 +341,7 @@ namespace rct {
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//cn_fast_hash for a 32 byte key
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//cn_fast_hash for a 32 byte key
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key cn_fast_hash(const key & in) {
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key cn_fast_hash(const key & in) {
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key hash;
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key hash;
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keccak((uint8_t *)in.bytes, 32, hash.bytes, 32);
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keccak((const uint8_t *)in.bytes, 32, hash.bytes, 32);
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return hash;
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return hash;
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}
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}
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@ -354,7 +354,7 @@ namespace rct {
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//cn_fast_hash for a 128 byte unsigned char
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//cn_fast_hash for a 128 byte unsigned char
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key cn_fast_hash128(const void * in) {
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key cn_fast_hash128(const void * in) {
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key hash;
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key hash;
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keccak((uint8_t *)in, 128, hash.bytes, 32);
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keccak((const uint8_t *)in, 128, hash.bytes, 32);
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return hash;
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return hash;
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}
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}
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