log: introduce logtype register macro
[dpdk.git] / drivers / crypto / dpaa2_sec / dpaa2_sec_dpseci.c
index b04890a..12f8331 100644 (file)
@@ -1,7 +1,7 @@
 /* SPDX-License-Identifier: BSD-3-Clause
  *
  *   Copyright (c) 2016 Freescale Semiconductor, Inc. All rights reserved.
- *   Copyright 2016-2018 NXP
+ *   Copyright 2016-2019 NXP
  *
  */
 
 #define SEC_FLC_DHR_OUTBOUND   -114
 #define SEC_FLC_DHR_INBOUND    0
 
-enum rta_sec_era rta_sec_era = RTA_SEC_ERA_8;
-
 static uint8_t cryptodev_driver_id;
 
-int dpaa2_logtype_sec;
-
 #ifdef RTE_LIBRTE_SECURITY
 static inline int
 build_proto_compound_sg_fd(dpaa2_sec_session *sess,
@@ -86,7 +82,7 @@ build_proto_compound_sg_fd(dpaa2_sec_session *sess,
                        RTE_CACHE_LINE_SIZE);
        if (unlikely(!fle)) {
                DPAA2_SEC_DP_ERR("Proto:SG: Memory alloc failed for SGE");
-               return -1;
+               return -ENOMEM;
        }
        memset(fle, 0, FLE_SG_MEM_SIZE(mbuf->nb_segs + sym_op->m_src->nb_segs));
        DPAA2_SET_FLE_ADDR(fle, (size_t)op);
@@ -202,7 +198,7 @@ build_proto_compound_fd(dpaa2_sec_session *sess,
        retval = rte_mempool_get(priv->fle_pool, (void **)(&fle));
        if (retval) {
                DPAA2_SEC_DP_ERR("Memory alloc failed");
-               return -1;
+               return -ENOMEM;
        }
        memset(fle, 0, FLE_POOL_BUF_SIZE);
        DPAA2_SET_FLE_ADDR(fle, (size_t)op);
@@ -315,7 +311,7 @@ build_authenc_gcm_sg_fd(dpaa2_sec_session *sess,
                        RTE_CACHE_LINE_SIZE);
        if (unlikely(!fle)) {
                DPAA2_SEC_ERR("GCM SG: Memory alloc failed for SGE");
-               return -1;
+               return -ENOMEM;
        }
        memset(fle, 0, FLE_SG_MEM_SIZE(mbuf->nb_segs + sym_op->m_src->nb_segs));
        DPAA2_SET_FLE_ADDR(fle, (size_t)op);
@@ -463,7 +459,7 @@ build_authenc_gcm_fd(dpaa2_sec_session *sess,
        retval = rte_mempool_get(priv->fle_pool, (void **)(&fle));
        if (retval) {
                DPAA2_SEC_ERR("GCM: Memory alloc failed for SGE");
-               return -1;
+               return -ENOMEM;
        }
        memset(fle, 0, FLE_POOL_BUF_SIZE);
        DPAA2_SET_FLE_ADDR(fle, (size_t)op);
@@ -604,7 +600,7 @@ build_authenc_sg_fd(dpaa2_sec_session *sess,
                        RTE_CACHE_LINE_SIZE);
        if (unlikely(!fle)) {
                DPAA2_SEC_ERR("AUTHENC SG: Memory alloc failed for SGE");
-               return -1;
+               return -ENOMEM;
        }
        memset(fle, 0, FLE_SG_MEM_SIZE(mbuf->nb_segs + sym_op->m_src->nb_segs));
        DPAA2_SET_FLE_ADDR(fle, (size_t)op);
@@ -755,7 +751,7 @@ build_authenc_fd(dpaa2_sec_session *sess,
        retval = rte_mempool_get(priv->fle_pool, (void **)(&fle));
        if (retval) {
                DPAA2_SEC_ERR("Memory alloc failed for SGE");
-               return -1;
+               return -ENOMEM;
        }
        memset(fle, 0, FLE_POOL_BUF_SIZE);
        DPAA2_SET_FLE_ADDR(fle, (size_t)op);
@@ -885,7 +881,7 @@ static inline int build_auth_sg_fd(
            sess->auth_alg == RTE_CRYPTO_AUTH_ZUC_EIA3) {
                if ((data_len & 7) || (data_offset & 7)) {
                        DPAA2_SEC_ERR("AUTH: len/offset must be full bytes");
-                       return -1;
+                       return -ENOTSUP;
                }
 
                data_len = data_len >> 3;
@@ -898,7 +894,7 @@ static inline int build_auth_sg_fd(
                        RTE_CACHE_LINE_SIZE);
        if (unlikely(!fle)) {
                DPAA2_SEC_ERR("AUTH SG: Memory alloc failed for SGE");
-               return -1;
+               return -ENOMEM;
        }
        memset(fle, 0, FLE_SG_MEM_SIZE(mbuf->nb_segs));
        /* first FLE entry used to store mbuf and session ctxt */
@@ -1002,7 +998,7 @@ build_auth_fd(dpaa2_sec_session *sess, struct rte_crypto_op *op,
            sess->auth_alg == RTE_CRYPTO_AUTH_ZUC_EIA3) {
                if ((data_len & 7) || (data_offset & 7)) {
                        DPAA2_SEC_ERR("AUTH: len/offset must be full bytes");
-                       return -1;
+                       return -ENOTSUP;
                }
 
                data_len = data_len >> 3;
@@ -1012,7 +1008,7 @@ build_auth_fd(dpaa2_sec_session *sess, struct rte_crypto_op *op,
        retval = rte_mempool_get(priv->fle_pool, (void **)(&fle));
        if (retval) {
                DPAA2_SEC_ERR("AUTH Memory alloc failed for SGE");
-               return -1;
+               return -ENOMEM;
        }
        memset(fle, 0, FLE_POOL_BUF_SIZE);
        /* TODO we are using the first FLE entry to store Mbuf.
@@ -1117,7 +1113,7 @@ build_cipher_sg_fd(dpaa2_sec_session *sess, struct rte_crypto_op *op,
                sess->cipher_alg == RTE_CRYPTO_CIPHER_ZUC_EEA3) {
                if ((data_len & 7) || (data_offset & 7)) {
                        DPAA2_SEC_ERR("CIPHER: len/offset must be full bytes");
-                       return -1;
+                       return -ENOTSUP;
                }
 
                data_len = data_len >> 3;
@@ -1135,7 +1131,7 @@ build_cipher_sg_fd(dpaa2_sec_session *sess, struct rte_crypto_op *op,
                        RTE_CACHE_LINE_SIZE);
        if (!fle) {
                DPAA2_SEC_ERR("CIPHER SG: Memory alloc failed for SGE");
-               return -1;
+               return -ENOMEM;
        }
        memset(fle, 0, FLE_SG_MEM_SIZE(mbuf->nb_segs + sym_op->m_src->nb_segs));
        /* first FLE entry used to store mbuf and session ctxt */
@@ -1250,7 +1246,7 @@ build_cipher_fd(dpaa2_sec_session *sess, struct rte_crypto_op *op,
                sess->cipher_alg == RTE_CRYPTO_CIPHER_ZUC_EEA3) {
                if ((data_len & 7) || (data_offset & 7)) {
                        DPAA2_SEC_ERR("CIPHER: len/offset must be full bytes");
-                       return -1;
+                       return -ENOTSUP;
                }
 
                data_len = data_len >> 3;
@@ -1265,7 +1261,7 @@ build_cipher_fd(dpaa2_sec_session *sess, struct rte_crypto_op *op,
        retval = rte_mempool_get(priv->fle_pool, (void **)(&fle));
        if (retval) {
                DPAA2_SEC_ERR("CIPHER: Memory alloc failed for SGE");
-               return -1;
+               return -ENOMEM;
        }
        memset(fle, 0, FLE_POOL_BUF_SIZE);
        /* TODO we are using the first FLE entry to store Mbuf.
@@ -1363,7 +1359,10 @@ build_sec_fd(struct rte_crypto_op *op,
                                op->sym->sec_session);
 #endif
        else
-               return -1;
+               return -ENOTSUP;
+
+       if (!sess)
+               return -EINVAL;
 
        /* Any of the buffer is segmented*/
        if (!rte_pktmbuf_is_contiguous(op->sym->m_src) ||
@@ -1417,6 +1416,7 @@ build_sec_fd(struct rte_crypto_op *op,
                case DPAA2_SEC_HASH_CIPHER:
                default:
                        DPAA2_SEC_ERR("error: Unsupported session");
+                       ret = -ENOTSUP;
                }
        }
        return ret;
@@ -1430,7 +1430,7 @@ dpaa2_sec_enqueue_burst(void *qp, struct rte_crypto_op **ops,
        uint32_t loop;
        int32_t ret;
        struct qbman_fd fd_arr[MAX_TX_RING_SLOTS];
-       uint32_t frames_to_send;
+       uint32_t frames_to_send, retry_count;
        struct qbman_eq_desc eqdesc;
        struct dpaa2_sec_qp *dpaa2_qp = (struct dpaa2_sec_qp *)qp;
        struct qbman_swp *swp;
@@ -1456,7 +1456,9 @@ dpaa2_sec_enqueue_burst(void *qp, struct rte_crypto_op **ops,
        if (!DPAA2_PER_LCORE_DPIO) {
                ret = dpaa2_affine_qbman_swp();
                if (ret) {
-                       DPAA2_SEC_ERR("Failure in affining portal");
+                       DPAA2_SEC_ERR(
+                               "Failed to allocate IO portal, tid: %d\n",
+                               rte_gettid());
                        return 0;
                }
        }
@@ -1488,16 +1490,29 @@ dpaa2_sec_enqueue_burst(void *qp, struct rte_crypto_op **ops,
                        }
                        ops++;
                }
+
                loop = 0;
+               retry_count = 0;
                while (loop < frames_to_send) {
-                       loop += qbman_swp_enqueue_multiple(swp, &eqdesc,
-                                                       &fd_arr[loop],
-                                                       &flags[loop],
-                                                       frames_to_send - loop);
+                       ret = qbman_swp_enqueue_multiple(swp, &eqdesc,
+                                                        &fd_arr[loop],
+                                                        &flags[loop],
+                                                        frames_to_send - loop);
+                       if (unlikely(ret < 0)) {
+                               retry_count++;
+                               if (retry_count > DPAA2_MAX_TX_RETRY_COUNT) {
+                                       num_tx += loop;
+                                       nb_ops -= loop;
+                                       goto skip_tx;
+                               }
+                       } else {
+                               loop += ret;
+                               retry_count = 0;
+                       }
                }
 
-               num_tx += frames_to_send;
-               nb_ops -= frames_to_send;
+               num_tx += loop;
+               nb_ops -= loop;
        }
 skip_tx:
        dpaa2_qp->tx_vq.tx_pkts += num_tx;
@@ -1579,18 +1594,13 @@ sec_fd_to_mbuf(const struct qbman_fd *fd)
 
 #ifdef RTE_LIBRTE_SECURITY
        if (op->sess_type == RTE_CRYPTO_OP_SECURITY_SESSION) {
-               dpaa2_sec_session *sess = (dpaa2_sec_session *)
-                       get_sec_session_private_data(op->sym->sec_session);
-               if (sess->ctxt_type == DPAA2_SEC_IPSEC ||
-                               sess->ctxt_type == DPAA2_SEC_PDCP) {
-                       uint16_t len = DPAA2_GET_FD_LEN(fd);
-                       dst->pkt_len = len;
-                       while (dst->next != NULL) {
-                               len -= dst->data_len;
-                               dst = dst->next;
-                       }
-                       dst->data_len = len;
+               uint16_t len = DPAA2_GET_FD_LEN(fd);
+               dst->pkt_len = len;
+               while (dst->next != NULL) {
+                       len -= dst->data_len;
+                       dst = dst->next;
                }
+               dst->data_len = len;
        }
 #endif
        DPAA2_SEC_DP_DEBUG("mbuf %p BMAN buf addr %p,"
@@ -1630,7 +1640,9 @@ dpaa2_sec_dequeue_burst(void *qp, struct rte_crypto_op **ops,
        if (!DPAA2_PER_LCORE_DPIO) {
                ret = dpaa2_affine_qbman_swp();
                if (ret) {
-                       DPAA2_SEC_ERR("Failure in affining portal");
+                       DPAA2_SEC_ERR(
+                               "Failed to allocate IO portal, tid: %d\n",
+                               rte_gettid());
                        return 0;
                }
        }
@@ -1759,7 +1771,7 @@ dpaa2_sec_queue_pair_setup(struct rte_cryptodev *dev, uint16_t qp_id,
                        RTE_CACHE_LINE_SIZE);
        if (!qp) {
                DPAA2_SEC_ERR("malloc failed for rx/tx queues");
-               return -1;
+               return -ENOMEM;
        }
 
        qp->rx_vq.crypto_data = dev->data;
@@ -1769,13 +1781,13 @@ dpaa2_sec_queue_pair_setup(struct rte_cryptodev *dev, uint16_t qp_id,
                RTE_CACHE_LINE_SIZE);
        if (!qp->rx_vq.q_storage) {
                DPAA2_SEC_ERR("malloc failed for q_storage");
-               return -1;
+               return -ENOMEM;
        }
        memset(qp->rx_vq.q_storage, 0, sizeof(struct queue_storage_info_t));
 
        if (dpaa2_alloc_dq_storage(qp->rx_vq.q_storage)) {
                DPAA2_SEC_ERR("Unable to allocate dequeue storage");
-               return -1;
+               return -ENOMEM;
        }
 
        dev->data->queue_pairs[qp_id] = qp;
@@ -1787,15 +1799,6 @@ dpaa2_sec_queue_pair_setup(struct rte_cryptodev *dev, uint16_t qp_id,
        return retcode;
 }
 
-/** Return the number of allocated queue pairs */
-static uint32_t
-dpaa2_sec_queue_pair_count(struct rte_cryptodev *dev)
-{
-       PMD_INIT_FUNC_TRACE();
-
-       return dev->data->nb_queue_pairs;
-}
-
 /** Returns the size of the aesni gcm session structure */
 static unsigned int
 dpaa2_sec_sym_session_get_size(struct rte_cryptodev *dev __rte_unused)
@@ -1812,7 +1815,7 @@ dpaa2_sec_cipher_init(struct rte_cryptodev *dev,
 {
        struct dpaa2_sec_dev_private *dev_priv = dev->data->dev_private;
        struct alginfo cipherdata;
-       int bufsize;
+       int bufsize, ret = 0;
        struct ctxt_priv *priv;
        struct sec_flow_context *flc;
 
@@ -1824,19 +1827,20 @@ dpaa2_sec_cipher_init(struct rte_cryptodev *dev,
                        RTE_CACHE_LINE_SIZE);
        if (priv == NULL) {
                DPAA2_SEC_ERR("No Memory for priv CTXT");
-               return -1;
+               return -ENOMEM;
        }
 
        priv->fle_pool = dev_priv->fle_pool;
 
        flc = &priv->flc_desc[0].flc;
 
+       session->ctxt_type = DPAA2_SEC_CIPHER;
        session->cipher_key.data = rte_zmalloc(NULL, xform->cipher.key.length,
                        RTE_CACHE_LINE_SIZE);
        if (session->cipher_key.data == NULL) {
                DPAA2_SEC_ERR("No Memory for cipher key");
                rte_free(priv);
-               return -1;
+               return -ENOMEM;
        }
        session->cipher_key.length = xform->cipher.key.length;
 
@@ -1859,7 +1863,7 @@ dpaa2_sec_cipher_init(struct rte_cryptodev *dev,
                cipherdata.algmode = OP_ALG_AAI_CBC;
                session->cipher_alg = RTE_CRYPTO_CIPHER_AES_CBC;
                bufsize = cnstr_shdsc_blkcipher(priv->flc_desc[0].desc, 1, 0,
-                                               SHR_NEVER, &cipherdata, NULL,
+                                               SHR_NEVER, &cipherdata,
                                                session->iv.length,
                                                session->dir);
                break;
@@ -1868,7 +1872,7 @@ dpaa2_sec_cipher_init(struct rte_cryptodev *dev,
                cipherdata.algmode = OP_ALG_AAI_CBC;
                session->cipher_alg = RTE_CRYPTO_CIPHER_3DES_CBC;
                bufsize = cnstr_shdsc_blkcipher(priv->flc_desc[0].desc, 1, 0,
-                                               SHR_NEVER, &cipherdata, NULL,
+                                               SHR_NEVER, &cipherdata,
                                                session->iv.length,
                                                session->dir);
                break;
@@ -1877,7 +1881,7 @@ dpaa2_sec_cipher_init(struct rte_cryptodev *dev,
                cipherdata.algmode = OP_ALG_AAI_CTR;
                session->cipher_alg = RTE_CRYPTO_CIPHER_AES_CTR;
                bufsize = cnstr_shdsc_blkcipher(priv->flc_desc[0].desc, 1, 0,
-                                               SHR_NEVER, &cipherdata, NULL,
+                                               SHR_NEVER, &cipherdata,
                                                session->iv.length,
                                                session->dir);
                break;
@@ -1886,7 +1890,7 @@ dpaa2_sec_cipher_init(struct rte_cryptodev *dev,
                cipherdata.algmode = OP_ALG_AAI_CTR;
                session->cipher_alg = RTE_CRYPTO_CIPHER_3DES_CTR;
                bufsize = cnstr_shdsc_blkcipher(priv->flc_desc[0].desc, 1, 0,
-                                               SHR_NEVER, &cipherdata, NULL,
+                                               SHR_NEVER, &cipherdata,
                                                session->iv.length,
                                                session->dir);
                break;
@@ -1913,15 +1917,18 @@ dpaa2_sec_cipher_init(struct rte_cryptodev *dev,
        case RTE_CRYPTO_CIPHER_NULL:
                DPAA2_SEC_ERR("Crypto: Unsupported Cipher alg %u",
                        xform->cipher.algo);
+               ret = -ENOTSUP;
                goto error_out;
        default:
                DPAA2_SEC_ERR("Crypto: Undefined Cipher specified %u",
                        xform->cipher.algo);
+               ret = -ENOTSUP;
                goto error_out;
        }
 
        if (bufsize < 0) {
                DPAA2_SEC_ERR("Crypto: Descriptor build failed");
+               ret = -EINVAL;
                goto error_out;
        }
 
@@ -1933,12 +1940,12 @@ dpaa2_sec_cipher_init(struct rte_cryptodev *dev,
        for (i = 0; i < bufsize; i++)
                DPAA2_SEC_DEBUG("DESC[%d]:0x%x", i, priv->flc_desc[0].desc[i]);
 #endif
-       return 0;
+       return ret;
 
 error_out:
        rte_free(session->cipher_key.data);
        rte_free(priv);
-       return -1;
+       return ret;
 }
 
 static int
@@ -1948,7 +1955,7 @@ dpaa2_sec_auth_init(struct rte_cryptodev *dev,
 {
        struct dpaa2_sec_dev_private *dev_priv = dev->data->dev_private;
        struct alginfo authdata;
-       int bufsize;
+       int bufsize, ret = 0;
        struct ctxt_priv *priv;
        struct sec_flow_context *flc;
 
@@ -1961,18 +1968,19 @@ dpaa2_sec_auth_init(struct rte_cryptodev *dev,
                        RTE_CACHE_LINE_SIZE);
        if (priv == NULL) {
                DPAA2_SEC_ERR("No Memory for priv CTXT");
-               return -1;
+               return -ENOMEM;
        }
 
        priv->fle_pool = dev_priv->fle_pool;
        flc = &priv->flc_desc[DESC_INITFINAL].flc;
 
+       session->ctxt_type = DPAA2_SEC_AUTH;
        session->auth_key.data = rte_zmalloc(NULL, xform->auth.key.length,
                        RTE_CACHE_LINE_SIZE);
        if (session->auth_key.data == NULL) {
                DPAA2_SEC_ERR("Unable to allocate memory for auth key");
                rte_free(priv);
-               return -1;
+               return -ENOMEM;
        }
        session->auth_key.length = xform->auth.key.length;
 
@@ -2078,15 +2086,18 @@ dpaa2_sec_auth_init(struct rte_cryptodev *dev,
        case RTE_CRYPTO_AUTH_AES_CBC_MAC:
                DPAA2_SEC_ERR("Crypto: Unsupported auth alg %un",
                              xform->auth.algo);
+               ret = -ENOTSUP;
                goto error_out;
        default:
                DPAA2_SEC_ERR("Crypto: Undefined Auth specified %u",
                              xform->auth.algo);
+               ret = -ENOTSUP;
                goto error_out;
        }
 
        if (bufsize < 0) {
                DPAA2_SEC_ERR("Crypto: Invalid buffer length");
+               ret = -EINVAL;
                goto error_out;
        }
 
@@ -2099,12 +2110,12 @@ dpaa2_sec_auth_init(struct rte_cryptodev *dev,
                                i, priv->flc_desc[DESC_INITFINAL].desc[i]);
 #endif
 
-       return 0;
+       return ret;
 
 error_out:
        rte_free(session->auth_key.data);
        rte_free(priv);
-       return -1;
+       return ret;
 }
 
 static int
@@ -2119,7 +2130,7 @@ dpaa2_sec_aead_init(struct rte_cryptodev *dev,
        struct ctxt_priv *priv;
        struct sec_flow_context *flc;
        struct rte_crypto_aead_xform *aead_xform = &xform->aead;
-       int err;
+       int err, ret = 0;
 
        PMD_INIT_FUNC_TRACE();
 
@@ -2134,7 +2145,7 @@ dpaa2_sec_aead_init(struct rte_cryptodev *dev,
                        RTE_CACHE_LINE_SIZE);
        if (priv == NULL) {
                DPAA2_SEC_ERR("No Memory for priv CTXT");
-               return -1;
+               return -ENOMEM;
        }
 
        priv->fle_pool = dev_priv->fle_pool;
@@ -2145,7 +2156,7 @@ dpaa2_sec_aead_init(struct rte_cryptodev *dev,
        if (session->aead_key.data == NULL && aead_xform->key.length > 0) {
                DPAA2_SEC_ERR("No Memory for aead key");
                rte_free(priv);
-               return -1;
+               return -ENOMEM;
        }
        memcpy(session->aead_key.data, aead_xform->key.data,
               aead_xform->key.length);
@@ -2168,10 +2179,12 @@ dpaa2_sec_aead_init(struct rte_cryptodev *dev,
        case RTE_CRYPTO_AEAD_AES_CCM:
                DPAA2_SEC_ERR("Crypto: Unsupported AEAD alg %u",
                              aead_xform->algo);
+               ret = -ENOTSUP;
                goto error_out;
        default:
                DPAA2_SEC_ERR("Crypto: Undefined AEAD specified %u",
                              aead_xform->algo);
+               ret = -ENOTSUP;
                goto error_out;
        }
        session->dir = (aead_xform->op == RTE_CRYPTO_AEAD_OP_ENCRYPT) ?
@@ -2185,6 +2198,7 @@ dpaa2_sec_aead_init(struct rte_cryptodev *dev,
 
        if (err < 0) {
                DPAA2_SEC_ERR("Crypto: Incorrect key lengths");
+               ret = -EINVAL;
                goto error_out;
        }
        if (priv->flc_desc[0].desc[1] & 1) {
@@ -2208,6 +2222,7 @@ dpaa2_sec_aead_init(struct rte_cryptodev *dev,
                                session->digest_length);
        if (bufsize < 0) {
                DPAA2_SEC_ERR("Crypto: Invalid buffer length");
+               ret = -EINVAL;
                goto error_out;
        }
 
@@ -2219,12 +2234,12 @@ dpaa2_sec_aead_init(struct rte_cryptodev *dev,
                DPAA2_SEC_DEBUG("DESC[%d]:0x%x\n",
                            i, priv->flc_desc[0].desc[i]);
 #endif
-       return 0;
+       return ret;
 
 error_out:
        rte_free(session->aead_key.data);
        rte_free(priv);
-       return -1;
+       return ret;
 }
 
 
@@ -2240,7 +2255,7 @@ dpaa2_sec_aead_chain_init(struct rte_cryptodev *dev,
        struct sec_flow_context *flc;
        struct rte_crypto_cipher_xform *cipher_xform;
        struct rte_crypto_auth_xform *auth_xform;
-       int err;
+       int err, ret = 0;
 
        PMD_INIT_FUNC_TRACE();
 
@@ -2268,7 +2283,7 @@ dpaa2_sec_aead_chain_init(struct rte_cryptodev *dev,
                        RTE_CACHE_LINE_SIZE);
        if (priv == NULL) {
                DPAA2_SEC_ERR("No Memory for priv CTXT");
-               return -1;
+               return -ENOMEM;
        }
 
        priv->fle_pool = dev_priv->fle_pool;
@@ -2279,7 +2294,7 @@ dpaa2_sec_aead_chain_init(struct rte_cryptodev *dev,
        if (session->cipher_key.data == NULL && cipher_xform->key.length > 0) {
                DPAA2_SEC_ERR("No Memory for cipher key");
                rte_free(priv);
-               return -1;
+               return -ENOMEM;
        }
        session->cipher_key.length = cipher_xform->key.length;
        session->auth_key.data = rte_zmalloc(NULL, auth_xform->key.length,
@@ -2288,7 +2303,7 @@ dpaa2_sec_aead_chain_init(struct rte_cryptodev *dev,
                DPAA2_SEC_ERR("No Memory for auth key");
                rte_free(session->cipher_key.data);
                rte_free(priv);
-               return -1;
+               return -ENOMEM;
        }
        session->auth_key.length = auth_xform->key.length;
        memcpy(session->cipher_key.data, cipher_xform->key.data,
@@ -2350,10 +2365,12 @@ dpaa2_sec_aead_chain_init(struct rte_cryptodev *dev,
        case RTE_CRYPTO_AUTH_ZUC_EIA3:
                DPAA2_SEC_ERR("Crypto: Unsupported auth alg %u",
                              auth_xform->algo);
+               ret = -ENOTSUP;
                goto error_out;
        default:
                DPAA2_SEC_ERR("Crypto: Undefined Auth specified %u",
                              auth_xform->algo);
+               ret = -ENOTSUP;
                goto error_out;
        }
        cipherdata.key = (size_t)session->cipher_key.data;
@@ -2385,10 +2402,12 @@ dpaa2_sec_aead_chain_init(struct rte_cryptodev *dev,
        case RTE_CRYPTO_CIPHER_KASUMI_F8:
                DPAA2_SEC_ERR("Crypto: Unsupported Cipher alg %u",
                              cipher_xform->algo);
+               ret = -ENOTSUP;
                goto error_out;
        default:
                DPAA2_SEC_ERR("Crypto: Undefined Cipher specified %u",
                              cipher_xform->algo);
+               ret = -ENOTSUP;
                goto error_out;
        }
        session->dir = (cipher_xform->op == RTE_CRYPTO_CIPHER_OP_ENCRYPT) ?
@@ -2403,6 +2422,7 @@ dpaa2_sec_aead_chain_init(struct rte_cryptodev *dev,
 
        if (err < 0) {
                DPAA2_SEC_ERR("Crypto: Incorrect key lengths");
+               ret = -EINVAL;
                goto error_out;
        }
        if (priv->flc_desc[0].desc[2] & 1) {
@@ -2430,10 +2450,12 @@ dpaa2_sec_aead_chain_init(struct rte_cryptodev *dev,
                                              session->dir);
                if (bufsize < 0) {
                        DPAA2_SEC_ERR("Crypto: Invalid buffer length");
+                       ret = -EINVAL;
                        goto error_out;
                }
        } else {
                DPAA2_SEC_ERR("Hash before cipher not supported");
+               ret = -ENOTSUP;
                goto error_out;
        }
 
@@ -2446,13 +2468,13 @@ dpaa2_sec_aead_chain_init(struct rte_cryptodev *dev,
                            i, priv->flc_desc[0].desc[i]);
 #endif
 
-       return 0;
+       return ret;
 
 error_out:
        rte_free(session->cipher_key.data);
        rte_free(session->auth_key.data);
        rte_free(priv);
-       return -1;
+       return ret;
 }
 
 static int
@@ -2466,7 +2488,7 @@ dpaa2_sec_set_session_parameters(struct rte_cryptodev *dev,
 
        if (unlikely(sess == NULL)) {
                DPAA2_SEC_ERR("Invalid session struct");
-               return -1;
+               return -EINVAL;
        }
 
        memset(session, 0, sizeof(dpaa2_sec_session));
@@ -2475,27 +2497,33 @@ dpaa2_sec_set_session_parameters(struct rte_cryptodev *dev,
 
        /* Cipher Only */
        if (xform->type == RTE_CRYPTO_SYM_XFORM_CIPHER && xform->next == NULL) {
-               session->ctxt_type = DPAA2_SEC_CIPHER;
                ret = dpaa2_sec_cipher_init(dev, xform, session);
 
        /* Authentication Only */
        } else if (xform->type == RTE_CRYPTO_SYM_XFORM_AUTH &&
                   xform->next == NULL) {
-               session->ctxt_type = DPAA2_SEC_AUTH;
                ret = dpaa2_sec_auth_init(dev, xform, session);
 
        /* Cipher then Authenticate */
        } else if (xform->type == RTE_CRYPTO_SYM_XFORM_CIPHER &&
                   xform->next->type == RTE_CRYPTO_SYM_XFORM_AUTH) {
                session->ext_params.aead_ctxt.auth_cipher_text = true;
-               ret = dpaa2_sec_aead_chain_init(dev, xform, session);
-
+               if (xform->cipher.algo == RTE_CRYPTO_CIPHER_NULL)
+                       ret = dpaa2_sec_auth_init(dev, xform, session);
+               else if (xform->next->auth.algo == RTE_CRYPTO_AUTH_NULL)
+                       ret = dpaa2_sec_cipher_init(dev, xform, session);
+               else
+                       ret = dpaa2_sec_aead_chain_init(dev, xform, session);
        /* Authenticate then Cipher */
        } else if (xform->type == RTE_CRYPTO_SYM_XFORM_AUTH &&
                   xform->next->type == RTE_CRYPTO_SYM_XFORM_CIPHER) {
                session->ext_params.aead_ctxt.auth_cipher_text = false;
-               ret = dpaa2_sec_aead_chain_init(dev, xform, session);
-
+               if (xform->auth.algo == RTE_CRYPTO_AUTH_NULL)
+                       ret = dpaa2_sec_cipher_init(dev, xform, session);
+               else if (xform->next->cipher.algo == RTE_CRYPTO_CIPHER_NULL)
+                       ret = dpaa2_sec_auth_init(dev, xform, session);
+               else
+                       ret = dpaa2_sec_aead_chain_init(dev, xform, session);
        /* AEAD operation for AES-GCM kind of Algorithms */
        } else if (xform->type == RTE_CRYPTO_SYM_XFORM_AEAD &&
                   xform->next == NULL) {
@@ -2521,7 +2549,7 @@ dpaa2_sec_ipsec_aead_init(struct rte_crypto_aead_xform *aead_xform,
                                               RTE_CACHE_LINE_SIZE);
        if (session->aead_key.data == NULL && aead_xform->key.length > 0) {
                DPAA2_SEC_ERR("No Memory for aead key");
-               return -1;
+               return -ENOMEM;
        }
        memcpy(session->aead_key.data, aead_xform->key.data,
               aead_xform->key.length);
@@ -2536,19 +2564,47 @@ dpaa2_sec_ipsec_aead_init(struct rte_crypto_aead_xform *aead_xform,
 
        switch (aead_xform->algo) {
        case RTE_CRYPTO_AEAD_AES_GCM:
-               aeaddata->algtype = OP_ALG_ALGSEL_AES;
+               switch (session->digest_length) {
+               case 8:
+                       aeaddata->algtype = OP_PCL_IPSEC_AES_GCM8;
+                       break;
+               case 12:
+                       aeaddata->algtype = OP_PCL_IPSEC_AES_GCM12;
+                       break;
+               case 16:
+                       aeaddata->algtype = OP_PCL_IPSEC_AES_GCM16;
+                       break;
+               default:
+                       DPAA2_SEC_ERR("Crypto: Undefined GCM digest %d",
+                                     session->digest_length);
+                       return -EINVAL;
+               }
                aeaddata->algmode = OP_ALG_AAI_GCM;
                session->aead_alg = RTE_CRYPTO_AEAD_AES_GCM;
                break;
        case RTE_CRYPTO_AEAD_AES_CCM:
-               aeaddata->algtype = OP_ALG_ALGSEL_AES;
+               switch (session->digest_length) {
+               case 8:
+                       aeaddata->algtype = OP_PCL_IPSEC_AES_CCM8;
+                       break;
+               case 12:
+                       aeaddata->algtype = OP_PCL_IPSEC_AES_CCM12;
+                       break;
+               case 16:
+                       aeaddata->algtype = OP_PCL_IPSEC_AES_CCM16;
+                       break;
+               default:
+                       DPAA2_SEC_ERR("Crypto: Undefined CCM digest %d",
+                                     session->digest_length);
+                       return -EINVAL;
+               }
                aeaddata->algmode = OP_ALG_AAI_CCM;
                session->aead_alg = RTE_CRYPTO_AEAD_AES_CCM;
                break;
        default:
                DPAA2_SEC_ERR("Crypto: Undefined AEAD specified %u",
                              aead_xform->algo);
-               return -1;
+               return -ENOTSUP;
        }
        session->dir = (aead_xform->op == RTE_CRYPTO_AEAD_OP_ENCRYPT) ?
                                DIR_ENC : DIR_DEC;
@@ -2596,6 +2652,7 @@ dpaa2_sec_ipsec_proto_init(struct rte_crypto_cipher_xform *cipher_xform,
                memcpy(session->auth_key.data, auth_xform->key.data,
                                auth_xform->key.length);
                session->auth_alg = auth_xform->algo;
+               session->digest_length = auth_xform->digest_length;
        } else {
                session->auth_key.data = NULL;
                session->auth_key.length = 0;
@@ -2618,6 +2675,10 @@ dpaa2_sec_ipsec_proto_init(struct rte_crypto_cipher_xform *cipher_xform,
        case RTE_CRYPTO_AUTH_SHA256_HMAC:
                authdata->algtype = OP_PCL_IPSEC_HMAC_SHA2_256_128;
                authdata->algmode = OP_ALG_AAI_HMAC;
+               if (session->digest_length != 16)
+                       DPAA2_SEC_WARN(
+                       "+++Using sha256-hmac truncated len is non-standard,"
+                       "it will not work with lookaside proto");
                break;
        case RTE_CRYPTO_AUTH_SHA384_HMAC:
                authdata->algtype = OP_PCL_IPSEC_HMAC_SHA2_384_192;
@@ -2648,11 +2709,11 @@ dpaa2_sec_ipsec_proto_init(struct rte_crypto_cipher_xform *cipher_xform,
        case RTE_CRYPTO_AUTH_ZUC_EIA3:
                DPAA2_SEC_ERR("Crypto: Unsupported auth alg %u",
                              session->auth_alg);
-               return -1;
+               return -ENOTSUP;
        default:
                DPAA2_SEC_ERR("Crypto: Undefined Auth specified %u",
                              session->auth_alg);
-               return -1;
+               return -ENOTSUP;
        }
        cipherdata->key = (size_t)session->cipher_key.data;
        cipherdata->keylen = session->cipher_key.length;
@@ -2682,11 +2743,11 @@ dpaa2_sec_ipsec_proto_init(struct rte_crypto_cipher_xform *cipher_xform,
        case RTE_CRYPTO_CIPHER_KASUMI_F8:
                DPAA2_SEC_ERR("Crypto: Unsupported Cipher alg %u",
                              session->cipher_alg);
-               return -1;
+               return -ENOTSUP;
        default:
                DPAA2_SEC_ERR("Crypto: Undefined Cipher specified %u",
                              session->cipher_alg);
-               return -1;
+               return -ENOTSUP;
        }
 
        return 0;
@@ -2709,8 +2770,6 @@ dpaa2_sec_set_ipsec_session(struct rte_cryptodev *dev,
        struct rte_crypto_aead_xform *aead_xform = NULL;
        dpaa2_sec_session *session = (dpaa2_sec_session *)sess;
        struct ctxt_priv *priv;
-       struct ipsec_encap_pdb encap_pdb;
-       struct ipsec_decap_pdb decap_pdb;
        struct alginfo authdata, cipherdata;
        int bufsize;
        struct sec_flow_context *flc;
@@ -2750,6 +2809,8 @@ dpaa2_sec_set_ipsec_session(struct rte_cryptodev *dev,
                aead_xform = &conf->crypto_xform->aead;
                ret = dpaa2_sec_ipsec_aead_init(aead_xform,
                                        session, &cipherdata);
+               authdata.keylen = 0;
+               authdata.algtype = 0;
        } else {
                DPAA2_SEC_ERR("XFORM not specified");
                ret = -EINVAL;
@@ -2765,10 +2826,26 @@ dpaa2_sec_set_ipsec_session(struct rte_cryptodev *dev,
                uint8_t *hdr = NULL;
                struct ip ip4_hdr;
                struct rte_ipv6_hdr ip6_hdr;
+               struct ipsec_encap_pdb encap_pdb;
 
                flc->dhr = SEC_FLC_DHR_OUTBOUND;
                /* For Sec Proto only one descriptor is required. */
                memset(&encap_pdb, 0, sizeof(struct ipsec_encap_pdb));
+
+               /* copy algo specific data to PDB */
+               switch (cipherdata.algtype) {
+               case OP_PCL_IPSEC_AES_CTR:
+                       encap_pdb.ctr.ctr_initial = 0x00000001;
+                       encap_pdb.ctr.ctr_nonce = ipsec_xform->salt;
+                       break;
+               case OP_PCL_IPSEC_AES_GCM8:
+               case OP_PCL_IPSEC_AES_GCM12:
+               case OP_PCL_IPSEC_AES_GCM16:
+                       memcpy(encap_pdb.gcm.salt,
+                               (uint8_t *)&(ipsec_xform->salt), 4);
+                       break;
+               }
+
                encap_pdb.options = (IPVERSION << PDBNH_ESP_ENCAP_SHIFT) |
                        PDBOPTS_ESP_OIHI_PDB_INL |
                        PDBOPTS_ESP_IVSRC |
@@ -2825,14 +2902,51 @@ dpaa2_sec_set_ipsec_session(struct rte_cryptodev *dev,
                                hdr, &cipherdata, &authdata);
        } else if (ipsec_xform->direction ==
                        RTE_SECURITY_IPSEC_SA_DIR_INGRESS) {
+               struct ipsec_decap_pdb decap_pdb;
+
                flc->dhr = SEC_FLC_DHR_INBOUND;
                memset(&decap_pdb, 0, sizeof(struct ipsec_decap_pdb));
+               /* copy algo specific data to PDB */
+               switch (cipherdata.algtype) {
+               case OP_PCL_IPSEC_AES_CTR:
+                       decap_pdb.ctr.ctr_initial = 0x00000001;
+                       decap_pdb.ctr.ctr_nonce = ipsec_xform->salt;
+                       break;
+               case OP_PCL_IPSEC_AES_GCM8:
+               case OP_PCL_IPSEC_AES_GCM12:
+               case OP_PCL_IPSEC_AES_GCM16:
+                       memcpy(decap_pdb.gcm.salt,
+                               (uint8_t *)&(ipsec_xform->salt), 4);
+                       break;
+               }
+
                decap_pdb.options = (ipsec_xform->tunnel.type ==
                                RTE_SECURITY_IPSEC_TUNNEL_IPV4) ?
                                sizeof(struct ip) << 16 :
                                sizeof(struct rte_ipv6_hdr) << 16;
                if (ipsec_xform->options.esn)
                        decap_pdb.options |= PDBOPTS_ESP_ESN;
+
+               if (ipsec_xform->replay_win_sz) {
+                       uint32_t win_sz;
+                       win_sz = rte_align32pow2(ipsec_xform->replay_win_sz);
+
+                       switch (win_sz) {
+                       case 1:
+                       case 2:
+                       case 4:
+                       case 8:
+                       case 16:
+                       case 32:
+                               decap_pdb.options |= PDBOPTS_ESP_ARS32;
+                               break;
+                       case 64:
+                               decap_pdb.options |= PDBOPTS_ESP_ARS64;
+                               break;
+                       default:
+                               decap_pdb.options |= PDBOPTS_ESP_ARS128;
+                       }
+               }
                session->dir = DIR_DEC;
                bufsize = cnstr_shdsc_ipsec_new_decap(priv->flc_desc[0].desc,
                                1, 0, SHR_SERIAL,
@@ -3116,7 +3230,7 @@ out:
        rte_free(session->auth_key.data);
        rte_free(session->cipher_key.data);
        rte_free(priv);
-       return -1;
+       return -EINVAL;
 }
 
 static int
@@ -3434,7 +3548,7 @@ void dpaa2_sec_stats_reset(struct rte_cryptodev *dev)
        }
 }
 
-static void __attribute__((hot))
+static void __rte_hot
 dpaa2_sec_process_parallel_event(struct qbman_swp *swp,
                                 const struct qbman_fd *fd,
                                 const struct qbman_result *dq,
@@ -3460,7 +3574,7 @@ dpaa2_sec_process_parallel_event(struct qbman_swp *swp,
        qbman_swp_dqrr_consume(swp, dq);
 }
 static void
-dpaa2_sec_process_atomic_event(struct qbman_swp *swp __attribute__((unused)),
+dpaa2_sec_process_atomic_event(struct qbman_swp *swp __rte_unused,
                                 const struct qbman_fd *fd,
                                 const struct qbman_result *dq,
                                 struct dpaa2_queue *rxq,
@@ -3569,7 +3683,6 @@ static struct rte_cryptodev_ops crypto_ops = {
        .stats_reset          = dpaa2_sec_stats_reset,
        .queue_pair_setup     = dpaa2_sec_queue_pair_setup,
        .queue_pair_release   = dpaa2_sec_queue_pair_release,
-       .queue_pair_count     = dpaa2_sec_queue_pair_count,
        .sym_session_get_size     = dpaa2_sec_sym_session_get_size,
        .sym_session_configure    = dpaa2_sec_sym_session_configure,
        .sym_session_clear        = dpaa2_sec_sym_session_clear,
@@ -3624,10 +3737,6 @@ dpaa2_sec_dev_init(struct rte_cryptodev *cryptodev)
 
        PMD_INIT_FUNC_TRACE();
        dpaa2_dev = container_of(dev, struct rte_dpaa2_device, device);
-       if (dpaa2_dev == NULL) {
-               DPAA2_SEC_ERR("DPAA2 SEC device not found");
-               return -1;
-       }
        hw_id = dpaa2_dev->object_id;
 
        cryptodev->driver_id = cryptodev_driver_id;
@@ -3673,9 +3782,9 @@ dpaa2_sec_dev_init(struct rte_cryptodev *cryptodev)
        if (!dpseci) {
                DPAA2_SEC_ERR(
                        "Error in allocating the memory for dpsec object");
-               return -1;
+               return -ENOMEM;
        }
-       dpseci->regs = rte_mcp_ptr_list[0];
+       dpseci->regs = dpaa2_get_mcp_ptr(MC_PORTAL_INDEX);
 
        retcode = dpseci_open(dpseci, CMD_PRI_LOW, hw_id, &token);
        if (retcode != 0) {
@@ -3757,6 +3866,8 @@ cryptodev_dpaa2_sec_probe(struct rte_dpaa2_driver *dpaa2_drv __rte_unused,
 
        if (dpaa2_svr_family == SVR_LX2160A)
                rta_set_sec_era(RTA_SEC_ERA_10);
+       else
+               rta_set_sec_era(RTA_SEC_ERA_8);
 
        DPAA2_SEC_INFO("2-SEC ERA is %d", rta_get_sec_era());
 
@@ -3805,11 +3916,4 @@ static struct cryptodev_driver dpaa2_sec_crypto_drv;
 RTE_PMD_REGISTER_DPAA2(CRYPTODEV_NAME_DPAA2_SEC_PMD, rte_dpaa2_sec_driver);
 RTE_PMD_REGISTER_CRYPTO_DRIVER(dpaa2_sec_crypto_drv,
                rte_dpaa2_sec_driver.driver, cryptodev_driver_id);
-
-RTE_INIT(dpaa2_sec_init_log)
-{
-       /* Bus level logs */
-       dpaa2_logtype_sec = rte_log_register("pmd.crypto.dpaa2");
-       if (dpaa2_logtype_sec >= 0)
-               rte_log_set_level(dpaa2_logtype_sec, RTE_LOG_NOTICE);
-}
+RTE_LOG_REGISTER(dpaa2_logtype_sec, pmd.crypto.dpaa2, NOTICE);