iopctl.c revision 1.22 1 1.22 joerg /* $NetBSD: iopctl.c,v 1.22 2011/08/30 19:03:25 joerg Exp $ */
2 1.1 ad
3 1.1 ad /*-
4 1.1 ad * Copyright (c) 2000 The NetBSD Foundation, Inc.
5 1.1 ad * All rights reserved.
6 1.1 ad *
7 1.1 ad * This code is derived from software contributed to The NetBSD Foundation
8 1.1 ad * by Andrew Doran.
9 1.1 ad *
10 1.1 ad * Redistribution and use in source and binary forms, with or without
11 1.1 ad * modification, are permitted provided that the following conditions
12 1.1 ad * are met:
13 1.1 ad * 1. Redistributions of source code must retain the above copyright
14 1.1 ad * notice, this list of conditions and the following disclaimer.
15 1.1 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 ad * notice, this list of conditions and the following disclaimer in the
17 1.1 ad * documentation and/or other materials provided with the distribution.
18 1.1 ad *
19 1.1 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 ad * POSSIBILITY OF SUCH DAMAGE.
30 1.1 ad */
31 1.1 ad
32 1.1 ad #ifndef lint
33 1.1 ad #include <sys/cdefs.h>
34 1.22 joerg __RCSID("$NetBSD: iopctl.c,v 1.22 2011/08/30 19:03:25 joerg Exp $");
35 1.1 ad #endif /* not lint */
36 1.1 ad
37 1.1 ad #include <sys/param.h>
38 1.1 ad #include <sys/ioctl.h>
39 1.1 ad #include <sys/uio.h>
40 1.1 ad
41 1.1 ad #include <err.h>
42 1.1 ad #include <errno.h>
43 1.1 ad #include <fcntl.h>
44 1.1 ad #include <stdio.h>
45 1.1 ad #include <stdlib.h>
46 1.1 ad #include <stdarg.h>
47 1.1 ad #include <string.h>
48 1.1 ad #include <unistd.h>
49 1.1 ad #include <util.h>
50 1.1 ad
51 1.1 ad #include <dev/i2o/i2o.h>
52 1.8 ad #include <dev/i2o/iopio.h>
53 1.1 ad
54 1.22 joerg static const char *class2str(int);
55 1.22 joerg static void getparam(int, int, void *, int);
56 1.22 joerg static int gettid(char **);
57 1.22 joerg static int show(const char *, const char *, ...) __printflike(2, 3);
58 1.22 joerg static void i2ostrvis(const u_char *, int, char *, int);
59 1.22 joerg static void usage(void) __dead;
60 1.22 joerg
61 1.22 joerg static void reconfig(char **);
62 1.22 joerg static void showdevid(char **);
63 1.22 joerg static void showddmid(char **);
64 1.22 joerg static void showlct(char **);
65 1.22 joerg static void showstatus(char **);
66 1.22 joerg static void showtidmap(char **);
67 1.1 ad
68 1.22 joerg static struct {
69 1.1 ad int class;
70 1.1 ad const char *caption;
71 1.1 ad } const i2oclass[] = {
72 1.1 ad { I2O_CLASS_EXECUTIVE, "executive" },
73 1.1 ad { I2O_CLASS_DDM, "device driver module" },
74 1.1 ad { I2O_CLASS_RANDOM_BLOCK_STORAGE, "random block storage" },
75 1.1 ad { I2O_CLASS_SEQUENTIAL_STORAGE, "sequential storage" },
76 1.1 ad { I2O_CLASS_LAN, "LAN port" },
77 1.1 ad { I2O_CLASS_WAN, "WAN port" },
78 1.1 ad { I2O_CLASS_FIBRE_CHANNEL_PORT, "fibrechannel port" },
79 1.1 ad { I2O_CLASS_FIBRE_CHANNEL_PERIPHERAL, "fibrechannel peripheral" },
80 1.1 ad { I2O_CLASS_SCSI_PERIPHERAL, "SCSI peripheral" },
81 1.1 ad { I2O_CLASS_ATE_PORT, "ATE port" },
82 1.1 ad { I2O_CLASS_ATE_PERIPHERAL, "ATE peripheral" },
83 1.1 ad { I2O_CLASS_FLOPPY_CONTROLLER, "floppy controller" },
84 1.1 ad { I2O_CLASS_FLOPPY_DEVICE, "floppy device" },
85 1.1 ad { I2O_CLASS_BUS_ADAPTER_PORT, "bus adapter port" },
86 1.1 ad };
87 1.1 ad
88 1.22 joerg static struct {
89 1.1 ad const char *label;
90 1.1 ad int takesargs;
91 1.1 ad void (*func)(char **);
92 1.1 ad } const cmdtab[] = {
93 1.1 ad { "reconfig", 0, reconfig },
94 1.1 ad { "showddmid", 1, showddmid },
95 1.1 ad { "showdevid", 1, showdevid },
96 1.1 ad { "showlct", 0, showlct },
97 1.1 ad { "showstatus", 0, showstatus },
98 1.8 ad { "showtidmap", 0, showtidmap },
99 1.1 ad };
100 1.1 ad
101 1.22 joerg static int fd;
102 1.22 joerg static char buf[32768];
103 1.22 joerg static struct i2o_status status;
104 1.1 ad
105 1.1 ad int
106 1.1 ad main(int argc, char **argv)
107 1.1 ad {
108 1.19 lukem int ch;
109 1.19 lukem size_t i;
110 1.1 ad const char *dv;
111 1.1 ad struct iovec iov;
112 1.1 ad
113 1.1 ad dv = "/dev/iop0";
114 1.1 ad
115 1.1 ad while ((ch = getopt(argc, argv, "f:")) != -1) {
116 1.1 ad switch (ch) {
117 1.1 ad case 'f':
118 1.1 ad dv = optarg;
119 1.1 ad break;
120 1.1 ad default:
121 1.1 ad usage();
122 1.1 ad /* NOTREACHED */
123 1.1 ad }
124 1.1 ad }
125 1.1 ad
126 1.1 ad if (argv[optind] == NULL)
127 1.1 ad usage();
128 1.1 ad
129 1.1 ad if ((fd = open(dv, O_RDWR)) < 0)
130 1.1 ad err(EXIT_FAILURE, "%s", dv);
131 1.1 ad
132 1.1 ad iov.iov_base = &status;
133 1.1 ad iov.iov_len = sizeof(status);
134 1.1 ad if (ioctl(fd, IOPIOCGSTATUS, &iov) < 0)
135 1.1 ad err(EXIT_FAILURE, "IOPIOCGSTATUS");
136 1.1 ad
137 1.1 ad for (i = 0; i < sizeof(cmdtab) / sizeof(cmdtab[0]); i++)
138 1.1 ad if (strcmp(argv[optind], cmdtab[i].label) == 0) {
139 1.1 ad if (cmdtab[i].takesargs == 0 &&
140 1.1 ad argv[optind + 1] != NULL)
141 1.1 ad usage();
142 1.1 ad (*cmdtab[i].func)(argv + optind + 1);
143 1.1 ad break;
144 1.1 ad }
145 1.1 ad
146 1.1 ad if (i == sizeof(cmdtab) / sizeof(cmdtab[0]))
147 1.8 ad errx(EXIT_FAILURE, "unknown command ``%s''", argv[optind]);
148 1.1 ad
149 1.1 ad close(fd);
150 1.1 ad exit(EXIT_SUCCESS);
151 1.1 ad /* NOTREACHED */
152 1.1 ad }
153 1.1 ad
154 1.22 joerg static void
155 1.1 ad usage(void)
156 1.1 ad {
157 1.1 ad
158 1.1 ad (void)fprintf(stderr, "usage: %s [-f dev] <command> [target]\n",
159 1.7 cgd getprogname());
160 1.1 ad exit(EXIT_FAILURE);
161 1.1 ad /* NOTREACHED */
162 1.1 ad }
163 1.1 ad
164 1.22 joerg static int
165 1.1 ad show(const char *hdr, const char *fmt, ...)
166 1.1 ad {
167 1.1 ad int i;
168 1.1 ad va_list va;
169 1.1 ad
170 1.1 ad for (i = printf("%s", hdr); i < 25; i++)
171 1.1 ad putchar(' ');
172 1.1 ad va_start(va, fmt);
173 1.1 ad i += vprintf(fmt, va);
174 1.1 ad va_end(va);
175 1.1 ad putchar('\n');
176 1.1 ad return (i);
177 1.1 ad }
178 1.1 ad
179 1.22 joerg static const char *
180 1.1 ad class2str(int class)
181 1.1 ad {
182 1.19 lukem size_t i;
183 1.1 ad
184 1.1 ad for (i = 0; i < sizeof(i2oclass) / sizeof(i2oclass[0]); i++)
185 1.1 ad if (class == i2oclass[i].class)
186 1.1 ad return (i2oclass[i].caption);
187 1.1 ad
188 1.1 ad return ("unknown");
189 1.1 ad }
190 1.1 ad
191 1.22 joerg static void
192 1.1 ad getparam(int tid, int group, void *pbuf, int pbufsize)
193 1.1 ad {
194 1.1 ad struct ioppt pt;
195 1.1 ad struct i2o_util_params_op mb;
196 1.8 ad struct i2o_reply *rf;
197 1.1 ad struct {
198 1.1 ad struct i2o_param_op_list_header olh;
199 1.1 ad struct i2o_param_op_all_template oat;
200 1.15 perry } __packed req;
201 1.1 ad
202 1.1 ad mb.msgflags = I2O_MSGFLAGS(i2o_util_params_op);
203 1.1 ad mb.msgfunc = I2O_MSGFUNC(tid, I2O_UTIL_PARAMS_GET);
204 1.1 ad mb.flags = 0;
205 1.1 ad
206 1.1 ad req.olh.count = htole16(1);
207 1.1 ad req.olh.reserved = htole16(0);
208 1.1 ad req.oat.operation = htole16(I2O_PARAMS_OP_FIELD_GET);
209 1.1 ad req.oat.fieldcount = htole16(0xffff);
210 1.1 ad req.oat.group = htole16(group);
211 1.1 ad
212 1.1 ad pt.pt_msg = &mb;
213 1.1 ad pt.pt_msglen = sizeof(mb);
214 1.1 ad pt.pt_reply = buf;
215 1.1 ad pt.pt_replylen = sizeof(buf);
216 1.1 ad pt.pt_timo = 10000;
217 1.1 ad pt.pt_nbufs = 2;
218 1.1 ad
219 1.1 ad pt.pt_bufs[0].ptb_data = &req;
220 1.1 ad pt.pt_bufs[0].ptb_datalen = sizeof(req);
221 1.1 ad pt.pt_bufs[0].ptb_out = 1;
222 1.1 ad
223 1.1 ad pt.pt_bufs[1].ptb_data = pbuf;
224 1.1 ad pt.pt_bufs[1].ptb_datalen = pbufsize;
225 1.1 ad pt.pt_bufs[1].ptb_out = 0;
226 1.1 ad
227 1.1 ad if (ioctl(fd, IOPIOCPT, &pt) < 0)
228 1.1 ad err(EXIT_FAILURE, "IOPIOCPT");
229 1.1 ad
230 1.8 ad rf = (struct i2o_reply *)buf;
231 1.10 ad if ((rf->msgflags & I2O_MSGFLAGS_FAIL) != 0)
232 1.10 ad errx(EXIT_FAILURE, "I2O_UTIL_PARAMS_GET failed (FAIL)");
233 1.8 ad if (rf->reqstatus != 0)
234 1.1 ad errx(EXIT_FAILURE, "I2O_UTIL_PARAMS_GET failed (%d)",
235 1.20 christos rf->reqstatus);
236 1.1 ad }
237 1.1 ad
238 1.22 joerg static void
239 1.1 ad showlct(char **argv)
240 1.1 ad {
241 1.1 ad struct iovec iov;
242 1.1 ad struct i2o_lct *lct;
243 1.1 ad struct i2o_lct_entry *ent;
244 1.1 ad u_int32_t classid, usertid;
245 1.1 ad int i, nent;
246 1.1 ad char ident[sizeof(ent->identitytag) * 4 + 1];
247 1.1 ad
248 1.1 ad iov.iov_base = buf;
249 1.1 ad iov.iov_len = sizeof(buf);
250 1.1 ad
251 1.1 ad if (ioctl(fd, IOPIOCGLCT, &iov) < 0)
252 1.1 ad err(EXIT_FAILURE, "IOPIOCGLCT");
253 1.1 ad
254 1.1 ad lct = (struct i2o_lct *)buf;
255 1.1 ad ent = lct->entry;
256 1.1 ad nent = ((le16toh(lct->tablesize) << 2) -
257 1.1 ad sizeof(struct i2o_lct) + sizeof(struct i2o_lct_entry)) /
258 1.1 ad sizeof(struct i2o_lct_entry);
259 1.12 ad
260 1.12 ad show("flags", "0x%x", le16toh(lct->flags));
261 1.12 ad show("iop flags", "0x%x", le32toh(lct->iopflags));
262 1.12 ad show("lct change indicator", "%d", le32toh(lct->changeindicator));
263 1.12 ad printf("\n");
264 1.1 ad
265 1.1 ad for (i = 0; i < nent; i++, ent++) {
266 1.1 ad classid = le32toh(ent->classid);
267 1.1 ad usertid = le32toh(ent->usertid);
268 1.1 ad
269 1.1 ad show("lct entry", "%d", i);
270 1.1 ad show("entry size", "%d bytes", le16toh(ent->entrysize) << 2);
271 1.1 ad show("local tid", "%d", le16toh(ent->localtid) & 4095);
272 1.1 ad show("change indicator", "%d", le32toh(ent->changeindicator));
273 1.1 ad show("flags", "%x", le32toh(ent->deviceflags));
274 1.1 ad show("class id", "%x (%s)", classid & 4095,
275 1.1 ad class2str(classid & 4095));
276 1.1 ad show("version", "%x", (classid >> 12) & 15);
277 1.1 ad show("organisation id", "%x", classid >> 16);
278 1.1 ad show("subclass info", "%x", le32toh(ent->subclassinfo));
279 1.1 ad show("user tid", "%d", usertid & 4095);
280 1.1 ad show("parent tid", "%d", (usertid >> 12) & 4095);
281 1.1 ad show("bios info", "%d", (usertid >> 24) & 255);
282 1.1 ad i2ostrvis(ent->identitytag, sizeof(ent->identitytag), ident,
283 1.1 ad sizeof(ident));
284 1.1 ad show("identity tag", "<%s>", ident);
285 1.1 ad show("event caps", "%x", le32toh(ent->eventcaps));
286 1.1 ad
287 1.1 ad if (i != nent - 1)
288 1.1 ad printf("\n");
289 1.1 ad }
290 1.1 ad }
291 1.1 ad
292 1.22 joerg static void
293 1.1 ad showstatus(char **argv)
294 1.1 ad {
295 1.1 ad char ident[sizeof(status.productid) + 1];
296 1.1 ad u_int32_t segnumber;
297 1.1 ad
298 1.1 ad i2ostrvis(status.productid, sizeof(status.productid),
299 1.1 ad ident, sizeof(ident));
300 1.1 ad
301 1.1 ad segnumber = le32toh(status.segnumber);
302 1.1 ad show("organization id", "%d", le16toh(status.orgid));
303 1.1 ad show("iop id", "%d", le32toh(status.iopid) & 4095);
304 1.1 ad show("host unit id", "%d", (le32toh(status.iopid) >> 16));
305 1.1 ad show("segment number", "%d", segnumber & 4095);
306 1.1 ad show("i2o version", "%d", (segnumber >> 12) & 15);
307 1.1 ad show("iop state", "%d", (segnumber >> 16) & 255);
308 1.1 ad show("messenger type", "%d", segnumber >> 24);
309 1.18 mhitch show("inbound frame sz", "%d", le16toh(status.inboundmframesize));
310 1.1 ad show("init code", "%d", status.initcode);
311 1.1 ad show("max inbound queue depth", "%d",
312 1.1 ad le32toh(status.maxinboundmframes));
313 1.1 ad show("inbound queue depth", "%d",
314 1.1 ad le32toh(status.currentinboundmframes));
315 1.1 ad show("max outbound queue depth", "%d",
316 1.1 ad le32toh(status.maxoutboundmframes));
317 1.1 ad show("product id string", "<%s>", ident);
318 1.1 ad show("expected lct size", "%d", le32toh(status.expectedlctsize));
319 1.1 ad show("iop capabilities", "0x%08x", le32toh(status.iopcaps));
320 1.1 ad show("desired priv mem sz", "0x%08x",
321 1.1 ad le32toh(status.desiredprivmemsize));
322 1.1 ad show("current priv mem sz", "0x%08x",
323 1.1 ad le32toh(status.currentprivmemsize));
324 1.1 ad show("current priv mem base", "0x%08x",
325 1.1 ad le32toh(status.currentprivmembase));
326 1.1 ad show("desired priv io sz", "0x%08x",
327 1.1 ad le32toh(status.desiredpriviosize));
328 1.1 ad show("current priv io sz", "0x%08x",
329 1.1 ad le32toh(status.currentpriviosize));
330 1.1 ad show("current priv io base", "0x%08x",
331 1.1 ad le32toh(status.currentpriviobase));
332 1.1 ad }
333 1.1 ad
334 1.22 joerg static void
335 1.1 ad showddmid(char **argv)
336 1.1 ad {
337 1.1 ad struct {
338 1.1 ad struct i2o_param_op_results pr;
339 1.1 ad struct i2o_param_read_results prr;
340 1.1 ad struct i2o_param_ddm_identity di;
341 1.9 ad char padding[128];
342 1.15 perry } __packed p;
343 1.1 ad char ident[128];
344 1.20 christos uint32_t serial[3];
345 1.1 ad
346 1.11 ad getparam(gettid(argv), I2O_PARAM_DDM_IDENTITY, &p, sizeof(p));
347 1.1 ad
348 1.1 ad show("ddm tid", "%d", le16toh(p.di.ddmtid) & 4095);
349 1.1 ad i2ostrvis(p.di.name, sizeof(p.di.name), ident, sizeof(ident));
350 1.1 ad show("module name", "%s", ident);
351 1.1 ad i2ostrvis(p.di.revlevel, sizeof(p.di.revlevel), ident, sizeof(ident));
352 1.1 ad show("module revision", "%s", ident);
353 1.1 ad show("serial # format", "%d", p.di.snformat);
354 1.21 dholland __CTASSERT(sizeof(serial) == sizeof(p.di.serialnumber));
355 1.20 christos memcpy(serial, &p.di.serialnumber, sizeof(serial));
356 1.20 christos show("serial #", "%08x%08x%08x", serial[0], serial[1], serial[2]);
357 1.1 ad }
358 1.1 ad
359 1.22 joerg static void
360 1.1 ad showdevid(char **argv)
361 1.1 ad {
362 1.1 ad struct {
363 1.1 ad struct i2o_param_op_results pr;
364 1.1 ad struct i2o_param_read_results prr;
365 1.1 ad struct i2o_param_device_identity di;
366 1.9 ad char padding[128];
367 1.15 perry } __packed p;
368 1.1 ad char ident[128];
369 1.1 ad
370 1.11 ad getparam(gettid(argv), I2O_PARAM_DEVICE_IDENTITY, &p, sizeof(p));
371 1.1 ad
372 1.1 ad show("class id", "%d (%s)", le32toh(p.di.classid) & 4095,
373 1.1 ad class2str(le32toh(p.di.classid) & 4095));
374 1.1 ad show("owner tid", "%d", le32toh(p.di.ownertid) & 4095);
375 1.1 ad show("parent tid", "%d", le32toh(p.di.parenttid) & 4095);
376 1.1 ad
377 1.1 ad i2ostrvis(p.di.vendorinfo, sizeof(p.di.vendorinfo), ident,
378 1.1 ad sizeof(ident));
379 1.1 ad show("vendor", "<%s>", ident);
380 1.1 ad
381 1.1 ad i2ostrvis(p.di.productinfo, sizeof(p.di.productinfo), ident,
382 1.1 ad sizeof(ident));
383 1.1 ad show("product", "<%s>", ident);
384 1.1 ad
385 1.1 ad i2ostrvis(p.di.description, sizeof(p.di.description), ident,
386 1.1 ad sizeof(ident));
387 1.1 ad show("description", "<%s>", ident);
388 1.1 ad
389 1.1 ad i2ostrvis(p.di.revlevel, sizeof(p.di.revlevel), ident, sizeof(ident));
390 1.1 ad show("revision level", "<%s>", ident);
391 1.1 ad }
392 1.1 ad
393 1.22 joerg static void
394 1.1 ad reconfig(char **argv)
395 1.1 ad {
396 1.1 ad
397 1.1 ad if (ioctl(fd, IOPIOCRECONFIG))
398 1.1 ad err(EXIT_FAILURE, "IOPIOCRECONFIG");
399 1.8 ad }
400 1.8 ad
401 1.22 joerg static void
402 1.8 ad showtidmap(char **argv)
403 1.8 ad {
404 1.8 ad struct iovec iov;
405 1.8 ad struct iop_tidmap *it;
406 1.8 ad int nent;
407 1.8 ad
408 1.8 ad iov.iov_base = buf;
409 1.8 ad iov.iov_len = sizeof(buf);
410 1.8 ad
411 1.8 ad if (ioctl(fd, IOPIOCGTIDMAP, &iov) < 0)
412 1.8 ad err(EXIT_FAILURE, "IOPIOCGTIDMAP");
413 1.8 ad
414 1.8 ad nent = iov.iov_len / sizeof(*it);
415 1.8 ad it = (struct iop_tidmap *)buf;
416 1.8 ad
417 1.11 ad for (; nent-- != 0; it++)
418 1.8 ad if ((it->it_flags & IT_CONFIGURED) != 0)
419 1.8 ad printf("%s\ttid %d\n", it->it_dvname, it->it_tid);
420 1.1 ad }
421 1.1 ad
422 1.22 joerg static void
423 1.13 mrg i2ostrvis(const u_char *src, int slen, char *dst, int dlen)
424 1.1 ad {
425 1.1 ad int hc, lc, i, nit;
426 1.1 ad
427 1.1 ad dlen--;
428 1.1 ad lc = 0;
429 1.1 ad hc = 0;
430 1.1 ad i = 0;
431 1.1 ad
432 1.1 ad /*
433 1.1 ad * DPT use NUL as a space, whereas AMI use it as a terminator. The
434 1.1 ad * spec has nothing to say about it. Since AMI fields are usually
435 1.1 ad * filled with junk after the terminator, ...
436 1.1 ad */
437 1.1 ad nit = (le16toh(status.orgid) != I2O_ORG_DPT);
438 1.1 ad
439 1.1 ad while (slen-- != 0 && dlen-- != 0) {
440 1.1 ad if (nit && *src == '\0')
441 1.1 ad break;
442 1.1 ad else if (*src <= 0x20 || *src >= 0x7f) {
443 1.1 ad if (hc)
444 1.1 ad dst[i++] = ' ';
445 1.1 ad } else {
446 1.1 ad hc = 1;
447 1.1 ad dst[i++] = *src;
448 1.1 ad lc = i;
449 1.1 ad }
450 1.1 ad src++;
451 1.1 ad }
452 1.1 ad
453 1.1 ad dst[lc] = '\0';
454 1.11 ad }
455 1.11 ad
456 1.22 joerg static int
457 1.11 ad gettid(char **argv)
458 1.11 ad {
459 1.11 ad char *argp;
460 1.11 ad int tid;
461 1.11 ad
462 1.11 ad if (argv[1] != NULL)
463 1.11 ad usage();
464 1.11 ad
465 1.11 ad tid = (int)strtol(argv[0], &argp, 0);
466 1.11 ad if (*argp != '\0')
467 1.11 ad usage();
468 1.11 ad
469 1.11 ad return (tid);
470 1.1 ad }
471