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3a0d900a99
* crypt/Makefile: Move test targets after toplevel Rules inclusion. Grab any necessary sysdep routines when linking. * crypt/md5.c (md5_process_block): Remove define, we will always name it __md5_process_block. (md5_finish_ctx): Update md5_process_block call. (md5_stream): Likewise. (md5_process_bytes): Likewise. (md5_process_block): Rename to __md5_process_block and move to ... * crypt/md5-block.c: ... here. * crypt/sha256.c (sha256_process_block): Move to ... * crypt/sha256-block.c: ... here. * crypt/sha512.c (sha512_process_block): Move to ... * crypt/sha512-block.c: ... here. * locale/Makefile (CFLAGS-md5.c): Define to add crypt/ to include path. * sysdeps/sparc/sparc-ifunc.c (sparc_libc_ifunc): Define. * sysdeps/sparc/sparc64/multiarch/Makefile (libcrypt-sysdep_routines): Add crypto assembler sysdeps when in crypt subdir. (localedef-aux): Add md5 crypto assembler when in locale subdir. * sysdeps/sparc/sparc32/sparcv9/multiarch/Makefile: Mirror sparc64 multiarch changes. * sysdeps/sparc/sparc64/multiarch/md5-block.c: New file. * sysdeps/sparc/sparc64/multiarch/md5-crop.S: New file. * sysdeps/sparc/sparc64/multiarch/sha256-block.c: New file. * sysdeps/sparc/sparc64/multiarch/sha256-crop.S: New file. * sysdeps/sparc/sparc64/multiarch/sha512-block.c: New file. * sysdeps/sparc/sparc64/multiarch/sha512-crop.S: New file. * sysdeps/sparc/sparc32/sparcv9/multiarch/md5-block.c: New file. * sysdeps/sparc/sparc32/sparcv9/multiarch/md5-crop.S: New file. * sysdeps/sparc/sparc32/sparcv9/multiarch/sha256-block.c: New file. * sysdeps/sparc/sparc32/sparcv9/multiarch/sha256-crop.S: New file. * sysdeps/sparc/sparc32/sparcv9/multiarch/sha512-block.c: New file. * sysdeps/sparc/sparc32/sparcv9/multiarch/sha512-crop.S: New file.
97 lines
2.6 KiB
C
97 lines
2.6 KiB
C
/* Process LEN bytes of BUFFER, accumulating context into CTX.
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It is assumed that LEN % 64 == 0. */
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void
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sha256_process_block (const void *buffer, size_t len, struct sha256_ctx *ctx)
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{
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const uint32_t *words = buffer;
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size_t nwords = len / sizeof (uint32_t);
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uint32_t a = ctx->H[0];
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uint32_t b = ctx->H[1];
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uint32_t c = ctx->H[2];
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uint32_t d = ctx->H[3];
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uint32_t e = ctx->H[4];
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uint32_t f = ctx->H[5];
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uint32_t g = ctx->H[6];
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uint32_t h = ctx->H[7];
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/* First increment the byte count. FIPS 180-2 specifies the possible
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length of the file up to 2^64 bits. Here we only compute the
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number of bytes. */
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ctx->total64 += len;
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/* Process all bytes in the buffer with 64 bytes in each round of
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the loop. */
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while (nwords > 0)
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{
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uint32_t W[64];
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uint32_t a_save = a;
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uint32_t b_save = b;
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uint32_t c_save = c;
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uint32_t d_save = d;
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uint32_t e_save = e;
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uint32_t f_save = f;
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uint32_t g_save = g;
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uint32_t h_save = h;
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/* Operators defined in FIPS 180-2:4.1.2. */
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#define Ch(x, y, z) ((x & y) ^ (~x & z))
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#define Maj(x, y, z) ((x & y) ^ (x & z) ^ (y & z))
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#define S0(x) (CYCLIC (x, 2) ^ CYCLIC (x, 13) ^ CYCLIC (x, 22))
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#define S1(x) (CYCLIC (x, 6) ^ CYCLIC (x, 11) ^ CYCLIC (x, 25))
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#define R0(x) (CYCLIC (x, 7) ^ CYCLIC (x, 18) ^ (x >> 3))
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#define R1(x) (CYCLIC (x, 17) ^ CYCLIC (x, 19) ^ (x >> 10))
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/* It is unfortunate that C does not provide an operator for
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cyclic rotation. Hope the C compiler is smart enough. */
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#define CYCLIC(w, s) ((w >> s) | (w << (32 - s)))
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/* Compute the message schedule according to FIPS 180-2:6.2.2 step 2. */
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for (unsigned int t = 0; t < 16; ++t)
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{
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W[t] = SWAP (*words);
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++words;
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}
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for (unsigned int t = 16; t < 64; ++t)
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W[t] = R1 (W[t - 2]) + W[t - 7] + R0 (W[t - 15]) + W[t - 16];
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/* The actual computation according to FIPS 180-2:6.2.2 step 3. */
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for (unsigned int t = 0; t < 64; ++t)
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{
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uint32_t T1 = h + S1 (e) + Ch (e, f, g) + K[t] + W[t];
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uint32_t T2 = S0 (a) + Maj (a, b, c);
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h = g;
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g = f;
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f = e;
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e = d + T1;
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d = c;
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c = b;
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b = a;
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a = T1 + T2;
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}
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/* Add the starting values of the context according to FIPS 180-2:6.2.2
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step 4. */
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a += a_save;
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b += b_save;
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c += c_save;
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d += d_save;
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e += e_save;
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f += f_save;
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g += g_save;
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h += h_save;
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/* Prepare for the next round. */
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nwords -= 16;
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}
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/* Put checksum in context given as argument. */
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ctx->H[0] = a;
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ctx->H[1] = b;
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ctx->H[2] = c;
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ctx->H[3] = d;
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ctx->H[4] = e;
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ctx->H[5] = f;
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ctx->H[6] = g;
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ctx->H[7] = h;
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}
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