service: fix service core launch
[dpdk.git] / test / test / test_service_cores.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2017 Intel Corporation
3  */
4
5 #include <rte_common.h>
6 #include <rte_hexdump.h>
7 #include <rte_mbuf.h>
8 #include <rte_malloc.h>
9 #include <rte_memcpy.h>
10 #include <rte_cycles.h>
11
12 #include <rte_service.h>
13 #include <rte_service_component.h>
14
15 #include "test.h"
16
17 /* used as the service core ID */
18 static uint32_t slcore_id;
19 /* used as timestamp to detect if a service core is running */
20 static uint64_t service_tick;
21 /* used as a flag to check if a function was run */
22 static uint32_t service_remote_launch_flag;
23
24 #define SERVICE_DELAY 1
25
26 #define DUMMY_SERVICE_NAME "dummy_service"
27 #define MT_SAFE_SERVICE_NAME "mt_safe_service"
28
29 static int
30 testsuite_setup(void)
31 {
32         slcore_id = rte_get_next_lcore(/* start core */ -1,
33                                        /* skip master */ 1,
34                                        /* wrap */ 0);
35
36         return TEST_SUCCESS;
37 }
38
39 static void
40 testsuite_teardown(void)
41 {
42         /* release service cores? */
43 }
44
45 static int32_t dummy_cb(void *args)
46 {
47         RTE_SET_USED(args);
48         service_tick++;
49         rte_delay_ms(SERVICE_DELAY);
50         return 0;
51 }
52
53 static int32_t dummy_mt_unsafe_cb(void *args)
54 {
55         /* before running test, the initialization has set pass_test to 1.
56          * If the cmpset in service-cores is working correctly, the code here
57          * should never fail to take the lock. If the lock *is* taken, fail the
58          * test, because two threads are concurrently in a non-MT safe callback.
59          */
60         uint32_t *test_params = args;
61         uint32_t *atomic_lock = &test_params[0];
62         uint32_t *pass_test = &test_params[1];
63         int lock_taken = rte_atomic32_cmpset(atomic_lock, 0, 1);
64         if (lock_taken) {
65                 /* delay with the lock held */
66                 rte_delay_ms(250);
67                 rte_atomic32_clear((rte_atomic32_t *)atomic_lock);
68         } else {
69                 /* 2nd thread will fail to take lock, so set pass flag */
70                 *pass_test = 0;
71         }
72
73         return 0;
74 }
75
76
77 static int32_t dummy_mt_safe_cb(void *args)
78 {
79         /* Atomic checks to ensure MT safe services allow > 1 thread to
80          * concurrently run the callback. The concept is as follows;
81          * 1) if lock is available, take the lock then delay
82          * 2) if first lock is taken, and a thread arrives in the CB, we know
83          *    that 2 threads are running the callback at the same time: MT safe
84          */
85         uint32_t *test_params = args;
86         uint32_t *atomic_lock = &test_params[0];
87         uint32_t *pass_test = &test_params[1];
88         int lock_taken = rte_atomic32_cmpset(atomic_lock, 0, 1);
89         if (lock_taken) {
90                 /* delay with the lock held */
91                 rte_delay_ms(250);
92                 rte_atomic32_clear((rte_atomic32_t *)atomic_lock);
93         } else {
94                 /* 2nd thread will fail to take lock, so set pass flag */
95                 *pass_test = 1;
96         }
97
98         return 0;
99 }
100
101 /* unregister all services */
102 static int
103 unregister_all(void)
104 {
105         uint32_t i;
106
107         TEST_ASSERT_EQUAL(-EINVAL, rte_service_component_unregister(1000),
108                         "Unregistered invalid service id");
109
110         uint32_t c = rte_service_get_count();
111         for (i = 0; i < c; i++) {
112                 TEST_ASSERT_EQUAL(0, rte_service_component_unregister(i),
113                                 "Error unregistering a valid service");
114         }
115
116         rte_service_lcore_reset_all();
117
118         return TEST_SUCCESS;
119 }
120
121 /* register a single dummy service */
122 static int
123 dummy_register(void)
124 {
125         /* make sure there are no remains from previous tests */
126         unregister_all();
127
128         struct rte_service_spec service;
129         memset(&service, 0, sizeof(struct rte_service_spec));
130
131         TEST_ASSERT_EQUAL(-EINVAL,
132                         rte_service_component_register(&service, NULL),
133                         "Invalid callback");
134         service.callback = dummy_cb;
135
136         TEST_ASSERT_EQUAL(-EINVAL,
137                         rte_service_component_register(&service, NULL),
138                         "Invalid name");
139         snprintf(service.name, sizeof(service.name), DUMMY_SERVICE_NAME);
140
141         uint32_t id;
142         TEST_ASSERT_EQUAL(0, rte_service_component_register(&service, &id),
143                         "Failed to register valid service");
144
145         rte_service_component_runstate_set(id, 1);
146
147         return TEST_SUCCESS;
148 }
149
150 /* verify get_by_name() service lookup */
151 static int
152 service_get_by_name(void)
153 {
154         unregister_all();
155
156         uint32_t sid;
157         TEST_ASSERT_EQUAL(-ENODEV,
158                         rte_service_get_by_name(DUMMY_SERVICE_NAME, &sid),
159                         "get by name with invalid name should return -ENODEV");
160         TEST_ASSERT_EQUAL(-EINVAL,
161                         rte_service_get_by_name(DUMMY_SERVICE_NAME, 0x0),
162                         "get by name with NULL ptr should return -ENODEV");
163
164         /* register service */
165         struct rte_service_spec service;
166         memset(&service, 0, sizeof(struct rte_service_spec));
167         TEST_ASSERT_EQUAL(-EINVAL,
168                         rte_service_component_register(&service, NULL),
169                         "Invalid callback");
170         service.callback = dummy_cb;
171         TEST_ASSERT_EQUAL(-EINVAL,
172                         rte_service_component_register(&service, NULL),
173                         "Invalid name");
174         snprintf(service.name, sizeof(service.name), DUMMY_SERVICE_NAME);
175         TEST_ASSERT_EQUAL(0, rte_service_component_register(&service, NULL),
176                         "Failed to register valid service");
177
178         /* we unregistered all service, now registering 1, should be id 0 */
179         uint32_t service_id_as_expected = 0;
180         TEST_ASSERT_EQUAL(0, rte_service_get_by_name(DUMMY_SERVICE_NAME, &sid),
181                         "Service get_by_name should return 0 on valid inputs");
182         TEST_ASSERT_EQUAL(service_id_as_expected, sid,
183                         "Service get_by_name should equal expected id");
184
185         unregister_all();
186
187         /* ensure after unregister, get_by_name returns NULL */
188         TEST_ASSERT_EQUAL(-ENODEV,
189                         rte_service_get_by_name(DUMMY_SERVICE_NAME, &sid),
190                         "get by name should return -ENODEV after unregister");
191
192         return TEST_SUCCESS;
193 }
194
195 /* verify probe of capabilities */
196 static int
197 service_probe_capability(void)
198 {
199         unregister_all();
200
201         struct rte_service_spec service;
202         memset(&service, 0, sizeof(struct rte_service_spec));
203         service.callback = dummy_cb;
204         snprintf(service.name, sizeof(service.name), DUMMY_SERVICE_NAME);
205         service.capabilities |= RTE_SERVICE_CAP_MT_SAFE;
206         TEST_ASSERT_EQUAL(0, rte_service_component_register(&service, NULL),
207                         "Register of MT SAFE service failed");
208
209         /* verify flag is enabled */
210         const uint32_t sid = 0;
211         int32_t mt = rte_service_probe_capability(sid, RTE_SERVICE_CAP_MT_SAFE);
212         TEST_ASSERT_EQUAL(1, mt, "MT SAFE capability flag not set.");
213
214
215         unregister_all();
216
217         memset(&service, 0, sizeof(struct rte_service_spec));
218         service.callback = dummy_cb;
219         snprintf(service.name, sizeof(service.name), DUMMY_SERVICE_NAME);
220         TEST_ASSERT_EQUAL(0, rte_service_component_register(&service, NULL),
221                         "Register of non-MT safe service failed");
222
223         /* verify flag is enabled */
224         mt = rte_service_probe_capability(sid, RTE_SERVICE_CAP_MT_SAFE);
225         TEST_ASSERT_EQUAL(0, mt, "MT SAFE cap flag set on non MT SAFE service");
226
227         return unregister_all();
228 }
229
230 /* verify the service name */
231 static int
232 service_name(void)
233 {
234         const char *name = rte_service_get_name(0);
235         int equal = strcmp(name, DUMMY_SERVICE_NAME);
236         TEST_ASSERT_EQUAL(0, equal, "Error: Service name not correct");
237
238         return unregister_all();
239 }
240
241 /* verify service dump */
242 static int
243 service_dump(void)
244 {
245         const uint32_t sid = 0;
246         rte_service_set_stats_enable(sid, 1);
247         rte_service_dump(stdout, 0);
248         rte_service_set_stats_enable(sid, 0);
249         rte_service_dump(stdout, 0);
250         return unregister_all();
251 }
252
253 /* start and stop a service */
254 static int
255 service_start_stop(void)
256 {
257         const uint32_t sid = 0;
258
259         /* runstate_get() returns if service is running and slcore is mapped */
260         TEST_ASSERT_EQUAL(0, rte_service_lcore_add(slcore_id),
261                         "Service core add did not return zero");
262         int ret = rte_service_map_lcore_set(sid, slcore_id, 1);
263         TEST_ASSERT_EQUAL(0, ret,
264                         "Enabling service core, expected 0 got %d", ret);
265
266         TEST_ASSERT_EQUAL(0, rte_service_runstate_get(sid),
267                         "Error: Service should be stopped");
268
269         TEST_ASSERT_EQUAL(0, rte_service_runstate_set(sid, 0),
270                         "Error: Service stopped returned non-zero");
271
272         TEST_ASSERT_EQUAL(0, rte_service_runstate_get(sid),
273                         "Error: Service is running - should be stopped");
274
275         TEST_ASSERT_EQUAL(0, rte_service_runstate_set(sid, 1),
276                         "Error: Service start returned non-zero");
277
278         TEST_ASSERT_EQUAL(1, rte_service_runstate_get(sid),
279                         "Error: Service is not running");
280
281         return unregister_all();
282 }
283
284
285 static int
286 service_remote_launch_func(void *arg)
287 {
288         RTE_SET_USED(arg);
289         service_remote_launch_flag = 1;
290         return 0;
291 }
292
293 /* enable and disable a lcore for a service */
294 static int
295 service_lcore_en_dis_able(void)
296 {
297         const uint32_t sid = 0;
298
299         /* expected failure cases */
300         TEST_ASSERT_EQUAL(-EINVAL, rte_service_map_lcore_set(sid, 100000, 1),
301                         "Enable on invalid core did not fail");
302         TEST_ASSERT_EQUAL(-EINVAL, rte_service_map_lcore_set(sid, 100000, 0),
303                         "Disable on invalid core did not fail");
304
305         /* add service core to allow enabling */
306         TEST_ASSERT_EQUAL(0, rte_service_lcore_add(slcore_id),
307                         "Add service core failed when not in use before");
308
309         /* valid enable */
310         TEST_ASSERT_EQUAL(0, rte_service_map_lcore_set(sid, slcore_id, 1),
311                         "Enabling valid service and core failed");
312         TEST_ASSERT_EQUAL(1, rte_service_map_lcore_get(sid, slcore_id),
313                         "Enabled core returned not-enabled");
314
315         /* valid disable */
316         TEST_ASSERT_EQUAL(0, rte_service_map_lcore_set(sid, slcore_id, 0),
317                         "Disabling valid service and lcore failed");
318         TEST_ASSERT_EQUAL(0, rte_service_map_lcore_get(sid, slcore_id),
319                         "Disabled core returned enabled");
320
321         /* call remote_launch to verify that app can launch ex-service lcore */
322         service_remote_launch_flag = 0;
323         rte_eal_wait_lcore(slcore_id);
324         int ret = rte_eal_remote_launch(service_remote_launch_func, NULL,
325                                         slcore_id);
326         TEST_ASSERT_EQUAL(0, ret, "Ex-service core remote launch failed.");
327         rte_eal_mp_wait_lcore();
328         TEST_ASSERT_EQUAL(1, service_remote_launch_flag,
329                         "Ex-service core function call had no effect.");
330
331         return unregister_all();
332 }
333
334 static int
335 service_lcore_running_check(void)
336 {
337         uint64_t tick = service_tick;
338         rte_delay_ms(SERVICE_DELAY * 100);
339         /* if (tick != service_tick) we know the lcore as polled the service */
340         return tick != service_tick;
341 }
342
343 static int
344 service_lcore_add_del(void)
345 {
346         /* check initial count */
347         TEST_ASSERT_EQUAL(0, rte_service_lcore_count(),
348                         "Service lcore count has value before adding a lcore");
349
350         /* check service lcore add */
351         TEST_ASSERT_EQUAL(0, rte_service_lcore_add(slcore_id),
352                         "Add service core failed when not in use before");
353         TEST_ASSERT_EQUAL(-EALREADY, rte_service_lcore_add(slcore_id),
354                         "Add service core failed to refuse in-use lcore");
355
356         /* check count */
357         TEST_ASSERT_EQUAL(1, rte_service_lcore_count(),
358                         "Service core count not equal to one");
359
360         /* retrieve core list, checking lcore ids */
361         const uint32_t size = 4;
362         uint32_t service_core_ids[size];
363         int32_t n = rte_service_lcore_list(service_core_ids, size);
364         TEST_ASSERT_EQUAL(1, n, "Service core list return should equal 1");
365         TEST_ASSERT_EQUAL(slcore_id, service_core_ids[0],
366                                 "Service core list lcore must equal slcore_id");
367
368         /* recheck count, add more cores, and check count */
369         TEST_ASSERT_EQUAL(1, rte_service_lcore_count(),
370                         "Service core count not equal to one");
371         uint32_t slcore_1 = rte_get_next_lcore(/* start core */ -1,
372                                                /* skip master */ 1,
373                                                /* wrap */ 0);
374         TEST_ASSERT_EQUAL(0, rte_service_lcore_add(slcore_1),
375                         "Service core add did not return zero");
376         uint32_t slcore_2 = rte_get_next_lcore(/* start core */ slcore_1,
377                                                /* skip master */ 1,
378                                                /* wrap */ 0);
379         TEST_ASSERT_EQUAL(0, rte_service_lcore_add(slcore_2),
380                         "Service core add did not return zero");
381
382         uint32_t count = rte_service_lcore_count();
383         const uint32_t cores_at_this_point = 3;
384         TEST_ASSERT_EQUAL(cores_at_this_point, count,
385                         "Service core count %d, expected %d", count,
386                         cores_at_this_point);
387
388         /* check longer service core list */
389         n = rte_service_lcore_list(service_core_ids, size);
390         TEST_ASSERT_EQUAL(3, n, "Service core list return should equal 3");
391         TEST_ASSERT_EQUAL(slcore_id, service_core_ids[0],
392                                 "Service core list[0] lcore must equal 1");
393         TEST_ASSERT_EQUAL(slcore_1, service_core_ids[1],
394                                 "Service core list[1] lcore must equal 2");
395         TEST_ASSERT_EQUAL(slcore_2, service_core_ids[2],
396                                 "Service core list[2] lcore must equal 3");
397
398         /* recheck count, remove lcores, check remaining lcore_id is correct */
399         TEST_ASSERT_EQUAL(3, rte_service_lcore_count(),
400                         "Service core count not equal to three");
401         TEST_ASSERT_EQUAL(0, rte_service_lcore_del(slcore_1),
402                         "Service core add did not return zero");
403         TEST_ASSERT_EQUAL(0, rte_service_lcore_del(slcore_2),
404                         "Service core add did not return zero");
405         TEST_ASSERT_EQUAL(1, rte_service_lcore_count(),
406                         "Service core count not equal to one");
407         n = rte_service_lcore_list(service_core_ids, size);
408         TEST_ASSERT_EQUAL(1, n, "Service core list return should equal one");
409         TEST_ASSERT_EQUAL(slcore_id, service_core_ids[0],
410                                 "Service core list[0] lcore must equal %d",
411                                 slcore_id);
412
413         return unregister_all();
414 }
415
416 static int
417 service_threaded_test(int mt_safe)
418 {
419         unregister_all();
420
421         /* add next 2 cores */
422         uint32_t slcore_1 = rte_get_next_lcore(/* start core */ -1,
423                                                /* skip master */ 1,
424                                                /* wrap */ 0);
425         TEST_ASSERT_EQUAL(0, rte_service_lcore_add(slcore_1),
426                         "mt safe lcore add fail");
427         uint32_t slcore_2 = rte_get_next_lcore(/* start core */ slcore_1,
428                                                /* skip master */ 1,
429                                                /* wrap */ 0);
430         TEST_ASSERT_EQUAL(0, rte_service_lcore_add(slcore_2),
431                         "mt safe lcore add fail");
432
433         /* Use atomic locks to verify that two threads are in the same function
434          * at the same time. These are passed to the unit tests through the
435          * callback userdata parameter
436          */
437         uint32_t test_params[2];
438         memset(test_params, 0, sizeof(uint32_t) * 2);
439
440         /* register MT safe service. */
441         struct rte_service_spec service;
442         memset(&service, 0, sizeof(struct rte_service_spec));
443         service.callback_userdata = test_params;
444         snprintf(service.name, sizeof(service.name), MT_SAFE_SERVICE_NAME);
445
446         if (mt_safe) {
447                 service.callback = dummy_mt_safe_cb;
448                 service.capabilities |= RTE_SERVICE_CAP_MT_SAFE;
449         } else
450                 service.callback = dummy_mt_unsafe_cb;
451
452         uint32_t id;
453         TEST_ASSERT_EQUAL(0, rte_service_component_register(&service, &id),
454                         "Register of MT SAFE service failed");
455
456         const uint32_t sid = 0;
457         TEST_ASSERT_EQUAL(0, rte_service_runstate_set(sid, 1),
458                         "Starting valid service failed");
459         TEST_ASSERT_EQUAL(0, rte_service_map_lcore_set(sid, slcore_1, 1),
460                         "Failed to enable lcore 1 on mt safe service");
461         TEST_ASSERT_EQUAL(0, rte_service_map_lcore_set(sid, slcore_2, 1),
462                         "Failed to enable lcore 2 on mt safe service");
463         rte_service_lcore_start(slcore_1);
464         rte_service_lcore_start(slcore_2);
465
466         /* wait for the worker threads to run */
467         rte_delay_ms(500);
468         rte_service_lcore_stop(slcore_1);
469         rte_service_lcore_stop(slcore_2);
470
471         TEST_ASSERT_EQUAL(0, test_params[1],
472                         "Service run with component runstate = 0");
473
474         /* enable backend runstate: the service should run after this */
475         rte_service_component_runstate_set(id, 1);
476
477         /* initialize to pass, see callback comment for details */
478         if (!mt_safe)
479                 test_params[1] = 1;
480
481         /* wait for lcores before start() */
482         rte_eal_wait_lcore(slcore_1);
483         rte_eal_wait_lcore(slcore_2);
484
485         rte_service_lcore_start(slcore_1);
486         rte_service_lcore_start(slcore_2);
487
488         /* wait for the worker threads to run */
489         rte_delay_ms(500);
490         rte_service_lcore_stop(slcore_1);
491         rte_service_lcore_stop(slcore_2);
492
493         TEST_ASSERT_EQUAL(1, test_params[1],
494                         "MT Safe service not run by two cores concurrently");
495         TEST_ASSERT_EQUAL(0, rte_service_runstate_set(sid, 0),
496                         "Failed to stop MT Safe service");
497
498         rte_eal_wait_lcore(slcore_1);
499         rte_eal_wait_lcore(slcore_2);
500         unregister_all();
501
502         /* return the value of the callback pass_test variable to caller */
503         return test_params[1];
504 }
505
506 /* tests an MT SAFE service with two cores. The callback function ensures that
507  * two threads access the callback concurrently.
508  */
509 static int
510 service_mt_safe_poll(void)
511 {
512         int mt_safe = 1;
513         TEST_ASSERT_EQUAL(1, service_threaded_test(mt_safe),
514                         "Error: MT Safe service not run by two cores concurrently");
515         return TEST_SUCCESS;
516 }
517
518 /* tests a NON mt safe service with two cores, the callback is serialized
519  * using the atomic cmpset.
520  */
521 static int
522 service_mt_unsafe_poll(void)
523 {
524         int mt_safe = 0;
525         TEST_ASSERT_EQUAL(1, service_threaded_test(mt_safe),
526                         "Error: NON MT Safe service run by two cores concurrently");
527         return TEST_SUCCESS;
528 }
529
530 static int32_t
531 delay_as_a_mt_safe_service(void *args)
532 {
533         RTE_SET_USED(args);
534         uint32_t *params = args;
535
536         /* retrieve done flag and atomic lock to inc/dec */
537         uint32_t *done = &params[0];
538         rte_atomic32_t *lock = (rte_atomic32_t *)&params[1];
539
540         while (!*done) {
541                 rte_atomic32_inc(lock);
542                 rte_delay_us(500);
543                 if (rte_atomic32_read(lock) > 1)
544                         /* pass: second core has simultaneously incremented */
545                         *done = 1;
546                 rte_atomic32_dec(lock);
547         }
548
549         return 0;
550 }
551
552 static int32_t
553 delay_as_a_service(void *args)
554 {
555         uint32_t *done = (uint32_t *)args;
556         while (!*done)
557                 rte_delay_ms(5);
558         return 0;
559 }
560
561 static int
562 service_run_on_app_core_func(void *arg)
563 {
564         uint32_t *delay_service_id = (uint32_t *)arg;
565         return rte_service_run_iter_on_app_lcore(*delay_service_id, 1);
566 }
567
568 static int
569 service_app_lcore_poll_impl(const int mt_safe)
570 {
571         uint32_t params[2] = {0};
572
573         struct rte_service_spec service;
574         memset(&service, 0, sizeof(struct rte_service_spec));
575         snprintf(service.name, sizeof(service.name), MT_SAFE_SERVICE_NAME);
576         if (mt_safe) {
577                 service.callback = delay_as_a_mt_safe_service;
578                 service.callback_userdata = params;
579                 service.capabilities |= RTE_SERVICE_CAP_MT_SAFE;
580         } else {
581                 service.callback = delay_as_a_service;
582                 service.callback_userdata = &params;
583         }
584
585         uint32_t id;
586         TEST_ASSERT_EQUAL(0, rte_service_component_register(&service, &id),
587                         "Register of app lcore delay service failed");
588
589         rte_service_component_runstate_set(id, 1);
590         rte_service_runstate_set(id, 1);
591
592         uint32_t app_core2 = rte_get_next_lcore(slcore_id, 1, 1);
593         rte_eal_wait_lcore(app_core2);
594         int app_core2_ret = rte_eal_remote_launch(service_run_on_app_core_func,
595                                                   &id, app_core2);
596
597         rte_delay_ms(100);
598
599         int app_core1_ret = service_run_on_app_core_func(&id);
600
601         /* flag done, then wait for the spawned 2nd core to return */
602         params[0] = 1;
603         rte_eal_mp_wait_lcore();
604
605         /* core two gets launched first - and should hold the service lock */
606         TEST_ASSERT_EQUAL(0, app_core2_ret,
607                         "App core2 : run service didn't return zero");
608
609         if (mt_safe) {
610                 /* mt safe should have both cores return 0 for success */
611                 TEST_ASSERT_EQUAL(0, app_core1_ret,
612                                 "MT Safe: App core1 didn't return 0");
613         } else {
614                 /* core one attempts to run later - should be blocked */
615                 TEST_ASSERT_EQUAL(-EBUSY, app_core1_ret,
616                                 "MT Unsafe: App core1 didn't return -EBUSY");
617         }
618
619         unregister_all();
620
621         return TEST_SUCCESS;
622 }
623
624 static int
625 service_app_lcore_mt_safe(void)
626 {
627         const int mt_safe = 1;
628         return service_app_lcore_poll_impl(mt_safe);
629 }
630
631 static int
632 service_app_lcore_mt_unsafe(void)
633 {
634         const int mt_safe = 0;
635         return service_app_lcore_poll_impl(mt_safe);
636 }
637
638 /* start and stop a service core - ensuring it goes back to sleep */
639 static int
640 service_lcore_start_stop(void)
641 {
642         /* start service core and service, create mapping so tick() runs */
643         const uint32_t sid = 0;
644         TEST_ASSERT_EQUAL(0, rte_service_runstate_set(sid, 1),
645                         "Starting valid service failed");
646         TEST_ASSERT_EQUAL(-EINVAL, rte_service_map_lcore_set(sid, slcore_id, 1),
647                         "Enabling valid service on non-service core must fail");
648
649         /* core start */
650         TEST_ASSERT_EQUAL(-EINVAL, rte_service_lcore_start(slcore_id),
651                         "Service core start without add should return EINVAL");
652         TEST_ASSERT_EQUAL(0, rte_service_lcore_add(slcore_id),
653                         "Service core add did not return zero");
654         TEST_ASSERT_EQUAL(0, rte_service_map_lcore_set(sid, slcore_id, 1),
655                         "Enabling valid service on valid core failed");
656         TEST_ASSERT_EQUAL(0, rte_service_lcore_start(slcore_id),
657                         "Service core start after add failed");
658         TEST_ASSERT_EQUAL(-EALREADY, rte_service_lcore_start(slcore_id),
659                         "Service core expected as running but was stopped");
660
661         /* ensures core really is running the service function */
662         TEST_ASSERT_EQUAL(1, service_lcore_running_check(),
663                         "Service core expected to poll service but it didn't");
664
665         /* core stop */
666         TEST_ASSERT_EQUAL(-EBUSY, rte_service_lcore_stop(slcore_id),
667                         "Service core running a service should return -EBUSY");
668         TEST_ASSERT_EQUAL(0, rte_service_runstate_set(sid, 0),
669                         "Stopping valid service failed");
670         TEST_ASSERT_EQUAL(-EINVAL, rte_service_lcore_stop(100000),
671                         "Invalid Service core stop should return -EINVAL");
672         TEST_ASSERT_EQUAL(0, rte_service_lcore_stop(slcore_id),
673                         "Service core stop expected to return 0");
674         TEST_ASSERT_EQUAL(-EALREADY, rte_service_lcore_stop(slcore_id),
675                         "Already stopped service core should return -EALREADY");
676
677         /* ensure service is not longer running */
678         TEST_ASSERT_EQUAL(0, service_lcore_running_check(),
679                         "Service core expected to poll service but it didn't");
680
681         TEST_ASSERT_EQUAL(0, rte_service_lcore_del(slcore_id),
682                         "Service core del did not return zero");
683
684         return unregister_all();
685 }
686
687 static struct unit_test_suite service_tests  = {
688         .suite_name = "service core test suite",
689         .setup = testsuite_setup,
690         .teardown = testsuite_teardown,
691         .unit_test_cases = {
692                 TEST_CASE_ST(dummy_register, NULL, unregister_all),
693                 TEST_CASE_ST(dummy_register, NULL, service_name),
694                 TEST_CASE_ST(dummy_register, NULL, service_get_by_name),
695                 TEST_CASE_ST(dummy_register, NULL, service_dump),
696                 TEST_CASE_ST(dummy_register, NULL, service_probe_capability),
697                 TEST_CASE_ST(dummy_register, NULL, service_start_stop),
698                 TEST_CASE_ST(dummy_register, NULL, service_lcore_add_del),
699                 TEST_CASE_ST(dummy_register, NULL, service_lcore_start_stop),
700                 TEST_CASE_ST(dummy_register, NULL, service_lcore_en_dis_able),
701                 TEST_CASE_ST(dummy_register, NULL, service_mt_unsafe_poll),
702                 TEST_CASE_ST(dummy_register, NULL, service_mt_safe_poll),
703                 TEST_CASE_ST(dummy_register, NULL, service_app_lcore_mt_safe),
704                 TEST_CASE_ST(dummy_register, NULL, service_app_lcore_mt_unsafe),
705                 TEST_CASES_END() /**< NULL terminate unit test array */
706         }
707 };
708
709 static int
710 test_service_common(void)
711 {
712         return unit_test_suite_runner(&service_tests);
713 }
714
715 REGISTER_TEST_COMMAND(service_autotest, test_service_common);