提交 502aef5a 编写于 作者: A Andy Polyakov

Eliminate redundant variable in Camellia CBC routine.

上级 9f8cfb1c
......@@ -67,9 +67,9 @@ void Camellia_cbc_encrypt(const unsigned char *in, unsigned char *out,
unsigned long n;
unsigned long len = length;
unsigned char tmp[CAMELLIA_BLOCK_SIZE];
const unsigned char *iv = ivec;
u32 t32[CAMELLIA_BLOCK_SIZE/sizeof(u32)];
union { u32 t32[CAMELLIA_BLOCK_SIZE/sizeof(u32)];
u8 t8 [CAMELLIA_BLOCK_SIZE]; } tmp;
const union { long one; char little; } camellia_endian = {1};
......@@ -127,14 +127,14 @@ void Camellia_cbc_encrypt(const unsigned char *in, unsigned char *out,
}
if (len)
{
memcpy(tmp, in, CAMELLIA_BLOCK_SIZE);
memcpy(tmp.t8, in, CAMELLIA_BLOCK_SIZE);
if (camellia_endian.little)
SWAP4WORD((u32 *)tmp);
key->dec(key->rd_key, (u32 *)tmp);
SWAP4WORD(tmp.t32);
key->dec(key->rd_key, tmp.t32);
if (camellia_endian.little)
SWAP4WORD((u32 *)tmp);
SWAP4WORD(tmp.t32);
for(n=0; n < len; ++n)
out[n] = tmp[n] ^ iv[n];
out[n] = tmp.t8[n] ^ iv[n];
iv = in;
}
memcpy(ivec,iv,CAMELLIA_BLOCK_SIZE);
......@@ -143,21 +143,21 @@ void Camellia_cbc_encrypt(const unsigned char *in, unsigned char *out,
{
while (len >= CAMELLIA_BLOCK_SIZE)
{
memcpy(tmp, in, CAMELLIA_BLOCK_SIZE);
memcpy(tmp.t8, in, CAMELLIA_BLOCK_SIZE);
if (camellia_endian.little)
SWAP4WORD((u32 *)out);
key->dec(key->rd_key, (u32 *)out);
if (camellia_endian.little)
SWAP4WORD((u32 *)out);
XOR4WORD((u32 *)out, (u32 *)ivec);
memcpy(ivec, tmp, CAMELLIA_BLOCK_SIZE);
memcpy(ivec, tmp.t8, CAMELLIA_BLOCK_SIZE);
len -= CAMELLIA_BLOCK_SIZE;
in += CAMELLIA_BLOCK_SIZE;
out += CAMELLIA_BLOCK_SIZE;
}
if (len)
{
memcpy(tmp, in, CAMELLIA_BLOCK_SIZE);
memcpy(tmp.t8, in, CAMELLIA_BLOCK_SIZE);
if (camellia_endian.little)
SWAP4WORD((u32 *)out);
key->dec(key->rd_key,(u32 *)out);
......@@ -166,8 +166,8 @@ void Camellia_cbc_encrypt(const unsigned char *in, unsigned char *out,
for(n=0; n < len; ++n)
out[n] ^= ivec[n];
for(n=len; n < CAMELLIA_BLOCK_SIZE; ++n)
out[n] = tmp[n];
memcpy(ivec, tmp, CAMELLIA_BLOCK_SIZE);
out[n] = tmp.t8[n];
memcpy(ivec, tmp.t8, CAMELLIA_BLOCK_SIZE);
}
}
}
......@@ -178,14 +178,13 @@ void Camellia_cbc_encrypt(const unsigned char *in, unsigned char *out,
while (len >= CAMELLIA_BLOCK_SIZE)
{
for(n=0; n < CAMELLIA_BLOCK_SIZE; ++n)
out[n] = in[n] ^ iv[n];
memcpy(t32, out, CAMELLIA_BLOCK_SIZE);
tmp.t8[n] = in[n] ^ iv[n];
if (camellia_endian.little)
SWAP4WORD(t32);
key->enc(key->rd_key, t32);
SWAP4WORD(tmp.t32);
key->enc(key->rd_key, tmp.t32);
if (camellia_endian.little)
SWAP4WORD(t32);
memcpy(out, t32, CAMELLIA_BLOCK_SIZE);
SWAP4WORD(tmp.t32);
memcpy(out, tmp.t8, CAMELLIA_BLOCK_SIZE);
iv = out;
len -= CAMELLIA_BLOCK_SIZE;
in += CAMELLIA_BLOCK_SIZE;
......@@ -194,16 +193,15 @@ void Camellia_cbc_encrypt(const unsigned char *in, unsigned char *out,
if (len)
{
for(n=0; n < len; ++n)
out[n] = in[n] ^ iv[n];
tmp.t8[n] = in[n] ^ iv[n];
for(n=len; n < CAMELLIA_BLOCK_SIZE; ++n)
out[n] = iv[n];
memcpy(t32, out, CAMELLIA_BLOCK_SIZE);
tmp.t8[n] = iv[n];
if (camellia_endian.little)
SWAP4WORD(t32);
key->enc(key->rd_key, t32);
SWAP4WORD(tmp.t32);
key->enc(key->rd_key, tmp.t32);
if (camellia_endian.little)
SWAP4WORD(t32);
memcpy(out, t32, CAMELLIA_BLOCK_SIZE);
SWAP4WORD(tmp.t32);
memcpy(out, tmp.t8, CAMELLIA_BLOCK_SIZE);
iv = out;
}
memcpy(ivec,iv,CAMELLIA_BLOCK_SIZE);
......@@ -212,15 +210,14 @@ void Camellia_cbc_encrypt(const unsigned char *in, unsigned char *out,
{
while (len >= CAMELLIA_BLOCK_SIZE)
{
memcpy(t32,in,CAMELLIA_BLOCK_SIZE);
memcpy(tmp.t8,in,CAMELLIA_BLOCK_SIZE);
if (camellia_endian.little)
SWAP4WORD(t32);
key->dec(key->rd_key,t32);
SWAP4WORD(tmp.t32);
key->dec(key->rd_key,tmp.t32);
if (camellia_endian.little)
SWAP4WORD(t32);
memcpy(out,t32,CAMELLIA_BLOCK_SIZE);
SWAP4WORD(tmp.t32);
for(n=0; n < CAMELLIA_BLOCK_SIZE; ++n)
out[n] ^= iv[n];
out[n] = tmp.t8[n] ^ iv[n];
iv = in;
len -= CAMELLIA_BLOCK_SIZE;
in += CAMELLIA_BLOCK_SIZE;
......@@ -228,15 +225,14 @@ void Camellia_cbc_encrypt(const unsigned char *in, unsigned char *out,
}
if (len)
{
memcpy(t32, in, CAMELLIA_BLOCK_SIZE);
memcpy(tmp.t8, in, CAMELLIA_BLOCK_SIZE);
if (camellia_endian.little)
SWAP4WORD(t32);
key->dec(key->rd_key, t32);
SWAP4WORD(tmp.t32);
key->dec(key->rd_key, tmp.t32);
if (camellia_endian.little)
SWAP4WORD(t32);
memcpy(out, t32, CAMELLIA_BLOCK_SIZE);
SWAP4WORD(tmp.t32);
for(n=0; n < len; ++n)
out[n] ^= iv[n];
out[n] = tmp.t8[n] ^ iv[n];
iv = in;
}
memcpy(ivec,iv,CAMELLIA_BLOCK_SIZE);
......@@ -245,36 +241,32 @@ void Camellia_cbc_encrypt(const unsigned char *in, unsigned char *out,
{
while (len >= CAMELLIA_BLOCK_SIZE)
{
memcpy(tmp, in, CAMELLIA_BLOCK_SIZE);
memcpy(t32, in, CAMELLIA_BLOCK_SIZE);
memcpy(tmp.t8, in, CAMELLIA_BLOCK_SIZE);
if (camellia_endian.little)
SWAP4WORD(t32);
key->dec(key->rd_key, t32);
SWAP4WORD(tmp.t32);
key->dec(key->rd_key, tmp.t32);
if (camellia_endian.little)
SWAP4WORD(t32);
memcpy(out, t32, CAMELLIA_BLOCK_SIZE);
SWAP4WORD(tmp.t32);
for(n=0; n < CAMELLIA_BLOCK_SIZE; ++n)
out[n] ^= ivec[n];
memcpy(ivec, tmp, CAMELLIA_BLOCK_SIZE);
tmp.t8[n] ^= ivec[n];
memcpy(ivec, in, CAMELLIA_BLOCK_SIZE);
memcpy(out, tmp.t8, CAMELLIA_BLOCK_SIZE);
len -= CAMELLIA_BLOCK_SIZE;
in += CAMELLIA_BLOCK_SIZE;
out += CAMELLIA_BLOCK_SIZE;
}
if (len)
{
memcpy(tmp, in, CAMELLIA_BLOCK_SIZE);
memcpy(t32, in, CAMELLIA_BLOCK_SIZE);
memcpy(tmp.t8, in, CAMELLIA_BLOCK_SIZE);
if (camellia_endian.little)
SWAP4WORD(t32);
key->dec(key->rd_key,t32);
SWAP4WORD(tmp.t32);
key->dec(key->rd_key,tmp.t32);
if (camellia_endian.little)
SWAP4WORD(t32);
memcpy(out, t32, CAMELLIA_BLOCK_SIZE);
SWAP4WORD(tmp.t32);
for(n=0; n < len; ++n)
out[n] ^= ivec[n];
for(n=len; n < CAMELLIA_BLOCK_SIZE; ++n)
out[n] = tmp[n];
memcpy(ivec, tmp, CAMELLIA_BLOCK_SIZE);
tmp.t8[n] ^= ivec[n];
memcpy(ivec, in, CAMELLIA_BLOCK_SIZE);
memcpy(out,tmp.t8,len);
}
}
}
......
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