d9e6790da37aee4d9f6955e0c95f1c4ea4925b74
[dpdk.git] / lib / librte_eal / common / hotplug_mp.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2018 Intel Corporation
3  */
4 #include <string.h>
5
6 #include <rte_eal.h>
7 #include <rte_alarm.h>
8 #include <rte_string_fns.h>
9 #include <rte_devargs.h>
10
11 #include "hotplug_mp.h"
12 #include "eal_private.h"
13
14 #define MP_TIMEOUT_S 5 /**< 5 seconds timeouts */
15
16 struct mp_reply_bundle {
17         struct rte_mp_msg msg;
18         void *peer;
19 };
20
21 static int cmp_dev_name(const struct rte_device *dev, const void *_name)
22 {
23         const char *name = _name;
24
25         return strcmp(dev->name, name);
26 }
27
28 /**
29  * Secondary to primary request.
30  * start from function eal_dev_hotplug_request_to_primary.
31  *
32  * device attach on secondary:
33  * a) secondary send sync request to the primary.
34  * b) primary receive the request and attach the new device if
35  *    failed goto i).
36  * c) primary forward attach sync request to all secondary.
37  * d) secondary receive the request and attach the device and send a reply.
38  * e) primary check the reply if all success goes to j).
39  * f) primary send attach rollback sync request to all secondary.
40  * g) secondary receive the request and detach the device and send a reply.
41  * h) primary receive the reply and detach device as rollback action.
42  * i) send attach fail to secondary as a reply of step a), goto k).
43  * j) send attach success to secondary as a reply of step a).
44  * k) secondary receive reply and return.
45  *
46  * device detach on secondary:
47  * a) secondary send sync request to the primary.
48  * b) primary send detach sync request to all secondary.
49  * c) secondary detach the device and send a reply.
50  * d) primary check the reply if all success goes to g).
51  * e) primary send detach rollback sync request to all secondary.
52  * f) secondary receive the request and attach back device. goto h).
53  * g) primary detach the device if success goto i), else goto e).
54  * h) primary send detach fail to secondary as a reply of step a), goto j).
55  * i) primary send detach success to secondary as a reply of step a).
56  * j) secondary receive reply and return.
57  */
58
59 static int
60 send_response_to_secondary(const struct eal_dev_mp_req *req,
61                         int result,
62                         const void *peer)
63 {
64         struct rte_mp_msg mp_resp;
65         struct eal_dev_mp_req *resp =
66                 (struct eal_dev_mp_req *)mp_resp.param;
67         int ret;
68
69         memset(&mp_resp, 0, sizeof(mp_resp));
70         mp_resp.len_param = sizeof(*resp);
71         strlcpy(mp_resp.name, EAL_DEV_MP_ACTION_REQUEST, sizeof(mp_resp.name));
72         memcpy(resp, req, sizeof(*req));
73         resp->result = result;
74
75         ret = rte_mp_reply(&mp_resp, peer);
76         if (ret != 0)
77                 RTE_LOG(ERR, EAL, "failed to send response to secondary\n");
78
79         return ret;
80 }
81
82 static void
83 __handle_secondary_request(void *param)
84 {
85         struct mp_reply_bundle *bundle = param;
86                 const struct rte_mp_msg *msg = &bundle->msg;
87         const struct eal_dev_mp_req *req =
88                 (const struct eal_dev_mp_req *)msg->param;
89         struct eal_dev_mp_req tmp_req;
90         struct rte_devargs *da;
91         struct rte_device *dev;
92         struct rte_bus *bus;
93         int ret = 0;
94
95         tmp_req = *req;
96
97         if (req->t == EAL_DEV_REQ_TYPE_ATTACH) {
98                 ret = local_dev_probe(req->devargs, &dev);
99                 if (ret != 0) {
100                         RTE_LOG(ERR, EAL, "Failed to hotplug add device on primary\n");
101                         if (ret != -EEXIST)
102                                 goto finish;
103                 }
104                 ret = eal_dev_hotplug_request_to_secondary(&tmp_req);
105                 if (ret != 0) {
106                         RTE_LOG(ERR, EAL, "Failed to send hotplug request to secondary\n");
107                         ret = -ENOMSG;
108                         goto rollback;
109                 }
110                 if (tmp_req.result != 0) {
111                         ret = tmp_req.result;
112                         RTE_LOG(ERR, EAL, "Failed to hotplug add device on secondary\n");
113                         if (ret != -EEXIST)
114                                 goto rollback;
115                 }
116         } else if (req->t == EAL_DEV_REQ_TYPE_DETACH) {
117                 da = calloc(1, sizeof(*da));
118                 if (da == NULL) {
119                         ret = -ENOMEM;
120                         goto finish;
121                 }
122
123                 ret = rte_devargs_parse(da, req->devargs);
124                 if (ret != 0)
125                         goto finish;
126
127                 ret = eal_dev_hotplug_request_to_secondary(&tmp_req);
128                 if (ret != 0) {
129                         RTE_LOG(ERR, EAL, "Failed to send hotplug request to secondary\n");
130                         ret = -ENOMSG;
131                         goto rollback;
132                 }
133
134                 bus = rte_bus_find_by_name(da->bus->name);
135                 if (bus == NULL) {
136                         RTE_LOG(ERR, EAL, "Cannot find bus (%s)\n", da->bus->name);
137                         ret = -ENOENT;
138                         goto finish;
139                 }
140
141                 dev = bus->find_device(NULL, cmp_dev_name, da->name);
142                 if (dev == NULL) {
143                         RTE_LOG(ERR, EAL, "Cannot find plugged device (%s)\n", da->name);
144                         ret = -ENOENT;
145                         goto finish;
146                 }
147
148                 if (tmp_req.result != 0) {
149                         RTE_LOG(ERR, EAL, "Failed to hotplug remove device on secondary\n");
150                         ret = tmp_req.result;
151                         if (ret != -ENOENT)
152                                 goto rollback;
153                 }
154
155                 ret = local_dev_remove(dev);
156                 if (ret != 0) {
157                         RTE_LOG(ERR, EAL, "Failed to hotplug remove device on primary\n");
158                         if (ret != -ENOENT)
159                                 goto rollback;
160                 }
161         } else {
162                 RTE_LOG(ERR, EAL, "unsupported secondary to primary request\n");
163                 ret = -ENOTSUP;
164         }
165         goto finish;
166
167 rollback:
168         if (req->t == EAL_DEV_REQ_TYPE_ATTACH) {
169                 tmp_req.t = EAL_DEV_REQ_TYPE_ATTACH_ROLLBACK;
170                 eal_dev_hotplug_request_to_secondary(&tmp_req);
171                 local_dev_remove(dev);
172         } else {
173                 tmp_req.t = EAL_DEV_REQ_TYPE_DETACH_ROLLBACK;
174                 eal_dev_hotplug_request_to_secondary(&tmp_req);
175         }
176
177 finish:
178         ret = send_response_to_secondary(&tmp_req, ret, bundle->peer);
179         if (ret)
180                 RTE_LOG(ERR, EAL, "failed to send response to secondary\n");
181
182         free(bundle->peer);
183         free(bundle);
184 }
185
186 static int
187 handle_secondary_request(const struct rte_mp_msg *msg, const void *peer)
188 {
189         struct mp_reply_bundle *bundle;
190         const struct eal_dev_mp_req *req =
191                 (const struct eal_dev_mp_req *)msg->param;
192         int ret = 0;
193
194         bundle = malloc(sizeof(*bundle));
195         if (bundle == NULL) {
196                 RTE_LOG(ERR, EAL, "not enough memory\n");
197                 return send_response_to_secondary(req, -ENOMEM, peer);
198         }
199
200         bundle->msg = *msg;
201         /**
202          * We need to send reply on interrupt thread, but peer can't be
203          * parsed directly, so this is a temporal hack, need to be fixed
204          * when it is ready.
205          */
206         bundle->peer = strdup(peer);
207
208         /**
209          * We are at IPC callback thread, sync IPC is not allowed due to
210          * dead lock, so we delegate the task to interrupt thread.
211          */
212         ret = rte_eal_alarm_set(1, __handle_secondary_request, bundle);
213         if (ret != 0) {
214                 RTE_LOG(ERR, EAL, "failed to add mp task\n");
215                 return send_response_to_secondary(req, ret, peer);
216         }
217         return 0;
218 }
219
220 static void __handle_primary_request(void *param)
221 {
222         struct mp_reply_bundle *bundle = param;
223         struct rte_mp_msg *msg = &bundle->msg;
224         const struct eal_dev_mp_req *req =
225                 (const struct eal_dev_mp_req *)msg->param;
226         struct rte_mp_msg mp_resp;
227         struct eal_dev_mp_req *resp =
228                 (struct eal_dev_mp_req *)mp_resp.param;
229         struct rte_devargs *da;
230         struct rte_device *dev;
231         struct rte_bus *bus;
232         int ret = 0;
233
234         memset(&mp_resp, 0, sizeof(mp_resp));
235
236         switch (req->t) {
237         case EAL_DEV_REQ_TYPE_ATTACH:
238         case EAL_DEV_REQ_TYPE_DETACH_ROLLBACK:
239                 ret = local_dev_probe(req->devargs, &dev);
240                 break;
241         case EAL_DEV_REQ_TYPE_DETACH:
242         case EAL_DEV_REQ_TYPE_ATTACH_ROLLBACK:
243                 da = calloc(1, sizeof(*da));
244                 if (da == NULL) {
245                         ret = -ENOMEM;
246                         break;
247                 }
248
249                 ret = rte_devargs_parse(da, req->devargs);
250                 if (ret != 0)
251                         goto quit;
252
253                 bus = rte_bus_find_by_name(da->bus->name);
254                 if (bus == NULL) {
255                         RTE_LOG(ERR, EAL, "Cannot find bus (%s)\n", da->bus->name);
256                         ret = -ENOENT;
257                         goto quit;
258                 }
259
260                 dev = bus->find_device(NULL, cmp_dev_name, da->name);
261                 if (dev == NULL) {
262                         RTE_LOG(ERR, EAL, "Cannot find plugged device (%s)\n", da->name);
263                         ret = -ENOENT;
264                         goto quit;
265                 }
266
267                 if (!rte_dev_is_probed(dev)) {
268                         if (req->t == EAL_DEV_REQ_TYPE_ATTACH_ROLLBACK) {
269                                 /**
270                                  * Don't fail the rollback just because there's
271                                  * nothing to do.
272                                  */
273                                 ret = 0;
274                         } else
275                                 ret = -ENODEV;
276
277                         goto quit;
278                 }
279
280                 ret = local_dev_remove(dev);
281 quit:
282                 free(da->args);
283                 free(da);
284                 break;
285         default:
286                 ret = -EINVAL;
287         }
288
289         strlcpy(mp_resp.name, EAL_DEV_MP_ACTION_REQUEST, sizeof(mp_resp.name));
290         mp_resp.len_param = sizeof(*req);
291         memcpy(resp, req, sizeof(*resp));
292         resp->result = ret;
293         if (rte_mp_reply(&mp_resp, bundle->peer) < 0)
294                 RTE_LOG(ERR, EAL, "failed to send reply to primary request\n");
295
296         free(bundle->peer);
297         free(bundle);
298 }
299
300 static int
301 handle_primary_request(const struct rte_mp_msg *msg, const void *peer)
302 {
303         struct rte_mp_msg mp_resp;
304         const struct eal_dev_mp_req *req =
305                 (const struct eal_dev_mp_req *)msg->param;
306         struct eal_dev_mp_req *resp =
307                 (struct eal_dev_mp_req *)mp_resp.param;
308         struct mp_reply_bundle *bundle;
309         int ret = 0;
310
311         memset(&mp_resp, 0, sizeof(mp_resp));
312         strlcpy(mp_resp.name, EAL_DEV_MP_ACTION_REQUEST, sizeof(mp_resp.name));
313         mp_resp.len_param = sizeof(*req);
314         memcpy(resp, req, sizeof(*resp));
315
316         bundle = calloc(1, sizeof(*bundle));
317         if (bundle == NULL) {
318                 resp->result = -ENOMEM;
319                 ret = rte_mp_reply(&mp_resp, peer);
320                 if (ret)
321                         RTE_LOG(ERR, EAL, "failed to send reply to primary request\n");
322                 return ret;
323         }
324
325         bundle->msg = *msg;
326         /**
327          * We need to send reply on interrupt thread, but peer can't be
328          * parsed directly, so this is a temporal hack, need to be fixed
329          * when it is ready.
330          */
331         bundle->peer = (void *)strdup(peer);
332
333         /**
334          * We are at IPC callback thread, sync IPC is not allowed due to
335          * dead lock, so we delegate the task to interrupt thread.
336          */
337         ret = rte_eal_alarm_set(1, __handle_primary_request, bundle);
338         if (ret != 0) {
339                 resp->result = ret;
340                 ret = rte_mp_reply(&mp_resp, peer);
341                 if  (ret != 0) {
342                         RTE_LOG(ERR, EAL, "failed to send reply to primary request\n");
343                         return ret;
344                 }
345         }
346         return 0;
347 }
348
349 int eal_dev_hotplug_request_to_primary(struct eal_dev_mp_req *req)
350 {
351         struct rte_mp_msg mp_req;
352         struct rte_mp_reply mp_reply;
353         struct timespec ts = {.tv_sec = MP_TIMEOUT_S, .tv_nsec = 0};
354         struct eal_dev_mp_req *resp;
355         int ret;
356
357         memset(&mp_req, 0, sizeof(mp_req));
358         memcpy(mp_req.param, req, sizeof(*req));
359         mp_req.len_param = sizeof(*req);
360         strlcpy(mp_req.name, EAL_DEV_MP_ACTION_REQUEST, sizeof(mp_req.name));
361
362         ret = rte_mp_request_sync(&mp_req, &mp_reply, &ts);
363         if (ret || mp_reply.nb_received != 1) {
364                 RTE_LOG(ERR, EAL, "cannot send request to primary");
365                 if (!ret)
366                         return -1;
367                 return ret;
368         }
369
370         resp = (struct eal_dev_mp_req *)mp_reply.msgs[0].param;
371         req->result = resp->result;
372
373         free(mp_reply.msgs);
374         return ret;
375 }
376
377 int eal_dev_hotplug_request_to_secondary(struct eal_dev_mp_req *req)
378 {
379         struct rte_mp_msg mp_req;
380         struct rte_mp_reply mp_reply;
381         struct timespec ts = {.tv_sec = MP_TIMEOUT_S, .tv_nsec = 0};
382         int ret;
383         int i;
384
385         memset(&mp_req, 0, sizeof(mp_req));
386         memcpy(mp_req.param, req, sizeof(*req));
387         mp_req.len_param = sizeof(*req);
388         strlcpy(mp_req.name, EAL_DEV_MP_ACTION_REQUEST, sizeof(mp_req.name));
389
390         ret = rte_mp_request_sync(&mp_req, &mp_reply, &ts);
391         if (ret != 0) {
392                 RTE_LOG(ERR, EAL, "rte_mp_request_sync failed\n");
393                 return ret;
394         }
395
396         if (mp_reply.nb_sent != mp_reply.nb_received) {
397                 RTE_LOG(ERR, EAL, "not all secondary reply\n");
398                 free(mp_reply.msgs);
399                 return -1;
400         }
401
402         req->result = 0;
403         for (i = 0; i < mp_reply.nb_received; i++) {
404                 struct eal_dev_mp_req *resp =
405                         (struct eal_dev_mp_req *)mp_reply.msgs[i].param;
406                 if (resp->result != 0) {
407                         req->result = resp->result;
408                         if (req->t == EAL_DEV_REQ_TYPE_ATTACH &&
409                                 req->result != -EEXIST)
410                                 break;
411                         if (req->t == EAL_DEV_REQ_TYPE_DETACH &&
412                                 req->result != -ENOENT)
413                                 break;
414                 }
415         }
416
417         free(mp_reply.msgs);
418         return 0;
419 }
420
421 int rte_mp_dev_hotplug_init(void)
422 {
423         int ret;
424
425         if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
426                 ret = rte_mp_action_register(EAL_DEV_MP_ACTION_REQUEST,
427                                         handle_secondary_request);
428                 if (ret != 0) {
429                         RTE_LOG(ERR, EAL, "Couldn't register '%s' action\n",
430                                 EAL_DEV_MP_ACTION_REQUEST);
431                         return ret;
432                 }
433         } else {
434                 ret = rte_mp_action_register(EAL_DEV_MP_ACTION_REQUEST,
435                                         handle_primary_request);
436                 if (ret != 0) {
437                         RTE_LOG(ERR, EAL, "Couldn't register '%s' action\n",
438                                 EAL_DEV_MP_ACTION_REQUEST);
439                         return ret;
440                 }
441         }
442
443         return 0;
444 }