app/eventdev: add event timer adapter as a producer
[dpdk.git] / app / test-eventdev / test_perf_common.c
index 7379539..b6cc00e 100644 (file)
@@ -8,8 +8,20 @@ int
 perf_test_result(struct evt_test *test, struct evt_options *opt)
 {
        RTE_SET_USED(opt);
+       int i;
+       uint64_t total = 0;
        struct test_perf *t = evt_test_priv(test);
 
+       printf("Packet distribution across worker cores :\n");
+       for (i = 0; i < t->nb_workers; i++)
+               total += t->worker[i].processed_pkts;
+       for (i = 0; i < t->nb_workers; i++)
+               printf("Worker %d packets: "CLGRN"%"PRIx64" "CLNRM"percentage:"
+                               CLGRN" %3.2f\n"CLNRM, i,
+                               t->worker[i].processed_pkts,
+                               (((double)t->worker[i].processed_pkts)/total)
+                               * 100);
+
        return t->result;
 }
 
@@ -60,6 +72,67 @@ perf_producer(void *arg)
        return 0;
 }
 
+static inline int
+perf_event_timer_producer(void *arg)
+{
+       struct prod_data *p  = arg;
+       struct test_perf *t = p->t;
+       struct evt_options *opt = t->opt;
+       uint32_t flow_counter = 0;
+       uint64_t count = 0;
+       uint64_t arm_latency = 0;
+       const uint8_t nb_timer_adptrs = opt->nb_timer_adptrs;
+       const uint32_t nb_flows = t->nb_flows;
+       const uint64_t nb_timers = opt->nb_timers;
+       struct rte_mempool *pool = t->pool;
+       struct perf_elt *m;
+       struct rte_event_timer_adapter **adptr = t->timer_adptr;
+       uint64_t timeout_ticks = opt->expiry_nsec / opt->timer_tick_nsec;
+
+       timeout_ticks = opt->optm_timer_tick_nsec ?
+                       (timeout_ticks * opt->timer_tick_nsec)
+                       / opt->optm_timer_tick_nsec : timeout_ticks;
+       timeout_ticks += timeout_ticks ? 0 : 1;
+       const struct rte_event_timer tim = {
+               .ev.op = RTE_EVENT_OP_NEW,
+               .ev.queue_id = p->queue_id,
+               .ev.sched_type = t->opt->sched_type_list[0],
+               .ev.priority = RTE_EVENT_DEV_PRIORITY_NORMAL,
+               .ev.event_type =  RTE_EVENT_TYPE_TIMER,
+               .state = RTE_EVENT_TIMER_NOT_ARMED,
+               .timeout_ticks = timeout_ticks,
+       };
+
+       if (opt->verbose_level > 1)
+               printf("%s(): lcore %d\n", __func__, rte_lcore_id());
+
+       while (count < nb_timers && t->done == false) {
+               if (rte_mempool_get(pool, (void **)&m) < 0)
+                       continue;
+
+               m->tim = tim;
+               m->tim.ev.flow_id = flow_counter++ % nb_flows;
+               m->tim.ev.event_ptr = m;
+               m->timestamp = rte_get_timer_cycles();
+               while (rte_event_timer_arm_burst(
+                               adptr[flow_counter % nb_timer_adptrs],
+                               (struct rte_event_timer **)&m, 1) != 1) {
+                       if (t->done)
+                               break;
+                       rte_pause();
+                       m->timestamp = rte_get_timer_cycles();
+               }
+               arm_latency += rte_get_timer_cycles() - m->timestamp;
+               count++;
+       }
+       fflush(stdout);
+       rte_delay_ms(1000);
+       printf("%s(): lcore %d Average event timer arm latency = %.3f us\n",
+                       __func__, rte_lcore_id(), (float)(arm_latency / count) /
+                       (rte_get_timer_hz() / 1000000));
+       return 0;
+}
+
 static int
 perf_producer_wrapper(void *arg)
 {
@@ -68,6 +141,8 @@ perf_producer_wrapper(void *arg)
        /* Launch the producer function only in case of synthetic producer. */
        if (t->opt->prod_type == EVT_PROD_TYPE_SYNT)
                return perf_producer(arg);
+       else if (t->opt->prod_type == EVT_PROD_TYPE_EVENT_TIMER_ADPTR)
+               return perf_event_timer_producer(arg);
        return 0;
 }
 
@@ -134,8 +209,7 @@ perf_launch_lcores(struct evt_test *test, struct evt_options *opt,
                port_idx++;
        }
 
-       const uint64_t total_pkts = opt->nb_pkts *
-                       evt_nr_active_lcores(opt->plcores);
+       const uint64_t total_pkts = t->outstand_pkts;
 
        uint64_t dead_lock_cycles = rte_get_timer_cycles();
        int64_t dead_lock_remaining  =  total_pkts;
@@ -177,7 +251,9 @@ perf_launch_lcores(struct evt_test *test, struct evt_options *opt,
 
                        if (remaining <= 0) {
                                t->result = EVT_TEST_SUCCESS;
-                               if (opt->prod_type == EVT_PROD_TYPE_SYNT) {
+                               if (opt->prod_type == EVT_PROD_TYPE_SYNT ||
+                                       opt->prod_type ==
+                                       EVT_PROD_TYPE_EVENT_TIMER_ADPTR) {
                                        t->done = true;
                                        rte_smp_wmb();
                                        break;
@@ -203,21 +279,142 @@ perf_launch_lcores(struct evt_test *test, struct evt_options *opt,
        return 0;
 }
 
+static int
+perf_event_rx_adapter_setup(struct evt_options *opt, uint8_t stride,
+               struct rte_event_port_conf prod_conf)
+{
+       int ret = 0;
+       uint16_t prod;
+       struct rte_event_eth_rx_adapter_queue_conf queue_conf;
+
+       memset(&queue_conf, 0,
+                       sizeof(struct rte_event_eth_rx_adapter_queue_conf));
+       queue_conf.ev.sched_type = opt->sched_type_list[0];
+       for (prod = 0; prod < rte_eth_dev_count(); prod++) {
+               uint32_t cap;
+
+               ret = rte_event_eth_rx_adapter_caps_get(opt->dev_id,
+                               prod, &cap);
+               if (ret) {
+                       evt_err("failed to get event rx adapter[%d]"
+                                       " capabilities",
+                                       opt->dev_id);
+                       return ret;
+               }
+               queue_conf.ev.queue_id = prod * stride;
+               ret = rte_event_eth_rx_adapter_create(prod, opt->dev_id,
+                               &prod_conf);
+               if (ret) {
+                       evt_err("failed to create rx adapter[%d]", prod);
+                       return ret;
+               }
+               ret = rte_event_eth_rx_adapter_queue_add(prod, prod, -1,
+                               &queue_conf);
+               if (ret) {
+                       evt_err("failed to add rx queues to adapter[%d]", prod);
+                       return ret;
+               }
+
+               if (!(cap & RTE_EVENT_ETH_RX_ADAPTER_CAP_INTERNAL_PORT)) {
+                       uint32_t service_id;
+
+                       rte_event_eth_rx_adapter_service_id_get(prod,
+                                       &service_id);
+                       ret = evt_service_setup(service_id);
+                       if (ret) {
+                               evt_err("Failed to setup service core"
+                                               " for Rx adapter\n");
+                               return ret;
+                       }
+               }
+
+               ret = rte_eth_dev_start(prod);
+               if (ret) {
+                       evt_err("Ethernet dev [%d] failed to start."
+                                       " Using synthetic producer", prod);
+                       return ret;
+               }
+
+               ret = rte_event_eth_rx_adapter_start(prod);
+               if (ret) {
+                       evt_err("Rx adapter[%d] start failed", prod);
+                       return ret;
+               }
+               printf("%s: Port[%d] using Rx adapter[%d] started\n", __func__,
+                               prod, prod);
+       }
+
+       return ret;
+}
+
+static int
+perf_event_timer_adapter_setup(struct test_perf *t)
+{
+       int i;
+       int ret;
+       struct rte_event_timer_adapter_info adapter_info;
+       struct rte_event_timer_adapter *wl;
+       uint8_t nb_producers = evt_nr_active_lcores(t->opt->plcores);
+       uint8_t flags = RTE_EVENT_TIMER_ADAPTER_F_ADJUST_RES;
+
+       if (nb_producers == 1)
+               flags |= RTE_EVENT_TIMER_ADAPTER_F_SP_PUT;
+
+       for (i = 0; i < t->opt->nb_timer_adptrs; i++) {
+               struct rte_event_timer_adapter_conf config = {
+                       .event_dev_id = t->opt->dev_id,
+                       .timer_adapter_id = i,
+                       .timer_tick_ns = t->opt->timer_tick_nsec,
+                       .max_tmo_ns = t->opt->max_tmo_nsec,
+                       .nb_timers = 2 * 1024 * 1024,
+                       .flags = flags,
+               };
+
+               wl = rte_event_timer_adapter_create(&config);
+               if (wl == NULL) {
+                       evt_err("failed to create event timer ring %d", i);
+                       return rte_errno;
+               }
+
+               memset(&adapter_info, 0,
+                               sizeof(struct rte_event_timer_adapter_info));
+               rte_event_timer_adapter_get_info(wl, &adapter_info);
+               t->opt->optm_timer_tick_nsec = adapter_info.min_resolution_ns;
+
+               if (!(adapter_info.caps &
+                               RTE_EVENT_TIMER_ADAPTER_CAP_INTERNAL_PORT)) {
+                       uint32_t service_id;
+
+                       rte_event_timer_adapter_service_id_get(wl,
+                                       &service_id);
+                       ret = evt_service_setup(service_id);
+                       if (ret) {
+                               evt_err("Failed to setup service core"
+                                               " for timer adapter\n");
+                               return ret;
+                       }
+                       rte_service_runstate_set(service_id, 1);
+               }
+
+               ret = rte_event_timer_adapter_start(wl);
+               if (ret) {
+                       evt_err("failed to Start event timer adapter %d", i);
+                       return ret;
+               }
+               t->timer_adptr[i] = wl;
+       }
+       return 0;
+}
+
 int
 perf_event_dev_port_setup(struct evt_test *test, struct evt_options *opt,
-                               uint8_t stride, uint8_t nb_queues)
+                               uint8_t stride, uint8_t nb_queues,
+                               const struct rte_event_port_conf *port_conf)
 {
        struct test_perf *t = evt_test_priv(test);
-       uint8_t port, prod;
+       uint16_t port, prod;
        int ret = -1;
 
-       /* port configuration */
-       const struct rte_event_port_conf wkr_p_conf = {
-                       .dequeue_depth = opt->wkr_deq_dep,
-                       .enqueue_depth = 64,
-                       .new_event_threshold = 4096,
-       };
-
        /* setup one port per worker, linking to all queues */
        for (port = 0; port < evt_nr_active_lcores(opt->wlcores);
                                port++) {
@@ -229,7 +426,7 @@ perf_event_dev_port_setup(struct evt_test *test, struct evt_options *opt,
                w->processed_pkts = 0;
                w->latency = 0;
 
-               ret = rte_event_port_setup(opt->dev_id, port, &wkr_p_conf);
+               ret = rte_event_port_setup(opt->dev_id, port, port_conf);
                if (ret) {
                        evt_err("failed to setup port %d", port);
                        return ret;
@@ -243,26 +440,45 @@ perf_event_dev_port_setup(struct evt_test *test, struct evt_options *opt,
        }
 
        /* port for producers, no links */
-       const struct rte_event_port_conf prod_conf = {
-                       .dequeue_depth = 8,
-                       .enqueue_depth = 32,
-                       .new_event_threshold = 1200,
-       };
-       prod = 0;
-       for ( ; port < perf_nb_event_ports(opt); port++) {
-               struct prod_data *p = &t->prod[port];
+       if (opt->prod_type == EVT_PROD_TYPE_ETH_RX_ADPTR) {
+               for ( ; port < perf_nb_event_ports(opt); port++) {
+                       struct prod_data *p = &t->prod[port];
+                       p->t = t;
+               }
 
-               p->dev_id = opt->dev_id;
-               p->port_id = port;
-               p->queue_id = prod * stride;
-               p->t = t;
+               ret = perf_event_rx_adapter_setup(opt, stride, *port_conf);
+               if (ret)
+                       return ret;
+       } else if (opt->prod_type == EVT_PROD_TYPE_EVENT_TIMER_ADPTR) {
+               prod = 0;
+               for ( ; port < perf_nb_event_ports(opt); port++) {
+                       struct prod_data *p = &t->prod[port];
+                       p->queue_id = prod * stride;
+                       p->t = t;
+                       prod++;
+               }
 
-               ret = rte_event_port_setup(opt->dev_id, port, &prod_conf);
-               if (ret) {
-                       evt_err("failed to setup port %d", port);
+               ret = perf_event_timer_adapter_setup(t);
+               if (ret)
                        return ret;
+       } else {
+               prod = 0;
+               for ( ; port < perf_nb_event_ports(opt); port++) {
+                       struct prod_data *p = &t->prod[port];
+
+                       p->dev_id = opt->dev_id;
+                       p->port_id = port;
+                       p->queue_id = prod * stride;
+                       p->t = t;
+
+                       ret = rte_event_port_setup(opt->dev_id, port,
+                                       port_conf);
+                       if (ret) {
+                               evt_err("failed to setup port %d", port);
+                               return ret;
+                       }
+                       prod++;
                }
-               prod++;
        }
 
        return ret;
@@ -334,10 +550,13 @@ perf_opt_check(struct evt_options *opt, uint64_t nb_queues)
        }
 
        /* Fixups */
-       if (opt->nb_stages == 1 && opt->fwd_latency) {
+       if ((opt->nb_stages == 1 &&
+                       opt->prod_type != EVT_PROD_TYPE_EVENT_TIMER_ADPTR) &&
+                       opt->fwd_latency) {
                evt_info("fwd_latency is valid when nb_stages > 1, disabling");
                opt->fwd_latency = 0;
        }
+
        if (opt->fwd_latency && !opt->q_priority) {
                evt_info("enabled queue priority for latency measurement");
                opt->q_priority = 1;
@@ -366,8 +585,13 @@ perf_opt_dump(struct evt_options *opt, uint8_t nb_queues)
 void
 perf_eventdev_destroy(struct evt_test *test, struct evt_options *opt)
 {
-       RTE_SET_USED(test);
+       int i;
+       struct test_perf *t = evt_test_priv(test);
 
+       if (opt->prod_type == EVT_PROD_TYPE_EVENT_TIMER_ADPTR) {
+               for (i = 0; i < opt->nb_timer_adptrs; i++)
+                       rte_event_timer_adapter_stop(t->timer_adptr[i]);
+       }
        rte_event_dev_stop(opt->dev_id);
        rte_event_dev_close(opt->dev_id);
 }
@@ -407,7 +631,8 @@ perf_ethdev_setup(struct evt_test *test, struct evt_options *opt)
                },
        };
 
-       if (opt->prod_type == EVT_PROD_TYPE_SYNT)
+       if (opt->prod_type == EVT_PROD_TYPE_SYNT ||
+                       opt->prod_type == EVT_PROD_TYPE_EVENT_TIMER_ADPTR)
                return 0;
 
        if (!rte_eth_dev_count()) {
@@ -451,6 +676,7 @@ void perf_ethdev_destroy(struct evt_test *test, struct evt_options *opt)
 
        if (opt->prod_type == EVT_PROD_TYPE_ETH_RX_ADPTR) {
                for (i = 0; i < rte_eth_dev_count(); i++) {
+                       rte_event_eth_rx_adapter_stop(i);
                        rte_eth_dev_stop(i);
                        rte_eth_dev_close(i);
                }
@@ -462,7 +688,8 @@ perf_mempool_setup(struct evt_test *test, struct evt_options *opt)
 {
        struct test_perf *t = evt_test_priv(test);
 
-       if (opt->prod_type == EVT_PROD_TYPE_SYNT) {
+       if (opt->prod_type == EVT_PROD_TYPE_SYNT ||
+                       opt->prod_type == EVT_PROD_TYPE_EVENT_TIMER_ADPTR) {
                t->pool = rte_mempool_create(test->name, /* mempool name */
                                opt->pool_sz, /* number of elements*/
                                sizeof(struct perf_elt), /* element size*/
@@ -512,10 +739,18 @@ perf_test_setup(struct evt_test *test, struct evt_options *opt)
 
        struct test_perf *t = evt_test_priv(test);
 
-       t->outstand_pkts = opt->nb_pkts * evt_nr_active_lcores(opt->plcores);
+       if (opt->prod_type == EVT_PROD_TYPE_EVENT_TIMER_ADPTR) {
+               t->outstand_pkts = opt->nb_timers *
+                       evt_nr_active_lcores(opt->plcores);
+               t->nb_pkts = opt->nb_timers;
+       } else {
+               t->outstand_pkts = opt->nb_pkts *
+                       evt_nr_active_lcores(opt->plcores);
+               t->nb_pkts = opt->nb_pkts;
+       }
+
        t->nb_workers = evt_nr_active_lcores(opt->wlcores);
        t->done = false;
-       t->nb_pkts = opt->nb_pkts;
        t->nb_flows = opt->nb_flows;
        t->result = EVT_TEST_FAILED;
        t->opt = opt;