xref: /dpdk/app/test-pmd/testpmd.h (revision 59f3a8acbcdbafeebe816a26d76dfb06e6450f31)
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2010-2017 Intel Corporation
3  */
4 
5 #ifndef _TESTPMD_H_
6 #define _TESTPMD_H_
7 
8 #include <stdbool.h>
9 
10 #include <rte_pci.h>
11 #include <rte_bus_pci.h>
12 #include <rte_gro.h>
13 #include <rte_gso.h>
14 #include <rte_os_shim.h>
15 #include <cmdline.h>
16 #include <sys/queue.h>
17 #ifdef RTE_HAS_JANSSON
18 #include <jansson.h>
19 #endif
20 
21 #define RTE_PORT_ALL            (~(portid_t)0x0)
22 
23 #define RTE_TEST_RX_DESC_MAX    2048
24 #define RTE_TEST_TX_DESC_MAX    2048
25 
26 #define RTE_PORT_STOPPED        (uint16_t)0
27 #define RTE_PORT_STARTED        (uint16_t)1
28 #define RTE_PORT_CLOSED         (uint16_t)2
29 #define RTE_PORT_HANDLING       (uint16_t)3
30 
31 /*
32  * It is used to allocate the memory for hash key.
33  * The hash key size is NIC dependent.
34  */
35 #define RSS_HASH_KEY_LENGTH 64
36 
37 /*
38  * Default size of the mbuf data buffer to receive standard 1518-byte
39  * Ethernet frames in a mono-segment memory buffer.
40  */
41 #define DEFAULT_MBUF_DATA_SIZE RTE_MBUF_DEFAULT_BUF_SIZE
42 /**< Default size of mbuf data buffer. */
43 
44 /*
45  * The maximum number of segments per packet is used when creating
46  * scattered transmit packets composed of a list of mbufs.
47  */
48 #define RTE_MAX_SEGS_PER_PKT 255 /**< nb_segs is a 8-bit unsigned char. */
49 
50 /*
51  * The maximum number of segments per packet is used to configure
52  * buffer split feature, also specifies the maximum amount of
53  * optional Rx pools to allocate mbufs to split.
54  */
55 #define MAX_SEGS_BUFFER_SPLIT 8 /**< nb_segs is a 8-bit unsigned char. */
56 
57 /* The prefix of the mbuf pool names created by the application. */
58 #define MBUF_POOL_NAME_PFX "mb_pool"
59 
60 #define MAX_PKT_BURST 512
61 #define DEF_PKT_BURST 32
62 
63 #define DEF_MBUF_CACHE 250
64 
65 #define RTE_CACHE_LINE_SIZE_ROUNDUP(size) \
66 	(RTE_CACHE_LINE_SIZE * ((size + RTE_CACHE_LINE_SIZE - 1) / RTE_CACHE_LINE_SIZE))
67 
68 #define NUMA_NO_CONFIG 0xFF
69 #define UMA_NO_CONFIG  0xFF
70 
71 typedef uint8_t  lcoreid_t;
72 typedef uint16_t portid_t;
73 typedef uint16_t queueid_t;
74 typedef uint16_t streamid_t;
75 
76 enum {
77 	PORT_TOPOLOGY_PAIRED,
78 	PORT_TOPOLOGY_CHAINED,
79 	PORT_TOPOLOGY_LOOP,
80 };
81 
82 enum {
83 	MP_ALLOC_NATIVE, /**< allocate and populate mempool natively */
84 	MP_ALLOC_ANON,
85 	/**< allocate mempool natively, but populate using anonymous memory */
86 	MP_ALLOC_XMEM,
87 	/**< allocate and populate mempool using anonymous memory */
88 	MP_ALLOC_XMEM_HUGE,
89 	/**< allocate and populate mempool using anonymous hugepage memory */
90 	MP_ALLOC_XBUF
91 	/**< allocate mempool natively, use rte_pktmbuf_pool_create_extbuf */
92 };
93 
94 /**
95  * The data structure associated with RX and TX packet burst statistics
96  * that are recorded for each forwarding stream.
97  */
98 struct pkt_burst_stats {
99 	unsigned int pkt_burst_spread[MAX_PKT_BURST];
100 };
101 
102 /** Information for a given RSS type. */
103 struct rss_type_info {
104 	const char *str; /**< Type name. */
105 	uint64_t rss_type; /**< Type value. */
106 };
107 
108 /**
109  * RSS type information table.
110  *
111  * An entry with a NULL type name terminates the list.
112  */
113 extern const struct rss_type_info rss_type_table[];
114 
115 /**
116  * Dynf name array.
117  *
118  * Array that holds the name for each dynf.
119  */
120 extern char dynf_names[64][RTE_MBUF_DYN_NAMESIZE];
121 
122 /**
123  * The data structure associated with a forwarding stream between a receive
124  * port/queue and a transmit port/queue.
125  */
126 struct fwd_stream {
127 	/* "read-only" data */
128 	portid_t   rx_port;   /**< port to poll for received packets */
129 	queueid_t  rx_queue;  /**< RX queue to poll on "rx_port" */
130 	portid_t   tx_port;   /**< forwarding port of received packets */
131 	queueid_t  tx_queue;  /**< TX queue to send forwarded packets */
132 	streamid_t peer_addr; /**< index of peer ethernet address of packets */
133 
134 	unsigned int retry_enabled;
135 
136 	/* "read-write" results */
137 	uint64_t rx_packets;  /**< received packets */
138 	uint64_t tx_packets;  /**< received packets transmitted */
139 	uint64_t fwd_dropped; /**< received packets not forwarded */
140 	uint64_t rx_bad_ip_csum ; /**< received packets has bad ip checksum */
141 	uint64_t rx_bad_l4_csum ; /**< received packets has bad l4 checksum */
142 	uint64_t rx_bad_outer_l4_csum;
143 	/**< received packets has bad outer l4 checksum */
144 	uint64_t rx_bad_outer_ip_csum;
145 	/**< received packets having bad outer ip checksum */
146 	unsigned int gro_times;	/**< GRO operation times */
147 	uint64_t     core_cycles; /**< used for RX and TX processing */
148 	struct pkt_burst_stats rx_burst_stats;
149 	struct pkt_burst_stats tx_burst_stats;
150 };
151 
152 /**
153  * Age action context types, must be included inside the age action
154  * context structure.
155  */
156 enum age_action_context_type {
157 	ACTION_AGE_CONTEXT_TYPE_FLOW,
158 	ACTION_AGE_CONTEXT_TYPE_INDIRECT_ACTION,
159 };
160 
161 /** Descriptor for a single flow. */
162 struct port_flow {
163 	struct port_flow *next; /**< Next flow in list. */
164 	struct port_flow *tmp; /**< Temporary linking. */
165 	uint32_t id; /**< Flow rule ID. */
166 	struct rte_flow *flow; /**< Opaque flow object returned by PMD. */
167 	struct rte_flow_conv_rule rule; /**< Saved flow rule description. */
168 	enum age_action_context_type age_type; /**< Age action context type. */
169 	uint8_t data[]; /**< Storage for flow rule description */
170 };
171 
172 /* Descriptor for indirect action */
173 struct port_indirect_action {
174 	struct port_indirect_action *next; /**< Next flow in list. */
175 	uint32_t id; /**< Indirect action ID. */
176 	enum rte_flow_action_type type; /**< Action type. */
177 	struct rte_flow_action_handle *handle;	/**< Indirect action handle. */
178 	enum age_action_context_type age_type; /**< Age action context type. */
179 	/** If true, the action applies to "transfer" flows, and vice versa */
180 	bool transfer;
181 };
182 
183 struct port_flow_tunnel {
184 	LIST_ENTRY(port_flow_tunnel) chain;
185 	struct rte_flow_action *pmd_actions;
186 	struct rte_flow_item   *pmd_items;
187 	uint32_t id;
188 	uint32_t num_pmd_actions;
189 	uint32_t num_pmd_items;
190 	struct rte_flow_tunnel tunnel;
191 	struct rte_flow_action *actions;
192 	struct rte_flow_item *items;
193 };
194 
195 struct tunnel_ops {
196 	uint32_t id;
197 	char type[16];
198 	uint32_t enabled:1;
199 	uint32_t actions:1;
200 	uint32_t items:1;
201 };
202 
203 /** Information for an extended statistics to show. */
204 struct xstat_display_info {
205 	/** Supported xstats IDs in the order of xstats_display */
206 	uint64_t *ids_supp;
207 	size_t   ids_supp_sz;
208 	uint64_t *prev_values;
209 	uint64_t *curr_values;
210 	uint64_t prev_ns;
211 	bool	 allocated;
212 };
213 
214 /**
215  * The data structure associated with each port.
216  */
217 struct rte_port {
218 	struct rte_eth_dev_info dev_info;   /**< PCI info + driver name */
219 	struct rte_eth_conf     dev_conf;   /**< Port configuration. */
220 	struct rte_ether_addr       eth_addr;   /**< Port ethernet address */
221 	struct rte_eth_stats    stats;      /**< Last port statistics */
222 	unsigned int            socket_id;  /**< For NUMA support */
223 	uint16_t		parse_tunnel:1; /**< Parse internal headers */
224 	uint16_t                tso_segsz;  /**< Segmentation offload MSS for non-tunneled packets. */
225 	uint16_t                tunnel_tso_segsz; /**< Segmentation offload MSS for tunneled pkts. */
226 	uint16_t                tx_vlan_id;/**< The tag ID */
227 	uint16_t                tx_vlan_id_outer;/**< The outer tag ID */
228 	volatile uint16_t        port_status;    /**< port started or not */
229 	uint8_t                 need_setup;     /**< port just attached */
230 	uint8_t                 need_reconfig;  /**< need reconfiguring port or not */
231 	uint8_t                 need_reconfig_queues; /**< need reconfiguring queues or not */
232 	uint8_t                 rss_flag;   /**< enable rss or not */
233 	uint8_t                 dcb_flag;   /**< enable dcb */
234 	uint16_t                nb_rx_desc[RTE_MAX_QUEUES_PER_PORT+1]; /**< per queue rx desc number */
235 	uint16_t                nb_tx_desc[RTE_MAX_QUEUES_PER_PORT+1]; /**< per queue tx desc number */
236 	struct rte_eth_rxconf   rx_conf[RTE_MAX_QUEUES_PER_PORT+1]; /**< per queue rx configuration */
237 	struct rte_eth_txconf   tx_conf[RTE_MAX_QUEUES_PER_PORT+1]; /**< per queue tx configuration */
238 	struct rte_ether_addr   *mc_addr_pool; /**< pool of multicast addrs */
239 	uint32_t                mc_addr_nb; /**< nb. of addr. in mc_addr_pool */
240 	uint8_t                 slave_flag; /**< bonding slave port */
241 	struct port_flow        *flow_list; /**< Associated flows. */
242 	struct port_indirect_action *actions_list;
243 	/**< Associated indirect actions. */
244 	LIST_HEAD(, port_flow_tunnel) flow_tunnel_list;
245 	const struct rte_eth_rxtx_callback *rx_dump_cb[RTE_MAX_QUEUES_PER_PORT+1];
246 	const struct rte_eth_rxtx_callback *tx_dump_cb[RTE_MAX_QUEUES_PER_PORT+1];
247 	/**< metadata value to insert in Tx packets. */
248 	uint32_t		tx_metadata;
249 	const struct rte_eth_rxtx_callback *tx_set_md_cb[RTE_MAX_QUEUES_PER_PORT+1];
250 	/**< dynamic flags. */
251 	uint64_t		mbuf_dynf;
252 	const struct rte_eth_rxtx_callback *tx_set_dynf_cb[RTE_MAX_QUEUES_PER_PORT+1];
253 	/** Associated port which is supposed to handle "transfer" flows */
254 	portid_t		flow_transfer_proxy;
255 	struct xstat_display_info xstats_info;
256 };
257 
258 /**
259  * The data structure associated with each forwarding logical core.
260  * The logical cores are internally numbered by a core index from 0 to
261  * the maximum number of logical cores - 1.
262  * The system CPU identifier of all logical cores are setup in a global
263  * CPU id. configuration table.
264  */
265 struct fwd_lcore {
266 	struct rte_gso_ctx gso_ctx;     /**< GSO context */
267 	struct rte_mempool *mbp; /**< The mbuf pool to use by this core */
268 	void *gro_ctx;		/**< GRO context */
269 	streamid_t stream_idx;   /**< index of 1st stream in "fwd_streams" */
270 	streamid_t stream_nb;    /**< number of streams in "fwd_streams" */
271 	lcoreid_t  cpuid_idx;    /**< index of logical core in CPU id table */
272 	volatile char stopped;   /**< stop forwarding when set */
273 };
274 
275 /*
276  * Forwarding mode operations:
277  *   - IO forwarding mode (default mode)
278  *     Forwards packets unchanged.
279  *
280  *   - MAC forwarding mode
281  *     Set the source and the destination Ethernet addresses of packets
282  *     before forwarding them.
283  *
284  *   - IEEE1588 forwarding mode
285  *     Check that received IEEE1588 Precise Time Protocol (PTP) packets are
286  *     filtered and timestamped by the hardware.
287  *     Forwards packets unchanged on the same port.
288  *     Check that sent IEEE1588 PTP packets are timestamped by the hardware.
289  */
290 typedef int (*port_fwd_begin_t)(portid_t pi);
291 typedef void (*port_fwd_end_t)(portid_t pi);
292 typedef void (*packet_fwd_t)(struct fwd_stream *fs);
293 
294 struct fwd_engine {
295 	const char       *fwd_mode_name; /**< Forwarding mode name. */
296 	port_fwd_begin_t port_fwd_begin; /**< NULL if nothing special to do. */
297 	port_fwd_end_t   port_fwd_end;   /**< NULL if nothing special to do. */
298 	packet_fwd_t     packet_fwd;     /**< Mandatory. */
299 };
300 
301 #define FLEX_ITEM_MAX_SAMPLES_NUM 16
302 #define FLEX_ITEM_MAX_LINKS_NUM 16
303 #define FLEX_MAX_FLOW_PATTERN_LENGTH 64
304 #define FLEX_MAX_PARSERS_NUM 8
305 #define FLEX_MAX_PATTERNS_NUM 64
306 #define FLEX_PARSER_ERR ((struct flex_item *)-1)
307 
308 struct flex_item {
309 	struct rte_flow_item_flex_conf flex_conf;
310 	struct rte_flow_item_flex_handle *flex_handle;
311 	uint32_t flex_id;
312 };
313 
314 struct flex_pattern {
315 	struct rte_flow_item_flex spec, mask;
316 	uint8_t spec_pattern[FLEX_MAX_FLOW_PATTERN_LENGTH];
317 	uint8_t mask_pattern[FLEX_MAX_FLOW_PATTERN_LENGTH];
318 };
319 extern struct flex_item *flex_items[RTE_MAX_ETHPORTS][FLEX_MAX_PARSERS_NUM];
320 extern struct flex_pattern flex_patterns[FLEX_MAX_PATTERNS_NUM];
321 
322 #define BURST_TX_WAIT_US 1
323 #define BURST_TX_RETRIES 64
324 
325 extern uint32_t burst_tx_delay_time;
326 extern uint32_t burst_tx_retry_num;
327 
328 extern struct fwd_engine io_fwd_engine;
329 extern struct fwd_engine mac_fwd_engine;
330 extern struct fwd_engine mac_swap_engine;
331 extern struct fwd_engine flow_gen_engine;
332 extern struct fwd_engine rx_only_engine;
333 extern struct fwd_engine tx_only_engine;
334 extern struct fwd_engine csum_fwd_engine;
335 extern struct fwd_engine icmp_echo_engine;
336 extern struct fwd_engine noisy_vnf_engine;
337 extern struct fwd_engine five_tuple_swap_fwd_engine;
338 #ifdef RTE_LIBRTE_IEEE1588
339 extern struct fwd_engine ieee1588_fwd_engine;
340 #endif
341 
342 extern struct fwd_engine * fwd_engines[]; /**< NULL terminated array. */
343 extern cmdline_parse_inst_t cmd_set_raw;
344 extern cmdline_parse_inst_t cmd_show_set_raw;
345 extern cmdline_parse_inst_t cmd_show_set_raw_all;
346 extern cmdline_parse_inst_t cmd_set_flex_is_pattern;
347 extern cmdline_parse_inst_t cmd_set_flex_spec_pattern;
348 
349 extern uint16_t mempool_flags;
350 
351 /**
352  * Forwarding Configuration
353  *
354  */
355 struct fwd_config {
356 	struct fwd_engine *fwd_eng; /**< Packet forwarding mode. */
357 	streamid_t nb_fwd_streams;  /**< Nb. of forward streams to process. */
358 	lcoreid_t  nb_fwd_lcores;   /**< Nb. of logical cores to launch. */
359 	portid_t   nb_fwd_ports;    /**< Nb. of ports involved. */
360 };
361 
362 /**
363  * DCB mode enable
364  */
365 enum dcb_mode_enable
366 {
367 	DCB_VT_ENABLED,
368 	DCB_ENABLED
369 };
370 
371 extern uint8_t xstats_hide_zero; /**< Hide zero values for xstats display */
372 
373 /* globals used for configuration */
374 extern uint8_t record_core_cycles; /**< Enables measurement of CPU cycles */
375 extern uint8_t record_burst_stats; /**< Enables display of RX and TX bursts */
376 extern uint16_t verbose_level; /**< Drives messages being displayed, if any. */
377 extern int testpmd_logtype; /**< Log type for testpmd logs */
378 extern uint8_t  interactive;
379 extern uint8_t  auto_start;
380 extern uint8_t  tx_first;
381 extern char cmdline_filename[PATH_MAX]; /**< offline commands file */
382 extern uint8_t  numa_support; /**< set by "--numa" parameter */
383 extern uint16_t port_topology; /**< set by "--port-topology" parameter */
384 extern uint8_t no_flush_rx; /**<set by "--no-flush-rx" parameter */
385 extern uint8_t flow_isolate_all; /**< set by "--flow-isolate-all */
386 extern uint8_t  mp_alloc_type;
387 /**< set by "--mp-anon" or "--mp-alloc" parameter */
388 extern uint32_t eth_link_speed;
389 extern uint8_t no_link_check; /**<set by "--disable-link-check" parameter */
390 extern uint8_t no_device_start; /**<set by "--disable-device-start" parameter */
391 extern volatile int test_done; /* stop packet forwarding when set to 1. */
392 extern uint8_t lsc_interrupt; /**< disabled by "--no-lsc-interrupt" parameter */
393 extern uint8_t rmv_interrupt; /**< disabled by "--no-rmv-interrupt" parameter */
394 extern uint32_t event_print_mask;
395 /**< set by "--print-event xxxx" and "--mask-event xxxx parameters */
396 extern bool setup_on_probe_event; /**< disabled by port setup-on iterator */
397 extern uint8_t hot_plug; /**< enable by "--hot-plug" parameter */
398 extern int do_mlockall; /**< set by "--mlockall" or "--no-mlockall" parameter */
399 extern uint8_t clear_ptypes; /**< disabled by set ptype cmd */
400 
401 #ifdef RTE_LIBRTE_IXGBE_BYPASS
402 extern uint32_t bypass_timeout; /**< Store the NIC bypass watchdog timeout */
403 #endif
404 
405 /*
406  * Store specified sockets on which memory pool to be used by ports
407  * is allocated.
408  */
409 extern uint8_t port_numa[RTE_MAX_ETHPORTS];
410 
411 /*
412  * Store specified sockets on which RX ring to be used by ports
413  * is allocated.
414  */
415 extern uint8_t rxring_numa[RTE_MAX_ETHPORTS];
416 
417 /*
418  * Store specified sockets on which TX ring to be used by ports
419  * is allocated.
420  */
421 extern uint8_t txring_numa[RTE_MAX_ETHPORTS];
422 
423 extern uint8_t socket_num;
424 
425 /*
426  * Configuration of logical cores:
427  * nb_fwd_lcores <= nb_cfg_lcores <= nb_lcores
428  */
429 extern lcoreid_t nb_lcores; /**< Number of logical cores probed at init time. */
430 extern lcoreid_t nb_cfg_lcores; /**< Number of configured logical cores. */
431 extern lcoreid_t nb_fwd_lcores; /**< Number of forwarding logical cores. */
432 extern unsigned int fwd_lcores_cpuids[RTE_MAX_LCORE];
433 extern unsigned int num_sockets;
434 extern unsigned int socket_ids[RTE_MAX_NUMA_NODES];
435 
436 /*
437  * Configuration of Ethernet ports:
438  * nb_fwd_ports <= nb_cfg_ports <= nb_ports
439  */
440 extern portid_t nb_ports; /**< Number of ethernet ports probed at init time. */
441 extern portid_t nb_cfg_ports; /**< Number of configured ports. */
442 extern portid_t nb_fwd_ports; /**< Number of forwarding ports. */
443 extern portid_t fwd_ports_ids[RTE_MAX_ETHPORTS];
444 extern struct rte_port *ports;
445 
446 extern struct rte_eth_rxmode rx_mode;
447 extern struct rte_eth_txmode tx_mode;
448 
449 extern uint64_t rss_hf;
450 
451 extern queueid_t nb_hairpinq;
452 extern queueid_t nb_rxq;
453 extern queueid_t nb_txq;
454 
455 extern uint16_t nb_rxd;
456 extern uint16_t nb_txd;
457 
458 extern int16_t rx_free_thresh;
459 extern int8_t rx_drop_en;
460 extern int16_t tx_free_thresh;
461 extern int16_t tx_rs_thresh;
462 
463 extern uint16_t noisy_tx_sw_bufsz;
464 extern uint16_t noisy_tx_sw_buf_flush_time;
465 extern uint64_t noisy_lkup_mem_sz;
466 extern uint64_t noisy_lkup_num_writes;
467 extern uint64_t noisy_lkup_num_reads;
468 extern uint64_t noisy_lkup_num_reads_writes;
469 
470 extern uint8_t dcb_config;
471 
472 extern uint32_t mbuf_data_size_n;
473 extern uint16_t mbuf_data_size[MAX_SEGS_BUFFER_SPLIT];
474 /**< Mbuf data space size. */
475 extern uint32_t param_total_num_mbufs;
476 
477 extern uint16_t stats_period;
478 
479 extern struct rte_eth_xstat_name *xstats_display;
480 extern unsigned int xstats_display_num;
481 
482 extern uint16_t hairpin_mode;
483 
484 #ifdef RTE_LIB_LATENCYSTATS
485 extern uint8_t latencystats_enabled;
486 extern lcoreid_t latencystats_lcore_id;
487 #endif
488 
489 #ifdef RTE_LIB_BITRATESTATS
490 extern lcoreid_t bitrate_lcore_id;
491 extern uint8_t bitrate_enabled;
492 #endif
493 
494 extern struct rte_fdir_conf fdir_conf;
495 
496 extern uint32_t max_rx_pkt_len;
497 
498 /*
499  * Configuration of packet segments used to scatter received packets
500  * if some of split features is configured.
501  */
502 extern uint16_t rx_pkt_seg_lengths[MAX_SEGS_BUFFER_SPLIT];
503 extern uint8_t  rx_pkt_nb_segs; /**< Number of segments to split */
504 extern uint16_t rx_pkt_seg_offsets[MAX_SEGS_BUFFER_SPLIT];
505 extern uint8_t  rx_pkt_nb_offs; /**< Number of specified offsets */
506 
507 /*
508  * Configuration of packet segments used by the "txonly" processing engine.
509  */
510 #define TXONLY_DEF_PACKET_LEN 64
511 extern uint16_t tx_pkt_length; /**< Length of TXONLY packet */
512 extern uint16_t tx_pkt_seg_lengths[RTE_MAX_SEGS_PER_PKT]; /**< Seg. lengths */
513 extern uint8_t  tx_pkt_nb_segs; /**< Number of segments in TX packets */
514 extern uint32_t tx_pkt_times_intra;
515 extern uint32_t tx_pkt_times_inter;
516 
517 enum tx_pkt_split {
518 	TX_PKT_SPLIT_OFF,
519 	TX_PKT_SPLIT_ON,
520 	TX_PKT_SPLIT_RND,
521 };
522 
523 extern enum tx_pkt_split tx_pkt_split;
524 
525 extern uint8_t txonly_multi_flow;
526 
527 extern uint16_t nb_pkt_per_burst;
528 extern uint16_t nb_pkt_flowgen_clones;
529 extern int nb_flows_flowgen;
530 extern uint16_t mb_mempool_cache;
531 extern int8_t rx_pthresh;
532 extern int8_t rx_hthresh;
533 extern int8_t rx_wthresh;
534 extern int8_t tx_pthresh;
535 extern int8_t tx_hthresh;
536 extern int8_t tx_wthresh;
537 
538 extern uint16_t tx_udp_src_port;
539 extern uint16_t tx_udp_dst_port;
540 
541 extern uint32_t tx_ip_src_addr;
542 extern uint32_t tx_ip_dst_addr;
543 
544 extern struct fwd_config cur_fwd_config;
545 extern struct fwd_engine *cur_fwd_eng;
546 extern uint32_t retry_enabled;
547 extern struct fwd_lcore  **fwd_lcores;
548 extern struct fwd_stream **fwd_streams;
549 
550 extern uint16_t vxlan_gpe_udp_port; /**< UDP port of tunnel VXLAN-GPE. */
551 extern uint16_t geneve_udp_port; /**< UDP port of tunnel GENEVE. */
552 
553 extern portid_t nb_peer_eth_addrs; /**< Number of peer ethernet addresses. */
554 extern struct rte_ether_addr peer_eth_addrs[RTE_MAX_ETHPORTS];
555 
556 extern uint32_t burst_tx_delay_time; /**< Burst tx delay time(us) for mac-retry. */
557 extern uint32_t burst_tx_retry_num;  /**< Burst tx retry number for mac-retry. */
558 
559 #define GRO_DEFAULT_ITEM_NUM_PER_FLOW 32
560 #define GRO_DEFAULT_FLOW_NUM (RTE_GRO_MAX_BURST_ITEM_NUM / \
561 		GRO_DEFAULT_ITEM_NUM_PER_FLOW)
562 
563 #define GRO_DEFAULT_FLUSH_CYCLES 1
564 #define GRO_MAX_FLUSH_CYCLES 4
565 
566 struct gro_status {
567 	struct rte_gro_param param;
568 	uint8_t enable;
569 };
570 extern struct gro_status gro_ports[RTE_MAX_ETHPORTS];
571 extern uint8_t gro_flush_cycles;
572 
573 #define GSO_MAX_PKT_BURST 2048
574 struct gso_status {
575 	uint8_t enable;
576 };
577 extern struct gso_status gso_ports[RTE_MAX_ETHPORTS];
578 extern uint16_t gso_max_segment_size;
579 
580 /* VXLAN encap/decap parameters. */
581 struct vxlan_encap_conf {
582 	uint32_t select_ipv4:1;
583 	uint32_t select_vlan:1;
584 	uint32_t select_tos_ttl:1;
585 	uint8_t vni[3];
586 	rte_be16_t udp_src;
587 	rte_be16_t udp_dst;
588 	rte_be32_t ipv4_src;
589 	rte_be32_t ipv4_dst;
590 	uint8_t ipv6_src[16];
591 	uint8_t ipv6_dst[16];
592 	rte_be16_t vlan_tci;
593 	uint8_t ip_tos;
594 	uint8_t ip_ttl;
595 	uint8_t eth_src[RTE_ETHER_ADDR_LEN];
596 	uint8_t eth_dst[RTE_ETHER_ADDR_LEN];
597 };
598 
599 extern struct vxlan_encap_conf vxlan_encap_conf;
600 
601 /* NVGRE encap/decap parameters. */
602 struct nvgre_encap_conf {
603 	uint32_t select_ipv4:1;
604 	uint32_t select_vlan:1;
605 	uint8_t tni[3];
606 	rte_be32_t ipv4_src;
607 	rte_be32_t ipv4_dst;
608 	uint8_t ipv6_src[16];
609 	uint8_t ipv6_dst[16];
610 	rte_be16_t vlan_tci;
611 	uint8_t eth_src[RTE_ETHER_ADDR_LEN];
612 	uint8_t eth_dst[RTE_ETHER_ADDR_LEN];
613 };
614 
615 extern struct nvgre_encap_conf nvgre_encap_conf;
616 
617 /* L2 encap parameters. */
618 struct l2_encap_conf {
619 	uint32_t select_ipv4:1;
620 	uint32_t select_vlan:1;
621 	rte_be16_t vlan_tci;
622 	uint8_t eth_src[RTE_ETHER_ADDR_LEN];
623 	uint8_t eth_dst[RTE_ETHER_ADDR_LEN];
624 };
625 extern struct l2_encap_conf l2_encap_conf;
626 
627 /* L2 decap parameters. */
628 struct l2_decap_conf {
629 	uint32_t select_vlan:1;
630 };
631 extern struct l2_decap_conf l2_decap_conf;
632 
633 /* MPLSoGRE encap parameters. */
634 struct mplsogre_encap_conf {
635 	uint32_t select_ipv4:1;
636 	uint32_t select_vlan:1;
637 	uint8_t label[3];
638 	rte_be32_t ipv4_src;
639 	rte_be32_t ipv4_dst;
640 	uint8_t ipv6_src[16];
641 	uint8_t ipv6_dst[16];
642 	rte_be16_t vlan_tci;
643 	uint8_t eth_src[RTE_ETHER_ADDR_LEN];
644 	uint8_t eth_dst[RTE_ETHER_ADDR_LEN];
645 };
646 extern struct mplsogre_encap_conf mplsogre_encap_conf;
647 
648 /* MPLSoGRE decap parameters. */
649 struct mplsogre_decap_conf {
650 	uint32_t select_ipv4:1;
651 	uint32_t select_vlan:1;
652 };
653 extern struct mplsogre_decap_conf mplsogre_decap_conf;
654 
655 /* MPLSoUDP encap parameters. */
656 struct mplsoudp_encap_conf {
657 	uint32_t select_ipv4:1;
658 	uint32_t select_vlan:1;
659 	uint8_t label[3];
660 	rte_be16_t udp_src;
661 	rte_be16_t udp_dst;
662 	rte_be32_t ipv4_src;
663 	rte_be32_t ipv4_dst;
664 	uint8_t ipv6_src[16];
665 	uint8_t ipv6_dst[16];
666 	rte_be16_t vlan_tci;
667 	uint8_t eth_src[RTE_ETHER_ADDR_LEN];
668 	uint8_t eth_dst[RTE_ETHER_ADDR_LEN];
669 };
670 extern struct mplsoudp_encap_conf mplsoudp_encap_conf;
671 
672 /* MPLSoUDP decap parameters. */
673 struct mplsoudp_decap_conf {
674 	uint32_t select_ipv4:1;
675 	uint32_t select_vlan:1;
676 };
677 extern struct mplsoudp_decap_conf mplsoudp_decap_conf;
678 
679 extern enum rte_eth_rx_mq_mode rx_mq_mode;
680 
681 extern struct rte_flow_action_conntrack conntrack_context;
682 
683 extern int proc_id;
684 extern unsigned int num_procs;
685 
686 static inline bool
687 is_proc_primary(void)
688 {
689 	return rte_eal_process_type() == RTE_PROC_PRIMARY;
690 }
691 
692 static inline unsigned int
693 lcore_num(void)
694 {
695 	unsigned int i;
696 
697 	for (i = 0; i < RTE_MAX_LCORE; ++i)
698 		if (fwd_lcores_cpuids[i] == rte_lcore_id())
699 			return i;
700 
701 	rte_panic("lcore_id of current thread not found in fwd_lcores_cpuids\n");
702 }
703 
704 void
705 parse_fwd_portlist(const char *port);
706 
707 static inline struct fwd_lcore *
708 current_fwd_lcore(void)
709 {
710 	return fwd_lcores[lcore_num()];
711 }
712 
713 /* Mbuf Pools */
714 static inline void
715 mbuf_poolname_build(unsigned int sock_id, char *mp_name,
716 		    int name_size, uint16_t idx)
717 {
718 	if (!idx)
719 		snprintf(mp_name, name_size,
720 			 MBUF_POOL_NAME_PFX "_%u", sock_id);
721 	else
722 		snprintf(mp_name, name_size,
723 			 MBUF_POOL_NAME_PFX "_%hu_%hu", (uint16_t)sock_id, idx);
724 }
725 
726 static inline struct rte_mempool *
727 mbuf_pool_find(unsigned int sock_id, uint16_t idx)
728 {
729 	char pool_name[RTE_MEMPOOL_NAMESIZE];
730 
731 	mbuf_poolname_build(sock_id, pool_name, sizeof(pool_name), idx);
732 	return rte_mempool_lookup((const char *)pool_name);
733 }
734 
735 /**
736  * Read/Write operations on a PCI register of a port.
737  */
738 static inline uint32_t
739 port_pci_reg_read(struct rte_port *port, uint32_t reg_off)
740 {
741 	const struct rte_pci_device *pci_dev;
742 	const struct rte_bus *bus;
743 	void *reg_addr;
744 	uint32_t reg_v;
745 
746 	if (!port->dev_info.device) {
747 		fprintf(stderr, "Invalid device\n");
748 		return 0;
749 	}
750 
751 	bus = rte_bus_find_by_device(port->dev_info.device);
752 	if (bus && !strcmp(bus->name, "pci")) {
753 		pci_dev = RTE_DEV_TO_PCI(port->dev_info.device);
754 	} else {
755 		fprintf(stderr, "Not a PCI device\n");
756 		return 0;
757 	}
758 
759 	reg_addr = ((char *)pci_dev->mem_resource[0].addr + reg_off);
760 	reg_v = *((volatile uint32_t *)reg_addr);
761 	return rte_le_to_cpu_32(reg_v);
762 }
763 
764 #define port_id_pci_reg_read(pt_id, reg_off) \
765 	port_pci_reg_read(&ports[(pt_id)], (reg_off))
766 
767 static inline void
768 port_pci_reg_write(struct rte_port *port, uint32_t reg_off, uint32_t reg_v)
769 {
770 	const struct rte_pci_device *pci_dev;
771 	const struct rte_bus *bus;
772 	void *reg_addr;
773 
774 	if (!port->dev_info.device) {
775 		fprintf(stderr, "Invalid device\n");
776 		return;
777 	}
778 
779 	bus = rte_bus_find_by_device(port->dev_info.device);
780 	if (bus && !strcmp(bus->name, "pci")) {
781 		pci_dev = RTE_DEV_TO_PCI(port->dev_info.device);
782 	} else {
783 		fprintf(stderr, "Not a PCI device\n");
784 		return;
785 	}
786 
787 	reg_addr = ((char *)pci_dev->mem_resource[0].addr + reg_off);
788 	*((volatile uint32_t *)reg_addr) = rte_cpu_to_le_32(reg_v);
789 }
790 
791 #define port_id_pci_reg_write(pt_id, reg_off, reg_value) \
792 	port_pci_reg_write(&ports[(pt_id)], (reg_off), (reg_value))
793 
794 static inline void
795 get_start_cycles(uint64_t *start_tsc)
796 {
797 	if (record_core_cycles)
798 		*start_tsc = rte_rdtsc();
799 }
800 
801 static inline void
802 get_end_cycles(struct fwd_stream *fs, uint64_t start_tsc)
803 {
804 	if (record_core_cycles)
805 		fs->core_cycles += rte_rdtsc() - start_tsc;
806 }
807 
808 static inline void
809 inc_rx_burst_stats(struct fwd_stream *fs, uint16_t nb_rx)
810 {
811 	if (record_burst_stats)
812 		fs->rx_burst_stats.pkt_burst_spread[nb_rx]++;
813 }
814 
815 static inline void
816 inc_tx_burst_stats(struct fwd_stream *fs, uint16_t nb_tx)
817 {
818 	if (record_burst_stats)
819 		fs->tx_burst_stats.pkt_burst_spread[nb_tx]++;
820 }
821 
822 /* Prototypes */
823 unsigned int parse_item_list(const char *str, const char *item_name,
824 			unsigned int max_items,
825 			unsigned int *parsed_items, int check_unique_values);
826 void launch_args_parse(int argc, char** argv);
827 void cmdline_read_from_file(const char *filename);
828 void prompt(void);
829 void prompt_exit(void);
830 void nic_stats_display(portid_t port_id);
831 void nic_stats_clear(portid_t port_id);
832 void nic_xstats_display(portid_t port_id);
833 void nic_xstats_clear(portid_t port_id);
834 void device_infos_display(const char *identifier);
835 void port_infos_display(portid_t port_id);
836 void port_summary_display(portid_t port_id);
837 void port_eeprom_display(portid_t port_id);
838 void port_module_eeprom_display(portid_t port_id);
839 void port_summary_header_display(void);
840 void rx_queue_infos_display(portid_t port_idi, uint16_t queue_id);
841 void tx_queue_infos_display(portid_t port_idi, uint16_t queue_id);
842 void fwd_lcores_config_display(void);
843 void pkt_fwd_config_display(struct fwd_config *cfg);
844 void rxtx_config_display(void);
845 void fwd_config_setup(void);
846 void set_def_fwd_config(void);
847 void reconfig(portid_t new_port_id, unsigned socket_id);
848 int init_fwd_streams(void);
849 void update_fwd_ports(portid_t new_pid);
850 
851 void set_fwd_eth_peer(portid_t port_id, char *peer_addr);
852 
853 void port_mtu_set(portid_t port_id, uint16_t mtu);
854 void port_reg_bit_display(portid_t port_id, uint32_t reg_off, uint8_t bit_pos);
855 void port_reg_bit_set(portid_t port_id, uint32_t reg_off, uint8_t bit_pos,
856 		      uint8_t bit_v);
857 void port_reg_bit_field_display(portid_t port_id, uint32_t reg_off,
858 				uint8_t bit1_pos, uint8_t bit2_pos);
859 void port_reg_bit_field_set(portid_t port_id, uint32_t reg_off,
860 			    uint8_t bit1_pos, uint8_t bit2_pos, uint32_t value);
861 void port_reg_display(portid_t port_id, uint32_t reg_off);
862 void port_reg_set(portid_t port_id, uint32_t reg_off, uint32_t value);
863 int port_action_handle_create(portid_t port_id, uint32_t id,
864 			      const struct rte_flow_indir_action_conf *conf,
865 			      const struct rte_flow_action *action);
866 int port_action_handle_destroy(portid_t port_id,
867 			       uint32_t n, const uint32_t *action);
868 struct rte_flow_action_handle *port_action_handle_get_by_id(portid_t port_id,
869 							    uint32_t id);
870 int port_action_handle_update(portid_t port_id, uint32_t id,
871 			      const struct rte_flow_action *action);
872 int port_flow_validate(portid_t port_id,
873 		       const struct rte_flow_attr *attr,
874 		       const struct rte_flow_item *pattern,
875 		       const struct rte_flow_action *actions,
876 		       const struct tunnel_ops *tunnel_ops);
877 int port_flow_create(portid_t port_id,
878 		     const struct rte_flow_attr *attr,
879 		     const struct rte_flow_item *pattern,
880 		     const struct rte_flow_action *actions,
881 		     const struct tunnel_ops *tunnel_ops);
882 int port_action_handle_query(portid_t port_id, uint32_t id);
883 void update_age_action_context(const struct rte_flow_action *actions,
884 		     struct port_flow *pf);
885 int port_flow_destroy(portid_t port_id, uint32_t n, const uint32_t *rule);
886 int port_flow_flush(portid_t port_id);
887 int port_flow_dump(portid_t port_id, bool dump_all,
888 			uint32_t rule, const char *file_name);
889 int port_flow_query(portid_t port_id, uint32_t rule,
890 		    const struct rte_flow_action *action);
891 void port_flow_list(portid_t port_id, uint32_t n, const uint32_t *group);
892 void port_flow_aged(portid_t port_id, uint8_t destroy);
893 const char *port_flow_tunnel_type(struct rte_flow_tunnel *tunnel);
894 struct port_flow_tunnel *
895 port_flow_locate_tunnel(uint16_t port_id, struct rte_flow_tunnel *tun);
896 void port_flow_tunnel_list(portid_t port_id);
897 void port_flow_tunnel_destroy(portid_t port_id, uint32_t tunnel_id);
898 void port_flow_tunnel_create(portid_t port_id, const struct tunnel_ops *ops);
899 int port_flow_isolate(portid_t port_id, int set);
900 int port_meter_policy_add(portid_t port_id, uint32_t policy_id,
901 		const struct rte_flow_action *actions);
902 
903 void rx_ring_desc_display(portid_t port_id, queueid_t rxq_id, uint16_t rxd_id);
904 void tx_ring_desc_display(portid_t port_id, queueid_t txq_id, uint16_t txd_id);
905 
906 int set_fwd_lcores_list(unsigned int *lcorelist, unsigned int nb_lc);
907 int set_fwd_lcores_mask(uint64_t lcoremask);
908 void set_fwd_lcores_number(uint16_t nb_lc);
909 
910 void set_fwd_ports_list(unsigned int *portlist, unsigned int nb_pt);
911 void set_fwd_ports_mask(uint64_t portmask);
912 void set_fwd_ports_number(uint16_t nb_pt);
913 int port_is_forwarding(portid_t port_id);
914 
915 void rx_vlan_strip_set(portid_t port_id, int on);
916 void rx_vlan_strip_set_on_queue(portid_t port_id, uint16_t queue_id, int on);
917 
918 void rx_vlan_filter_set(portid_t port_id, int on);
919 void rx_vlan_all_filter_set(portid_t port_id, int on);
920 void rx_vlan_qinq_strip_set(portid_t port_id, int on);
921 int rx_vft_set(portid_t port_id, uint16_t vlan_id, int on);
922 void vlan_extend_set(portid_t port_id, int on);
923 void vlan_tpid_set(portid_t port_id, enum rte_vlan_type vlan_type,
924 		   uint16_t tp_id);
925 void tx_vlan_set(portid_t port_id, uint16_t vlan_id);
926 void tx_qinq_set(portid_t port_id, uint16_t vlan_id, uint16_t vlan_id_outer);
927 void tx_vlan_reset(portid_t port_id);
928 void tx_vlan_pvid_set(portid_t port_id, uint16_t vlan_id, int on);
929 
930 void set_qmap(portid_t port_id, uint8_t is_rx, uint16_t queue_id, uint8_t map_value);
931 
932 void set_xstats_hide_zero(uint8_t on_off);
933 
934 void set_record_core_cycles(uint8_t on_off);
935 void set_record_burst_stats(uint8_t on_off);
936 void set_verbose_level(uint16_t vb_level);
937 void set_rx_pkt_segments(unsigned int *seg_lengths, unsigned int nb_segs);
938 void show_rx_pkt_segments(void);
939 void set_rx_pkt_offsets(unsigned int *seg_offsets, unsigned int nb_offs);
940 void show_rx_pkt_offsets(void);
941 void set_tx_pkt_segments(unsigned int *seg_lengths, unsigned int nb_segs);
942 void show_tx_pkt_segments(void);
943 void set_tx_pkt_times(unsigned int *tx_times);
944 void show_tx_pkt_times(void);
945 void set_tx_pkt_split(const char *name);
946 int parse_fec_mode(const char *name, uint32_t *fec_capa);
947 void show_fec_capability(uint32_t num, struct rte_eth_fec_capa *speed_fec_capa);
948 void set_nb_pkt_per_burst(uint16_t pkt_burst);
949 char *list_pkt_forwarding_modes(void);
950 char *list_pkt_forwarding_retry_modes(void);
951 void set_pkt_forwarding_mode(const char *fwd_mode);
952 void start_packet_forwarding(int with_tx_first);
953 void fwd_stats_display(void);
954 void fwd_stats_reset(void);
955 void stop_packet_forwarding(void);
956 void dev_set_link_up(portid_t pid);
957 void dev_set_link_down(portid_t pid);
958 void init_port_config(void);
959 void set_port_slave_flag(portid_t slave_pid);
960 void clear_port_slave_flag(portid_t slave_pid);
961 uint8_t port_is_bonding_slave(portid_t slave_pid);
962 
963 int init_port_dcb_config(portid_t pid, enum dcb_mode_enable dcb_mode,
964 		     enum rte_eth_nb_tcs num_tcs,
965 		     uint8_t pfc_en);
966 int start_port(portid_t pid);
967 void stop_port(portid_t pid);
968 void close_port(portid_t pid);
969 void reset_port(portid_t pid);
970 void attach_port(char *identifier);
971 void detach_devargs(char *identifier);
972 void detach_port_device(portid_t port_id);
973 int all_ports_stopped(void);
974 int port_is_stopped(portid_t port_id);
975 int port_is_started(portid_t port_id);
976 void pmd_test_exit(void);
977 #if defined(RTE_NET_I40E) || defined(RTE_NET_IXGBE)
978 void fdir_get_infos(portid_t port_id);
979 #endif
980 void fdir_set_flex_mask(portid_t port_id,
981 			   struct rte_eth_fdir_flex_mask *cfg);
982 void fdir_set_flex_payload(portid_t port_id,
983 			   struct rte_eth_flex_payload_cfg *cfg);
984 void port_rss_reta_info(portid_t port_id,
985 			struct rte_eth_rss_reta_entry64 *reta_conf,
986 			uint16_t nb_entries);
987 
988 void set_vf_traffic(portid_t port_id, uint8_t is_rx, uint16_t vf, uint8_t on);
989 
990 int
991 rx_queue_setup(uint16_t port_id, uint16_t rx_queue_id,
992 	       uint16_t nb_rx_desc, unsigned int socket_id,
993 	       struct rte_eth_rxconf *rx_conf, struct rte_mempool *mp);
994 
995 int set_queue_rate_limit(portid_t port_id, uint16_t queue_idx, uint16_t rate);
996 int set_vf_rate_limit(portid_t port_id, uint16_t vf, uint16_t rate,
997 				uint64_t q_msk);
998 
999 void port_rss_hash_conf_show(portid_t port_id, int show_rss_key);
1000 void port_rss_hash_key_update(portid_t port_id, char rss_type[],
1001 			      uint8_t *hash_key, uint8_t hash_key_len);
1002 int rx_queue_id_is_invalid(queueid_t rxq_id);
1003 int tx_queue_id_is_invalid(queueid_t txq_id);
1004 void setup_gro(const char *onoff, portid_t port_id);
1005 void setup_gro_flush_cycles(uint8_t cycles);
1006 void show_gro(portid_t port_id);
1007 void setup_gso(const char *mode, portid_t port_id);
1008 int eth_dev_info_get_print_err(uint16_t port_id,
1009 			struct rte_eth_dev_info *dev_info);
1010 int eth_dev_conf_get_print_err(uint16_t port_id,
1011 			struct rte_eth_conf *dev_conf);
1012 void eth_set_promisc_mode(uint16_t port_id, int enable);
1013 void eth_set_allmulticast_mode(uint16_t port, int enable);
1014 int eth_link_get_nowait_print_err(uint16_t port_id, struct rte_eth_link *link);
1015 int eth_macaddr_get_print_err(uint16_t port_id,
1016 			struct rte_ether_addr *mac_addr);
1017 
1018 /* Functions to display the set of MAC addresses added to a port*/
1019 void show_macs(portid_t port_id);
1020 void show_mcast_macs(portid_t port_id);
1021 
1022 /* Functions to manage the set of filtered Multicast MAC addresses */
1023 void mcast_addr_add(portid_t port_id, struct rte_ether_addr *mc_addr);
1024 void mcast_addr_remove(portid_t port_id, struct rte_ether_addr *mc_addr);
1025 void port_dcb_info_display(portid_t port_id);
1026 
1027 uint8_t *open_file(const char *file_path, uint32_t *size);
1028 int save_file(const char *file_path, uint8_t *buf, uint32_t size);
1029 int close_file(uint8_t *buf);
1030 
1031 void port_queue_region_info_display(portid_t port_id, void *buf);
1032 
1033 enum print_warning {
1034 	ENABLED_WARN = 0,
1035 	DISABLED_WARN
1036 };
1037 int port_id_is_invalid(portid_t port_id, enum print_warning warning);
1038 void print_valid_ports(void);
1039 int new_socket_id(unsigned int socket_id);
1040 
1041 queueid_t get_allowed_max_nb_rxq(portid_t *pid);
1042 int check_nb_rxq(queueid_t rxq);
1043 queueid_t get_allowed_max_nb_txq(portid_t *pid);
1044 int check_nb_txq(queueid_t txq);
1045 int check_nb_rxd(queueid_t rxd);
1046 int check_nb_txd(queueid_t txd);
1047 queueid_t get_allowed_max_nb_hairpinq(portid_t *pid);
1048 int check_nb_hairpinq(queueid_t hairpinq);
1049 
1050 uint16_t dump_rx_pkts(uint16_t port_id, uint16_t queue, struct rte_mbuf *pkts[],
1051 		      uint16_t nb_pkts, __rte_unused uint16_t max_pkts,
1052 		      __rte_unused void *user_param);
1053 
1054 uint16_t dump_tx_pkts(uint16_t port_id, uint16_t queue, struct rte_mbuf *pkts[],
1055 		      uint16_t nb_pkts, __rte_unused void *user_param);
1056 
1057 void add_rx_dump_callbacks(portid_t portid);
1058 void remove_rx_dump_callbacks(portid_t portid);
1059 void add_tx_dump_callbacks(portid_t portid);
1060 void remove_tx_dump_callbacks(portid_t portid);
1061 void configure_rxtx_dump_callbacks(uint16_t verbose);
1062 
1063 uint16_t tx_pkt_set_md(uint16_t port_id, __rte_unused uint16_t queue,
1064 		       struct rte_mbuf *pkts[], uint16_t nb_pkts,
1065 		       __rte_unused void *user_param);
1066 void add_tx_md_callback(portid_t portid);
1067 void remove_tx_md_callback(portid_t portid);
1068 
1069 uint16_t tx_pkt_set_dynf(uint16_t port_id, __rte_unused uint16_t queue,
1070 			 struct rte_mbuf *pkts[], uint16_t nb_pkts,
1071 			 __rte_unused void *user_param);
1072 void add_tx_dynf_callback(portid_t portid);
1073 void remove_tx_dynf_callback(portid_t portid);
1074 int update_mtu_from_frame_size(portid_t portid, uint32_t max_rx_pktlen);
1075 int update_jumbo_frame_offload(portid_t portid);
1076 void flex_item_create(portid_t port_id, uint16_t flex_id, const char *filename);
1077 void flex_item_destroy(portid_t port_id, uint16_t flex_id);
1078 void port_flex_item_flush(portid_t port_id);
1079 
1080 extern int flow_parse(const char *src, void *result, unsigned int size,
1081 		      struct rte_flow_attr **attr,
1082 		      struct rte_flow_item **pattern,
1083 		      struct rte_flow_action **actions);
1084 
1085 /*
1086  * Work-around of a compilation error with ICC on invocations of the
1087  * rte_be_to_cpu_16() function.
1088  */
1089 #ifdef __GCC__
1090 #define RTE_BE_TO_CPU_16(be_16_v)  rte_be_to_cpu_16((be_16_v))
1091 #define RTE_CPU_TO_BE_16(cpu_16_v) rte_cpu_to_be_16((cpu_16_v))
1092 #else
1093 #if RTE_BYTE_ORDER == RTE_BIG_ENDIAN
1094 #define RTE_BE_TO_CPU_16(be_16_v)  (be_16_v)
1095 #define RTE_CPU_TO_BE_16(cpu_16_v) (cpu_16_v)
1096 #else
1097 #define RTE_BE_TO_CPU_16(be_16_v) \
1098 	(uint16_t) ((((be_16_v) & 0xFF) << 8) | ((be_16_v) >> 8))
1099 #define RTE_CPU_TO_BE_16(cpu_16_v) \
1100 	(uint16_t) ((((cpu_16_v) & 0xFF) << 8) | ((cpu_16_v) >> 8))
1101 #endif
1102 #endif /* __GCC__ */
1103 
1104 #define TESTPMD_LOG(level, fmt, args...) \
1105 	rte_log(RTE_LOG_ ## level, testpmd_logtype, "testpmd: " fmt, ## args)
1106 
1107 #endif /* _TESTPMD_H_ */
1108