xref: /dpdk/examples/server_node_efd/server/init.c (revision 089e5ed7)
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2016-2017 Intel Corporation
3  */
4 
5 #include <stdint.h>
6 #include <stdio.h>
7 #include <string.h>
8 #include <sys/queue.h>
9 #include <errno.h>
10 #include <stdarg.h>
11 #include <inttypes.h>
12 
13 #include <rte_common.h>
14 #include <rte_memory.h>
15 #include <rte_memzone.h>
16 #include <rte_eal.h>
17 #include <rte_byteorder.h>
18 #include <rte_atomic.h>
19 #include <rte_launch.h>
20 #include <rte_per_lcore.h>
21 #include <rte_lcore.h>
22 #include <rte_branch_prediction.h>
23 #include <rte_debug.h>
24 #include <rte_ring.h>
25 #include <rte_log.h>
26 #include <rte_mempool.h>
27 #include <rte_memcpy.h>
28 #include <rte_mbuf.h>
29 #include <rte_interrupts.h>
30 #include <rte_ether.h>
31 #include <rte_ethdev.h>
32 #include <rte_malloc.h>
33 #include <rte_string_fns.h>
34 #include <rte_cycles.h>
35 #include <rte_efd.h>
36 #include <rte_hash.h>
37 
38 #include "common.h"
39 #include "args.h"
40 #include "init.h"
41 
42 #define MBUFS_PER_NODE 1536
43 #define MBUFS_PER_PORT 1536
44 #define MBUF_CACHE_SIZE 512
45 
46 #define RTE_MP_RX_DESC_DEFAULT 512
47 #define RTE_MP_TX_DESC_DEFAULT 512
48 #define NODE_QUEUE_RINGSIZE 128
49 
50 #define NO_FLAGS 0
51 
52 /* The mbuf pool for packet rx */
53 struct rte_mempool *pktmbuf_pool;
54 
55 /* array of info/queues for nodes */
56 struct node *nodes;
57 
58 /* EFD table */
59 struct rte_efd_table *efd_table;
60 
61 /* Shared info between server and nodes */
62 struct shared_info *info;
63 
64 /**
65  * Initialise the mbuf pool for packet reception for the NIC, and any other
66  * buffer pools needed by the app - currently none.
67  */
68 static int
69 init_mbuf_pools(void)
70 {
71 	const unsigned int num_mbufs = (num_nodes * MBUFS_PER_NODE) +
72 			(info->num_ports * MBUFS_PER_PORT);
73 
74 	/*
75 	 * Don't pass single-producer/single-consumer flags to mbuf create as it
76 	 * seems faster to use a cache instead
77 	 */
78 	printf("Creating mbuf pool '%s' [%u mbufs] ...\n",
79 			PKTMBUF_POOL_NAME, num_mbufs);
80 	pktmbuf_pool = rte_pktmbuf_pool_create(PKTMBUF_POOL_NAME, num_mbufs,
81 		MBUF_CACHE_SIZE, 0, RTE_MBUF_DEFAULT_BUF_SIZE, rte_socket_id());
82 
83 	return pktmbuf_pool == NULL; /* 0  on success */
84 }
85 
86 /**
87  * Initialise an individual port:
88  * - configure number of rx and tx rings
89  * - set up each rx ring, to pull from the main mbuf pool
90  * - set up each tx ring
91  * - start the port and report its status to stdout
92  */
93 static int
94 init_port(uint16_t port_num)
95 {
96 	/* for port configuration all features are off by default */
97 	struct rte_eth_conf port_conf = {
98 		.rxmode = {
99 			.mq_mode = ETH_MQ_RX_RSS,
100 		},
101 	};
102 	const uint16_t rx_rings = 1, tx_rings = num_nodes;
103 	uint16_t rx_ring_size = RTE_MP_RX_DESC_DEFAULT;
104 	uint16_t tx_ring_size = RTE_MP_TX_DESC_DEFAULT;
105 	struct rte_eth_dev_info dev_info;
106 	struct rte_eth_txconf txconf;
107 
108 	uint16_t q;
109 	int retval;
110 
111 	printf("Port %u init ... ", port_num);
112 	fflush(stdout);
113 
114 	retval = rte_eth_dev_info_get(port_num, &dev_info);
115 	if (retval != 0)
116 		return retval;
117 
118 	if (dev_info.tx_offload_capa & DEV_TX_OFFLOAD_MBUF_FAST_FREE)
119 		port_conf.txmode.offloads |=
120 			DEV_TX_OFFLOAD_MBUF_FAST_FREE;
121 
122 	/*
123 	 * Standard DPDK port initialisation - config port, then set up
124 	 * rx and tx rings.
125 	 */
126 	retval = rte_eth_dev_configure(port_num, rx_rings, tx_rings, &port_conf);
127 	if (retval != 0)
128 		return retval;
129 
130 	retval = rte_eth_dev_adjust_nb_rx_tx_desc(port_num, &rx_ring_size,
131 			&tx_ring_size);
132 	if (retval != 0)
133 		return retval;
134 
135 	for (q = 0; q < rx_rings; q++) {
136 		retval = rte_eth_rx_queue_setup(port_num, q, rx_ring_size,
137 				rte_eth_dev_socket_id(port_num),
138 				NULL, pktmbuf_pool);
139 		if (retval < 0)
140 			return retval;
141 	}
142 
143 	txconf = dev_info.default_txconf;
144 	txconf.offloads = port_conf.txmode.offloads;
145 	for (q = 0; q < tx_rings; q++) {
146 		retval = rte_eth_tx_queue_setup(port_num, q, tx_ring_size,
147 				rte_eth_dev_socket_id(port_num),
148 				&txconf);
149 		if (retval < 0)
150 			return retval;
151 	}
152 
153 	rte_eth_promiscuous_enable(port_num);
154 
155 	retval = rte_eth_dev_start(port_num);
156 	if (retval < 0)
157 		return retval;
158 
159 	printf("done:\n");
160 
161 	return 0;
162 }
163 
164 /**
165  * Set up the DPDK rings which will be used to pass packets, via
166  * pointers, between the multi-process server and node processes.
167  * Each node needs one RX queue.
168  */
169 static int
170 init_shm_rings(void)
171 {
172 	unsigned int i;
173 	unsigned int socket_id;
174 	const char *q_name;
175 	const unsigned int ringsize = NODE_QUEUE_RINGSIZE;
176 
177 	nodes = rte_malloc("node details",
178 		sizeof(*nodes) * num_nodes, 0);
179 	if (nodes == NULL)
180 		rte_exit(EXIT_FAILURE, "Cannot allocate memory for "
181 				"node program details\n");
182 
183 	for (i = 0; i < num_nodes; i++) {
184 		/* Create an RX queue for each node */
185 		socket_id = rte_socket_id();
186 		q_name = get_rx_queue_name(i);
187 		nodes[i].rx_q = rte_ring_create(q_name,
188 				ringsize, socket_id,
189 				RING_F_SP_ENQ | RING_F_SC_DEQ);
190 		if (nodes[i].rx_q == NULL)
191 			rte_exit(EXIT_FAILURE, "Cannot create rx ring queue "
192 					"for node %u\n", i);
193 	}
194 	return 0;
195 }
196 
197 /*
198  * Create EFD table which will contain all the flows
199  * that will be distributed among the nodes
200  */
201 static void
202 create_efd_table(void)
203 {
204 	uint8_t socket_id = rte_socket_id();
205 
206 	/* create table */
207 	efd_table = rte_efd_create("flow table", num_flows * 2, sizeof(uint32_t),
208 			1 << socket_id,	socket_id);
209 
210 	if (efd_table == NULL)
211 		rte_exit(EXIT_FAILURE, "Problem creating the flow table\n");
212 }
213 
214 static void
215 populate_efd_table(void)
216 {
217 	unsigned int i;
218 	int32_t ret;
219 	uint32_t ip_dst;
220 	uint8_t socket_id = rte_socket_id();
221 	uint64_t node_id;
222 
223 	/* Add flows in table */
224 	for (i = 0; i < num_flows; i++) {
225 		node_id = i % num_nodes;
226 
227 		ip_dst = rte_cpu_to_be_32(i);
228 		ret = rte_efd_update(efd_table, socket_id,
229 				(void *)&ip_dst, (efd_value_t)node_id);
230 		if (ret < 0)
231 			rte_exit(EXIT_FAILURE, "Unable to add entry %u in "
232 					"EFD table\n", i);
233 	}
234 
235 	printf("EFD table: Adding 0x%x keys\n", num_flows);
236 }
237 
238 /* Check the link status of all ports in up to 9s, and print them finally */
239 static void
240 check_all_ports_link_status(uint16_t port_num, uint32_t port_mask)
241 {
242 #define CHECK_INTERVAL 100 /* 100ms */
243 #define MAX_CHECK_TIME 90 /* 9s (90 * 100ms) in total */
244 	uint8_t count, all_ports_up, print_flag = 0;
245 	uint16_t portid;
246 	struct rte_eth_link link;
247 
248 	printf("\nChecking link status");
249 	fflush(stdout);
250 	for (count = 0; count <= MAX_CHECK_TIME; count++) {
251 		all_ports_up = 1;
252 		for (portid = 0; portid < port_num; portid++) {
253 			if ((port_mask & (1 << info->id[portid])) == 0)
254 				continue;
255 			memset(&link, 0, sizeof(link));
256 			rte_eth_link_get_nowait(info->id[portid], &link);
257 			/* print link status if flag set */
258 			if (print_flag == 1) {
259 				if (link.link_status)
260 					printf(
261 					"Port%d Link Up. Speed %u Mbps - %s\n",
262 						info->id[portid],
263 						link.link_speed,
264 				(link.link_duplex == ETH_LINK_FULL_DUPLEX) ?
265 					("full-duplex") : ("half-duplex\n"));
266 				else
267 					printf("Port %d Link Down\n",
268 						info->id[portid]);
269 				continue;
270 			}
271 			/* clear all_ports_up flag if any link down */
272 			if (link.link_status == ETH_LINK_DOWN) {
273 				all_ports_up = 0;
274 				break;
275 			}
276 		}
277 		/* after finally printing all link status, get out */
278 		if (print_flag == 1)
279 			break;
280 
281 		if (all_ports_up == 0) {
282 			printf(".");
283 			fflush(stdout);
284 			rte_delay_ms(CHECK_INTERVAL);
285 		}
286 
287 		/* set the print_flag if all ports up or timeout */
288 		if (all_ports_up == 1 || count == (MAX_CHECK_TIME - 1)) {
289 			print_flag = 1;
290 			printf("done\n");
291 		}
292 	}
293 }
294 
295 /**
296  * Main init function for the multi-process server app,
297  * calls subfunctions to do each stage of the initialisation.
298  */
299 int
300 init(int argc, char *argv[])
301 {
302 	int retval;
303 	const struct rte_memzone *mz;
304 	uint8_t i, total_ports;
305 
306 	/* init EAL, parsing EAL args */
307 	retval = rte_eal_init(argc, argv);
308 	if (retval < 0)
309 		return -1;
310 	argc -= retval;
311 	argv += retval;
312 
313 	/* get total number of ports */
314 	total_ports = rte_eth_dev_count_avail();
315 
316 	/* set up array for port data */
317 	mz = rte_memzone_reserve(MZ_SHARED_INFO, sizeof(*info),
318 				rte_socket_id(), NO_FLAGS);
319 	if (mz == NULL)
320 		rte_exit(EXIT_FAILURE, "Cannot reserve memory zone "
321 				"for port information\n");
322 	memset(mz->addr, 0, sizeof(*info));
323 	info = mz->addr;
324 
325 	/* parse additional, application arguments */
326 	retval = parse_app_args(total_ports, argc, argv);
327 	if (retval != 0)
328 		return -1;
329 
330 	/* initialise mbuf pools */
331 	retval = init_mbuf_pools();
332 	if (retval != 0)
333 		rte_exit(EXIT_FAILURE, "Cannot create needed mbuf pools\n");
334 
335 	/* now initialise the ports we will use */
336 	for (i = 0; i < info->num_ports; i++) {
337 		retval = init_port(info->id[i]);
338 		if (retval != 0)
339 			rte_exit(EXIT_FAILURE, "Cannot initialise port %u\n",
340 					(unsigned int) i);
341 	}
342 
343 	check_all_ports_link_status(info->num_ports, (~0x0));
344 
345 	/* initialise the node queues/rings for inter-eu comms */
346 	init_shm_rings();
347 
348 	/* Create the EFD table */
349 	create_efd_table();
350 
351 	/* Populate the EFD table */
352 	populate_efd_table();
353 
354 	/* Share the total number of nodes */
355 	info->num_nodes = num_nodes;
356 
357 	/* Share the total number of flows */
358 	info->num_flows = num_flows;
359 	return 0;
360 }
361