cdb8393efab94858b5a6f14ee322ae9e22469e61
[project/ubus.git] / libubus-req.c
1 /*
2 * Copyright (C) 2011-2014 Felix Fietkau <nbd@openwrt.org>
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU Lesser General Public License version 2.1
6 * as published by the Free Software Foundation
7 *
8 * This program is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11 * GNU General Public License for more details.
12 */
13
14 #include <unistd.h>
15 #include "libubus.h"
16 #include "libubus-internal.h"
17
18 struct ubus_pending_data {
19 struct list_head list;
20 int type;
21 struct blob_attr data[];
22 };
23
24 static void req_data_cb(struct ubus_request *req, int type, struct blob_attr *data)
25 {
26 struct blob_attr **attr;
27
28 if (req->raw_data_cb)
29 req->raw_data_cb(req, type, data);
30
31 if (!req->data_cb)
32 return;
33
34 attr = ubus_parse_msg(data);
35 req->data_cb(req, type, attr[UBUS_ATTR_DATA]);
36 }
37
38 static void __ubus_process_req_data(struct ubus_request *req)
39 {
40 struct ubus_pending_data *data;
41
42 while (!list_empty(&req->pending)) {
43 data = list_first_entry(&req->pending,
44 struct ubus_pending_data, list);
45 list_del(&data->list);
46 if (!req->cancelled)
47 req_data_cb(req, data->type, data->data);
48 free(data);
49 }
50 }
51
52 int __hidden ubus_start_request(struct ubus_context *ctx, struct ubus_request *req,
53 struct blob_attr *msg, int cmd, uint32_t peer)
54 {
55 memset(req, 0, sizeof(*req));
56
57 if (msg && blob_pad_len(msg) > UBUS_MAX_MSGLEN)
58 return -1;
59
60 INIT_LIST_HEAD(&req->list);
61 INIT_LIST_HEAD(&req->pending);
62 req->ctx = ctx;
63 req->peer = peer;
64 req->seq = ++ctx->request_seq;
65 return ubus_send_msg(ctx, req->seq, msg, cmd, peer, -1);
66 }
67
68 void ubus_abort_request(struct ubus_context *ctx, struct ubus_request *req)
69 {
70 if (list_empty(&req->list))
71 return;
72
73 req->cancelled = true;
74 __ubus_process_req_data(req);
75 list_del_init(&req->list);
76 }
77
78 void ubus_complete_request_async(struct ubus_context *ctx, struct ubus_request *req)
79 {
80 if (!list_empty(&req->list))
81 return;
82
83 list_add(&req->list, &ctx->requests);
84 }
85
86 static void
87 ubus_req_complete_cb(struct ubus_request *req)
88 {
89 ubus_complete_handler_t cb = req->complete_cb;
90
91 if (!cb)
92 return;
93
94 req->complete_cb = NULL;
95 cb(req, req->status_code);
96 }
97
98 static void
99 ubus_set_req_status(struct ubus_request *req, int ret)
100 {
101 if (!list_empty(&req->list))
102 list_del_init(&req->list);
103
104 req->status_msg = true;
105 req->status_code = ret;
106 if (!req->blocked)
107 ubus_req_complete_cb(req);
108 }
109
110 static void ubus_sync_req_cb(struct ubus_request *req, int ret)
111 {
112 req->status_msg = true;
113 req->status_code = ret;
114 uloop_end();
115 }
116
117 static int64_t get_time_msec(void)
118 {
119 struct timespec ts;
120 int64_t val;
121
122 clock_gettime(CLOCK_MONOTONIC, &ts);
123 val = (int64_t) ts.tv_sec * 1000LL;
124 val += ts.tv_nsec / 1000000LL;
125 return val;
126 }
127
128 int ubus_complete_request(struct ubus_context *ctx, struct ubus_request *req,
129 int req_timeout)
130 {
131 ubus_complete_handler_t complete_cb = req->complete_cb;
132 bool registered = ctx->sock.registered;
133 int status = UBUS_STATUS_NO_DATA;
134 int64_t timeout = 0, time_end = 0;
135
136 if (!registered) {
137 uloop_init();
138 ubus_add_uloop(ctx);
139 }
140
141 if (req_timeout)
142 time_end = get_time_msec() + req_timeout;
143
144 ubus_complete_request_async(ctx, req);
145 req->complete_cb = ubus_sync_req_cb;
146
147 ctx->stack_depth++;
148 while (!req->status_msg) {
149 bool cancelled = uloop_cancelled;
150
151 uloop_cancelled = false;
152 if (req_timeout) {
153 timeout = time_end - get_time_msec();
154 if (timeout <= 0) {
155 ubus_set_req_status(req, UBUS_STATUS_TIMEOUT);
156 break;
157 }
158 }
159 ubus_poll_data(ctx, (unsigned int) timeout);
160
161 uloop_cancelled = cancelled;
162 }
163 ctx->stack_depth--;
164 if (ctx->stack_depth)
165 uloop_cancelled = true;
166
167 if (req->status_msg)
168 status = req->status_code;
169
170 req->complete_cb = complete_cb;
171 if (req->complete_cb)
172 req->complete_cb(req, status);
173
174 if (!registered)
175 uloop_fd_delete(&ctx->sock);
176
177 if (!ctx->stack_depth)
178 ubus_process_pending_msg(ctx);
179
180 return status;
181 }
182
183 void ubus_complete_deferred_request(struct ubus_context *ctx, struct ubus_request_data *req, int ret)
184 {
185 blob_buf_init(&b, 0);
186 blob_put_int32(&b, UBUS_ATTR_STATUS, ret);
187 blob_put_int32(&b, UBUS_ATTR_OBJID, req->object);
188 ubus_send_msg(ctx, req->seq, b.head, UBUS_MSG_STATUS, req->peer, req->fd);
189 }
190
191 int ubus_send_reply(struct ubus_context *ctx, struct ubus_request_data *req,
192 struct blob_attr *msg)
193 {
194 int ret;
195
196 blob_buf_init(&b, 0);
197 blob_put_int32(&b, UBUS_ATTR_OBJID, req->object);
198 blob_put(&b, UBUS_ATTR_DATA, blob_data(msg), blob_len(msg));
199 ret = ubus_send_msg(ctx, req->seq, b.head, UBUS_MSG_DATA, req->peer, -1);
200 if (ret < 0)
201 return UBUS_STATUS_NO_DATA;
202
203 return 0;
204 }
205
206 int ubus_invoke_async(struct ubus_context *ctx, uint32_t obj, const char *method,
207 struct blob_attr *msg, struct ubus_request *req)
208 {
209 blob_buf_init(&b, 0);
210 blob_put_int32(&b, UBUS_ATTR_OBJID, obj);
211 blob_put_string(&b, UBUS_ATTR_METHOD, method);
212 if (msg)
213 blob_put(&b, UBUS_ATTR_DATA, blob_data(msg), blob_len(msg));
214
215 if (ubus_start_request(ctx, req, b.head, UBUS_MSG_INVOKE, obj) < 0)
216 return UBUS_STATUS_INVALID_ARGUMENT;
217
218 return 0;
219 }
220
221 int ubus_invoke(struct ubus_context *ctx, uint32_t obj, const char *method,
222 struct blob_attr *msg, ubus_data_handler_t cb, void *priv,
223 int timeout)
224 {
225 struct ubus_request req;
226
227 ubus_invoke_async(ctx, obj, method, msg, &req);
228 req.data_cb = cb;
229 req.priv = priv;
230 return ubus_complete_request(ctx, &req, timeout);
231 }
232
233 static void
234 ubus_notify_complete_cb(struct ubus_request *req, int ret)
235 {
236 struct ubus_notify_request *nreq;
237
238 nreq = container_of(req, struct ubus_notify_request, req);
239 if (!nreq->complete_cb)
240 return;
241
242 nreq->complete_cb(nreq, 0, 0);
243 }
244
245 static int
246 __ubus_notify_async(struct ubus_context *ctx, struct ubus_object *obj,
247 const char *type, struct blob_attr *msg,
248 struct ubus_notify_request *req, bool reply)
249 {
250 memset(req, 0, sizeof(*req));
251
252 blob_buf_init(&b, 0);
253 blob_put_int32(&b, UBUS_ATTR_OBJID, obj->id);
254 blob_put_string(&b, UBUS_ATTR_METHOD, type);
255
256 if (!reply)
257 blob_put_int8(&b, UBUS_ATTR_NO_REPLY, true);
258
259 if (msg)
260 blob_put(&b, UBUS_ATTR_DATA, blob_data(msg), blob_len(msg));
261
262 if (ubus_start_request(ctx, &req->req, b.head, UBUS_MSG_NOTIFY, obj->id) < 0)
263 return UBUS_STATUS_INVALID_ARGUMENT;
264
265 /* wait for status message from ubusd first */
266 req->req.notify = true;
267 req->pending = 1;
268 req->id[0] = obj->id;
269 req->req.complete_cb = ubus_notify_complete_cb;
270
271 return 0;
272 }
273
274 int ubus_notify_async(struct ubus_context *ctx, struct ubus_object *obj,
275 const char *type, struct blob_attr *msg,
276 struct ubus_notify_request *req)
277 {
278 return __ubus_notify_async(ctx, obj, type, msg, req, true);
279 }
280
281 int ubus_notify(struct ubus_context *ctx, struct ubus_object *obj,
282 const char *type, struct blob_attr *msg, int timeout)
283 {
284 struct ubus_notify_request req;
285 int ret;
286
287 ret = __ubus_notify_async(ctx, obj, type, msg, &req, timeout >= 0);
288 if (ret < 0)
289 return ret;
290
291 if (timeout < 0) {
292 ubus_abort_request(ctx, &req.req);
293 return 0;
294 }
295
296 return ubus_complete_request(ctx, &req.req, timeout);
297 }
298
299 static bool ubus_get_status(struct ubus_msghdr *hdr, int *ret)
300 {
301 struct blob_attr **attrbuf = ubus_parse_msg(ubus_msghdr_data(hdr));
302
303 if (!attrbuf[UBUS_ATTR_STATUS])
304 return false;
305
306 *ret = blob_get_u32(attrbuf[UBUS_ATTR_STATUS]);
307 return true;
308 }
309
310 static int
311 ubus_process_req_status(struct ubus_request *req, struct ubus_msghdr *hdr)
312 {
313 int ret = UBUS_STATUS_INVALID_ARGUMENT;
314
315 ubus_get_status(hdr, &ret);
316 req->peer = hdr->peer;
317 ubus_set_req_status(req, ret);
318
319 return ret;
320 }
321
322 static void
323 ubus_process_req_data(struct ubus_request *req, struct ubus_msghdr *hdr)
324 {
325 struct blob_attr *msg_data = ubus_msghdr_data(hdr);
326 struct ubus_pending_data *data;
327 int len;
328
329 if (!req->blocked) {
330 req->blocked = true;
331 req_data_cb(req, hdr->type, msg_data);
332 __ubus_process_req_data(req);
333 req->blocked = false;
334
335 if (req->status_msg)
336 ubus_req_complete_cb(req);
337
338 return;
339 }
340
341 len = blob_raw_len(msg_data);
342 data = calloc(1, sizeof(*data) + len);
343 if (!data)
344 return;
345
346 data->type = hdr->type;
347 memcpy(data->data, msg_data, len);
348 list_add(&data->list, &req->pending);
349 }
350
351 static int
352 ubus_find_notify_id(struct ubus_notify_request *n, uint32_t objid)
353 {
354 uint32_t pending = n->pending;
355 int i;
356
357 for (i = 0; pending; i++, pending >>= 1) {
358 if (!(pending & 1))
359 continue;
360
361 if (n->id[i] == objid)
362 return i;
363 }
364
365 return -1;
366 }
367
368 static struct ubus_request *
369 ubus_find_request(struct ubus_context *ctx, uint32_t seq, uint32_t peer, int *id)
370 {
371 struct ubus_request *req;
372
373 list_for_each_entry(req, &ctx->requests, list) {
374 struct ubus_notify_request *nreq;
375 nreq = container_of(req, struct ubus_notify_request, req);
376
377 if (seq != req->seq)
378 continue;
379
380 if (req->notify) {
381 if (!nreq->pending)
382 continue;
383
384 *id = ubus_find_notify_id(nreq, peer);
385 if (*id < 0)
386 continue;
387 } else if (peer != req->peer)
388 continue;
389
390 return req;
391 }
392 return NULL;
393 }
394
395 static void ubus_process_notify_status(struct ubus_request *req, int id, struct ubus_msghdr *hdr)
396 {
397 struct ubus_notify_request *nreq;
398 struct blob_attr **tb;
399 struct blob_attr *cur;
400 int rem, idx = 1;
401 int ret = 0;
402
403 nreq = container_of(req, struct ubus_notify_request, req);
404 nreq->pending &= ~(1 << id);
405
406 if (!id) {
407 /* first id: ubusd's status message with a list of ids */
408 tb = ubus_parse_msg(ubus_msghdr_data(hdr));
409 if (tb[UBUS_ATTR_SUBSCRIBERS]) {
410 blob_for_each_attr(cur, tb[UBUS_ATTR_SUBSCRIBERS], rem) {
411 if (!blob_check_type(blob_data(cur), blob_len(cur), BLOB_ATTR_INT32))
412 continue;
413
414 nreq->pending |= (1 << idx);
415 nreq->id[idx] = blob_get_int32(cur);
416 idx++;
417
418 if (idx == UBUS_MAX_NOTIFY_PEERS + 1)
419 break;
420 }
421 }
422 } else {
423 ubus_get_status(hdr, &ret);
424 if (nreq->status_cb)
425 nreq->status_cb(nreq, id, ret);
426 }
427
428 if (!nreq->pending)
429 ubus_set_req_status(req, 0);
430 }
431
432 void __hidden ubus_process_req_msg(struct ubus_context *ctx, struct ubus_msghdr *hdr, int fd)
433 {
434 struct ubus_request *req;
435 int id = -1;
436
437 switch(hdr->type) {
438 case UBUS_MSG_STATUS:
439 req = ubus_find_request(ctx, hdr->seq, hdr->peer, &id);
440 if (!req)
441 break;
442
443 if (fd >= 0) {
444 if (req->fd_cb)
445 req->fd_cb(req, fd);
446 else
447 close(fd);
448 }
449
450 if (id >= 0)
451 ubus_process_notify_status(req, id, hdr);
452 else
453 ubus_process_req_status(req, hdr);
454 break;
455
456 case UBUS_MSG_DATA:
457 req = ubus_find_request(ctx, hdr->seq, hdr->peer, &id);
458 if (req && (req->data_cb || req->raw_data_cb))
459 ubus_process_req_data(req, hdr);
460 break;
461 }
462 }