isns_task.c revision 1.1 1 1.1 agc /* $NetBSD: isns_task.c,v 1.1 2011/01/16 01:22:50 agc Exp $ */
2 1.1 agc
3 1.1 agc /*-
4 1.1 agc * Copyright (c) 2004,2009 The NetBSD Foundation, Inc.
5 1.1 agc * All rights reserved.
6 1.1 agc *
7 1.1 agc * This code is derived from software contributed to The NetBSD Foundation
8 1.1 agc * by Wasabi Systems, Inc.
9 1.1 agc *
10 1.1 agc * Redistribution and use in source and binary forms, with or without
11 1.1 agc * modification, are permitted provided that the following conditions
12 1.1 agc * are met:
13 1.1 agc * 1. Redistributions of source code must retain the above copyright
14 1.1 agc * notice, this list of conditions and the following disclaimer.
15 1.1 agc * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 agc * notice, this list of conditions and the following disclaimer in the
17 1.1 agc * documentation and/or other materials provided with the distribution.
18 1.1 agc *
19 1.1 agc * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 agc * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 agc * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 agc * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 agc * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 agc * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 agc * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 agc * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 agc * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 agc * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 agc * POSSIBILITY OF SUCH DAMAGE.
30 1.1 agc */
31 1.1 agc
32 1.1 agc #include <sys/cdefs.h>
33 1.1 agc __RCSID("$NetBSD: isns_task.c,v 1.1 2011/01/16 01:22:50 agc Exp $");
34 1.1 agc
35 1.1 agc /*
36 1.1 agc * isns_task.c
37 1.1 agc */
38 1.1 agc
39 1.1 agc #include <sys/types.h>
40 1.1 agc #include <sys/socket.h>
41 1.1 agc #include <netinet/in.h>
42 1.1 agc
43 1.1 agc #include "isns.h"
44 1.1 agc #include "isns_config.h"
45 1.1 agc
46 1.1 agc static struct iovec write_buf[2 + (ISNS_MAX_PDU_PAYLOAD / ISNS_BUF_SIZE) +
47 1.1 agc ((ISNS_MAX_PDU_PAYLOAD % ISNS_BUF_SIZE) != 0)];
48 1.1 agc
49 1.1 agc static isns_task_handler isns_task_discover_server;
50 1.1 agc static isns_task_handler isns_task_reconnect_server;
51 1.1 agc static isns_task_handler isns_task_send_pdu;
52 1.1 agc static isns_task_handler isns_task_init_socket_io;
53 1.1 agc static isns_task_handler isns_task_init_refresh;
54 1.1 agc
55 1.1 agc
56 1.1 agc void
57 1.1 agc isns_run_task(struct isns_task_s *task_p)
58 1.1 agc {
59 1.1 agc static isns_task_handler *task_dispatch_table[ISNS_NUM_TASKS] = {
60 1.1 agc isns_task_discover_server,
61 1.1 agc isns_task_reconnect_server,
62 1.1 agc isns_task_send_pdu,
63 1.1 agc isns_task_init_socket_io,
64 1.1 agc isns_task_init_refresh
65 1.1 agc };
66 1.1 agc
67 1.1 agc DBG("isns_run_task: task_type=%d\n", task_p->task_type);
68 1.1 agc
69 1.1 agc if (task_p->task_type < ARRAY_ELEMS(task_dispatch_table))
70 1.1 agc task_dispatch_table[task_p->task_type](task_p);
71 1.1 agc else
72 1.1 agc DBG("isns_run_task: unknown task type=%d\n", task_p->task_type);
73 1.1 agc }
74 1.1 agc
75 1.1 agc
76 1.1 agc int
77 1.1 agc isns_wait_task(struct isns_task_s *task_p, const struct timespec *timeout_p)
78 1.1 agc {
79 1.1 agc struct timeval tv_now;
80 1.1 agc struct timespec ts_abstime;
81 1.1 agc int rval;
82 1.1 agc
83 1.1 agc DBG("isns_wait_task: waitable=%d\n", task_p->waitable);
84 1.1 agc
85 1.1 agc if (!task_p->waitable)
86 1.1 agc return EPERM;
87 1.1 agc
88 1.1 agc pthread_mutex_lock(&task_p->wait_mutex);
89 1.1 agc
90 1.1 agc if (timeout_p == NULL) {
91 1.1 agc rval = pthread_cond_wait(&task_p->wait_condvar,
92 1.1 agc &task_p->wait_mutex);
93 1.1 agc } else {
94 1.1 agc gettimeofday(&tv_now, NULL);
95 1.1 agc TIMEVAL_TO_TIMESPEC(&tv_now, &ts_abstime);
96 1.1 agc timespecadd(&ts_abstime, timeout_p, &ts_abstime);
97 1.1 agc
98 1.1 agc rval = pthread_cond_timedwait(&task_p->wait_condvar,
99 1.1 agc &task_p->wait_mutex, &ts_abstime);
100 1.1 agc }
101 1.1 agc
102 1.1 agc pthread_mutex_unlock(&task_p->wait_mutex);
103 1.1 agc
104 1.1 agc isns_free_task(task_p);
105 1.1 agc
106 1.1 agc DBG("isns_wait_task: wait done (rval=%d)\n", rval);
107 1.1 agc
108 1.1 agc return rval;
109 1.1 agc }
110 1.1 agc
111 1.1 agc
112 1.1 agc void
113 1.1 agc isns_end_task(struct isns_task_s *task_p)
114 1.1 agc {
115 1.1 agc DBG("isns_end_task: %p\n", task_p);
116 1.1 agc if (task_p == task_p->cfg_p->curtask_p)
117 1.1 agc task_p->cfg_p->curtask_p = NULL;
118 1.1 agc
119 1.1 agc if (task_p->waitable)
120 1.1 agc pthread_cond_signal(&task_p->wait_condvar);
121 1.1 agc
122 1.1 agc isns_free_task(task_p);
123 1.1 agc }
124 1.1 agc
125 1.1 agc
126 1.1 agc static void
127 1.1 agc isns_task_discover_server(struct isns_task_s *task_p)
128 1.1 agc {
129 1.1 agc /* discover server here */
130 1.1 agc DBG("isns_task_discover_server: entered\n");
131 1.1 agc
132 1.1 agc isns_end_task(task_p);
133 1.1 agc }
134 1.1 agc
135 1.1 agc
136 1.1 agc /*
137 1.1 agc * isns_task_reconnect_server()
138 1.1 agc */
139 1.1 agc static void
140 1.1 agc isns_task_reconnect_server(struct isns_task_s *task_p)
141 1.1 agc {
142 1.1 agc struct addrinfo *ai_p;
143 1.1 agc int rv;
144 1.1 agc
145 1.1 agc
146 1.1 agc DBG("isns_task_reconnect_server: entered\n");
147 1.1 agc
148 1.1 agc ai_p = task_p->var.reconnect_server.ai_p;
149 1.1 agc
150 1.1 agc rv = isns_socket_create(&(task_p->cfg_p->sd), ai_p->ai_family,
151 1.1 agc ai_p->ai_socktype);
152 1.1 agc if (rv != 0)
153 1.1 agc return;
154 1.1 agc
155 1.1 agc rv = isns_socket_connect(task_p->cfg_p->sd, ai_p->ai_addr,
156 1.1 agc ai_p->ai_addrlen);
157 1.1 agc if (rv != 0) {
158 1.1 agc /* Add ISNS_EVT_TIMER_RECON to kqueue */
159 1.1 agc rv = isns_change_kevent_list(task_p->cfg_p,
160 1.1 agc (uintptr_t)ISNS_EVT_TIMER_RECON, EVFILT_TIMER, EV_ADD,
161 1.1 agc (int64_t)ISNS_EVT_TIMER_RECON_PERIOD_MS,
162 1.1 agc (intptr_t)isns_kevent_timer_recon);
163 1.1 agc if (rv == -1)
164 1.1 agc DBG("isns_task_reconnect_server: error on "
165 1.1 agc "isns_change_kevent_list(1)\n");
166 1.1 agc } else {
167 1.1 agc task_p->cfg_p->sd_connected = 1;
168 1.1 agc
169 1.1 agc /* Add cfg_p->sd to kqueue */
170 1.1 agc rv = isns_change_kevent_list(task_p->cfg_p,
171 1.1 agc (uintptr_t)(task_p->cfg_p->sd), EVFILT_READ,
172 1.1 agc EV_ADD | EV_CLEAR, (int64_t)0,
173 1.1 agc (intptr_t)isns_kevent_socket);
174 1.1 agc if (rv == -1)
175 1.1 agc DBG("isns_task_reconnect_server: error on "
176 1.1 agc "isns_change_kevent_lists(2)\n");
177 1.1 agc
178 1.1 agc isns_end_task(task_p);
179 1.1 agc }
180 1.1 agc }
181 1.1 agc
182 1.1 agc /*
183 1.1 agc * isns_task_send_pdu()
184 1.1 agc *
185 1.1 agc * We send all of the pdu's associated with transaction task_p->trans_p here.
186 1.1 agc *
187 1.1 agc * Assumptions:
188 1.1 agc * (1) task_p->trans_p->pdu_req_list is an ordered (seq_id) list of
189 1.1 agc * related (trans_id), appropriately sized pdus to be sent. The first
190 1.1 agc * pdu has flag ISNS_FLAG_FIRST_PDU set and the last pdu has flag
191 1.1 agc * ISNS_FLAG_LAST_PDU set.
192 1.1 agc */
193 1.1 agc static void
194 1.1 agc isns_task_send_pdu(struct isns_task_s *task_p)
195 1.1 agc {
196 1.1 agc struct iovec *iovp;
197 1.1 agc struct isns_config_s *cfg_p;
198 1.1 agc struct isns_pdu_s *pdu_p; /* points to first pdu in pdu_req_list */
199 1.1 agc struct isns_buffer_s *buf_p;
200 1.1 agc ssize_t bytes_written;
201 1.1 agc ssize_t count;
202 1.1 agc size_t bytes_to_write;
203 1.1 agc int iovcnt, cur_iovec;
204 1.1 agc char *ptr;
205 1.1 agc
206 1.1 agc
207 1.1 agc DBG("isns_task_send_pdu: entered\n");
208 1.1 agc
209 1.1 agc cfg_p = task_p->cfg_p;
210 1.1 agc pdu_p = task_p->var.send_pdu.pdu_p;
211 1.1 agc
212 1.1 agc while (pdu_p != NULL) {
213 1.1 agc /* adjust byte order if necessary */
214 1.1 agc if (pdu_p->byteorder_host) {
215 1.1 agc pdu_p->hdr.isnsp_version = isns_htons(pdu_p->hdr.
216 1.1 agc isnsp_version);
217 1.1 agc pdu_p->hdr.func_id = isns_htons(pdu_p->hdr.func_id);
218 1.1 agc pdu_p->hdr.payload_len = isns_htons(pdu_p->hdr.
219 1.1 agc payload_len);
220 1.1 agc pdu_p->hdr.flags = isns_htons(pdu_p->hdr.flags);
221 1.1 agc pdu_p->hdr.trans_id = isns_htons(pdu_p->hdr.trans_id);
222 1.1 agc pdu_p->hdr.seq_id = isns_htons(pdu_p->hdr.seq_id);
223 1.1 agc
224 1.1 agc pdu_p->byteorder_host = 0;
225 1.1 agc }
226 1.1 agc DUMP_PDU(pdu_p);
227 1.1 agc
228 1.1 agc /* send PDU via socket here */
229 1.1 agc write_buf[0].iov_base = &(pdu_p->hdr);
230 1.1 agc write_buf[0].iov_len = sizeof(pdu_p->hdr);
231 1.1 agc bytes_to_write = write_buf[0].iov_len;
232 1.1 agc iovcnt = 1;
233 1.1 agc
234 1.1 agc buf_p = pdu_p->payload_p;
235 1.1 agc while (buf_p != NULL) {
236 1.1 agc write_buf[iovcnt].iov_base = isns_buffer_data(buf_p,0);
237 1.1 agc write_buf[iovcnt].iov_len = buf_p->cur_len;
238 1.1 agc bytes_to_write += write_buf[iovcnt].iov_len;
239 1.1 agc iovcnt++;
240 1.1 agc buf_p = buf_p->next;
241 1.1 agc }
242 1.1 agc
243 1.1 agc /* iovcnt and bytes_to_write are initialized */
244 1.1 agc cur_iovec = 0;
245 1.1 agc buf_p = ((struct isns_buffer_s *)(void *)pdu_p) - 1;
246 1.1 agc do {
247 1.1 agc iovp = &(write_buf[cur_iovec]);
248 1.1 agc bytes_written = isns_socket_writev(cfg_p->sd, iovp,
249 1.1 agc iovcnt);
250 1.1 agc if (bytes_written == -1) {
251 1.1 agc DBG("isns_task_send_pdu: error on "
252 1.1 agc "isns_socket_writev\n");
253 1.1 agc isns_socket_close(cfg_p->sd);
254 1.1 agc cfg_p->sd_connected = 0;
255 1.1 agc
256 1.1 agc isns_process_connection_loss(cfg_p);
257 1.1 agc
258 1.1 agc if (cfg_p->pdu_in_p != NULL) {
259 1.1 agc isns_free_pdu(cfg_p->pdu_in_p);
260 1.1 agc cfg_p->pdu_in_p = NULL;
261 1.1 agc }
262 1.1 agc
263 1.1 agc break;
264 1.1 agc }
265 1.1 agc
266 1.1 agc if (bytes_written < (ssize_t)bytes_to_write) {
267 1.1 agc count = bytes_written;
268 1.1 agc while (buf_p != NULL) { /* -OR- while (1) */
269 1.1 agc if ((unsigned)count >= write_buf[
270 1.1 agc cur_iovec].iov_len) {
271 1.1 agc count -= write_buf[cur_iovec].
272 1.1 agc iov_len;
273 1.1 agc if (cur_iovec == 0)
274 1.1 agc buf_p = pdu_p->
275 1.1 agc payload_p;
276 1.1 agc else
277 1.1 agc buf_p = buf_p->next;
278 1.1 agc cur_iovec++;
279 1.1 agc iovcnt--;
280 1.1 agc
281 1.1 agc if (count == 0) {
282 1.1 agc /* Do another write */
283 1.1 agc break;
284 1.1 agc } else {
285 1.1 agc /* Look at new iovec */
286 1.1 agc continue;
287 1.1 agc }
288 1.1 agc } else {
289 1.1 agc write_buf[cur_iovec].iov_len -=
290 1.1 agc count;
291 1.1 agc
292 1.1 agc ptr = (char *) write_buf[cur_iovec].iov_base;
293 1.1 agc ptr += count;
294 1.1 agc write_buf[cur_iovec].iov_base = ptr;
295 1.1 agc
296 1.1 agc /* Do another write */
297 1.1 agc break;
298 1.1 agc }
299 1.1 agc }
300 1.1 agc }
301 1.1 agc
302 1.1 agc bytes_to_write -= bytes_written;
303 1.1 agc } while (bytes_to_write);
304 1.1 agc
305 1.1 agc pdu_p = pdu_p->next;
306 1.1 agc }
307 1.1 agc
308 1.1 agc if (!task_p->waitable) {
309 1.1 agc isns_complete_trans(task_p->var.send_pdu.trans_p);
310 1.1 agc isns_end_task(task_p);
311 1.1 agc }
312 1.1 agc }
313 1.1 agc
314 1.1 agc /*
315 1.1 agc * isns_task_init_socket_io()
316 1.1 agc */
317 1.1 agc static void
318 1.1 agc isns_task_init_socket_io(struct isns_task_s *task_p)
319 1.1 agc {
320 1.1 agc struct isns_config_s *cfg_p;
321 1.1 agc int rv;
322 1.1 agc
323 1.1 agc
324 1.1 agc DBG("isns_task_init_socket_io: entered\n");
325 1.1 agc
326 1.1 agc cfg_p = task_p->cfg_p;
327 1.1 agc
328 1.1 agc if (cfg_p->sd_connected) {
329 1.1 agc isns_socket_close(cfg_p->sd);
330 1.1 agc cfg_p->sd_connected = 0;
331 1.1 agc
332 1.1 agc /* We may have received part of an unsolicited/duplicate pdu */
333 1.1 agc if (cfg_p->pdu_in_p != NULL) {
334 1.1 agc isns_free_pdu(cfg_p->pdu_in_p);
335 1.1 agc cfg_p->pdu_in_p = NULL;
336 1.1 agc }
337 1.1 agc }
338 1.1 agc
339 1.1 agc /* May have an allocated 'struct addrinfo', whether connected or not */
340 1.1 agc if (cfg_p->ai_p != NULL) {
341 1.1 agc isns_free(cfg_p->ai_p);
342 1.1 agc cfg_p->ai_p = NULL;
343 1.1 agc }
344 1.1 agc
345 1.1 agc cfg_p->sd = task_p->var.init_socket_io.sd;
346 1.1 agc cfg_p->ai_p = task_p->var.init_socket_io.ai_p;
347 1.1 agc
348 1.1 agc cfg_p->sd_connected = 1;
349 1.1 agc
350 1.1 agc /* Add cfg_p->sd to kqueue */
351 1.1 agc rv = isns_change_kevent_list(cfg_p, (uintptr_t)cfg_p->sd,
352 1.1 agc EVFILT_READ, EV_ADD | EV_CLEAR, (int64_t)0,
353 1.1 agc (intptr_t)isns_kevent_socket);
354 1.1 agc if (rv == -1)
355 1.1 agc DBG("isns_task_init_socket_io: error on "
356 1.1 agc "isns_change_kevent_list\n");
357 1.1 agc
358 1.1 agc isns_end_task(task_p);
359 1.1 agc }
360 1.1 agc
361 1.1 agc
362 1.1 agc /*
363 1.1 agc * isns_task_init_refresh(struct isns_task_s *task_p)
364 1.1 agc */
365 1.1 agc static void
366 1.1 agc isns_task_init_refresh(struct isns_task_s *task_p)
367 1.1 agc {
368 1.1 agc struct isns_config_s *cfg_p;
369 1.1 agc int rval;
370 1.1 agc
371 1.1 agc DBG("isns_task_init_refresh: entered\n");
372 1.1 agc
373 1.1 agc /* Free any previous refresh info. */
374 1.1 agc cfg_p = task_p->cfg_p;
375 1.1 agc if (cfg_p->refresh_p != NULL) {
376 1.1 agc if (cfg_p->refresh_p->trans_p != NULL)
377 1.1 agc isns_free_trans(cfg_p->refresh_p->trans_p);
378 1.1 agc isns_free(cfg_p->refresh_p);
379 1.1 agc }
380 1.1 agc
381 1.1 agc /* Assign new refresh info into config struct. */
382 1.1 agc cfg_p->refresh_p = task_p->var.init_refresh.ref_p;
383 1.1 agc cfg_p->refresh_p->trans_p = NULL;
384 1.1 agc
385 1.1 agc /* Setup (or change) kevent timer for reg refresh. */
386 1.1 agc rval = isns_change_kevent_list(cfg_p,
387 1.1 agc (uintptr_t)ISNS_EVT_TIMER_REFRESH, EVFILT_TIMER,
388 1.1 agc EV_ADD | EV_ENABLE, (int64_t)cfg_p->refresh_p->interval * 1000,
389 1.1 agc (intptr_t)isns_kevent_timer_refresh);
390 1.1 agc if (rval == -1) {
391 1.1 agc DBG("isns_task_init_refresh: "
392 1.1 agc "error on isns_change_kevent_list()\n");
393 1.1 agc }
394 1.1 agc
395 1.1 agc isns_end_task(task_p);
396 1.1 agc }
397 1.1 agc
398 1.1 agc
399 1.1 agc struct isns_task_s *
400 1.1 agc isns_new_task(struct isns_config_s *cfg_p, uint8_t task_type, int waitable)
401 1.1 agc {
402 1.1 agc struct isns_buffer_s *buf_p;
403 1.1 agc struct isns_task_s *task_p;
404 1.1 agc pthread_mutexattr_t mutexattr;
405 1.1 agc pthread_condattr_t condattr;
406 1.1 agc
407 1.1 agc task_p = NULL;
408 1.1 agc buf_p = isns_new_buffer((int)sizeof(struct isns_task_s));
409 1.1 agc if (buf_p) {
410 1.1 agc task_p = (struct isns_task_s *)isns_buffer_data(buf_p, 0);
411 1.1 agc task_p->cfg_p = cfg_p;
412 1.1 agc task_p->task_type = task_type;
413 1.1 agc task_p->waitable = waitable;
414 1.1 agc
415 1.1 agc if (waitable) {
416 1.1 agc pthread_mutexattr_init(&mutexattr);
417 1.1 agc pthread_mutexattr_settype(&mutexattr,
418 1.1 agc ISNS_MUTEX_TYPE_NORMAL);
419 1.1 agc pthread_mutex_init(&task_p->wait_mutex, &mutexattr);
420 1.1 agc
421 1.1 agc pthread_condattr_init(&condattr);
422 1.1 agc pthread_cond_init(&task_p->wait_condvar, &condattr);
423 1.1 agc task_p->wait_ref_count = 2;
424 1.1 agc }
425 1.1 agc }
426 1.1 agc
427 1.1 agc DBG("isns_new_task: %p, waitable=%d\n", task_p, waitable);
428 1.1 agc
429 1.1 agc return task_p;
430 1.1 agc }
431 1.1 agc
432 1.1 agc
433 1.1 agc void
434 1.1 agc isns_free_task(struct isns_task_s *task_p)
435 1.1 agc {
436 1.1 agc struct isns_buffer_s *buf_p;
437 1.1 agc int ref_count;
438 1.1 agc
439 1.1 agc DBG("isns_free_task: %p\n", task_p);
440 1.1 agc if (task_p->waitable) {
441 1.1 agc pthread_mutex_lock(&task_p->wait_mutex);
442 1.1 agc ref_count = --task_p->wait_ref_count;
443 1.1 agc pthread_mutex_unlock(&task_p->wait_mutex);
444 1.1 agc
445 1.1 agc if (ref_count > 0) {
446 1.1 agc DBG("isns_free_task: ref_count > 0, no free done\n");
447 1.1 agc return;
448 1.1 agc }
449 1.1 agc
450 1.1 agc pthread_mutex_destroy(&task_p->wait_mutex);
451 1.1 agc pthread_cond_destroy(&task_p->wait_condvar);
452 1.1 agc }
453 1.1 agc buf_p = ((struct isns_buffer_s *)(void *)(task_p))-1;
454 1.1 agc isns_free_buffer(buf_p);
455 1.1 agc }
456 1.1 agc
457 1.1 agc
458 1.1 agc void
459 1.1 agc isns_taskq_insert_head(struct isns_config_s *cfg_p,
460 1.1 agc struct isns_task_s *task_p)
461 1.1 agc {
462 1.1 agc pthread_mutex_lock(&cfg_p->taskq_mutex);
463 1.1 agc SIMPLEQ_INSERT_HEAD(&cfg_p->taskq_head, task_p, taskq_entry);
464 1.1 agc pthread_mutex_unlock(&cfg_p->taskq_mutex);
465 1.1 agc
466 1.1 agc DBG("isns_taskq_insert_head: %p\n", task_p);
467 1.1 agc }
468 1.1 agc
469 1.1 agc
470 1.1 agc void
471 1.1 agc isns_taskq_insert_tail(struct isns_config_s *cfg_p,
472 1.1 agc struct isns_task_s *task_p)
473 1.1 agc {
474 1.1 agc pthread_mutex_lock(&cfg_p->taskq_mutex);
475 1.1 agc SIMPLEQ_INSERT_TAIL(&cfg_p->taskq_head, task_p, taskq_entry);
476 1.1 agc pthread_mutex_unlock(&cfg_p->taskq_mutex);
477 1.1 agc
478 1.1 agc DBG("isns_taskq_insert_tail: %p\n", task_p);
479 1.1 agc }
480 1.1 agc
481 1.1 agc
482 1.1 agc struct isns_task_s *
483 1.1 agc isns_taskq_remove(struct isns_config_s *cfg_p)
484 1.1 agc {
485 1.1 agc struct isns_task_s *task_p = NULL;
486 1.1 agc
487 1.1 agc pthread_mutex_lock(&cfg_p->taskq_mutex);
488 1.1 agc if ((task_p = SIMPLEQ_FIRST(&cfg_p->taskq_head)) != NULL)
489 1.1 agc SIMPLEQ_REMOVE_HEAD(&cfg_p->taskq_head, taskq_entry);
490 1.1 agc pthread_mutex_unlock(&cfg_p->taskq_mutex);
491 1.1 agc
492 1.1 agc DBG("isns_taskq_remove: %p\n", task_p);
493 1.1 agc
494 1.1 agc return task_p;
495 1.1 agc }
496 1.1 agc
497 1.1 agc
498 1.1 agc struct isns_task_s *
499 1.1 agc isns_taskq_remove_trans(struct isns_config_s *cfg_p, uint16_t trans_id)
500 1.1 agc {
501 1.1 agc struct isns_task_s *task_p;
502 1.1 agc int trans_found;
503 1.1 agc
504 1.1 agc trans_found = 0;
505 1.1 agc pthread_mutex_lock(&cfg_p->taskq_mutex);
506 1.1 agc SIMPLEQ_FOREACH(task_p, &cfg_p->taskq_head, taskq_entry) {
507 1.1 agc if ((task_p->task_type == ISNS_TASK_SEND_PDU)
508 1.1 agc && (task_p->var.send_pdu.trans_p->id == trans_id)) {
509 1.1 agc trans_found = 1;
510 1.1 agc break;
511 1.1 agc }
512 1.1 agc }
513 1.1 agc if (trans_found) {
514 1.1 agc SIMPLEQ_REMOVE(&cfg_p->taskq_head, task_p, isns_task_s,
515 1.1 agc taskq_entry);
516 1.1 agc }
517 1.1 agc pthread_mutex_unlock(&cfg_p->taskq_mutex);
518 1.1 agc
519 1.1 agc return (trans_found ? task_p : NULL);
520 1.1 agc }
521