Increase maximum latency supported by Early Loss Detection
[samplevnf.git] / VNFs / DPPD-PROX / prox_args.c
1 /*
2 // Copyright (c) 2010-2020 Intel Corporation
3 //
4 // Licensed under the Apache License, Version 2.0 (the "License");
5 // you may not use this file except in compliance with the License.
6 // You may obtain a copy of the License at
7 //
8 //     http://www.apache.org/licenses/LICENSE-2.0
9 //
10 // Unless required by applicable law or agreed to in writing, software
11 // distributed under the License is distributed on an "AS IS" BASIS,
12 // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 // See the License for the specific language governing permissions and
14 // limitations under the License.
15 */
16
17 #include <unistd.h>
18 #include <string.h>
19
20 #include <rte_sched.h>
21 #include <rte_string_fns.h>
22 #include <rte_version.h>
23
24 #include "prox_malloc.h"
25 #include "version.h"
26 #include "defines.h"
27 #include "prox_args.h"
28 #include "prox_assert.h"
29 #include "prox_cfg.h"
30 #include "cfgfile.h"
31 #include "quit.h"
32 #include "log.h"
33 #include "parse_utils.h"
34 #include "prox_port_cfg.h"
35 #include "defaults.h"
36 #include "prox_lua.h"
37 #include "cqm.h"
38 #include "defines.h"
39 #include "prox_ipv6.h"
40 #include "prox_compat.h"
41 #include "ip_subnet.h"
42
43 #define MAX_RTE_ARGV 64
44 #define MAX_ARG_LEN  256
45
46 struct cfg_depr {
47         const char *opt;
48         const char *info;
49 };
50
51 /* Helper macro */
52 #define STR_EQ(s1, s2)  (!strcmp((s1), (s2)))
53
54 /* configuration files support */
55 static int get_rte_cfg(unsigned sindex, char *str, void *data);
56 static int get_global_cfg(unsigned sindex, char *str, void *data);
57 static int get_port_cfg(unsigned sindex, char *str, void *data);
58 static int get_defaults_cfg(unsigned sindex, char *str, void *data);
59 static int get_cache_set_cfg(unsigned sindex, char *str, void *data);
60 static int get_var_cfg(unsigned sindex, char *str, void *data);
61 static int get_lua_cfg(unsigned sindex, char *str, void *data);
62 static int get_core_cfg(unsigned sindex, char *str, void *data);
63
64 static const char *cfg_file = DEFAULT_CONFIG_FILE;
65 static struct rte_cfg    rte_cfg;
66 struct prox_cache_set_cfg  prox_cache_set_cfg[PROX_MAX_CACHE_SET];
67
68 static char format_err_str[1024];
69 static const char *err_str = "Unknown error";
70
71 static struct cfg_section eal_default_cfg = {
72         .name   = "eal options",
73         .parser = get_rte_cfg,
74         .data   = &rte_cfg,
75         .indexp[0]  = 0,
76         .nbindex = 1,
77         .error  = 0
78 };
79
80 static struct cfg_section port_cfg = {
81         .name   = "port #",
82         .parser = get_port_cfg,
83         .data   = &prox_port_cfg,
84         .indexp[0]  = 0,
85         .nbindex = 1,
86         .error  = 0
87 };
88
89 static struct cfg_section var_cfg = {
90         .name   = "variables",
91         .parser = get_var_cfg,
92         .data   = 0,
93         .indexp[0]  = 0,
94         .nbindex = 1,
95         .error  = 0
96 };
97
98 static struct cfg_section cache_set_cfg = {
99         .name   = "cache set #",
100         .parser = get_cache_set_cfg,
101         .data   = &prox_cache_set_cfg,
102         .indexp[0]  = 0,
103         .nbindex = 1,
104         .error  = 0
105 };
106
107 static struct cfg_section defaults_cfg = {
108         .name   = "defaults",
109         .parser = get_defaults_cfg,
110         .data   = 0,
111         .indexp[0]  = 0,
112         .nbindex = 1,
113         .error  = 0
114 };
115
116 static struct cfg_section settings_cfg = {
117         .name   = "global",
118         .parser = get_global_cfg,
119         .data   = &prox_cfg,
120         .indexp[0]  = 0,
121         .nbindex = 1,
122         .error  = 0
123 };
124
125 static struct cfg_section lua_cfg = {
126         .name = "lua",
127         .parser = get_lua_cfg,
128         .raw_lines = 1,
129         .indexp[0] = 0,
130         .nbindex = 1,
131         .error = 0,
132 };
133
134 static struct cfg_section core_cfg = {
135         .name   = "core #",
136         .parser = get_core_cfg,
137         .data   = lcore_cfg_init,
138         .indexp[0]  = 0,
139         .nbindex = 1,
140         .error  = 0
141 };
142
143 struct deferred_port {
144         struct task_args *targ;
145         char name[256];
146         uint8_t is_rx_port;
147 };
148
149 static struct deferred_port deferred_port[PROX_MAX_PORTS];
150 static int n_deferred_ports = 0;
151
152 static void set_errf(const char *format, ...)
153 {
154         va_list ap;
155         va_start(ap, format);
156         vsnprintf(format_err_str, sizeof(format_err_str), format, ap);
157         va_end(ap);
158         err_str = format_err_str;
159 }
160
161 /* [eal options] parser */
162 static int get_rte_cfg(__attribute__((unused))unsigned sindex, char *str, void *data)
163 {
164         struct rte_cfg *pconfig = (struct rte_cfg *)data;
165
166         if (str == NULL || pconfig == NULL) {
167                 return -1;
168         }
169
170         char *pkey = get_cfg_key(str);
171         if (pkey == NULL) {
172                 set_errf("Missing key after option");
173                 return -1;
174         }
175
176         if (STR_EQ(str, "-m")) {
177                 return parse_int(&pconfig->memory, pkey);
178         }
179         if (STR_EQ(str, "-n")) {
180                 if (parse_int(&pconfig->force_nchannel, pkey)) {
181                         return -1;
182                 }
183                 if (pconfig->force_nchannel == 0) {
184                         set_errf("Invalid number of memory channels");
185                         return -1;
186                 }
187                 return 0;
188         }
189         if (STR_EQ(str, "-r")) {
190                 if (parse_int(&pconfig->force_nrank, pkey)) {
191                         return -1;
192                 }
193                 if (pconfig->force_nrank == 0 || pconfig->force_nrank > 16) {
194                         set_errf("Invalid number of memory ranks");
195                         return -1;
196                 }
197                 return 0;
198         }
199         /* debug options */
200         if (STR_EQ(str, "no-pci")) {
201                 return parse_bool(&pconfig->no_pci, pkey);
202         }
203         if (STR_EQ(str, "no-hpet")) {
204                 return parse_bool(&pconfig->no_hpet, pkey);
205         }
206         if (STR_EQ(str, "no-shconf")) {
207                 return parse_bool(&pconfig->no_shconf, pkey);
208         }
209         if (STR_EQ(str, "no-huge")) {
210                 return parse_bool(&pconfig->no_hugetlbfs, pkey);
211         }
212         if (STR_EQ(str, "no-output")) {
213                 return parse_bool(&pconfig->no_output, pkey);
214         }
215
216         if (STR_EQ(str, "huge-dir")) {
217                 if (pconfig->hugedir) {
218                         free(pconfig->hugedir);
219                 }
220                 pconfig->hugedir = strdup(pkey);
221                 return 0;
222         }
223
224         if (STR_EQ(str, "eal")) {
225                 char eal[MAX_STR_LEN_PROC];
226                 if (pconfig->eal) {
227                         free(pconfig->eal);
228                         pconfig->eal = NULL;
229                 }
230                 if (parse_str(eal, pkey, sizeof(eal)))
231                         return -1;
232                 pkey = eal;
233                 strip_spaces(&pkey, 1);
234                 if (*pkey)
235                         pconfig->eal = strdup(pkey);
236                 return 0;
237         }
238
239         set_errf("Option '%s' is not known", str);
240         return -1;
241 }
242
243 struct cfg_depr global_cfg_depr[] = {
244         {"virtualization", "This is now set automatically if needed"},
245         {"qinq_tag", "This option is deprecated"},
246         {"wait on quit", "This is now set automatically if needed"},
247         {"version", ""}
248 };
249
250 const char *get_cfg_dir(void)
251 {
252         static char dir[PATH_MAX];
253         size_t end = strlen(cfg_file) - 1;
254         while (end > 0 && cfg_file[end] != '/')
255                 end--;
256
257         strncpy(dir, cfg_file, end);
258         return dir;
259 }
260
261 static int get_lua_cfg(__attribute__((unused)) unsigned sindex, __attribute__((unused)) char *str, __attribute__((unused)) void *data)
262 {
263         int status;
264         char cwd[1024];
265         if (NULL == getcwd(cwd, sizeof(cwd))) {
266                 set_errf("Failed to get current directory while loading Lua file\n");
267                 return -1;
268         }
269         status = chdir(get_cfg_dir());
270         if (status) {
271                 set_errf("Failed to change directory to '%s' while loading Lua file\n", get_cfg_dir());
272                 return -1;
273         }
274
275         struct lua_State *l = prox_lua();
276
277         char str_cpy[1024];
278         prox_strncpy(str_cpy, str, sizeof(str_cpy));
279         uint32_t len = strlen(str_cpy);
280         str_cpy[len++] = '\n';
281         str_cpy[len++] = 0;
282
283         status = luaL_loadstring(l, str_cpy);
284         if (status) {
285                 set_errf("Lua error: '%s'\n", lua_tostring(l, -1));
286                 status = chdir(cwd);
287                 return -1;
288         }
289
290         status = lua_pcall(l, 0, LUA_MULTRET, 0);
291         if (status) {
292                 set_errf("Lua error: '%s'\n", lua_tostring(l, -1));
293                 status = chdir(cwd);
294                 return -1;
295         }
296
297         status = chdir(cwd);
298         if (status) {
299                 set_errf("Failed to restore current directory to '%s' while loading Lua file\n", cwd);
300                 return -1;
301         }
302
303         return 0;
304 }
305
306 /* [global] parser */
307 static int get_global_cfg(__attribute__((unused))unsigned sindex, char *str, void *data)
308 {
309         struct prox_cfg *pset = (struct prox_cfg *)data;
310
311         if (str == NULL || pset == NULL) {
312                 return -1;
313         }
314
315         char *pkey = get_cfg_key(str);
316         if (pkey == NULL) {
317                 set_errf("Missing key after option");
318                 return -1;
319         }
320
321         for (uint32_t i = 0; i < RTE_DIM(global_cfg_depr); ++i) {
322                 if (STR_EQ(str, global_cfg_depr[i].opt)) {
323                         set_errf("Option '%s' is deprecated%s%s",
324                                  global_cfg_depr[i].opt, strlen(global_cfg_depr[i].info)? ": ": "", global_cfg_depr[i].info);
325                         return -1;
326                 }
327         }
328
329         if (STR_EQ(str, "name")) {
330                 return parse_str(pset->name, pkey, sizeof(pset->name));
331         }
332
333         if (STR_EQ(str, "start time")) {
334                 return parse_int(&pset->start_time, pkey);
335         }
336
337         if (STR_EQ(str, "duration time")) {
338                 return parse_int(&pset->duration_time, pkey);
339         }
340
341         if (STR_EQ(str, "shuffle")) {
342                 return parse_flag(&pset->flags, DSF_SHUFFLE, pkey);
343         }
344         if (STR_EQ(str, "disable cmt")) {
345                 return parse_flag(&pset->flags, DSF_DISABLE_CMT, pkey);
346         }
347         if (STR_EQ(str, "mp rings")) {
348                 return parse_flag(&pset->flags, DSF_MP_RINGS, pkey);
349         }
350         if (STR_EQ(str, "enable bypass")) {
351                 return parse_flag(&pset->flags, DSF_ENABLE_BYPASS, pkey);
352         }
353         if (STR_EQ(str, "poll timeout")) {
354                 return parse_int(&pset->poll_timeout, pkey);
355         }
356         if (STR_EQ(str, "heartbeat timeout")) {
357                 return parse_int(&pset->heartbeat_timeout, pkey);
358         }
359
360         if (STR_EQ(str, "cpe table map")) {
361                 /* The config defined ports through 0, 1, 2 ... which
362                    need to be associated with ports. This is done
363                    through defining it using "cpe table map=" */
364                 return parse_port_name_list((uint32_t*)pset->cpe_table_ports, NULL, PROX_MAX_PORTS, pkey);
365         }
366
367         if (STR_EQ(str, "pre cmd")) {
368                 return system(pkey);
369         }
370
371         if (STR_EQ(str, "unique mempool per socket")) {
372                 return parse_flag(&pset->flags, UNIQUE_MEMPOOL_PER_SOCKET, pkey);
373         }
374
375         if (STR_EQ(str, "log buffer size")) {
376                 if (parse_kmg(&pset->logbuf_size, pkey)) {
377                         return -1;
378                 }
379                 plog_info("Logging to buffer with size = %d\n", pset->logbuf_size);
380                 return 0;
381         }
382
383         set_errf("Option '%s' is not known", str);
384         return -1;
385 }
386
387 /* [variable] parser */
388 static int get_var_cfg(__attribute__((unused)) unsigned sindex, char *str, __attribute__((unused)) void *data)
389 {
390         return add_var(str, get_cfg_key(str), 0);
391 }
392
393 /* [defaults] parser */
394 static int get_defaults_cfg(__attribute__((unused)) unsigned sindex, char *str, __attribute__((unused)) void *data)
395 {
396         uint32_t val;
397         char *pkey;
398
399         pkey = get_cfg_key(str);
400         if (pkey == NULL) {
401                 set_errf("Missing key after option");
402                 return -1;
403         }
404
405         if (STR_EQ(str, "mempool size")) {
406
407                 if (parse_kmg(&val, pkey)) {
408                         return -1;
409                 }
410
411                 for (uint8_t lcore_id = 0; lcore_id < RTE_MAX_LCORE; ++lcore_id) {
412                         struct lcore_cfg *cur_lcore_cfg_init = &lcore_cfg_init[lcore_id];
413                         cur_lcore_cfg_init->id = lcore_id;
414                         for (uint8_t task_id = 0; task_id < MAX_TASKS_PER_CORE; ++task_id) {
415                                 struct task_args *targ = &cur_lcore_cfg_init->targs[task_id];
416                                 targ->nb_mbuf = val;
417                                 targ->id = task_id;
418                         }
419                 }
420                 return 0;
421         }
422
423         if (STR_EQ(str, "qinq tag")) {
424                 for (uint8_t lcore_id = 0; lcore_id < RTE_MAX_LCORE; ++lcore_id) {
425                         struct lcore_cfg *cur_lcore_cfg_init = &lcore_cfg_init[lcore_id];
426                         cur_lcore_cfg_init->id = lcore_id;
427                         for (uint8_t task_id = 0; task_id < MAX_TASKS_PER_CORE; ++task_id) {
428                                 struct task_args *targ = &cur_lcore_cfg_init->targs[task_id];
429                                 parse_int(&targ->qinq_tag, pkey);
430                         }
431                 }
432                 return 0;
433         }
434         if (STR_EQ(str, "memcache size")) {
435
436                 if (parse_kmg(&val, pkey)) {
437                         return -1;
438                 }
439
440                 for (uint8_t lcore_id = 0; lcore_id < RTE_MAX_LCORE; ++lcore_id) {
441                         struct lcore_cfg *cur_lcore_cfg_init = &lcore_cfg_init[lcore_id];
442                         cur_lcore_cfg_init->id = lcore_id;
443                         for (uint8_t task_id = 0; task_id < MAX_TASKS_PER_CORE; ++task_id) {
444                                 struct task_args *targ = &cur_lcore_cfg_init->targs[task_id];
445                                 targ->nb_cache_mbuf = val;
446                         }
447                 }
448                 return 0;
449         }
450
451         set_errf("Option '%s' is not known", str);
452         return -1;
453 }
454
455 /* [cache set] parser */
456 static int get_cache_set_cfg(unsigned sindex, char *str, void *data)
457 {
458         struct prox_cache_set_cfg *cfg = (struct prox_cache_set_cfg *)data;
459
460         uint8_t cur_if = sindex & ~CFG_INDEXED;
461
462         if (cur_if >= PROX_MAX_CACHE_SET) {
463                 set_errf("Cache set ID is too high (max allowed %d)", PROX_MAX_CACHE_SET - 1 );
464                 return -1;
465         }
466
467         cfg = &prox_cache_set_cfg[cur_if];
468
469         if (str == NULL || data == NULL) {
470                 return -1;
471         }
472
473         char *pkey = get_cfg_key(str);
474
475         if (pkey == NULL) {
476                 set_errf("Missing key after option");
477                 return -1;
478         }
479
480         if (STR_EQ(str, "mask")) {
481                 uint32_t val;
482                 int err = parse_int(&val, pkey);
483                 if (err) {
484                         return -1;
485                 }
486                 cfg->mask = val;
487                 cfg->socket_id = -1;
488                 plog_info("\tCache set %d has mask %x\n", cur_if, cfg->mask);
489                 return 0;
490         }
491         return 0;
492 }
493
494 /* [port] parser */
495 static int get_port_cfg(unsigned sindex, char *str, void *data)
496 {
497         struct prox_port_cfg *cfg = (struct prox_port_cfg *)data;
498
499         uint8_t cur_if = sindex & ~CFG_INDEXED;
500
501         if (cur_if >= PROX_MAX_PORTS) {
502                 set_errf("Port ID is too high (max allowed %d)", PROX_MAX_PORTS - 1 );
503                 return -1;
504         }
505
506         cfg = &prox_port_cfg[cur_if];
507
508         if (str == NULL || data == NULL) {
509                 return -1;
510         }
511
512         char *pkey = get_cfg_key(str);
513
514         if (pkey == NULL) {
515                 set_errf("Missing key after option");
516                 return -1;
517         }
518
519         if (STR_EQ(str, "mac")) {
520                 if (STR_EQ(pkey, "hardware")) {
521                         cfg->type = PROX_PORT_MAC_HW;
522                 }
523                 else if (STR_EQ(pkey, "random")) {
524                         cfg->type = PROX_PORT_MAC_RAND;
525                 }
526                 else {
527                         cfg->type = PROX_PORT_MAC_SET;
528                         if (parse_mac(&cfg->eth_addr, pkey)) {
529                                 return -1;
530                         }
531                 }
532         }
533         else if (STR_EQ(str, "name")) {
534                 uint32_t val;
535                 prox_strncpy(cfg->names[0], pkey, MAX_NAME_SIZE);
536                 PROX_ASSERT(cur_if < PROX_MAX_PORTS);
537                 return add_port_name(cur_if, pkey);
538         }
539         else if (STR_EQ(str, "rx desc")) {
540                 return parse_int(&cfg->n_rxd, pkey);
541         }
542         else if (STR_EQ(str, "tx desc")) {
543                 return parse_int(&cfg->n_txd, pkey);
544         }
545         else if (STR_EQ(str, "all_rx_queues")) {
546                 uint32_t val;
547                 if (parse_bool(&val, pkey)) {
548                         return -1;
549                 }
550                 cfg->all_rx_queues = val;
551         }
552         else if (STR_EQ(str, "promiscuous")) {
553                 uint32_t val;
554                 if (parse_bool(&val, pkey)) {
555                         return -1;
556                 }
557                 cfg->promiscuous = val;
558         }
559         else if (STR_EQ(str, "multicast")) {
560                 uint32_t val;
561                 if (cfg->nb_mc_addr >= NB_MCAST_ADDR) {
562                         plog_err("too many multicast addresses\n");
563                         return -1;
564                 }
565                 if (parse_mac(&cfg->mc_addr[cfg->nb_mc_addr], pkey)) {
566                         return -1;
567                 }
568                 cfg->nb_mc_addr++ ;
569         }
570         else if (STR_EQ(str, "lsc")) {
571                 cfg->lsc_set_explicitely = 1;
572                 uint32_t val;
573                 if (parse_bool(&val, pkey)) {
574                         return -1;
575                 }
576                 cfg->lsc_val = val;
577         }
578         else if (STR_EQ(str, "local ipv4")) {
579                 if (parse_ip_set(cfg->ip_addr, pkey, PROX_MAX_VLAN_TAGS) != 0) {
580                         cfg->ip_addr[0].ip = 24;
581                         return parse_ip(&cfg->ip_addr[0].ip, pkey);
582                 }
583                 return 0;
584         }
585         else if (STR_EQ(str, "virtual")) {
586                 uint32_t val;
587                 if (parse_bool(&val, pkey)) {
588                         return -1;
589                 }
590                 cfg->virtual = val;
591         }
592         else if (STR_EQ(str, "vdev")) {
593                 prox_strncpy(cfg->vdev, pkey, MAX_NAME_SIZE);
594         }
595 #if RTE_VERSION >= RTE_VERSION_NUM(18,8,0,1)
596         else if (STR_EQ(str, "disable tx offload")) {
597                 uint32_t val;
598                 if (parse_int(&val, pkey)) {
599                         return -1;
600                 }
601                 if (val)
602                         cfg->disabled_tx_offload = val;
603         }
604 #endif
605         else if (STR_EQ(str, "strip crc")) {
606                 uint32_t val;
607                 if (parse_bool(&val, pkey)) {
608                         return -1;
609                 }
610 #if defined(DEV_RX_OFFLOAD_CRC_STRIP)
611                 if (val)
612                         cfg->requested_rx_offload |= DEV_RX_OFFLOAD_CRC_STRIP;
613                 else
614                         cfg->requested_rx_offload &= ~DEV_RX_OFFLOAD_CRC_STRIP;
615 #else
616 #if defined (DEV_RX_OFFLOAD_KEEP_CRC)
617                 if (val)
618                         cfg->requested_rx_offload &= ~DEV_RX_OFFLOAD_KEEP_CRC;
619                 else
620 #endif
621                         cfg->requested_rx_offload |= DEV_RX_OFFLOAD_KEEP_CRC;
622 #endif
623
624         }
625         else if (STR_EQ(str, "vlan tag")) {
626                 return parse_int_set(cfg->vlan_tags, pkey, sizeof(cfg->vlan_tags) / sizeof(cfg->vlan_tags[0]));
627         }
628         else if (STR_EQ(str, "vlan")) {
629 #if RTE_VERSION >= RTE_VERSION_NUM(18,8,0,1)
630                 uint32_t val;
631                 if (parse_bool(&val, pkey)) {
632                         return -1;
633                 }
634                 if (val) {
635                         cfg->requested_rx_offload |= DEV_RX_OFFLOAD_VLAN_STRIP;
636                         cfg->requested_tx_offload |= DEV_TX_OFFLOAD_VLAN_INSERT;
637                 } else {
638                         cfg->requested_rx_offload &= ~DEV_RX_OFFLOAD_VLAN_STRIP;
639                         cfg->requested_tx_offload &= ~DEV_TX_OFFLOAD_VLAN_INSERT;
640                 }
641 #else
642                 plog_warn("vlan option not supported : update DPDK at least to 18.08 to support this option\n");
643 #endif
644         }
645         else if (STR_EQ(str, "mtu size")) {
646                 uint32_t val;
647                 if (parse_int(&val, pkey)) {
648                         return -1;
649                 }
650                 if (val) {
651                         cfg->mtu = val;
652                         // A frame of 1526 bytes (1500 bytes mtu, 14 bytes hdr, 4 bytes crc and 8 bytes vlan)
653                         // should not be considered as a jumbo frame. However rte_ethdev.c considers that
654                         // the max_rx_pkt_len for a non jumbo frame is 1518
655                         cfg->port_conf.rxmode.max_rx_pkt_len = cfg->mtu + PROX_RTE_ETHER_HDR_LEN + PROX_RTE_ETHER_CRC_LEN;
656                         if (cfg->port_conf.rxmode.max_rx_pkt_len > PROX_RTE_ETHER_MAX_LEN) {
657                                 cfg->requested_rx_offload |= DEV_RX_OFFLOAD_JUMBO_FRAME;
658                         }
659                 }
660         }
661
662         else if (STR_EQ(str, "rss")) {
663                 uint32_t val;
664                 if (parse_bool(&val, pkey)) {
665                         return -1;
666                 }
667                 if (val) {
668                         cfg->port_conf.rxmode.mq_mode = ETH_MQ_RX_RSS;
669                         cfg->port_conf.rx_adv_conf.rss_conf.rss_hf = ETH_RSS_IPV4;
670                 }
671         }
672         else if (STR_EQ(str, "rx_ring")) {
673                 parse_str(cfg->rx_ring, pkey, sizeof(cfg->rx_ring));
674         }
675         else if (STR_EQ(str, "tx_ring")) {
676                 parse_str(cfg->tx_ring, pkey, sizeof(cfg->tx_ring));
677         }
678
679         return 0;
680 }
681
682 static enum police_action str_to_color(const char *str)
683 {
684         if (STR_EQ(str, "green"))
685                 return ACT_GREEN;
686         if (STR_EQ(str, "yellow"))
687                 return ACT_YELLOW;
688         if (STR_EQ(str, "red"))
689                 return ACT_RED;
690         if (STR_EQ(str, "drop"))
691                 return ACT_DROP;
692         return ACT_INVALID;
693 }
694
695 struct cfg_depr task_cfg_depr[] = {
696         {"sig", ""},
697 };
698
699 struct cfg_depr core_cfg_depr[] = {
700         {"do sig", ""},
701         {"lat", ""},
702         {"network side", ""},
703 };
704
705 /* [core] parser */
706 static int get_core_cfg(unsigned sindex, char *str, void *data)
707 {
708         char *pkey;
709         struct lcore_cfg *lconf = (struct lcore_cfg *)data;
710
711         if (str == NULL || lconf == NULL || !(sindex & CFG_INDEXED)) {
712                 return -1;
713         }
714
715         pkey = get_cfg_key(str);
716         if (pkey == NULL) {
717                 set_errf("Missing key after option");
718                 return -1;
719         }
720
721         uint32_t ncore = sindex & ~CFG_INDEXED;
722         if (ncore >= RTE_MAX_LCORE) {
723                 set_errf("Core index too high (max allowed %d)", RTE_MAX_LCORE - 1);
724                 return -1;
725         }
726
727         lconf = &lconf[ncore];
728
729         for (uint32_t i = 0; i < RTE_DIM(core_cfg_depr); ++i) {
730                 if (STR_EQ(str, core_cfg_depr[i].opt)) {
731                         set_errf("Option '%s' is deprecated%s%s",
732                                  core_cfg_depr[i].opt, strlen(core_cfg_depr[i].info)? ": ": "", core_cfg_depr[i].info);
733                         return -1;
734                 }
735         }
736
737         char buff[128];
738         lcore_to_socket_core_ht(ncore, buff, sizeof(buff));
739         set_self_var(buff);
740         if (STR_EQ(str, "task")) {
741
742                 uint32_t val;
743                 if (parse_int(&val, pkey)) {
744                         return -1;
745                 }
746                 if (val >= MAX_TASKS_PER_CORE) {
747                         set_errf("Too many tasks for core (max allowed %d)", MAX_TASKS_PER_CORE - 1);
748                         return -1;
749                 }
750                 if (val != lconf->n_tasks_all) {
751                         set_errf("Task ID skipped or defined twice");
752                         return -1;
753                 }
754
755                 lconf->active_task = val;
756
757                 lconf->targs[lconf->active_task].task = lconf->active_task;
758
759                 if (lconf->n_tasks_all < lconf->active_task + 1) {
760                         lconf->n_tasks_all = lconf->active_task + 1;
761                 }
762                 return 0;
763         }
764
765         struct task_args *targ = &lconf->targs[lconf->active_task];
766         if (STR_EQ(str, "tx ports from routing table")) {
767                 uint32_t vals[PROX_MAX_PORTS];
768                 uint32_t n_if;
769                 if (!(targ->task_init->flag_features & TASK_FEATURE_ROUTING)) {
770                         set_errf("tx port form route not supported mode %s",  targ->task_init->mode_str);
771                         return -1;
772                 }
773
774                 if (parse_port_name_list(vals, &n_if, PROX_MAX_PORTS, pkey)) {
775                         return -1;
776                 }
777
778                 for (uint8_t i = 0; i < n_if; ++i) {
779                         targ->tx_port_queue[i].port = vals[i];
780                         targ->nb_txports++;
781                 }
782                 targ->runtime_flags |= TASK_ROUTING;
783                 return 0;
784         }
785         if (STR_EQ(str, "tx ports from cpe table")) {
786                 uint32_t vals[PROX_MAX_PORTS];
787                 int n_remap = -1;
788                 uint32_t ret;
789                 uint32_t val;
790                 char* mapping_str = strstr(pkey, " remap=");
791
792                 if (mapping_str != NULL) {
793                         *mapping_str = 0;
794                         mapping_str += strlen(" remap=");
795                         n_remap = parse_remap(targ->mapping, mapping_str);
796                 }
797
798                 if (parse_port_name_list(vals, &ret, PROX_MAX_PORTS, pkey)) {
799                         return -1;
800                 }
801
802                 if (n_remap != -1 && ret != (uint32_t)n_remap) {
803                         set_errf("Expected %d remap elements but had %d", n_remap, ret);
804                         return -1;
805                 }
806
807                 for (uint8_t i = 0; i < ret; ++i) {
808                         targ->tx_port_queue[i].port = vals[i];
809
810                         /* default mapping this case is port0 -> port0 */
811                         if (n_remap == -1) {
812                                 targ->mapping[vals[i]] = i;
813                         }
814                 }
815
816                 targ->nb_txports = ret;
817
818                 return 0;
819         }
820         if (STR_EQ(str, "tx cores from routing table")) {
821                 if (!(targ->task_init->flag_features & TASK_FEATURE_ROUTING)) {
822                         set_errf("tx port form route not supported mode %s",  targ->task_init->mode_str);
823                         return -1;
824                 }
825
826                 struct core_task_set *cts = &targ->core_task_set[0];
827
828                 if (parse_task_set(cts, pkey))
829                         return -1;
830
831                 if (cts->n_elems > MAX_WT_PER_LB) {
832                         set_errf("Maximum worker threads allowed is %u but have %u", MAX_WT_PER_LB, cts->n_elems);
833                         return -1;
834                 }
835
836                 targ->nb_worker_threads = cts->n_elems;
837                 targ->nb_txrings = cts->n_elems;
838
839                 if (targ->nb_txrings > MAX_RINGS_PER_TASK) {
840                         set_errf("Maximum allowed TX rings is %u but have %u", MAX_RINGS_PER_TASK, targ->nb_txrings);
841                         return -1;
842                 }
843
844                 targ->runtime_flags |= TASK_ROUTING;
845                 return 0;
846         }
847         if (STR_EQ(str, "tx cores from cpe table")) {
848                 struct core_task_set *core_task_set =  &targ->core_task_set[0];
849                 int ret, ret2;
850                 char *mapping_str;
851
852                 mapping_str = strstr(pkey, " remap=");
853                 if (mapping_str == NULL) {
854                         set_errf("There is no default mapping for tx cores from cpe table. Please specify it through remap=");
855                         return -1;
856                 }
857                 *mapping_str = 0;
858                 mapping_str += strlen(" remap=");
859                 ret = parse_remap(targ->mapping, mapping_str);
860                 if (ret <= 0) {
861                         return -1;
862                 }
863
864                 struct core_task_set *cts = &targ->core_task_set[0];
865
866                 if (parse_task_set(cts, pkey))
867                         return -1;
868                 if (cts->n_elems > MAX_RINGS_PER_TASK) {
869                         set_errf("Maximum cores to route to is %u\n", MAX_RINGS_PER_TASK);
870                         return -1;
871                 }
872
873                 targ->nb_txrings = cts->n_elems;
874
875                 if (ret != targ->nb_txrings) {
876                         set_errf("Expecting same number of remaps as cores\n", str);
877                         return -1;
878                 }
879                 return 0;
880         }
881
882         if (STR_EQ(str, "delay ms")) {
883                 if (targ->delay_us) {
884                         set_errf("delay ms and delay us are mutually exclusive\n", str);
885                         return -1;
886                 }
887                 uint32_t delay_ms;
888                 int rc = parse_int(&delay_ms, pkey);
889                 targ->delay_us = delay_ms * 1000;
890                 return rc;
891         }
892         if (STR_EQ(str, "delay us")) {
893                 if (targ->delay_us) {
894                         set_errf("delay ms and delay us are mutually exclusive\n", str);
895                         return -1;
896                 }
897                 return parse_int(&targ->delay_us, pkey);
898         }
899         if (STR_EQ(str, "random delay us")) {
900                 return parse_int(&targ->random_delay_us, pkey);
901         }
902         if (STR_EQ(str, "cpe table timeout ms")) {
903                 return parse_int(&targ->cpe_table_timeout_ms, pkey);
904         }
905         if (STR_EQ(str, "ctrl path polling frequency")) {
906                 int rc = parse_int(&targ->ctrl_freq, pkey);
907                 if (rc == 0) {
908                         if (targ->ctrl_freq == 0) {
909                                 set_errf("ctrl frequency must be non null.");
910                                 return -1;
911                         }
912                 }
913                 return rc;
914         }
915
916         if (STR_EQ(str, "handle arp")) {
917                 return parse_flag(&targ->runtime_flags, TASK_CTRL_HANDLE_ARP, pkey);
918         }
919         if (STR_EQ(str, "fast path handle arp")) {
920                 return parse_flag(&targ->runtime_flags, TASK_FP_HANDLE_ARP, pkey);
921         }
922
923         if (STR_EQ(str, "do not forward geneve")) {
924                 return parse_flag(&targ->runtime_flags, TASK_DO_NOT_FWD_GENEVE, pkey);
925         }
926         /* Using tx port name, only a _single_ port can be assigned to a task. */
927         if (STR_EQ(str, "tx port")) {
928                 if (targ->nb_txports > 0) {
929                         set_errf("Only one tx port can be defined per task. Use a LB task or routing instead.");
930                         return -1;
931                 }
932
933                 uint32_t n_if = 0;
934                 uint32_t ports[PROX_MAX_PORTS];
935
936                 if(parse_port_name_list(ports, &n_if, PROX_MAX_PORTS, pkey)) {
937                         // Port name not found, but could be a virtual device of a secondary process
938                         // As DPDK not started yet, we can only check the config file to see whether we are a secondary process
939                         if (rte_cfg.eal &&
940                                         (strstr(rte_cfg.eal, "secondary") || strstr(rte_cfg.eal, "auto")) &&
941                                         (n_deferred_ports < PROX_MAX_PORTS)) {
942                                 prox_strncpy(deferred_port[n_deferred_ports].name, pkey, sizeof(deferred_port[n_deferred_ports].name));
943                                 deferred_port[n_deferred_ports].is_rx_port = 0;
944                                 deferred_port[n_deferred_ports++].targ = targ;
945                                 return 0;
946                         } else
947                                 return -1;
948                 }
949
950                 PROX_ASSERT(n_if-1 < PROX_MAX_PORTS);
951
952                 for (uint8_t i = 0; i < n_if; ++i) {
953                         targ->tx_port_queue[i].port = ports[i];
954                         targ->nb_txports++;
955                 }
956
957                 if (n_if > 1) {
958                         targ->nb_worker_threads = targ->nb_txports;
959                 }
960
961                 return 0;
962         }
963         if (STR_EQ(str, "rx ring")) {
964                 uint32_t val;
965                 int err = parse_bool(&val, pkey);
966                 if (!err && val && targ->rx_port_queue[0].port != OUT_DISCARD) {
967                         set_errf("Can't read both from internal ring and external port from the same task. Use multiple tasks instead.");
968                         return -1;
969                 }
970
971                 return parse_flag(&targ->flags, TASK_ARG_RX_RING, pkey);
972         }
973         if (STR_EQ(str, "private")) {
974                 return parse_bool(&targ->use_src, pkey);
975         }
976         if (STR_EQ(str, "use src ip")) {
977                 return parse_bool(&targ->use_src, pkey);
978         }
979         if (STR_EQ(str, "nat table")) {
980                 return parse_str(targ->nat_table, pkey, sizeof(targ->nat_table));
981         }
982         if (STR_EQ(str, "rules")) {
983                 return parse_str(targ->rules, pkey, sizeof(targ->rules));
984         }
985         if (STR_EQ(str, "route table")) {
986                 return parse_str(targ->route_table, pkey, sizeof(targ->route_table));
987         }
988         if (STR_EQ(str, "dscp")) {
989                 return parse_str(targ->dscp, pkey, sizeof(targ->dscp));
990         }
991         if (STR_EQ(str, "tun_bindings")) {
992                 return parse_str(targ->tun_bindings, pkey, sizeof(targ->tun_bindings));
993         }
994         if (STR_EQ(str, "cpe table")) {
995                 return parse_str(targ->cpe_table_name, pkey, sizeof(targ->cpe_table_name));
996         }
997         if (STR_EQ(str, "user table")) {
998                 return parse_str(targ->user_table, pkey, sizeof(targ->user_table));
999         }
1000         if (STR_EQ(str, "streams")) {
1001                 return parse_str(targ->streams, pkey, sizeof(targ->streams));
1002         }
1003         if (STR_EQ(str, "Unsollicited NA")) {
1004                 return parse_flag(&targ->flags, TASK_ARG_SEND_NA_AT_STARTUP, pkey);
1005         }
1006         if (STR_EQ(str, "local lpm")) {
1007                 return parse_flag(&targ->flags, TASK_ARG_LOCAL_LPM, pkey);
1008         }
1009         if (STR_EQ(str, "drop")) {
1010                 return parse_flag(&targ->flags, TASK_ARG_DROP, pkey);
1011         }
1012         if (STR_EQ(str, "loop")) {
1013                 parse_flag(&targ->loop, 1, pkey);
1014                 return parse_flag(&targ->loop, 1, pkey);
1015         }
1016         if (STR_EQ(str, "qinq")) {
1017                 return parse_flag(&targ->flags, TASK_ARG_QINQ_ACL, pkey);
1018         }
1019         if (STR_EQ(str, "bps")) {
1020                 return parse_u64(&targ->rate_bps, pkey);
1021         }
1022         if (STR_EQ(str, "random")) {
1023                 return parse_str(targ->rand_str[targ->n_rand_str++], pkey, sizeof(targ->rand_str[0]));
1024         }
1025         if (STR_EQ(str, "range")) {
1026                 int rc = parse_range(&targ->range[targ->n_ranges].min, &targ->range[targ->n_ranges].max, pkey);
1027                 targ->n_ranges++;
1028                 return rc;
1029         }
1030         if (STR_EQ(str, "range_offset")) {
1031                 if (targ->n_ranges == 0) {
1032                         set_errf("No range defined previously (use range=...)");
1033                         return -1;
1034                 }
1035                 return parse_int(&targ->range[targ->n_ranges - 1].offset, pkey);
1036         }
1037         if (STR_EQ(str, "rand_offset")) {
1038                 if (targ->n_rand_str == 0) {
1039                         set_errf("No random defined previously (use random=...)");
1040                         return -1;
1041                 }
1042
1043                 return parse_int(&targ->rand_offset[targ->n_rand_str - 1], pkey);
1044         }
1045         if (STR_EQ(str, "keep src mac")) {
1046                 return parse_flag(&targ->flags, DSF_KEEP_SRC_MAC, pkey);
1047         }
1048         if (STR_EQ(str, "pcap file")) {
1049                 return parse_str(targ->pcap_file, pkey, sizeof(targ->pcap_file));
1050         }
1051         if (STR_EQ(str, "imix")) {
1052                 char pkey2[MAX_CFG_STRING_LEN], *ptr;
1053                 if (parse_str(pkey2, pkey, sizeof(pkey2)) != 0) {
1054                         set_errf("Error while parsing imix, too long\n");
1055                         return -1;
1056                 }
1057                 const size_t pkey_len = strlen(pkey2);
1058                 targ->imix_nb_pkts = 0;
1059                 ptr = pkey2;
1060                 while (targ->imix_nb_pkts < MAX_IMIX_PKTS) {
1061                         if (parse_int(&targ->imix_pkt_sizes[targ->imix_nb_pkts], ptr) != 0)
1062                                 break;
1063                         targ->imix_nb_pkts++;
1064                         if ((ptr = strchr(ptr, ',')) == NULL)
1065                                 break;
1066                         ptr++;
1067                         if (targ->imix_nb_pkts == MAX_IMIX_PKTS) {
1068                                 set_errf("Too many packet sizes specified");
1069                                 return -1;
1070                         }
1071                 }
1072                 plog_info("%d IMIX packets:", targ->imix_nb_pkts);
1073                 for (size_t i = 0; i < targ->imix_nb_pkts; ++i) {
1074                         plog_info("%d ", targ->imix_pkt_sizes[i]);
1075                 }
1076                 plog_info("\n");
1077                 return 0;
1078         }
1079         if (STR_EQ(str, "pkt inline")) {
1080                 char pkey2[MAX_CFG_STRING_LEN];
1081                 if (parse_str(pkey2, pkey, sizeof(pkey2)) != 0) {
1082                         set_errf("Error while parsing pkt line, too long\n");
1083                         return -1;
1084                 }
1085
1086                 const size_t pkey_len = strlen(pkey2);
1087                 targ->pkt_size = 0;
1088
1089                 for (size_t i = 0; i < pkey_len; ++i) {
1090                         if (pkey2[i] == ' ')
1091                                 continue;
1092
1093                         if (i + 1 == pkey_len) {
1094                                 set_errf("Incomplete byte at character %z", i);
1095                                 return -1;
1096                         }
1097
1098                         uint8_t byte = 0;
1099
1100                         if (pkey2[i] >= '0' && pkey2[i] <= '9') {
1101                                 byte = (pkey2[i] - '0') << 4;
1102                         }
1103                         else if (pkey2[i] >= 'a' && pkey2[i] <= 'f') {
1104                                 byte = (pkey2[i] - 'a' + 10) << 4;
1105                         }
1106                         else if (pkey2[i] >= 'A' && pkey2[i] <= 'F') {
1107                                 byte = (pkey2[i] - 'A' + 10) << 4;
1108                         }
1109                         else {
1110                                 set_errf("Invalid character in pkt inline at byte %d (%c)", i, pkey2[i]);
1111                                 return -1;
1112                         }
1113
1114                         if (pkey2[i + 1] >= '0' && pkey2[i + 1] <= '9') {
1115                                 byte |= (pkey2[i + 1] - '0');
1116                         }
1117                         else if (pkey2[i + 1] >= 'a' && pkey2[i + 1] <= 'f') {
1118                                 byte |= (pkey2[i + 1] - 'a' + 10);
1119                         }
1120                         else if (pkey2[i + 1] >= 'A' && pkey2[i + 1] <= 'F') {
1121                                 byte |= (pkey2[i + 1] - 'A' + 10);
1122                         }
1123                         else {
1124                                 set_errf("Invalid character in pkt inline at byte %d (%c)", i, pkey2[i + 1]);
1125                                 return -1;
1126                         }
1127                         if (targ->pkt_size == sizeof(targ->pkt_inline)) {
1128                                 set_errf("Inline packet definition can't be longer than %u", sizeof(targ->pkt_inline));
1129                                 return -1;
1130                         }
1131
1132                         targ->pkt_inline[targ->pkt_size++] = byte;
1133                         i += 1;
1134                 }
1135
1136                 return 0;
1137         }
1138         if (STR_EQ(str, "accuracy limit nsec")) {
1139                 return parse_int(&targ->accuracy_limit_nsec, pkey);
1140         }
1141         if (STR_EQ(str, "latency bucket size")) {
1142                 return parse_int(&targ->bucket_size, pkey);
1143         }
1144         if (STR_EQ(str, "latency buffer size")) {
1145                 return parse_int(&targ->latency_buffer_size, pkey);
1146         }
1147         if (STR_EQ(str, "loss buffer size")) {
1148                 return parse_int(&targ->loss_buffer_size, pkey);
1149         }
1150         if (STR_EQ(str, "accuracy pos")) {
1151                 return parse_int(&targ->accur_pos, pkey);
1152         }
1153         if (STR_EQ(str, "signature")) {
1154                 return parse_int(&targ->sig, pkey);
1155         }
1156         if (STR_EQ(str, "signature pos")) {
1157                 return parse_int(&targ->sig_pos, pkey);
1158         }
1159         if (STR_EQ(str, "lat pos")) {
1160                 targ->lat_enabled = 1;
1161                 return parse_int(&targ->lat_pos, pkey);
1162         }
1163         if (STR_EQ(str, "packet id pos")) {
1164                 return parse_int(&targ->packet_id_pos, pkey);
1165         }
1166         if (STR_EQ(str, "probability")) { // old - use "probability no drop" instead
1167                 float probability;
1168                 int rc = parse_float(&probability, pkey);
1169                 if (probability == 0) {
1170                         set_errf("Probability must be != 0\n");
1171                         return -1;
1172                 } else if (probability > 100.0) {
1173                         set_errf("Probability must be < 100\n");
1174                         return -1;
1175                 }
1176                 targ->probability_no_drop = probability * 10000;
1177                 return rc;
1178         }
1179         if (STR_EQ(str, "proba no drop")) {
1180                 float probability;
1181                 int rc = parse_float(&probability, pkey);
1182                 if (probability == 0) {
1183                         set_errf("probability no drop must be != 0\n");
1184                         return -1;
1185                 } else if (probability > 100.0) {
1186                         set_errf("Probability must be < 100\n");
1187                         return -1;
1188                 }
1189                 targ->probability_no_drop = probability * 10000;
1190                 return rc;
1191         }
1192         if (STR_EQ(str, "proba delay")) {
1193                 float probability;
1194                 int rc = parse_float(&probability, pkey);
1195                 if (probability > 100.0) {
1196                         set_errf("Probability must be < 100\n");
1197                         return -1;
1198                 }
1199                 targ->probability_delay = probability * 10000;
1200                 return rc;
1201         }
1202 #if RTE_VERSION >= RTE_VERSION_NUM(19,11,0,0)
1203         if (STR_EQ(str, "proba duplicate")) {
1204                 float probability;
1205                 int rc = parse_float(&probability, pkey);
1206                 if (probability > 100.0) {
1207                         set_errf("probability duplicate must be < 100\n");
1208                         return -1;
1209                 }
1210                 targ->probability_duplicate = probability * 10000;
1211                 return rc;
1212         }
1213 #endif
1214         if (STR_EQ(str, "concur conn")) {
1215                 return parse_int(&targ->n_concur_conn, pkey);
1216         }
1217         if (STR_EQ(str, "max setup rate")) {
1218                 return parse_int(&targ->max_setup_rate, pkey);
1219         }
1220         if (STR_EQ(str, "pkt size")) {
1221                 return parse_int(&targ->pkt_size, pkey);
1222         }
1223         if (STR_EQ(str, "min bulk size")) {
1224                 return parse_int(&targ->min_bulk_size, pkey);
1225         }
1226         if (STR_EQ(str, "max bulk size")) {
1227                 return parse_int(&targ->max_bulk_size, pkey);
1228         }
1229         if (STR_EQ(str, "rx port")) {
1230                 if (targ->flags & TASK_ARG_RX_RING) {
1231                         set_errf("Can't read both from internal ring and external port from the same task. Use multiple tasks instead.");
1232                         return -1;
1233                 }
1234                 uint32_t vals[PROX_MAX_PORTS];
1235                 uint32_t n_if;
1236
1237                 if (parse_port_name_list(vals, &n_if, PROX_MAX_PORTS, pkey)) {
1238                         // Port name not found, but could be a virtual device of a secondary process
1239                         // As DPDK not started yet, we can only check the config file to see whether we are a secondary process
1240                         if (rte_cfg.eal &&
1241                                         (strstr(rte_cfg.eal, "secondary") || strstr(rte_cfg.eal, "auto")) &&
1242                                         (n_deferred_ports < PROX_MAX_PORTS)) {
1243                                 prox_strncpy(deferred_port[n_deferred_ports].name, pkey, sizeof(deferred_port[n_deferred_ports].name));
1244                                 deferred_port[n_deferred_ports].is_rx_port = 1;
1245                                 deferred_port[n_deferred_ports++].targ = targ;
1246                                 return 0;
1247                         } else
1248                                 return -1;
1249                 }
1250
1251                 for (uint8_t i = 0; i < n_if; ++i) {
1252                         PROX_ASSERT(vals[i] < PROX_MAX_PORTS);
1253                         targ->rx_port_queue[i].port = vals[i];
1254                         targ->nb_rxports++;
1255                 }
1256                 return 0;
1257         }
1258
1259         if (STR_EQ(str, "mode")) {
1260                 /* Check deprecated task modes */
1261                 char mode[255];
1262                 int ret = parse_str(mode, pkey, sizeof(mode));
1263                 if (ret)
1264                         return ret;
1265
1266                 for (uint32_t i = 0; i < RTE_DIM(task_cfg_depr); ++i) {
1267                         if (STR_EQ(mode, task_cfg_depr[i].opt)) {
1268                                 set_errf("Task mode '%s' is deprecated%s%s",
1269                                          task_cfg_depr[i].opt, strlen(task_cfg_depr[i].info)? ": ": "", task_cfg_depr[i].info);
1270                                 return -1;
1271                         }
1272                 }
1273
1274                 /* master is a special mode that is always needed (cannot be turned off) */
1275                 if (STR_EQ(mode, "master")) {
1276                         prox_cfg.master = ncore;
1277                         targ->mode = MASTER;
1278                         if (lconf->n_tasks_all > 1 || targ->task != 0) {
1279                                 set_errf("Master core can only have one task\n");
1280                                 return -1;
1281                         }
1282                         // Initialize number of tasks to 1 for master, even if no task specified
1283                         lconf->n_tasks_all = 1;
1284                         lconf->active_task = 0;
1285                         lconf->targs[lconf->active_task].task = 0;
1286                         struct task_init* task_init = to_task_init(mode, "");
1287                         if (task_init) {
1288                                 targ->mode = task_init->mode;
1289                         }
1290                         targ->task_init = task_init;
1291                         return 0;
1292                 }
1293
1294                 struct task_init* task_init = to_task_init(mode, "");
1295                 if (task_init) {
1296                         targ->mode = task_init->mode;
1297                 }
1298                 else {
1299                         set_errf("Task mode '%s' is invalid", mode);
1300                         tasks_list();
1301                         return -1;
1302                 }
1303                 targ->task_init = task_init;
1304                 return 0;
1305         }
1306         if (STR_EQ(str, "users")) {
1307                 return parse_int(&targ->n_flows, pkey);
1308         }
1309
1310         if (STR_EQ(str, "mark")) {
1311                 return parse_flag(&targ->runtime_flags, TASK_MARK, pkey);
1312         }
1313
1314         if (STR_EQ(str, "mark green")) {
1315                 return parse_int(&targ->marking[0], pkey);
1316         }
1317
1318         if (STR_EQ(str, "mark yellow")) {
1319                 return parse_int(&targ->marking[1], pkey);
1320         }
1321
1322         if (STR_EQ(str, "mark red")) {
1323                 return parse_int(&targ->marking[2], pkey);
1324         }
1325
1326         if (STR_EQ(str, "tx cores")) {
1327                 uint8_t dest_task = 0;
1328                 /* if user did not specify, dest_port is left at default (first type) */
1329                 uint8_t dest_proto = 0;
1330                 uint8_t ctrl = CTRL_TYPE_DP;
1331                 char *task_str = strstr(pkey, "proto=");
1332                 if (task_str) {
1333                         task_str += strlen("proto=");
1334
1335                         if (STR_EQ(task_str, "ipv4")) {
1336                                 dest_proto = IPV4;
1337                         }
1338                         else if (STR_EQ(task_str, "arp")) {
1339                                 dest_proto = ARP;
1340                         }
1341                         else if (STR_EQ(task_str, "ipv6")) {
1342                                 dest_proto = IPV6;
1343                         }
1344                         else {
1345                                 set_errf("proto needs to be either ipv4, arp or ipv6");
1346                                 return -1;
1347                         }
1348
1349                 }
1350
1351                 task_str = strstr(pkey, "task=");
1352
1353                 if (task_str) {
1354                         --task_str;
1355                         *task_str = 0;
1356                         task_str++;
1357                         task_str += strlen("task=");
1358                         char *task_str_end = strstr(task_str, " ");
1359                         if (task_str_end) {
1360                                 *task_str_end = 0;
1361                         }
1362                         if (0 == strlen(task_str)) {
1363                                 set_errf("Invalid task= syntax");
1364                                 return -1;
1365                         }
1366
1367                         switch (task_str[strlen(task_str) - 1]) {
1368                         case 'p':
1369                                 ctrl = CTRL_TYPE_PKT;
1370                                 break;
1371                         case 'm':
1372                                 ctrl = CTRL_TYPE_MSG;
1373                                 break;
1374                         case '\n':
1375                         case 0:
1376                                 break;
1377                         default:
1378                                 if (task_str[strlen(task_str) -1] < '0' ||
1379                                     task_str[strlen(task_str) -1] > '9') {
1380                                         set_errf("Unknown ring type %c.\n",
1381                                                  task_str[strlen(task_str) - 1]);
1382                                         return -1;
1383                                 }
1384                         }
1385
1386                         dest_task = atoi(task_str);
1387                         if (dest_task >= MAX_TASKS_PER_CORE) {
1388                                 set_errf("Destination task too high (max allowed %d)", MAX_TASKS_PER_CORE - 1);
1389                                 return -1;
1390                         }
1391                 }
1392                 else {
1393                         dest_task = 0;
1394                 }
1395
1396                 struct core_task_set *cts = &targ->core_task_set[dest_proto];
1397
1398                 if (parse_task_set(cts, pkey))
1399                         return -1;
1400
1401                 if (cts->n_elems > MAX_WT_PER_LB) {
1402                         set_errf("Too many worker threads (max allowed %d)", MAX_WT_PER_LB - 1);
1403                         return -1;
1404                 }
1405
1406                 targ->nb_worker_threads = cts->n_elems;
1407                 targ->nb_txrings += cts->n_elems;
1408
1409                 return 0;
1410         }
1411         if (STR_EQ(str, "tx crc")) {
1412                 return parse_flag(&targ->runtime_flags, TASK_TX_CRC, pkey);
1413         }
1414         if (STR_EQ(str, "ring size")) {
1415                 return parse_int(&targ->ring_size, pkey);
1416         }
1417         if (STR_EQ(str, "mempool size")) {
1418                 return parse_kmg(&targ->nb_mbuf, pkey);
1419         }
1420
1421         else if (STR_EQ(str, "mbuf size")) {
1422                 return parse_int(&targ->mbuf_size, pkey);
1423         }
1424         if (STR_EQ(str, "memcache size")) {
1425                 return parse_kmg(&targ->nb_cache_mbuf, pkey);
1426         }
1427
1428         if (STR_EQ(str, "byte offset")) {
1429                 return parse_int(&targ->byte_offset, pkey);
1430         }
1431
1432         if (STR_EQ(str, "realtime scheduling")) {
1433                 return parse_flag(&lconf->flags, LCONF_FLAG_SCHED_RR, pkey);
1434         }
1435         if (STR_EQ(str, "name")) {
1436                 return parse_str(lconf->name, pkey, sizeof(lconf->name));
1437         }
1438         /* MPLS configuration */
1439         if (STR_EQ(str, "untag mpls")) {
1440                 return parse_flag(&targ->runtime_flags, TASK_MPLS_TAGGING, pkey);
1441         }
1442
1443         if (STR_EQ(str, "add mpls")) {
1444                 return parse_flag(&targ->runtime_flags, TASK_MPLS_TAGGING, pkey);
1445         }
1446
1447         if (STR_EQ(str, "ether type")) {
1448                 return parse_int(&targ->etype, pkey);
1449         }
1450
1451         if (STR_EQ(str, "cache set")) {
1452                 return parse_int(&lconf->cache_set, pkey);
1453         }
1454
1455         if (STR_EQ(str, "sub mode")) {
1456                 const char* mode_str = targ->task_init->mode_str;
1457                 const char *sub_mode_str = pkey;
1458
1459                 targ->task_init = to_task_init(mode_str, sub_mode_str);
1460                 if (!targ->task_init) {
1461                         if ((strcmp(sub_mode_str, "l3") != 0) && (strcmp(sub_mode_str, "ndp") != 0)) {
1462                                 set_errf("sub mode %s not supported for mode %s", sub_mode_str, mode_str);
1463                                 return -1;
1464                         }
1465                         targ->task_init = to_task_init(mode_str, "");
1466                         if (!targ->task_init) {
1467                                 set_errf("sub mode %s not supported for mode %s", sub_mode_str, mode_str);
1468                                 return -1;
1469                         }
1470                 }
1471                 if (strcmp(sub_mode_str, "l3") == 0) {
1472                         prox_cfg.flags |= DSF_L3_ENABLED;
1473                         targ->flags |= TASK_ARG_L3;
1474                         strcpy(targ->sub_mode_str, "l3");
1475                 } else if (strcmp(sub_mode_str, "ndp") == 0) {
1476                         prox_cfg.flags |= DSF_NDP_ENABLED;
1477                         targ->flags |= TASK_ARG_NDP;
1478                         strcpy(targ->sub_mode_str, "ndp");
1479                 } else {
1480                         strcpy(targ->sub_mode_str, targ->task_init->sub_mode_str);
1481                 }
1482                 return 0;
1483         }
1484
1485         if (STR_EQ(str, "mempool name")) {
1486                 return parse_str(targ->pool_name, pkey, sizeof(targ->pool_name));
1487         }
1488         if (STR_EQ(str, "dpi engine")) {
1489                 return parse_str(targ->dpi_engine_path, pkey, sizeof(targ->dpi_engine_path));
1490         }
1491         if (STR_EQ(str, "dpi engine arg")) {
1492                 return parse_str(targ->dpi_engine_args[targ->n_dpi_engine_args++], pkey,
1493                                  sizeof(targ->dpi_engine_args[0]));
1494         }
1495         if (STR_EQ(str, "dst mac")) { /* destination MAC address to be used for packets */
1496                 if (parse_mac(&targ->edaddr, pkey)) {
1497                         if (STR_EQ(pkey, "no")) {
1498                                 targ->flags |= TASK_ARG_DO_NOT_SET_DST_MAC;
1499                                 return 0;
1500                         }
1501                         if (STR_EQ(pkey, "packet") == 0)
1502                                 return -1;
1503                         else
1504                                 return 0;
1505                 }
1506                 targ->flags |= TASK_ARG_DST_MAC_SET;
1507                 return 0;
1508         }
1509         if (STR_EQ(str, "src mac")) {
1510                 if (parse_mac(&targ->esaddr, pkey)) {
1511                         if (STR_EQ(pkey, "no")) {
1512                                 targ->flags |= TASK_ARG_DO_NOT_SET_SRC_MAC;
1513                                 return 0;
1514                         }
1515                         else if (STR_EQ(pkey, "packet"))
1516                                 return 0;
1517                         else if (STR_EQ(pkey, "hw")) {
1518                                 targ->flags |= TASK_ARG_HW_SRC_MAC;
1519                                 return 0;
1520                         } else {
1521                                 return -1;
1522                         }
1523                 }
1524                 targ->flags |= TASK_ARG_SRC_MAC_SET;
1525                 return 0;
1526         }
1527         if (STR_EQ(str, "igmp ipv4")) { /* IGMP Group */
1528                 return parse_ip(&targ->igmp_address, pkey);
1529         }
1530         if (STR_EQ(str, "gateway ipv4")) { /* Gateway IP address used when generating */
1531                 if ((targ->flags & TASK_ARG_L3) == 0)
1532                         plog_warn("gateway ipv4 configured but L3 sub mode not enabled\n");
1533                 if (targ->local_ipv4)
1534                         targ->local_prefix = 32;
1535                 return parse_ip(&targ->gateway_ipv4, pkey);
1536         }
1537         if (STR_EQ(str, "ipv6 router")) { /* we simulate an IPV6 router */
1538                 int rc = parse_flag(&targ->ipv6_router, 1, pkey);
1539                 if (!rc && targ->ipv6_router) {
1540                         plog_info("\tipv6 router configured => NDP enabled\n");
1541                         prox_cfg.flags |= DSF_NDP_ENABLED;
1542                         targ->flags |= TASK_ARG_NDP;
1543                         strcpy(targ->sub_mode_str, "ndp");
1544                 }
1545                 return 0;
1546         }
1547         if (STR_EQ(str, "gateway ipv6")) { /* Gateway IP address used when generating */
1548                 if ((targ->flags & TASK_ARG_NDP) == 0)
1549                         plog_warn("gateway ipv6 configured but NDP sub mode not enabled\n");
1550                 return parse_ip6(&targ->gateway_ipv6, pkey);
1551         }
1552         if (STR_EQ(str, "local ipv4")) { /* source IP address to be used for packets */
1553                 struct ip4_subnet cidr;
1554                 if (parse_ip4_and_prefix(&cidr, pkey) != 0) {
1555                         if (targ->gateway_ipv4)
1556                                 targ->local_prefix = 32;
1557                         else
1558                                 targ->local_prefix = 0;
1559                         return parse_ip(&targ->local_ipv4, pkey);
1560                 } else {
1561                         targ->local_ipv4 = cidr.ip;
1562                         targ->local_prefix = cidr.prefix;
1563                         return 0;
1564                 }
1565         }
1566         if (STR_EQ(str, "remote ipv4")) { /* source IP address to be used for packets */
1567                 return parse_ip(&targ->remote_ipv4, pkey);
1568         }
1569         if (STR_EQ(str, "global ipv6")) {
1570                 if (parse_ip6(&targ->global_ipv6, pkey) == 0) {
1571                         plog_info("\tglobal ipv6 configured => NDP enabled\n");
1572                         targ->flags |= TASK_ARG_NDP;
1573                         prox_cfg.flags |= DSF_NDP_ENABLED;
1574                         strcpy(targ->sub_mode_str, "ndp");
1575                 } else {
1576                         plog_err("Unable to parse content of local ipv6: %s\n", pkey);
1577                         return -1;
1578                 }
1579                 return 0;
1580         }
1581         if (STR_EQ(str, "local ipv6")) { /* source IPv6 address to be used for packets */
1582                 if (parse_ip6(&targ->local_ipv6, pkey) == 0) {
1583                         plog_info("\tlocal ipv6 configured => NDP enabled\n");
1584                         targ->flags |= TASK_ARG_NDP;
1585                         prox_cfg.flags |= DSF_NDP_ENABLED;
1586                         strcpy(targ->sub_mode_str, "ndp");
1587                 } else {
1588                         plog_err("Unable to parse content of local ipv6: %s\n", pkey);
1589                         return -1;
1590                 }
1591                 return 0;
1592         }
1593         if (STR_EQ(str, "router prefix")) {
1594                 if (parse_ip6(&targ->router_prefix, pkey) == 0) {
1595                         plog_info("\trouter prefix set to "IPv6_BYTES_FMT" (%s)\n", IPv6_BYTES(targ->router_prefix.bytes), IP6_Canonical(&targ->router_prefix));
1596                 } else {
1597                         plog_err("Unable to parse content of router prefix: %s\n", pkey);
1598                         return -1;
1599                 }
1600                 return 0;
1601         }
1602         if (STR_EQ(str, "arp timeout"))
1603                 return parse_int(&targ->reachable_timeout, pkey);
1604         if (STR_EQ(str, "arp update time"))
1605                 return parse_int(&targ->arp_ndp_retransmit_timeout, pkey);
1606         if (STR_EQ(str, "number of packets"))
1607                 return parse_int(&targ->n_pkts, pkey);
1608         if (STR_EQ(str, "store size"))
1609                 return parse_int(&targ->store_max, pkey);
1610         if (STR_EQ(str, "pipes")) {
1611                 uint32_t val;
1612                 int err = parse_int(&val, pkey);
1613                 if (err)
1614                         return -1;
1615                 if (!val || !rte_is_power_of_2(val)) {
1616                         set_errf("Number of pipes has to be power of 2 and not zero");
1617                         return -1;
1618                 }
1619
1620                 targ->qos_conf.port_params.n_pipes_per_subport = val;
1621                 return 0;
1622         }
1623         if (STR_EQ(str, "queue size")) {
1624                 uint32_t val;
1625                 int err = parse_int(&val, pkey);
1626                 if (err) {
1627                         return -1;
1628                 }
1629 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1630                 targ->qos_conf.subport_params[0].qsize[0] = val;
1631                 targ->qos_conf.subport_params[0].qsize[1] = val;
1632                 targ->qos_conf.subport_params[0].qsize[2] = val;
1633                 targ->qos_conf.subport_params[0].qsize[3] = val;
1634 #else
1635                 targ->qos_conf.port_params.qsize[0] = val;
1636                 targ->qos_conf.port_params.qsize[1] = val;
1637                 targ->qos_conf.port_params.qsize[2] = val;
1638                 targ->qos_conf.port_params.qsize[3] = val;
1639 #endif
1640                 return 0;
1641         }
1642         if (STR_EQ(str, "subport tb rate")) {
1643 #if RTE_VERSION >= RTE_VERSION_NUM(20,11,0,0)
1644                 return parse_u64(&targ->qos_conf.port_params.subport_profiles->tb_rate, pkey);
1645 #else
1646 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1647                 return parse_u64(&targ->qos_conf.subport_params[0].tb_rate, pkey);
1648 #else
1649                 return parse_int(&targ->qos_conf.subport_params[0].tb_rate, pkey);
1650 #endif
1651 #endif
1652         }
1653         if (STR_EQ(str, "subport tb size")) {
1654 #if RTE_VERSION >= RTE_VERSION_NUM(20,11,0,0)
1655                 return parse_u64(&targ->qos_conf.port_params.subport_profiles->tb_size, pkey);
1656 #else
1657 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1658                 return parse_u64(&targ->qos_conf.subport_params[0].tb_size, pkey);
1659 #else
1660                 return parse_int(&targ->qos_conf.subport_params[0].tb_size, pkey);
1661 #endif
1662 #endif
1663         }
1664         if (STR_EQ(str, "subport tc 0 rate")) {
1665 #if RTE_VERSION >= RTE_VERSION_NUM(20,11,0,0)
1666                 return parse_u64(&targ->qos_conf.port_params.subport_profiles->tc_rate[0], pkey);
1667 #else
1668 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1669                 return parse_u64(&targ->qos_conf.subport_params[0].tc_rate[0], pkey);
1670 #else
1671                 return parse_int(&targ->qos_conf.subport_params[0].tc_rate[0], pkey);
1672 #endif
1673 #endif
1674         }
1675         if (STR_EQ(str, "subport tc 1 rate")) {
1676 #if RTE_VERSION >= RTE_VERSION_NUM(20,11,0,0)
1677                 return parse_u64(&targ->qos_conf.port_params.subport_profiles->tc_rate[1], pkey);
1678 #else
1679 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1680                 return parse_u64(&targ->qos_conf.subport_params[0].tc_rate[1], pkey);
1681 #else
1682                 return parse_int(&targ->qos_conf.subport_params[0].tc_rate[1], pkey);
1683 #endif
1684 #endif
1685         }
1686         if (STR_EQ(str, "subport tc 2 rate")) {
1687 #if RTE_VERSION >= RTE_VERSION_NUM(20,11,0,0)
1688                 return parse_u64(&targ->qos_conf.port_params.subport_profiles->tc_rate[2], pkey);
1689 #else
1690 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1691                 return parse_u64(&targ->qos_conf.subport_params[0].tc_rate[2], pkey);
1692 #else
1693                 return parse_int(&targ->qos_conf.subport_params[0].tc_rate[2], pkey);
1694 #endif
1695 #endif
1696         }
1697         if (STR_EQ(str, "subport tc 3 rate")) {
1698 #if RTE_VERSION >= RTE_VERSION_NUM(20,11,0,0)
1699                 return parse_u64(&targ->qos_conf.port_params.subport_profiles->tc_rate[3], pkey);
1700 #else
1701 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1702                 return parse_u64(&targ->qos_conf.subport_params[0].tc_rate[3], pkey);
1703 #else
1704                 return parse_int(&targ->qos_conf.subport_params[0].tc_rate[3], pkey);
1705 #endif
1706 #endif
1707         }
1708
1709         if (STR_EQ(str, "subport tc rate")) {
1710                 uint32_t val;
1711                 int err = parse_int(&val, pkey);
1712                 if (err) {
1713                         return -1;
1714                 }
1715
1716 #if RTE_VERSION >= RTE_VERSION_NUM(20,11,0,0)
1717                 targ->qos_conf.port_params.subport_profiles->tc_rate[0] = val;
1718                 targ->qos_conf.port_params.subport_profiles->tc_rate[1] = val;
1719                 targ->qos_conf.port_params.subport_profiles->tc_rate[2] = val;
1720                 targ->qos_conf.port_params.subport_profiles->tc_rate[3] = val;
1721 #else
1722                 targ->qos_conf.subport_params[0].tc_rate[0] = val;
1723                 targ->qos_conf.subport_params[0].tc_rate[1] = val;
1724                 targ->qos_conf.subport_params[0].tc_rate[2] = val;
1725                 targ->qos_conf.subport_params[0].tc_rate[3] = val;
1726 #endif
1727
1728                 return 0;
1729         }
1730         if (STR_EQ(str, "subport tc period")) {
1731 #if RTE_VERSION >= RTE_VERSION_NUM(20,11,0,0)
1732                 return parse_u64(&targ->qos_conf.port_params.subport_profiles->tc_period, pkey);
1733 #else
1734 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1735                 return parse_u64(&targ->qos_conf.subport_params[0].tc_period, pkey);
1736 #else
1737                 return parse_int(&targ->qos_conf.subport_params[0].tc_period, pkey);
1738 #endif
1739 #endif
1740         }
1741         if (STR_EQ(str, "pipe tb rate")) {
1742 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1743                 return parse_u64(&targ->qos_conf.pipe_params[0].tb_rate, pkey);
1744 #else
1745                 return parse_int(&targ->qos_conf.pipe_params[0].tb_rate, pkey);
1746 #endif
1747         }
1748         if (STR_EQ(str, "pipe tb size")) {
1749 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1750                 return parse_u64(&targ->qos_conf.pipe_params[0].tb_size, pkey);
1751 #else
1752                 return parse_int(&targ->qos_conf.pipe_params[0].tb_size, pkey);
1753 #endif
1754         }
1755         if (STR_EQ(str, "pipe tc rate")) {
1756                 uint32_t val;
1757                 int err = parse_int(&val, pkey);
1758                 if (err) {
1759                         return -1;
1760                 }
1761
1762                 targ->qos_conf.pipe_params[0].tc_rate[0] = val;
1763                 targ->qos_conf.pipe_params[0].tc_rate[1] = val;
1764                 targ->qos_conf.pipe_params[0].tc_rate[2] = val;
1765                 targ->qos_conf.pipe_params[0].tc_rate[3] = val;
1766                 return 0;
1767         }
1768         if (STR_EQ(str, "pipe tc 0 rate")) {
1769 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1770                 return parse_u64(&targ->qos_conf.pipe_params[0].tc_rate[0], pkey);
1771 #else
1772                 return parse_int(&targ->qos_conf.pipe_params[0].tc_rate[0], pkey);
1773 #endif
1774         }
1775         if (STR_EQ(str, "pipe tc 1 rate")) {
1776 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1777                 return parse_u64(&targ->qos_conf.pipe_params[0].tc_rate[1], pkey);
1778 #else
1779                 return parse_int(&targ->qos_conf.pipe_params[0].tc_rate[1], pkey);
1780 #endif
1781         }
1782         if (STR_EQ(str, "pipe tc 2 rate")) {
1783 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1784                 return parse_u64(&targ->qos_conf.pipe_params[0].tc_rate[2], pkey);
1785 #else
1786                 return parse_int(&targ->qos_conf.pipe_params[0].tc_rate[2], pkey);
1787 #endif
1788         }
1789         if (STR_EQ(str, "pipe tc 3 rate")) {
1790 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1791                 return parse_u64(&targ->qos_conf.pipe_params[0].tc_rate[3], pkey);
1792 #else
1793                 return parse_int(&targ->qos_conf.pipe_params[0].tc_rate[3], pkey);
1794 #endif
1795         }
1796         if (STR_EQ(str, "pipe tc period")) {
1797 #if RTE_VERSION > RTE_VERSION_NUM(19,11,0,0)
1798                 return parse_u64(&targ->qos_conf.pipe_params[0].tc_period, pkey);
1799 #else
1800                 return parse_int(&targ->qos_conf.pipe_params[0].tc_period, pkey);
1801 #endif
1802         }
1803         if (STR_EQ(str, "police action")) {
1804                 char *in = strstr(pkey, " io=");
1805                 if (in == NULL) {
1806                         set_errf("Need to specify io colors using io=in_color,out_color\n");
1807                         return -1;
1808                 }
1809                 *in = 0;
1810                 in += strlen(" io=");
1811
1812                 char *out = strstr(in, ",");
1813                 if (out == NULL) {
1814                         set_errf("Output color not specified\n");
1815                 }
1816                 *out = 0;
1817                 out++;
1818
1819                 enum police_action in_color = str_to_color(in);
1820                 enum police_action out_color = str_to_color(out);
1821
1822                 if (in_color == ACT_INVALID) {
1823                         set_errf("Invalid input color %s. Expected green, yellow or red", in);
1824                         return -1;
1825                 }
1826                 if (out_color == ACT_INVALID) {
1827                         set_errf("Invalid output color %s. Expected green, yellow or red", out);
1828                         return -1;
1829                 }
1830                 enum police_action action = str_to_color(pkey);
1831                 if (action == ACT_INVALID) {
1832                         set_errf("Error action %s. Expected green, yellow, red or drop", pkey);
1833                         return -1;
1834                 }
1835                 targ->police_act[in_color][out_color] = action;
1836
1837                 return 0;
1838         }
1839         if (STR_EQ(str, "qinq tag")) {
1840                 return parse_int(&targ->qinq_tag, pkey);
1841         }
1842         if (STR_EQ(str, "cir")) {
1843                 return parse_int(&targ->cir, pkey);
1844         }
1845         if (STR_EQ(str, "cbs")) {
1846                 return parse_int(&targ->cbs, pkey);
1847         }
1848         if (STR_EQ(str, "pir")) {
1849                 return parse_int(&targ->pir, pkey);
1850         }
1851         if (STR_EQ(str, "pbs")) {
1852                 return parse_int(&targ->pbs, pkey);
1853         }
1854         if (STR_EQ(str, "ebs")) {
1855                 return parse_int(&targ->ebs, pkey);
1856         }
1857         uint32_t queue_id = 0;
1858         if (sscanf(str, "queue %d weight", &queue_id) == 1) {
1859                 uint32_t val;
1860                 int err = parse_int(&val, pkey);
1861                 if (err) {
1862                         return -1;
1863                 }
1864                 if (queue_id >= RTE_SCHED_BE_QUEUES_PER_PIPE) {
1865                         set_errf("queue_id must be < %d", RTE_SCHED_BE_QUEUES_PER_PIPE);
1866                         return -1;
1867                 }
1868                 targ->qos_conf.pipe_params[0].wrr_weights[queue_id] = val;
1869                 return 0;
1870         }
1871         if (STR_EQ(str, "classify")) {
1872                 if (!(targ->task_init->flag_features & TASK_FEATURE_CLASSIFY)) {
1873                         set_errf("Classify is not supported in '%s' mode", targ->task_init->mode_str);
1874                         return -1;
1875                 }
1876
1877                 return parse_flag(&targ->runtime_flags, TASK_CLASSIFY, pkey);
1878         }
1879         if (STR_EQ(str, "flow table size")) {
1880                 return parse_int(&targ->flow_table_size, pkey);
1881         }
1882 #ifdef GRE_TP
1883         if (STR_EQ(str, "tbf rate")) {
1884                 return parse_int(&targ->tb_rate, pkey);
1885         }
1886         if (STR_EQ(str, "tbf size")) {
1887                 return parse_int(&targ->tb_size, pkey);
1888         }
1889 #endif
1890         if (STR_EQ(str, "max rules")) {
1891                 return parse_int(&targ->n_max_rules, pkey);
1892         }
1893
1894         if (STR_EQ(str, "tunnel hop limit")) {
1895                 uint32_t val;
1896                 int err = parse_int(&val, pkey);
1897                 if (err) {
1898                         return -1;
1899                 }
1900                 targ->tunnel_hop_limit = val;
1901                 return 0;
1902         }
1903
1904         if (STR_EQ(str, "lookup port mask")) {
1905                 uint32_t val;
1906                 int err = parse_int(&val, pkey);
1907                 if (err) {
1908                         return -1;
1909                 }
1910                 targ->lookup_port_mask = val;
1911                 return 0;
1912         }
1913
1914         if (STR_EQ(str, "irq debug")) {
1915                 parse_int(&targ->irq_debug, pkey);
1916                 return 0;
1917         }
1918
1919         if (STR_EQ(str, "multiplier")) {
1920                 parse_int(&targ->multiplier, pkey);
1921                 return 0;
1922         }
1923
1924         if (STR_EQ(str, "mirror size")) {
1925                 parse_int(&targ->mirror_size, pkey);
1926                 return 0;
1927         }
1928
1929         set_errf("Option '%s' is not known", str);
1930         /* fail on unknown keys */
1931         return -1;
1932 }
1933
1934 static int str_is_number(const char *in)
1935 {
1936         int dot_once = 0;
1937
1938         for (size_t i = 0; i < strlen(in); ++i) {
1939                 if (!dot_once && in[i] == '.') {
1940                         dot_once = 1;
1941                         continue;
1942                 }
1943
1944                 if (in[i] < '0' || in[i] > '9')
1945                         return 0;
1946         }
1947
1948         return 1;
1949 }
1950
1951 /* command line parameters parsing procedure */
1952 int prox_parse_args(int argc, char **argv)
1953 {
1954         int i, opt, ret;
1955         char *tmp, *tmp2;
1956         char tmp3[64];
1957
1958         /* Default settings */
1959         prox_cfg.flags |= DSF_AUTOSTART | DSF_WAIT_ON_QUIT;
1960         prox_cfg.ui = PROX_UI_CURSES;
1961
1962         plog_info("\tCommand line:");
1963         for (i = 0; i < argc; ++i) {
1964                 plog_info(" %s", argv[i]);
1965         }
1966         plog_info("\n");
1967
1968         while ((opt = getopt(argc, argv, "f:dnzpo:tkuar:emsiw:l:v:q:")) != EOF) {
1969                 switch (opt) {
1970                 case 'f':
1971                         /* path to config file */
1972                         cfg_file = optarg;
1973                         size_t offset = 0;
1974                         for (size_t i = 0; i < strlen(cfg_file); ++i) {
1975                                 if (cfg_file[i] == '/') {
1976                                         offset = i + 1;
1977                                 }
1978                         }
1979
1980                         prox_strncpy(prox_cfg.name, cfg_file + offset, MAX_NAME_SIZE);
1981                         break;
1982                 case 'v':
1983                         plog_set_lvl(atoi(optarg));
1984                         break;
1985                 case 'l':
1986                         prox_cfg.log_name_pid = 0;
1987                         prox_strncpy(prox_cfg.log_name, optarg, MAX_NAME_SIZE);
1988                         break;
1989                 case 'p':
1990                         prox_cfg.log_name_pid = 1;
1991                         break;
1992                 case 'k':
1993                         prox_cfg.use_stats_logger = 1;
1994                         break;
1995                 case 'd':
1996                         prox_cfg.flags |= DSF_DAEMON;
1997                         prox_cfg.ui = PROX_UI_NONE;
1998                         break;
1999                 case 'z':
2000                         prox_cfg.flags |= DSF_USE_DUMMY_CPU_TOPO;
2001                         prox_cfg.flags |= DSF_CHECK_INIT;
2002                         break;
2003                 case 'n':
2004                         prox_cfg.flags |= DSF_USE_DUMMY_DEVICES;
2005                         break;
2006                 case 'r':
2007                         if (!str_is_number(optarg) || strlen(optarg) > 11)
2008                                 return -1;
2009                         prox_strncpy(prox_cfg.update_interval_str, optarg, sizeof(prox_cfg.update_interval_str));
2010                         break;
2011                 case 'o':
2012                         if (prox_cfg.flags & DSF_DAEMON)
2013                                 break;
2014
2015                         if (!strcmp(optarg, "curses")) {
2016                                 prox_cfg.ui = PROX_UI_CURSES;
2017                         }
2018                         else if (!strcmp(optarg, "cli")) {
2019                                 prox_cfg.ui = PROX_UI_CLI;
2020                         }
2021                         else if (!strcmp(optarg, "none")) {
2022                                 prox_cfg.ui = PROX_UI_NONE;
2023                         }
2024                         else {
2025                                 plog_err("Invalid local UI '%s', local UI can be 'curses', 'cli' or 'none'.", optarg);
2026                                 return -1;
2027                         }
2028                         break;
2029                 case 'q':
2030                         if (luaL_loadstring(prox_lua(), optarg)) {
2031                                 set_errf("Lua error: '%s'\n", lua_tostring(prox_lua(), -1));
2032                                 return -1;
2033                         }
2034
2035                         if (lua_pcall(prox_lua(), 0, LUA_MULTRET, 0)) {
2036                                 set_errf("Lua error: '%s'\n", lua_tostring(prox_lua(), -1));
2037                                 return -1;
2038                         }
2039
2040                         break;
2041                 case 'a':
2042                         /* autostart all cores */
2043                         prox_cfg.flags |= DSF_AUTOSTART;
2044                         break;
2045                 case 'e':
2046                         /* don't autostart */
2047                         prox_cfg.flags &= ~DSF_AUTOSTART;
2048                         break;
2049                 case 't':
2050                         prox_cfg.flags |= DSF_LISTEN_TCP;
2051                         break;
2052                 case 'u':
2053                         prox_cfg.flags |= DSF_LISTEN_UDS;
2054                         break;
2055                 case 'm':
2056                         /* list supported task modes and exit */
2057                         prox_cfg.flags |= DSF_LIST_TASK_MODES;
2058                         break;
2059                 case 's':
2060                         /* check configuration file syntax and exit */
2061                         prox_cfg.flags |= DSF_CHECK_SYNTAX;
2062                         break;
2063                 case 'i':
2064                         /* check initialization sequence and exit */
2065                         prox_cfg.flags |= DSF_CHECK_INIT;
2066                         break;
2067                 case 'w':
2068                         tmp = optarg;
2069                         tmp2 = 0;
2070                         if (strlen(tmp) >= 3 &&
2071                             (tmp2 = strchr(tmp, '='))) {
2072                                 *tmp2 = 0;
2073                                 tmp3[0] = '$';
2074                                 prox_strncpy(tmp3 + 1, tmp, 63);
2075                                 plog_info("\tAdding variable: %s = %s\n", tmp3, tmp2 + 1);
2076                                 ret = add_var(tmp3, tmp2 + 1, 1);
2077                                 if (ret == -2) {
2078                                         plog_err("\tFailed to add variable, too many variables defines\n");
2079                                         return -1;
2080                                 }
2081                                 else if(ret == -3) {
2082                                         plog_err("\tFailed to add variable, already defined\n");
2083                                         return -1;
2084                                 }
2085                                 break;
2086                         }
2087                         /* fall-through */
2088                 default:
2089                         plog_err("\tUnknown option\n");
2090                         return -1;
2091                 }
2092         }
2093
2094         /* reset getopt lib for DPDK */
2095         optind = 0;
2096
2097         return 0;
2098 }
2099
2100 static int check_cfg(void)
2101 {
2102         /* Sanity check */
2103 #define RETURN_IF(cond, err)                    \
2104         if (cond) {                             \
2105                 plog_err(err);                  \
2106                 return -1;                      \
2107         };
2108
2109         RETURN_IF(rte_cfg.force_nchannel == 0, "\tError: number of memory channels not specified in [eal options] section\n");
2110         RETURN_IF(prox_cfg.master >= RTE_MAX_LCORE, "\tError: No master core specified (one core needs to have mode=master)\n");
2111
2112 #undef RETURN_IF
2113
2114         return 0;
2115 }
2116
2117 static int calc_tot_rxrings(void)
2118 {
2119         struct lcore_cfg *slconf, *dlconf;
2120         struct task_args *starg, *dtarg;
2121         uint32_t dlcore_id;
2122         uint8_t dtask_id;
2123         struct core_task ct;
2124
2125         dlconf = NULL;
2126         while (core_targ_next_early(&dlconf, &dtarg, 1) == 0) {
2127                 dtarg->tot_rxrings = 0;
2128         }
2129
2130         slconf = NULL;
2131         while (core_targ_next_early(&slconf, &starg, 1) == 0) {
2132                 for (uint8_t idx = 0; idx < MAX_PROTOCOLS; ++idx) {
2133                         for (uint8_t ring_idx = 0; ring_idx < starg->core_task_set[idx].n_elems; ++ring_idx) {
2134                                 ct = starg->core_task_set[idx].core_task[ring_idx];
2135                                 if (!prox_core_active(ct.core, 0)) {
2136                                         set_errf("Core %u is disabled but Core %u task %u is sending to it\n",
2137                                                  ct.core, slconf->id, starg->id);
2138                                         return -1;
2139                                 }
2140
2141                                 dlconf = &lcore_cfg_init[ct.core];
2142
2143                                 if (ct.task >= dlconf->n_tasks_all) {
2144                                         set_errf("Core %u task %u not enabled\n", ct.core, ct.task);
2145                                         return -1;
2146                                 }
2147
2148                                 dtarg = &dlconf->targs[ct.task];
2149
2150                                 /* Control rings are not relevant at this point. */
2151                                 if (ct.type)
2152                                         continue;
2153
2154                                 if (!(dtarg->flags & TASK_ARG_RX_RING)) {
2155                                         set_errf("Core %u task %u is not expecting to receive through a ring\n",
2156                                                  ct.core, ct.task);
2157                                         return -1;
2158                                 }
2159
2160                                 dtarg->tot_rxrings++;
2161                                 if (dtarg->tot_rxrings > MAX_RINGS_PER_TASK) {
2162                                         set_errf("Core %u task %u is receiving from too many tasks",
2163                                                  ct.core, ct.task);
2164                                         return -1;
2165                                 }
2166                         }
2167                 }
2168         }
2169
2170         return 0;
2171 }
2172
2173 static void prox_set_core_mask(void)
2174 {
2175         struct lcore_cfg *lconf;
2176
2177         prox_core_clr();
2178         for (uint8_t lcore_id = 0; lcore_id < RTE_MAX_LCORE; ++lcore_id) {
2179                 lconf = &lcore_cfg_init[lcore_id];
2180                 if (lconf->n_tasks_all > 0 && lconf->targs[0].mode != MASTER) {
2181                         prox_core_set_active(lcore_id);
2182                 }
2183         }
2184 }
2185
2186 static int is_using_no_drop(void)
2187 {
2188         uint32_t lcore_id;
2189         struct lcore_cfg *lconf;
2190         struct task_args *targs;
2191
2192         lcore_id = -1;
2193         while(prox_core_next(&lcore_id, 1) == 0) {
2194                 lconf = &lcore_cfg_init[lcore_id];
2195                 for (uint8_t task_id = 0; task_id < lconf->n_tasks_all; ++task_id) {
2196                         targs = &lconf->targs[task_id];
2197                         if (!(targs->flags & TASK_ARG_DROP))
2198                                 return 1;
2199                 }
2200         }
2201         return 0;
2202 }
2203
2204 int prox_read_config_file(void)
2205 {
2206         set_global_defaults(&prox_cfg);
2207         set_task_defaults(&prox_cfg, lcore_cfg_init);
2208         set_port_defaults();
2209         plog_info("=== Parsing configuration file '%s' ===\n", cfg_file);
2210         struct cfg_file *pcfg = cfg_open(cfg_file);
2211         if (pcfg == NULL) {
2212                 return -1;
2213         }
2214
2215         struct cfg_section* config_sections[] = {
2216                 &lua_cfg          ,
2217                 &var_cfg          ,
2218                 &eal_default_cfg  ,
2219                 &cache_set_cfg    ,
2220                 &port_cfg         ,
2221                 &defaults_cfg     ,
2222                 &settings_cfg     ,
2223                 &core_cfg         ,
2224                 NULL
2225         };
2226
2227         for (struct cfg_section** section = config_sections; *section != NULL; ++section) {
2228                 const char* name = (*section)->name;
2229                 size_t len = strlen(name);
2230                 plog_info("\t*** Reading [%s] section%s ***\n", name, name[len - 1] == '#'? "s": "");
2231                 cfg_parse(pcfg, *section);
2232
2233                 if ((*section)->error) {
2234                         plog_err("At line %u, section [%s], entry %u: '%s'\n\t%s\n"
2235                                  , pcfg->err_line, pcfg->err_section, pcfg->err_entry + 1, pcfg->cur_line,
2236                                  strlen(get_parse_err())? get_parse_err() : err_str);
2237                         cfg_close(pcfg); /* cannot close before printing error, print uses internal buffer */
2238                         return -1;
2239                 }
2240         }
2241
2242         cfg_close(pcfg);
2243
2244         prox_set_core_mask();
2245
2246         if (is_using_no_drop()) {
2247                 prox_cfg.flags &= ~DSF_WAIT_ON_QUIT;
2248         }
2249
2250         if (calc_tot_rxrings()) {
2251                 plog_err("Error in configuration: %s\n", err_str);
2252                 return -1;
2253         }
2254
2255         return check_cfg();
2256 }
2257
2258 static void failed_rte_eal_init(__attribute__((unused))const char *prog_name)
2259 {
2260         plog_err("\tError in rte_eal_init()\n");
2261 }
2262
2263 int prox_setup_rte(const char *prog_name)
2264 {
2265         char *rte_argv[MAX_RTE_ARGV];
2266         char  rte_arg[MAX_RTE_ARGV][MAX_ARG_LEN];
2267         char tmp[PROX_CM_STR_LEN];
2268         /* create mask of used cores */
2269         plog_info("=== Setting up RTE EAL ===\n");
2270
2271         if (prox_cfg.flags & DSF_USE_DUMMY_CPU_TOPO) {
2272                 plog_info("Using dummy cpu topology\n");
2273                 snprintf(tmp, sizeof(tmp), "0x1");
2274         } else {
2275                 prox_core_to_hex(tmp, sizeof(tmp), 0);
2276                 plog_info("\tWorker threads core mask is %s\n", tmp);
2277                 prox_core_to_hex(tmp, sizeof(tmp), 1);
2278                 plog_info("\tWith master core index %u, full core mask is %s\n", prox_cfg.master, tmp);
2279         }
2280
2281         /* fake command line parameters for rte_eal_init() */
2282         int argc = 0;
2283         rte_argv[argc] = strdup(prog_name);
2284         sprintf(rte_arg[++argc], "-c%s", tmp);
2285         rte_argv[argc] = rte_arg[argc];
2286 #if RTE_VERSION >= RTE_VERSION_NUM(1,8,0,0)
2287         if (prox_cfg.flags & DSF_USE_DUMMY_CPU_TOPO)
2288                 sprintf(rte_arg[++argc], "--master-lcore=%u", 0);
2289         else
2290                 sprintf(rte_arg[++argc], "--master-lcore=%u", prox_cfg.master);
2291         rte_argv[argc] = rte_arg[argc];
2292 #else
2293         /* For old DPDK versions, the master core had to be the first
2294            core. */
2295         uint32_t first_core = -1;
2296
2297         if (prox_core_next(&first_core, 1) == -1) {
2298                 plog_err("Can't core ID of first core in use\n");
2299                 return -1;
2300         }
2301         if (first_core != prox_cfg.master) {
2302                 plog_err("The master core needs to be the first core (master core = %u, first core = %u).\n", first_core, prox_cfg.master);
2303                 return -1;
2304         }
2305 #endif
2306
2307         if (rte_cfg.memory) {
2308                 sprintf(rte_arg[++argc], "-m%u", rte_cfg.memory);
2309                 rte_argv[argc] = rte_arg[argc];
2310         }
2311
2312         if (rte_cfg.force_nchannel) {
2313                 sprintf(rte_arg[++argc], "-n%u", rte_cfg.force_nchannel);
2314                 rte_argv[argc] = rte_arg[argc];
2315         }
2316
2317         if (rte_cfg.force_nrank) {
2318                 sprintf(rte_arg[++argc], "-r%u", rte_cfg.force_nrank);
2319                 rte_argv[argc] = rte_arg[argc];
2320         }
2321
2322         if (rte_cfg.no_hugetlbfs) {
2323                 strcpy(rte_arg[++argc], "--no-huge");
2324                 rte_argv[argc] = rte_arg[argc];
2325         }
2326
2327         if (rte_cfg.no_pci) {
2328                 strcpy(rte_arg[++argc], "--no-pci");
2329                 rte_argv[argc] = rte_arg[argc];
2330         }
2331
2332         if (rte_cfg.no_hpet) {
2333                 strcpy(rte_arg[++argc], "--no-hpet");
2334                 rte_argv[argc] = rte_arg[argc];
2335         }
2336
2337         if (rte_cfg.no_shconf) {
2338                 strcpy(rte_arg[++argc], "--no-shconf");
2339                 rte_argv[argc] = rte_arg[argc];
2340         }
2341
2342         if (rte_cfg.eal != NULL) {
2343                 char *ptr = rte_cfg.eal;
2344                 char *ptr2;
2345                 while (ptr != NULL) {
2346                         while (isspace(*ptr))
2347                                 ptr++;
2348                         ptr2 = ptr;
2349                         ptr = strchr(ptr, ' ');
2350                         if (ptr) {
2351                                 *ptr++ = '\0';
2352                         }
2353                         prox_strncpy(rte_arg[++argc], ptr2, MAX_ARG_LEN);
2354                         rte_argv[argc] = rte_arg[argc];
2355                 }
2356         }
2357
2358         if (rte_cfg.hugedir != NULL) {
2359                 strcpy(rte_arg[++argc], "--huge-dir");
2360                 rte_argv[argc] = rte_arg[argc];
2361                 rte_argv[++argc] = rte_cfg.hugedir;
2362         }
2363
2364         if (rte_cfg.no_output) {
2365                 rte_log_set_global_level(0);
2366         }
2367         /* init EAL */
2368         plog_info("\tEAL command line:");
2369         if (argc >= MAX_RTE_ARGV) {
2370                 plog_err("too many arguments for EAL\n");
2371                 return -1;
2372         }
2373
2374         for (int h = 0; h <= argc; ++h) {
2375                 plog_info(" %s", rte_argv[h]);
2376         }
2377         plog_info("\n");
2378
2379         rte_set_application_usage_hook(failed_rte_eal_init);
2380         if (rte_eal_init(++argc, rte_argv) < 0) {
2381                 plog_err("\tError in rte_eal_init()\n");
2382                 return -1;
2383         }
2384         plog_info("\tEAL Initialized\n");
2385
2386         if (prox_cfg.flags & DSF_USE_DUMMY_CPU_TOPO)
2387                 return 0;
2388
2389         /* check if all active cores are in enabled in DPDK */
2390         for (uint32_t lcore_id = 0; lcore_id < RTE_MAX_LCORE; ++lcore_id) {
2391                 if (lcore_id == prox_cfg.master) {
2392                         if (!rte_lcore_is_enabled(lcore_id))
2393                                 return -1;
2394                 }
2395                 else if (rte_lcore_is_enabled(lcore_id) != prox_core_active(lcore_id, 0)) {
2396                         plog_err("\tFailed to enable lcore %u\n", lcore_id);
2397                         return -1;
2398                 }
2399                 else if (lcore_cfg_init[lcore_id].n_tasks_all != 0 && !rte_lcore_is_enabled(lcore_id)) {
2400                         plog_err("\tFailed to enable lcore %u\n", lcore_id);
2401                         return -1;
2402                 }
2403         }
2404         uint16_t port_id;
2405         for (int i = 0; i < n_deferred_ports; i++) {
2406                 if (prox_rte_eth_dev_get_port_by_name(deferred_port[i].name, &port_id) != 0) {
2407                         plog_err("Did not find port name %s used while reading %s\n", deferred_port[i].name, deferred_port[i].is_rx_port ? "rx port" : "tx_port");
2408                         return -1;
2409                 }
2410                 plog_info("\tport %s is port id %d\n", deferred_port[i].name, port_id);
2411                 if (deferred_port[i].is_rx_port) {
2412                         deferred_port[i].targ->rx_port_queue[0].port = port_id;
2413                         deferred_port[i].targ->nb_rxports = 1;
2414                 } else {
2415                         deferred_port[i].targ->tx_port_queue[0].port = port_id;
2416                         deferred_port[i].targ->nb_txports = 1;
2417                 }
2418         }
2419         return 0;
2420 }