#include <string.h>
#if defined(__s390x__) && defined(OPENSSL_CPUID_OBJ)
#include "crypto/s390x_arch.h"
#endif
#include "internal/sha3.h"
void SHA3_squeeze(uint64_t A[5][5], unsigned char *out, size_t len, size_t r, int next);
void ossl_sha3_reset(KECCAK1600_CTX *ctx)
{
#if defined(__s390x__) && defined(OPENSSL_CPUID_OBJ)
if (!(OPENSSL_s390xcap_P.stfle[1] & S390X_CAPBIT(S390X_MSA12)))
#endif
memset(ctx->A, 0, sizeof(ctx->A));
ctx->bufsz = 0;
ctx->xof_state = XOF_STATE_INIT;
}
int ossl_sha3_init(KECCAK1600_CTX *ctx, unsigned char pad, size_t bitlen)
{
size_t bsz = SHA3_BLOCKSIZE(bitlen);
if (bsz <= sizeof(ctx->buf)) {
ossl_sha3_reset(ctx);
ctx->block_size = bsz;
ctx->md_size = bitlen / 8;
ctx->pad = pad;
return 1;
}
return 0;
}
int ossl_keccak_init(KECCAK1600_CTX *ctx, unsigned char pad, size_t bitlen, size_t mdlen)
{
int ret = ossl_sha3_init(ctx, pad, bitlen);
if (ret)
ctx->md_size = mdlen / 8;
return ret;
}
int ossl_sha3_update(KECCAK1600_CTX *ctx, const void *_inp, size_t len)
{
const unsigned char *inp = _inp;
size_t bsz = ctx->block_size;
size_t num, rem;
if (len == 0)
return 1;
if (ctx->xof_state == XOF_STATE_SQUEEZE
|| ctx->xof_state == XOF_STATE_FINAL)
return 0;
if ((num = ctx->bufsz) != 0) {
rem = bsz - num;
if (len < rem) {
memcpy(ctx->buf + num, inp, len);
ctx->bufsz += len;
return 1;
}
memcpy(ctx->buf + num, inp, rem);
inp += rem, len -= rem;
(void)SHA3_absorb(ctx->A, ctx->buf, bsz, bsz);
ctx->bufsz = 0;
}
if (len >= bsz)
rem = SHA3_absorb(ctx->A, inp, len, bsz);
else
rem = len;
if (rem) {
memcpy(ctx->buf, inp + len - rem, rem);
ctx->bufsz = rem;
}
return 1;
}
int ossl_sha3_final(KECCAK1600_CTX *ctx, unsigned char *out, size_t outlen)
{
size_t bsz = ctx->block_size;
size_t num = ctx->bufsz;
if (outlen == 0)
return 1;
if (ctx->xof_state == XOF_STATE_SQUEEZE
|| ctx->xof_state == XOF_STATE_FINAL)
return 0;
memset(ctx->buf + num, 0, bsz - num);
ctx->buf[num] = ctx->pad;
ctx->buf[bsz - 1] |= 0x80;
(void)SHA3_absorb(ctx->A, ctx->buf, bsz, bsz);
ctx->xof_state = XOF_STATE_FINAL;
SHA3_squeeze(ctx->A, out, outlen, bsz, 0);
return 1;
}
int ossl_sha3_squeeze(KECCAK1600_CTX *ctx, unsigned char *out, size_t outlen)
{
size_t bsz = ctx->block_size;
size_t num = ctx->bufsz;
size_t len;
int next = 1;
if (outlen == 0)
return 1;
if (ctx->xof_state == XOF_STATE_FINAL)
return 0;
if (ctx->xof_state != XOF_STATE_SQUEEZE) {
memset(ctx->buf + num, 0, bsz - num);
ctx->buf[num] = ctx->pad;
ctx->buf[bsz - 1] |= 0x80;
(void)SHA3_absorb(ctx->A, ctx->buf, bsz, bsz);
ctx->xof_state = XOF_STATE_SQUEEZE;
num = ctx->bufsz = 0;
next = 0;
}
if (num != 0) {
if (outlen > ctx->bufsz)
len = ctx->bufsz;
else
len = outlen;
memcpy(out, ctx->buf + bsz - ctx->bufsz, len);
out += len;
outlen -= len;
ctx->bufsz -= len;
}
if (outlen == 0)
return 1;
if (outlen >= bsz) {
len = bsz * (outlen / bsz);
SHA3_squeeze(ctx->A, out, len, bsz, next);
next = 1;
out += len;
outlen -= len;
}
if (outlen > 0) {
SHA3_squeeze(ctx->A, ctx->buf, bsz, bsz, next);
memcpy(out, ctx->buf, outlen);
ctx->bufsz = bsz - outlen;
}
return 1;
}