#include <rte_cryptodev_pmd.h>
#include <rte_crypto.h>
#include <rte_cryptodev.h>
+#ifdef RTE_LIBRTE_SECURITY
#include <rte_security_driver.h>
+#endif
#include <rte_cycles.h>
#include <rte_dev.h>
#include <rte_kvargs.h>
#include <of.h>
/* RTA header files */
-#include <hw/desc/common.h>
-#include <hw/desc/algo.h>
-#include <hw/desc/ipsec.h>
-#include <hw/desc/pdcp.h>
+#include <desc/common.h>
+#include <desc/algo.h>
+#include <desc/ipsec.h>
+#include <desc/pdcp.h>
#include <rte_dpaa_bus.h>
#include <dpaa_sec.h>
+#include <dpaa_sec_event.h>
#include <dpaa_sec_log.h>
#include <dpaax_iova_table.h>
DPAA_SEC_DP_WARN("SEC return err: 0x%x", ctx->fd_status);
ctx->op->status = RTE_CRYPTO_OP_STATUS_ERROR;
}
-
- /* report op status to sym->op and then free the ctx memory */
- rte_mempool_put(ctx->ctx_pool, (void *)ctx);
}
static inline struct dpaa_sec_op_ctx *
-dpaa_sec_alloc_ctx(dpaa_sec_session *ses)
+dpaa_sec_alloc_ctx(dpaa_sec_session *ses, int sg_count)
{
struct dpaa_sec_op_ctx *ctx;
- int retval;
+ int i, retval;
- retval = rte_mempool_get(ses->ctx_pool, (void **)(&ctx));
+ retval = rte_mempool_get(
+ ses->qp[rte_lcore_id() % MAX_DPAA_CORES]->ctx_pool,
+ (void **)(&ctx));
if (!ctx || retval) {
DPAA_SEC_DP_WARN("Alloc sec descriptor failed!");
return NULL;
* to clear all the SG entries. dpaa_sec_alloc_ctx() is called for
* each packet, memset is costlier than dcbz_64().
*/
- dcbz_64(&ctx->job.sg[SG_CACHELINE_0]);
- dcbz_64(&ctx->job.sg[SG_CACHELINE_1]);
- dcbz_64(&ctx->job.sg[SG_CACHELINE_2]);
- dcbz_64(&ctx->job.sg[SG_CACHELINE_3]);
+ for (i = 0; i < sg_count && i < MAX_JOB_SG_ENTRIES; i += 4)
+ dcbz_64(&ctx->job.sg[i]);
- ctx->ctx_pool = ses->ctx_pool;
- ctx->vtop_offset = (size_t) ctx
- - rte_mempool_virt2iova(ctx);
+ ctx->ctx_pool = ses->qp[rte_lcore_id() % MAX_DPAA_CORES]->ctx_pool;
+ ctx->vtop_offset = (size_t) ctx - rte_mempool_virt2iova(ctx);
return ctx;
}
if (ctx->op->sess_type == RTE_CRYPTO_OP_SECURITY_SESSION) {
struct qm_sg_entry *sg_out;
uint32_t len;
+ struct rte_mbuf *mbuf = (ctx->op->sym->m_dst == NULL) ?
+ ctx->op->sym->m_src : ctx->op->sym->m_dst;
sg_out = &job->sg[0];
hw_sg_to_cpu(sg_out);
len = sg_out->length;
- ctx->op->sym->m_src->pkt_len = len;
- ctx->op->sym->m_src->data_len = len;
+ mbuf->pkt_len = len;
+ while (mbuf->next != NULL) {
+ len -= mbuf->data_len;
+ mbuf = mbuf->next;
+ }
+ mbuf->data_len = len;
}
dpaa_sec_ops[dpaa_sec_op_nb++] = ctx->op;
dpaa_sec_op_ending(ctx);
return ret;
}
-static inline int is_cipher_only(dpaa_sec_session *ses)
-{
- return ((ses->cipher_alg != RTE_CRYPTO_CIPHER_NULL) &&
- (ses->auth_alg == RTE_CRYPTO_AUTH_NULL));
-}
-
-static inline int is_auth_only(dpaa_sec_session *ses)
-{
- return ((ses->cipher_alg == RTE_CRYPTO_CIPHER_NULL) &&
- (ses->auth_alg != RTE_CRYPTO_AUTH_NULL));
-}
-
-static inline int is_aead(dpaa_sec_session *ses)
-{
- return ((ses->cipher_alg == 0) &&
- (ses->auth_alg == 0) &&
- (ses->aead_alg != 0));
-}
-
-static inline int is_auth_cipher(dpaa_sec_session *ses)
-{
- return ((ses->cipher_alg != RTE_CRYPTO_CIPHER_NULL) &&
- (ses->auth_alg != RTE_CRYPTO_AUTH_NULL) &&
- (ses->proto_alg != RTE_SECURITY_PROTOCOL_IPSEC));
-}
-
-static inline int is_proto_ipsec(dpaa_sec_session *ses)
-{
- return (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC);
-}
-
-static inline int is_proto_pdcp(dpaa_sec_session *ses)
-{
- return (ses->proto_alg == RTE_SECURITY_PROTOCOL_PDCP);
-}
-
static inline int is_encode(dpaa_sec_session *ses)
{
return ses->dir == DIR_ENC;
return ses->dir == DIR_DEC;
}
-static inline void
-caam_auth_alg(dpaa_sec_session *ses, struct alginfo *alginfo_a)
-{
- switch (ses->auth_alg) {
- case RTE_CRYPTO_AUTH_NULL:
- alginfo_a->algtype =
- (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC) ?
- OP_PCL_IPSEC_HMAC_NULL : 0;
- ses->digest_length = 0;
- break;
- case RTE_CRYPTO_AUTH_MD5_HMAC:
- alginfo_a->algtype =
- (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC) ?
- OP_PCL_IPSEC_HMAC_MD5_96 : OP_ALG_ALGSEL_MD5;
- alginfo_a->algmode = OP_ALG_AAI_HMAC;
- break;
- case RTE_CRYPTO_AUTH_SHA1_HMAC:
- alginfo_a->algtype =
- (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC) ?
- OP_PCL_IPSEC_HMAC_SHA1_96 : OP_ALG_ALGSEL_SHA1;
- alginfo_a->algmode = OP_ALG_AAI_HMAC;
- break;
- case RTE_CRYPTO_AUTH_SHA224_HMAC:
- alginfo_a->algtype =
- (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC) ?
- OP_PCL_IPSEC_HMAC_SHA1_160 : OP_ALG_ALGSEL_SHA224;
- alginfo_a->algmode = OP_ALG_AAI_HMAC;
- break;
- case RTE_CRYPTO_AUTH_SHA256_HMAC:
- alginfo_a->algtype =
- (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC) ?
- OP_PCL_IPSEC_HMAC_SHA2_256_128 : OP_ALG_ALGSEL_SHA256;
- alginfo_a->algmode = OP_ALG_AAI_HMAC;
- break;
- case RTE_CRYPTO_AUTH_SHA384_HMAC:
- alginfo_a->algtype =
- (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC) ?
- OP_PCL_IPSEC_HMAC_SHA2_384_192 : OP_ALG_ALGSEL_SHA384;
- alginfo_a->algmode = OP_ALG_AAI_HMAC;
- break;
- case RTE_CRYPTO_AUTH_SHA512_HMAC:
- alginfo_a->algtype =
- (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC) ?
- OP_PCL_IPSEC_HMAC_SHA2_512_256 : OP_ALG_ALGSEL_SHA512;
- alginfo_a->algmode = OP_ALG_AAI_HMAC;
- break;
- default:
- DPAA_SEC_ERR("unsupported auth alg %u", ses->auth_alg);
- }
-}
-
-static inline void
-caam_cipher_alg(dpaa_sec_session *ses, struct alginfo *alginfo_c)
-{
- switch (ses->cipher_alg) {
- case RTE_CRYPTO_CIPHER_NULL:
- alginfo_c->algtype =
- (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC) ?
- OP_PCL_IPSEC_NULL : 0;
- break;
- case RTE_CRYPTO_CIPHER_AES_CBC:
- alginfo_c->algtype =
- (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC) ?
- OP_PCL_IPSEC_AES_CBC : OP_ALG_ALGSEL_AES;
- alginfo_c->algmode = OP_ALG_AAI_CBC;
- break;
- case RTE_CRYPTO_CIPHER_3DES_CBC:
- alginfo_c->algtype =
- (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC) ?
- OP_PCL_IPSEC_3DES : OP_ALG_ALGSEL_3DES;
- alginfo_c->algmode = OP_ALG_AAI_CBC;
- break;
- case RTE_CRYPTO_CIPHER_AES_CTR:
- alginfo_c->algtype =
- (ses->proto_alg == RTE_SECURITY_PROTOCOL_IPSEC) ?
- OP_PCL_IPSEC_AES_CTR : OP_ALG_ALGSEL_AES;
- alginfo_c->algmode = OP_ALG_AAI_CTR;
- break;
- default:
- DPAA_SEC_ERR("unsupported cipher alg %d", ses->cipher_alg);
- }
-}
-
-static inline void
-caam_aead_alg(dpaa_sec_session *ses, struct alginfo *alginfo)
-{
- switch (ses->aead_alg) {
- case RTE_CRYPTO_AEAD_AES_GCM:
- alginfo->algtype = OP_ALG_ALGSEL_AES;
- alginfo->algmode = OP_ALG_AAI_GCM;
- break;
- default:
- DPAA_SEC_ERR("unsupported AEAD alg %d", ses->aead_alg);
- }
-}
-
+#ifdef RTE_LIBRTE_SECURITY
static int
dpaa_sec_prep_pdcp_cdb(dpaa_sec_session *ses)
{
struct alginfo authdata = {0}, cipherdata = {0};
struct sec_cdb *cdb = &ses->cdb;
+ struct alginfo *p_authdata = NULL;
int32_t shared_desc_len = 0;
int err;
#if RTE_BYTE_ORDER == RTE_BIG_ENDIAN
int swap = true;
#endif
- switch (ses->cipher_alg) {
- case RTE_CRYPTO_CIPHER_SNOW3G_UEA2:
- cipherdata.algtype = PDCP_CIPHER_TYPE_SNOW;
- break;
- case RTE_CRYPTO_CIPHER_ZUC_EEA3:
- cipherdata.algtype = PDCP_CIPHER_TYPE_ZUC;
- break;
- case RTE_CRYPTO_CIPHER_AES_CTR:
- cipherdata.algtype = PDCP_CIPHER_TYPE_AES;
- break;
- case RTE_CRYPTO_CIPHER_NULL:
- cipherdata.algtype = PDCP_CIPHER_TYPE_NULL;
- break;
- default:
- DPAA_SEC_ERR("Crypto: Undefined Cipher specified %u",
- ses->cipher_alg);
- return -1;
- }
-
cipherdata.key = (size_t)ses->cipher_key.data;
cipherdata.keylen = ses->cipher_key.length;
cipherdata.key_enc_flags = 0;
cipherdata.key_type = RTA_DATA_IMM;
+ cipherdata.algtype = ses->cipher_key.alg;
+ cipherdata.algmode = ses->cipher_key.algmode;
- if (ses->pdcp.domain == RTE_SECURITY_PDCP_MODE_CONTROL) {
- switch (ses->auth_alg) {
- case RTE_CRYPTO_AUTH_SNOW3G_UIA2:
- authdata.algtype = PDCP_AUTH_TYPE_SNOW;
- break;
- case RTE_CRYPTO_AUTH_ZUC_EIA3:
- authdata.algtype = PDCP_AUTH_TYPE_ZUC;
- break;
- case RTE_CRYPTO_AUTH_AES_CMAC:
- authdata.algtype = PDCP_AUTH_TYPE_AES;
- break;
- case RTE_CRYPTO_AUTH_NULL:
- authdata.algtype = PDCP_AUTH_TYPE_NULL;
- break;
- default:
- DPAA_SEC_ERR("Crypto: Unsupported auth alg %u",
- ses->auth_alg);
- return -1;
- }
+ cdb->sh_desc[0] = cipherdata.keylen;
+ cdb->sh_desc[1] = 0;
+ cdb->sh_desc[2] = 0;
+ if (ses->auth_alg) {
authdata.key = (size_t)ses->auth_key.data;
authdata.keylen = ses->auth_key.length;
authdata.key_enc_flags = 0;
authdata.key_type = RTA_DATA_IMM;
+ authdata.algtype = ses->auth_key.alg;
+ authdata.algmode = ses->auth_key.algmode;
+
+ p_authdata = &authdata;
- cdb->sh_desc[0] = cipherdata.keylen;
cdb->sh_desc[1] = authdata.keylen;
- err = rta_inline_query(IPSEC_AUTH_VAR_AES_DEC_BASE_DESC_LEN,
- MIN_JOB_DESC_SIZE,
- (unsigned int *)cdb->sh_desc,
- &cdb->sh_desc[2], 2);
+ }
- if (err < 0) {
- DPAA_SEC_ERR("Crypto: Incorrect key lengths");
- return err;
- }
- if (!(cdb->sh_desc[2] & 1) && cipherdata.keylen) {
- cipherdata.key = (size_t)dpaa_mem_vtop(
- (void *)(size_t)cipherdata.key);
- cipherdata.key_type = RTA_DATA_PTR;
- }
- if (!(cdb->sh_desc[2] & (1<<1)) && authdata.keylen) {
- authdata.key = (size_t)dpaa_mem_vtop(
- (void *)(size_t)authdata.key);
- authdata.key_type = RTA_DATA_PTR;
- }
+ err = rta_inline_query(IPSEC_AUTH_VAR_AES_DEC_BASE_DESC_LEN,
+ MIN_JOB_DESC_SIZE,
+ (unsigned int *)cdb->sh_desc,
+ &cdb->sh_desc[2], 2);
+ if (err < 0) {
+ DPAA_SEC_ERR("Crypto: Incorrect key lengths");
+ return err;
+ }
- cdb->sh_desc[0] = 0;
- cdb->sh_desc[1] = 0;
- cdb->sh_desc[2] = 0;
+ if (!(cdb->sh_desc[2] & 1) && cipherdata.keylen) {
+ cipherdata.key =
+ (size_t)dpaa_mem_vtop((void *)(size_t)cipherdata.key);
+ cipherdata.key_type = RTA_DATA_PTR;
+ }
+ if (!(cdb->sh_desc[2] & (1 << 1)) && authdata.keylen) {
+ authdata.key =
+ (size_t)dpaa_mem_vtop((void *)(size_t)authdata.key);
+ authdata.key_type = RTA_DATA_PTR;
+ }
+ cdb->sh_desc[0] = 0;
+ cdb->sh_desc[1] = 0;
+ cdb->sh_desc[2] = 0;
+
+ if (ses->pdcp.domain == RTE_SECURITY_PDCP_MODE_CONTROL) {
if (ses->dir == DIR_ENC)
shared_desc_len = cnstr_shdsc_pdcp_c_plane_encap(
cdb->sh_desc, 1, swap,
&cipherdata, &authdata,
0);
} else {
- cdb->sh_desc[0] = cipherdata.keylen;
- err = rta_inline_query(IPSEC_AUTH_VAR_AES_DEC_BASE_DESC_LEN,
- MIN_JOB_DESC_SIZE,
- (unsigned int *)cdb->sh_desc,
- &cdb->sh_desc[2], 1);
-
- if (err < 0) {
- DPAA_SEC_ERR("Crypto: Incorrect key lengths");
- return err;
- }
- if (!(cdb->sh_desc[2] & 1) && cipherdata.keylen) {
- cipherdata.key = (size_t)dpaa_mem_vtop(
- (void *)(size_t)cipherdata.key);
- cipherdata.key_type = RTA_DATA_PTR;
- }
- cdb->sh_desc[0] = 0;
- cdb->sh_desc[1] = 0;
- cdb->sh_desc[2] = 0;
-
if (ses->dir == DIR_ENC)
shared_desc_len = cnstr_shdsc_pdcp_u_plane_encap(
cdb->sh_desc, 1, swap,
ses->pdcp.bearer,
ses->pdcp.pkt_dir,
ses->pdcp.hfn_threshold,
- &cipherdata, 0);
+ &cipherdata, p_authdata, 0);
else if (ses->dir == DIR_DEC)
shared_desc_len = cnstr_shdsc_pdcp_u_plane_decap(
cdb->sh_desc, 1, swap,
ses->pdcp.bearer,
ses->pdcp.pkt_dir,
ses->pdcp.hfn_threshold,
- &cipherdata, 0);
+ &cipherdata, p_authdata, 0);
}
-
return shared_desc_len;
}
int swap = true;
#endif
- caam_cipher_alg(ses, &cipherdata);
- if (cipherdata.algtype == (unsigned int)DPAA_SEC_ALG_UNSUPPORT) {
- DPAA_SEC_ERR("not supported cipher alg");
- return -ENOTSUP;
- }
-
cipherdata.key = (size_t)ses->cipher_key.data;
cipherdata.keylen = ses->cipher_key.length;
cipherdata.key_enc_flags = 0;
cipherdata.key_type = RTA_DATA_IMM;
-
- caam_auth_alg(ses, &authdata);
- if (authdata.algtype == (unsigned int)DPAA_SEC_ALG_UNSUPPORT) {
- DPAA_SEC_ERR("not supported auth alg");
- return -ENOTSUP;
- }
+ cipherdata.algtype = ses->cipher_key.alg;
+ cipherdata.algmode = ses->cipher_key.algmode;
authdata.key = (size_t)ses->auth_key.data;
authdata.keylen = ses->auth_key.length;
authdata.key_enc_flags = 0;
authdata.key_type = RTA_DATA_IMM;
+ authdata.algtype = ses->auth_key.alg;
+ authdata.algmode = ses->auth_key.algmode;
cdb->sh_desc[0] = cipherdata.keylen;
cdb->sh_desc[1] = authdata.keylen;
}
return shared_desc_len;
}
-
+#endif
/* prepare command block of the session */
static int
dpaa_sec_prep_cdb(dpaa_sec_session *ses)
memset(cdb, 0, sizeof(struct sec_cdb));
- if (is_proto_ipsec(ses)) {
+ switch (ses->ctxt) {
+#ifdef RTE_LIBRTE_SECURITY
+ case DPAA_SEC_IPSEC:
shared_desc_len = dpaa_sec_prep_ipsec_cdb(ses);
- } else if (is_proto_pdcp(ses)) {
+ break;
+ case DPAA_SEC_PDCP:
shared_desc_len = dpaa_sec_prep_pdcp_cdb(ses);
- } else if (is_cipher_only(ses)) {
- caam_cipher_alg(ses, &alginfo_c);
- if (alginfo_c.algtype == (unsigned int)DPAA_SEC_ALG_UNSUPPORT) {
- DPAA_SEC_ERR("not supported cipher alg");
- return -ENOTSUP;
- }
-
+ break;
+#endif
+ case DPAA_SEC_CIPHER:
alginfo_c.key = (size_t)ses->cipher_key.data;
alginfo_c.keylen = ses->cipher_key.length;
alginfo_c.key_enc_flags = 0;
alginfo_c.key_type = RTA_DATA_IMM;
+ alginfo_c.algtype = ses->cipher_key.alg;
+ alginfo_c.algmode = ses->cipher_key.algmode;
- shared_desc_len = cnstr_shdsc_blkcipher(
- cdb->sh_desc, true,
- swap, SHR_NEVER, &alginfo_c,
- NULL,
- ses->iv.length,
- ses->dir);
- } else if (is_auth_only(ses)) {
- caam_auth_alg(ses, &alginfo_a);
- if (alginfo_a.algtype == (unsigned int)DPAA_SEC_ALG_UNSUPPORT) {
- DPAA_SEC_ERR("not supported auth alg");
+ switch (ses->cipher_alg) {
+ case RTE_CRYPTO_CIPHER_AES_CBC:
+ case RTE_CRYPTO_CIPHER_3DES_CBC:
+ case RTE_CRYPTO_CIPHER_AES_CTR:
+ case RTE_CRYPTO_CIPHER_3DES_CTR:
+ shared_desc_len = cnstr_shdsc_blkcipher(
+ cdb->sh_desc, true,
+ swap, SHR_NEVER, &alginfo_c,
+ NULL,
+ ses->iv.length,
+ ses->dir);
+ break;
+ case RTE_CRYPTO_CIPHER_SNOW3G_UEA2:
+ shared_desc_len = cnstr_shdsc_snow_f8(
+ cdb->sh_desc, true, swap,
+ &alginfo_c,
+ ses->dir);
+ break;
+ case RTE_CRYPTO_CIPHER_ZUC_EEA3:
+ shared_desc_len = cnstr_shdsc_zuce(
+ cdb->sh_desc, true, swap,
+ &alginfo_c,
+ ses->dir);
+ break;
+ default:
+ DPAA_SEC_ERR("unsupported cipher alg %d",
+ ses->cipher_alg);
return -ENOTSUP;
}
-
+ break;
+ case DPAA_SEC_AUTH:
alginfo_a.key = (size_t)ses->auth_key.data;
alginfo_a.keylen = ses->auth_key.length;
alginfo_a.key_enc_flags = 0;
alginfo_a.key_type = RTA_DATA_IMM;
-
- shared_desc_len = cnstr_shdsc_hmac(cdb->sh_desc, true,
- swap, SHR_NEVER, &alginfo_a,
- !ses->dir,
- ses->digest_length);
- } else if (is_aead(ses)) {
- caam_aead_alg(ses, &alginfo);
+ alginfo_a.algtype = ses->auth_key.alg;
+ alginfo_a.algmode = ses->auth_key.algmode;
+ switch (ses->auth_alg) {
+ case RTE_CRYPTO_AUTH_MD5_HMAC:
+ case RTE_CRYPTO_AUTH_SHA1_HMAC:
+ case RTE_CRYPTO_AUTH_SHA224_HMAC:
+ case RTE_CRYPTO_AUTH_SHA256_HMAC:
+ case RTE_CRYPTO_AUTH_SHA384_HMAC:
+ case RTE_CRYPTO_AUTH_SHA512_HMAC:
+ shared_desc_len = cnstr_shdsc_hmac(
+ cdb->sh_desc, true,
+ swap, SHR_NEVER, &alginfo_a,
+ !ses->dir,
+ ses->digest_length);
+ break;
+ case RTE_CRYPTO_AUTH_SNOW3G_UIA2:
+ shared_desc_len = cnstr_shdsc_snow_f9(
+ cdb->sh_desc, true, swap,
+ &alginfo_a,
+ !ses->dir,
+ ses->digest_length);
+ break;
+ case RTE_CRYPTO_AUTH_ZUC_EIA3:
+ shared_desc_len = cnstr_shdsc_zuca(
+ cdb->sh_desc, true, swap,
+ &alginfo_a,
+ !ses->dir,
+ ses->digest_length);
+ break;
+ default:
+ DPAA_SEC_ERR("unsupported auth alg %u", ses->auth_alg);
+ }
+ break;
+ case DPAA_SEC_AEAD:
if (alginfo.algtype == (unsigned int)DPAA_SEC_ALG_UNSUPPORT) {
DPAA_SEC_ERR("not supported aead alg");
return -ENOTSUP;
alginfo.keylen = ses->aead_key.length;
alginfo.key_enc_flags = 0;
alginfo.key_type = RTA_DATA_IMM;
+ alginfo.algtype = ses->aead_key.alg;
+ alginfo.algmode = ses->aead_key.algmode;
if (ses->dir == DIR_ENC)
shared_desc_len = cnstr_shdsc_gcm_encap(
&alginfo,
ses->iv.length,
ses->digest_length);
- } else {
- caam_cipher_alg(ses, &alginfo_c);
- if (alginfo_c.algtype == (unsigned int)DPAA_SEC_ALG_UNSUPPORT) {
- DPAA_SEC_ERR("not supported cipher alg");
- return -ENOTSUP;
- }
-
+ break;
+ case DPAA_SEC_CIPHER_HASH:
alginfo_c.key = (size_t)ses->cipher_key.data;
alginfo_c.keylen = ses->cipher_key.length;
alginfo_c.key_enc_flags = 0;
alginfo_c.key_type = RTA_DATA_IMM;
-
- caam_auth_alg(ses, &alginfo_a);
- if (alginfo_a.algtype == (unsigned int)DPAA_SEC_ALG_UNSUPPORT) {
- DPAA_SEC_ERR("not supported auth alg");
- return -ENOTSUP;
- }
+ alginfo_c.algtype = ses->cipher_key.alg;
+ alginfo_c.algmode = ses->cipher_key.algmode;
alginfo_a.key = (size_t)ses->auth_key.data;
alginfo_a.keylen = ses->auth_key.length;
alginfo_a.key_enc_flags = 0;
alginfo_a.key_type = RTA_DATA_IMM;
+ alginfo_a.algtype = ses->auth_key.alg;
+ alginfo_a.algmode = ses->auth_key.algmode;
cdb->sh_desc[0] = alginfo_c.keylen;
cdb->sh_desc[1] = alginfo_a.keylen;
*/
shared_desc_len = cnstr_shdsc_authenc(cdb->sh_desc,
true, swap, SHR_SERIAL, &alginfo_c, &alginfo_a,
- ses->iv.length, 0,
+ ses->iv.length,
ses->digest_length, ses->dir);
+ break;
+ case DPAA_SEC_HASH_CIPHER:
+ default:
+ DPAA_SEC_ERR("error: Unsupported session");
+ return -ENOTSUP;
}
if (shared_desc_len < 0) {
if (op->sess_type == RTE_CRYPTO_OP_SECURITY_SESSION) {
struct qm_sg_entry *sg_out;
uint32_t len;
+ struct rte_mbuf *mbuf = (op->sym->m_dst == NULL) ?
+ op->sym->m_src : op->sym->m_dst;
sg_out = &job->sg[0];
hw_sg_to_cpu(sg_out);
len = sg_out->length;
- op->sym->m_src->pkt_len = len;
- op->sym->m_src->data_len = len;
+ mbuf->pkt_len = len;
+ while (mbuf->next != NULL) {
+ len -= mbuf->data_len;
+ mbuf = mbuf->next;
+ }
+ mbuf->data_len = len;
}
if (!ctx->fd_status) {
op->status = RTE_CRYPTO_OP_STATUS_SUCCESS;
struct qm_sg_entry *sg, *out_sg, *in_sg;
phys_addr_t start_addr;
uint8_t *old_digest, extra_segs;
+ int data_len, data_offset;
+
+ data_len = sym->auth.data.length;
+ data_offset = sym->auth.data.offset;
+
+ if (ses->auth_alg == RTE_CRYPTO_AUTH_SNOW3G_UIA2 ||
+ ses->auth_alg == RTE_CRYPTO_AUTH_ZUC_EIA3) {
+ if ((data_len & 7) || (data_offset & 7)) {
+ DPAA_SEC_ERR("AUTH: len/offset must be full bytes");
+ return NULL;
+ }
+
+ data_len = data_len >> 3;
+ data_offset = data_offset >> 3;
+ }
if (is_decode(ses))
extra_segs = 3;
else
extra_segs = 2;
- if ((mbuf->nb_segs + extra_segs) > MAX_SG_ENTRIES) {
+ if (mbuf->nb_segs > MAX_SG_ENTRIES) {
DPAA_SEC_DP_ERR("Auth: Max sec segs supported is %d",
MAX_SG_ENTRIES);
return NULL;
}
- ctx = dpaa_sec_alloc_ctx(ses);
+ ctx = dpaa_sec_alloc_ctx(ses, mbuf->nb_segs + extra_segs);
if (!ctx)
return NULL;
/* need to extend the input to a compound frame */
in_sg->extension = 1;
in_sg->final = 1;
- in_sg->length = sym->auth.data.length;
+ in_sg->length = data_len;
qm_sg_entry_set64(in_sg, dpaa_mem_vtop(&cf->sg[2]));
/* 1st seg */
sg = in_sg + 1;
- qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
- sg->length = mbuf->data_len - sym->auth.data.offset;
- sg->offset = sym->auth.data.offset;
- /* Successive segs */
- mbuf = mbuf->next;
- while (mbuf) {
+ if (ses->iv.length) {
+ uint8_t *iv_ptr;
+
+ iv_ptr = rte_crypto_op_ctod_offset(op, uint8_t *,
+ ses->iv.offset);
+
+ if (ses->auth_alg == RTE_CRYPTO_AUTH_SNOW3G_UIA2) {
+ iv_ptr = conv_to_snow_f9_iv(iv_ptr);
+ sg->length = 12;
+ } else if (ses->auth_alg == RTE_CRYPTO_AUTH_ZUC_EIA3) {
+ iv_ptr = conv_to_zuc_eia_iv(iv_ptr);
+ sg->length = 8;
+ } else {
+ sg->length = ses->iv.length;
+ }
+ qm_sg_entry_set64(sg, dpaa_mem_vtop(iv_ptr));
+ in_sg->length += sg->length;
cpu_to_hw_sg(sg);
sg++;
- qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
- sg->length = mbuf->data_len;
- mbuf = mbuf->next;
+ }
+
+ qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
+ sg->offset = data_offset;
+
+ if (data_len <= (mbuf->data_len - data_offset)) {
+ sg->length = data_len;
+ } else {
+ sg->length = mbuf->data_len - data_offset;
+
+ /* remaining i/p segs */
+ while ((data_len = data_len - sg->length) &&
+ (mbuf = mbuf->next)) {
+ cpu_to_hw_sg(sg);
+ sg++;
+ qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
+ if (data_len > mbuf->data_len)
+ sg->length = mbuf->data_len;
+ else
+ sg->length = data_len;
+ }
}
if (is_decode(ses)) {
qm_sg_entry_set64(sg, start_addr);
sg->length = ses->digest_length;
in_sg->length += ses->digest_length;
- } else {
- /* Digest calculation case */
- sg->length -= ses->digest_length;
}
sg->final = 1;
cpu_to_hw_sg(sg);
struct rte_mbuf *mbuf = sym->m_src;
struct dpaa_sec_job *cf;
struct dpaa_sec_op_ctx *ctx;
- struct qm_sg_entry *sg;
+ struct qm_sg_entry *sg, *in_sg;
rte_iova_t start_addr;
uint8_t *old_digest;
+ int data_len, data_offset;
+
+ data_len = sym->auth.data.length;
+ data_offset = sym->auth.data.offset;
- ctx = dpaa_sec_alloc_ctx(ses);
+ if (ses->auth_alg == RTE_CRYPTO_AUTH_SNOW3G_UIA2 ||
+ ses->auth_alg == RTE_CRYPTO_AUTH_ZUC_EIA3) {
+ if ((data_len & 7) || (data_offset & 7)) {
+ DPAA_SEC_ERR("AUTH: len/offset must be full bytes");
+ return NULL;
+ }
+
+ data_len = data_len >> 3;
+ data_offset = data_offset >> 3;
+ }
+
+ ctx = dpaa_sec_alloc_ctx(ses, 4);
if (!ctx)
return NULL;
cpu_to_hw_sg(sg);
/* input */
- sg = &cf->sg[1];
- if (is_decode(ses)) {
- /* need to extend the input to a compound frame */
- sg->extension = 1;
- qm_sg_entry_set64(sg, dpaa_mem_vtop(&cf->sg[2]));
- sg->length = sym->auth.data.length + ses->digest_length;
- sg->final = 1;
+ in_sg = &cf->sg[1];
+ /* need to extend the input to a compound frame */
+ in_sg->extension = 1;
+ in_sg->final = 1;
+ in_sg->length = data_len;
+ qm_sg_entry_set64(in_sg, dpaa_mem_vtop(&cf->sg[2]));
+ sg = &cf->sg[2];
+
+ if (ses->iv.length) {
+ uint8_t *iv_ptr;
+
+ iv_ptr = rte_crypto_op_ctod_offset(op, uint8_t *,
+ ses->iv.offset);
+
+ if (ses->auth_alg == RTE_CRYPTO_AUTH_SNOW3G_UIA2) {
+ iv_ptr = conv_to_snow_f9_iv(iv_ptr);
+ sg->length = 12;
+ } else if (ses->auth_alg == RTE_CRYPTO_AUTH_ZUC_EIA3) {
+ iv_ptr = conv_to_zuc_eia_iv(iv_ptr);
+ sg->length = 8;
+ } else {
+ sg->length = ses->iv.length;
+ }
+ qm_sg_entry_set64(sg, dpaa_mem_vtop(iv_ptr));
+ in_sg->length += sg->length;
cpu_to_hw_sg(sg);
+ sg++;
+ }
- sg = &cf->sg[2];
+ qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
+ sg->offset = data_offset;
+ sg->length = data_len;
+
+ if (is_decode(ses)) {
+ /* Digest verification case */
+ cpu_to_hw_sg(sg);
/* hash result or digest, save digest first */
rte_memcpy(old_digest, sym->auth.digest.data,
- ses->digest_length);
- qm_sg_entry_set64(sg, start_addr + sym->auth.data.offset);
- sg->length = sym->auth.data.length;
- cpu_to_hw_sg(sg);
-
+ ses->digest_length);
/* let's check digest by hw */
start_addr = dpaa_mem_vtop(old_digest);
sg++;
qm_sg_entry_set64(sg, start_addr);
sg->length = ses->digest_length;
- sg->final = 1;
- cpu_to_hw_sg(sg);
- } else {
- qm_sg_entry_set64(sg, start_addr + sym->auth.data.offset);
- sg->length = sym->auth.data.length;
- sg->final = 1;
- cpu_to_hw_sg(sg);
+ in_sg->length += ses->digest_length;
}
+ sg->final = 1;
+ cpu_to_hw_sg(sg);
+ cpu_to_hw_sg(in_sg);
return cf;
}
uint8_t req_segs;
uint8_t *IV_ptr = rte_crypto_op_ctod_offset(op, uint8_t *,
ses->iv.offset);
+ int data_len, data_offset;
+
+ data_len = sym->cipher.data.length;
+ data_offset = sym->cipher.data.offset;
+
+ if (ses->cipher_alg == RTE_CRYPTO_CIPHER_SNOW3G_UEA2 ||
+ ses->cipher_alg == RTE_CRYPTO_CIPHER_ZUC_EEA3) {
+ if ((data_len & 7) || (data_offset & 7)) {
+ DPAA_SEC_ERR("CIPHER: len/offset must be full bytes");
+ return NULL;
+ }
+
+ data_len = data_len >> 3;
+ data_offset = data_offset >> 3;
+ }
if (sym->m_dst) {
mbuf = sym->m_dst;
mbuf = sym->m_src;
req_segs = mbuf->nb_segs * 2 + 3;
}
-
- if (req_segs > MAX_SG_ENTRIES) {
+ if (mbuf->nb_segs > MAX_SG_ENTRIES) {
DPAA_SEC_DP_ERR("Cipher: Max sec segs supported is %d",
MAX_SG_ENTRIES);
return NULL;
}
- ctx = dpaa_sec_alloc_ctx(ses);
+ ctx = dpaa_sec_alloc_ctx(ses, req_segs);
if (!ctx)
return NULL;
/* output */
out_sg = &cf->sg[0];
out_sg->extension = 1;
- out_sg->length = sym->cipher.data.length;
+ out_sg->length = data_len;
qm_sg_entry_set64(out_sg, dpaa_mem_vtop(&cf->sg[2]));
cpu_to_hw_sg(out_sg);
/* 1st seg */
sg = &cf->sg[2];
qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
- sg->length = mbuf->data_len - sym->cipher.data.offset;
- sg->offset = sym->cipher.data.offset;
+ sg->length = mbuf->data_len - data_offset;
+ sg->offset = data_offset;
/* Successive segs */
mbuf = mbuf->next;
in_sg = &cf->sg[1];
in_sg->extension = 1;
in_sg->final = 1;
- in_sg->length = sym->cipher.data.length + ses->iv.length;
+ in_sg->length = data_len + ses->iv.length;
sg++;
qm_sg_entry_set64(in_sg, dpaa_mem_vtop(sg));
/* 1st seg */
sg++;
qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
- sg->length = mbuf->data_len - sym->cipher.data.offset;
- sg->offset = sym->cipher.data.offset;
+ sg->length = mbuf->data_len - data_offset;
+ sg->offset = data_offset;
/* Successive segs */
mbuf = mbuf->next;
rte_iova_t src_start_addr, dst_start_addr;
uint8_t *IV_ptr = rte_crypto_op_ctod_offset(op, uint8_t *,
ses->iv.offset);
+ int data_len, data_offset;
+
+ data_len = sym->cipher.data.length;
+ data_offset = sym->cipher.data.offset;
+
+ if (ses->cipher_alg == RTE_CRYPTO_CIPHER_SNOW3G_UEA2 ||
+ ses->cipher_alg == RTE_CRYPTO_CIPHER_ZUC_EEA3) {
+ if ((data_len & 7) || (data_offset & 7)) {
+ DPAA_SEC_ERR("CIPHER: len/offset must be full bytes");
+ return NULL;
+ }
+
+ data_len = data_len >> 3;
+ data_offset = data_offset >> 3;
+ }
- ctx = dpaa_sec_alloc_ctx(ses);
+ ctx = dpaa_sec_alloc_ctx(ses, 4);
if (!ctx)
return NULL;
/* output */
sg = &cf->sg[0];
- qm_sg_entry_set64(sg, dst_start_addr + sym->cipher.data.offset);
- sg->length = sym->cipher.data.length + ses->iv.length;
+ qm_sg_entry_set64(sg, dst_start_addr + data_offset);
+ sg->length = data_len + ses->iv.length;
cpu_to_hw_sg(sg);
/* input */
/* need to extend the input to a compound frame */
sg->extension = 1;
sg->final = 1;
- sg->length = sym->cipher.data.length + ses->iv.length;
+ sg->length = data_len + ses->iv.length;
qm_sg_entry_set64(sg, dpaa_mem_vtop(&cf->sg[2]));
cpu_to_hw_sg(sg);
cpu_to_hw_sg(sg);
sg++;
- qm_sg_entry_set64(sg, src_start_addr + sym->cipher.data.offset);
- sg->length = sym->cipher.data.length;
+ qm_sg_entry_set64(sg, src_start_addr + data_offset);
+ sg->length = data_len;
sg->final = 1;
cpu_to_hw_sg(sg);
if (ses->auth_only_len)
req_segs++;
- if (req_segs > MAX_SG_ENTRIES) {
+ if (mbuf->nb_segs > MAX_SG_ENTRIES) {
DPAA_SEC_DP_ERR("AEAD: Max sec segs supported is %d",
MAX_SG_ENTRIES);
return NULL;
}
- ctx = dpaa_sec_alloc_ctx(ses);
+ ctx = dpaa_sec_alloc_ctx(ses, req_segs);
if (!ctx)
return NULL;
out_sg = &cf->sg[0];
out_sg->extension = 1;
if (is_encode(ses))
- out_sg->length = sym->aead.data.length + ses->auth_only_len
- + ses->digest_length;
+ out_sg->length = sym->aead.data.length + ses->digest_length;
else
- out_sg->length = sym->aead.data.length + ses->auth_only_len;
+ out_sg->length = sym->aead.data.length;
/* output sg entries */
sg = &cf->sg[2];
/* 1st seg */
qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
- sg->length = mbuf->data_len - sym->aead.data.offset +
- ses->auth_only_len;
- sg->offset = sym->aead.data.offset - ses->auth_only_len;
+ sg->length = mbuf->data_len - sym->aead.data.offset;
+ sg->offset = sym->aead.data.offset;
/* Successive segs */
mbuf = mbuf->next;
else
dst_start_addr = src_start_addr;
- ctx = dpaa_sec_alloc_ctx(ses);
+ ctx = dpaa_sec_alloc_ctx(ses, 7);
if (!ctx)
return NULL;
sg++;
qm_sg_entry_set64(&cf->sg[0], dpaa_mem_vtop(sg));
qm_sg_entry_set64(sg,
- dst_start_addr + sym->aead.data.offset - ses->auth_only_len);
- sg->length = sym->aead.data.length + ses->auth_only_len;
+ dst_start_addr + sym->aead.data.offset);
+ sg->length = sym->aead.data.length;
length = sg->length;
if (is_encode(ses)) {
cpu_to_hw_sg(sg);
req_segs = mbuf->nb_segs * 2 + 4;
}
- if (req_segs > MAX_SG_ENTRIES) {
+ if (mbuf->nb_segs > MAX_SG_ENTRIES) {
DPAA_SEC_DP_ERR("Cipher-Auth: Max sec segs supported is %d",
MAX_SG_ENTRIES);
return NULL;
}
- ctx = dpaa_sec_alloc_ctx(ses);
+ ctx = dpaa_sec_alloc_ctx(ses, req_segs);
if (!ctx)
return NULL;
else
dst_start_addr = src_start_addr;
- ctx = dpaa_sec_alloc_ctx(ses);
+ ctx = dpaa_sec_alloc_ctx(ses, 7);
if (!ctx)
return NULL;
return cf;
}
+#ifdef RTE_LIBRTE_SECURITY
static inline struct dpaa_sec_job *
build_proto(struct rte_crypto_op *op, dpaa_sec_session *ses)
{
struct qm_sg_entry *sg;
phys_addr_t src_start_addr, dst_start_addr;
- ctx = dpaa_sec_alloc_ctx(ses);
+ ctx = dpaa_sec_alloc_ctx(ses, 2);
if (!ctx)
return NULL;
cf = &ctx->job;
return cf;
}
+static inline struct dpaa_sec_job *
+build_proto_sg(struct rte_crypto_op *op, dpaa_sec_session *ses)
+{
+ struct rte_crypto_sym_op *sym = op->sym;
+ struct dpaa_sec_job *cf;
+ struct dpaa_sec_op_ctx *ctx;
+ struct qm_sg_entry *sg, *out_sg, *in_sg;
+ struct rte_mbuf *mbuf;
+ uint8_t req_segs;
+ uint32_t in_len = 0, out_len = 0;
+
+ if (sym->m_dst)
+ mbuf = sym->m_dst;
+ else
+ mbuf = sym->m_src;
+
+ req_segs = mbuf->nb_segs + sym->m_src->nb_segs + 2;
+ if (mbuf->nb_segs > MAX_SG_ENTRIES) {
+ DPAA_SEC_DP_ERR("Proto: Max sec segs supported is %d",
+ MAX_SG_ENTRIES);
+ return NULL;
+ }
+
+ ctx = dpaa_sec_alloc_ctx(ses, req_segs);
+ if (!ctx)
+ return NULL;
+ cf = &ctx->job;
+ ctx->op = op;
+ /* output */
+ out_sg = &cf->sg[0];
+ out_sg->extension = 1;
+ qm_sg_entry_set64(out_sg, dpaa_mem_vtop(&cf->sg[2]));
+
+ /* 1st seg */
+ sg = &cf->sg[2];
+ qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
+ sg->offset = 0;
+
+ /* Successive segs */
+ while (mbuf->next) {
+ sg->length = mbuf->data_len;
+ out_len += sg->length;
+ mbuf = mbuf->next;
+ cpu_to_hw_sg(sg);
+ sg++;
+ qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
+ sg->offset = 0;
+ }
+ sg->length = mbuf->buf_len - mbuf->data_off;
+ out_len += sg->length;
+ sg->final = 1;
+ cpu_to_hw_sg(sg);
+
+ out_sg->length = out_len;
+ cpu_to_hw_sg(out_sg);
+
+ /* input */
+ mbuf = sym->m_src;
+ in_sg = &cf->sg[1];
+ in_sg->extension = 1;
+ in_sg->final = 1;
+ in_len = mbuf->data_len;
+
+ sg++;
+ qm_sg_entry_set64(in_sg, dpaa_mem_vtop(sg));
+
+ /* 1st seg */
+ qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
+ sg->length = mbuf->data_len;
+ sg->offset = 0;
+
+ /* Successive segs */
+ mbuf = mbuf->next;
+ while (mbuf) {
+ cpu_to_hw_sg(sg);
+ sg++;
+ qm_sg_entry_set64(sg, rte_pktmbuf_mtophys(mbuf));
+ sg->length = mbuf->data_len;
+ sg->offset = 0;
+ in_len += sg->length;
+ mbuf = mbuf->next;
+ }
+ sg->final = 1;
+ cpu_to_hw_sg(sg);
+
+ in_sg->length = in_len;
+ cpu_to_hw_sg(in_sg);
+
+ sym->m_src->packet_type &= ~RTE_PTYPE_L4_MASK;
+
+ return cf;
+}
+#endif
+
static uint16_t
dpaa_sec_enqueue_burst(void *qp, struct rte_crypto_op **ops,
uint16_t nb_ops)
struct rte_crypto_op *op;
struct dpaa_sec_job *cf;
dpaa_sec_session *ses;
- uint32_t auth_only_len;
+ uint16_t auth_hdr_len, auth_tail_len;
+ uint32_t index, flags[DPAA_SEC_BURST] = {0};
struct qman_fq *inq[DPAA_SEC_BURST];
while (nb_ops) {
DPAA_SEC_BURST : nb_ops;
for (loop = 0; loop < frames_to_send; loop++) {
op = *(ops++);
+ if (op->sym->m_src->seqn != 0) {
+ index = op->sym->m_src->seqn - 1;
+ if (DPAA_PER_LCORE_DQRR_HELD & (1 << index)) {
+ /* QM_EQCR_DCA_IDXMASK = 0x0f */
+ flags[loop] = ((index & 0x0f) << 8);
+ flags[loop] |= QMAN_ENQUEUE_FLAG_DCA;
+ DPAA_PER_LCORE_DQRR_SIZE--;
+ DPAA_PER_LCORE_DQRR_HELD &=
+ ~(1 << index);
+ }
+ }
+
switch (op->sess_type) {
case RTE_CRYPTO_OP_WITH_SESSION:
ses = (dpaa_sec_session *)
op->sym->session,
cryptodev_driver_id);
break;
+#ifdef RTE_LIBRTE_SECURITY
case RTE_CRYPTO_OP_SECURITY_SESSION:
ses = (dpaa_sec_session *)
get_sec_session_private_data(
op->sym->sec_session);
break;
+#endif
default:
DPAA_SEC_DP_ERR(
"sessionless crypto op not supported");
goto send_pkts;
}
- auth_only_len = op->sym->auth.data.length -
+ auth_hdr_len = op->sym->auth.data.length -
op->sym->cipher.data.length;
- if (rte_pktmbuf_is_contiguous(op->sym->m_src)) {
- if (is_proto_ipsec(ses)) {
- cf = build_proto(op, ses);
- } else if (is_proto_pdcp(ses)) {
+ auth_tail_len = 0;
+
+ if (rte_pktmbuf_is_contiguous(op->sym->m_src) &&
+ ((op->sym->m_dst == NULL) ||
+ rte_pktmbuf_is_contiguous(op->sym->m_dst))) {
+ switch (ses->ctxt) {
+#ifdef RTE_LIBRTE_SECURITY
+ case DPAA_SEC_PDCP:
+ case DPAA_SEC_IPSEC:
cf = build_proto(op, ses);
- } else if (is_auth_only(ses)) {
+ break;
+#endif
+ case DPAA_SEC_AUTH:
cf = build_auth_only(op, ses);
- } else if (is_cipher_only(ses)) {
+ break;
+ case DPAA_SEC_CIPHER:
cf = build_cipher_only(op, ses);
- } else if (is_aead(ses)) {
+ break;
+ case DPAA_SEC_AEAD:
cf = build_cipher_auth_gcm(op, ses);
- auth_only_len = ses->auth_only_len;
- } else if (is_auth_cipher(ses)) {
+ auth_hdr_len = ses->auth_only_len;
+ break;
+ case DPAA_SEC_CIPHER_HASH:
+ auth_hdr_len =
+ op->sym->cipher.data.offset
+ - op->sym->auth.data.offset;
+ auth_tail_len =
+ op->sym->auth.data.length
+ - op->sym->cipher.data.length
+ - auth_hdr_len;
cf = build_cipher_auth(op, ses);
- } else {
+ break;
+ default:
DPAA_SEC_DP_ERR("not supported ops");
frames_to_send = loop;
nb_ops = loop;
goto send_pkts;
}
} else {
- if (is_auth_only(ses)) {
+ switch (ses->ctxt) {
+#ifdef RTE_LIBRTE_SECURITY
+ case DPAA_SEC_PDCP:
+ case DPAA_SEC_IPSEC:
+ cf = build_proto_sg(op, ses);
+ break;
+#endif
+ case DPAA_SEC_AUTH:
cf = build_auth_only_sg(op, ses);
- } else if (is_cipher_only(ses)) {
+ break;
+ case DPAA_SEC_CIPHER:
cf = build_cipher_only_sg(op, ses);
- } else if (is_aead(ses)) {
+ break;
+ case DPAA_SEC_AEAD:
cf = build_cipher_auth_gcm_sg(op, ses);
- auth_only_len = ses->auth_only_len;
- } else if (is_auth_cipher(ses)) {
+ auth_hdr_len = ses->auth_only_len;
+ break;
+ case DPAA_SEC_CIPHER_HASH:
+ auth_hdr_len =
+ op->sym->cipher.data.offset
+ - op->sym->auth.data.offset;
+ auth_tail_len =
+ op->sym->auth.data.length
+ - op->sym->cipher.data.length
+ - auth_hdr_len;
cf = build_cipher_auth_sg(op, ses);
- } else {
+ break;
+ default:
DPAA_SEC_DP_ERR("not supported ops");
frames_to_send = loop;
nb_ops = loop;
qm_fd_addr_set64(fd, dpaa_mem_vtop(cf->sg));
fd->_format1 = qm_fd_compound;
fd->length29 = 2 * sizeof(struct qm_sg_entry);
+
/* Auth_only_len is set as 0 in descriptor and it is
* overwritten here in the fd.cmd which will update
* the DPOVRD reg.
*/
- if (auth_only_len)
- fd->cmd = 0x80000000 | auth_only_len;
+ if (auth_hdr_len || auth_tail_len) {
+ fd->cmd = 0x80000000;
+ fd->cmd |=
+ ((auth_tail_len << 16) | auth_hdr_len);
+ }
+#ifdef RTE_LIBRTE_SECURITY
+ /* In case of PDCP, per packet HFN is stored in
+ * mbuf priv after sym_op.
+ */
+ if ((ses->ctxt == DPAA_SEC_PDCP) && ses->pdcp.hfn_ovd) {
+ fd->cmd = 0x80000000 |
+ *((uint32_t *)((uint8_t *)op +
+ ses->pdcp.hfn_ovd_offset));
+ DPAA_SEC_DP_DEBUG("Per packet HFN: %x, ovd:%u\n",
+ *((uint32_t *)((uint8_t *)op +
+ ses->pdcp.hfn_ovd_offset)),
+ ses->pdcp.hfn_ovd);
+ }
+#endif
}
send_pkts:
loop = 0;
while (loop < frames_to_send) {
loop += qman_enqueue_multi_fq(&inq[loop], &fds[loop],
- frames_to_send - loop);
+ &flags[loop], frames_to_send - loop);
}
nb_ops -= frames_to_send;
num_tx += frames_to_send;
}
qp = &internals->qps[qp_id];
+ rte_mempool_free(qp->ctx_pool);
qp->internals = NULL;
dev->data->queue_pairs[qp_id] = NULL;
{
struct dpaa_sec_dev_private *internals;
struct dpaa_sec_qp *qp = NULL;
+ char str[20];
DPAA_SEC_DEBUG("dev =%p, queue =%d, conf =%p", dev, qp_id, qp_conf);
qp = &internals->qps[qp_id];
qp->internals = internals;
+ snprintf(str, sizeof(str), "ctx_pool_d%d_qp%d",
+ dev->data->dev_id, qp_id);
+ if (!qp->ctx_pool) {
+ qp->ctx_pool = rte_mempool_create((const char *)str,
+ CTX_POOL_NUM_BUFS,
+ CTX_POOL_BUF_SIZE,
+ CTX_POOL_CACHE_SIZE, 0,
+ NULL, NULL, NULL, NULL,
+ SOCKET_ID_ANY, 0);
+ if (!qp->ctx_pool) {
+ DPAA_SEC_ERR("%s create failed\n", str);
+ return -ENOMEM;
+ }
+ } else
+ DPAA_SEC_INFO("mempool already created for dev_id : %d, qp: %d",
+ dev->data->dev_id, qp_id);
dev->data->queue_pairs[qp_id] = qp;
return 0;
DPAA_SEC_ERR("No Memory for cipher key");
return -ENOMEM;
}
- session->cipher_key.length = xform->cipher.key.length;
+ session->cipher_key.length = xform->cipher.key.length;
+
+ memcpy(session->cipher_key.data, xform->cipher.key.data,
+ xform->cipher.key.length);
+ switch (xform->cipher.algo) {
+ case RTE_CRYPTO_CIPHER_AES_CBC:
+ session->cipher_key.alg = OP_ALG_ALGSEL_AES;
+ session->cipher_key.algmode = OP_ALG_AAI_CBC;
+ break;
+ case RTE_CRYPTO_CIPHER_3DES_CBC:
+ session->cipher_key.alg = OP_ALG_ALGSEL_3DES;
+ session->cipher_key.algmode = OP_ALG_AAI_CBC;
+ break;
+ case RTE_CRYPTO_CIPHER_AES_CTR:
+ session->cipher_key.alg = OP_ALG_ALGSEL_AES;
+ session->cipher_key.algmode = OP_ALG_AAI_CTR;
+ break;
+ case RTE_CRYPTO_CIPHER_SNOW3G_UEA2:
+ session->cipher_key.alg = OP_ALG_ALGSEL_SNOW_F8;
+ break;
+ case RTE_CRYPTO_CIPHER_ZUC_EEA3:
+ session->cipher_key.alg = OP_ALG_ALGSEL_ZUCE;
+ break;
+ default:
+ DPAA_SEC_ERR("Crypto: Undefined Cipher specified %u",
+ xform->cipher.algo);
+ rte_free(session->cipher_key.data);
+ return -1;
+ }
+ session->dir = (xform->cipher.op == RTE_CRYPTO_CIPHER_OP_ENCRYPT) ?
+ DIR_ENC : DIR_DEC;
+
+ return 0;
+}
+
+static int
+dpaa_sec_auth_init(struct rte_cryptodev *dev __rte_unused,
+ struct rte_crypto_sym_xform *xform,
+ dpaa_sec_session *session)
+{
+ session->auth_alg = xform->auth.algo;
+ session->auth_key.data = rte_zmalloc(NULL, xform->auth.key.length,
+ RTE_CACHE_LINE_SIZE);
+ if (session->auth_key.data == NULL && xform->auth.key.length > 0) {
+ DPAA_SEC_ERR("No Memory for auth key");
+ return -ENOMEM;
+ }
+ session->auth_key.length = xform->auth.key.length;
+ session->digest_length = xform->auth.digest_length;
+ if (session->cipher_alg == RTE_CRYPTO_CIPHER_NULL) {
+ session->iv.offset = xform->auth.iv.offset;
+ session->iv.length = xform->auth.iv.length;
+ }
+
+ memcpy(session->auth_key.data, xform->auth.key.data,
+ xform->auth.key.length);
+
+ switch (xform->auth.algo) {
+ case RTE_CRYPTO_AUTH_SHA1_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_SHA1;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_MD5_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_MD5;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_SHA224_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_SHA224;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_SHA256_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_SHA256;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_SHA384_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_SHA384;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_SHA512_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_SHA512;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_SNOW3G_UIA2:
+ session->auth_key.alg = OP_ALG_ALGSEL_SNOW_F9;
+ session->auth_key.algmode = OP_ALG_AAI_F9;
+ break;
+ case RTE_CRYPTO_AUTH_ZUC_EIA3:
+ session->auth_key.alg = OP_ALG_ALGSEL_ZUCA;
+ session->auth_key.algmode = OP_ALG_AAI_F9;
+ break;
+ default:
+ DPAA_SEC_ERR("Crypto: Unsupported Auth specified %u",
+ xform->auth.algo);
+ rte_free(session->auth_key.data);
+ return -1;
+ }
- memcpy(session->cipher_key.data, xform->cipher.key.data,
- xform->cipher.key.length);
- session->dir = (xform->cipher.op == RTE_CRYPTO_CIPHER_OP_ENCRYPT) ?
+ session->dir = (xform->auth.op == RTE_CRYPTO_AUTH_OP_GENERATE) ?
DIR_ENC : DIR_DEC;
return 0;
}
static int
-dpaa_sec_auth_init(struct rte_cryptodev *dev __rte_unused,
+dpaa_sec_chain_init(struct rte_cryptodev *dev __rte_unused,
struct rte_crypto_sym_xform *xform,
dpaa_sec_session *session)
{
- session->auth_alg = xform->auth.algo;
- session->auth_key.data = rte_zmalloc(NULL, xform->auth.key.length,
+
+ struct rte_crypto_cipher_xform *cipher_xform;
+ struct rte_crypto_auth_xform *auth_xform;
+
+ if (session->auth_cipher_text) {
+ cipher_xform = &xform->cipher;
+ auth_xform = &xform->next->auth;
+ } else {
+ cipher_xform = &xform->next->cipher;
+ auth_xform = &xform->auth;
+ }
+
+ /* Set IV parameters */
+ session->iv.offset = cipher_xform->iv.offset;
+ session->iv.length = cipher_xform->iv.length;
+
+ session->cipher_key.data = rte_zmalloc(NULL, cipher_xform->key.length,
+ RTE_CACHE_LINE_SIZE);
+ if (session->cipher_key.data == NULL && cipher_xform->key.length > 0) {
+ DPAA_SEC_ERR("No Memory for cipher key");
+ return -1;
+ }
+ session->cipher_key.length = cipher_xform->key.length;
+ session->auth_key.data = rte_zmalloc(NULL, auth_xform->key.length,
RTE_CACHE_LINE_SIZE);
- if (session->auth_key.data == NULL && xform->auth.key.length > 0) {
+ if (session->auth_key.data == NULL && auth_xform->key.length > 0) {
DPAA_SEC_ERR("No Memory for auth key");
+ rte_free(session->cipher_key.data);
return -ENOMEM;
}
- session->auth_key.length = xform->auth.key.length;
- session->digest_length = xform->auth.digest_length;
+ session->auth_key.length = auth_xform->key.length;
+ memcpy(session->cipher_key.data, cipher_xform->key.data,
+ cipher_xform->key.length);
+ memcpy(session->auth_key.data, auth_xform->key.data,
+ auth_xform->key.length);
- memcpy(session->auth_key.data, xform->auth.key.data,
- xform->auth.key.length);
- session->dir = (xform->auth.op == RTE_CRYPTO_AUTH_OP_GENERATE) ?
- DIR_ENC : DIR_DEC;
+ session->digest_length = auth_xform->digest_length;
+ session->auth_alg = auth_xform->algo;
+
+ switch (auth_xform->algo) {
+ case RTE_CRYPTO_AUTH_SHA1_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_SHA1;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_MD5_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_MD5;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_SHA224_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_SHA224;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_SHA256_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_SHA256;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_SHA384_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_SHA384;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_SHA512_HMAC:
+ session->auth_key.alg = OP_ALG_ALGSEL_SHA512;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ default:
+ DPAA_SEC_ERR("Crypto: Unsupported Auth specified %u",
+ auth_xform->algo);
+ goto error_out;
+ }
+
+ session->cipher_alg = cipher_xform->algo;
+ switch (cipher_xform->algo) {
+ case RTE_CRYPTO_CIPHER_AES_CBC:
+ session->cipher_key.alg = OP_ALG_ALGSEL_AES;
+ session->cipher_key.algmode = OP_ALG_AAI_CBC;
+ break;
+ case RTE_CRYPTO_CIPHER_3DES_CBC:
+ session->cipher_key.alg = OP_ALG_ALGSEL_3DES;
+ session->cipher_key.algmode = OP_ALG_AAI_CBC;
+ break;
+ case RTE_CRYPTO_CIPHER_AES_CTR:
+ session->cipher_key.alg = OP_ALG_ALGSEL_AES;
+ session->cipher_key.algmode = OP_ALG_AAI_CTR;
+ break;
+ default:
+ DPAA_SEC_ERR("Crypto: Undefined Cipher specified %u",
+ cipher_xform->algo);
+ goto error_out;
+ }
+ session->dir = (cipher_xform->op == RTE_CRYPTO_CIPHER_OP_ENCRYPT) ?
+ DIR_ENC : DIR_DEC;
return 0;
+
+error_out:
+ rte_free(session->cipher_key.data);
+ rte_free(session->auth_key.data);
+ return -1;
}
static int
dpaa_sec_session *session)
{
session->aead_alg = xform->aead.algo;
+ session->ctxt = DPAA_SEC_AEAD;
session->iv.length = xform->aead.iv.length;
session->iv.offset = xform->aead.iv.offset;
session->auth_only_len = xform->aead.aad_length;
memcpy(session->aead_key.data, xform->aead.key.data,
xform->aead.key.length);
+
+ switch (session->aead_alg) {
+ case RTE_CRYPTO_AEAD_AES_GCM:
+ session->aead_key.alg = OP_ALG_ALGSEL_AES;
+ session->aead_key.algmode = OP_ALG_AAI_GCM;
+ break;
+ default:
+ DPAA_SEC_ERR("unsupported AEAD alg %d", session->aead_alg);
+ rte_free(session->aead_key.data);
+ return -ENOMEM;
+ }
+
session->dir = (xform->aead.op == RTE_CRYPTO_AEAD_OP_ENCRYPT) ?
DIR_ENC : DIR_DEC;
/* Cipher Only */
if (xform->type == RTE_CRYPTO_SYM_XFORM_CIPHER && xform->next == NULL) {
session->auth_alg = RTE_CRYPTO_AUTH_NULL;
+ session->ctxt = DPAA_SEC_CIPHER;
dpaa_sec_cipher_init(dev, xform, session);
/* Authentication Only */
} else if (xform->type == RTE_CRYPTO_SYM_XFORM_AUTH &&
xform->next == NULL) {
session->cipher_alg = RTE_CRYPTO_CIPHER_NULL;
+ session->ctxt = DPAA_SEC_AUTH;
dpaa_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) {
if (xform->cipher.op == RTE_CRYPTO_CIPHER_OP_ENCRYPT) {
- dpaa_sec_cipher_init(dev, xform, session);
- dpaa_sec_auth_init(dev, xform->next, session);
+ session->ctxt = DPAA_SEC_CIPHER_HASH;
+ session->auth_cipher_text = 1;
+ dpaa_sec_chain_init(dev, xform, session);
} else {
DPAA_SEC_ERR("Not supported: Auth then Cipher");
return -EINVAL;
}
-
/* Authenticate then Cipher */
} else if (xform->type == RTE_CRYPTO_SYM_XFORM_AUTH &&
xform->next->type == RTE_CRYPTO_SYM_XFORM_CIPHER) {
if (xform->next->cipher.op == RTE_CRYPTO_CIPHER_OP_DECRYPT) {
- dpaa_sec_auth_init(dev, xform, session);
- dpaa_sec_cipher_init(dev, xform->next, session);
+ session->ctxt = DPAA_SEC_CIPHER_HASH;
+ session->auth_cipher_text = 0;
+ dpaa_sec_chain_init(dev, xform, session);
} else {
DPAA_SEC_ERR("Not supported: Auth then Cipher");
return -EINVAL;
DPAA_SEC_ERR("Invalid crypto type");
return -EINVAL;
}
- session->ctx_pool = internals->ctx_pool;
rte_spinlock_lock(&internals->lock);
for (i = 0; i < MAX_DPAA_CORES; i++) {
session->inq[i] = dpaa_sec_attach_rxq(internals);
}
}
+#ifdef RTE_LIBRTE_SECURITY
static int
dpaa_sec_set_ipsec_session(__rte_unused struct rte_cryptodev *dev,
struct rte_security_session_conf *conf,
cipher_xform = &conf->crypto_xform->next->cipher;
}
session->proto_alg = conf->protocol;
+ session->ctxt = DPAA_SEC_IPSEC;
if (cipher_xform && cipher_xform->algo != RTE_CRYPTO_CIPHER_NULL) {
session->cipher_key.data = rte_zmalloc(NULL,
session->cipher_key.length = cipher_xform->key.length;
switch (cipher_xform->algo) {
+ case RTE_CRYPTO_CIPHER_NULL:
+ session->cipher_key.alg = OP_PCL_IPSEC_NULL;
+ break;
case RTE_CRYPTO_CIPHER_AES_CBC:
+ session->cipher_key.alg = OP_PCL_IPSEC_AES_CBC;
+ session->cipher_key.algmode = OP_ALG_AAI_CBC;
+ break;
case RTE_CRYPTO_CIPHER_3DES_CBC:
+ session->cipher_key.alg = OP_PCL_IPSEC_3DES;
+ session->cipher_key.algmode = OP_ALG_AAI_CBC;
+ break;
case RTE_CRYPTO_CIPHER_AES_CTR:
+ session->cipher_key.alg = OP_PCL_IPSEC_AES_CTR;
+ session->cipher_key.algmode = OP_ALG_AAI_CTR;
break;
default:
DPAA_SEC_ERR("Crypto: Unsupported Cipher alg %u",
session->auth_key.length = auth_xform->key.length;
switch (auth_xform->algo) {
- case RTE_CRYPTO_AUTH_SHA1_HMAC:
+ case RTE_CRYPTO_AUTH_NULL:
+ session->auth_key.alg = OP_PCL_IPSEC_HMAC_NULL;
+ session->digest_length = 0;
+ break;
case RTE_CRYPTO_AUTH_MD5_HMAC:
+ session->auth_key.alg = OP_PCL_IPSEC_HMAC_MD5_96;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_SHA1_HMAC:
+ session->auth_key.alg = OP_PCL_IPSEC_HMAC_SHA1_96;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
+ case RTE_CRYPTO_AUTH_SHA224_HMAC:
+ session->auth_key.alg = OP_PCL_IPSEC_HMAC_SHA1_160;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
case RTE_CRYPTO_AUTH_SHA256_HMAC:
+ session->auth_key.alg = OP_PCL_IPSEC_HMAC_SHA2_256_128;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
case RTE_CRYPTO_AUTH_SHA384_HMAC:
+ session->auth_key.alg = OP_PCL_IPSEC_HMAC_SHA2_384_192;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
+ break;
case RTE_CRYPTO_AUTH_SHA512_HMAC:
- case RTE_CRYPTO_AUTH_AES_CMAC:
+ session->auth_key.alg = OP_PCL_IPSEC_HMAC_SHA2_512_256;
+ session->auth_key.algmode = OP_ALG_AAI_HMAC;
break;
default:
DPAA_SEC_ERR("Crypto: Unsupported auth alg %u",
session->dir = DIR_DEC;
} else
goto out;
- session->ctx_pool = internals->ctx_pool;
rte_spinlock_lock(&internals->lock);
for (i = 0; i < MAX_DPAA_CORES; i++) {
session->inq[i] = dpaa_sec_attach_rxq(internals);
}
session->proto_alg = conf->protocol;
+ session->ctxt = DPAA_SEC_PDCP;
+
if (cipher_xform) {
+ switch (cipher_xform->algo) {
+ case RTE_CRYPTO_CIPHER_SNOW3G_UEA2:
+ session->cipher_key.alg = PDCP_CIPHER_TYPE_SNOW;
+ break;
+ case RTE_CRYPTO_CIPHER_ZUC_EEA3:
+ session->cipher_key.alg = PDCP_CIPHER_TYPE_ZUC;
+ break;
+ case RTE_CRYPTO_CIPHER_AES_CTR:
+ session->cipher_key.alg = PDCP_CIPHER_TYPE_AES;
+ break;
+ case RTE_CRYPTO_CIPHER_NULL:
+ session->cipher_key.alg = PDCP_CIPHER_TYPE_NULL;
+ break;
+ default:
+ DPAA_SEC_ERR("Crypto: Undefined Cipher specified %u",
+ session->cipher_alg);
+ return -1;
+ }
+
session->cipher_key.data = rte_zmalloc(NULL,
cipher_xform->key.length,
RTE_CACHE_LINE_SIZE);
session->dir = DIR_ENC;
}
- /* Auth is only applicable for control mode operation. */
if (pdcp_xform->domain == RTE_SECURITY_PDCP_MODE_CONTROL) {
if (pdcp_xform->sn_size != RTE_SECURITY_PDCP_SN_SIZE_5 &&
pdcp_xform->sn_size != RTE_SECURITY_PDCP_SN_SIZE_12) {
"PDCP Seq Num size should be 5/12 bits for cmode");
goto out;
}
- if (auth_xform) {
- session->auth_key.data = rte_zmalloc(NULL,
- auth_xform->key.length,
- RTE_CACHE_LINE_SIZE);
- if (session->auth_key.data == NULL &&
- auth_xform->key.length > 0) {
- DPAA_SEC_ERR("No Memory for auth key");
- rte_free(session->cipher_key.data);
- return -ENOMEM;
- }
- session->auth_key.length = auth_xform->key.length;
- memcpy(session->auth_key.data, auth_xform->key.data,
- auth_xform->key.length);
- session->auth_alg = auth_xform->algo;
- } else {
- session->auth_key.data = NULL;
- session->auth_key.length = 0;
- session->auth_alg = RTE_CRYPTO_AUTH_NULL;
+ }
+
+ if (auth_xform) {
+ switch (auth_xform->algo) {
+ case RTE_CRYPTO_AUTH_SNOW3G_UIA2:
+ session->auth_key.alg = PDCP_AUTH_TYPE_SNOW;
+ break;
+ case RTE_CRYPTO_AUTH_ZUC_EIA3:
+ session->auth_key.alg = PDCP_AUTH_TYPE_ZUC;
+ break;
+ case RTE_CRYPTO_AUTH_AES_CMAC:
+ session->auth_key.alg = PDCP_AUTH_TYPE_AES;
+ break;
+ case RTE_CRYPTO_AUTH_NULL:
+ session->auth_key.alg = PDCP_AUTH_TYPE_NULL;
+ break;
+ default:
+ DPAA_SEC_ERR("Crypto: Unsupported auth alg %u",
+ session->auth_alg);
+ rte_free(session->cipher_key.data);
+ return -1;
+ }
+ session->auth_key.data = rte_zmalloc(NULL,
+ auth_xform->key.length,
+ RTE_CACHE_LINE_SIZE);
+ if (!session->auth_key.data &&
+ auth_xform->key.length > 0) {
+ DPAA_SEC_ERR("No Memory for auth key");
+ rte_free(session->cipher_key.data);
+ return -ENOMEM;
}
+ session->auth_key.length = auth_xform->key.length;
+ memcpy(session->auth_key.data, auth_xform->key.data,
+ auth_xform->key.length);
+ session->auth_alg = auth_xform->algo;
+ } else {
+ session->auth_key.data = NULL;
+ session->auth_key.length = 0;
+ session->auth_alg = 0;
}
session->pdcp.domain = pdcp_xform->domain;
session->pdcp.bearer = pdcp_xform->bearer;
session->pdcp.pkt_dir = pdcp_xform->pkt_dir;
session->pdcp.sn_size = pdcp_xform->sn_size;
-#ifdef ENABLE_HFN_OVERRIDE
- session->pdcp.hfn_ovd = pdcp_xform->hfn_ovd;
-#endif
session->pdcp.hfn = pdcp_xform->hfn;
session->pdcp.hfn_threshold = pdcp_xform->hfn_threshold;
+ session->pdcp.hfn_ovd = pdcp_xform->hfn_ovrd;
+ session->pdcp.hfn_ovd_offset = cipher_xform->iv.offset;
- session->ctx_pool = dev_priv->ctx_pool;
rte_spinlock_lock(&dev_priv->lock);
for (i = 0; i < MAX_DPAA_CORES; i++) {
session->inq[i] = dpaa_sec_attach_rxq(dev_priv);
}
return 0;
}
-
+#endif
static int
-dpaa_sec_dev_configure(struct rte_cryptodev *dev,
+dpaa_sec_dev_configure(struct rte_cryptodev *dev __rte_unused,
struct rte_cryptodev_config *config __rte_unused)
{
-
- char str[20];
- struct dpaa_sec_dev_private *internals;
-
PMD_INIT_FUNC_TRACE();
- internals = dev->data->dev_private;
- snprintf(str, sizeof(str), "ctx_pool_%d", dev->data->dev_id);
- if (!internals->ctx_pool) {
- internals->ctx_pool = rte_mempool_create((const char *)str,
- CTX_POOL_NUM_BUFS,
- CTX_POOL_BUF_SIZE,
- CTX_POOL_CACHE_SIZE, 0,
- NULL, NULL, NULL, NULL,
- SOCKET_ID_ANY, 0);
- if (!internals->ctx_pool) {
- DPAA_SEC_ERR("%s create failed\n", str);
- return -ENOMEM;
- }
- } else
- DPAA_SEC_INFO("mempool already created for dev_id : %d",
- dev->data->dev_id);
-
return 0;
}
static int
dpaa_sec_dev_close(struct rte_cryptodev *dev)
{
- struct dpaa_sec_dev_private *internals;
-
PMD_INIT_FUNC_TRACE();
if (dev == NULL)
return -ENOMEM;
- internals = dev->data->dev_private;
- rte_mempool_free(internals->ctx_pool);
- internals->ctx_pool = NULL;
-
return 0;
}
}
}
+static enum qman_cb_dqrr_result
+dpaa_sec_process_parallel_event(void *event,
+ struct qman_portal *qm __always_unused,
+ struct qman_fq *outq,
+ const struct qm_dqrr_entry *dqrr,
+ void **bufs)
+{
+ const struct qm_fd *fd;
+ struct dpaa_sec_job *job;
+ struct dpaa_sec_op_ctx *ctx;
+ struct rte_event *ev = (struct rte_event *)event;
+
+ fd = &dqrr->fd;
+
+ /* sg is embedded in an op ctx,
+ * sg[0] is for output
+ * sg[1] for input
+ */
+ job = dpaa_mem_ptov(qm_fd_addr_get64(fd));
+
+ ctx = container_of(job, struct dpaa_sec_op_ctx, job);
+ ctx->fd_status = fd->status;
+ if (ctx->op->sess_type == RTE_CRYPTO_OP_SECURITY_SESSION) {
+ struct qm_sg_entry *sg_out;
+ uint32_t len;
+
+ sg_out = &job->sg[0];
+ hw_sg_to_cpu(sg_out);
+ len = sg_out->length;
+ ctx->op->sym->m_src->pkt_len = len;
+ ctx->op->sym->m_src->data_len = len;
+ }
+ if (!ctx->fd_status) {
+ ctx->op->status = RTE_CRYPTO_OP_STATUS_SUCCESS;
+ } else {
+ DPAA_SEC_DP_WARN("SEC return err: 0x%x", ctx->fd_status);
+ ctx->op->status = RTE_CRYPTO_OP_STATUS_ERROR;
+ }
+ ev->event_ptr = (void *)ctx->op;
+
+ ev->flow_id = outq->ev.flow_id;
+ ev->sub_event_type = outq->ev.sub_event_type;
+ ev->event_type = RTE_EVENT_TYPE_CRYPTODEV;
+ ev->op = RTE_EVENT_OP_NEW;
+ ev->sched_type = outq->ev.sched_type;
+ ev->queue_id = outq->ev.queue_id;
+ ev->priority = outq->ev.priority;
+ *bufs = (void *)ctx->op;
+
+ rte_mempool_put(ctx->ctx_pool, (void *)ctx);
+
+ return qman_cb_dqrr_consume;
+}
+
+static enum qman_cb_dqrr_result
+dpaa_sec_process_atomic_event(void *event,
+ struct qman_portal *qm __rte_unused,
+ struct qman_fq *outq,
+ const struct qm_dqrr_entry *dqrr,
+ void **bufs)
+{
+ u8 index;
+ const struct qm_fd *fd;
+ struct dpaa_sec_job *job;
+ struct dpaa_sec_op_ctx *ctx;
+ struct rte_event *ev = (struct rte_event *)event;
+
+ fd = &dqrr->fd;
+
+ /* sg is embedded in an op ctx,
+ * sg[0] is for output
+ * sg[1] for input
+ */
+ job = dpaa_mem_ptov(qm_fd_addr_get64(fd));
+
+ ctx = container_of(job, struct dpaa_sec_op_ctx, job);
+ ctx->fd_status = fd->status;
+ if (ctx->op->sess_type == RTE_CRYPTO_OP_SECURITY_SESSION) {
+ struct qm_sg_entry *sg_out;
+ uint32_t len;
+
+ sg_out = &job->sg[0];
+ hw_sg_to_cpu(sg_out);
+ len = sg_out->length;
+ ctx->op->sym->m_src->pkt_len = len;
+ ctx->op->sym->m_src->data_len = len;
+ }
+ if (!ctx->fd_status) {
+ ctx->op->status = RTE_CRYPTO_OP_STATUS_SUCCESS;
+ } else {
+ DPAA_SEC_DP_WARN("SEC return err: 0x%x", ctx->fd_status);
+ ctx->op->status = RTE_CRYPTO_OP_STATUS_ERROR;
+ }
+ ev->event_ptr = (void *)ctx->op;
+ ev->flow_id = outq->ev.flow_id;
+ ev->sub_event_type = outq->ev.sub_event_type;
+ ev->event_type = RTE_EVENT_TYPE_CRYPTODEV;
+ ev->op = RTE_EVENT_OP_NEW;
+ ev->sched_type = outq->ev.sched_type;
+ ev->queue_id = outq->ev.queue_id;
+ ev->priority = outq->ev.priority;
+
+ /* Save active dqrr entries */
+ index = ((uintptr_t)dqrr >> 6) & (16/*QM_DQRR_SIZE*/ - 1);
+ DPAA_PER_LCORE_DQRR_SIZE++;
+ DPAA_PER_LCORE_DQRR_HELD |= 1 << index;
+ DPAA_PER_LCORE_DQRR_MBUF(index) = ctx->op->sym->m_src;
+ ev->impl_opaque = index + 1;
+ ctx->op->sym->m_src->seqn = (uint32_t)index + 1;
+ *bufs = (void *)ctx->op;
+
+ rte_mempool_put(ctx->ctx_pool, (void *)ctx);
+
+ return qman_cb_dqrr_defer;
+}
+
+int
+dpaa_sec_eventq_attach(const struct rte_cryptodev *dev,
+ int qp_id,
+ uint16_t ch_id,
+ const struct rte_event *event)
+{
+ struct dpaa_sec_qp *qp = dev->data->queue_pairs[qp_id];
+ struct qm_mcc_initfq opts = {0};
+
+ int ret;
+
+ opts.we_mask = QM_INITFQ_WE_DESTWQ | QM_INITFQ_WE_FQCTRL |
+ QM_INITFQ_WE_CONTEXTA | QM_INITFQ_WE_CONTEXTB;
+ opts.fqd.dest.channel = ch_id;
+
+ switch (event->sched_type) {
+ case RTE_SCHED_TYPE_ATOMIC:
+ opts.fqd.fq_ctrl |= QM_FQCTRL_HOLDACTIVE;
+ /* Reset FQCTRL_AVOIDBLOCK bit as it is unnecessary
+ * configuration with HOLD_ACTIVE setting
+ */
+ opts.fqd.fq_ctrl &= (~QM_FQCTRL_AVOIDBLOCK);
+ qp->outq.cb.dqrr_dpdk_cb = dpaa_sec_process_atomic_event;
+ break;
+ case RTE_SCHED_TYPE_ORDERED:
+ DPAA_SEC_ERR("Ordered queue schedule type is not supported\n");
+ return -1;
+ default:
+ opts.fqd.fq_ctrl |= QM_FQCTRL_AVOIDBLOCK;
+ qp->outq.cb.dqrr_dpdk_cb = dpaa_sec_process_parallel_event;
+ break;
+ }
+
+ ret = qman_init_fq(&qp->outq, QMAN_INITFQ_FLAG_SCHED, &opts);
+ if (unlikely(ret)) {
+ DPAA_SEC_ERR("unable to init caam source fq!");
+ return ret;
+ }
+
+ memcpy(&qp->outq.ev, event, sizeof(struct rte_event));
+
+ return 0;
+}
+
+int
+dpaa_sec_eventq_detach(const struct rte_cryptodev *dev,
+ int qp_id)
+{
+ struct qm_mcc_initfq opts = {0};
+ int ret;
+ struct dpaa_sec_qp *qp = dev->data->queue_pairs[qp_id];
+
+ opts.we_mask = QM_INITFQ_WE_DESTWQ | QM_INITFQ_WE_FQCTRL |
+ QM_INITFQ_WE_CONTEXTA | QM_INITFQ_WE_CONTEXTB;
+ qp->outq.cb.dqrr = dqrr_out_fq_cb_rx;
+ qp->outq.cb.ern = ern_sec_fq_handler;
+ qman_retire_fq(&qp->outq, NULL);
+ qman_oos_fq(&qp->outq);
+ ret = qman_init_fq(&qp->outq, 0, &opts);
+ if (ret)
+ RTE_LOG(ERR, PMD, "Error in qman_init_fq: ret: %d\n", ret);
+ qp->outq.cb.dqrr = NULL;
+
+ return ret;
+}
+
static struct rte_cryptodev_ops crypto_ops = {
.dev_configure = dpaa_sec_dev_configure,
.dev_start = dpaa_sec_dev_start,
.sym_session_clear = dpaa_sec_sym_session_clear
};
+#ifdef RTE_LIBRTE_SECURITY
static const struct rte_security_capability *
dpaa_sec_capabilities_get(void *device __rte_unused)
{
.set_pkt_metadata = NULL,
.capabilities_get = dpaa_sec_capabilities_get
};
-
+#endif
static int
dpaa_sec_uninit(struct rte_cryptodev *dev)
{
internals = dev->data->dev_private;
rte_free(dev->security_ctx);
- /* In case close has been called, internals->ctx_pool would be NULL */
- rte_mempool_free(internals->ctx_pool);
rte_free(internals);
DPAA_SEC_INFO("Closing DPAA_SEC device %s on numa socket %u",
dpaa_sec_dev_init(struct rte_cryptodev *cryptodev)
{
struct dpaa_sec_dev_private *internals;
+#ifdef RTE_LIBRTE_SECURITY
struct rte_security_ctx *security_instance;
+#endif
struct dpaa_sec_qp *qp;
uint32_t i, flags;
int ret;
DPAA_SEC_WARN("Device already init by primary process");
return 0;
}
-
+#ifdef RTE_LIBRTE_SECURITY
/* Initialize security_ctx only for primary process*/
security_instance = rte_malloc("rte_security_instances_ops",
sizeof(struct rte_security_ctx), 0);
security_instance->ops = &dpaa_sec_security_ops;
security_instance->sess_cnt = 0;
cryptodev->security_ctx = security_instance;
-
+#endif
rte_spinlock_init(&internals->lock);
for (i = 0; i < internals->max_nb_queue_pairs; i++) {
/* init qman fq for queue pair */
int retval;
- snprintf(cryptodev_name, sizeof(cryptodev_name), "dpaa_sec-%d",
- dpaa_dev->id.dev_id);
+ snprintf(cryptodev_name, sizeof(cryptodev_name), "%s", dpaa_dev->name);
cryptodev = rte_cryptodev_pmd_allocate(cryptodev_name, rte_socket_id());
if (cryptodev == NULL)