app/testpmd: adjust on the fly VLAN configuration
[dpdk.git] / app / test-pmd / testpmd.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2010-2017 Intel Corporation
3  */
4
5 #include <stdarg.h>
6 #include <stdio.h>
7 #include <stdlib.h>
8 #include <signal.h>
9 #include <string.h>
10 #include <time.h>
11 #include <fcntl.h>
12 #include <sys/mman.h>
13 #include <sys/types.h>
14 #include <errno.h>
15
16 #include <sys/queue.h>
17 #include <sys/stat.h>
18
19 #include <stdint.h>
20 #include <unistd.h>
21 #include <inttypes.h>
22
23 #include <rte_common.h>
24 #include <rte_errno.h>
25 #include <rte_byteorder.h>
26 #include <rte_log.h>
27 #include <rte_debug.h>
28 #include <rte_cycles.h>
29 #include <rte_memory.h>
30 #include <rte_memcpy.h>
31 #include <rte_launch.h>
32 #include <rte_eal.h>
33 #include <rte_alarm.h>
34 #include <rte_per_lcore.h>
35 #include <rte_lcore.h>
36 #include <rte_atomic.h>
37 #include <rte_branch_prediction.h>
38 #include <rte_mempool.h>
39 #include <rte_malloc.h>
40 #include <rte_mbuf.h>
41 #include <rte_interrupts.h>
42 #include <rte_pci.h>
43 #include <rte_ether.h>
44 #include <rte_ethdev.h>
45 #include <rte_dev.h>
46 #include <rte_string_fns.h>
47 #ifdef RTE_LIBRTE_IXGBE_PMD
48 #include <rte_pmd_ixgbe.h>
49 #endif
50 #ifdef RTE_LIBRTE_PDUMP
51 #include <rte_pdump.h>
52 #endif
53 #include <rte_flow.h>
54 #include <rte_metrics.h>
55 #ifdef RTE_LIBRTE_BITRATE
56 #include <rte_bitrate.h>
57 #endif
58 #ifdef RTE_LIBRTE_LATENCY_STATS
59 #include <rte_latencystats.h>
60 #endif
61
62 #include "testpmd.h"
63
64 uint16_t verbose_level = 0; /**< Silent by default. */
65 int testpmd_logtype; /**< Log type for testpmd logs */
66
67 /* use master core for command line ? */
68 uint8_t interactive = 0;
69 uint8_t auto_start = 0;
70 uint8_t tx_first;
71 char cmdline_filename[PATH_MAX] = {0};
72
73 /*
74  * NUMA support configuration.
75  * When set, the NUMA support attempts to dispatch the allocation of the
76  * RX and TX memory rings, and of the DMA memory buffers (mbufs) for the
77  * probed ports among the CPU sockets 0 and 1.
78  * Otherwise, all memory is allocated from CPU socket 0.
79  */
80 uint8_t numa_support = 1; /**< numa enabled by default */
81
82 /*
83  * In UMA mode,all memory is allocated from socket 0 if --socket-num is
84  * not configured.
85  */
86 uint8_t socket_num = UMA_NO_CONFIG;
87
88 /*
89  * Use ANONYMOUS mapped memory (might be not physically continuous) for mbufs.
90  */
91 uint8_t mp_anon = 0;
92
93 /*
94  * Record the Ethernet address of peer target ports to which packets are
95  * forwarded.
96  * Must be instantiated with the ethernet addresses of peer traffic generator
97  * ports.
98  */
99 struct ether_addr peer_eth_addrs[RTE_MAX_ETHPORTS];
100 portid_t nb_peer_eth_addrs = 0;
101
102 /*
103  * Probed Target Environment.
104  */
105 struct rte_port *ports;        /**< For all probed ethernet ports. */
106 portid_t nb_ports;             /**< Number of probed ethernet ports. */
107 struct fwd_lcore **fwd_lcores; /**< For all probed logical cores. */
108 lcoreid_t nb_lcores;           /**< Number of probed logical cores. */
109
110 /*
111  * Test Forwarding Configuration.
112  *    nb_fwd_lcores <= nb_cfg_lcores <= nb_lcores
113  *    nb_fwd_ports  <= nb_cfg_ports  <= nb_ports
114  */
115 lcoreid_t nb_cfg_lcores; /**< Number of configured logical cores. */
116 lcoreid_t nb_fwd_lcores; /**< Number of forwarding logical cores. */
117 portid_t  nb_cfg_ports;  /**< Number of configured ports. */
118 portid_t  nb_fwd_ports;  /**< Number of forwarding ports. */
119
120 unsigned int fwd_lcores_cpuids[RTE_MAX_LCORE]; /**< CPU ids configuration. */
121 portid_t fwd_ports_ids[RTE_MAX_ETHPORTS];      /**< Port ids configuration. */
122
123 struct fwd_stream **fwd_streams; /**< For each RX queue of each port. */
124 streamid_t nb_fwd_streams;       /**< Is equal to (nb_ports * nb_rxq). */
125
126 /*
127  * Forwarding engines.
128  */
129 struct fwd_engine * fwd_engines[] = {
130         &io_fwd_engine,
131         &mac_fwd_engine,
132         &mac_swap_engine,
133         &flow_gen_engine,
134         &rx_only_engine,
135         &tx_only_engine,
136         &csum_fwd_engine,
137         &icmp_echo_engine,
138 #if defined RTE_LIBRTE_PMD_SOFTNIC && defined RTE_LIBRTE_SCHED
139         &softnic_tm_engine,
140         &softnic_tm_bypass_engine,
141 #endif
142 #ifdef RTE_LIBRTE_IEEE1588
143         &ieee1588_fwd_engine,
144 #endif
145         NULL,
146 };
147
148 struct fwd_config cur_fwd_config;
149 struct fwd_engine *cur_fwd_eng = &io_fwd_engine; /**< IO mode by default. */
150 uint32_t retry_enabled;
151 uint32_t burst_tx_delay_time = BURST_TX_WAIT_US;
152 uint32_t burst_tx_retry_num = BURST_TX_RETRIES;
153
154 uint16_t mbuf_data_size = DEFAULT_MBUF_DATA_SIZE; /**< Mbuf data space size. */
155 uint32_t param_total_num_mbufs = 0;  /**< number of mbufs in all pools - if
156                                       * specified on command-line. */
157 uint16_t stats_period; /**< Period to show statistics (disabled by default) */
158
159 /*
160  * In container, it cannot terminate the process which running with 'stats-period'
161  * option. Set flag to exit stats period loop after received SIGINT/SIGTERM.
162  */
163 uint8_t f_quit;
164
165 /*
166  * Configuration of packet segments used by the "txonly" processing engine.
167  */
168 uint16_t tx_pkt_length = TXONLY_DEF_PACKET_LEN; /**< TXONLY packet length. */
169 uint16_t tx_pkt_seg_lengths[RTE_MAX_SEGS_PER_PKT] = {
170         TXONLY_DEF_PACKET_LEN,
171 };
172 uint8_t  tx_pkt_nb_segs = 1; /**< Number of segments in TXONLY packets */
173
174 enum tx_pkt_split tx_pkt_split = TX_PKT_SPLIT_OFF;
175 /**< Split policy for packets to TX. */
176
177 uint16_t nb_pkt_per_burst = DEF_PKT_BURST; /**< Number of packets per burst. */
178 uint16_t mb_mempool_cache = DEF_MBUF_CACHE; /**< Size of mbuf mempool cache. */
179
180 /* current configuration is in DCB or not,0 means it is not in DCB mode */
181 uint8_t dcb_config = 0;
182
183 /* Whether the dcb is in testing status */
184 uint8_t dcb_test = 0;
185
186 /*
187  * Configurable number of RX/TX queues.
188  */
189 queueid_t nb_rxq = 1; /**< Number of RX queues per port. */
190 queueid_t nb_txq = 1; /**< Number of TX queues per port. */
191
192 /*
193  * Configurable number of RX/TX ring descriptors.
194  */
195 #define RTE_TEST_RX_DESC_DEFAULT 128
196 #define RTE_TEST_TX_DESC_DEFAULT 512
197 uint16_t nb_rxd = RTE_TEST_RX_DESC_DEFAULT; /**< Number of RX descriptors. */
198 uint16_t nb_txd = RTE_TEST_TX_DESC_DEFAULT; /**< Number of TX descriptors. */
199
200 #define RTE_PMD_PARAM_UNSET -1
201 /*
202  * Configurable values of RX and TX ring threshold registers.
203  */
204
205 int8_t rx_pthresh = RTE_PMD_PARAM_UNSET;
206 int8_t rx_hthresh = RTE_PMD_PARAM_UNSET;
207 int8_t rx_wthresh = RTE_PMD_PARAM_UNSET;
208
209 int8_t tx_pthresh = RTE_PMD_PARAM_UNSET;
210 int8_t tx_hthresh = RTE_PMD_PARAM_UNSET;
211 int8_t tx_wthresh = RTE_PMD_PARAM_UNSET;
212
213 /*
214  * Configurable value of RX free threshold.
215  */
216 int16_t rx_free_thresh = RTE_PMD_PARAM_UNSET;
217
218 /*
219  * Configurable value of RX drop enable.
220  */
221 int8_t rx_drop_en = RTE_PMD_PARAM_UNSET;
222
223 /*
224  * Configurable value of TX free threshold.
225  */
226 int16_t tx_free_thresh = RTE_PMD_PARAM_UNSET;
227
228 /*
229  * Configurable value of TX RS bit threshold.
230  */
231 int16_t tx_rs_thresh = RTE_PMD_PARAM_UNSET;
232
233 /*
234  * Receive Side Scaling (RSS) configuration.
235  */
236 uint64_t rss_hf = ETH_RSS_IP; /* RSS IP by default. */
237
238 /*
239  * Port topology configuration
240  */
241 uint16_t port_topology = PORT_TOPOLOGY_PAIRED; /* Ports are paired by default */
242
243 /*
244  * Avoids to flush all the RX streams before starts forwarding.
245  */
246 uint8_t no_flush_rx = 0; /* flush by default */
247
248 /*
249  * Flow API isolated mode.
250  */
251 uint8_t flow_isolate_all;
252
253 /*
254  * Avoids to check link status when starting/stopping a port.
255  */
256 uint8_t no_link_check = 0; /* check by default */
257
258 /*
259  * Enable link status change notification
260  */
261 uint8_t lsc_interrupt = 1; /* enabled by default */
262
263 /*
264  * Enable device removal notification.
265  */
266 uint8_t rmv_interrupt = 1; /* enabled by default */
267
268 /*
269  * Display or mask ether events
270  * Default to all events except VF_MBOX
271  */
272 uint32_t event_print_mask = (UINT32_C(1) << RTE_ETH_EVENT_UNKNOWN) |
273                             (UINT32_C(1) << RTE_ETH_EVENT_INTR_LSC) |
274                             (UINT32_C(1) << RTE_ETH_EVENT_QUEUE_STATE) |
275                             (UINT32_C(1) << RTE_ETH_EVENT_INTR_RESET) |
276                             (UINT32_C(1) << RTE_ETH_EVENT_MACSEC) |
277                             (UINT32_C(1) << RTE_ETH_EVENT_INTR_RMV);
278
279 /*
280  * NIC bypass mode configuration options.
281  */
282
283 #if defined RTE_LIBRTE_IXGBE_PMD && defined RTE_LIBRTE_IXGBE_BYPASS
284 /* The NIC bypass watchdog timeout. */
285 uint32_t bypass_timeout = RTE_PMD_IXGBE_BYPASS_TMT_OFF;
286 #endif
287
288
289 #ifdef RTE_LIBRTE_LATENCY_STATS
290
291 /*
292  * Set when latency stats is enabled in the commandline
293  */
294 uint8_t latencystats_enabled;
295
296 /*
297  * Lcore ID to serive latency statistics.
298  */
299 lcoreid_t latencystats_lcore_id = -1;
300
301 #endif
302
303 /*
304  * Ethernet device configuration.
305  */
306 struct rte_eth_rxmode rx_mode = {
307         .max_rx_pkt_len = ETHER_MAX_LEN, /**< Default maximum frame length. */
308         .offloads = (DEV_RX_OFFLOAD_VLAN_FILTER |
309                      DEV_RX_OFFLOAD_VLAN_STRIP |
310                      DEV_RX_OFFLOAD_CRC_STRIP),
311         .ignore_offload_bitfield = 1,
312 };
313
314 struct rte_eth_txmode tx_mode;
315
316 struct rte_fdir_conf fdir_conf = {
317         .mode = RTE_FDIR_MODE_NONE,
318         .pballoc = RTE_FDIR_PBALLOC_64K,
319         .status = RTE_FDIR_REPORT_STATUS,
320         .mask = {
321                 .vlan_tci_mask = 0x0,
322                 .ipv4_mask     = {
323                         .src_ip = 0xFFFFFFFF,
324                         .dst_ip = 0xFFFFFFFF,
325                 },
326                 .ipv6_mask     = {
327                         .src_ip = {0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF},
328                         .dst_ip = {0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF},
329                 },
330                 .src_port_mask = 0xFFFF,
331                 .dst_port_mask = 0xFFFF,
332                 .mac_addr_byte_mask = 0xFF,
333                 .tunnel_type_mask = 1,
334                 .tunnel_id_mask = 0xFFFFFFFF,
335         },
336         .drop_queue = 127,
337 };
338
339 volatile int test_done = 1; /* stop packet forwarding when set to 1. */
340
341 struct queue_stats_mappings tx_queue_stats_mappings_array[MAX_TX_QUEUE_STATS_MAPPINGS];
342 struct queue_stats_mappings rx_queue_stats_mappings_array[MAX_RX_QUEUE_STATS_MAPPINGS];
343
344 struct queue_stats_mappings *tx_queue_stats_mappings = tx_queue_stats_mappings_array;
345 struct queue_stats_mappings *rx_queue_stats_mappings = rx_queue_stats_mappings_array;
346
347 uint16_t nb_tx_queue_stats_mappings = 0;
348 uint16_t nb_rx_queue_stats_mappings = 0;
349
350 /*
351  * Display zero values by default for xstats
352  */
353 uint8_t xstats_hide_zero;
354
355 unsigned int num_sockets = 0;
356 unsigned int socket_ids[RTE_MAX_NUMA_NODES];
357
358 #ifdef RTE_LIBRTE_BITRATE
359 /* Bitrate statistics */
360 struct rte_stats_bitrates *bitrate_data;
361 lcoreid_t bitrate_lcore_id;
362 uint8_t bitrate_enabled;
363 #endif
364
365 struct gro_status gro_ports[RTE_MAX_ETHPORTS];
366 uint8_t gro_flush_cycles = GRO_DEFAULT_FLUSH_CYCLES;
367
368 /* Forward function declarations */
369 static void map_port_queue_stats_mapping_registers(portid_t pi,
370                                                    struct rte_port *port);
371 static void check_all_ports_link_status(uint32_t port_mask);
372 static int eth_event_callback(portid_t port_id,
373                               enum rte_eth_event_type type,
374                               void *param, void *ret_param);
375
376 /*
377  * Check if all the ports are started.
378  * If yes, return positive value. If not, return zero.
379  */
380 static int all_ports_started(void);
381
382 struct gso_status gso_ports[RTE_MAX_ETHPORTS];
383 uint16_t gso_max_segment_size = ETHER_MAX_LEN - ETHER_CRC_LEN;
384
385 /*
386  * Helper function to check if socket is already discovered.
387  * If yes, return positive value. If not, return zero.
388  */
389 int
390 new_socket_id(unsigned int socket_id)
391 {
392         unsigned int i;
393
394         for (i = 0; i < num_sockets; i++) {
395                 if (socket_ids[i] == socket_id)
396                         return 0;
397         }
398         return 1;
399 }
400
401 /*
402  * Setup default configuration.
403  */
404 static void
405 set_default_fwd_lcores_config(void)
406 {
407         unsigned int i;
408         unsigned int nb_lc;
409         unsigned int sock_num;
410
411         nb_lc = 0;
412         for (i = 0; i < RTE_MAX_LCORE; i++) {
413                 sock_num = rte_lcore_to_socket_id(i);
414                 if (new_socket_id(sock_num)) {
415                         if (num_sockets >= RTE_MAX_NUMA_NODES) {
416                                 rte_exit(EXIT_FAILURE,
417                                          "Total sockets greater than %u\n",
418                                          RTE_MAX_NUMA_NODES);
419                         }
420                         socket_ids[num_sockets++] = sock_num;
421                 }
422                 if (!rte_lcore_is_enabled(i))
423                         continue;
424                 if (i == rte_get_master_lcore())
425                         continue;
426                 fwd_lcores_cpuids[nb_lc++] = i;
427         }
428         nb_lcores = (lcoreid_t) nb_lc;
429         nb_cfg_lcores = nb_lcores;
430         nb_fwd_lcores = 1;
431 }
432
433 static void
434 set_def_peer_eth_addrs(void)
435 {
436         portid_t i;
437
438         for (i = 0; i < RTE_MAX_ETHPORTS; i++) {
439                 peer_eth_addrs[i].addr_bytes[0] = ETHER_LOCAL_ADMIN_ADDR;
440                 peer_eth_addrs[i].addr_bytes[5] = i;
441         }
442 }
443
444 static void
445 set_default_fwd_ports_config(void)
446 {
447         portid_t pt_id;
448         int i = 0;
449
450         RTE_ETH_FOREACH_DEV(pt_id)
451                 fwd_ports_ids[i++] = pt_id;
452
453         nb_cfg_ports = nb_ports;
454         nb_fwd_ports = nb_ports;
455 }
456
457 void
458 set_def_fwd_config(void)
459 {
460         set_default_fwd_lcores_config();
461         set_def_peer_eth_addrs();
462         set_default_fwd_ports_config();
463 }
464
465 /*
466  * Configuration initialisation done once at init time.
467  */
468 static void
469 mbuf_pool_create(uint16_t mbuf_seg_size, unsigned nb_mbuf,
470                  unsigned int socket_id)
471 {
472         char pool_name[RTE_MEMPOOL_NAMESIZE];
473         struct rte_mempool *rte_mp = NULL;
474         uint32_t mb_size;
475
476         mb_size = sizeof(struct rte_mbuf) + mbuf_seg_size;
477         mbuf_poolname_build(socket_id, pool_name, sizeof(pool_name));
478
479         TESTPMD_LOG(INFO,
480                 "create a new mbuf pool <%s>: n=%u, size=%u, socket=%u\n",
481                 pool_name, nb_mbuf, mbuf_seg_size, socket_id);
482
483         if (mp_anon != 0) {
484                 rte_mp = rte_mempool_create_empty(pool_name, nb_mbuf,
485                         mb_size, (unsigned) mb_mempool_cache,
486                         sizeof(struct rte_pktmbuf_pool_private),
487                         socket_id, 0);
488                 if (rte_mp == NULL)
489                         goto err;
490
491                 if (rte_mempool_populate_anon(rte_mp) == 0) {
492                         rte_mempool_free(rte_mp);
493                         rte_mp = NULL;
494                         goto err;
495                 }
496                 rte_pktmbuf_pool_init(rte_mp, NULL);
497                 rte_mempool_obj_iter(rte_mp, rte_pktmbuf_init, NULL);
498         } else {
499                 /* wrapper to rte_mempool_create() */
500                 rte_mp = rte_pktmbuf_pool_create(pool_name, nb_mbuf,
501                         mb_mempool_cache, 0, mbuf_seg_size, socket_id);
502         }
503
504 err:
505         if (rte_mp == NULL) {
506                 rte_exit(EXIT_FAILURE,
507                         "Creation of mbuf pool for socket %u failed: %s\n",
508                         socket_id, rte_strerror(rte_errno));
509         } else if (verbose_level > 0) {
510                 rte_mempool_dump(stdout, rte_mp);
511         }
512 }
513
514 /*
515  * Check given socket id is valid or not with NUMA mode,
516  * if valid, return 0, else return -1
517  */
518 static int
519 check_socket_id(const unsigned int socket_id)
520 {
521         static int warning_once = 0;
522
523         if (new_socket_id(socket_id)) {
524                 if (!warning_once && numa_support)
525                         printf("Warning: NUMA should be configured manually by"
526                                " using --port-numa-config and"
527                                " --ring-numa-config parameters along with"
528                                " --numa.\n");
529                 warning_once = 1;
530                 return -1;
531         }
532         return 0;
533 }
534
535 static void
536 init_config(void)
537 {
538         portid_t pid;
539         struct rte_port *port;
540         struct rte_mempool *mbp;
541         unsigned int nb_mbuf_per_pool;
542         lcoreid_t  lc_id;
543         uint8_t port_per_socket[RTE_MAX_NUMA_NODES];
544         struct rte_gro_param gro_param;
545         uint32_t gso_types;
546
547         memset(port_per_socket,0,RTE_MAX_NUMA_NODES);
548
549         if (numa_support) {
550                 memset(port_numa, NUMA_NO_CONFIG, RTE_MAX_ETHPORTS);
551                 memset(rxring_numa, NUMA_NO_CONFIG, RTE_MAX_ETHPORTS);
552                 memset(txring_numa, NUMA_NO_CONFIG, RTE_MAX_ETHPORTS);
553         }
554
555         /* Configuration of logical cores. */
556         fwd_lcores = rte_zmalloc("testpmd: fwd_lcores",
557                                 sizeof(struct fwd_lcore *) * nb_lcores,
558                                 RTE_CACHE_LINE_SIZE);
559         if (fwd_lcores == NULL) {
560                 rte_exit(EXIT_FAILURE, "rte_zmalloc(%d (struct fwd_lcore *)) "
561                                                         "failed\n", nb_lcores);
562         }
563         for (lc_id = 0; lc_id < nb_lcores; lc_id++) {
564                 fwd_lcores[lc_id] = rte_zmalloc("testpmd: struct fwd_lcore",
565                                                sizeof(struct fwd_lcore),
566                                                RTE_CACHE_LINE_SIZE);
567                 if (fwd_lcores[lc_id] == NULL) {
568                         rte_exit(EXIT_FAILURE, "rte_zmalloc(struct fwd_lcore) "
569                                                                 "failed\n");
570                 }
571                 fwd_lcores[lc_id]->cpuid_idx = lc_id;
572         }
573
574         RTE_ETH_FOREACH_DEV(pid) {
575                 port = &ports[pid];
576                 /* Apply default Tx configuration for all ports */
577                 port->dev_conf.txmode = tx_mode;
578                 port->dev_conf.rxmode = rx_mode;
579                 rte_eth_dev_info_get(pid, &port->dev_info);
580
581                 if (numa_support) {
582                         if (port_numa[pid] != NUMA_NO_CONFIG)
583                                 port_per_socket[port_numa[pid]]++;
584                         else {
585                                 uint32_t socket_id = rte_eth_dev_socket_id(pid);
586
587                                 /* if socket_id is invalid, set to 0 */
588                                 if (check_socket_id(socket_id) < 0)
589                                         socket_id = 0;
590                                 port_per_socket[socket_id]++;
591                         }
592                 }
593
594                 /* set flag to initialize port/queue */
595                 port->need_reconfig = 1;
596                 port->need_reconfig_queues = 1;
597         }
598
599         /*
600          * Create pools of mbuf.
601          * If NUMA support is disabled, create a single pool of mbuf in
602          * socket 0 memory by default.
603          * Otherwise, create a pool of mbuf in the memory of sockets 0 and 1.
604          *
605          * Use the maximum value of nb_rxd and nb_txd here, then nb_rxd and
606          * nb_txd can be configured at run time.
607          */
608         if (param_total_num_mbufs)
609                 nb_mbuf_per_pool = param_total_num_mbufs;
610         else {
611                 nb_mbuf_per_pool = RTE_TEST_RX_DESC_MAX +
612                         (nb_lcores * mb_mempool_cache) +
613                         RTE_TEST_TX_DESC_MAX + MAX_PKT_BURST;
614                 nb_mbuf_per_pool *= RTE_MAX_ETHPORTS;
615         }
616
617         if (numa_support) {
618                 uint8_t i;
619
620                 for (i = 0; i < num_sockets; i++)
621                         mbuf_pool_create(mbuf_data_size, nb_mbuf_per_pool,
622                                          socket_ids[i]);
623         } else {
624                 if (socket_num == UMA_NO_CONFIG)
625                         mbuf_pool_create(mbuf_data_size, nb_mbuf_per_pool, 0);
626                 else
627                         mbuf_pool_create(mbuf_data_size, nb_mbuf_per_pool,
628                                                  socket_num);
629         }
630
631         init_port_config();
632
633         gso_types = DEV_TX_OFFLOAD_TCP_TSO | DEV_TX_OFFLOAD_VXLAN_TNL_TSO |
634                 DEV_TX_OFFLOAD_GRE_TNL_TSO;
635         /*
636          * Records which Mbuf pool to use by each logical core, if needed.
637          */
638         for (lc_id = 0; lc_id < nb_lcores; lc_id++) {
639                 mbp = mbuf_pool_find(
640                         rte_lcore_to_socket_id(fwd_lcores_cpuids[lc_id]));
641
642                 if (mbp == NULL)
643                         mbp = mbuf_pool_find(0);
644                 fwd_lcores[lc_id]->mbp = mbp;
645                 /* initialize GSO context */
646                 fwd_lcores[lc_id]->gso_ctx.direct_pool = mbp;
647                 fwd_lcores[lc_id]->gso_ctx.indirect_pool = mbp;
648                 fwd_lcores[lc_id]->gso_ctx.gso_types = gso_types;
649                 fwd_lcores[lc_id]->gso_ctx.gso_size = ETHER_MAX_LEN -
650                         ETHER_CRC_LEN;
651                 fwd_lcores[lc_id]->gso_ctx.flag = 0;
652         }
653
654         /* Configuration of packet forwarding streams. */
655         if (init_fwd_streams() < 0)
656                 rte_exit(EXIT_FAILURE, "FAIL from init_fwd_streams()\n");
657
658         fwd_config_setup();
659
660         /* create a gro context for each lcore */
661         gro_param.gro_types = RTE_GRO_TCP_IPV4;
662         gro_param.max_flow_num = GRO_MAX_FLUSH_CYCLES;
663         gro_param.max_item_per_flow = MAX_PKT_BURST;
664         for (lc_id = 0; lc_id < nb_lcores; lc_id++) {
665                 gro_param.socket_id = rte_lcore_to_socket_id(
666                                 fwd_lcores_cpuids[lc_id]);
667                 fwd_lcores[lc_id]->gro_ctx = rte_gro_ctx_create(&gro_param);
668                 if (fwd_lcores[lc_id]->gro_ctx == NULL) {
669                         rte_exit(EXIT_FAILURE,
670                                         "rte_gro_ctx_create() failed\n");
671                 }
672         }
673 }
674
675
676 void
677 reconfig(portid_t new_port_id, unsigned socket_id)
678 {
679         struct rte_port *port;
680
681         /* Reconfiguration of Ethernet ports. */
682         port = &ports[new_port_id];
683         rte_eth_dev_info_get(new_port_id, &port->dev_info);
684
685         /* set flag to initialize port/queue */
686         port->need_reconfig = 1;
687         port->need_reconfig_queues = 1;
688         port->socket_id = socket_id;
689
690         init_port_config();
691 }
692
693
694 int
695 init_fwd_streams(void)
696 {
697         portid_t pid;
698         struct rte_port *port;
699         streamid_t sm_id, nb_fwd_streams_new;
700         queueid_t q;
701
702         /* set socket id according to numa or not */
703         RTE_ETH_FOREACH_DEV(pid) {
704                 port = &ports[pid];
705                 if (nb_rxq > port->dev_info.max_rx_queues) {
706                         printf("Fail: nb_rxq(%d) is greater than "
707                                 "max_rx_queues(%d)\n", nb_rxq,
708                                 port->dev_info.max_rx_queues);
709                         return -1;
710                 }
711                 if (nb_txq > port->dev_info.max_tx_queues) {
712                         printf("Fail: nb_txq(%d) is greater than "
713                                 "max_tx_queues(%d)\n", nb_txq,
714                                 port->dev_info.max_tx_queues);
715                         return -1;
716                 }
717                 if (numa_support) {
718                         if (port_numa[pid] != NUMA_NO_CONFIG)
719                                 port->socket_id = port_numa[pid];
720                         else {
721                                 port->socket_id = rte_eth_dev_socket_id(pid);
722
723                                 /* if socket_id is invalid, set to 0 */
724                                 if (check_socket_id(port->socket_id) < 0)
725                                         port->socket_id = 0;
726                         }
727                 }
728                 else {
729                         if (socket_num == UMA_NO_CONFIG)
730                                 port->socket_id = 0;
731                         else
732                                 port->socket_id = socket_num;
733                 }
734         }
735
736         q = RTE_MAX(nb_rxq, nb_txq);
737         if (q == 0) {
738                 printf("Fail: Cannot allocate fwd streams as number of queues is 0\n");
739                 return -1;
740         }
741         nb_fwd_streams_new = (streamid_t)(nb_ports * q);
742         if (nb_fwd_streams_new == nb_fwd_streams)
743                 return 0;
744         /* clear the old */
745         if (fwd_streams != NULL) {
746                 for (sm_id = 0; sm_id < nb_fwd_streams; sm_id++) {
747                         if (fwd_streams[sm_id] == NULL)
748                                 continue;
749                         rte_free(fwd_streams[sm_id]);
750                         fwd_streams[sm_id] = NULL;
751                 }
752                 rte_free(fwd_streams);
753                 fwd_streams = NULL;
754         }
755
756         /* init new */
757         nb_fwd_streams = nb_fwd_streams_new;
758         fwd_streams = rte_zmalloc("testpmd: fwd_streams",
759                 sizeof(struct fwd_stream *) * nb_fwd_streams, RTE_CACHE_LINE_SIZE);
760         if (fwd_streams == NULL)
761                 rte_exit(EXIT_FAILURE, "rte_zmalloc(%d (struct fwd_stream *)) "
762                                                 "failed\n", nb_fwd_streams);
763
764         for (sm_id = 0; sm_id < nb_fwd_streams; sm_id++) {
765                 fwd_streams[sm_id] = rte_zmalloc("testpmd: struct fwd_stream",
766                                 sizeof(struct fwd_stream), RTE_CACHE_LINE_SIZE);
767                 if (fwd_streams[sm_id] == NULL)
768                         rte_exit(EXIT_FAILURE, "rte_zmalloc(struct fwd_stream)"
769                                                                 " failed\n");
770         }
771
772         return 0;
773 }
774
775 #ifdef RTE_TEST_PMD_RECORD_BURST_STATS
776 static void
777 pkt_burst_stats_display(const char *rx_tx, struct pkt_burst_stats *pbs)
778 {
779         unsigned int total_burst;
780         unsigned int nb_burst;
781         unsigned int burst_stats[3];
782         uint16_t pktnb_stats[3];
783         uint16_t nb_pkt;
784         int burst_percent[3];
785
786         /*
787          * First compute the total number of packet bursts and the
788          * two highest numbers of bursts of the same number of packets.
789          */
790         total_burst = 0;
791         burst_stats[0] = burst_stats[1] = burst_stats[2] = 0;
792         pktnb_stats[0] = pktnb_stats[1] = pktnb_stats[2] = 0;
793         for (nb_pkt = 0; nb_pkt < MAX_PKT_BURST; nb_pkt++) {
794                 nb_burst = pbs->pkt_burst_spread[nb_pkt];
795                 if (nb_burst == 0)
796                         continue;
797                 total_burst += nb_burst;
798                 if (nb_burst > burst_stats[0]) {
799                         burst_stats[1] = burst_stats[0];
800                         pktnb_stats[1] = pktnb_stats[0];
801                         burst_stats[0] = nb_burst;
802                         pktnb_stats[0] = nb_pkt;
803                 }
804         }
805         if (total_burst == 0)
806                 return;
807         burst_percent[0] = (burst_stats[0] * 100) / total_burst;
808         printf("  %s-bursts : %u [%d%% of %d pkts", rx_tx, total_burst,
809                burst_percent[0], (int) pktnb_stats[0]);
810         if (burst_stats[0] == total_burst) {
811                 printf("]\n");
812                 return;
813         }
814         if (burst_stats[0] + burst_stats[1] == total_burst) {
815                 printf(" + %d%% of %d pkts]\n",
816                        100 - burst_percent[0], pktnb_stats[1]);
817                 return;
818         }
819         burst_percent[1] = (burst_stats[1] * 100) / total_burst;
820         burst_percent[2] = 100 - (burst_percent[0] + burst_percent[1]);
821         if ((burst_percent[1] == 0) || (burst_percent[2] == 0)) {
822                 printf(" + %d%% of others]\n", 100 - burst_percent[0]);
823                 return;
824         }
825         printf(" + %d%% of %d pkts + %d%% of others]\n",
826                burst_percent[1], (int) pktnb_stats[1], burst_percent[2]);
827 }
828 #endif /* RTE_TEST_PMD_RECORD_BURST_STATS */
829
830 static void
831 fwd_port_stats_display(portid_t port_id, struct rte_eth_stats *stats)
832 {
833         struct rte_port *port;
834         uint8_t i;
835
836         static const char *fwd_stats_border = "----------------------";
837
838         port = &ports[port_id];
839         printf("\n  %s Forward statistics for port %-2d %s\n",
840                fwd_stats_border, port_id, fwd_stats_border);
841
842         if ((!port->rx_queue_stats_mapping_enabled) && (!port->tx_queue_stats_mapping_enabled)) {
843                 printf("  RX-packets: %-14"PRIu64" RX-dropped: %-14"PRIu64"RX-total: "
844                        "%-"PRIu64"\n",
845                        stats->ipackets, stats->imissed,
846                        (uint64_t) (stats->ipackets + stats->imissed));
847
848                 if (cur_fwd_eng == &csum_fwd_engine)
849                         printf("  Bad-ipcsum: %-14"PRIu64" Bad-l4csum: %-14"PRIu64" \n",
850                                port->rx_bad_ip_csum, port->rx_bad_l4_csum);
851                 if ((stats->ierrors + stats->rx_nombuf) > 0) {
852                         printf("  RX-error: %-"PRIu64"\n",  stats->ierrors);
853                         printf("  RX-nombufs: %-14"PRIu64"\n", stats->rx_nombuf);
854                 }
855
856                 printf("  TX-packets: %-14"PRIu64" TX-dropped: %-14"PRIu64"TX-total: "
857                        "%-"PRIu64"\n",
858                        stats->opackets, port->tx_dropped,
859                        (uint64_t) (stats->opackets + port->tx_dropped));
860         }
861         else {
862                 printf("  RX-packets:             %14"PRIu64"    RX-dropped:%14"PRIu64"    RX-total:"
863                        "%14"PRIu64"\n",
864                        stats->ipackets, stats->imissed,
865                        (uint64_t) (stats->ipackets + stats->imissed));
866
867                 if (cur_fwd_eng == &csum_fwd_engine)
868                         printf("  Bad-ipcsum:%14"PRIu64"    Bad-l4csum:%14"PRIu64"\n",
869                                port->rx_bad_ip_csum, port->rx_bad_l4_csum);
870                 if ((stats->ierrors + stats->rx_nombuf) > 0) {
871                         printf("  RX-error:%"PRIu64"\n", stats->ierrors);
872                         printf("  RX-nombufs:             %14"PRIu64"\n",
873                                stats->rx_nombuf);
874                 }
875
876                 printf("  TX-packets:             %14"PRIu64"    TX-dropped:%14"PRIu64"    TX-total:"
877                        "%14"PRIu64"\n",
878                        stats->opackets, port->tx_dropped,
879                        (uint64_t) (stats->opackets + port->tx_dropped));
880         }
881
882 #ifdef RTE_TEST_PMD_RECORD_BURST_STATS
883         if (port->rx_stream)
884                 pkt_burst_stats_display("RX",
885                         &port->rx_stream->rx_burst_stats);
886         if (port->tx_stream)
887                 pkt_burst_stats_display("TX",
888                         &port->tx_stream->tx_burst_stats);
889 #endif
890
891         if (port->rx_queue_stats_mapping_enabled) {
892                 printf("\n");
893                 for (i = 0; i < RTE_ETHDEV_QUEUE_STAT_CNTRS; i++) {
894                         printf("  Stats reg %2d RX-packets:%14"PRIu64
895                                "     RX-errors:%14"PRIu64
896                                "    RX-bytes:%14"PRIu64"\n",
897                                i, stats->q_ipackets[i], stats->q_errors[i], stats->q_ibytes[i]);
898                 }
899                 printf("\n");
900         }
901         if (port->tx_queue_stats_mapping_enabled) {
902                 for (i = 0; i < RTE_ETHDEV_QUEUE_STAT_CNTRS; i++) {
903                         printf("  Stats reg %2d TX-packets:%14"PRIu64
904                                "                                 TX-bytes:%14"PRIu64"\n",
905                                i, stats->q_opackets[i], stats->q_obytes[i]);
906                 }
907         }
908
909         printf("  %s--------------------------------%s\n",
910                fwd_stats_border, fwd_stats_border);
911 }
912
913 static void
914 fwd_stream_stats_display(streamid_t stream_id)
915 {
916         struct fwd_stream *fs;
917         static const char *fwd_top_stats_border = "-------";
918
919         fs = fwd_streams[stream_id];
920         if ((fs->rx_packets == 0) && (fs->tx_packets == 0) &&
921             (fs->fwd_dropped == 0))
922                 return;
923         printf("\n  %s Forward Stats for RX Port=%2d/Queue=%2d -> "
924                "TX Port=%2d/Queue=%2d %s\n",
925                fwd_top_stats_border, fs->rx_port, fs->rx_queue,
926                fs->tx_port, fs->tx_queue, fwd_top_stats_border);
927         printf("  RX-packets: %-14u TX-packets: %-14u TX-dropped: %-14u",
928                fs->rx_packets, fs->tx_packets, fs->fwd_dropped);
929
930         /* if checksum mode */
931         if (cur_fwd_eng == &csum_fwd_engine) {
932                printf("  RX- bad IP checksum: %-14u  Rx- bad L4 checksum: "
933                         "%-14u\n", fs->rx_bad_ip_csum, fs->rx_bad_l4_csum);
934         }
935
936 #ifdef RTE_TEST_PMD_RECORD_BURST_STATS
937         pkt_burst_stats_display("RX", &fs->rx_burst_stats);
938         pkt_burst_stats_display("TX", &fs->tx_burst_stats);
939 #endif
940 }
941
942 static void
943 flush_fwd_rx_queues(void)
944 {
945         struct rte_mbuf *pkts_burst[MAX_PKT_BURST];
946         portid_t  rxp;
947         portid_t port_id;
948         queueid_t rxq;
949         uint16_t  nb_rx;
950         uint16_t  i;
951         uint8_t   j;
952         uint64_t prev_tsc = 0, diff_tsc, cur_tsc, timer_tsc = 0;
953         uint64_t timer_period;
954
955         /* convert to number of cycles */
956         timer_period = rte_get_timer_hz(); /* 1 second timeout */
957
958         for (j = 0; j < 2; j++) {
959                 for (rxp = 0; rxp < cur_fwd_config.nb_fwd_ports; rxp++) {
960                         for (rxq = 0; rxq < nb_rxq; rxq++) {
961                                 port_id = fwd_ports_ids[rxp];
962                                 /**
963                                 * testpmd can stuck in the below do while loop
964                                 * if rte_eth_rx_burst() always returns nonzero
965                                 * packets. So timer is added to exit this loop
966                                 * after 1sec timer expiry.
967                                 */
968                                 prev_tsc = rte_rdtsc();
969                                 do {
970                                         nb_rx = rte_eth_rx_burst(port_id, rxq,
971                                                 pkts_burst, MAX_PKT_BURST);
972                                         for (i = 0; i < nb_rx; i++)
973                                                 rte_pktmbuf_free(pkts_burst[i]);
974
975                                         cur_tsc = rte_rdtsc();
976                                         diff_tsc = cur_tsc - prev_tsc;
977                                         timer_tsc += diff_tsc;
978                                 } while ((nb_rx > 0) &&
979                                         (timer_tsc < timer_period));
980                                 timer_tsc = 0;
981                         }
982                 }
983                 rte_delay_ms(10); /* wait 10 milli-seconds before retrying */
984         }
985 }
986
987 static void
988 run_pkt_fwd_on_lcore(struct fwd_lcore *fc, packet_fwd_t pkt_fwd)
989 {
990         struct fwd_stream **fsm;
991         streamid_t nb_fs;
992         streamid_t sm_id;
993 #ifdef RTE_LIBRTE_BITRATE
994         uint64_t tics_per_1sec;
995         uint64_t tics_datum;
996         uint64_t tics_current;
997         uint8_t idx_port, cnt_ports;
998
999         cnt_ports = rte_eth_dev_count();
1000         tics_datum = rte_rdtsc();
1001         tics_per_1sec = rte_get_timer_hz();
1002 #endif
1003         fsm = &fwd_streams[fc->stream_idx];
1004         nb_fs = fc->stream_nb;
1005         do {
1006                 for (sm_id = 0; sm_id < nb_fs; sm_id++)
1007                         (*pkt_fwd)(fsm[sm_id]);
1008 #ifdef RTE_LIBRTE_BITRATE
1009                 if (bitrate_enabled != 0 &&
1010                                 bitrate_lcore_id == rte_lcore_id()) {
1011                         tics_current = rte_rdtsc();
1012                         if (tics_current - tics_datum >= tics_per_1sec) {
1013                                 /* Periodic bitrate calculation */
1014                                 for (idx_port = 0;
1015                                                 idx_port < cnt_ports;
1016                                                 idx_port++)
1017                                         rte_stats_bitrate_calc(bitrate_data,
1018                                                 idx_port);
1019                                 tics_datum = tics_current;
1020                         }
1021                 }
1022 #endif
1023 #ifdef RTE_LIBRTE_LATENCY_STATS
1024                 if (latencystats_enabled != 0 &&
1025                                 latencystats_lcore_id == rte_lcore_id())
1026                         rte_latencystats_update();
1027 #endif
1028
1029         } while (! fc->stopped);
1030 }
1031
1032 static int
1033 start_pkt_forward_on_core(void *fwd_arg)
1034 {
1035         run_pkt_fwd_on_lcore((struct fwd_lcore *) fwd_arg,
1036                              cur_fwd_config.fwd_eng->packet_fwd);
1037         return 0;
1038 }
1039
1040 /*
1041  * Run the TXONLY packet forwarding engine to send a single burst of packets.
1042  * Used to start communication flows in network loopback test configurations.
1043  */
1044 static int
1045 run_one_txonly_burst_on_core(void *fwd_arg)
1046 {
1047         struct fwd_lcore *fwd_lc;
1048         struct fwd_lcore tmp_lcore;
1049
1050         fwd_lc = (struct fwd_lcore *) fwd_arg;
1051         tmp_lcore = *fwd_lc;
1052         tmp_lcore.stopped = 1;
1053         run_pkt_fwd_on_lcore(&tmp_lcore, tx_only_engine.packet_fwd);
1054         return 0;
1055 }
1056
1057 /*
1058  * Launch packet forwarding:
1059  *     - Setup per-port forwarding context.
1060  *     - launch logical cores with their forwarding configuration.
1061  */
1062 static void
1063 launch_packet_forwarding(lcore_function_t *pkt_fwd_on_lcore)
1064 {
1065         port_fwd_begin_t port_fwd_begin;
1066         unsigned int i;
1067         unsigned int lc_id;
1068         int diag;
1069
1070         port_fwd_begin = cur_fwd_config.fwd_eng->port_fwd_begin;
1071         if (port_fwd_begin != NULL) {
1072                 for (i = 0; i < cur_fwd_config.nb_fwd_ports; i++)
1073                         (*port_fwd_begin)(fwd_ports_ids[i]);
1074         }
1075         for (i = 0; i < cur_fwd_config.nb_fwd_lcores; i++) {
1076                 lc_id = fwd_lcores_cpuids[i];
1077                 if ((interactive == 0) || (lc_id != rte_lcore_id())) {
1078                         fwd_lcores[i]->stopped = 0;
1079                         diag = rte_eal_remote_launch(pkt_fwd_on_lcore,
1080                                                      fwd_lcores[i], lc_id);
1081                         if (diag != 0)
1082                                 printf("launch lcore %u failed - diag=%d\n",
1083                                        lc_id, diag);
1084                 }
1085         }
1086 }
1087
1088 /*
1089  * Launch packet forwarding configuration.
1090  */
1091 void
1092 start_packet_forwarding(int with_tx_first)
1093 {
1094         port_fwd_begin_t port_fwd_begin;
1095         port_fwd_end_t  port_fwd_end;
1096         struct rte_port *port;
1097         unsigned int i;
1098         portid_t   pt_id;
1099         streamid_t sm_id;
1100
1101         if (strcmp(cur_fwd_eng->fwd_mode_name, "rxonly") == 0 && !nb_rxq)
1102                 rte_exit(EXIT_FAILURE, "rxq are 0, cannot use rxonly fwd mode\n");
1103
1104         if (strcmp(cur_fwd_eng->fwd_mode_name, "txonly") == 0 && !nb_txq)
1105                 rte_exit(EXIT_FAILURE, "txq are 0, cannot use txonly fwd mode\n");
1106
1107         if ((strcmp(cur_fwd_eng->fwd_mode_name, "rxonly") != 0 &&
1108                 strcmp(cur_fwd_eng->fwd_mode_name, "txonly") != 0) &&
1109                 (!nb_rxq || !nb_txq))
1110                 rte_exit(EXIT_FAILURE,
1111                         "Either rxq or txq are 0, cannot use %s fwd mode\n",
1112                         cur_fwd_eng->fwd_mode_name);
1113
1114         if (all_ports_started() == 0) {
1115                 printf("Not all ports were started\n");
1116                 return;
1117         }
1118         if (test_done == 0) {
1119                 printf("Packet forwarding already started\n");
1120                 return;
1121         }
1122
1123         if (init_fwd_streams() < 0) {
1124                 printf("Fail from init_fwd_streams()\n");
1125                 return;
1126         }
1127
1128         if(dcb_test) {
1129                 for (i = 0; i < nb_fwd_ports; i++) {
1130                         pt_id = fwd_ports_ids[i];
1131                         port = &ports[pt_id];
1132                         if (!port->dcb_flag) {
1133                                 printf("In DCB mode, all forwarding ports must "
1134                                        "be configured in this mode.\n");
1135                                 return;
1136                         }
1137                 }
1138                 if (nb_fwd_lcores == 1) {
1139                         printf("In DCB mode,the nb forwarding cores "
1140                                "should be larger than 1.\n");
1141                         return;
1142                 }
1143         }
1144         test_done = 0;
1145
1146         if(!no_flush_rx)
1147                 flush_fwd_rx_queues();
1148
1149         fwd_config_setup();
1150         pkt_fwd_config_display(&cur_fwd_config);
1151         rxtx_config_display();
1152
1153         for (i = 0; i < cur_fwd_config.nb_fwd_ports; i++) {
1154                 pt_id = fwd_ports_ids[i];
1155                 port = &ports[pt_id];
1156                 rte_eth_stats_get(pt_id, &port->stats);
1157                 port->tx_dropped = 0;
1158
1159                 map_port_queue_stats_mapping_registers(pt_id, port);
1160         }
1161         for (sm_id = 0; sm_id < cur_fwd_config.nb_fwd_streams; sm_id++) {
1162                 fwd_streams[sm_id]->rx_packets = 0;
1163                 fwd_streams[sm_id]->tx_packets = 0;
1164                 fwd_streams[sm_id]->fwd_dropped = 0;
1165                 fwd_streams[sm_id]->rx_bad_ip_csum = 0;
1166                 fwd_streams[sm_id]->rx_bad_l4_csum = 0;
1167
1168 #ifdef RTE_TEST_PMD_RECORD_BURST_STATS
1169                 memset(&fwd_streams[sm_id]->rx_burst_stats, 0,
1170                        sizeof(fwd_streams[sm_id]->rx_burst_stats));
1171                 memset(&fwd_streams[sm_id]->tx_burst_stats, 0,
1172                        sizeof(fwd_streams[sm_id]->tx_burst_stats));
1173 #endif
1174 #ifdef RTE_TEST_PMD_RECORD_CORE_CYCLES
1175                 fwd_streams[sm_id]->core_cycles = 0;
1176 #endif
1177         }
1178         if (with_tx_first) {
1179                 port_fwd_begin = tx_only_engine.port_fwd_begin;
1180                 if (port_fwd_begin != NULL) {
1181                         for (i = 0; i < cur_fwd_config.nb_fwd_ports; i++)
1182                                 (*port_fwd_begin)(fwd_ports_ids[i]);
1183                 }
1184                 while (with_tx_first--) {
1185                         launch_packet_forwarding(
1186                                         run_one_txonly_burst_on_core);
1187                         rte_eal_mp_wait_lcore();
1188                 }
1189                 port_fwd_end = tx_only_engine.port_fwd_end;
1190                 if (port_fwd_end != NULL) {
1191                         for (i = 0; i < cur_fwd_config.nb_fwd_ports; i++)
1192                                 (*port_fwd_end)(fwd_ports_ids[i]);
1193                 }
1194         }
1195         launch_packet_forwarding(start_pkt_forward_on_core);
1196 }
1197
1198 void
1199 stop_packet_forwarding(void)
1200 {
1201         struct rte_eth_stats stats;
1202         struct rte_port *port;
1203         port_fwd_end_t  port_fwd_end;
1204         int i;
1205         portid_t   pt_id;
1206         streamid_t sm_id;
1207         lcoreid_t  lc_id;
1208         uint64_t total_recv;
1209         uint64_t total_xmit;
1210         uint64_t total_rx_dropped;
1211         uint64_t total_tx_dropped;
1212         uint64_t total_rx_nombuf;
1213         uint64_t tx_dropped;
1214         uint64_t rx_bad_ip_csum;
1215         uint64_t rx_bad_l4_csum;
1216 #ifdef RTE_TEST_PMD_RECORD_CORE_CYCLES
1217         uint64_t fwd_cycles;
1218 #endif
1219
1220         static const char *acc_stats_border = "+++++++++++++++";
1221
1222         if (test_done) {
1223                 printf("Packet forwarding not started\n");
1224                 return;
1225         }
1226         printf("Telling cores to stop...");
1227         for (lc_id = 0; lc_id < cur_fwd_config.nb_fwd_lcores; lc_id++)
1228                 fwd_lcores[lc_id]->stopped = 1;
1229         printf("\nWaiting for lcores to finish...\n");
1230         rte_eal_mp_wait_lcore();
1231         port_fwd_end = cur_fwd_config.fwd_eng->port_fwd_end;
1232         if (port_fwd_end != NULL) {
1233                 for (i = 0; i < cur_fwd_config.nb_fwd_ports; i++) {
1234                         pt_id = fwd_ports_ids[i];
1235                         (*port_fwd_end)(pt_id);
1236                 }
1237         }
1238 #ifdef RTE_TEST_PMD_RECORD_CORE_CYCLES
1239         fwd_cycles = 0;
1240 #endif
1241         for (sm_id = 0; sm_id < cur_fwd_config.nb_fwd_streams; sm_id++) {
1242                 if (cur_fwd_config.nb_fwd_streams >
1243                     cur_fwd_config.nb_fwd_ports) {
1244                         fwd_stream_stats_display(sm_id);
1245                         ports[fwd_streams[sm_id]->tx_port].tx_stream = NULL;
1246                         ports[fwd_streams[sm_id]->rx_port].rx_stream = NULL;
1247                 } else {
1248                         ports[fwd_streams[sm_id]->tx_port].tx_stream =
1249                                 fwd_streams[sm_id];
1250                         ports[fwd_streams[sm_id]->rx_port].rx_stream =
1251                                 fwd_streams[sm_id];
1252                 }
1253                 tx_dropped = ports[fwd_streams[sm_id]->tx_port].tx_dropped;
1254                 tx_dropped = (uint64_t) (tx_dropped +
1255                                          fwd_streams[sm_id]->fwd_dropped);
1256                 ports[fwd_streams[sm_id]->tx_port].tx_dropped = tx_dropped;
1257
1258                 rx_bad_ip_csum =
1259                         ports[fwd_streams[sm_id]->rx_port].rx_bad_ip_csum;
1260                 rx_bad_ip_csum = (uint64_t) (rx_bad_ip_csum +
1261                                          fwd_streams[sm_id]->rx_bad_ip_csum);
1262                 ports[fwd_streams[sm_id]->rx_port].rx_bad_ip_csum =
1263                                                         rx_bad_ip_csum;
1264
1265                 rx_bad_l4_csum =
1266                         ports[fwd_streams[sm_id]->rx_port].rx_bad_l4_csum;
1267                 rx_bad_l4_csum = (uint64_t) (rx_bad_l4_csum +
1268                                          fwd_streams[sm_id]->rx_bad_l4_csum);
1269                 ports[fwd_streams[sm_id]->rx_port].rx_bad_l4_csum =
1270                                                         rx_bad_l4_csum;
1271
1272 #ifdef RTE_TEST_PMD_RECORD_CORE_CYCLES
1273                 fwd_cycles = (uint64_t) (fwd_cycles +
1274                                          fwd_streams[sm_id]->core_cycles);
1275 #endif
1276         }
1277         total_recv = 0;
1278         total_xmit = 0;
1279         total_rx_dropped = 0;
1280         total_tx_dropped = 0;
1281         total_rx_nombuf  = 0;
1282         for (i = 0; i < cur_fwd_config.nb_fwd_ports; i++) {
1283                 pt_id = fwd_ports_ids[i];
1284
1285                 port = &ports[pt_id];
1286                 rte_eth_stats_get(pt_id, &stats);
1287                 stats.ipackets -= port->stats.ipackets;
1288                 port->stats.ipackets = 0;
1289                 stats.opackets -= port->stats.opackets;
1290                 port->stats.opackets = 0;
1291                 stats.ibytes   -= port->stats.ibytes;
1292                 port->stats.ibytes = 0;
1293                 stats.obytes   -= port->stats.obytes;
1294                 port->stats.obytes = 0;
1295                 stats.imissed  -= port->stats.imissed;
1296                 port->stats.imissed = 0;
1297                 stats.oerrors  -= port->stats.oerrors;
1298                 port->stats.oerrors = 0;
1299                 stats.rx_nombuf -= port->stats.rx_nombuf;
1300                 port->stats.rx_nombuf = 0;
1301
1302                 total_recv += stats.ipackets;
1303                 total_xmit += stats.opackets;
1304                 total_rx_dropped += stats.imissed;
1305                 total_tx_dropped += port->tx_dropped;
1306                 total_rx_nombuf  += stats.rx_nombuf;
1307
1308                 fwd_port_stats_display(pt_id, &stats);
1309         }
1310
1311         printf("\n  %s Accumulated forward statistics for all ports"
1312                "%s\n",
1313                acc_stats_border, acc_stats_border);
1314         printf("  RX-packets: %-14"PRIu64" RX-dropped: %-14"PRIu64"RX-total: "
1315                "%-"PRIu64"\n"
1316                "  TX-packets: %-14"PRIu64" TX-dropped: %-14"PRIu64"TX-total: "
1317                "%-"PRIu64"\n",
1318                total_recv, total_rx_dropped, total_recv + total_rx_dropped,
1319                total_xmit, total_tx_dropped, total_xmit + total_tx_dropped);
1320         if (total_rx_nombuf > 0)
1321                 printf("  RX-nombufs: %-14"PRIu64"\n", total_rx_nombuf);
1322         printf("  %s++++++++++++++++++++++++++++++++++++++++++++++"
1323                "%s\n",
1324                acc_stats_border, acc_stats_border);
1325 #ifdef RTE_TEST_PMD_RECORD_CORE_CYCLES
1326         if (total_recv > 0)
1327                 printf("\n  CPU cycles/packet=%u (total cycles="
1328                        "%"PRIu64" / total RX packets=%"PRIu64")\n",
1329                        (unsigned int)(fwd_cycles / total_recv),
1330                        fwd_cycles, total_recv);
1331 #endif
1332         printf("\nDone.\n");
1333         test_done = 1;
1334 }
1335
1336 void
1337 dev_set_link_up(portid_t pid)
1338 {
1339         if (rte_eth_dev_set_link_up(pid) < 0)
1340                 printf("\nSet link up fail.\n");
1341 }
1342
1343 void
1344 dev_set_link_down(portid_t pid)
1345 {
1346         if (rte_eth_dev_set_link_down(pid) < 0)
1347                 printf("\nSet link down fail.\n");
1348 }
1349
1350 static int
1351 all_ports_started(void)
1352 {
1353         portid_t pi;
1354         struct rte_port *port;
1355
1356         RTE_ETH_FOREACH_DEV(pi) {
1357                 port = &ports[pi];
1358                 /* Check if there is a port which is not started */
1359                 if ((port->port_status != RTE_PORT_STARTED) &&
1360                         (port->slave_flag == 0))
1361                         return 0;
1362         }
1363
1364         /* No port is not started */
1365         return 1;
1366 }
1367
1368 int
1369 port_is_stopped(portid_t port_id)
1370 {
1371         struct rte_port *port = &ports[port_id];
1372
1373         if ((port->port_status != RTE_PORT_STOPPED) &&
1374             (port->slave_flag == 0))
1375                 return 0;
1376         return 1;
1377 }
1378
1379 int
1380 all_ports_stopped(void)
1381 {
1382         portid_t pi;
1383
1384         RTE_ETH_FOREACH_DEV(pi) {
1385                 if (!port_is_stopped(pi))
1386                         return 0;
1387         }
1388
1389         return 1;
1390 }
1391
1392 int
1393 port_is_started(portid_t port_id)
1394 {
1395         if (port_id_is_invalid(port_id, ENABLED_WARN))
1396                 return 0;
1397
1398         if (ports[port_id].port_status != RTE_PORT_STARTED)
1399                 return 0;
1400
1401         return 1;
1402 }
1403
1404 static int
1405 port_is_closed(portid_t port_id)
1406 {
1407         if (port_id_is_invalid(port_id, ENABLED_WARN))
1408                 return 0;
1409
1410         if (ports[port_id].port_status != RTE_PORT_CLOSED)
1411                 return 0;
1412
1413         return 1;
1414 }
1415
1416 int
1417 start_port(portid_t pid)
1418 {
1419         int diag, need_check_link_status = -1;
1420         portid_t pi;
1421         queueid_t qi;
1422         struct rte_port *port;
1423         struct ether_addr mac_addr;
1424         enum rte_eth_event_type event_type;
1425
1426         if (port_id_is_invalid(pid, ENABLED_WARN))
1427                 return 0;
1428
1429         if(dcb_config)
1430                 dcb_test = 1;
1431         RTE_ETH_FOREACH_DEV(pi) {
1432                 if (pid != pi && pid != (portid_t)RTE_PORT_ALL)
1433                         continue;
1434
1435                 need_check_link_status = 0;
1436                 port = &ports[pi];
1437                 if (rte_atomic16_cmpset(&(port->port_status), RTE_PORT_STOPPED,
1438                                                  RTE_PORT_HANDLING) == 0) {
1439                         printf("Port %d is now not stopped\n", pi);
1440                         continue;
1441                 }
1442
1443                 if (port->need_reconfig > 0) {
1444                         port->need_reconfig = 0;
1445
1446                         if (flow_isolate_all) {
1447                                 int ret = port_flow_isolate(pi, 1);
1448                                 if (ret) {
1449                                         printf("Failed to apply isolated"
1450                                                " mode on port %d\n", pi);
1451                                         return -1;
1452                                 }
1453                         }
1454
1455                         printf("Configuring Port %d (socket %u)\n", pi,
1456                                         port->socket_id);
1457                         /* configure port */
1458                         diag = rte_eth_dev_configure(pi, nb_rxq, nb_txq,
1459                                                 &(port->dev_conf));
1460                         if (diag != 0) {
1461                                 if (rte_atomic16_cmpset(&(port->port_status),
1462                                 RTE_PORT_HANDLING, RTE_PORT_STOPPED) == 0)
1463                                         printf("Port %d can not be set back "
1464                                                         "to stopped\n", pi);
1465                                 printf("Fail to configure port %d\n", pi);
1466                                 /* try to reconfigure port next time */
1467                                 port->need_reconfig = 1;
1468                                 return -1;
1469                         }
1470                 }
1471                 if (port->need_reconfig_queues > 0) {
1472                         port->need_reconfig_queues = 0;
1473                         port->tx_conf.txq_flags = ETH_TXQ_FLAGS_IGNORE;
1474                         /* Apply Tx offloads configuration */
1475                         port->tx_conf.offloads = port->dev_conf.txmode.offloads;
1476                         /* setup tx queues */
1477                         for (qi = 0; qi < nb_txq; qi++) {
1478                                 if ((numa_support) &&
1479                                         (txring_numa[pi] != NUMA_NO_CONFIG))
1480                                         diag = rte_eth_tx_queue_setup(pi, qi,
1481                                                 nb_txd,txring_numa[pi],
1482                                                 &(port->tx_conf));
1483                                 else
1484                                         diag = rte_eth_tx_queue_setup(pi, qi,
1485                                                 nb_txd,port->socket_id,
1486                                                 &(port->tx_conf));
1487
1488                                 if (diag == 0)
1489                                         continue;
1490
1491                                 /* Fail to setup tx queue, return */
1492                                 if (rte_atomic16_cmpset(&(port->port_status),
1493                                                         RTE_PORT_HANDLING,
1494                                                         RTE_PORT_STOPPED) == 0)
1495                                         printf("Port %d can not be set back "
1496                                                         "to stopped\n", pi);
1497                                 printf("Fail to configure port %d tx queues\n", pi);
1498                                 /* try to reconfigure queues next time */
1499                                 port->need_reconfig_queues = 1;
1500                                 return -1;
1501                         }
1502                         /* Apply Rx offloads configuration */
1503                         port->rx_conf.offloads = port->dev_conf.rxmode.offloads;
1504                         /* setup rx queues */
1505                         for (qi = 0; qi < nb_rxq; qi++) {
1506                                 if ((numa_support) &&
1507                                         (rxring_numa[pi] != NUMA_NO_CONFIG)) {
1508                                         struct rte_mempool * mp =
1509                                                 mbuf_pool_find(rxring_numa[pi]);
1510                                         if (mp == NULL) {
1511                                                 printf("Failed to setup RX queue:"
1512                                                         "No mempool allocation"
1513                                                         " on the socket %d\n",
1514                                                         rxring_numa[pi]);
1515                                                 return -1;
1516                                         }
1517
1518                                         diag = rte_eth_rx_queue_setup(pi, qi,
1519                                              nb_rxd,rxring_numa[pi],
1520                                              &(port->rx_conf),mp);
1521                                 } else {
1522                                         struct rte_mempool *mp =
1523                                                 mbuf_pool_find(port->socket_id);
1524                                         if (mp == NULL) {
1525                                                 printf("Failed to setup RX queue:"
1526                                                         "No mempool allocation"
1527                                                         " on the socket %d\n",
1528                                                         port->socket_id);
1529                                                 return -1;
1530                                         }
1531                                         diag = rte_eth_rx_queue_setup(pi, qi,
1532                                              nb_rxd,port->socket_id,
1533                                              &(port->rx_conf), mp);
1534                                 }
1535                                 if (diag == 0)
1536                                         continue;
1537
1538                                 /* Fail to setup rx queue, return */
1539                                 if (rte_atomic16_cmpset(&(port->port_status),
1540                                                         RTE_PORT_HANDLING,
1541                                                         RTE_PORT_STOPPED) == 0)
1542                                         printf("Port %d can not be set back "
1543                                                         "to stopped\n", pi);
1544                                 printf("Fail to configure port %d rx queues\n", pi);
1545                                 /* try to reconfigure queues next time */
1546                                 port->need_reconfig_queues = 1;
1547                                 return -1;
1548                         }
1549                 }
1550
1551                 for (event_type = RTE_ETH_EVENT_UNKNOWN;
1552                      event_type < RTE_ETH_EVENT_MAX;
1553                      event_type++) {
1554                         diag = rte_eth_dev_callback_register(pi,
1555                                                         event_type,
1556                                                         eth_event_callback,
1557                                                         NULL);
1558                         if (diag) {
1559                                 printf("Failed to setup even callback for event %d\n",
1560                                         event_type);
1561                                 return -1;
1562                         }
1563                 }
1564
1565                 /* start port */
1566                 if (rte_eth_dev_start(pi) < 0) {
1567                         printf("Fail to start port %d\n", pi);
1568
1569                         /* Fail to setup rx queue, return */
1570                         if (rte_atomic16_cmpset(&(port->port_status),
1571                                 RTE_PORT_HANDLING, RTE_PORT_STOPPED) == 0)
1572                                 printf("Port %d can not be set back to "
1573                                                         "stopped\n", pi);
1574                         continue;
1575                 }
1576
1577                 if (rte_atomic16_cmpset(&(port->port_status),
1578                         RTE_PORT_HANDLING, RTE_PORT_STARTED) == 0)
1579                         printf("Port %d can not be set into started\n", pi);
1580
1581                 rte_eth_macaddr_get(pi, &mac_addr);
1582                 printf("Port %d: %02X:%02X:%02X:%02X:%02X:%02X\n", pi,
1583                                 mac_addr.addr_bytes[0], mac_addr.addr_bytes[1],
1584                                 mac_addr.addr_bytes[2], mac_addr.addr_bytes[3],
1585                                 mac_addr.addr_bytes[4], mac_addr.addr_bytes[5]);
1586
1587                 /* at least one port started, need checking link status */
1588                 need_check_link_status = 1;
1589         }
1590
1591         if (need_check_link_status == 1 && !no_link_check)
1592                 check_all_ports_link_status(RTE_PORT_ALL);
1593         else if (need_check_link_status == 0)
1594                 printf("Please stop the ports first\n");
1595
1596         printf("Done\n");
1597         return 0;
1598 }
1599
1600 void
1601 stop_port(portid_t pid)
1602 {
1603         portid_t pi;
1604         struct rte_port *port;
1605         int need_check_link_status = 0;
1606
1607         if (dcb_test) {
1608                 dcb_test = 0;
1609                 dcb_config = 0;
1610         }
1611
1612         if (port_id_is_invalid(pid, ENABLED_WARN))
1613                 return;
1614
1615         printf("Stopping ports...\n");
1616
1617         RTE_ETH_FOREACH_DEV(pi) {
1618                 if (pid != pi && pid != (portid_t)RTE_PORT_ALL)
1619                         continue;
1620
1621                 if (port_is_forwarding(pi) != 0 && test_done == 0) {
1622                         printf("Please remove port %d from forwarding configuration.\n", pi);
1623                         continue;
1624                 }
1625
1626                 if (port_is_bonding_slave(pi)) {
1627                         printf("Please remove port %d from bonded device.\n", pi);
1628                         continue;
1629                 }
1630
1631                 port = &ports[pi];
1632                 if (rte_atomic16_cmpset(&(port->port_status), RTE_PORT_STARTED,
1633                                                 RTE_PORT_HANDLING) == 0)
1634                         continue;
1635
1636                 rte_eth_dev_stop(pi);
1637
1638                 if (rte_atomic16_cmpset(&(port->port_status),
1639                         RTE_PORT_HANDLING, RTE_PORT_STOPPED) == 0)
1640                         printf("Port %d can not be set into stopped\n", pi);
1641                 need_check_link_status = 1;
1642         }
1643         if (need_check_link_status && !no_link_check)
1644                 check_all_ports_link_status(RTE_PORT_ALL);
1645
1646         printf("Done\n");
1647 }
1648
1649 void
1650 close_port(portid_t pid)
1651 {
1652         portid_t pi;
1653         struct rte_port *port;
1654
1655         if (port_id_is_invalid(pid, ENABLED_WARN))
1656                 return;
1657
1658         printf("Closing ports...\n");
1659
1660         RTE_ETH_FOREACH_DEV(pi) {
1661                 if (pid != pi && pid != (portid_t)RTE_PORT_ALL)
1662                         continue;
1663
1664                 if (port_is_forwarding(pi) != 0 && test_done == 0) {
1665                         printf("Please remove port %d from forwarding configuration.\n", pi);
1666                         continue;
1667                 }
1668
1669                 if (port_is_bonding_slave(pi)) {
1670                         printf("Please remove port %d from bonded device.\n", pi);
1671                         continue;
1672                 }
1673
1674                 port = &ports[pi];
1675                 if (rte_atomic16_cmpset(&(port->port_status),
1676                         RTE_PORT_CLOSED, RTE_PORT_CLOSED) == 1) {
1677                         printf("Port %d is already closed\n", pi);
1678                         continue;
1679                 }
1680
1681                 if (rte_atomic16_cmpset(&(port->port_status),
1682                         RTE_PORT_STOPPED, RTE_PORT_HANDLING) == 0) {
1683                         printf("Port %d is now not stopped\n", pi);
1684                         continue;
1685                 }
1686
1687                 if (port->flow_list)
1688                         port_flow_flush(pi);
1689                 rte_eth_dev_close(pi);
1690
1691                 if (rte_atomic16_cmpset(&(port->port_status),
1692                         RTE_PORT_HANDLING, RTE_PORT_CLOSED) == 0)
1693                         printf("Port %d cannot be set to closed\n", pi);
1694         }
1695
1696         printf("Done\n");
1697 }
1698
1699 void
1700 reset_port(portid_t pid)
1701 {
1702         int diag;
1703         portid_t pi;
1704         struct rte_port *port;
1705
1706         if (port_id_is_invalid(pid, ENABLED_WARN))
1707                 return;
1708
1709         printf("Resetting ports...\n");
1710
1711         RTE_ETH_FOREACH_DEV(pi) {
1712                 if (pid != pi && pid != (portid_t)RTE_PORT_ALL)
1713                         continue;
1714
1715                 if (port_is_forwarding(pi) != 0 && test_done == 0) {
1716                         printf("Please remove port %d from forwarding "
1717                                "configuration.\n", pi);
1718                         continue;
1719                 }
1720
1721                 if (port_is_bonding_slave(pi)) {
1722                         printf("Please remove port %d from bonded device.\n",
1723                                pi);
1724                         continue;
1725                 }
1726
1727                 diag = rte_eth_dev_reset(pi);
1728                 if (diag == 0) {
1729                         port = &ports[pi];
1730                         port->need_reconfig = 1;
1731                         port->need_reconfig_queues = 1;
1732                 } else {
1733                         printf("Failed to reset port %d. diag=%d\n", pi, diag);
1734                 }
1735         }
1736
1737         printf("Done\n");
1738 }
1739
1740 void
1741 attach_port(char *identifier)
1742 {
1743         portid_t pi = 0;
1744         unsigned int socket_id;
1745
1746         printf("Attaching a new port...\n");
1747
1748         if (identifier == NULL) {
1749                 printf("Invalid parameters are specified\n");
1750                 return;
1751         }
1752
1753         if (rte_eth_dev_attach(identifier, &pi))
1754                 return;
1755
1756         socket_id = (unsigned)rte_eth_dev_socket_id(pi);
1757         /* if socket_id is invalid, set to 0 */
1758         if (check_socket_id(socket_id) < 0)
1759                 socket_id = 0;
1760         reconfig(pi, socket_id);
1761         rte_eth_promiscuous_enable(pi);
1762
1763         nb_ports = rte_eth_dev_count();
1764
1765         ports[pi].port_status = RTE_PORT_STOPPED;
1766
1767         printf("Port %d is attached. Now total ports is %d\n", pi, nb_ports);
1768         printf("Done\n");
1769 }
1770
1771 void
1772 detach_port(portid_t port_id)
1773 {
1774         char name[RTE_ETH_NAME_MAX_LEN];
1775
1776         printf("Detaching a port...\n");
1777
1778         if (!port_is_closed(port_id)) {
1779                 printf("Please close port first\n");
1780                 return;
1781         }
1782
1783         if (ports[port_id].flow_list)
1784                 port_flow_flush(port_id);
1785
1786         if (rte_eth_dev_detach(port_id, name)) {
1787                 TESTPMD_LOG(ERR, "Failed to detach port '%s'\n", name);
1788                 return;
1789         }
1790
1791         nb_ports = rte_eth_dev_count();
1792
1793         printf("Port '%s' is detached. Now total ports is %d\n",
1794                         name, nb_ports);
1795         printf("Done\n");
1796         return;
1797 }
1798
1799 void
1800 pmd_test_exit(void)
1801 {
1802         portid_t pt_id;
1803
1804         if (test_done == 0)
1805                 stop_packet_forwarding();
1806
1807         if (ports != NULL) {
1808                 no_link_check = 1;
1809                 RTE_ETH_FOREACH_DEV(pt_id) {
1810                         printf("\nShutting down port %d...\n", pt_id);
1811                         fflush(stdout);
1812                         stop_port(pt_id);
1813                         close_port(pt_id);
1814                 }
1815         }
1816         printf("\nBye...\n");
1817 }
1818
1819 typedef void (*cmd_func_t)(void);
1820 struct pmd_test_command {
1821         const char *cmd_name;
1822         cmd_func_t cmd_func;
1823 };
1824
1825 #define PMD_TEST_CMD_NB (sizeof(pmd_test_menu) / sizeof(pmd_test_menu[0]))
1826
1827 /* Check the link status of all ports in up to 9s, and print them finally */
1828 static void
1829 check_all_ports_link_status(uint32_t port_mask)
1830 {
1831 #define CHECK_INTERVAL 100 /* 100ms */
1832 #define MAX_CHECK_TIME 90 /* 9s (90 * 100ms) in total */
1833         portid_t portid;
1834         uint8_t count, all_ports_up, print_flag = 0;
1835         struct rte_eth_link link;
1836
1837         printf("Checking link statuses...\n");
1838         fflush(stdout);
1839         for (count = 0; count <= MAX_CHECK_TIME; count++) {
1840                 all_ports_up = 1;
1841                 RTE_ETH_FOREACH_DEV(portid) {
1842                         if ((port_mask & (1 << portid)) == 0)
1843                                 continue;
1844                         memset(&link, 0, sizeof(link));
1845                         rte_eth_link_get_nowait(portid, &link);
1846                         /* print link status if flag set */
1847                         if (print_flag == 1) {
1848                                 if (link.link_status)
1849                                         printf(
1850                                         "Port%d Link Up. speed %u Mbps- %s\n",
1851                                         portid, link.link_speed,
1852                                 (link.link_duplex == ETH_LINK_FULL_DUPLEX) ?
1853                                         ("full-duplex") : ("half-duplex\n"));
1854                                 else
1855                                         printf("Port %d Link Down\n", portid);
1856                                 continue;
1857                         }
1858                         /* clear all_ports_up flag if any link down */
1859                         if (link.link_status == ETH_LINK_DOWN) {
1860                                 all_ports_up = 0;
1861                                 break;
1862                         }
1863                 }
1864                 /* after finally printing all link status, get out */
1865                 if (print_flag == 1)
1866                         break;
1867
1868                 if (all_ports_up == 0) {
1869                         fflush(stdout);
1870                         rte_delay_ms(CHECK_INTERVAL);
1871                 }
1872
1873                 /* set the print_flag if all ports up or timeout */
1874                 if (all_ports_up == 1 || count == (MAX_CHECK_TIME - 1)) {
1875                         print_flag = 1;
1876                 }
1877
1878                 if (lsc_interrupt)
1879                         break;
1880         }
1881 }
1882
1883 static void
1884 rmv_event_callback(void *arg)
1885 {
1886         struct rte_eth_dev *dev;
1887         portid_t port_id = (intptr_t)arg;
1888
1889         RTE_ETH_VALID_PORTID_OR_RET(port_id);
1890         dev = &rte_eth_devices[port_id];
1891
1892         stop_port(port_id);
1893         close_port(port_id);
1894         printf("removing device %s\n", dev->device->name);
1895         if (rte_eal_dev_detach(dev->device))
1896                 TESTPMD_LOG(ERR, "Failed to detach device %s\n",
1897                         dev->device->name);
1898 }
1899
1900 /* This function is used by the interrupt thread */
1901 static int
1902 eth_event_callback(portid_t port_id, enum rte_eth_event_type type, void *param,
1903                   void *ret_param)
1904 {
1905         static const char * const event_desc[] = {
1906                 [RTE_ETH_EVENT_UNKNOWN] = "Unknown",
1907                 [RTE_ETH_EVENT_INTR_LSC] = "LSC",
1908                 [RTE_ETH_EVENT_QUEUE_STATE] = "Queue state",
1909                 [RTE_ETH_EVENT_INTR_RESET] = "Interrupt reset",
1910                 [RTE_ETH_EVENT_VF_MBOX] = "VF Mbox",
1911                 [RTE_ETH_EVENT_MACSEC] = "MACsec",
1912                 [RTE_ETH_EVENT_INTR_RMV] = "device removal",
1913                 [RTE_ETH_EVENT_MAX] = NULL,
1914         };
1915
1916         RTE_SET_USED(param);
1917         RTE_SET_USED(ret_param);
1918
1919         if (type >= RTE_ETH_EVENT_MAX) {
1920                 fprintf(stderr, "\nPort %" PRIu8 ": %s called upon invalid event %d\n",
1921                         port_id, __func__, type);
1922                 fflush(stderr);
1923         } else if (event_print_mask & (UINT32_C(1) << type)) {
1924                 printf("\nPort %" PRIu8 ": %s event\n", port_id,
1925                         event_desc[type]);
1926                 fflush(stdout);
1927         }
1928
1929         switch (type) {
1930         case RTE_ETH_EVENT_INTR_RMV:
1931                 if (rte_eal_alarm_set(100000,
1932                                 rmv_event_callback, (void *)(intptr_t)port_id))
1933                         fprintf(stderr, "Could not set up deferred device removal\n");
1934                 break;
1935         default:
1936                 break;
1937         }
1938         return 0;
1939 }
1940
1941 static int
1942 set_tx_queue_stats_mapping_registers(portid_t port_id, struct rte_port *port)
1943 {
1944         uint16_t i;
1945         int diag;
1946         uint8_t mapping_found = 0;
1947
1948         for (i = 0; i < nb_tx_queue_stats_mappings; i++) {
1949                 if ((tx_queue_stats_mappings[i].port_id == port_id) &&
1950                                 (tx_queue_stats_mappings[i].queue_id < nb_txq )) {
1951                         diag = rte_eth_dev_set_tx_queue_stats_mapping(port_id,
1952                                         tx_queue_stats_mappings[i].queue_id,
1953                                         tx_queue_stats_mappings[i].stats_counter_id);
1954                         if (diag != 0)
1955                                 return diag;
1956                         mapping_found = 1;
1957                 }
1958         }
1959         if (mapping_found)
1960                 port->tx_queue_stats_mapping_enabled = 1;
1961         return 0;
1962 }
1963
1964 static int
1965 set_rx_queue_stats_mapping_registers(portid_t port_id, struct rte_port *port)
1966 {
1967         uint16_t i;
1968         int diag;
1969         uint8_t mapping_found = 0;
1970
1971         for (i = 0; i < nb_rx_queue_stats_mappings; i++) {
1972                 if ((rx_queue_stats_mappings[i].port_id == port_id) &&
1973                                 (rx_queue_stats_mappings[i].queue_id < nb_rxq )) {
1974                         diag = rte_eth_dev_set_rx_queue_stats_mapping(port_id,
1975                                         rx_queue_stats_mappings[i].queue_id,
1976                                         rx_queue_stats_mappings[i].stats_counter_id);
1977                         if (diag != 0)
1978                                 return diag;
1979                         mapping_found = 1;
1980                 }
1981         }
1982         if (mapping_found)
1983                 port->rx_queue_stats_mapping_enabled = 1;
1984         return 0;
1985 }
1986
1987 static void
1988 map_port_queue_stats_mapping_registers(portid_t pi, struct rte_port *port)
1989 {
1990         int diag = 0;
1991
1992         diag = set_tx_queue_stats_mapping_registers(pi, port);
1993         if (diag != 0) {
1994                 if (diag == -ENOTSUP) {
1995                         port->tx_queue_stats_mapping_enabled = 0;
1996                         printf("TX queue stats mapping not supported port id=%d\n", pi);
1997                 }
1998                 else
1999                         rte_exit(EXIT_FAILURE,
2000                                         "set_tx_queue_stats_mapping_registers "
2001                                         "failed for port id=%d diag=%d\n",
2002                                         pi, diag);
2003         }
2004
2005         diag = set_rx_queue_stats_mapping_registers(pi, port);
2006         if (diag != 0) {
2007                 if (diag == -ENOTSUP) {
2008                         port->rx_queue_stats_mapping_enabled = 0;
2009                         printf("RX queue stats mapping not supported port id=%d\n", pi);
2010                 }
2011                 else
2012                         rte_exit(EXIT_FAILURE,
2013                                         "set_rx_queue_stats_mapping_registers "
2014                                         "failed for port id=%d diag=%d\n",
2015                                         pi, diag);
2016         }
2017 }
2018
2019 static void
2020 rxtx_port_config(struct rte_port *port)
2021 {
2022         port->rx_conf = port->dev_info.default_rxconf;
2023         port->tx_conf = port->dev_info.default_txconf;
2024
2025         /* Check if any RX/TX parameters have been passed */
2026         if (rx_pthresh != RTE_PMD_PARAM_UNSET)
2027                 port->rx_conf.rx_thresh.pthresh = rx_pthresh;
2028
2029         if (rx_hthresh != RTE_PMD_PARAM_UNSET)
2030                 port->rx_conf.rx_thresh.hthresh = rx_hthresh;
2031
2032         if (rx_wthresh != RTE_PMD_PARAM_UNSET)
2033                 port->rx_conf.rx_thresh.wthresh = rx_wthresh;
2034
2035         if (rx_free_thresh != RTE_PMD_PARAM_UNSET)
2036                 port->rx_conf.rx_free_thresh = rx_free_thresh;
2037
2038         if (rx_drop_en != RTE_PMD_PARAM_UNSET)
2039                 port->rx_conf.rx_drop_en = rx_drop_en;
2040
2041         if (tx_pthresh != RTE_PMD_PARAM_UNSET)
2042                 port->tx_conf.tx_thresh.pthresh = tx_pthresh;
2043
2044         if (tx_hthresh != RTE_PMD_PARAM_UNSET)
2045                 port->tx_conf.tx_thresh.hthresh = tx_hthresh;
2046
2047         if (tx_wthresh != RTE_PMD_PARAM_UNSET)
2048                 port->tx_conf.tx_thresh.wthresh = tx_wthresh;
2049
2050         if (tx_rs_thresh != RTE_PMD_PARAM_UNSET)
2051                 port->tx_conf.tx_rs_thresh = tx_rs_thresh;
2052
2053         if (tx_free_thresh != RTE_PMD_PARAM_UNSET)
2054                 port->tx_conf.tx_free_thresh = tx_free_thresh;
2055 }
2056
2057 void
2058 init_port_config(void)
2059 {
2060         portid_t pid;
2061         struct rte_port *port;
2062
2063         RTE_ETH_FOREACH_DEV(pid) {
2064                 port = &ports[pid];
2065                 port->dev_conf.fdir_conf = fdir_conf;
2066                 if (nb_rxq > 1) {
2067                         port->dev_conf.rx_adv_conf.rss_conf.rss_key = NULL;
2068                         port->dev_conf.rx_adv_conf.rss_conf.rss_hf = rss_hf;
2069                 } else {
2070                         port->dev_conf.rx_adv_conf.rss_conf.rss_key = NULL;
2071                         port->dev_conf.rx_adv_conf.rss_conf.rss_hf = 0;
2072                 }
2073
2074                 if (port->dcb_flag == 0) {
2075                         if( port->dev_conf.rx_adv_conf.rss_conf.rss_hf != 0)
2076                                 port->dev_conf.rxmode.mq_mode = ETH_MQ_RX_RSS;
2077                         else
2078                                 port->dev_conf.rxmode.mq_mode = ETH_MQ_RX_NONE;
2079                 }
2080
2081                 rxtx_port_config(port);
2082
2083                 rte_eth_macaddr_get(pid, &port->eth_addr);
2084
2085                 map_port_queue_stats_mapping_registers(pid, port);
2086 #if defined RTE_LIBRTE_IXGBE_PMD && defined RTE_LIBRTE_IXGBE_BYPASS
2087                 rte_pmd_ixgbe_bypass_init(pid);
2088 #endif
2089
2090                 if (lsc_interrupt &&
2091                     (rte_eth_devices[pid].data->dev_flags &
2092                      RTE_ETH_DEV_INTR_LSC))
2093                         port->dev_conf.intr_conf.lsc = 1;
2094                 if (rmv_interrupt &&
2095                     (rte_eth_devices[pid].data->dev_flags &
2096                      RTE_ETH_DEV_INTR_RMV))
2097                         port->dev_conf.intr_conf.rmv = 1;
2098
2099 #if defined RTE_LIBRTE_PMD_SOFTNIC && defined RTE_LIBRTE_SCHED
2100                 /* Detect softnic port */
2101                 if (!strcmp(port->dev_info.driver_name, "net_softnic")) {
2102                         port->softnic_enable = 1;
2103                         memset(&port->softport, 0, sizeof(struct softnic_port));
2104
2105                         if (!strcmp(cur_fwd_eng->fwd_mode_name, "tm"))
2106                                 port->softport.tm_flag = 1;
2107                 }
2108 #endif
2109         }
2110 }
2111
2112 void set_port_slave_flag(portid_t slave_pid)
2113 {
2114         struct rte_port *port;
2115
2116         port = &ports[slave_pid];
2117         port->slave_flag = 1;
2118 }
2119
2120 void clear_port_slave_flag(portid_t slave_pid)
2121 {
2122         struct rte_port *port;
2123
2124         port = &ports[slave_pid];
2125         port->slave_flag = 0;
2126 }
2127
2128 uint8_t port_is_bonding_slave(portid_t slave_pid)
2129 {
2130         struct rte_port *port;
2131
2132         port = &ports[slave_pid];
2133         return port->slave_flag;
2134 }
2135
2136 const uint16_t vlan_tags[] = {
2137                 0,  1,  2,  3,  4,  5,  6,  7,
2138                 8,  9, 10, 11,  12, 13, 14, 15,
2139                 16, 17, 18, 19, 20, 21, 22, 23,
2140                 24, 25, 26, 27, 28, 29, 30, 31
2141 };
2142
2143 static  int
2144 get_eth_dcb_conf(struct rte_eth_conf *eth_conf,
2145                  enum dcb_mode_enable dcb_mode,
2146                  enum rte_eth_nb_tcs num_tcs,
2147                  uint8_t pfc_en)
2148 {
2149         uint8_t i;
2150
2151         /*
2152          * Builds up the correct configuration for dcb+vt based on the vlan tags array
2153          * given above, and the number of traffic classes available for use.
2154          */
2155         if (dcb_mode == DCB_VT_ENABLED) {
2156                 struct rte_eth_vmdq_dcb_conf *vmdq_rx_conf =
2157                                 &eth_conf->rx_adv_conf.vmdq_dcb_conf;
2158                 struct rte_eth_vmdq_dcb_tx_conf *vmdq_tx_conf =
2159                                 &eth_conf->tx_adv_conf.vmdq_dcb_tx_conf;
2160
2161                 /* VMDQ+DCB RX and TX configurations */
2162                 vmdq_rx_conf->enable_default_pool = 0;
2163                 vmdq_rx_conf->default_pool = 0;
2164                 vmdq_rx_conf->nb_queue_pools =
2165                         (num_tcs ==  ETH_4_TCS ? ETH_32_POOLS : ETH_16_POOLS);
2166                 vmdq_tx_conf->nb_queue_pools =
2167                         (num_tcs ==  ETH_4_TCS ? ETH_32_POOLS : ETH_16_POOLS);
2168
2169                 vmdq_rx_conf->nb_pool_maps = vmdq_rx_conf->nb_queue_pools;
2170                 for (i = 0; i < vmdq_rx_conf->nb_pool_maps; i++) {
2171                         vmdq_rx_conf->pool_map[i].vlan_id = vlan_tags[i];
2172                         vmdq_rx_conf->pool_map[i].pools =
2173                                 1 << (i % vmdq_rx_conf->nb_queue_pools);
2174                 }
2175                 for (i = 0; i < ETH_DCB_NUM_USER_PRIORITIES; i++) {
2176                         vmdq_rx_conf->dcb_tc[i] = i % num_tcs;
2177                         vmdq_tx_conf->dcb_tc[i] = i % num_tcs;
2178                 }
2179
2180                 /* set DCB mode of RX and TX of multiple queues */
2181                 eth_conf->rxmode.mq_mode = ETH_MQ_RX_VMDQ_DCB;
2182                 eth_conf->txmode.mq_mode = ETH_MQ_TX_VMDQ_DCB;
2183         } else {
2184                 struct rte_eth_dcb_rx_conf *rx_conf =
2185                                 &eth_conf->rx_adv_conf.dcb_rx_conf;
2186                 struct rte_eth_dcb_tx_conf *tx_conf =
2187                                 &eth_conf->tx_adv_conf.dcb_tx_conf;
2188
2189                 rx_conf->nb_tcs = num_tcs;
2190                 tx_conf->nb_tcs = num_tcs;
2191
2192                 for (i = 0; i < ETH_DCB_NUM_USER_PRIORITIES; i++) {
2193                         rx_conf->dcb_tc[i] = i % num_tcs;
2194                         tx_conf->dcb_tc[i] = i % num_tcs;
2195                 }
2196                 eth_conf->rxmode.mq_mode = ETH_MQ_RX_DCB_RSS;
2197                 eth_conf->rx_adv_conf.rss_conf.rss_hf = rss_hf;
2198                 eth_conf->txmode.mq_mode = ETH_MQ_TX_DCB;
2199         }
2200
2201         if (pfc_en)
2202                 eth_conf->dcb_capability_en =
2203                                 ETH_DCB_PG_SUPPORT | ETH_DCB_PFC_SUPPORT;
2204         else
2205                 eth_conf->dcb_capability_en = ETH_DCB_PG_SUPPORT;
2206
2207         return 0;
2208 }
2209
2210 int
2211 init_port_dcb_config(portid_t pid,
2212                      enum dcb_mode_enable dcb_mode,
2213                      enum rte_eth_nb_tcs num_tcs,
2214                      uint8_t pfc_en)
2215 {
2216         struct rte_eth_conf port_conf;
2217         struct rte_port *rte_port;
2218         int retval;
2219         uint16_t i;
2220
2221         rte_port = &ports[pid];
2222
2223         memset(&port_conf, 0, sizeof(struct rte_eth_conf));
2224         /* Enter DCB configuration status */
2225         dcb_config = 1;
2226
2227         /*set configuration of DCB in vt mode and DCB in non-vt mode*/
2228         retval = get_eth_dcb_conf(&port_conf, dcb_mode, num_tcs, pfc_en);
2229         if (retval < 0)
2230                 return retval;
2231         port_conf.rxmode.offloads |= DEV_RX_OFFLOAD_VLAN_FILTER;
2232
2233         /**
2234          * Write the configuration into the device.
2235          * Set the numbers of RX & TX queues to 0, so
2236          * the RX & TX queues will not be setup.
2237          */
2238         rte_eth_dev_configure(pid, 0, 0, &port_conf);
2239
2240         rte_eth_dev_info_get(pid, &rte_port->dev_info);
2241
2242         /* If dev_info.vmdq_pool_base is greater than 0,
2243          * the queue id of vmdq pools is started after pf queues.
2244          */
2245         if (dcb_mode == DCB_VT_ENABLED &&
2246             rte_port->dev_info.vmdq_pool_base > 0) {
2247                 printf("VMDQ_DCB multi-queue mode is nonsensical"
2248                         " for port %d.", pid);
2249                 return -1;
2250         }
2251
2252         /* Assume the ports in testpmd have the same dcb capability
2253          * and has the same number of rxq and txq in dcb mode
2254          */
2255         if (dcb_mode == DCB_VT_ENABLED) {
2256                 if (rte_port->dev_info.max_vfs > 0) {
2257                         nb_rxq = rte_port->dev_info.nb_rx_queues;
2258                         nb_txq = rte_port->dev_info.nb_tx_queues;
2259                 } else {
2260                         nb_rxq = rte_port->dev_info.max_rx_queues;
2261                         nb_txq = rte_port->dev_info.max_tx_queues;
2262                 }
2263         } else {
2264                 /*if vt is disabled, use all pf queues */
2265                 if (rte_port->dev_info.vmdq_pool_base == 0) {
2266                         nb_rxq = rte_port->dev_info.max_rx_queues;
2267                         nb_txq = rte_port->dev_info.max_tx_queues;
2268                 } else {
2269                         nb_rxq = (queueid_t)num_tcs;
2270                         nb_txq = (queueid_t)num_tcs;
2271
2272                 }
2273         }
2274         rx_free_thresh = 64;
2275
2276         memcpy(&rte_port->dev_conf, &port_conf, sizeof(struct rte_eth_conf));
2277
2278         rxtx_port_config(rte_port);
2279         /* VLAN filter */
2280         rte_port->dev_conf.rxmode.offloads |= DEV_RX_OFFLOAD_VLAN_FILTER;
2281         for (i = 0; i < RTE_DIM(vlan_tags); i++)
2282                 rx_vft_set(pid, vlan_tags[i], 1);
2283
2284         rte_eth_macaddr_get(pid, &rte_port->eth_addr);
2285         map_port_queue_stats_mapping_registers(pid, rte_port);
2286
2287         rte_port->dcb_flag = 1;
2288
2289         return 0;
2290 }
2291
2292 static void
2293 init_port(void)
2294 {
2295         /* Configuration of Ethernet ports. */
2296         ports = rte_zmalloc("testpmd: ports",
2297                             sizeof(struct rte_port) * RTE_MAX_ETHPORTS,
2298                             RTE_CACHE_LINE_SIZE);
2299         if (ports == NULL) {
2300                 rte_exit(EXIT_FAILURE,
2301                                 "rte_zmalloc(%d struct rte_port) failed\n",
2302                                 RTE_MAX_ETHPORTS);
2303         }
2304 }
2305
2306 static void
2307 force_quit(void)
2308 {
2309         pmd_test_exit();
2310         prompt_exit();
2311 }
2312
2313 static void
2314 print_stats(void)
2315 {
2316         uint8_t i;
2317         const char clr[] = { 27, '[', '2', 'J', '\0' };
2318         const char top_left[] = { 27, '[', '1', ';', '1', 'H', '\0' };
2319
2320         /* Clear screen and move to top left */
2321         printf("%s%s", clr, top_left);
2322
2323         printf("\nPort statistics ====================================");
2324         for (i = 0; i < cur_fwd_config.nb_fwd_ports; i++)
2325                 nic_stats_display(fwd_ports_ids[i]);
2326 }
2327
2328 static void
2329 signal_handler(int signum)
2330 {
2331         if (signum == SIGINT || signum == SIGTERM) {
2332                 printf("\nSignal %d received, preparing to exit...\n",
2333                                 signum);
2334 #ifdef RTE_LIBRTE_PDUMP
2335                 /* uninitialize packet capture framework */
2336                 rte_pdump_uninit();
2337 #endif
2338 #ifdef RTE_LIBRTE_LATENCY_STATS
2339                 rte_latencystats_uninit();
2340 #endif
2341                 force_quit();
2342                 /* Set flag to indicate the force termination. */
2343                 f_quit = 1;
2344                 /* exit with the expected status */
2345                 signal(signum, SIG_DFL);
2346                 kill(getpid(), signum);
2347         }
2348 }
2349
2350 int
2351 main(int argc, char** argv)
2352 {
2353         int  diag;
2354         portid_t port_id;
2355
2356         signal(SIGINT, signal_handler);
2357         signal(SIGTERM, signal_handler);
2358
2359         diag = rte_eal_init(argc, argv);
2360         if (diag < 0)
2361                 rte_panic("Cannot init EAL\n");
2362
2363         testpmd_logtype = rte_log_register("testpmd");
2364         if (testpmd_logtype < 0)
2365                 rte_panic("Cannot register log type");
2366         rte_log_set_level(testpmd_logtype, RTE_LOG_DEBUG);
2367
2368         if (mlockall(MCL_CURRENT | MCL_FUTURE)) {
2369                 TESTPMD_LOG(NOTICE, "mlockall() failed with error \"%s\"\n",
2370                         strerror(errno));
2371         }
2372
2373 #ifdef RTE_LIBRTE_PDUMP
2374         /* initialize packet capture framework */
2375         rte_pdump_init(NULL);
2376 #endif
2377
2378         nb_ports = (portid_t) rte_eth_dev_count();
2379         if (nb_ports == 0)
2380                 TESTPMD_LOG(WARNING, "No probed ethernet devices\n");
2381
2382         /* allocate port structures, and init them */
2383         init_port();
2384
2385         set_def_fwd_config();
2386         if (nb_lcores == 0)
2387                 rte_panic("Empty set of forwarding logical cores - check the "
2388                           "core mask supplied in the command parameters\n");
2389
2390         /* Bitrate/latency stats disabled by default */
2391 #ifdef RTE_LIBRTE_BITRATE
2392         bitrate_enabled = 0;
2393 #endif
2394 #ifdef RTE_LIBRTE_LATENCY_STATS
2395         latencystats_enabled = 0;
2396 #endif
2397
2398         argc -= diag;
2399         argv += diag;
2400         if (argc > 1)
2401                 launch_args_parse(argc, argv);
2402
2403         if (tx_first && interactive)
2404                 rte_exit(EXIT_FAILURE, "--tx-first cannot be used on "
2405                                 "interactive mode.\n");
2406
2407         if (tx_first && lsc_interrupt) {
2408                 printf("Warning: lsc_interrupt needs to be off when "
2409                                 " using tx_first. Disabling.\n");
2410                 lsc_interrupt = 0;
2411         }
2412
2413         if (!nb_rxq && !nb_txq)
2414                 printf("Warning: Either rx or tx queues should be non-zero\n");
2415
2416         if (nb_rxq > 1 && nb_rxq > nb_txq)
2417                 printf("Warning: nb_rxq=%d enables RSS configuration, "
2418                        "but nb_txq=%d will prevent to fully test it.\n",
2419                        nb_rxq, nb_txq);
2420
2421         init_config();
2422         if (start_port(RTE_PORT_ALL) != 0)
2423                 rte_exit(EXIT_FAILURE, "Start ports failed\n");
2424
2425         /* set all ports to promiscuous mode by default */
2426         RTE_ETH_FOREACH_DEV(port_id)
2427                 rte_eth_promiscuous_enable(port_id);
2428
2429         /* Init metrics library */
2430         rte_metrics_init(rte_socket_id());
2431
2432 #ifdef RTE_LIBRTE_LATENCY_STATS
2433         if (latencystats_enabled != 0) {
2434                 int ret = rte_latencystats_init(1, NULL);
2435                 if (ret)
2436                         printf("Warning: latencystats init()"
2437                                 " returned error %d\n", ret);
2438                 printf("Latencystats running on lcore %d\n",
2439                         latencystats_lcore_id);
2440         }
2441 #endif
2442
2443         /* Setup bitrate stats */
2444 #ifdef RTE_LIBRTE_BITRATE
2445         if (bitrate_enabled != 0) {
2446                 bitrate_data = rte_stats_bitrate_create();
2447                 if (bitrate_data == NULL)
2448                         rte_exit(EXIT_FAILURE,
2449                                 "Could not allocate bitrate data.\n");
2450                 rte_stats_bitrate_reg(bitrate_data);
2451         }
2452 #endif
2453
2454 #ifdef RTE_LIBRTE_CMDLINE
2455         if (strlen(cmdline_filename) != 0)
2456                 cmdline_read_from_file(cmdline_filename);
2457
2458         if (interactive == 1) {
2459                 if (auto_start) {
2460                         printf("Start automatic packet forwarding\n");
2461                         start_packet_forwarding(0);
2462                 }
2463                 prompt();
2464                 pmd_test_exit();
2465         } else
2466 #endif
2467         {
2468                 char c;
2469                 int rc;
2470
2471                 f_quit = 0;
2472
2473                 printf("No commandline core given, start packet forwarding\n");
2474                 start_packet_forwarding(tx_first);
2475                 if (stats_period != 0) {
2476                         uint64_t prev_time = 0, cur_time, diff_time = 0;
2477                         uint64_t timer_period;
2478
2479                         /* Convert to number of cycles */
2480                         timer_period = stats_period * rte_get_timer_hz();
2481
2482                         while (f_quit == 0) {
2483                                 cur_time = rte_get_timer_cycles();
2484                                 diff_time += cur_time - prev_time;
2485
2486                                 if (diff_time >= timer_period) {
2487                                         print_stats();
2488                                         /* Reset the timer */
2489                                         diff_time = 0;
2490                                 }
2491                                 /* Sleep to avoid unnecessary checks */
2492                                 prev_time = cur_time;
2493                                 sleep(1);
2494                         }
2495                 }
2496
2497                 printf("Press enter to exit\n");
2498                 rc = read(0, &c, 1);
2499                 pmd_test_exit();
2500                 if (rc < 0)
2501                         return 1;
2502         }
2503
2504         return 0;
2505 }