cyclic_test.c revision 1.3 1 1.3 chs /* $NetBSD: cyclic_test.c,v 1.3 2018/05/28 21:05:02 chs Exp $ */
2 1.2 darran
3 1.1 darran /*-
4 1.1 darran * Copyright 2007 John Birrell <jb (at) FreeBSD.org>
5 1.1 darran *
6 1.1 darran * Redistribution and use in source and binary forms, with or without
7 1.1 darran * modification, are permitted provided that the following conditions
8 1.1 darran * are met:
9 1.1 darran * 1. Redistributions of source code must retain the above copyright
10 1.1 darran * notice, this list of conditions and the following disclaimer.
11 1.1 darran * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 darran * notice, this list of conditions and the following disclaimer in the
13 1.1 darran * documentation and/or other materials provided with the distribution.
14 1.1 darran *
15 1.1 darran * THIS SOFTWARE IS PROVIDED BY AUTHOR AND CONTRIBUTORS ``AS IS'' AND
16 1.1 darran * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17 1.1 darran * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18 1.1 darran * ARE DISCLAIMED. IN NO EVENT SHALL AUTHOR OR CONTRIBUTORS BE LIABLE
19 1.1 darran * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20 1.1 darran * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
21 1.1 darran * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 1.1 darran * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23 1.1 darran * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 1.1 darran * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 1.1 darran * SUCH DAMAGE.
26 1.1 darran *
27 1.3 chs * $FreeBSD: head/sys/cddl/dev/cyclic/cyclic_test.c 179260 2008-05-23 22:21:58Z jb $
28 1.1 darran *
29 1.1 darran */
30 1.1 darran
31 1.1 darran #include <sys/cdefs.h>
32 1.1 darran #include <sys/systm.h>
33 1.1 darran #include <sys/kernel.h>
34 1.1 darran #include <sys/conf.h>
35 1.1 darran #include <sys/kthread.h>
36 1.1 darran #include <sys/module.h>
37 1.1 darran #include <sys/sysctl.h>
38 1.1 darran #include <sys/cyclic.h>
39 1.1 darran #include <sys/time.h>
40 1.1 darran
41 1.1 darran static struct timespec test_001_start;
42 1.1 darran
43 1.1 darran static void
44 1.1 darran cyclic_test_001_func(void *arg)
45 1.1 darran {
46 1.1 darran struct timespec ts;
47 1.1 darran
48 1.1 darran nanotime(&ts);
49 1.1 darran timespecsub(&ts,&test_001_start);
50 1.1 darran printf("%s: called after %lu.%09lu on curcpu %d\n",__func__,(u_long) ts.tv_sec,(u_long) ts.tv_nsec, curcpu);
51 1.1 darran }
52 1.1 darran
53 1.1 darran static void
54 1.1 darran cyclic_test_001(void)
55 1.1 darran {
56 1.1 darran int error = 0;
57 1.1 darran cyc_handler_t hdlr;
58 1.1 darran cyc_time_t when;
59 1.1 darran cyclic_id_t id;
60 1.1 darran
61 1.1 darran printf("%s: starting\n",__func__);
62 1.1 darran
63 1.1 darran hdlr.cyh_func = (cyc_func_t) cyclic_test_001_func;
64 1.1 darran hdlr.cyh_arg = 0;
65 1.1 darran
66 1.1 darran when.cyt_when = 0;
67 1.1 darran when.cyt_interval = 1000000000;
68 1.1 darran
69 1.1 darran nanotime(&test_001_start);
70 1.1 darran
71 1.1 darran mutex_enter(&cpu_lock);
72 1.1 darran
73 1.1 darran id = cyclic_add(&hdlr, &when);
74 1.1 darran
75 1.1 darran mutex_exit(&cpu_lock);
76 1.1 darran
77 1.1 darran DELAY(1200000);
78 1.1 darran
79 1.1 darran mutex_enter(&cpu_lock);
80 1.1 darran
81 1.1 darran cyclic_remove(id);
82 1.1 darran
83 1.1 darran mutex_exit(&cpu_lock);
84 1.1 darran
85 1.1 darran printf("%s: %s\n",__func__, error == 0 ? "passed":"failed");
86 1.1 darran }
87 1.1 darran
88 1.1 darran static struct timespec test_002_start;
89 1.1 darran
90 1.1 darran static void
91 1.1 darran cyclic_test_002_func(void *arg)
92 1.1 darran {
93 1.1 darran struct timespec ts;
94 1.1 darran
95 1.1 darran nanotime(&ts);
96 1.1 darran timespecsub(&ts,&test_002_start);
97 1.1 darran printf("%s: called after %lu.%09lu on curcpu %d\n",__func__,(u_long) ts.tv_sec,(u_long) ts.tv_nsec, curcpu);
98 1.1 darran }
99 1.1 darran
100 1.1 darran static void
101 1.1 darran cyclic_test_002_online(void *arg, cpu_t *c, cyc_handler_t *hdlr, cyc_time_t *t)
102 1.1 darran {
103 1.1 darran printf("%s: online on curcpu %d\n",__func__, curcpu);
104 1.1 darran hdlr->cyh_func = cyclic_test_002_func;
105 1.1 darran hdlr->cyh_arg = NULL;
106 1.1 darran t->cyt_when = 0;
107 1.1 darran t->cyt_interval = 1000000000;
108 1.1 darran }
109 1.1 darran
110 1.1 darran static void
111 1.1 darran cyclic_test_002_offline(void *arg, cpu_t *c, void *arg1)
112 1.1 darran {
113 1.1 darran printf("%s: offline on curcpu %d\n",__func__, curcpu);
114 1.1 darran }
115 1.1 darran
116 1.1 darran static void
117 1.1 darran cyclic_test_002(void)
118 1.1 darran {
119 1.1 darran int error = 0;
120 1.1 darran cyc_omni_handler_t hdlr;
121 1.1 darran cyclic_id_t id;
122 1.1 darran
123 1.1 darran printf("%s: starting\n",__func__);
124 1.1 darran
125 1.1 darran hdlr.cyo_online = cyclic_test_002_online;
126 1.1 darran hdlr.cyo_offline = cyclic_test_002_offline;
127 1.1 darran hdlr.cyo_arg = NULL;
128 1.1 darran
129 1.1 darran nanotime(&test_002_start);
130 1.1 darran
131 1.1 darran mutex_enter(&cpu_lock);
132 1.1 darran
133 1.1 darran id = cyclic_add_omni(&hdlr);
134 1.1 darran
135 1.1 darran mutex_exit(&cpu_lock);
136 1.1 darran
137 1.1 darran DELAY(1200000);
138 1.1 darran
139 1.1 darran mutex_enter(&cpu_lock);
140 1.1 darran
141 1.1 darran cyclic_remove(id);
142 1.1 darran
143 1.1 darran mutex_exit(&cpu_lock);
144 1.1 darran
145 1.1 darran printf("%s: %s\n",__func__, error == 0 ? "passed":"failed");
146 1.1 darran }
147 1.1 darran
148 1.1 darran static struct timespec test_003_start;
149 1.1 darran
150 1.1 darran static void
151 1.1 darran cyclic_test_003_func(void *arg)
152 1.1 darran {
153 1.1 darran struct timespec ts;
154 1.1 darran
155 1.1 darran nanotime(&ts);
156 1.1 darran timespecsub(&ts,&test_003_start);
157 1.1 darran printf("%s: called after %lu.%09lu on curcpu %d id %ju\n",__func__,(u_long) ts.tv_sec,(u_long) ts.tv_nsec, curcpu, (uintmax_t)(uintptr_t) arg);
158 1.1 darran }
159 1.1 darran
160 1.1 darran static void
161 1.1 darran cyclic_test_003(void)
162 1.1 darran {
163 1.1 darran int error = 0;
164 1.1 darran cyc_handler_t hdlr;
165 1.1 darran cyc_time_t when;
166 1.1 darran cyclic_id_t id;
167 1.1 darran cyclic_id_t id1;
168 1.1 darran cyclic_id_t id2;
169 1.1 darran cyclic_id_t id3;
170 1.1 darran
171 1.1 darran printf("%s: starting\n",__func__);
172 1.1 darran
173 1.1 darran hdlr.cyh_func = (cyc_func_t) cyclic_test_003_func;
174 1.1 darran
175 1.1 darran when.cyt_when = 0;
176 1.1 darran
177 1.1 darran nanotime(&test_003_start);
178 1.1 darran
179 1.1 darran mutex_enter(&cpu_lock);
180 1.1 darran
181 1.1 darran when.cyt_interval = 200000000;
182 1.1 darran hdlr.cyh_arg = (void *) 0UL;
183 1.1 darran id = cyclic_add(&hdlr, &when);
184 1.1 darran
185 1.1 darran when.cyt_interval = 400000000;
186 1.1 darran hdlr.cyh_arg = (void *) 1UL;
187 1.1 darran id1 = cyclic_add(&hdlr, &when);
188 1.1 darran
189 1.1 darran hdlr.cyh_arg = (void *) 2UL;
190 1.1 darran when.cyt_interval = 1000000000;
191 1.1 darran id2 = cyclic_add(&hdlr, &when);
192 1.1 darran
193 1.1 darran hdlr.cyh_arg = (void *) 3UL;
194 1.1 darran when.cyt_interval = 1300000000;
195 1.1 darran id3 = cyclic_add(&hdlr, &when);
196 1.1 darran
197 1.1 darran mutex_exit(&cpu_lock);
198 1.1 darran
199 1.1 darran DELAY(1200000);
200 1.1 darran
201 1.1 darran mutex_enter(&cpu_lock);
202 1.1 darran
203 1.1 darran cyclic_remove(id);
204 1.1 darran cyclic_remove(id1);
205 1.1 darran cyclic_remove(id2);
206 1.1 darran cyclic_remove(id3);
207 1.1 darran
208 1.1 darran mutex_exit(&cpu_lock);
209 1.1 darran
210 1.1 darran printf("%s: %s\n",__func__, error == 0 ? "passed":"failed");
211 1.1 darran }
212 1.1 darran
213 1.1 darran /* Kernel thread command routine. */
214 1.1 darran static void
215 1.1 darran cyclic_run_tests(void *arg)
216 1.1 darran {
217 1.1 darran intptr_t cmd = (intptr_t) arg;
218 1.1 darran
219 1.1 darran switch (cmd) {
220 1.1 darran case 1:
221 1.1 darran cyclic_test_001();
222 1.1 darran break;
223 1.1 darran case 2:
224 1.1 darran cyclic_test_002();
225 1.1 darran break;
226 1.1 darran case 3:
227 1.1 darran cyclic_test_003();
228 1.1 darran break;
229 1.1 darran default:
230 1.1 darran cyclic_test_001();
231 1.1 darran cyclic_test_002();
232 1.1 darran cyclic_test_003();
233 1.1 darran break;
234 1.1 darran }
235 1.1 darran
236 1.1 darran printf("%s: finished\n",__func__);
237 1.1 darran
238 1.1 darran kthread_exit();
239 1.1 darran }
240 1.1 darran
241 1.1 darran static int
242 1.1 darran cyclic_test(SYSCTL_HANDLER_ARGS)
243 1.1 darran {
244 1.1 darran int error, cmd = 0;
245 1.1 darran
246 1.1 darran error = sysctl_wire_old_buffer(req, sizeof(int));
247 1.1 darran if (error == 0)
248 1.1 darran error = sysctl_handle_int(oidp, &cmd, 0, req);
249 1.1 darran if (error != 0 || req->newptr == NULL)
250 1.1 darran return (error);
251 1.1 darran
252 1.1 darran /* Check for command validity. */
253 1.1 darran switch (cmd) {
254 1.1 darran case 1:
255 1.1 darran case 2:
256 1.1 darran case -1:
257 1.1 darran /*
258 1.1 darran * Execute the tests in a kernel thread to avoid blocking
259 1.1 darran * the sysctl. Look for the results in the syslog.
260 1.1 darran */
261 1.1 darran error = kthread_add(cyclic_run_tests, (void *)(uintptr_t) cmd,
262 1.1 darran NULL, NULL, 0, 0, "cyctest%d", cmd);
263 1.1 darran break;
264 1.1 darran default:
265 1.1 darran printf("Usage: debug.cyclic.test=(1..9) or -1 for all tests\n");
266 1.1 darran error = EINVAL;
267 1.1 darran break;
268 1.1 darran }
269 1.1 darran
270 1.1 darran return (error);
271 1.1 darran }
272 1.1 darran
273 1.1 darran SYSCTL_NODE(_debug, OID_AUTO, cyclic, CTLFLAG_RW, NULL, "Cyclic nodes");
274 1.1 darran SYSCTL_PROC(_debug_cyclic, OID_AUTO, test, CTLTYPE_INT | CTLFLAG_RW, 0, 0,
275 1.1 darran cyclic_test, "I", "Enables a cyclic test. Use -1 for all tests.");
276 1.1 darran
277 1.1 darran static int
278 1.1 darran cyclic_test_modevent(module_t mod, int type, void *data)
279 1.1 darran {
280 1.1 darran int error = 0;
281 1.1 darran
282 1.1 darran switch (type) {
283 1.1 darran case MOD_LOAD:
284 1.1 darran break;
285 1.1 darran
286 1.1 darran case MOD_UNLOAD:
287 1.1 darran break;
288 1.1 darran
289 1.1 darran case MOD_SHUTDOWN:
290 1.1 darran break;
291 1.1 darran
292 1.1 darran default:
293 1.1 darran error = EOPNOTSUPP;
294 1.1 darran break;
295 1.1 darran
296 1.1 darran }
297 1.1 darran return (error);
298 1.1 darran }
299 1.1 darran
300 1.1 darran DEV_MODULE(cyclic_test, cyclic_test_modevent, NULL);
301 1.1 darran MODULE_VERSION(cyclic_test, 1);
302 1.1 darran MODULE_DEPEND(cyclic_test, cyclic, 1, 1, 1);
303 1.1 darran MODULE_DEPEND(cyclic_test, opensolaris, 1, 1, 1);
304