sha1_ctx
SHA1_CTX sha1_ctx;
SHA1Init(&sha1_ctx);
SHA1Update(&sha1_ctx, data, size);
SHA1Final(result, &sha1_ctx);
SHA1_CTX sha1_ctx;
SHA1Init(&sha1_ctx);
SHA1Update(&sha1_ctx, buf, nread);
SHA1Final(resultbuf, &sha1_ctx);
SOFT_MAC_INIT_CTX(SHA1, &(ctx->hc_ctx_u.sha1_ctx),
sha1_hmac_ctx_init(&ctx->hc_ctx_u.sha1_ctx, sha1_ipad,
SOFT_MAC_UPDATE(SHA1, &(hmac_ctx->hc_ctx_u.sha1_ctx),
SOFT_MAC_FINAL(SHA1, &(hmac_ctx->hc_ctx_u.sha1_ctx), pSigned);
SOFT_MAC_UPDATE(SHA1, &(hmac_ctx->hc_ctx_u.sha1_ctx), pPart,
sha1_hc_ctx_t sha1_ctx;
SHA1_CTX sha1_ctx;
SHA1Init(&sha1_ctx);
SHA1Update(&sha1_ctx, (const uint8_t *)ssl3_const_vals[i],
SHA1Update(&sha1_ctx, secret, secretlen);
SHA1Update(&sha1_ctx, rand1, rand1len);
SHA1Update(&sha1_ctx, rand2, rand2len);
SHA1Final(sha1_digest, &sha1_ctx);
SHA1_CTX sha1_ctx;
SHA1Init(&sha1_ctx);
SHA1Update(&sha1_ctx, S2, L_S);
SHA1Final(sha1_digested_key, &sha1_ctx);
SHA1Init(&(dctx.sha1_ctx));
SHA1Init(&(dctxp->sha1_ctx));
rv = crypto_digest_data(data, &(ctxp->sha1_ctx),
rv = crypto_digest_data(data, &(ctxp->sha1_ctx), NULL,
SHA1Init(&(dctx.sha1_ctx));
rv = crypto_digest_data(data, &(ctxp->sha1_ctx), NULL,
rv = crypto_digest_data(data, &(ctxp->sha1_ctx),
SHA1Init(&(dctx.sha1_ctx));
rv = crypto_digest_data(data, &(ctxp->sha1_ctx),
SHA1Init(&(dctx.sha1_ctx));
SHA1Init(&(dctxp->sha1_ctx));
rv = crypto_digest_data(data, &(ctxp->sha1_ctx),
sha1_digest_update_uio(SHA1_CTX *sha1_ctx, crypto_data_t *data)
SHA1Update(sha1_ctx,
sha1_digest_final_uio(SHA1_CTX *sha1_ctx, crypto_data_t *digest,
SHA1Final(digest_scratch, sha1_ctx);
sha1_ctx);
SHA1Final(digest_tmp, sha1_ctx);
sha1_digest_update_mblk(SHA1_CTX *sha1_ctx, crypto_data_t *data)
SHA1Update(sha1_ctx, mp->b_rptr + offset, cur_len);
sha1_digest_final_mblk(SHA1_CTX *sha1_ctx, crypto_data_t *digest,
SHA1Final(digest_scratch, sha1_ctx);
SHA1Final(mp->b_rptr + offset, sha1_ctx);
SHA1Final(digest_tmp, sha1_ctx);
SHA1_CTX sha1_ctx;
SHA1Init(&sha1_ctx);
SHA1Update(&sha1_ctx,
ret = sha1_digest_update_uio(&sha1_ctx, data);
ret = sha1_digest_update_mblk(&sha1_ctx, data);
digest->cd_offset, &sha1_ctx);
ret = sha1_digest_final_uio(&sha1_ctx, digest,
ret = sha1_digest_final_mblk(&sha1_ctx, digest,