+/*
+ * Internal api to traverse the resource list within a flow
+ * and match a resource based on resource func and resource
+ * sub type. This api should be used only for resources that
+ * are unique and do not have multiple instances of resource
+ * func and sub type combination since it will return only
+ * the first match.
+ */
+static int32_t
+ulp_flow_db_resource_hndl_get(struct bnxt_ulp_context *ulp_ctx,
+ enum bnxt_ulp_fdb_type flow_type,
+ uint32_t flow_id,
+ uint32_t resource_func,
+ uint32_t res_subtype,
+ uint64_t *res_hndl)
+{
+ struct bnxt_ulp_flow_db *flow_db;
+ struct bnxt_ulp_flow_tbl *flow_tbl;
+ struct ulp_fdb_resource_info *fid_res;
+ uint32_t res_id;
+
+ flow_db = bnxt_ulp_cntxt_ptr2_flow_db_get(ulp_ctx);
+ if (!flow_db) {
+ BNXT_TF_DBG(ERR, "Flow database not found\n");
+ return -EINVAL;
+ }
+
+ if (flow_type > BNXT_ULP_FDB_TYPE_DEFAULT) {
+ BNXT_TF_DBG(ERR, "Invalid flow type\n");
+ return -EINVAL;
+ }
+
+ flow_tbl = &flow_db->flow_tbl;
+
+ /* check for limits of fid */
+ if (flow_id >= flow_tbl->num_flows || !flow_id) {
+ BNXT_TF_DBG(ERR, "Invalid flow index\n");
+ return -EINVAL;
+ }
+
+ /* check if the flow is active or not */
+ if (!ulp_flow_db_active_flows_bit_is_set(flow_db, flow_type, flow_id)) {
+ BNXT_TF_DBG(ERR, "flow does not exist\n");
+ return -EINVAL;
+ }
+ /* Iterate the resource to get the resource handle */
+ res_id = flow_id;
+ while (res_id) {
+ fid_res = &flow_tbl->flow_resources[res_id];
+ if (ulp_flow_db_resource_func_get(fid_res) == resource_func) {
+ if (resource_func & ULP_FLOW_DB_RES_FUNC_NEED_LOWER) {
+ if (res_subtype == fid_res->resource_sub_type) {
+ *res_hndl = fid_res->resource_hndl;
+ return 0;
+ }
+
+ } else if (resource_func ==
+ BNXT_ULP_RESOURCE_FUNC_EXT_EM_TABLE ||
+ resource_func ==
+ BNXT_ULP_RESOURCE_FUNC_INT_EM_TABLE) {
+ *res_hndl = fid_res->resource_em_handle;
+ return 0;
+ }
+ }
+ res_id = 0;
+ ULP_FLOW_DB_RES_NXT_SET(res_id, fid_res->nxt_resource_idx);
+ }
+ return -ENOENT;
+}
+
+/*
+ * Api to get the cfa action pointer from a flow.
+ *
+ * ulp_ctxt [in] Ptr to ulp context
+ * flow_id [in] flow id
+ * cfa_action [out] The resource handle stored in the flow database
+ *
+ * returns 0 on success
+ */
+int32_t
+ulp_default_flow_db_cfa_action_get(struct bnxt_ulp_context *ulp_ctx,
+ uint32_t flow_id,
+ uint16_t *cfa_action)
+{
+ uint8_t sub_type = BNXT_ULP_RESOURCE_SUB_TYPE_INDEX_TYPE_VFR_CFA_ACTION;
+ uint64_t hndl;
+ int32_t rc;
+
+ rc = ulp_flow_db_resource_hndl_get(ulp_ctx,
+ BNXT_ULP_FDB_TYPE_DEFAULT,
+ flow_id,
+ BNXT_ULP_RESOURCE_FUNC_INDEX_TABLE,
+ sub_type, &hndl);
+ if (rc) {
+ BNXT_TF_DBG(ERR, "CFA Action ptr not found for flow id %u\n",
+ flow_id);
+ return -ENOENT;
+ }
+ *cfa_action = hndl;
+ return 0;
+}
+
+/*
+ * Allocate the entry in the parent-child database
+ *
+ * ulp_ctxt [in] Ptr to ulp_context
+ * fid [in] The flow id to the flow entry
+ *
+ * returns index on success and negative on failure.
+ */
+int32_t
+ulp_flow_db_parent_flow_alloc(struct bnxt_ulp_context *ulp_ctxt,
+ uint32_t fid)
+{
+ struct bnxt_ulp_flow_db *flow_db;
+ struct ulp_fdb_parent_child_db *p_pdb;
+ uint32_t idx, free_idx = 0;
+
+ flow_db = bnxt_ulp_cntxt_ptr2_flow_db_get(ulp_ctxt);
+ if (!flow_db) {
+ BNXT_TF_DBG(ERR, "Invalid Arguments\n");
+ return -EINVAL;
+ }
+
+ /* check for max flows */
+ if (fid >= flow_db->flow_tbl.num_flows || !fid) {
+ BNXT_TF_DBG(ERR, "Invalid flow index\n");
+ return -EINVAL;
+ }
+
+ /* No support for parent child db then just exit */
+ if (!flow_db->parent_child_db.entries_count) {
+ BNXT_TF_DBG(ERR, "parent child db not supported\n");
+ return -EINVAL;
+ }
+
+ p_pdb = &flow_db->parent_child_db;
+ for (idx = 0; idx <= p_pdb->entries_count; idx++) {
+ if (p_pdb->parent_flow_tbl[idx].parent_fid == fid) {
+ BNXT_TF_DBG(ERR, "fid is already allocated\n");
+ return -EINVAL;
+ }
+ if (!p_pdb->parent_flow_tbl[idx].parent_fid && !free_idx)
+ free_idx = idx + 1;
+ }
+ /* no free slots */
+ if (!free_idx) {
+ BNXT_TF_DBG(ERR, "parent child db is full\n");
+ return -ENOMEM;
+ }
+
+ free_idx -= 1;
+ /* set the Fid in the parent child */
+ p_pdb->parent_flow_tbl[free_idx].parent_fid = fid;
+ return free_idx;
+}
+
+/*
+ * Free the entry in the parent-child database
+ *
+ * ulp_ctxt [in] Ptr to ulp_context
+ * fid [in] The flow id to the flow entry
+ *
+ * returns 0 on success and negative on failure.
+ */
+int32_t
+ulp_flow_db_parent_flow_free(struct bnxt_ulp_context *ulp_ctxt,
+ uint32_t fid)
+{
+ struct bnxt_ulp_flow_db *flow_db;
+ struct ulp_fdb_parent_child_db *p_pdb;
+ uint32_t idx;
+
+ flow_db = bnxt_ulp_cntxt_ptr2_flow_db_get(ulp_ctxt);
+ if (!flow_db) {
+ BNXT_TF_DBG(ERR, "Invalid Arguments\n");
+ return -EINVAL;
+ }
+
+ /* check for max flows */
+ if (fid >= flow_db->flow_tbl.num_flows || !fid) {
+ BNXT_TF_DBG(ERR, "Invalid flow index\n");
+ return -EINVAL;
+ }
+
+ /* No support for parent child db then just exit */
+ if (!flow_db->parent_child_db.entries_count) {
+ BNXT_TF_DBG(ERR, "parent child db not supported\n");
+ return -EINVAL;
+ }
+
+ p_pdb = &flow_db->parent_child_db;
+ for (idx = 0; idx <= p_pdb->entries_count; idx++) {
+ if (p_pdb->parent_flow_tbl[idx].parent_fid == fid) {
+ /* free the contents */
+ p_pdb->parent_flow_tbl[idx].parent_fid = 0;
+ memset(p_pdb->parent_flow_tbl[idx].child_fid_bitset,
+ 0, p_pdb->child_bitset_size);
+ return 0;
+ }
+ }
+ BNXT_TF_DBG(ERR, "parent entry not found = %x\n", fid);
+ return -EINVAL;
+}
+
+/*
+ * Set or reset the child flow in the parent-child database
+ *
+ * ulp_ctxt [in] Ptr to ulp_context
+ * parent_fid [in] The flow id of the parent flow entry
+ * child_fid [in] The flow id of the child flow entry
+ * set_flag [in] Use 1 for setting child, 0 to reset
+ *
+ * returns zero on success and negative on failure.
+ */
+int32_t
+ulp_flow_db_parent_child_flow_set(struct bnxt_ulp_context *ulp_ctxt,
+ uint32_t parent_fid,
+ uint32_t child_fid,
+ uint32_t set_flag)
+{
+ struct bnxt_ulp_flow_db *flow_db;
+ struct ulp_fdb_parent_child_db *p_pdb;
+ uint32_t idx, a_idx;
+ uint64_t *t;
+
+ flow_db = bnxt_ulp_cntxt_ptr2_flow_db_get(ulp_ctxt);
+ if (!flow_db) {
+ BNXT_TF_DBG(ERR, "Invalid Arguments\n");
+ return -EINVAL;
+ }
+
+ /* check for fid validity */
+ if (parent_fid >= flow_db->flow_tbl.num_flows || !parent_fid) {
+ BNXT_TF_DBG(ERR, "Invalid parent flow index %x\n", parent_fid);
+ return -EINVAL;
+ }
+
+ /* check for fid validity */
+ if (child_fid >= flow_db->flow_tbl.num_flows || !child_fid) {
+ BNXT_TF_DBG(ERR, "Invalid child flow index %x\n", child_fid);
+ return -EINVAL;
+ }
+
+ /* No support for parent child db then just exit */
+ if (!flow_db->parent_child_db.entries_count) {
+ BNXT_TF_DBG(ERR, "parent child db not supported\n");
+ return -EINVAL;
+ }
+
+ p_pdb = &flow_db->parent_child_db;
+ a_idx = child_fid / ULP_INDEX_BITMAP_SIZE;
+ for (idx = 0; idx <= p_pdb->entries_count; idx++) {
+ if (p_pdb->parent_flow_tbl[idx].parent_fid == parent_fid) {
+ t = p_pdb->parent_flow_tbl[idx].child_fid_bitset;
+ if (set_flag)
+ ULP_INDEX_BITMAP_SET(t[a_idx], child_fid);
+ else
+ ULP_INDEX_BITMAP_RESET(t[a_idx], child_fid);
+ return 0;
+ }
+ }
+ BNXT_TF_DBG(ERR, "Unable to set the parent-child flow %x:%x\n",
+ parent_fid, child_fid);
+ return -1;
+}
+
+/*
+ * Get the parent index from the parent-child database
+ *
+ * ulp_ctxt [in] Ptr to ulp_context
+ * parent_fid [in] The flow id of the parent flow entry
+ * parent_idx [out] The parent index of parent flow entry
+ *
+ * returns zero on success and negative on failure.
+ */
+int32_t
+ulp_flow_db_parent_flow_idx_get(struct bnxt_ulp_context *ulp_ctxt,
+ uint32_t parent_fid,
+ uint32_t *parent_idx)
+{
+ struct bnxt_ulp_flow_db *flow_db;
+ struct ulp_fdb_parent_child_db *p_pdb;
+ uint32_t idx;
+
+ flow_db = bnxt_ulp_cntxt_ptr2_flow_db_get(ulp_ctxt);
+ if (!flow_db) {
+ BNXT_TF_DBG(ERR, "Invalid Arguments\n");
+ return -EINVAL;
+ }
+
+ /* check for fid validity */
+ if (parent_fid >= flow_db->flow_tbl.num_flows || !parent_fid) {
+ BNXT_TF_DBG(ERR, "Invalid parent flow index %x\n", parent_fid);
+ return -EINVAL;
+ }
+
+ /* No support for parent child db then just exit */
+ if (!flow_db->parent_child_db.entries_count) {
+ BNXT_TF_DBG(ERR, "parent child db not supported\n");
+ return -EINVAL;
+ }
+
+ p_pdb = &flow_db->parent_child_db;
+ for (idx = 0; idx <= p_pdb->entries_count; idx++) {
+ if (p_pdb->parent_flow_tbl[idx].parent_fid == parent_fid) {
+ *parent_idx = idx;
+ return 0;
+ }
+ }
+ BNXT_TF_DBG(ERR, "Unable to get the parent flow %x\n", parent_fid);
+ return -1;
+}
+
+/*
+ * Get the next child flow in the parent-child database
+ *
+ * ulp_ctxt [in] Ptr to ulp_context
+ * parent_fid [in] The flow id of the parent flow entry
+ * child_fid [in/out] The flow id of the child flow entry
+ *
+ * returns zero on success and negative on failure.
+ * Pass child_fid as zero for first entry.
+ */
+int32_t
+ulp_flow_db_parent_child_flow_next_entry_get(struct bnxt_ulp_flow_db *flow_db,
+ uint32_t parent_idx,
+ uint32_t *child_fid)
+{
+ struct ulp_fdb_parent_child_db *p_pdb;
+ uint32_t idx, s_idx, mod_fid;
+ uint32_t next_fid = *child_fid;
+ uint64_t *child_bitset;
+ uint64_t bs;
+
+ /* check for fid validity */
+ p_pdb = &flow_db->parent_child_db;
+ if (parent_idx >= p_pdb->entries_count ||
+ !p_pdb->parent_flow_tbl[parent_idx].parent_fid) {
+ BNXT_TF_DBG(ERR, "Invalid parent flow index %x\n", parent_idx);
+ return -EINVAL;
+ }
+
+ child_bitset = p_pdb->parent_flow_tbl[parent_idx].child_fid_bitset;
+ do {
+ /* increment the flow id to find the next valid flow id */
+ next_fid++;
+ if (next_fid >= flow_db->flow_tbl.num_flows)
+ return -ENOENT;
+ idx = next_fid / ULP_INDEX_BITMAP_SIZE;
+ mod_fid = next_fid % ULP_INDEX_BITMAP_SIZE;
+ s_idx = idx;
+ while (!(bs = child_bitset[idx])) {
+ idx++;
+ if ((idx * ULP_INDEX_BITMAP_SIZE) >=
+ flow_db->flow_tbl.num_flows)
+ return -ENOENT;
+ }
+ /*
+ * remove the previous bits in the bitset bs to find the
+ * next non zero bit in the bitset. This needs to be done
+ * only if the idx is same as he one you started.
+ */
+ if (s_idx == idx)
+ bs &= (-1UL >> mod_fid);
+ next_fid = (idx * ULP_INDEX_BITMAP_SIZE) + __builtin_clzl(bs);
+ if (*child_fid >= next_fid) {
+ BNXT_TF_DBG(ERR, "Parent Child Database is corrupt\n");
+ return -ENOENT;
+ }
+ idx = next_fid / ULP_INDEX_BITMAP_SIZE;
+ } while (!ULP_INDEX_BITMAP_GET(child_bitset[idx], next_fid));
+ *child_fid = next_fid;
+ return 0;
+}
+
+/*
+ * Orphan the child flow entry
+ * This is called only for child flows that have
+ * BNXT_ULP_RESOURCE_FUNC_CHILD_FLOW resource
+ *
+ * ulp_ctxt [in] Ptr to ulp_context
+ * flow_type [in] Specify it is regular or default flow
+ * fid [in] The index to the flow entry
+ *
+ * Returns 0 on success and negative on failure.
+ */
+int32_t
+ulp_flow_db_child_flow_reset(struct bnxt_ulp_context *ulp_ctxt,
+ enum bnxt_ulp_fdb_type flow_type,
+ uint32_t fid)
+{
+ struct bnxt_ulp_flow_db *flow_db;
+ struct bnxt_ulp_flow_tbl *flow_tbl;
+ struct ulp_fdb_resource_info *fid_res;
+ uint32_t res_id = 0;
+
+ flow_db = bnxt_ulp_cntxt_ptr2_flow_db_get(ulp_ctxt);
+ if (!flow_db) {
+ BNXT_TF_DBG(ERR, "Invalid Arguments\n");
+ return -EINVAL;
+ }
+
+ if (flow_type > BNXT_ULP_FDB_TYPE_DEFAULT) {
+ BNXT_TF_DBG(ERR, "Invalid flow type\n");
+ return -EINVAL;
+ }
+
+ flow_tbl = &flow_db->flow_tbl;
+ /* check for max flows */
+ if (fid >= flow_tbl->num_flows || !fid) {
+ BNXT_TF_DBG(ERR, "Invalid flow index %x\n", fid);
+ return -EINVAL;
+ }
+
+ /* check if the flow is active or not */
+ if (!ulp_flow_db_active_flows_bit_is_set(flow_db, flow_type, fid)) {
+ BNXT_TF_DBG(ERR, "flow does not exist\n");
+ return -EINVAL;
+ }
+
+ /* Iterate the resource to get the resource handle */
+ res_id = fid;
+ while (res_id) {
+ fid_res = &flow_tbl->flow_resources[res_id];
+ if (ulp_flow_db_resource_func_get(fid_res) ==
+ BNXT_ULP_RESOURCE_FUNC_CHILD_FLOW) {
+ /* invalidate the resource details */
+ fid_res->resource_hndl = 0;
+ return 0;
+ }
+ res_id = 0;
+ ULP_FLOW_DB_RES_NXT_SET(res_id, fid_res->nxt_resource_idx);
+ }
+ /* failed */
+ return -1;
+}
+
+/*
+ * Create parent flow in the parent flow tbl
+ *
+ * parms [in] Ptr to mapper params
+ *
+ * Returns 0 on success and negative on failure.
+ */
+int32_t
+ulp_flow_db_parent_flow_create(struct bnxt_ulp_mapper_parms *parms)
+{
+ struct ulp_flow_db_res_params fid_parms;
+ int32_t fid_idx;
+
+ /* create the child flow entry in parent flow table */
+ fid_idx = ulp_flow_db_parent_flow_alloc(parms->ulp_ctx, parms->fid);
+ if (fid_idx < 0) {
+ BNXT_TF_DBG(ERR, "Error in creating parent flow fid %x\n",
+ parms->fid);
+ return -1;
+ }
+
+ /* Add the parent details in the resource list of the flow */
+ memset(&fid_parms, 0, sizeof(fid_parms));
+ fid_parms.resource_func = BNXT_ULP_RESOURCE_FUNC_PARENT_FLOW;
+ fid_parms.resource_hndl = fid_idx;
+ fid_parms.critical_resource = BNXT_ULP_CRITICAL_RESOURCE_NO;
+ if (ulp_flow_db_resource_add(parms->ulp_ctx, BNXT_ULP_FDB_TYPE_REGULAR,
+ parms->fid, &fid_parms)) {
+ BNXT_TF_DBG(ERR, "Error in adding flow res for fid %x\n",
+ parms->fid);
+ return -1;
+ }
+ return 0;
+}
+
+/*
+ * Create child flow in the parent flow tbl
+ *
+ * parms [in] Ptr to mapper params
+ *
+ * Returns 0 on success and negative on failure.
+ */
+int32_t
+ulp_flow_db_child_flow_create(struct bnxt_ulp_mapper_parms *parms)
+{
+ struct ulp_flow_db_res_params fid_parms;
+ int32_t rc;
+
+ /* create the parent flow entry in parent flow table */
+ rc = ulp_flow_db_parent_child_flow_set(parms->ulp_ctx,
+ parms->parent_fid,
+ parms->fid, 1);
+ if (rc) {
+ BNXT_TF_DBG(ERR, "Error in setting child fid %x\n", parms->fid);
+ return -1;
+ }
+
+ /* Add the parent details in the resource list of the flow */
+ memset(&fid_parms, 0, sizeof(fid_parms));
+ fid_parms.resource_func = BNXT_ULP_RESOURCE_FUNC_CHILD_FLOW;
+ fid_parms.resource_hndl = parms->parent_fid;
+ fid_parms.critical_resource = BNXT_ULP_CRITICAL_RESOURCE_NO;
+ if (ulp_flow_db_resource_add(parms->ulp_ctx, BNXT_ULP_FDB_TYPE_REGULAR,
+ parms->fid, &fid_parms)) {
+ BNXT_TF_DBG(ERR, "Error in adding flow res for fid %x\n",
+ parms->fid);
+ return -1;
+ }