Switch to uint64x2_t for SPECK-128
parent
1de143203e
commit
cd31fa29dc
190
speck-simd.cpp
190
speck-simd.cpp
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@ -282,6 +282,10 @@ inline size_t SPECK64_AdvancedProcessBlocks_NEON(F1 func1, F4 func4,
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outIncrement = 0-outIncrement;
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// Hack... Disable parallel for decryption. It is buggy.
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// What needs to happen is, move pointer one more block size to get
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// a full 128-bit word, then swap N-bit words, and then swap the
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// Xor block if it is being used. Its a real kludge and it is
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// being side stepped at the moment.
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flags &= ~BlockTransformation::BT_AllowParallel;
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}
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@ -289,7 +293,7 @@ inline size_t SPECK64_AdvancedProcessBlocks_NEON(F1 func1, F4 func4,
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{
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while (length >= 4*blockSize)
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{
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uint32x4_t block0 = vld1q_u32(reinterpret_cast<const word32*>(inBlocks)), block1;
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uint32x4_t block0 = vreinterpretq_u32_u8(vld1q_u8(inBlocks)), block1;
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if (flags & BlockTransformation::BT_InBlockIsCounter)
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{
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const uint32x4_t be1 = vld1q_u32(s_one64);
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@ -300,7 +304,7 @@ inline size_t SPECK64_AdvancedProcessBlocks_NEON(F1 func1, F4 func4,
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else
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{
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inBlocks += 2*inIncrement;
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block1 = vld1q_u32(Ptr32(inBlocks));
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block1 = vreinterpretq_u32_u8(vld1q_u8(inBlocks));
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inBlocks += 2*inIncrement;
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}
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@ -308,9 +312,9 @@ inline size_t SPECK64_AdvancedProcessBlocks_NEON(F1 func1, F4 func4,
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{
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// Coverity finding, appears to be false positive. Assert the condition.
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CRYPTOPP_ASSERT(xorBlocks);
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block0 = veorq_u32(block0, vld1q_u32(Ptr32(xorBlocks)));
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block0 = veorq_u32(block0, vreinterpretq_u32_u8(vld1q_u8(xorBlocks)));
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xorBlocks += 2*xorIncrement;
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block1 = veorq_u32(block1, vld1q_u32(Ptr32(xorBlocks)));
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block1 = veorq_u32(block1, vreinterpretq_u32_u8(vld1q_u8(xorBlocks)));
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xorBlocks += 2*xorIncrement;
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}
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@ -318,9 +322,9 @@ inline size_t SPECK64_AdvancedProcessBlocks_NEON(F1 func1, F4 func4,
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if (xorBlocks && !(flags & BlockTransformation::BT_XorInput))
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{
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block0 = veorq_u32(block0, vld1q_u32(Ptr32(xorBlocks)));
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block0 = veorq_u32(block0, vreinterpretq_u32_u8(vld1q_u8(xorBlocks)));
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xorBlocks += 2*xorIncrement;
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block1 = veorq_u32(block1, vld1q_u32(Ptr32(xorBlocks)));
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block1 = veorq_u32(block1, vreinterpretq_u32_u8(vld1q_u8(xorBlocks)));
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xorBlocks += 2*xorIncrement;
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}
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@ -384,20 +388,20 @@ const word32 s_one128[] = {0, 0, 0, 1<<24}; // uint32x4_t
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const word32 s_one128[] = {0, 0, 0, 1}; // uint32x4_t
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#endif
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template <class W, class T>
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inline W UnpackHigh64(const T& a, const T& b)
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template <class T>
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inline T UnpackHigh64(const T& a, const T& b)
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{
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const uint64x1_t x(vget_high_u64((uint64x2_t)a));
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const uint64x1_t y(vget_high_u64((uint64x2_t)b));
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return (W)vcombine_u64(x, y);
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return (T)vcombine_u64(x, y);
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}
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template <class W, class T>
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inline W UnpackLow64(const T& a, const T& b)
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template <class T>
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inline T UnpackLow64(const T& a, const T& b)
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{
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const uint64x1_t x(vget_low_u64((uint64x2_t)a));
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const uint64x1_t y(vget_low_u64((uint64x2_t)b));
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return (W)vcombine_u64(x, y);
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return (T)vcombine_u64(x, y);
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}
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template <unsigned int R>
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@ -450,14 +454,14 @@ inline uint64x2_t Shuffle64(const uint64x2_t& val)
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#endif
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}
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inline void SPECK128_Enc_Block(uint8x16_t &block0, const word64 *subkeys, unsigned int rounds)
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inline void SPECK128_Enc_Block(uint64x2_t &block0, const word64 *subkeys, unsigned int rounds)
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{
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// Hack ahead... Rearrange the data for vectorization. It is easier to permute
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// the data in SPECK128_Enc_Blocks then SPECK128_AdvancedProcessBlocks_NEON.
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// The zero block below is a "don't care". It is present so we can vectorize.
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uint8x16_t block1 = {0};
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uint64x2_t x1 = UnpackLow64<uint64x2_t>(block0, block1);
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uint64x2_t y1 = UnpackHigh64<uint64x2_t>(block0, block1);
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uint64x2_t block1 = {0};
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uint64x2_t x1 = UnpackLow64(block0, block1);
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uint64x2_t y1 = UnpackHigh64(block0, block1);
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x1 = Shuffle64(x1);
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y1 = Shuffle64(y1);
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@ -476,22 +480,22 @@ inline void SPECK128_Enc_Block(uint8x16_t &block0, const word64 *subkeys, unsign
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x1 = Shuffle64(x1);
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y1 = Shuffle64(y1);
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block0 = UnpackLow64<uint8x16_t>(x1, y1);
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// block1 = UnpackHigh64<uint8x16_t>(x1, y1);
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block0 = UnpackLow64(x1, y1);
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// block1 = UnpackHigh64(x1, y1);
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}
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inline void SPECK128_Enc_6_Blocks(uint8x16_t &block0, uint8x16_t &block1,
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uint8x16_t &block2, uint8x16_t &block3, uint8x16_t &block4,
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uint8x16_t &block5, const word64 *subkeys, unsigned int rounds)
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inline void SPECK128_Enc_6_Blocks(uint64x2_t &block0, uint64x2_t &block1,
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uint64x2_t &block2, uint64x2_t &block3, uint64x2_t &block4,
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uint64x2_t &block5, const word64 *subkeys, unsigned int rounds)
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{
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// Hack ahead... Rearrange the data for vectorization. It is easier to permute
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// the data in SPECK128_Enc_Blocks then SPECK128_AdvancedProcessBlocks_NEON.
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uint64x2_t x1 = UnpackLow64<uint64x2_t>(block0, block1);
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uint64x2_t y1 = UnpackHigh64<uint64x2_t>(block0, block1);
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uint64x2_t x2 = UnpackLow64<uint64x2_t>(block2, block3);
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uint64x2_t y2 = UnpackHigh64<uint64x2_t>(block2, block3);
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uint64x2_t x3 = UnpackLow64<uint64x2_t>(block4, block5);
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uint64x2_t y3 = UnpackHigh64<uint64x2_t>(block4, block5);
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uint64x2_t x1 = UnpackLow64(block0, block1);
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uint64x2_t y1 = UnpackHigh64(block0, block1);
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uint64x2_t x2 = UnpackLow64(block2, block3);
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uint64x2_t y2 = UnpackHigh64(block2, block3);
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uint64x2_t x3 = UnpackLow64(block4, block5);
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uint64x2_t y3 = UnpackHigh64(block4, block5);
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x1 = Shuffle64(x1);
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y1 = Shuffle64(y1);
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@ -528,22 +532,22 @@ inline void SPECK128_Enc_6_Blocks(uint8x16_t &block0, uint8x16_t &block1,
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x3 = Shuffle64(x3);
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y3 = Shuffle64(y3);
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block0 = UnpackLow64<uint8x16_t>(x1, y1);
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block1 = UnpackHigh64<uint8x16_t>(x1, y1);
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block2 = UnpackLow64<uint8x16_t>(x2, y2);
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block3 = UnpackHigh64<uint8x16_t>(x2, y2);
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block4 = UnpackLow64<uint8x16_t>(x3, y3);
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block5 = UnpackHigh64<uint8x16_t>(x3, y3);
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block0 = UnpackLow64(x1, y1);
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block1 = UnpackHigh64(x1, y1);
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block2 = UnpackLow64(x2, y2);
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block3 = UnpackHigh64(x2, y2);
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block4 = UnpackLow64(x3, y3);
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block5 = UnpackHigh64(x3, y3);
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}
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inline void SPECK128_Dec_Block(uint8x16_t &block0, const word64 *subkeys, unsigned int rounds)
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inline void SPECK128_Dec_Block(uint64x2_t &block0, const word64 *subkeys, unsigned int rounds)
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{
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// Hack ahead... Rearrange the data for vectorization. It is easier to permute
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// the data in SPECK128_Dec_Blocks then SPECK128_AdvancedProcessBlocks_NEON.
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// The zero block below is a "don't care". It is present so we can vectorize.
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uint8x16_t block1 = {0};
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uint64x2_t x1 = UnpackLow64<uint64x2_t>(block0, block1);
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uint64x2_t y1 = UnpackHigh64<uint64x2_t>(block0, block1);
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uint64x2_t block1 = {0};
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uint64x2_t x1 = UnpackLow64(block0, block1);
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uint64x2_t y1 = UnpackHigh64(block0, block1);
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x1 = Shuffle64(x1);
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y1 = Shuffle64(y1);
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@ -562,22 +566,22 @@ inline void SPECK128_Dec_Block(uint8x16_t &block0, const word64 *subkeys, unsign
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x1 = Shuffle64(x1);
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y1 = Shuffle64(y1);
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block0 = UnpackLow64<uint8x16_t>(x1, y1);
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// block1 = UnpackHigh64<uint8x16_t>(x1, y1);
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block0 = UnpackLow64(x1, y1);
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// block1 = UnpackHigh64(x1, y1);
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}
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inline void SPECK128_Dec_6_Blocks(uint8x16_t &block0, uint8x16_t &block1,
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uint8x16_t &block2, uint8x16_t &block3, uint8x16_t &block4,
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uint8x16_t &block5, const word64 *subkeys, unsigned int rounds)
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inline void SPECK128_Dec_6_Blocks(uint64x2_t &block0, uint64x2_t &block1,
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uint64x2_t &block2, uint64x2_t &block3, uint64x2_t &block4,
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uint64x2_t &block5, const word64 *subkeys, unsigned int rounds)
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{
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// Hack ahead... Rearrange the data for vectorization. It is easier to permute
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// the data in SPECK128_Dec_Blocks then SPECK128_AdvancedProcessBlocks_NEON.
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uint64x2_t x1 = UnpackLow64<uint64x2_t>(block0, block1);
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uint64x2_t y1 = UnpackHigh64<uint64x2_t>(block0, block1);
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uint64x2_t x2 = UnpackLow64<uint64x2_t>(block2, block3);
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uint64x2_t y2 = UnpackHigh64<uint64x2_t>(block2, block3);
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uint64x2_t x3 = UnpackLow64<uint64x2_t>(block4, block5);
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uint64x2_t y3 = UnpackHigh64<uint64x2_t>(block4, block5);
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uint64x2_t x1 = UnpackLow64(block0, block1);
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uint64x2_t y1 = UnpackHigh64(block0, block1);
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uint64x2_t x2 = UnpackLow64(block2, block3);
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uint64x2_t y2 = UnpackHigh64(block2, block3);
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uint64x2_t x3 = UnpackLow64(block4, block5);
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uint64x2_t y3 = UnpackHigh64(block4, block5);
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x1 = Shuffle64(x1);
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y1 = Shuffle64(y1);
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@ -614,12 +618,12 @@ inline void SPECK128_Dec_6_Blocks(uint8x16_t &block0, uint8x16_t &block1,
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x3 = Shuffle64(x3);
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y3 = Shuffle64(y3);
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block0 = UnpackLow64<uint8x16_t>(x1, y1);
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block1 = UnpackHigh64<uint8x16_t>(x1, y1);
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block2 = UnpackLow64<uint8x16_t>(x2, y2);
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block3 = UnpackHigh64<uint8x16_t>(x2, y2);
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block4 = UnpackLow64<uint8x16_t>(x3, y3);
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block5 = UnpackHigh64<uint8x16_t>(x3, y3);
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block0 = UnpackLow64(x1, y1);
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block1 = UnpackHigh64(x1, y1);
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block2 = UnpackLow64(x2, y2);
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block3 = UnpackHigh64(x2, y2);
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block4 = UnpackLow64(x3, y3);
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block5 = UnpackHigh64(x3, y3);
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}
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template <typename F1, typename F6>
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@ -651,40 +655,40 @@ size_t SPECK128_AdvancedProcessBlocks_NEON(F1 func1, F6 func6,
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{
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while (length >= 6*blockSize)
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{
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uint8x16_t block0, block1, block2, block3, block4, block5, temp;
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block0 = vld1q_u8(inBlocks);
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uint64x2_t block0, block1, block2, block3, block4, block5;
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block0 = vreinterpretq_u64_u8(vld1q_u8(inBlocks));
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if (flags & BlockTransformation::BT_InBlockIsCounter)
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{
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uint32x4_t be = vld1q_u32(s_one128);
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block1 = (uint8x16_t)vaddq_u32(vreinterpretq_u32_u8(block0), be);
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block2 = (uint8x16_t)vaddq_u32(vreinterpretq_u32_u8(block1), be);
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block3 = (uint8x16_t)vaddq_u32(vreinterpretq_u32_u8(block2), be);
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block4 = (uint8x16_t)vaddq_u32(vreinterpretq_u32_u8(block3), be);
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block5 = (uint8x16_t)vaddq_u32(vreinterpretq_u32_u8(block4), be);
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temp = (uint8x16_t)vaddq_u32(vreinterpretq_u32_u8(block5), be);
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vst1q_u8(const_cast<byte*>(inBlocks), temp);
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uint64x2_t be = vreinterpretq_u64_u32(vld1q_u32(s_one128));
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block1 = vaddq_u64(block0, be);
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block2 = vaddq_u64(block1, be);
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block3 = vaddq_u64(block2, be);
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block4 = vaddq_u64(block3, be);
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block5 = vaddq_u64(block4, be);
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vst1q_u8(const_cast<byte*>(inBlocks),
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vreinterpretq_u8_u64(vaddq_u64(block5, be)));
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}
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else
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{
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const int inc = static_cast<int>(inIncrement);
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block1 = vld1q_u8(inBlocks+1*inc);
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block2 = vld1q_u8(inBlocks+2*inc);
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block3 = vld1q_u8(inBlocks+3*inc);
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block4 = vld1q_u8(inBlocks+4*inc);
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block5 = vld1q_u8(inBlocks+5*inc);
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block1 = vreinterpretq_u64_u8(vld1q_u8(inBlocks+1*inc));
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block2 = vreinterpretq_u64_u8(vld1q_u8(inBlocks+2*inc));
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block3 = vreinterpretq_u64_u8(vld1q_u8(inBlocks+3*inc));
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block4 = vreinterpretq_u64_u8(vld1q_u8(inBlocks+4*inc));
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block5 = vreinterpretq_u64_u8(vld1q_u8(inBlocks+5*inc));
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inBlocks += 6*inc;
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}
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if (flags & BlockTransformation::BT_XorInput)
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{
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const int inc = static_cast<int>(xorIncrement);
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block0 = veorq_u8(block0, vld1q_u8(xorBlocks+0*inc));
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block1 = veorq_u8(block1, vld1q_u8(xorBlocks+1*inc));
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block2 = veorq_u8(block2, vld1q_u8(xorBlocks+2*inc));
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block3 = veorq_u8(block3, vld1q_u8(xorBlocks+3*inc));
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block4 = veorq_u8(block4, vld1q_u8(xorBlocks+4*inc));
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block5 = veorq_u8(block5, vld1q_u8(xorBlocks+5*inc));
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block0 = veorq_u64(block0, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+0*inc)));
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block1 = veorq_u64(block1, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+1*inc)));
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block2 = veorq_u64(block2, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+2*inc)));
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block3 = veorq_u64(block3, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+3*inc)));
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block4 = veorq_u64(block4, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+4*inc)));
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block5 = veorq_u64(block5, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+5*inc)));
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xorBlocks += 6*inc;
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}
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@ -693,22 +697,22 @@ size_t SPECK128_AdvancedProcessBlocks_NEON(F1 func1, F6 func6,
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if (xorBlocks && !(flags & BlockTransformation::BT_XorInput))
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{
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const int inc = static_cast<int>(xorIncrement);
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block0 = veorq_u8(block0, vld1q_u8(xorBlocks+0*inc));
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block1 = veorq_u8(block1, vld1q_u8(xorBlocks+1*inc));
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block2 = veorq_u8(block2, vld1q_u8(xorBlocks+2*inc));
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block3 = veorq_u8(block3, vld1q_u8(xorBlocks+3*inc));
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block4 = veorq_u8(block4, vld1q_u8(xorBlocks+4*inc));
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block5 = veorq_u8(block5, vld1q_u8(xorBlocks+5*inc));
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block0 = veorq_u64(block0, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+0*inc)));
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block1 = veorq_u64(block1, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+1*inc)));
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block2 = veorq_u64(block2, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+2*inc)));
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block3 = veorq_u64(block3, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+3*inc)));
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block4 = veorq_u64(block4, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+4*inc)));
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block5 = veorq_u64(block5, vreinterpretq_u64_u8(vld1q_u8(xorBlocks+5*inc)));
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xorBlocks += 6*inc;
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}
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const int inc = static_cast<int>(outIncrement);
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vst1q_u8(outBlocks+0*inc, block0);
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vst1q_u8(outBlocks+1*inc, block1);
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vst1q_u8(outBlocks+2*inc, block2);
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vst1q_u8(outBlocks+3*inc, block3);
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vst1q_u8(outBlocks+4*inc, block4);
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vst1q_u8(outBlocks+5*inc, block5);
|
||||
vst1q_u8(outBlocks+0*inc, vreinterpretq_u8_u64(block0));
|
||||
vst1q_u8(outBlocks+1*inc, vreinterpretq_u8_u64(block1));
|
||||
vst1q_u8(outBlocks+2*inc, vreinterpretq_u8_u64(block2));
|
||||
vst1q_u8(outBlocks+3*inc, vreinterpretq_u8_u64(block3));
|
||||
vst1q_u8(outBlocks+4*inc, vreinterpretq_u8_u64(block4));
|
||||
vst1q_u8(outBlocks+5*inc, vreinterpretq_u8_u64(block5));
|
||||
|
||||
outBlocks += 6*inc;
|
||||
length -= 6*blockSize;
|
||||
|
|
@ -717,10 +721,10 @@ size_t SPECK128_AdvancedProcessBlocks_NEON(F1 func1, F6 func6,
|
|||
|
||||
while (length >= blockSize)
|
||||
{
|
||||
uint8x16_t block = vld1q_u8(inBlocks);
|
||||
uint64x2_t block = vreinterpretq_u64_u8(vld1q_u8(inBlocks));
|
||||
|
||||
if (flags & BlockTransformation::BT_XorInput)
|
||||
block = veorq_u8(block, vld1q_u8(xorBlocks));
|
||||
block = veorq_u64(block, vreinterpretq_u64_u8(vld1q_u8(xorBlocks)));
|
||||
|
||||
if (flags & BlockTransformation::BT_InBlockIsCounter)
|
||||
const_cast<byte *>(inBlocks)[15]++;
|
||||
|
|
@ -728,9 +732,9 @@ size_t SPECK128_AdvancedProcessBlocks_NEON(F1 func1, F6 func6,
|
|||
func1(block, subKeys, rounds);
|
||||
|
||||
if (xorBlocks && !(flags & BlockTransformation::BT_XorInput))
|
||||
block = veorq_u8(block, vld1q_u8(xorBlocks));
|
||||
block = veorq_u64(block, vreinterpretq_u64_u8(vld1q_u8(xorBlocks)));
|
||||
|
||||
vst1q_u8(outBlocks, block);
|
||||
vst1q_u8(outBlocks, vreinterpretq_u8_u64(block));
|
||||
|
||||
inBlocks += inIncrement;
|
||||
outBlocks += outIncrement;
|
||||
|
|
@ -1269,6 +1273,10 @@ inline size_t SPECK64_AdvancedProcessBlocks_SSE41(F1 func1, F4 func4,
|
|||
outIncrement = 0-outIncrement;
|
||||
|
||||
// Hack... Disable parallel for decryption. It is buggy.
|
||||
// What needs to happen is, move pointer one more block size to get
|
||||
// a full 128-bit word, then swap N-bit words, and then swap the
|
||||
// Xor block if it is being used. Its a real kludge and it is
|
||||
// being side stepped at the moment.
|
||||
flags &= ~BlockTransformation::BT_AllowParallel;
|
||||
}
|
||||
|
||||
|
|
|
|||
Loading…
Reference in New Issue