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1 /*
2 * Copyright (C) 2018 jingle YANG. All rights reserved.
3 *
4 * Redistribution and use in source and binary forms, with or without
5 * modification, are permitted provided that the following conditions
6 * are met:
7 *
8 * 1. Redistributions of source code must retain the above copyright
9 * notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 * notice, this list of conditions and the following disclaimer in the
12 * documentation and/or other materials provided with the distribution.
13 *
14 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS''AND
15 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24 * SUCH DAMAGE.
25 */
26
27 /*
28 Date: Dec 16, 2018
29
30 Description:
31 1. Pcap-dpdk provides libpcap the ability to use DPDK with the device name as dpdk:{portid}, such as dpdk:0.
32 2. DPDK is a set of libraries and drivers for fast packet processing. (https://www.dpdk.org/)
33 3. The testprogs/capturetest provides 6.4Gbps/800,000 pps on Intel 10-Gigabit X540-AT2 with DPDK 18.11.
34
35 Limitations:
36 1. DPDK support will be on if DPDK is available. Please set DIR for --with-dpdk[=DIR] with ./configure or -DDPDK_DIR[=DIR] with cmake if DPDK is installed manually.
37 2. Only support link libdpdk.so dynamicly, because the libdpdk.a will not work correctly.
38 3. Only support read operation, and packet injection has not been supported yet.
39
40 Usage:
41 1. Compile DPDK as shared library and install.(https://github.com/DPDK/dpdk.git)
42
43 You shall modify the file $RTE_SDK/$RTE_TARGET/.config and set:
44 CONFIG_RTE_BUILD_SHARED_LIB=y
45 By the following command:
46 sed -i 's/CONFIG_RTE_BUILD_SHARED_LIB=n/CONFIG_RTE_BUILD_SHARED_LIB=y/' $RTE_SDK/$RTE_TARGET/.config
47
48 2. Launch l2fwd that is one of DPDK examples correctly, and get device information.
49
50 You shall learn how to bind nic with DPDK-compatible driver by $RTE_SDK/usertools/dpdk-devbind.py, such as igb_uio.
51 And enable hugepages by dpdk-setup.sh
52
53 Then launch the l2fwd with dynamic dirver support. For example:
54 $RTE_SDK/examples/l2fwd/$RTE_TARGET/l2fwd -dlibrte_pmd_e1000.so -dlibrte_pmd_ixgbe.so -dlibrte_mempool_ring.so -- -p 0x1
55
56 3. Compile libpcap with dpdk options.
57
58 If DPDK has not been found automatically, you shall export DPDK envionment variable which are used for compiling DPDK. And then pass $RTE_SDK/$RTE_TARGET to --with-dpdk or -DDPDK_DIR
59
60 export RTE_SDK={your DPDK base directory}
61 export RTE_TARGET={your target name}
62
63 3.1 With configure
64
65 ./configure --with-dpdk=$RTE_SDK/$RTE_TARGET && make -s all && make -s testprogs && make install
66
67 3.2 With cmake
68
69 mkdir -p build && cd build && cmake -DDPDK_DIR=$RTE_SDK/$RTE_TARGET ../ && make -s all && make -s testprogs && make install
70
71 4. Link your own program with libpcap, and use DPDK with the device name as dpdk:{portid}, such as dpdk:0.
72 And you shall set DPDK configure options by environment variable DPDK_CFG
73 For example, the testprogs/capturetest could be lanched by:
74
75 env DPDK_CFG="--log-level=debug -l0 -dlibrte_pmd_e1000.so -dlibrte_pmd_ixgbe.so -dlibrte_mempool_ring.so" ./capturetest -i dpdk:0
76 */
77
78 #ifdef HAVE_CONFIG_H
79 #include <config.h>
80 #endif
81
82 #include <ctype.h>
83 #include <errno.h>
84 #include <netdb.h>
85 #include <stdio.h>
86 #include <stdlib.h>
87 #include <string.h>
88 #include <unistd.h>
89 #include <time.h>
90
91 #include <sys/time.h>
92
93 //header for calling dpdk
94 #include <rte_common.h>
95 #include <rte_log.h>
96 #include <rte_malloc.h>
97 #include <rte_memory.h>
98 #include <rte_eal.h>
99 #include <rte_launch.h>
100 #include <rte_atomic.h>
101 #include <rte_cycles.h>
102 #include <rte_lcore.h>
103 #include <rte_per_lcore.h>
104 #include <rte_branch_prediction.h>
105 #include <rte_interrupts.h>
106 #include <rte_random.h>
107 #include <rte_debug.h>
108 #include <rte_ether.h>
109 #include <rte_ethdev.h>
110 #include <rte_mempool.h>
111 #include <rte_mbuf.h>
112 #include <rte_bus.h>
113
114 #include "pcap-int.h"
115 #include "pcap-dpdk.h"
116
117 #define DPDK_DEF_LOG_LEV RTE_LOG_ERR
118 //
119 // This is set to 0 if we haven't initialized DPDK yet, 1 if we've
120 // successfully initialized it, a negative value, which is the negative
121 // of the rte_errno from rte_eal_init(), if we tried to initialize it
122 // and got an error.
123 //
124 static int is_dpdk_pre_inited=0;
125 #define DPDK_LIB_NAME "libpcap_dpdk"
126 #define DPDK_DESC "Data Plane Development Kit (DPDK) Interface"
127 #define DPDK_ERR_PERM_MSG "permission denied, DPDK needs root permission"
128 #define DPDK_ARGC_MAX 64
129 #define DPDK_CFG_MAX_LEN 1024
130 #define DPDK_DEV_NAME_MAX 32
131 #define DPDK_DEV_DESC_MAX 512
132 #define DPDK_CFG_ENV_NAME "DPDK_CFG"
133 #define DPDK_DEF_MIN_SLEEP_MS 1
134 static char dpdk_cfg_buf[DPDK_CFG_MAX_LEN];
135 #define DPDK_MAC_ADDR_SIZE 32
136 #define DPDK_DEF_MAC_ADDR "00:00:00:00:00:00"
137 #define DPDK_PCI_ADDR_SIZE 16
138 #define DPDK_DEF_CFG "--log-level=error -l0 -dlibrte_pmd_e1000.so -dlibrte_pmd_ixgbe.so -dlibrte_mempool_ring.so"
139 #define DPDK_PREFIX "dpdk:"
140 #define DPDK_PORTID_MAX 65535U
141 #define MBUF_POOL_NAME "mbuf_pool"
142 #define DPDK_TX_BUF_NAME "tx_buffer"
143 //The number of elements in the mbuf pool.
144 #define DPDK_NB_MBUFS 8192U
145 #define MEMPOOL_CACHE_SIZE 256
146 #define MAX_PKT_BURST 32
147 // Configurable number of RX/TX ring descriptors
148 #define RTE_TEST_RX_DESC_DEFAULT 1024
149 #define RTE_TEST_TX_DESC_DEFAULT 1024
150
151 static uint16_t nb_rxd = RTE_TEST_RX_DESC_DEFAULT;
152 static uint16_t nb_txd = RTE_TEST_TX_DESC_DEFAULT;
153
154 #define RTE_ETH_PCAP_SNAPLEN ETHER_MAX_JUMBO_FRAME_LEN
155
156 static struct rte_eth_dev_tx_buffer *tx_buffer;
157
158 struct dpdk_ts_helper{
159 struct timeval start_time;
160 uint64_t start_cycles;
161 uint64_t hz;
162 };
163 struct pcap_dpdk{
164 pcap_t * orig;
165 uint16_t portid; // portid of DPDK
166 int must_clear_promisc;
167 uint64_t bpf_drop;
168 int nonblock;
169 struct timeval required_select_timeout;
170 struct timeval prev_ts;
171 struct rte_eth_stats prev_stats;
172 struct timeval curr_ts;
173 struct rte_eth_stats curr_stats;
174 uint64_t pps;
175 uint64_t bps;
176 struct rte_mempool * pktmbuf_pool;
177 struct dpdk_ts_helper ts_helper;
178 struct ether_addr eth_addr;
179 char mac_addr[DPDK_MAC_ADDR_SIZE];
180 char pci_addr[DPDK_PCI_ADDR_SIZE];
181 unsigned char pcap_tmp_buf[RTE_ETH_PCAP_SNAPLEN];
182 };
183
184 static struct rte_eth_conf port_conf = {
185 .rxmode = {
186 .split_hdr_size = 0,
187 },
188 .txmode = {
189 .mq_mode = ETH_MQ_TX_NONE,
190 },
191 };
192
193 static void dpdk_fmt_errmsg_for_rte_errno(char *, size_t, int,
194 PCAP_FORMAT_STRING(const char *), ...) PCAP_PRINTFLIKE(4, 5);
195
196 /*
197 * Generate an error message based on a format, arguments, and an
198 * rte_errno, with a message for the rte_errno after the formatted output.
199 */
200 static void dpdk_fmt_errmsg_for_rte_errno(char *errbuf, size_t errbuflen,
201 int errnum, const char *fmt, ...)
202 {
203 va_list ap;
204 size_t msglen;
205 char *p;
206 size_t errbuflen_remaining;
207
208 va_start(ap, fmt);
209 pcap_vsnprintf(errbuf, errbuflen, fmt, ap);
210 va_end(ap);
211 msglen = strlen(errbuf);
212
213 /*
214 * Do we have enough space to append ": "?
215 * Including the terminating '\0', that's 3 bytes.
216 */
217 if (msglen + 3 > errbuflen) {
218 /* No - just give them what we've produced. */
219 return;
220 }
221 p = errbuf + msglen;
222 errbuflen_remaining = errbuflen - msglen;
223 *p++ = ':';
224 *p++ = ' ';
225 *p = '\0';
226 msglen += 2;
227 errbuflen_remaining -= 2;
228
229 /*
230 * Now append the string for the error code.
231 * rte_strerror() is thread-safe, at least as of dpdk 18.11,
232 * unlike strerror() - it uses strerror_r() rather than strerror()
233 * for UN*X errno values, and prints to what I assume is a per-thread
234 * buffer (based on the "PER_LCORE" in "RTE_DEFINE_PER_LCORE" used
235 * to declare the buffers statically) for DPDK errors.
236 */
237 pcap_snprintf(p, errbuflen_remaining, "%s", rte_strerror(errnum));
238 }
239
240 static int dpdk_init_timer(struct pcap_dpdk *pd){
241 gettimeofday(&(pd->ts_helper.start_time),NULL);
242 pd->ts_helper.start_cycles = rte_get_timer_cycles();
243 pd->ts_helper.hz = rte_get_timer_hz();
244 if (pd->ts_helper.hz == 0){
245 return -1;
246 }
247 return 0;
248 }
249 static inline void calculate_timestamp(struct dpdk_ts_helper *helper,struct timeval *ts)
250 {
251 uint64_t cycles;
252 // delta
253 struct timeval cur_time;
254 cycles = rte_get_timer_cycles() - helper->start_cycles;
255 cur_time.tv_sec = (time_t)(cycles/helper->hz);
256 cur_time.tv_usec = (suseconds_t)((cycles%helper->hz)*1e6/helper->hz);
257 timeradd(&(helper->start_time), &cur_time, ts);
258 }
259
260 static uint32_t dpdk_gather_data(unsigned char *data, int len, struct rte_mbuf *mbuf)
261 {
262 uint32_t total_len = 0;
263 while (mbuf && (total_len+mbuf->data_len) < len ){
264 rte_memcpy(data+total_len, rte_pktmbuf_mtod(mbuf,void *),mbuf->data_len);
265 total_len+=mbuf->data_len;
266 mbuf=mbuf->next;
267 }
268 return total_len;
269 }
270
271
272 static int dpdk_read_with_timeout(pcap_t *p, uint16_t portid, uint16_t queueid,struct rte_mbuf **pkts_burst, const uint16_t burst_cnt){
273 struct pcap_dpdk *pd = (struct pcap_dpdk*)(p->priv);
274 int nb_rx = 0;
275 int timeout_ms = p->opt.timeout;
276 int sleep_ms = 0;
277 if (pd->nonblock){
278 // In non-blocking mode, just read once, no mater how many packets are captured.
279 nb_rx = (int)rte_eth_rx_burst(pd->portid, 0, pkts_burst, burst_cnt);
280 }else{
281 // In blocking mode, read many times until packets are captured or timeout or break_loop is setted.
282 // if timeout_ms == 0, it may be blocked forever.
283 while (timeout_ms == 0 || sleep_ms < timeout_ms){
284 nb_rx = (int)rte_eth_rx_burst(pd->portid, 0, pkts_burst, burst_cnt);
285 if (nb_rx){ // got packets within timeout_ms
286 break;
287 }else{ // no packet arrives at this round.
288 if (p->break_loop){
289 break;
290 }
291 // sleep for a very short while.
292 // block sleep is the only choice, since usleep() will impact performance dramatically.
293 rte_delay_us_block(DPDK_DEF_MIN_SLEEP_MS*1000);
294 sleep_ms += DPDK_DEF_MIN_SLEEP_MS;
295 }
296 }
297 }
298 return nb_rx;
299 }
300
301 static int pcap_dpdk_dispatch(pcap_t *p, int max_cnt, pcap_handler cb, u_char *cb_arg)
302 {
303 struct pcap_dpdk *pd = (struct pcap_dpdk*)(p->priv);
304 int burst_cnt = 0;
305 int nb_rx = 0;
306 struct rte_mbuf *pkts_burst[MAX_PKT_BURST];
307 struct rte_mbuf *m;
308 struct pcap_pkthdr pcap_header;
309 uint16_t portid = pd->portid;
310 // In DPDK, pkt_len is sum of lengths for all segments. And data_len is for one segment
311 uint32_t pkt_len = 0;
312 int caplen = 0;
313 u_char *bp = NULL;
314 int i=0;
315 unsigned int gather_len =0;
316 int pkt_cnt = 0;
317 int is_accepted=0;
318 u_char *large_buffer=NULL;
319 int timeout_ms = p->opt.timeout;
320
321 if ( !PACKET_COUNT_IS_UNLIMITED(max_cnt) && max_cnt < MAX_PKT_BURST){
322 burst_cnt = max_cnt;
323 }else{
324 burst_cnt = MAX_PKT_BURST;
325 }
326
327 while( PACKET_COUNT_IS_UNLIMITED(max_cnt) || pkt_cnt < max_cnt){
328 if (p->break_loop){
329 p->break_loop = 0;
330 return PCAP_ERROR_BREAK;
331 }
332 // read once in non-blocking mode, or try many times waiting for timeout_ms.
333 // if timeout_ms == 0, it will be blocked until one packet arrives or break_loop is setted.
334 nb_rx = dpdk_read_with_timeout(p, portid, 0, pkts_burst, burst_cnt);
335 if (nb_rx == 0){
336 if (pd->nonblock){
337 RTE_LOG(DEBUG, USER1, "dpdk: no packets available in non-blocking mode.\n");
338 }else{
339 if (p->break_loop){
340 RTE_LOG(DEBUG, USER1, "dpdk: no packets available and break_loop is setted in blocking mode.\n");
341 p->break_loop = 0;
342 return PCAP_ERROR_BREAK;
343
344 }
345 RTE_LOG(DEBUG, USER1, "dpdk: no packets available for timeout %d ms in blocking mode.\n", timeout_ms);
346 }
347 // break if dpdk reads 0 packet, no matter in blocking(timeout) or non-blocking mode.
348 break;
349 }
350 pkt_cnt += nb_rx;
351 for ( i = 0; i < nb_rx; i++) {
352 m = pkts_burst[i];
353 calculate_timestamp(&(pd->ts_helper),&(pcap_header.ts));
354 pkt_len = rte_pktmbuf_pkt_len(m);
355 // caplen = min(pkt_len, p->snapshot);
356 // caplen will not be changed, no matter how long the rte_pktmbuf
357 caplen = pkt_len < p->snapshot ? pkt_len: p->snapshot;
358 pcap_header.caplen = caplen;
359 pcap_header.len = pkt_len;
360 // volatile prefetch
361 rte_prefetch0(rte_pktmbuf_mtod(m, void *));
362 bp = NULL;
363 if (m->nb_segs == 1)
364 {
365 bp = rte_pktmbuf_mtod(m, u_char *);
366 }else{
367 // use fast buffer pcap_tmp_buf if pkt_len is small, no need to call malloc and free
368 if ( pkt_len <= ETHER_MAX_JUMBO_FRAME_LEN)
369 {
370 gather_len = dpdk_gather_data(pd->pcap_tmp_buf, RTE_ETH_PCAP_SNAPLEN, m);
371 bp = pd->pcap_tmp_buf;
372 }else{
373 // need call free later
374 large_buffer = (u_char *)malloc(caplen*sizeof(u_char));
375 gather_len = dpdk_gather_data(large_buffer, caplen, m);
376 bp = large_buffer;
377 }
378
379 }
380 if (bp){
381 if (p->fcode.bf_insns==NULL || pcap_filter(p->fcode.bf_insns, bp, pcap_header.len, pcap_header.caplen)){
382 cb(cb_arg, &pcap_header, bp);
383 }else{
384 pd->bpf_drop++;
385 }
386 }
387 //free all pktmbuf
388 rte_pktmbuf_free(m);
389 if (large_buffer){
390 free(large_buffer);
391 large_buffer=NULL;
392 }
393 }
394 }
395 return pkt_cnt;
396 }
397
398 static int pcap_dpdk_inject(pcap_t *p, const void *buf _U_, int size _U_)
399 {
400 //not implemented yet
401 pcap_strlcpy(p->errbuf,
402 "dpdk error: Inject function has not been implemented yet",
403 PCAP_ERRBUF_SIZE);
404 return PCAP_ERROR;
405 }
406
407 static void pcap_dpdk_close(pcap_t *p)
408 {
409 struct pcap_dpdk *pd = p->priv;
410 if (pd==NULL)
411 {
412 return;
413 }
414 if (pd->must_clear_promisc)
415 {
416 rte_eth_promiscuous_disable(pd->portid);
417 }
418 rte_eth_dev_stop(pd->portid);
419 rte_eth_dev_close(pd->portid);
420 pcap_cleanup_live_common(p);
421 }
422
423 static void nic_stats_display(struct pcap_dpdk *pd)
424 {
425 uint16_t portid = pd->portid;
426 struct rte_eth_stats stats;
427 rte_eth_stats_get(portid, &stats);
428 RTE_LOG(INFO,USER1, "portid:%d, RX-packets: %-10"PRIu64" RX-errors: %-10"PRIu64
429 " RX-bytes: %-10"PRIu64" RX-Imissed: %-10"PRIu64"\n", portid, stats.ipackets, stats.ierrors,
430 stats.ibytes,stats.imissed);
431 RTE_LOG(INFO,USER1, "portid:%d, RX-PPS: %-10"PRIu64" RX-Mbps: %.2lf\n", portid, pd->pps, pd->bps/1e6f );
432 }
433
434 static int pcap_dpdk_stats(pcap_t *p, struct pcap_stat *ps)
435 {
436 struct pcap_dpdk *pd = p->priv;
437 calculate_timestamp(&(pd->ts_helper), &(pd->curr_ts));
438 rte_eth_stats_get(pd->portid,&(pd->curr_stats));
439 if (ps){
440 ps->ps_recv = pd->curr_stats.ipackets;
441 ps->ps_drop = pd->curr_stats.ierrors;
442 ps->ps_drop += pd->bpf_drop;
443 ps->ps_ifdrop = pd->curr_stats.imissed;
444 }
445 uint64_t delta_pkt = pd->curr_stats.ipackets - pd->prev_stats.ipackets;
446 struct timeval delta_tm;
447 timersub(&(pd->curr_ts),&(pd->prev_ts), &delta_tm);
448 uint64_t delta_usec = delta_tm.tv_sec*1e6+delta_tm.tv_usec;
449 uint64_t delta_bit = (pd->curr_stats.ibytes-pd->prev_stats.ibytes)*8;
450 RTE_LOG(DEBUG, USER1, "delta_usec: %-10"PRIu64" delta_pkt: %-10"PRIu64" delta_bit: %-10"PRIu64"\n", delta_usec, delta_pkt, delta_bit);
451 pd->pps = (uint64_t)(delta_pkt*1e6f/delta_usec);
452 pd->bps = (uint64_t)(delta_bit*1e6f/delta_usec);
453 nic_stats_display(pd);
454 pd->prev_stats = pd->curr_stats;
455 pd->prev_ts = pd->curr_ts;
456 return 0;
457 }
458
459 static int pcap_dpdk_setnonblock(pcap_t *p, int nonblock){
460 struct pcap_dpdk *pd = (struct pcap_dpdk*)(p->priv);
461 pd->nonblock = nonblock;
462 return 0;
463 }
464
465 static int pcap_dpdk_getnonblock(pcap_t *p){
466 struct pcap_dpdk *pd = (struct pcap_dpdk*)(p->priv);
467 return pd->nonblock;
468 }
469 static int check_link_status(uint16_t portid, struct rte_eth_link *plink)
470 {
471 // wait up to 9 seconds to get link status
472 rte_eth_link_get(portid, plink);
473 return plink->link_status == ETH_LINK_UP;
474 }
475 static void eth_addr_str(struct ether_addr *addrp, char* mac_str, int len)
476 {
477 int offset=0;
478 if (addrp == NULL){
479 pcap_snprintf(mac_str, len-1, DPDK_DEF_MAC_ADDR);
480 return;
481 }
482 for (int i=0; i<6; i++)
483 {
484 if (offset >= len)
485 { // buffer overflow
486 return;
487 }
488 if (i==0)
489 {
490 pcap_snprintf(mac_str+offset, len-1-offset, "%02X",addrp->addr_bytes[i]);
491 offset+=2; // FF
492 }else{
493 pcap_snprintf(mac_str+offset, len-1-offset, ":%02X", addrp->addr_bytes[i]);
494 offset+=3; // :FF
495 }
496 }
497 return;
498 }
499 // return portid by device name, otherwise return -1
500 static uint16_t portid_by_device(char * device)
501 {
502 uint16_t ret = DPDK_PORTID_MAX;
503 int len = strlen(device);
504 int prefix_len = strlen(DPDK_PREFIX);
505 unsigned long ret_ul = 0L;
506 char *pEnd;
507 if (len<=prefix_len || strncmp(device, DPDK_PREFIX, prefix_len)) // check prefix dpdk:
508 {
509 return ret;
510 }
511 //check all chars are digital
512 for (int i=prefix_len; device[i]; i++){
513 if (device[i]<'0' || device[i]>'9'){
514 return ret;
515 }
516 }
517 ret_ul = strtoul(&(device[prefix_len]), &pEnd, 10);
518 if (pEnd == &(device[prefix_len]) || *pEnd != '\0'){
519 return ret;
520 }
521 // too large for portid
522 if (ret_ul >= DPDK_PORTID_MAX){
523 return ret;
524 }
525 ret = (uint16_t)ret_ul;
526 return ret;
527 }
528
529 static int parse_dpdk_cfg(char* dpdk_cfg,char** dargv)
530 {
531 int cnt=0;
532 memset(dargv,0,sizeof(dargv[0])*DPDK_ARGC_MAX);
533 //current process name
534 int skip_space = 1;
535 int i=0;
536 RTE_LOG(INFO, USER1,"dpdk cfg: %s\n",dpdk_cfg);
537 // find first non space char
538 // The last opt is NULL
539 for (i=0;dpdk_cfg[i] && cnt<DPDK_ARGC_MAX-1;i++){
540 if (skip_space && dpdk_cfg[i]!=' '){ // not space
541 skip_space=!skip_space; // skip normal char
542 dargv[cnt++] = dpdk_cfg+i;
543 }
544 if (!skip_space && dpdk_cfg[i]==' '){ // fint a space
545 dpdk_cfg[i]=0x00; // end of this opt
546 skip_space=!skip_space; // skip space char
547 }
548 }
549 dargv[cnt]=NULL;
550 return cnt;
551 }
552
553 // only called once
554 // Returns:
555 //
556 // 1 on success;
557 //
558 // 0 if "the EAL cannot initialize on this system", which we treat as
559 // meaning "DPDK isn't available";
560 //
561 // a PCAP_ERROR_ code for other errors.
562 static int dpdk_pre_init(char * ebuf)
563 {
564 int dargv_cnt=0;
565 char *dargv[DPDK_ARGC_MAX];
566 char *ptr_dpdk_cfg = NULL;
567 int ret;
568 // globale var
569 if (is_dpdk_pre_inited != 0)
570 {
571 // already inited; did that succeed?
572 if (is_dpdk_pre_inited < 0)
573 {
574 // failed
575 goto error;
576 }
577 else
578 {
579 // succeeded
580 return 1;
581 }
582 }
583 // check for root permission
584 // XXX - is it sufficient to call rte_eal_init() and check for
585 // EACCES?
586 if( geteuid() != 0)
587 {
588 RTE_LOG(ERR, USER1, "%s\n", DPDK_ERR_PERM_MSG);
589 pcap_snprintf(ebuf, PCAP_ERRBUF_SIZE,
590 "DPDK requires that it run as root");
591 return PCAP_ERROR_PERM_DENIED;
592 }
593 // init EAL
594 ptr_dpdk_cfg = getenv(DPDK_CFG_ENV_NAME);
595 // set default log level to debug
596 rte_log_set_global_level(DPDK_DEF_LOG_LEV);
597 if (ptr_dpdk_cfg == NULL)
598 {
599 RTE_LOG(INFO,USER1,"env $DPDK_CFG is unset, so using default: %s\n",DPDK_DEF_CFG);
600 ptr_dpdk_cfg = DPDK_DEF_CFG;
601 }
602 memset(dpdk_cfg_buf,0,sizeof(dpdk_cfg_buf));
603 snprintf(dpdk_cfg_buf,DPDK_CFG_MAX_LEN-1,"%s %s",DPDK_LIB_NAME,ptr_dpdk_cfg);
604 dargv_cnt = parse_dpdk_cfg(dpdk_cfg_buf,dargv);
605 ret = rte_eal_init(dargv_cnt,dargv);
606 if (ret == -1)
607 {
608 // Indicate that we've called rte_eal_init() by setting
609 // is_dpdk_pre_inited to the negative of the error code,
610 // and process the error.
611 is_dpdk_pre_inited = -rte_errno;
612 goto error;
613 }
614 // init succeeded, so we do not need to do it again later.
615 is_dpdk_pre_inited = 1;
616 return 1;
617
618 error:
619 switch (-is_dpdk_pre_inited)
620 {
621 case EACCES:
622 // This "indicates a permissions issue.".
623 RTE_LOG(ERR, USER1, "%s\n", DPDK_ERR_PERM_MSG);
624 pcap_snprintf(ebuf, PCAP_ERRBUF_SIZE,
625 "DPDK requires that it run as root");
626 return PCAP_ERROR_PERM_DENIED;
627
628 case EAGAIN:
629 // This "indicates either a bus or system
630 // resource was not available, setup may
631 // be attempted again."
632 // There's no such error in pcap, so I'm
633 // not sure what we should do here.
634 pcap_snprintf(ebuf, PCAP_ERRBUF_SIZE,
635 "Bus or system resource was not available");
636 break;
637
638 case EALREADY:
639 // This "indicates that the rte_eal_init
640 // function has already been called, and
641 // cannot be called again."
642 // That's not an error; set the "we've
643 // been here before" flag and return
644 // success.
645 is_dpdk_pre_inited = 1;
646 return 1;
647
648 case EFAULT:
649 // This "indicates the tailq configuration
650 // name was not found in memory configuration."
651 pcap_snprintf(ebuf, PCAP_ERRBUF_SIZE,
652 "The tailq configuration name was not found in the memory configuration");
653 return PCAP_ERROR;
654
655 case EINVAL:
656 // This "indicates invalid parameters were
657 // passed as argv/argc." Those came from
658 // the configuration file.
659 pcap_snprintf(ebuf, PCAP_ERRBUF_SIZE,
660 "The configuration file has invalid parameters");
661 break;
662
663 case ENOMEM:
664 // This "indicates failure likely caused by
665 // an out-of-memory condition."
666 pcap_snprintf(ebuf, PCAP_ERRBUF_SIZE,
667 "Out of memory");
668 break;
669
670 case ENODEV:
671 // This "indicates memory setup issues."
672 pcap_snprintf(ebuf, PCAP_ERRBUF_SIZE,
673 "An error occurred setting up memory");
674 break;
675
676 case ENOTSUP:
677 // This "indicates that the EAL cannot
678 // initialize on this system." We treat
679 // that as meaning DPDK isn't available
680 // on this machine, rather than as a
681 // fatal error, and let our caller decide
682 // whether that's a fatal error (if trying
683 // to activate a DPDK device) or not (if
684 // trying to enumerate devices).
685 return 0;
686
687 case EPROTO:
688 // This "indicates that the PCI bus is
689 // either not present, or is not readable
690 // by the eal." Does "the PCI bus is not
691 // present" mean "this machine has no PCI
692 // bus", which strikes me as a "not available"
693 // case? If so, should "is not readable by
694 // the EAL" also something we should treat
695 // as a "not available" case? If not, we
696 // can't distinguish between the two, so
697 // we're stuck.
698 pcap_snprintf(ebuf, PCAP_ERRBUF_SIZE,
699 "PCI bus is not present or not readable by the EAL");
700 break;
701
702 case ENOEXEC:
703 // This "indicates that a service core
704 // failed to launch successfully."
705 pcap_snprintf(ebuf, PCAP_ERRBUF_SIZE,
706 "A service core failed to launch successfully");
707 break;
708
709 default:
710 //
711 // That's not in the list of errors in
712 // the documentation; let it be reported
713 // as an error.
714 //
715 dpdk_fmt_errmsg_for_rte_errno(ebuf,
716 PCAP_ERRBUF_SIZE, -is_dpdk_pre_inited,
717 "dpdk error: dpdk_pre_init failed");
718 break;
719 }
720 // Error.
721 return PCAP_ERROR;
722 }
723
724 static int pcap_dpdk_activate(pcap_t *p)
725 {
726 struct pcap_dpdk *pd = p->priv;
727 pd->orig = p;
728 int ret = PCAP_ERROR;
729 uint16_t nb_ports=0;
730 uint16_t portid= DPDK_PORTID_MAX;
731 unsigned nb_mbufs = DPDK_NB_MBUFS;
732 struct rte_eth_rxconf rxq_conf;
733 struct rte_eth_txconf txq_conf;
734 struct rte_eth_conf local_port_conf = port_conf;
735 struct rte_eth_dev_info dev_info;
736 int is_port_up = 0;
737 struct rte_eth_link link;
738 do{
739 //init EAL
740 char dpdk_pre_init_errbuf[PCAP_ERRBUF_SIZE];
741 ret = dpdk_pre_init(dpdk_pre_init_errbuf);
742 if (ret < 0)
743 {
744 // This returns a negative value on an error.
745 pcap_snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
746 "Can't open device %s: %s",
747 p->opt.device, dpdk_pre_init_errbuf);
748 // ret is set to the correct error
749 break;
750 }
751 if (ret == 0)
752 {
753 // This means DPDK isn't available on this machine.
754 pcap_snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
755 "Can't open device %s: DPDK is not available on this machine",
756 p->opt.device);
757 return PCAP_ERROR_NO_SUCH_DEVICE;
758 }
759
760 ret = dpdk_init_timer(pd);
761 if (ret<0)
762 {
763 pcap_snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
764 "dpdk error: Init timer is zero with device %s",
765 p->opt.device);
766 ret = PCAP_ERROR;
767 break;
768 }
769
770 nb_ports = rte_eth_dev_count_avail();
771 if (nb_ports == 0)
772 {
773 pcap_snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
774 "dpdk error: No Ethernet ports");
775 ret = PCAP_ERROR;
776 break;
777 }
778
779 portid = portid_by_device(p->opt.device);
780 if (portid == DPDK_PORTID_MAX){
781 pcap_snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
782 "dpdk error: portid is invalid. device %s",
783 p->opt.device);
784 ret = PCAP_ERROR_NO_SUCH_DEVICE;
785 break;
786 }
787
788 pd->portid = portid;
789
790 if (p->snapshot <= 0 || p->snapshot > MAXIMUM_SNAPLEN)
791 {
792 p->snapshot = MAXIMUM_SNAPLEN;
793 }
794 // create the mbuf pool
795 pd->pktmbuf_pool = rte_pktmbuf_pool_create(MBUF_POOL_NAME, nb_mbufs,
796 MEMPOOL_CACHE_SIZE, 0, RTE_MBUF_DEFAULT_BUF_SIZE,
797 rte_socket_id());
798 if (pd->pktmbuf_pool == NULL)
799 {
800 dpdk_fmt_errmsg_for_rte_errno(p->errbuf,
801 PCAP_ERRBUF_SIZE, rte_errno,
802 "dpdk error: Cannot init mbuf pool");
803 ret = PCAP_ERROR;
804 break;
805 }
806 // config dev
807 rte_eth_dev_info_get(portid, &dev_info);
808 if (dev_info.tx_offload_capa & DEV_TX_OFFLOAD_MBUF_FAST_FREE)
809 {
810 local_port_conf.txmode.offloads |=DEV_TX_OFFLOAD_MBUF_FAST_FREE;
811 }
812 // only support 1 queue
813 ret = rte_eth_dev_configure(portid, 1, 1, &local_port_conf);
814 if (ret < 0)
815 {
816 dpdk_fmt_errmsg_for_rte_errno(p->errbuf,
817 PCAP_ERRBUF_SIZE, -ret,
818 "dpdk error: Cannot configure device: port=%u",
819 portid);
820 ret = PCAP_ERROR;
821 break;
822 }
823 // adjust rx tx
824 ret = rte_eth_dev_adjust_nb_rx_tx_desc(portid, &nb_rxd, &nb_txd);
825 if (ret < 0)
826 {
827 dpdk_fmt_errmsg_for_rte_errno(p->errbuf,
828 PCAP_ERRBUF_SIZE, -ret,
829 "dpdk error: Cannot adjust number of descriptors: port=%u",
830 portid);
831 ret = PCAP_ERROR;
832 break;
833 }
834 // get MAC addr
835 rte_eth_macaddr_get(portid, &(pd->eth_addr));
836 eth_addr_str(&(pd->eth_addr), pd->mac_addr, DPDK_MAC_ADDR_SIZE-1);
837
838 // init one RX queue
839 rxq_conf = dev_info.default_rxconf;
840 rxq_conf.offloads = local_port_conf.rxmode.offloads;
841 ret = rte_eth_rx_queue_setup(portid, 0, nb_rxd,
842 rte_eth_dev_socket_id(portid),
843 &rxq_conf,
844 pd->pktmbuf_pool);
845 if (ret < 0)
846 {
847 dpdk_fmt_errmsg_for_rte_errno(p->errbuf,
848 PCAP_ERRBUF_SIZE, -ret,
849 "dpdk error: rte_eth_rx_queue_setup:port=%u",
850 portid);
851 ret = PCAP_ERROR;
852 break;
853 }
854
855 // init one TX queue
856 txq_conf = dev_info.default_txconf;
857 txq_conf.offloads = local_port_conf.txmode.offloads;
858 ret = rte_eth_tx_queue_setup(portid, 0, nb_txd,
859 rte_eth_dev_socket_id(portid),
860 &txq_conf);
861 if (ret < 0)
862 {
863 dpdk_fmt_errmsg_for_rte_errno(p->errbuf,
864 PCAP_ERRBUF_SIZE, -ret,
865 "dpdk error: rte_eth_tx_queue_setup:port=%u",
866 portid);
867 ret = PCAP_ERROR;
868 break;
869 }
870 // Initialize TX buffers
871 tx_buffer = rte_zmalloc_socket(DPDK_TX_BUF_NAME,
872 RTE_ETH_TX_BUFFER_SIZE(MAX_PKT_BURST), 0,
873 rte_eth_dev_socket_id(portid));
874 if (tx_buffer == NULL)
875 {
876 pcap_snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
877 "dpdk error: Cannot allocate buffer for tx on port %u", portid);
878 ret = PCAP_ERROR;
879 break;
880 }
881 rte_eth_tx_buffer_init(tx_buffer, MAX_PKT_BURST);
882 // Start device
883 ret = rte_eth_dev_start(portid);
884 if (ret < 0)
885 {
886 dpdk_fmt_errmsg_for_rte_errno(p->errbuf,
887 PCAP_ERRBUF_SIZE, -ret,
888 "dpdk error: rte_eth_dev_start:port=%u",
889 portid);
890 ret = PCAP_ERROR;
891 break;
892 }
893 // set promiscuous mode
894 if (p->opt.promisc){
895 pd->must_clear_promisc=1;
896 rte_eth_promiscuous_enable(portid);
897 }
898 // check link status
899 is_port_up = check_link_status(portid, &link);
900 if (!is_port_up){
901 pcap_snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
902 "dpdk error: link is down, port=%u",portid);
903 ret = PCAP_ERROR_IFACE_NOT_UP;
904 break;
905 }
906 // reset statistics
907 rte_eth_stats_reset(pd->portid);
908 calculate_timestamp(&(pd->ts_helper), &(pd->prev_ts));
909 rte_eth_stats_get(pd->portid,&(pd->prev_stats));
910 // format pcap_t
911 pd->portid = portid;
912 p->fd = pd->portid;
913 if (p->snapshot <=0 || p->snapshot> MAXIMUM_SNAPLEN)
914 {
915 p->snapshot = MAXIMUM_SNAPLEN;
916 }
917 p->linktype = DLT_EN10MB; // Ethernet, the 10MB is historical.
918 p->selectable_fd = p->fd;
919 p->read_op = pcap_dpdk_dispatch;
920 p->inject_op = pcap_dpdk_inject;
921 // using pcap_filter currently, though DPDK provides their own BPF function. Because DPDK BPF needs load a ELF file as a filter.
922 p->setfilter_op = install_bpf_program;
923 p->setdirection_op = NULL;
924 p->set_datalink_op = NULL;
925 p->getnonblock_op = pcap_dpdk_getnonblock;
926 p->setnonblock_op = pcap_dpdk_setnonblock;
927 p->stats_op = pcap_dpdk_stats;
928 p->cleanup_op = pcap_dpdk_close;
929 p->breakloop_op = pcap_breakloop_common;
930 // set default timeout
931 pd->required_select_timeout.tv_sec = 0;
932 pd->required_select_timeout.tv_usec = DPDK_DEF_MIN_SLEEP_MS*1000;
933 p->required_select_timeout = &pd->required_select_timeout;
934 ret = 0; // OK
935 }while(0);
936
937 if (ret <= PCAP_ERROR) // all kinds of error code
938 {
939 pcap_cleanup_live_common(p);
940 }else{
941 rte_eth_dev_get_name_by_port(portid,pd->pci_addr);
942 RTE_LOG(INFO, USER1,"Port %d device: %s, MAC:%s, PCI:%s\n", portid, p->opt.device, pd->mac_addr, pd->pci_addr);
943 RTE_LOG(INFO, USER1,"Port %d Link Up. Speed %u Mbps - %s\n",
944 portid, link.link_speed,
945 (link.link_duplex == ETH_LINK_FULL_DUPLEX) ?
946 ("full-duplex") : ("half-duplex\n"));
947 }
948 return ret;
949 }
950
951 // device name for dpdk shoud be in the form as dpdk:number, such as dpdk:0
952 pcap_t * pcap_dpdk_create(const char *device, char *ebuf, int *is_ours)
953 {
954 pcap_t *p=NULL;
955 *is_ours = 0;
956
957 *is_ours = !strncmp(device, "dpdk:", 5);
958 if (! *is_ours)
959 return NULL;
960 //memset will happen
961 p = pcap_create_common(ebuf, sizeof(struct pcap_dpdk));
962
963 if (p == NULL)
964 return NULL;
965 p->activate_op = pcap_dpdk_activate;
966 return p;
967 }
968
969 int pcap_dpdk_findalldevs(pcap_if_list_t *devlistp, char *ebuf)
970 {
971 int ret=0;
972 unsigned int nb_ports = 0;
973 char dpdk_name[DPDK_DEV_NAME_MAX];
974 char dpdk_desc[DPDK_DEV_DESC_MAX];
975 struct ether_addr eth_addr;
976 char mac_addr[DPDK_MAC_ADDR_SIZE];
977 char pci_addr[DPDK_PCI_ADDR_SIZE];
978 do{
979 char dpdk_pre_init_errbuf[PCAP_ERRBUF_SIZE];
980 ret = dpdk_pre_init(dpdk_pre_init_errbuf);
981 if (ret < 0)
982 {
983 // This returns a negative value on an error.
984 pcap_snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
985 "Can't open device %s: %s",
986 p->opt.device, dpdk_pre_init_errbuf);
987 ret = PCAP_ERRNO;
988 break;
989 }
990 if (ret == 0)
991 {
992 // This means DPDK isn't available on this machine.
993 // That just means "don't return any devices".
994 break;
995 }
996 nb_ports = rte_eth_dev_count_avail();
997 if (nb_ports == 0)
998 {
999 // That just means "don't return any devices".
1000 ret = 0;
1001 break;
1002 }
1003 for (unsigned int i=0; i<nb_ports; i++){
1004 pcap_snprintf(dpdk_name, DPDK_DEV_NAME_MAX-1,
1005 "%s%u", DPDK_PREFIX, i);
1006 // mac addr
1007 rte_eth_macaddr_get(i, &eth_addr);
1008 eth_addr_str(&eth_addr,mac_addr,DPDK_MAC_ADDR_SIZE);
1009 // PCI addr
1010 rte_eth_dev_get_name_by_port(i,pci_addr);
1011 pcap_snprintf(dpdk_desc,DPDK_DEV_DESC_MAX-1,"%s %s, MAC:%s, PCI:%s", DPDK_DESC, dpdk_name, mac_addr, pci_addr);
1012 if (add_dev(devlistp, dpdk_name, 0, dpdk_desc, ebuf)==NULL){
1013 ret = PCAP_ERROR;
1014 break;
1015 }
1016 }
1017 }while(0);
1018 return ret;
1019 }
1020
1021 #ifdef DPDK_ONLY
1022 /*
1023 * This libpcap build supports only DPDK, not regular network interfaces.
1024 */
1025
1026 /*
1027 * There are no regular interfaces, just DPDK interfaces.
1028 */
1029 int
1030 pcap_platform_finddevs(pcap_if_list_t *devlistp _U_, char *errbuf)
1031 {
1032 return (0);
1033 }
1034
1035 /*
1036 * Attempts to open a regular interface fail.
1037 */
1038 pcap_t *
1039 pcap_create_interface(const char *device, char *errbuf)
1040 {
1041 pcap_snprintf(errbuf, PCAP_ERRBUF_SIZE,
1042 "This version of libpcap only supports DPDK");
1043 return NULL;
1044 }
1045
1046 /*
1047 * Libpcap version string.
1048 */
1049 const char *
1050 pcap_lib_version(void)
1051 {
1052 return (PCAP_VERSION_STRING " (DPDK-only)");
1053 }
1054 #endif