return 0;
}
+static struct ice_fdir_counter *
+ice_fdir_counter_shared_search(struct ice_fdir_counter_pool_container
+ *container,
+ uint32_t id)
+{
+ struct ice_fdir_counter_pool *pool;
+ struct ice_fdir_counter *counter;
+ int i;
+
+ TAILQ_FOREACH(pool, &container->pool_list, next) {
+ for (i = 0; i < ICE_FDIR_COUNTERS_PER_BLOCK; i++) {
+ counter = &pool->counters[i];
+
+ if (counter->shared &&
+ counter->ref_cnt &&
+ counter->id == id)
+ return counter;
+ }
+ }
+
+ return NULL;
+}
+
+static struct ice_fdir_counter *
+ice_fdir_counter_alloc(struct ice_pf *pf, uint32_t shared, uint32_t id)
+{
+ struct ice_hw *hw = ICE_PF_TO_HW(pf);
+ struct ice_fdir_info *fdir_info = &pf->fdir;
+ struct ice_fdir_counter_pool_container *container =
+ &fdir_info->counter;
+ struct ice_fdir_counter_pool *pool = NULL;
+ struct ice_fdir_counter *counter_free = NULL;
+
+ if (shared) {
+ counter_free = ice_fdir_counter_shared_search(container, id);
+ if (counter_free) {
+ if (counter_free->ref_cnt + 1 == 0) {
+ rte_errno = E2BIG;
+ return NULL;
+ }
+ counter_free->ref_cnt++;
+ return counter_free;
+ }
+ }
+
+ TAILQ_FOREACH(pool, &container->pool_list, next) {
+ counter_free = TAILQ_FIRST(&pool->counter_list);
+ if (counter_free)
+ break;
+ counter_free = NULL;
+ }
+
+ if (!counter_free) {
+ PMD_DRV_LOG(ERR, "No free counter found\n");
+ return NULL;
+ }
+
+ counter_free->shared = shared;
+ counter_free->id = id;
+ counter_free->ref_cnt = 1;
+ counter_free->pool = pool;
+
+ /* reset statistic counter value */
+ ICE_WRITE_REG(hw, GLSTAT_FD_CNT0H(counter_free->hw_index), 0);
+ ICE_WRITE_REG(hw, GLSTAT_FD_CNT0L(counter_free->hw_index), 0);
+
+ TAILQ_REMOVE(&pool->counter_list, counter_free, next);
+ if (TAILQ_EMPTY(&pool->counter_list)) {
+ TAILQ_REMOVE(&container->pool_list, pool, next);
+ TAILQ_INSERT_TAIL(&container->pool_list, pool, next);
+ }
+
+ return counter_free;
+}
+
+static void
+ice_fdir_counter_free(__rte_unused struct ice_pf *pf,
+ struct ice_fdir_counter *counter)
+{
+ if (!counter)
+ return;
+
+ if (--counter->ref_cnt == 0) {
+ struct ice_fdir_counter_pool *pool = counter->pool;
+
+ TAILQ_INSERT_TAIL(&pool->counter_list, counter, next);
+ }
+}
+
/*
* ice_fdir_setup - reserve and initialize the Flow Director resources
* @pf: board private structure
goto free_entry;
}
+ /* alloc counter for FDIR */
+ if (filter->input.cnt_ena) {
+ struct rte_flow_action_count *act_count = &filter->act_count;
+
+ filter->counter = ice_fdir_counter_alloc(pf,
+ act_count->shared,
+ act_count->id);
+ if (!filter->counter) {
+ rte_flow_error_set(error, EINVAL,
+ RTE_FLOW_ERROR_TYPE_ACTION, NULL,
+ "Failed to alloc FDIR counter.");
+ goto free_entry;
+ }
+ filter->input.cnt_index = filter->counter->hw_index;
+ }
+
ret = ice_fdir_add_del_filter(pf, filter, true);
if (ret) {
rte_flow_error_set(error, -ret,
RTE_FLOW_ERROR_TYPE_HANDLE, NULL,
"Add filter rule failed.");
- goto free_entry;
+ goto free_counter;
}
rte_memcpy(rule, filter, sizeof(*rule));
ice_fdir_cnt_update(pf, filter->input.flow_type, false, true);
return 0;
+free_counter:
+ if (filter->counter) {
+ ice_fdir_counter_free(pf, filter->counter);
+ filter->counter = NULL;
+ }
+
free_entry:
rte_free(rule);
return -rte_errno;
filter = (struct ice_fdir_filter_conf *)flow->rule;
+ if (filter->counter) {
+ ice_fdir_counter_free(pf, filter->counter);
+ filter->counter = NULL;
+ }
+
ret = ice_fdir_add_del_filter(pf, filter, false);
if (ret) {
rte_flow_error_set(error, -ret,
return 0;
}
+static int
+ice_fdir_query_count(struct ice_adapter *ad,
+ struct rte_flow *flow,
+ struct rte_flow_query_count *flow_stats,
+ struct rte_flow_error *error)
+{
+ struct ice_pf *pf = &ad->pf;
+ struct ice_hw *hw = ICE_PF_TO_HW(pf);
+ struct ice_fdir_filter_conf *filter = flow->rule;
+ struct ice_fdir_counter *counter = filter->counter;
+ uint64_t hits_lo, hits_hi;
+
+ if (!counter) {
+ rte_flow_error_set(error, EINVAL,
+ RTE_FLOW_ERROR_TYPE_ACTION,
+ NULL,
+ "FDIR counters not available");
+ return -rte_errno;
+ }
+
+ /*
+ * Reading the low 32-bits latches the high 32-bits into a shadow
+ * register. Reading the high 32-bit returns the value in the
+ * shadow register.
+ */
+ hits_lo = ICE_READ_REG(hw, GLSTAT_FD_CNT0L(counter->hw_index));
+ hits_hi = ICE_READ_REG(hw, GLSTAT_FD_CNT0H(counter->hw_index));
+
+ flow_stats->hits_set = 1;
+ flow_stats->hits = hits_lo | (hits_hi << 32);
+ flow_stats->bytes_set = 0;
+ flow_stats->bytes = 0;
+
+ if (flow_stats->reset) {
+ /* reset statistic counter value */
+ ICE_WRITE_REG(hw, GLSTAT_FD_CNT0H(counter->hw_index), 0);
+ ICE_WRITE_REG(hw, GLSTAT_FD_CNT0L(counter->hw_index), 0);
+ }
+
+ return 0;
+}
+
static struct ice_flow_engine ice_fdir_engine = {
.init = ice_fdir_init,
.uninit = ice_fdir_uninit,
.create = ice_fdir_create_filter,
.destroy = ice_fdir_destroy_filter,
+ .query_count = ice_fdir_query_count,
.type = ICE_FLOW_ENGINE_FDIR,
};
struct ice_pf *pf = &ad->pf;
const struct rte_flow_action_queue *act_q;
const struct rte_flow_action_mark *mark_spec = NULL;
+ const struct rte_flow_action_count *act_count;
uint32_t dest_num = 0;
uint32_t mark_num = 0;
+ uint32_t counter_num = 0;
int ret;
for (; actions->type != RTE_FLOW_ACTION_TYPE_END; actions++) {
mark_spec = actions->conf;
filter->input.fltr_id = mark_spec->id;
+ break;
+ case RTE_FLOW_ACTION_TYPE_COUNT:
+ counter_num++;
+
+ act_count = actions->conf;
+ filter->input.cnt_ena = ICE_FXD_FLTR_QW0_STAT_ENA_PKTS;
+ rte_memcpy(&filter->act_count, act_count,
+ sizeof(filter->act_count));
+
break;
default:
rte_flow_error_set(error, EINVAL,
return -rte_errno;
}
+ if (counter_num >= 2) {
+ rte_flow_error_set(error, EINVAL,
+ RTE_FLOW_ERROR_TYPE_ACTION, actions,
+ "Too many count actions");
+ return -rte_errno;
+ }
+
return 0;
}