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Improve Lotus Notes/Domino 6 performance
This commit is contained in:
parent
911c8ae1db
commit
dfc9a5ff61
@ -82,9 +82,6 @@ void lotus_mix (u32x *in, __local u32 *s_lotus_magic_table)
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{
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u32 s = 48;
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#ifdef _unroll
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#pragma unroll
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#endif
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for (int j = 0; j < 12; j++)
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{
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u32x tmp_in = in[j];
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@ -118,20 +115,20 @@ void lotus_transform_password (u32x in[4], u32x out[4], __local u32 *s_lotus_mag
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}
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}
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void pad (u32x w[4], const u32 len)
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void pad (u32 w[4], const u32 len)
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{
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const u32 val = 16 - len;
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const u32x mask1 = val << 24;
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const u32 mask1 = val << 24;
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const u32x mask2 = val << 16
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const u32 mask2 = val << 16
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| val << 24;
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const u32x mask3 = val << 8
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const u32 mask3 = val << 8
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| val << 16
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| val << 24;
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const u32x mask4 = val << 0
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const u32 mask4 = val << 0
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| val << 8
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| val << 16
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| val << 24;
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@ -229,7 +226,7 @@ void mdtransform (u32x state[4], u32x checksum[4], u32x block[4], __local u32 *s
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lotus_transform_password (block, checksum, s_lotus_magic_table);
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}
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void domino_big_md (const u32x saved_key[16], const u32x size, u32x state[4], __local u32 *s_lotus_magic_table)
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void domino_big_md (const u32x saved_key[16], const u32 size, u32x state[4], __local u32 *s_lotus_magic_table)
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{
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u32x checksum[4];
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@ -240,10 +237,28 @@ void domino_big_md (const u32x saved_key[16], const u32x size, u32x state[4], __
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u32x block[4];
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block[0] = saved_key[0];
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block[1] = saved_key[1];
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block[2] = saved_key[2];
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block[3] = saved_key[3];
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block[0] = 0;
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block[1] = 0;
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block[2] = 0;
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block[3] = 0;
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u32 curpos;
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u32 idx;
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for (curpos = 0, idx = 0; curpos + 16 < size; curpos += 16, idx += 4)
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{
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block[0] = saved_key[idx + 0];
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block[1] = saved_key[idx + 1];
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block[2] = saved_key[idx + 2];
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block[3] = saved_key[idx + 3];
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mdtransform (state, checksum, block, s_lotus_magic_table);
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}
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block[0] = saved_key[idx + 0];
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block[1] = saved_key[idx + 1];
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block[2] = saved_key[idx + 2];
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block[3] = saved_key[idx + 3];
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mdtransform (state, checksum, block, s_lotus_magic_table);
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@ -79,9 +79,6 @@ void lotus_mix (u32x *in, __local u32 *s_lotus_magic_table)
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{
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u32 s = 48;
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#ifdef _unroll
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#pragma unroll
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#endif
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for (int j = 0; j < 12; j++)
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{
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u32x tmp_in = in[j];
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@ -115,20 +112,20 @@ void lotus_transform_password (u32x in[4], u32x out[4], __local u32 *s_lotus_mag
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}
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}
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void pad (u32x w[4], const u32 len)
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void pad (u32 w[4], const u32 len)
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{
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const u32 val = 16 - len;
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const u32x mask1 = val << 24;
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const u32 mask1 = val << 24;
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const u32x mask2 = val << 16
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const u32 mask2 = val << 16
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| val << 24;
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const u32x mask3 = val << 8
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const u32 mask3 = val << 8
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| val << 16
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| val << 24;
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const u32x mask4 = val << 0
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const u32 mask4 = val << 0
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| val << 8
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| val << 16
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| val << 24;
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@ -226,7 +223,7 @@ void mdtransform (u32x state[4], u32x checksum[4], u32x block[4], __local u32 *s
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lotus_transform_password (block, checksum, s_lotus_magic_table);
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}
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void domino_big_md (const u32x saved_key[16], const u32x size, u32x state[4], __local u32 *s_lotus_magic_table)
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void domino_big_md (const u32x saved_key[16], const u32 size, u32x state[4], __local u32 *s_lotus_magic_table)
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{
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u32x checksum[4];
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@ -237,10 +234,28 @@ void domino_big_md (const u32x saved_key[16], const u32x size, u32x state[4], __
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u32x block[4];
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block[0] = saved_key[0];
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block[1] = saved_key[1];
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block[2] = saved_key[2];
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block[3] = saved_key[3];
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block[0] = 0;
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block[1] = 0;
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block[2] = 0;
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block[3] = 0;
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u32 curpos;
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u32 idx;
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for (curpos = 0, idx = 0; curpos + 16 < size; curpos += 16, idx += 4)
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{
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block[0] = saved_key[idx + 0];
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block[1] = saved_key[idx + 1];
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block[2] = saved_key[idx + 2];
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block[3] = saved_key[idx + 3];
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mdtransform (state, checksum, block, s_lotus_magic_table);
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}
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block[0] = saved_key[idx + 0];
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block[1] = saved_key[idx + 1];
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block[2] = saved_key[idx + 2];
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block[3] = saved_key[idx + 3];
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mdtransform (state, checksum, block, s_lotus_magic_table);
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@ -79,9 +79,6 @@ void lotus_mix (u32x *in, __local u32 *s_lotus_magic_table)
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{
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u32 s = 48;
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#ifdef _unroll
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#pragma unroll
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#endif
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for (int j = 0; j < 12; j++)
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{
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u32x tmp_in = in[j];
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@ -226,7 +223,7 @@ void mdtransform (u32x state[4], u32x checksum[4], u32x block[4], __local u32 *s
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lotus_transform_password (block, checksum, s_lotus_magic_table);
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}
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void domino_big_md (const u32x saved_key[16], const u32x size, u32x state[4], __local u32 *s_lotus_magic_table)
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void domino_big_md (const u32x saved_key[16], const u32 size, u32x state[4], __local u32 *s_lotus_magic_table)
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{
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u32x checksum[4];
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@ -237,10 +234,28 @@ void domino_big_md (const u32x saved_key[16], const u32x size, u32x state[4], __
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u32x block[4];
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block[0] = saved_key[0];
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block[1] = saved_key[1];
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block[2] = saved_key[2];
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block[3] = saved_key[3];
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block[0] = 0;
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block[1] = 0;
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block[2] = 0;
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block[3] = 0;
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u32 curpos;
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u32 idx;
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for (curpos = 0, idx = 0; curpos + 16 < size; curpos += 16, idx += 4)
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{
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block[0] = saved_key[idx + 0];
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block[1] = saved_key[idx + 1];
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block[2] = saved_key[idx + 2];
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block[3] = saved_key[idx + 3];
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mdtransform (state, checksum, block, s_lotus_magic_table);
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}
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block[0] = saved_key[idx + 0];
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block[1] = saved_key[idx + 1];
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block[2] = saved_key[idx + 2];
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block[3] = saved_key[idx + 3];
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mdtransform (state, checksum, block, s_lotus_magic_table);
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@ -94,9 +94,6 @@ void lotus_mix (u32x *in, __local u32 *s_lotus_magic_table)
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{
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u32 s = 48;
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#ifdef _unroll
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#pragma unroll
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#endif
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for (int j = 0; j < 12; j++)
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{
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u32x tmp_in = in[j];
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@ -130,20 +127,20 @@ void lotus_transform_password (u32x in[4], u32x out[4], __local u32 *s_lotus_mag
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}
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}
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void pad (u32x w[4], const u32 len)
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void pad (u32 w[4], const u32 len)
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{
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const u32 val = 16 - len;
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const u32x mask1 = val << 24;
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const u32 mask1 = val << 24;
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const u32x mask2 = val << 16
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const u32 mask2 = val << 16
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| val << 24;
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const u32x mask3 = val << 8
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const u32 mask3 = val << 8
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| val << 16
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| val << 24;
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const u32x mask4 = val << 0
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const u32 mask4 = val << 0
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| val << 8
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| val << 16
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| val << 24;
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@ -91,9 +91,6 @@ void lotus_mix (u32x *in, __local u32 *s_lotus_magic_table)
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{
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u32 s = 48;
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#ifdef _unroll
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#pragma unroll
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#endif
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for (int j = 0; j < 12; j++)
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{
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u32x tmp_in = in[j];
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@ -127,20 +124,20 @@ void lotus_transform_password (u32x in[4], u32x out[4], __local u32 *s_lotus_mag
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}
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}
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void pad (u32x w[4], const u32 len)
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void pad (u32 w[4], const u32 len)
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{
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const u32 val = 16 - len;
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const u32x mask1 = val << 24;
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const u32 mask1 = val << 24;
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const u32x mask2 = val << 16
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const u32 mask2 = val << 16
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| val << 24;
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const u32x mask3 = val << 8
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const u32 mask3 = val << 8
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| val << 16
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| val << 24;
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const u32x mask4 = val << 0
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const u32 mask4 = val << 0
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| val << 8
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| val << 16
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| val << 24;
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@ -93,9 +93,6 @@ void lotus_mix (u32x *in, __local u32 *s_lotus_magic_table)
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{
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u32 s = 48;
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#ifdef _unroll
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#pragma unroll
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#endif
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for (int j = 0; j < 12; j++)
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{
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u32x tmp_in = in[j];
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@ -27,6 +27,8 @@
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__constant char lotus64_table[] = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz+/";
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#define uint_to_hex_upper8(i) l_bin2asc[(i)]
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__constant u32 lotus_magic_table[256] =
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{
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0xbd, 0x56, 0xea, 0xf2, 0xa2, 0xf1, 0xac, 0x2a,
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@ -63,51 +65,56 @@ __constant u32 lotus_magic_table[256] =
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0x29, 0x39, 0xb9, 0xe9, 0x4c, 0xff, 0x43, 0xab,
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};
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#define BOX(S,i) (S)[(i)]
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#if VECT_SIZE == 1
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#define BOX1(S,i) (S)[(i)]
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#elif VECT_SIZE == 2
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#define BOX1(S,i) (u32x) ((S)[(i).s0], (S)[(i).s1])
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#elif VECT_SIZE == 4
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#define BOX1(S,i) (u32x) ((S)[(i).s0], (S)[(i).s1], (S)[(i).s2], (S)[(i).s3])
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#elif VECT_SIZE == 8
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#define BOX1(S,i) (u32x) ((S)[(i).s0], (S)[(i).s1], (S)[(i).s2], (S)[(i).s3], (S)[(i).s4], (S)[(i).s5], (S)[(i).s6], (S)[(i).s7])
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#elif VECT_SIZE == 16
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#define BOX1(S,i) (u32x) ((S)[(i).s0], (S)[(i).s1], (S)[(i).s2], (S)[(i).s3], (S)[(i).s4], (S)[(i).s5], (S)[(i).s6], (S)[(i).s7], (S)[(i).s8], (S)[(i).s9], (S)[(i).sa], (S)[(i).sb], (S)[(i).sc], (S)[(i).sd], (S)[(i).se], (S)[(i).sf])
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#endif
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#define uint_to_hex_upper8(i) l_bin2asc[(i)]
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void lotus_mix (u32 *in, __local u32 *s_lotus_magic_table)
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void lotus_mix (u32x *in, __local u32 *s_lotus_magic_table)
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{
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u32 p = 0;
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u32x p = 0;
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for (int i = 0; i < 18; i++)
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{
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u32 s = 48;
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#ifdef _unroll
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#pragma unroll
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#endif
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for (int j = 0; j < 12; j++)
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{
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u32 tmp_in = in[j];
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u32 tmp_out = 0;
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u32x tmp_in = in[j];
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u32x tmp_out = 0;
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p = (p + s--) & 0xff; p = ((tmp_in >> 0) & 0xff) ^ BOX (s_lotus_magic_table, p); tmp_out |= p << 0;
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p = (p + s--) & 0xff; p = ((tmp_in >> 8) & 0xff) ^ BOX (s_lotus_magic_table, p); tmp_out |= p << 8;
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p = (p + s--) & 0xff; p = ((tmp_in >> 16) & 0xff) ^ BOX (s_lotus_magic_table, p); tmp_out |= p << 16;
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p = (p + s--) & 0xff; p = ((tmp_in >> 24) & 0xff) ^ BOX (s_lotus_magic_table, p); tmp_out |= p << 24;
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p = (p + s--) & 0xff; p = ((tmp_in >> 0) & 0xff) ^ BOX1 (s_lotus_magic_table, p); tmp_out |= p << 0;
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p = (p + s--) & 0xff; p = ((tmp_in >> 8) & 0xff) ^ BOX1 (s_lotus_magic_table, p); tmp_out |= p << 8;
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p = (p + s--) & 0xff; p = ((tmp_in >> 16) & 0xff) ^ BOX1 (s_lotus_magic_table, p); tmp_out |= p << 16;
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p = (p + s--) & 0xff; p = ((tmp_in >> 24) & 0xff) ^ BOX1 (s_lotus_magic_table, p); tmp_out |= p << 24;
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in[j] = tmp_out;
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}
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}
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}
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void lotus_transform_password (u32 in[4], u32 out[4], __local u32 *s_lotus_magic_table)
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void lotus_transform_password (u32x in[4], u32x out[4], __local u32 *s_lotus_magic_table)
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{
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u32 t = out[3] >> 24;
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u32x t = out[3] >> 24;
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u32 c;
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u32x c;
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#ifdef _unroll
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#pragma unroll
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#endif
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for (int i = 0; i < 4; i++)
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{
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t ^= (in[i] >> 0) & 0xff; c = BOX (s_lotus_magic_table, t); out[i] ^= c << 0; t = ((out[i] >> 0) & 0xff);
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t ^= (in[i] >> 8) & 0xff; c = BOX (s_lotus_magic_table, t); out[i] ^= c << 8; t = ((out[i] >> 8) & 0xff);
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t ^= (in[i] >> 16) & 0xff; c = BOX (s_lotus_magic_table, t); out[i] ^= c << 16; t = ((out[i] >> 16) & 0xff);
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t ^= (in[i] >> 24) & 0xff; c = BOX (s_lotus_magic_table, t); out[i] ^= c << 24; t = ((out[i] >> 24) & 0xff);
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t ^= (in[i] >> 0) & 0xff; c = BOX1 (s_lotus_magic_table, t); out[i] ^= c << 0; t = ((out[i] >> 0) & 0xff);
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t ^= (in[i] >> 8) & 0xff; c = BOX1 (s_lotus_magic_table, t); out[i] ^= c << 8; t = ((out[i] >> 8) & 0xff);
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t ^= (in[i] >> 16) & 0xff; c = BOX1 (s_lotus_magic_table, t); out[i] ^= c << 16; t = ((out[i] >> 16) & 0xff);
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t ^= (in[i] >> 24) & 0xff; c = BOX1 (s_lotus_magic_table, t); out[i] ^= c << 24; t = ((out[i] >> 24) & 0xff);
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}
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}
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@ -190,9 +197,9 @@ void pad (u32 w[4], const u32 len)
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}
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}
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void mdtransform_norecalc (u32 state[4], u32 block[4], __local u32 *s_lotus_magic_table)
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void mdtransform_norecalc (u32x state[4], u32x block[4], __local u32 *s_lotus_magic_table)
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{
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u32 x[12];
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u32x x[12];
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x[ 0] = state[0];
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x[ 1] = state[1];
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@ -215,23 +222,23 @@ void mdtransform_norecalc (u32 state[4], u32 block[4], __local u32 *s_lotus_magi
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state[3] = x[3];
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}
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void mdtransform (u32 state[4], u32 checksum[4], u32 block[4], __local u32 *s_lotus_magic_table)
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void mdtransform (u32x state[4], u32x checksum[4], u32x block[4], __local u32 *s_lotus_magic_table)
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{
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mdtransform_norecalc (state, block, s_lotus_magic_table);
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lotus_transform_password (block, checksum, s_lotus_magic_table);
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}
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void domino_big_md (const u32 saved_key[16], const u32 size, u32 state[4], __local u32 *s_lotus_magic_table)
|
||||
void domino_big_md (const u32x saved_key[16], const u32 size, u32x state[4], __local u32 *s_lotus_magic_table)
|
||||
{
|
||||
u32 checksum[4];
|
||||
u32x checksum[4];
|
||||
|
||||
checksum[0] = 0;
|
||||
checksum[1] = 0;
|
||||
checksum[2] = 0;
|
||||
checksum[3] = 0;
|
||||
|
||||
u32 block[4];
|
||||
u32x block[4];
|
||||
|
||||
block[0] = 0;
|
||||
block[1] = 0;
|
||||
@ -251,8 +258,6 @@ void domino_big_md (const u32 saved_key[16], const u32 size, u32 state[4], __loc
|
||||
mdtransform (state, checksum, block, s_lotus_magic_table);
|
||||
}
|
||||
|
||||
u32 left = size - curpos;
|
||||
|
||||
block[0] = saved_key[idx + 0];
|
||||
block[1] = saved_key[idx + 1];
|
||||
block[2] = saved_key[idx + 2];
|
||||
|
Loading…
Reference in New Issue
Block a user