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143 lines
3.5 KiB
C++
143 lines
3.5 KiB
C++
#include <nx/AcidBinary.h>
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nx::AcidBinary::AcidBinary()
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{
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clear();
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}
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nx::AcidBinary::AcidBinary(const AcidBinary & other)
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{
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copyFrom(other);
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}
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nx::AcidBinary::AcidBinary(const byte_t * bytes, size_t len)
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{
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importBinary(bytes, len);
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}
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void nx::AcidBinary::clear()
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{
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AciBinary::clear();
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mEmbeddedPublicKey = crypto::rsa::sRsa2048Key();
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}
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const crypto::rsa::sRsa2048Key & nx::AcidBinary::getNcaHeader2RsaKey() const
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{
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return mEmbeddedPublicKey;
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}
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void nx::AcidBinary::setNcaHeader2RsaKey(const crypto::rsa::sRsa2048Key & key)
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{
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mEmbeddedPublicKey = key;
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}
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bool nx::AcidBinary::isEqual(const AcidBinary & other) const
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{
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return AciBinary::operator==(other) \
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&& (mEmbeddedPublicKey == other.mEmbeddedPublicKey);
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}
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void nx::AcidBinary::copyFrom(const AcidBinary & other)
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{
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if (other.getSize())
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{
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importBinary(other.getBytes(), other.getSize());
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}
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else
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{
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AciBinary::operator=(other);
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mEmbeddedPublicKey = other.mEmbeddedPublicKey;
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}
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}
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bool nx::AcidBinary::operator==(const AcidBinary & other) const
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{
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return isEqual(other);
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}
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bool nx::AcidBinary::operator!=(const AcidBinary & other) const
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{
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return !isEqual(other);
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}
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void nx::AcidBinary::operator=(const AcidBinary & other)
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{
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copyFrom(other);
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}
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const byte_t * nx::AcidBinary::getBytes() const
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{
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return mBinaryBlob.getBytes();
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}
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size_t nx::AcidBinary::getSize() const
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{
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return mBinaryBlob.getSize();
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}
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void nx::AcidBinary::exportBinary()
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{
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AciBinary::setHeaderOffset(crypto::rsa::kRsa2048Size); // not include signature
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AciBinary::exportBinary();
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mBinaryBlob.alloc(AciBinary::getSize() + crypto::rsa::kRsa2048Size * 2);
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memcpy(mBinaryBlob.getBytes() + crypto::rsa::kRsa2048Size, mEmbeddedPublicKey.modulus, crypto::rsa::kRsa2048Size);
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memcpy(mBinaryBlob.getBytes() + crypto::rsa::kRsa2048Size * 2, AciBinary::getBytes(), AciBinary::getSize());
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}
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void nx::AcidBinary::signBinary(const crypto::rsa::sRsa2048Key & key)
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{
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if (mBinaryBlob.getSize() == 0)
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{
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exportBinary();
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}
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byte_t hash[crypto::sha::kSha256HashLen];
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crypto::sha::Sha256(mBinaryBlob.getBytes() + crypto::rsa::kRsa2048Size, mBinaryBlob.getSize() - crypto::rsa::kRsa2048Size, hash);
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if (crypto::rsa::pkcs::rsaSign(key, crypto::sha::HASH_SHA256, hash, mBinaryBlob.getBytes()) != 0)
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{
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throw fnd::Exception(kModuleName, "Failed to sign ACID");
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}
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}
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void nx::AcidBinary::importBinary(const byte_t * bytes, size_t len)
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{
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if (len <= crypto::rsa::kRsa2048Size*2)
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{
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throw fnd::Exception(kModuleName, "ACID binary too small");
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}
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// import aci binary past sig + pubkey
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AciBinary::importBinary(bytes + crypto::rsa::kRsa2048Size * 2, len - crypto::rsa::kRsa2048Size * 2);
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// save internal copy
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size_t acid_size = AciBinary::getSize() + crypto::rsa::kRsa2048Size * 2;
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if (acid_size > len)
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{
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throw fnd::Exception(kModuleName, "ACID binary too small");
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}
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mBinaryBlob.alloc(acid_size);
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memcpy(mBinaryBlob.getBytes(), bytes, mBinaryBlob.getSize());
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memcpy(mEmbeddedPublicKey.modulus, bytes + crypto::rsa::kRsa2048Size, crypto::rsa::kRsa2048Size);
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}
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void nx::AcidBinary::verifyBinary(const crypto::rsa::sRsa2048Key & key) const
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{
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if (mBinaryBlob.getSize() == 0)
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{
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throw fnd::Exception(kModuleName, "No ACID binary exists to verify");
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}
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byte_t hash[crypto::sha::kSha256HashLen];
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crypto::sha::Sha256(mBinaryBlob.getBytes() + crypto::rsa::kRsa2048Size, mBinaryBlob.getSize() - crypto::rsa::kRsa2048Size, hash);
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if (crypto::rsa::pss::rsaVerify(key, crypto::sha::HASH_SHA256, hash, mBinaryBlob.getBytes()) != 0)
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{
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throw fnd::Exception(kModuleName, "Failed to verify ACID");
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}
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}
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