subr_prf.c revision 1.166 1 1.166 christos /* $NetBSD: subr_prf.c,v 1.166 2018/04/11 15:25:58 christos Exp $ */
2 1.15 cgd
3 1.12 cgd /*-
4 1.12 cgd * Copyright (c) 1986, 1988, 1991, 1993
5 1.12 cgd * The Regents of the University of California. All rights reserved.
6 1.12 cgd * (c) UNIX System Laboratories, Inc.
7 1.12 cgd * All or some portions of this file are derived from material licensed
8 1.12 cgd * to the University of California by American Telephone and Telegraph
9 1.12 cgd * Co. or Unix System Laboratories, Inc. and are reproduced herein with
10 1.12 cgd * the permission of UNIX System Laboratories, Inc.
11 1.12 cgd *
12 1.12 cgd * Redistribution and use in source and binary forms, with or without
13 1.12 cgd * modification, are permitted provided that the following conditions
14 1.12 cgd * are met:
15 1.12 cgd * 1. Redistributions of source code must retain the above copyright
16 1.12 cgd * notice, this list of conditions and the following disclaimer.
17 1.12 cgd * 2. Redistributions in binary form must reproduce the above copyright
18 1.12 cgd * notice, this list of conditions and the following disclaimer in the
19 1.12 cgd * documentation and/or other materials provided with the distribution.
20 1.93 agc * 3. Neither the name of the University nor the names of its contributors
21 1.12 cgd * may be used to endorse or promote products derived from this software
22 1.12 cgd * without specific prior written permission.
23 1.12 cgd *
24 1.12 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
25 1.12 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26 1.12 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27 1.12 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28 1.12 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
29 1.12 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
30 1.12 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31 1.12 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
32 1.12 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
33 1.12 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34 1.12 cgd * SUCH DAMAGE.
35 1.12 cgd *
36 1.48 fvdl * @(#)subr_prf.c 8.4 (Berkeley) 5/4/95
37 1.12 cgd */
38 1.82 lukem
39 1.82 lukem #include <sys/cdefs.h>
40 1.166 christos __KERNEL_RCSID(0, "$NetBSD: subr_prf.c,v 1.166 2018/04/11 15:25:58 christos Exp $");
41 1.54 thorpej
42 1.159 pooka #ifdef _KERNEL_OPT
43 1.49 jonathan #include "opt_ddb.h"
44 1.67 ws #include "opt_ipkdb.h"
45 1.80 lukem #include "opt_kgdb.h"
46 1.90 atatat #include "opt_dump.h"
47 1.154 tls #include "opt_rnd_printf.h"
48 1.159 pooka #endif
49 1.12 cgd
50 1.12 cgd #include <sys/param.h>
51 1.78 kleink #include <sys/stdint.h>
52 1.12 cgd #include <sys/systm.h>
53 1.12 cgd #include <sys/buf.h>
54 1.109 he #include <sys/device.h>
55 1.12 cgd #include <sys/reboot.h>
56 1.12 cgd #include <sys/msgbuf.h>
57 1.12 cgd #include <sys/proc.h>
58 1.12 cgd #include <sys/ioctl.h>
59 1.12 cgd #include <sys/vnode.h>
60 1.12 cgd #include <sys/file.h>
61 1.12 cgd #include <sys/tty.h>
62 1.12 cgd #include <sys/tprintf.h>
63 1.137 dyoung #include <sys/spldebug.h>
64 1.12 cgd #include <sys/syslog.h>
65 1.87 thorpej #include <sys/kprintf.h>
66 1.115 ad #include <sys/atomic.h>
67 1.126 pooka #include <sys/kernel.h>
68 1.128 pooka #include <sys/cpu.h>
69 1.154 tls #include <sys/sha2.h>
70 1.158 riastrad #include <sys/rndsource.h>
71 1.12 cgd
72 1.20 christos #include <dev/cons.h>
73 1.20 christos
74 1.108 joerg #include <net/if.h>
75 1.108 joerg
76 1.67 ws #ifdef IPKDB
77 1.67 ws #include <ipkdb/ipkdb.h>
78 1.67 ws #endif
79 1.67 ws
80 1.126 pooka static kmutex_t kprintf_mtx;
81 1.126 pooka static bool kprintf_inited = false;
82 1.49 jonathan
83 1.22 christos #ifdef KGDB
84 1.42 thorpej #include <sys/kgdb.h>
85 1.12 cgd #endif
86 1.150 apb
87 1.45 chuck #ifdef DDB
88 1.150 apb #include <ddb/ddbvar.h> /* db_panic */
89 1.45 chuck #include <ddb/db_output.h> /* db_printf, db_putchar prototypes */
90 1.45 chuck #endif
91 1.45 chuck
92 1.45 chuck
93 1.45 chuck /*
94 1.45 chuck * defines
95 1.45 chuck */
96 1.164 christos #define KLOG_PRI 0x80000000
97 1.45 chuck
98 1.45 chuck
99 1.45 chuck /*
100 1.45 chuck * local prototypes
101 1.45 chuck */
102 1.45 chuck
103 1.94 junyoung static void putchar(int, int, struct tty *);
104 1.20 christos
105 1.12 cgd
106 1.37 thorpej /*
107 1.45 chuck * globals
108 1.37 thorpej */
109 1.37 thorpej
110 1.77 tsutsui extern struct tty *constty; /* pointer to console "window" tty */
111 1.45 chuck extern int log_open; /* subr_log: is /dev/klog open? */
112 1.154 tls extern krndsource_t rnd_printf_source;
113 1.45 chuck const char *panicstr; /* arg to first call to panic (used as a flag
114 1.45 chuck to indicate that panic has already been called). */
115 1.115 ad struct cpu_info *paniccpu; /* cpu that first paniced */
116 1.79 simonb long panicstart, panicend; /* position in the msgbuf of the start and
117 1.79 simonb end of the formatted panicstr. */
118 1.74 sommerfe int doing_shutdown; /* set to indicate shutdown in progress */
119 1.45 chuck
120 1.154 tls #ifdef RND_PRINTF
121 1.154 tls static bool kprintf_inited_callout = false;
122 1.154 tls static SHA512_CTX kprnd_sha;
123 1.154 tls static uint8_t kprnd_accum[SHA512_DIGEST_LENGTH];
124 1.154 tls static int kprnd_added;
125 1.154 tls
126 1.154 tls static struct callout kprnd_callout;
127 1.154 tls #endif
128 1.154 tls
129 1.90 atatat #ifndef DUMP_ON_PANIC
130 1.90 atatat #define DUMP_ON_PANIC 1
131 1.90 atatat #endif
132 1.90 atatat int dumponpanic = DUMP_ON_PANIC;
133 1.90 atatat
134 1.45 chuck /*
135 1.45 chuck * v_putc: routine to putc on virtual console
136 1.45 chuck *
137 1.45 chuck * the v_putc pointer can be used to redirect the console cnputc elsewhere
138 1.45 chuck * [e.g. to a "virtual console"].
139 1.45 chuck */
140 1.12 cgd
141 1.94 junyoung void (*v_putc)(int) = cnputc; /* start with cnputc (normal cons) */
142 1.94 junyoung void (*v_flush)(void) = cnflush; /* start with cnflush (normal cons) */
143 1.12 cgd
144 1.127 pooka const char hexdigits[] = "0123456789abcdef";
145 1.127 pooka const char HEXDIGITS[] = "0123456789ABCDEF";
146 1.127 pooka
147 1.12 cgd
148 1.45 chuck /*
149 1.45 chuck * functions
150 1.45 chuck */
151 1.12 cgd
152 1.154 tls #ifdef RND_PRINTF
153 1.154 tls static void kprintf_rnd_get(size_t bytes, void *priv)
154 1.154 tls {
155 1.154 tls if (kprnd_added) {
156 1.154 tls KASSERT(kprintf_inited);
157 1.154 tls if (mutex_tryenter(&kprintf_mtx)) {
158 1.154 tls SHA512_Final(kprnd_accum, &kprnd_sha);
159 1.154 tls rnd_add_data(&rnd_printf_source,
160 1.154 tls kprnd_accum, sizeof(kprnd_accum), 0);
161 1.154 tls kprnd_added = 0;
162 1.154 tls /* This, we must do, since we called _Final. */
163 1.154 tls SHA512_Init(&kprnd_sha);
164 1.154 tls /* This is optional but seems useful. */
165 1.154 tls SHA512_Update(&kprnd_sha, kprnd_accum,
166 1.154 tls sizeof(kprnd_accum));
167 1.156 apb mutex_exit(&kprintf_mtx);
168 1.154 tls }
169 1.154 tls }
170 1.154 tls }
171 1.154 tls
172 1.154 tls static void kprintf_rnd_callout(void *arg)
173 1.154 tls {
174 1.154 tls kprintf_rnd_get(0, NULL);
175 1.154 tls callout_schedule(&kprnd_callout, hz);
176 1.154 tls }
177 1.154 tls
178 1.154 tls #endif
179 1.154 tls
180 1.12 cgd /*
181 1.126 pooka * Locking is inited fairly early in MI bootstrap. Before that
182 1.126 pooka * prints are done unlocked. But that doesn't really matter,
183 1.126 pooka * since nothing can preempt us before interrupts are enabled.
184 1.126 pooka */
185 1.126 pooka void
186 1.132 cegger kprintf_init(void)
187 1.126 pooka {
188 1.126 pooka
189 1.126 pooka KASSERT(!kprintf_inited && cold); /* not foolproof, but ... */
190 1.154 tls #ifdef RND_PRINTF
191 1.154 tls SHA512_Init(&kprnd_sha);
192 1.154 tls #endif
193 1.126 pooka mutex_init(&kprintf_mtx, MUTEX_DEFAULT, IPL_HIGH);
194 1.126 pooka kprintf_inited = true;
195 1.126 pooka }
196 1.126 pooka
197 1.154 tls #ifdef RND_PRINTF
198 1.154 tls void
199 1.154 tls kprintf_init_callout(void)
200 1.154 tls {
201 1.154 tls KASSERT(!kprintf_inited_callout);
202 1.154 tls callout_init(&kprnd_callout, CALLOUT_MPSAFE);
203 1.154 tls callout_setfunc(&kprnd_callout, kprintf_rnd_callout, NULL);
204 1.154 tls callout_schedule(&kprnd_callout, hz);
205 1.154 tls kprintf_inited_callout = true;
206 1.154 tls }
207 1.154 tls #endif
208 1.154 tls
209 1.126 pooka void
210 1.132 cegger kprintf_lock(void)
211 1.126 pooka {
212 1.126 pooka
213 1.126 pooka if (__predict_true(kprintf_inited))
214 1.126 pooka mutex_enter(&kprintf_mtx);
215 1.126 pooka }
216 1.126 pooka
217 1.126 pooka void
218 1.132 cegger kprintf_unlock(void)
219 1.126 pooka {
220 1.126 pooka
221 1.126 pooka if (__predict_true(kprintf_inited)) {
222 1.126 pooka /* assert kprintf wasn't somehow inited while we were in */
223 1.126 pooka KASSERT(mutex_owned(&kprintf_mtx));
224 1.126 pooka mutex_exit(&kprintf_mtx);
225 1.126 pooka }
226 1.126 pooka }
227 1.126 pooka
228 1.126 pooka /*
229 1.89 thorpej * twiddle: spin a little propellor on the console.
230 1.89 thorpej */
231 1.89 thorpej
232 1.89 thorpej void
233 1.89 thorpej twiddle(void)
234 1.89 thorpej {
235 1.89 thorpej static const char twiddle_chars[] = "|/-\\";
236 1.89 thorpej static int pos;
237 1.89 thorpej
238 1.126 pooka kprintf_lock();
239 1.89 thorpej
240 1.89 thorpej putchar(twiddle_chars[pos++ & 3], TOCONS, NULL);
241 1.89 thorpej putchar('\b', TOCONS, NULL);
242 1.89 thorpej
243 1.126 pooka kprintf_unlock();
244 1.89 thorpej }
245 1.89 thorpej
246 1.89 thorpej /*
247 1.45 chuck * panic: handle an unresolvable fatal error
248 1.45 chuck *
249 1.45 chuck * prints "panic: <message>" and reboots. if called twice (i.e. recursive
250 1.138 he * call) we avoid trying to dump and just reboot (to avoid recursive panics).
251 1.12 cgd */
252 1.45 chuck
253 1.14 cgd void
254 1.12 cgd panic(const char *fmt, ...)
255 1.12 cgd {
256 1.143 christos va_list ap;
257 1.143 christos
258 1.143 christos va_start(ap, fmt);
259 1.143 christos vpanic(fmt, ap);
260 1.143 christos va_end(ap);
261 1.143 christos }
262 1.143 christos
263 1.143 christos void
264 1.143 christos vpanic(const char *fmt, va_list ap)
265 1.143 christos {
266 1.115 ad CPU_INFO_ITERATOR cii;
267 1.115 ad struct cpu_info *ci, *oci;
268 1.14 cgd int bootopt;
269 1.160 skrll static char scratchstr[384]; /* stores panic message */
270 1.12 cgd
271 1.137 dyoung spldebug_stop();
272 1.137 dyoung
273 1.131 mlelstv if (lwp0.l_cpu && curlwp) {
274 1.131 mlelstv /*
275 1.131 mlelstv * Disable preemption. If already panicing on another CPU, sit
276 1.131 mlelstv * here and spin until the system is rebooted. Allow the CPU that
277 1.131 mlelstv * first paniced to panic again.
278 1.131 mlelstv */
279 1.131 mlelstv kpreempt_disable();
280 1.131 mlelstv ci = curcpu();
281 1.131 mlelstv oci = atomic_cas_ptr((void *)&paniccpu, NULL, ci);
282 1.131 mlelstv if (oci != NULL && oci != ci) {
283 1.131 mlelstv /* Give interrupts a chance to try and prevent deadlock. */
284 1.131 mlelstv for (;;) {
285 1.130 pooka #ifndef _RUMPKERNEL /* XXXpooka: temporary build fix, see kern/40505 */
286 1.131 mlelstv DELAY(10);
287 1.129 pooka #endif /* _RUMPKERNEL */
288 1.131 mlelstv }
289 1.115 ad }
290 1.115 ad
291 1.131 mlelstv /*
292 1.131 mlelstv * Convert the current thread to a bound thread and prevent all
293 1.131 mlelstv * CPUs from scheduling unbound jobs. Do so without taking any
294 1.131 mlelstv * locks.
295 1.131 mlelstv */
296 1.131 mlelstv curlwp->l_pflag |= LP_BOUND;
297 1.131 mlelstv for (CPU_INFO_FOREACH(cii, ci)) {
298 1.131 mlelstv ci->ci_schedstate.spc_flags |= SPCF_OFFLINE;
299 1.131 mlelstv }
300 1.115 ad }
301 1.115 ad
302 1.125 ad bootopt = RB_AUTOBOOT | RB_NOSYNC;
303 1.138 he if (!doing_shutdown) {
304 1.138 he if (dumponpanic)
305 1.138 he bootopt |= RB_DUMP;
306 1.138 he } else
307 1.138 he printf("Skipping crash dump on recursive panic\n");
308 1.138 he
309 1.74 sommerfe doing_shutdown = 1;
310 1.79 simonb
311 1.163 christos if (logenabled(msgbufp))
312 1.79 simonb panicstart = msgbufp->msg_bufx;
313 1.96 perry
314 1.45 chuck printf("panic: ");
315 1.142 jym if (panicstr == NULL) {
316 1.142 jym /* first time in panic - store fmt first for precaution */
317 1.142 jym panicstr = fmt;
318 1.142 jym
319 1.142 jym vsnprintf(scratchstr, sizeof(scratchstr), fmt, ap);
320 1.142 jym printf("%s", scratchstr);
321 1.142 jym panicstr = scratchstr;
322 1.142 jym } else {
323 1.142 jym vprintf(fmt, ap);
324 1.142 jym }
325 1.45 chuck printf("\n");
326 1.79 simonb
327 1.163 christos if (logenabled(msgbufp))
328 1.79 simonb panicend = msgbufp->msg_bufx;
329 1.12 cgd
330 1.67 ws #ifdef IPKDB
331 1.32 ws ipkdb_panic();
332 1.28 ws #endif
333 1.12 cgd #ifdef KGDB
334 1.12 cgd kgdb_panic();
335 1.12 cgd #endif
336 1.12 cgd #ifdef KADB
337 1.14 cgd if (boothowto & RB_KDB)
338 1.14 cgd kdbpanic();
339 1.12 cgd #endif
340 1.12 cgd #ifdef DDB
341 1.150 apb db_panic();
342 1.12 cgd #endif
343 1.39 gwr cpu_reboot(bootopt, NULL);
344 1.12 cgd }
345 1.12 cgd
346 1.12 cgd /*
347 1.45 chuck * kernel logging functions: log, logpri, addlog
348 1.45 chuck */
349 1.45 chuck
350 1.45 chuck /*
351 1.45 chuck * log: write to the log buffer
352 1.45 chuck *
353 1.45 chuck * => will not sleep [so safe to call from interrupt]
354 1.45 chuck * => will log to console if /dev/klog isn't open
355 1.45 chuck */
356 1.45 chuck
357 1.45 chuck void
358 1.45 chuck log(int level, const char *fmt, ...)
359 1.45 chuck {
360 1.45 chuck va_list ap;
361 1.45 chuck
362 1.126 pooka kprintf_lock();
363 1.54 thorpej
364 1.54 thorpej klogpri(level); /* log the level first */
365 1.45 chuck va_start(ap, fmt);
366 1.45 chuck kprintf(fmt, TOLOG, NULL, NULL, ap);
367 1.45 chuck va_end(ap);
368 1.45 chuck if (!log_open) {
369 1.45 chuck va_start(ap, fmt);
370 1.45 chuck kprintf(fmt, TOCONS, NULL, NULL, ap);
371 1.45 chuck va_end(ap);
372 1.45 chuck }
373 1.64 thorpej
374 1.126 pooka kprintf_unlock();
375 1.64 thorpej
376 1.64 thorpej logwakeup(); /* wake up anyone waiting for log msgs */
377 1.64 thorpej }
378 1.64 thorpej
379 1.64 thorpej /*
380 1.149 dholland * vlog: write to the log buffer [already have va_list]
381 1.64 thorpej */
382 1.64 thorpej
383 1.64 thorpej void
384 1.99 thorpej vlog(int level, const char *fmt, va_list ap)
385 1.64 thorpej {
386 1.145 christos va_list cap;
387 1.64 thorpej
388 1.145 christos va_copy(cap, ap);
389 1.126 pooka kprintf_lock();
390 1.64 thorpej
391 1.64 thorpej klogpri(level); /* log the level first */
392 1.64 thorpej kprintf(fmt, TOLOG, NULL, NULL, ap);
393 1.64 thorpej if (!log_open)
394 1.145 christos kprintf(fmt, TOCONS, NULL, NULL, cap);
395 1.54 thorpej
396 1.126 pooka kprintf_unlock();
397 1.145 christos va_end(cap);
398 1.54 thorpej
399 1.45 chuck logwakeup(); /* wake up anyone waiting for log msgs */
400 1.45 chuck }
401 1.45 chuck
402 1.45 chuck /*
403 1.45 chuck * logpri: log the priority level to the klog
404 1.45 chuck */
405 1.45 chuck
406 1.54 thorpej void
407 1.99 thorpej logpri(int level)
408 1.45 chuck {
409 1.54 thorpej
410 1.126 pooka kprintf_lock();
411 1.54 thorpej klogpri(level);
412 1.126 pooka kprintf_unlock();
413 1.54 thorpej }
414 1.54 thorpej
415 1.54 thorpej /*
416 1.54 thorpej * Note: we must be in the mutex here!
417 1.54 thorpej */
418 1.87 thorpej void
419 1.99 thorpej klogpri(int level)
420 1.54 thorpej {
421 1.164 christos KASSERT((level & KLOG_PRI) == 0);
422 1.45 chuck
423 1.164 christos putchar(level | KLOG_PRI, TOLOG, NULL);
424 1.45 chuck }
425 1.45 chuck
426 1.45 chuck /*
427 1.45 chuck * addlog: add info to previous log message
428 1.12 cgd */
429 1.45 chuck
430 1.12 cgd void
431 1.45 chuck addlog(const char *fmt, ...)
432 1.45 chuck {
433 1.45 chuck va_list ap;
434 1.45 chuck
435 1.126 pooka kprintf_lock();
436 1.54 thorpej
437 1.45 chuck va_start(ap, fmt);
438 1.45 chuck kprintf(fmt, TOLOG, NULL, NULL, ap);
439 1.45 chuck va_end(ap);
440 1.45 chuck if (!log_open) {
441 1.45 chuck va_start(ap, fmt);
442 1.45 chuck kprintf(fmt, TOCONS, NULL, NULL, ap);
443 1.45 chuck va_end(ap);
444 1.45 chuck }
445 1.54 thorpej
446 1.126 pooka kprintf_unlock();
447 1.54 thorpej
448 1.45 chuck logwakeup();
449 1.45 chuck }
450 1.45 chuck
451 1.45 chuck static void
452 1.164 christos putone(int c, int flags, struct tty *tp)
453 1.12 cgd {
454 1.45 chuck if (panicstr)
455 1.45 chuck constty = NULL;
456 1.164 christos
457 1.45 chuck if ((flags & TOCONS) && tp == NULL && constty) {
458 1.45 chuck tp = constty;
459 1.45 chuck flags |= TOTTY;
460 1.45 chuck }
461 1.91 christos if ((flags & TOTTY) && tp &&
462 1.91 christos tputchar(c, flags, tp) < 0 &&
463 1.45 chuck (flags & TOCONS) && tp == constty)
464 1.45 chuck constty = NULL;
465 1.45 chuck if ((flags & TOLOG) &&
466 1.111 ad c != '\0' && c != '\r' && c != 0177)
467 1.111 ad logputchar(c);
468 1.45 chuck if ((flags & TOCONS) && constty == NULL && c != '\0')
469 1.45 chuck (*v_putc)(c);
470 1.164 christos }
471 1.164 christos
472 1.164 christos static void
473 1.164 christos putlogpri(int level)
474 1.164 christos {
475 1.164 christos char *p;
476 1.164 christos char snbuf[KPRINTF_BUFSIZE];
477 1.164 christos
478 1.164 christos putone('<', TOLOG, NULL);
479 1.164 christos snprintf(snbuf, sizeof(snbuf), "%d", level);
480 1.164 christos for (p = snbuf ; *p ; p++)
481 1.164 christos putone(*p, TOLOG, NULL);
482 1.164 christos putone('>', TOLOG, NULL);
483 1.164 christos }
484 1.164 christos
485 1.166 christos #ifndef KLOG_NOTIMESTAMP
486 1.165 christos static int needtstamp = 1;
487 1.165 christos
488 1.165 christos static void
489 1.165 christos addtstamp(int flags, struct tty *tp)
490 1.165 christos {
491 1.165 christos char buf[64];
492 1.165 christos struct timespec ts;
493 1.165 christos int n;
494 1.165 christos
495 1.165 christos getnanouptime(&ts);
496 1.165 christos n = snprintf(buf, sizeof(buf), "[% 9jd.%.9ld] ",
497 1.165 christos (intptr_t)ts.tv_sec, ts.tv_nsec);
498 1.165 christos
499 1.165 christos for (int i = 0; i < n; i++)
500 1.165 christos putone(buf[i], flags, tp);
501 1.165 christos }
502 1.165 christos #endif
503 1.165 christos
504 1.164 christos /*
505 1.164 christos * putchar: print a single character on console or user terminal.
506 1.164 christos *
507 1.164 christos * => if console, then the last MSGBUFS chars are saved in msgbuf
508 1.164 christos * for inspection later (e.g. dmesg/syslog)
509 1.164 christos * => we must already be in the mutex!
510 1.164 christos */
511 1.164 christos static void
512 1.164 christos putchar(int c, int flags, struct tty *tp)
513 1.164 christos {
514 1.164 christos if (c & KLOG_PRI) {
515 1.164 christos putlogpri(c & ~KLOG_PRI);
516 1.164 christos return;
517 1.164 christos }
518 1.164 christos
519 1.166 christos #ifndef KLOG_NOTIMESTAMP
520 1.165 christos if (needtstamp) {
521 1.165 christos addtstamp(flags, tp);
522 1.165 christos needtstamp = 0;
523 1.165 christos }
524 1.165 christos
525 1.165 christos if (c == '\n')
526 1.165 christos needtstamp++;
527 1.165 christos #endif
528 1.164 christos putone(c, flags, tp);
529 1.164 christos
530 1.45 chuck #ifdef DDB
531 1.154 tls if (flags & TODDB) {
532 1.45 chuck db_putchar(c);
533 1.154 tls return;
534 1.154 tls }
535 1.154 tls #endif
536 1.154 tls
537 1.154 tls #ifdef RND_PRINTF
538 1.154 tls if (__predict_true(kprintf_inited)) {
539 1.164 christos static uint8_t rbuf[SHA512_BLOCK_LENGTH];
540 1.164 christos static int cursor;
541 1.164 christos
542 1.154 tls rbuf[cursor] = c;
543 1.154 tls if (cursor == sizeof(rbuf) - 1) {
544 1.154 tls SHA512_Update(&kprnd_sha, rbuf, sizeof(rbuf));
545 1.154 tls kprnd_added++;
546 1.154 tls cursor = 0;
547 1.154 tls } else {
548 1.154 tls cursor++;
549 1.154 tls }
550 1.154 tls }
551 1.45 chuck #endif
552 1.12 cgd }
553 1.12 cgd
554 1.127 pooka /*
555 1.127 pooka * tablefull: warn that a system table is full
556 1.127 pooka */
557 1.127 pooka
558 1.127 pooka void
559 1.127 pooka tablefull(const char *tab, const char *hint)
560 1.127 pooka {
561 1.127 pooka if (hint)
562 1.127 pooka log(LOG_ERR, "%s: table is full - %s\n", tab, hint);
563 1.127 pooka else
564 1.127 pooka log(LOG_ERR, "%s: table is full\n", tab);
565 1.127 pooka }
566 1.127 pooka
567 1.45 chuck
568 1.12 cgd /*
569 1.45 chuck * uprintf: print to the controlling tty of the current process
570 1.45 chuck *
571 1.45 chuck * => we may block if the tty queue is full
572 1.45 chuck * => no message is printed if the queue doesn't clear in a reasonable
573 1.45 chuck * time
574 1.12 cgd */
575 1.45 chuck
576 1.12 cgd void
577 1.12 cgd uprintf(const char *fmt, ...)
578 1.12 cgd {
579 1.69 augustss struct proc *p = curproc;
580 1.12 cgd va_list ap;
581 1.12 cgd
582 1.119 ad /* mutex_enter(proc_lock); XXXSMP */
583 1.104 ad
584 1.104 ad if (p->p_lflag & PL_CONTROLT && p->p_session->s_ttyvp) {
585 1.104 ad /* No mutex needed; going to process TTY. */
586 1.104 ad va_start(ap, fmt);
587 1.104 ad kprintf(fmt, TOTTY, p->p_session->s_ttyp, NULL, ap);
588 1.104 ad va_end(ap);
589 1.104 ad }
590 1.104 ad
591 1.119 ad /* mutex_exit(proc_lock); XXXSMP */
592 1.104 ad }
593 1.104 ad
594 1.104 ad void
595 1.104 ad uprintf_locked(const char *fmt, ...)
596 1.104 ad {
597 1.104 ad struct proc *p = curproc;
598 1.104 ad va_list ap;
599 1.104 ad
600 1.104 ad if (p->p_lflag & PL_CONTROLT && p->p_session->s_ttyvp) {
601 1.54 thorpej /* No mutex needed; going to process TTY. */
602 1.12 cgd va_start(ap, fmt);
603 1.45 chuck kprintf(fmt, TOTTY, p->p_session->s_ttyp, NULL, ap);
604 1.12 cgd va_end(ap);
605 1.12 cgd }
606 1.12 cgd }
607 1.12 cgd
608 1.45 chuck /*
609 1.45 chuck * tprintf functions: used to send messages to a specific process
610 1.45 chuck *
611 1.45 chuck * usage:
612 1.45 chuck * get a tpr_t handle on a process "p" by using "tprintf_open(p)"
613 1.45 chuck * use the handle when calling "tprintf"
614 1.45 chuck * when done, do a "tprintf_close" to drop the handle
615 1.45 chuck */
616 1.45 chuck
617 1.45 chuck /*
618 1.45 chuck * tprintf_open: get a tprintf handle on a process "p"
619 1.45 chuck *
620 1.45 chuck * => returns NULL if process can't be printed to
621 1.45 chuck */
622 1.45 chuck
623 1.12 cgd tpr_t
624 1.99 thorpej tprintf_open(struct proc *p)
625 1.12 cgd {
626 1.104 ad tpr_t cookie;
627 1.12 cgd
628 1.104 ad cookie = NULL;
629 1.104 ad
630 1.119 ad mutex_enter(proc_lock);
631 1.104 ad if (p->p_lflag & PL_CONTROLT && p->p_session->s_ttyvp) {
632 1.133 rmind proc_sesshold(p->p_session);
633 1.104 ad cookie = (tpr_t)p->p_session;
634 1.12 cgd }
635 1.119 ad mutex_exit(proc_lock);
636 1.104 ad
637 1.104 ad return cookie;
638 1.12 cgd }
639 1.12 cgd
640 1.45 chuck /*
641 1.45 chuck * tprintf_close: dispose of a tprintf handle obtained with tprintf_open
642 1.45 chuck */
643 1.45 chuck
644 1.12 cgd void
645 1.99 thorpej tprintf_close(tpr_t sess)
646 1.12 cgd {
647 1.12 cgd
648 1.118 yamt if (sess) {
649 1.119 ad mutex_enter(proc_lock);
650 1.133 rmind /* Releases proc_lock. */
651 1.133 rmind proc_sessrele((struct session *)sess);
652 1.118 yamt }
653 1.12 cgd }
654 1.12 cgd
655 1.12 cgd /*
656 1.96 perry * tprintf: given tprintf handle to a process [obtained with tprintf_open],
657 1.45 chuck * send a message to the controlling tty for that process.
658 1.45 chuck *
659 1.45 chuck * => also sends message to /dev/klog
660 1.12 cgd */
661 1.12 cgd void
662 1.12 cgd tprintf(tpr_t tpr, const char *fmt, ...)
663 1.12 cgd {
664 1.69 augustss struct session *sess = (struct session *)tpr;
665 1.12 cgd struct tty *tp = NULL;
666 1.126 pooka int flags = TOLOG;
667 1.12 cgd va_list ap;
668 1.12 cgd
669 1.119 ad /* mutex_enter(proc_lock); XXXSMP */
670 1.12 cgd if (sess && sess->s_ttyvp && ttycheckoutq(sess->s_ttyp, 0)) {
671 1.12 cgd flags |= TOTTY;
672 1.12 cgd tp = sess->s_ttyp;
673 1.12 cgd }
674 1.54 thorpej
675 1.126 pooka kprintf_lock();
676 1.54 thorpej
677 1.54 thorpej klogpri(LOG_INFO);
678 1.12 cgd va_start(ap, fmt);
679 1.45 chuck kprintf(fmt, flags, tp, NULL, ap);
680 1.12 cgd va_end(ap);
681 1.54 thorpej
682 1.126 pooka kprintf_unlock();
683 1.119 ad /* mutex_exit(proc_lock); XXXSMP */
684 1.54 thorpej
685 1.12 cgd logwakeup();
686 1.12 cgd }
687 1.12 cgd
688 1.45 chuck
689 1.12 cgd /*
690 1.45 chuck * ttyprintf: send a message to a specific tty
691 1.45 chuck *
692 1.45 chuck * => should be used only by tty driver or anything that knows the
693 1.52 mrg * underlying tty will not be revoked(2)'d away. [otherwise,
694 1.52 mrg * use tprintf]
695 1.12 cgd */
696 1.12 cgd void
697 1.12 cgd ttyprintf(struct tty *tp, const char *fmt, ...)
698 1.12 cgd {
699 1.12 cgd va_list ap;
700 1.12 cgd
701 1.54 thorpej /* No mutex needed; going to process TTY. */
702 1.12 cgd va_start(ap, fmt);
703 1.45 chuck kprintf(fmt, TOTTY, tp, NULL, ap);
704 1.12 cgd va_end(ap);
705 1.12 cgd }
706 1.12 cgd
707 1.45 chuck #ifdef DDB
708 1.12 cgd
709 1.12 cgd /*
710 1.45 chuck * db_printf: printf for DDB (via db_putchar)
711 1.12 cgd */
712 1.45 chuck
713 1.12 cgd void
714 1.45 chuck db_printf(const char *fmt, ...)
715 1.12 cgd {
716 1.12 cgd va_list ap;
717 1.12 cgd
718 1.54 thorpej /* No mutex needed; DDB pauses all processors. */
719 1.12 cgd va_start(ap, fmt);
720 1.45 chuck kprintf(fmt, TODDB, NULL, NULL, ap);
721 1.12 cgd va_end(ap);
722 1.95 reinoud
723 1.95 reinoud if (db_tee_msgbuf) {
724 1.95 reinoud va_start(ap, fmt);
725 1.95 reinoud kprintf(fmt, TOLOG, NULL, NULL, ap);
726 1.95 reinoud va_end(ap);
727 1.157 msaitoh }
728 1.84 drochner }
729 1.84 drochner
730 1.84 drochner void
731 1.99 thorpej db_vprintf(const char *fmt, va_list ap)
732 1.84 drochner {
733 1.145 christos va_list cap;
734 1.84 drochner
735 1.145 christos va_copy(cap, ap);
736 1.84 drochner /* No mutex needed; DDB pauses all processors. */
737 1.84 drochner kprintf(fmt, TODDB, NULL, NULL, ap);
738 1.95 reinoud if (db_tee_msgbuf)
739 1.145 christos kprintf(fmt, TOLOG, NULL, NULL, cap);
740 1.145 christos va_end(cap);
741 1.12 cgd }
742 1.12 cgd
743 1.45 chuck #endif /* DDB */
744 1.12 cgd
745 1.108 joerg static void
746 1.108 joerg kprintf_internal(const char *fmt, int oflags, void *vp, char *sbuf, ...)
747 1.108 joerg {
748 1.108 joerg va_list ap;
749 1.108 joerg
750 1.108 joerg va_start(ap, sbuf);
751 1.108 joerg (void)kprintf(fmt, oflags, vp, sbuf, ap);
752 1.108 joerg va_end(ap);
753 1.108 joerg }
754 1.108 joerg
755 1.88 thorpej /*
756 1.88 thorpej * Device autoconfiguration printf routines. These change their
757 1.88 thorpej * behavior based on the AB_* flags in boothowto. If AB_SILENT
758 1.88 thorpej * is set, messages never go to the console (but they still always
759 1.88 thorpej * go to the log). AB_VERBOSE overrides AB_SILENT.
760 1.88 thorpej */
761 1.88 thorpej
762 1.88 thorpej /*
763 1.88 thorpej * aprint_normal: Send to console unless AB_QUIET. Always goes
764 1.88 thorpej * to the log.
765 1.88 thorpej */
766 1.108 joerg static void
767 1.108 joerg aprint_normal_internal(const char *prefix, const char *fmt, va_list ap)
768 1.88 thorpej {
769 1.126 pooka int flags = TOLOG;
770 1.88 thorpej
771 1.88 thorpej if ((boothowto & (AB_SILENT|AB_QUIET)) == 0 ||
772 1.88 thorpej (boothowto & AB_VERBOSE) != 0)
773 1.88 thorpej flags |= TOCONS;
774 1.96 perry
775 1.126 pooka kprintf_lock();
776 1.88 thorpej
777 1.108 joerg if (prefix)
778 1.108 joerg kprintf_internal("%s: ", flags, NULL, NULL, prefix);
779 1.88 thorpej kprintf(fmt, flags, NULL, NULL, ap);
780 1.88 thorpej
781 1.126 pooka kprintf_unlock();
782 1.96 perry
783 1.88 thorpej if (!panicstr)
784 1.88 thorpej logwakeup();
785 1.88 thorpej }
786 1.88 thorpej
787 1.108 joerg void
788 1.108 joerg aprint_normal(const char *fmt, ...)
789 1.108 joerg {
790 1.108 joerg va_list ap;
791 1.108 joerg
792 1.108 joerg va_start(ap, fmt);
793 1.108 joerg aprint_normal_internal(NULL, fmt, ap);
794 1.108 joerg va_end(ap);
795 1.108 joerg }
796 1.108 joerg
797 1.108 joerg void
798 1.108 joerg aprint_normal_dev(device_t dv, const char *fmt, ...)
799 1.108 joerg {
800 1.108 joerg va_list ap;
801 1.108 joerg
802 1.108 joerg va_start(ap, fmt);
803 1.108 joerg aprint_normal_internal(device_xname(dv), fmt, ap);
804 1.108 joerg va_end(ap);
805 1.108 joerg }
806 1.108 joerg
807 1.108 joerg void
808 1.108 joerg aprint_normal_ifnet(struct ifnet *ifp, const char *fmt, ...)
809 1.108 joerg {
810 1.108 joerg va_list ap;
811 1.108 joerg
812 1.108 joerg va_start(ap, fmt);
813 1.108 joerg aprint_normal_internal(ifp->if_xname, fmt, ap);
814 1.108 joerg va_end(ap);
815 1.108 joerg }
816 1.108 joerg
817 1.88 thorpej /*
818 1.89 thorpej * aprint_error: Send to console unless AB_QUIET. Always goes
819 1.89 thorpej * to the log. Also counts the number of times called so other
820 1.89 thorpej * parts of the kernel can report the number of errors during a
821 1.89 thorpej * given phase of system startup.
822 1.89 thorpej */
823 1.89 thorpej static int aprint_error_count;
824 1.89 thorpej
825 1.89 thorpej int
826 1.89 thorpej aprint_get_error_count(void)
827 1.89 thorpej {
828 1.126 pooka int count;
829 1.89 thorpej
830 1.126 pooka kprintf_lock();
831 1.89 thorpej
832 1.89 thorpej count = aprint_error_count;
833 1.89 thorpej aprint_error_count = 0;
834 1.89 thorpej
835 1.126 pooka kprintf_unlock();
836 1.89 thorpej
837 1.89 thorpej return (count);
838 1.89 thorpej }
839 1.89 thorpej
840 1.108 joerg static void
841 1.108 joerg aprint_error_internal(const char *prefix, const char *fmt, va_list ap)
842 1.89 thorpej {
843 1.126 pooka int flags = TOLOG;
844 1.89 thorpej
845 1.89 thorpej if ((boothowto & (AB_SILENT|AB_QUIET)) == 0 ||
846 1.89 thorpej (boothowto & AB_VERBOSE) != 0)
847 1.89 thorpej flags |= TOCONS;
848 1.96 perry
849 1.126 pooka kprintf_lock();
850 1.89 thorpej
851 1.89 thorpej aprint_error_count++;
852 1.89 thorpej
853 1.108 joerg if (prefix)
854 1.108 joerg kprintf_internal("%s: ", flags, NULL, NULL, prefix);
855 1.89 thorpej kprintf(fmt, flags, NULL, NULL, ap);
856 1.89 thorpej
857 1.126 pooka kprintf_unlock();
858 1.96 perry
859 1.89 thorpej if (!panicstr)
860 1.89 thorpej logwakeup();
861 1.89 thorpej }
862 1.89 thorpej
863 1.108 joerg void
864 1.108 joerg aprint_error(const char *fmt, ...)
865 1.108 joerg {
866 1.108 joerg va_list ap;
867 1.108 joerg
868 1.108 joerg va_start(ap, fmt);
869 1.108 joerg aprint_error_internal(NULL, fmt, ap);
870 1.108 joerg va_end(ap);
871 1.108 joerg }
872 1.108 joerg
873 1.108 joerg void
874 1.108 joerg aprint_error_dev(device_t dv, const char *fmt, ...)
875 1.108 joerg {
876 1.108 joerg va_list ap;
877 1.108 joerg
878 1.108 joerg va_start(ap, fmt);
879 1.108 joerg aprint_error_internal(device_xname(dv), fmt, ap);
880 1.108 joerg va_end(ap);
881 1.108 joerg }
882 1.108 joerg
883 1.108 joerg void
884 1.108 joerg aprint_error_ifnet(struct ifnet *ifp, const char *fmt, ...)
885 1.108 joerg {
886 1.108 joerg va_list ap;
887 1.108 joerg
888 1.108 joerg va_start(ap, fmt);
889 1.108 joerg aprint_error_internal(ifp->if_xname, fmt, ap);
890 1.108 joerg va_end(ap);
891 1.108 joerg }
892 1.108 joerg
893 1.89 thorpej /*
894 1.88 thorpej * aprint_naive: Send to console only if AB_QUIET. Never goes
895 1.88 thorpej * to the log.
896 1.88 thorpej */
897 1.108 joerg static void
898 1.108 joerg aprint_naive_internal(const char *prefix, const char *fmt, va_list ap)
899 1.108 joerg {
900 1.108 joerg if ((boothowto & (AB_QUIET|AB_SILENT|AB_VERBOSE)) != AB_QUIET)
901 1.108 joerg return;
902 1.108 joerg
903 1.126 pooka kprintf_lock();
904 1.108 joerg
905 1.108 joerg if (prefix)
906 1.108 joerg kprintf_internal("%s: ", TOCONS, NULL, NULL, prefix);
907 1.108 joerg kprintf(fmt, TOCONS, NULL, NULL, ap);
908 1.108 joerg
909 1.126 pooka kprintf_unlock();
910 1.108 joerg }
911 1.108 joerg
912 1.88 thorpej void
913 1.88 thorpej aprint_naive(const char *fmt, ...)
914 1.88 thorpej {
915 1.88 thorpej va_list ap;
916 1.88 thorpej
917 1.108 joerg va_start(ap, fmt);
918 1.108 joerg aprint_naive_internal(NULL, fmt, ap);
919 1.108 joerg va_end(ap);
920 1.108 joerg }
921 1.108 joerg
922 1.108 joerg void
923 1.108 joerg aprint_naive_dev(device_t dv, const char *fmt, ...)
924 1.108 joerg {
925 1.108 joerg va_list ap;
926 1.108 joerg
927 1.108 joerg va_start(ap, fmt);
928 1.108 joerg aprint_naive_internal(device_xname(dv), fmt, ap);
929 1.108 joerg va_end(ap);
930 1.108 joerg }
931 1.88 thorpej
932 1.108 joerg void
933 1.108 joerg aprint_naive_ifnet(struct ifnet *ifp, const char *fmt, ...)
934 1.108 joerg {
935 1.108 joerg va_list ap;
936 1.88 thorpej
937 1.108 joerg va_start(ap, fmt);
938 1.108 joerg aprint_naive_internal(ifp->if_xname, fmt, ap);
939 1.108 joerg va_end(ap);
940 1.88 thorpej }
941 1.88 thorpej
942 1.88 thorpej /*
943 1.88 thorpej * aprint_verbose: Send to console only if AB_VERBOSE. Always
944 1.88 thorpej * goes to the log.
945 1.88 thorpej */
946 1.108 joerg static void
947 1.108 joerg aprint_verbose_internal(const char *prefix, const char *fmt, va_list ap)
948 1.88 thorpej {
949 1.126 pooka int flags = TOLOG;
950 1.88 thorpej
951 1.88 thorpej if (boothowto & AB_VERBOSE)
952 1.88 thorpej flags |= TOCONS;
953 1.96 perry
954 1.126 pooka kprintf_lock();
955 1.88 thorpej
956 1.108 joerg if (prefix)
957 1.108 joerg kprintf_internal("%s: ", flags, NULL, NULL, prefix);
958 1.88 thorpej kprintf(fmt, flags, NULL, NULL, ap);
959 1.88 thorpej
960 1.126 pooka kprintf_unlock();
961 1.96 perry
962 1.88 thorpej if (!panicstr)
963 1.88 thorpej logwakeup();
964 1.88 thorpej }
965 1.88 thorpej
966 1.108 joerg void
967 1.108 joerg aprint_verbose(const char *fmt, ...)
968 1.108 joerg {
969 1.108 joerg va_list ap;
970 1.108 joerg
971 1.108 joerg va_start(ap, fmt);
972 1.108 joerg aprint_verbose_internal(NULL, fmt, ap);
973 1.108 joerg va_end(ap);
974 1.108 joerg }
975 1.108 joerg
976 1.108 joerg void
977 1.108 joerg aprint_verbose_dev(device_t dv, const char *fmt, ...)
978 1.108 joerg {
979 1.108 joerg va_list ap;
980 1.108 joerg
981 1.108 joerg va_start(ap, fmt);
982 1.108 joerg aprint_verbose_internal(device_xname(dv), fmt, ap);
983 1.108 joerg va_end(ap);
984 1.108 joerg }
985 1.108 joerg
986 1.108 joerg void
987 1.108 joerg aprint_verbose_ifnet(struct ifnet *ifp, const char *fmt, ...)
988 1.108 joerg {
989 1.108 joerg va_list ap;
990 1.108 joerg
991 1.108 joerg va_start(ap, fmt);
992 1.108 joerg aprint_verbose_internal(ifp->if_xname, fmt, ap);
993 1.108 joerg va_end(ap);
994 1.108 joerg }
995 1.108 joerg
996 1.88 thorpej /*
997 1.88 thorpej * aprint_debug: Send to console and log only if AB_DEBUG.
998 1.88 thorpej */
999 1.108 joerg static void
1000 1.108 joerg aprint_debug_internal(const char *prefix, const char *fmt, va_list ap)
1001 1.108 joerg {
1002 1.108 joerg if ((boothowto & AB_DEBUG) == 0)
1003 1.108 joerg return;
1004 1.108 joerg
1005 1.126 pooka kprintf_lock();
1006 1.108 joerg
1007 1.108 joerg if (prefix)
1008 1.108 joerg kprintf_internal("%s: ", TOCONS | TOLOG, NULL, NULL, prefix);
1009 1.108 joerg kprintf(fmt, TOCONS | TOLOG, NULL, NULL, ap);
1010 1.108 joerg
1011 1.126 pooka kprintf_unlock();
1012 1.108 joerg }
1013 1.108 joerg
1014 1.88 thorpej void
1015 1.88 thorpej aprint_debug(const char *fmt, ...)
1016 1.88 thorpej {
1017 1.88 thorpej va_list ap;
1018 1.88 thorpej
1019 1.108 joerg va_start(ap, fmt);
1020 1.108 joerg aprint_debug_internal(NULL, fmt, ap);
1021 1.108 joerg va_end(ap);
1022 1.108 joerg }
1023 1.108 joerg
1024 1.108 joerg void
1025 1.108 joerg aprint_debug_dev(device_t dv, const char *fmt, ...)
1026 1.108 joerg {
1027 1.108 joerg va_list ap;
1028 1.108 joerg
1029 1.108 joerg va_start(ap, fmt);
1030 1.108 joerg aprint_debug_internal(device_xname(dv), fmt, ap);
1031 1.108 joerg va_end(ap);
1032 1.108 joerg }
1033 1.88 thorpej
1034 1.108 joerg void
1035 1.108 joerg aprint_debug_ifnet(struct ifnet *ifp, const char *fmt, ...)
1036 1.108 joerg {
1037 1.108 joerg va_list ap;
1038 1.88 thorpej
1039 1.108 joerg va_start(ap, fmt);
1040 1.108 joerg aprint_debug_internal(ifp->if_xname, fmt, ap);
1041 1.108 joerg va_end(ap);
1042 1.89 thorpej }
1043 1.89 thorpej
1044 1.123 dyoung void
1045 1.123 dyoung printf_tolog(const char *fmt, ...)
1046 1.123 dyoung {
1047 1.123 dyoung va_list ap;
1048 1.123 dyoung
1049 1.126 pooka kprintf_lock();
1050 1.123 dyoung
1051 1.123 dyoung va_start(ap, fmt);
1052 1.154 tls kprintf(fmt, TOLOG, NULL, NULL, ap);
1053 1.123 dyoung va_end(ap);
1054 1.123 dyoung
1055 1.126 pooka kprintf_unlock();
1056 1.123 dyoung }
1057 1.123 dyoung
1058 1.89 thorpej /*
1059 1.89 thorpej * printf_nolog: Like printf(), but does not send message to the log.
1060 1.89 thorpej */
1061 1.89 thorpej
1062 1.89 thorpej void
1063 1.89 thorpej printf_nolog(const char *fmt, ...)
1064 1.89 thorpej {
1065 1.89 thorpej va_list ap;
1066 1.89 thorpej
1067 1.126 pooka kprintf_lock();
1068 1.89 thorpej
1069 1.89 thorpej va_start(ap, fmt);
1070 1.89 thorpej kprintf(fmt, TOCONS, NULL, NULL, ap);
1071 1.89 thorpej va_end(ap);
1072 1.89 thorpej
1073 1.126 pooka kprintf_unlock();
1074 1.88 thorpej }
1075 1.12 cgd
1076 1.45 chuck /*
1077 1.76 tv * normal kernel printf functions: printf, vprintf, snprintf, vsnprintf
1078 1.45 chuck */
1079 1.12 cgd
1080 1.45 chuck /*
1081 1.45 chuck * printf: print a message to the console and the log
1082 1.45 chuck */
1083 1.162 joerg void
1084 1.30 christos printf(const char *fmt, ...)
1085 1.12 cgd {
1086 1.12 cgd va_list ap;
1087 1.54 thorpej
1088 1.126 pooka kprintf_lock();
1089 1.12 cgd
1090 1.12 cgd va_start(ap, fmt);
1091 1.45 chuck kprintf(fmt, TOCONS | TOLOG, NULL, NULL, ap);
1092 1.12 cgd va_end(ap);
1093 1.54 thorpej
1094 1.126 pooka kprintf_unlock();
1095 1.54 thorpej
1096 1.12 cgd if (!panicstr)
1097 1.12 cgd logwakeup();
1098 1.12 cgd }
1099 1.12 cgd
1100 1.45 chuck /*
1101 1.45 chuck * vprintf: print a message to the console and the log [already have
1102 1.149 dholland * va_list]
1103 1.45 chuck */
1104 1.45 chuck
1105 1.40 thorpej void
1106 1.99 thorpej vprintf(const char *fmt, va_list ap)
1107 1.40 thorpej {
1108 1.126 pooka kprintf_lock();
1109 1.40 thorpej
1110 1.45 chuck kprintf(fmt, TOCONS | TOLOG, NULL, NULL, ap);
1111 1.54 thorpej
1112 1.126 pooka kprintf_unlock();
1113 1.54 thorpej
1114 1.40 thorpej if (!panicstr)
1115 1.40 thorpej logwakeup();
1116 1.40 thorpej }
1117 1.40 thorpej
1118 1.12 cgd /*
1119 1.58 msaitoh * snprintf: print a message to a buffer
1120 1.58 msaitoh */
1121 1.58 msaitoh int
1122 1.98 christos snprintf(char *bf, size_t size, const char *fmt, ...)
1123 1.58 msaitoh {
1124 1.58 msaitoh int retval;
1125 1.58 msaitoh va_list ap;
1126 1.58 msaitoh
1127 1.58 msaitoh va_start(ap, fmt);
1128 1.145 christos retval = vsnprintf(bf, size, fmt, ap);
1129 1.58 msaitoh va_end(ap);
1130 1.145 christos
1131 1.144 christos return retval;
1132 1.58 msaitoh }
1133 1.58 msaitoh
1134 1.58 msaitoh /*
1135 1.149 dholland * vsnprintf: print a message to a buffer [already have va_list]
1136 1.58 msaitoh */
1137 1.58 msaitoh int
1138 1.99 thorpej vsnprintf(char *bf, size_t size, const char *fmt, va_list ap)
1139 1.58 msaitoh {
1140 1.58 msaitoh int retval;
1141 1.58 msaitoh char *p;
1142 1.58 msaitoh
1143 1.144 christos p = bf + size;
1144 1.98 christos retval = kprintf(fmt, TOBUFONLY, &p, bf, ap);
1145 1.145 christos if (bf && size > 0) {
1146 1.145 christos /* nul terminate */
1147 1.148 christos if (size <= (size_t)retval)
1148 1.147 christos bf[size - 1] = '\0';
1149 1.145 christos else
1150 1.147 christos bf[retval] = '\0';
1151 1.145 christos }
1152 1.144 christos return retval;
1153 1.58 msaitoh }
1154 1.58 msaitoh
1155 1.58 msaitoh /*
1156 1.45 chuck * kprintf: scaled down version of printf(3).
1157 1.45 chuck *
1158 1.96 perry * this version based on vfprintf() from libc which was derived from
1159 1.45 chuck * software contributed to Berkeley by Chris Torek.
1160 1.45 chuck *
1161 1.76 tv * NOTE: The kprintf mutex must be held if we're going TOBUF or TOCONS!
1162 1.45 chuck */
1163 1.45 chuck
1164 1.45 chuck /*
1165 1.45 chuck * macros for converting digits to letters and vice versa
1166 1.45 chuck */
1167 1.45 chuck #define to_digit(c) ((c) - '0')
1168 1.45 chuck #define is_digit(c) ((unsigned)to_digit(c) <= 9)
1169 1.45 chuck #define to_char(n) ((n) + '0')
1170 1.45 chuck
1171 1.45 chuck /*
1172 1.45 chuck * flags used during conversion.
1173 1.45 chuck */
1174 1.45 chuck #define ALT 0x001 /* alternate form */
1175 1.45 chuck #define HEXPREFIX 0x002 /* add 0x or 0X prefix */
1176 1.45 chuck #define LADJUST 0x004 /* left adjustment */
1177 1.45 chuck #define LONGDBL 0x008 /* long double; unimplemented */
1178 1.45 chuck #define LONGINT 0x010 /* long integer */
1179 1.45 chuck #define QUADINT 0x020 /* quad integer */
1180 1.45 chuck #define SHORTINT 0x040 /* short integer */
1181 1.78 kleink #define MAXINT 0x080 /* intmax_t */
1182 1.78 kleink #define PTRINT 0x100 /* intptr_t */
1183 1.78 kleink #define SIZEINT 0x200 /* size_t */
1184 1.78 kleink #define ZEROPAD 0x400 /* zero (as opposed to blank) pad */
1185 1.78 kleink #define FPT 0x800 /* Floating point number */
1186 1.45 chuck
1187 1.45 chuck /*
1188 1.45 chuck * To extend shorts properly, we need both signed and unsigned
1189 1.45 chuck * argument extraction methods.
1190 1.45 chuck */
1191 1.45 chuck #define SARG() \
1192 1.78 kleink (flags&MAXINT ? va_arg(ap, intmax_t) : \
1193 1.78 kleink flags&PTRINT ? va_arg(ap, intptr_t) : \
1194 1.78 kleink flags&SIZEINT ? va_arg(ap, ssize_t) : /* XXX */ \
1195 1.78 kleink flags&QUADINT ? va_arg(ap, quad_t) : \
1196 1.45 chuck flags&LONGINT ? va_arg(ap, long) : \
1197 1.45 chuck flags&SHORTINT ? (long)(short)va_arg(ap, int) : \
1198 1.45 chuck (long)va_arg(ap, int))
1199 1.45 chuck #define UARG() \
1200 1.78 kleink (flags&MAXINT ? va_arg(ap, uintmax_t) : \
1201 1.78 kleink flags&PTRINT ? va_arg(ap, uintptr_t) : \
1202 1.78 kleink flags&SIZEINT ? va_arg(ap, size_t) : \
1203 1.78 kleink flags&QUADINT ? va_arg(ap, u_quad_t) : \
1204 1.45 chuck flags&LONGINT ? va_arg(ap, u_long) : \
1205 1.45 chuck flags&SHORTINT ? (u_long)(u_short)va_arg(ap, int) : \
1206 1.45 chuck (u_long)va_arg(ap, u_int))
1207 1.45 chuck
1208 1.60 explorer #define KPRINTF_PUTCHAR(C) { \
1209 1.60 explorer if (oflags == TOBUFONLY) { \
1210 1.148 christos if (sbuf && ((vp == NULL) || (sbuf < tailp))) \
1211 1.144 christos *sbuf++ = (C); \
1212 1.60 explorer } else { \
1213 1.144 christos putchar((C), oflags, vp); \
1214 1.60 explorer } \
1215 1.58 msaitoh }
1216 1.45 chuck
1217 1.139 dyoung void
1218 1.139 dyoung device_printf(device_t dev, const char *fmt, ...)
1219 1.139 dyoung {
1220 1.139 dyoung va_list ap;
1221 1.139 dyoung
1222 1.139 dyoung va_start(ap, fmt);
1223 1.139 dyoung printf("%s: ", device_xname(dev));
1224 1.139 dyoung vprintf(fmt, ap);
1225 1.139 dyoung va_end(ap);
1226 1.139 dyoung return;
1227 1.139 dyoung }
1228 1.139 dyoung
1229 1.54 thorpej /*
1230 1.54 thorpej * Guts of kernel printf. Note, we already expect to be in a mutex!
1231 1.54 thorpej */
1232 1.87 thorpej int
1233 1.99 thorpej kprintf(const char *fmt0, int oflags, void *vp, char *sbuf, va_list ap)
1234 1.45 chuck {
1235 1.98 christos const char *fmt; /* format string */
1236 1.45 chuck int ch; /* character from fmt */
1237 1.45 chuck int n; /* handy integer (short term usage) */
1238 1.45 chuck char *cp; /* handy char pointer (short term usage) */
1239 1.45 chuck int flags; /* flags as above */
1240 1.45 chuck int ret; /* return value accumulator */
1241 1.45 chuck int width; /* width from format (%8d), or 0 */
1242 1.45 chuck int prec; /* precision from format (%.3d), or -1 */
1243 1.45 chuck char sign; /* sign prefix (' ', '+', '-', or \0) */
1244 1.45 chuck
1245 1.45 chuck u_quad_t _uquad; /* integer arguments %[diouxX] */
1246 1.45 chuck enum { OCT, DEC, HEX } base;/* base for [diouxX] conversion */
1247 1.45 chuck int dprec; /* a copy of prec if [diouxX], 0 otherwise */
1248 1.45 chuck int realsz; /* field size expanded by dprec */
1249 1.45 chuck int size; /* size of converted field or string */
1250 1.97 christos const char *xdigs; /* digits for [xX] conversion */
1251 1.98 christos char bf[KPRINTF_BUFSIZE]; /* space for %c, %[diouxX] */
1252 1.61 explorer char *tailp; /* tail pointer for snprintf */
1253 1.58 msaitoh
1254 1.60 explorer if (oflags == TOBUFONLY && (vp != NULL))
1255 1.60 explorer tailp = *(char **)vp;
1256 1.144 christos else
1257 1.144 christos tailp = NULL;
1258 1.45 chuck
1259 1.45 chuck cp = NULL; /* XXX: shutup gcc */
1260 1.45 chuck size = 0; /* XXX: shutup gcc */
1261 1.45 chuck
1262 1.98 christos fmt = fmt0;
1263 1.45 chuck ret = 0;
1264 1.45 chuck
1265 1.45 chuck xdigs = NULL; /* XXX: shut up gcc warning */
1266 1.45 chuck
1267 1.45 chuck /*
1268 1.45 chuck * Scan the format for conversions (`%' character).
1269 1.45 chuck */
1270 1.45 chuck for (;;) {
1271 1.147 christos for (; *fmt != '%' && *fmt; fmt++) {
1272 1.58 msaitoh ret++;
1273 1.147 christos KPRINTF_PUTCHAR(*fmt);
1274 1.45 chuck }
1275 1.45 chuck if (*fmt == 0)
1276 1.45 chuck goto done;
1277 1.45 chuck
1278 1.45 chuck fmt++; /* skip over '%' */
1279 1.45 chuck
1280 1.45 chuck flags = 0;
1281 1.45 chuck dprec = 0;
1282 1.45 chuck width = 0;
1283 1.45 chuck prec = -1;
1284 1.45 chuck sign = '\0';
1285 1.45 chuck
1286 1.45 chuck rflag: ch = *fmt++;
1287 1.45 chuck reswitch: switch (ch) {
1288 1.45 chuck case ' ':
1289 1.45 chuck /*
1290 1.45 chuck * ``If the space and + flags both appear, the space
1291 1.45 chuck * flag will be ignored.''
1292 1.45 chuck * -- ANSI X3J11
1293 1.45 chuck */
1294 1.45 chuck if (!sign)
1295 1.45 chuck sign = ' ';
1296 1.45 chuck goto rflag;
1297 1.45 chuck case '#':
1298 1.45 chuck flags |= ALT;
1299 1.45 chuck goto rflag;
1300 1.45 chuck case '*':
1301 1.45 chuck /*
1302 1.45 chuck * ``A negative field width argument is taken as a
1303 1.45 chuck * - flag followed by a positive field width.''
1304 1.45 chuck * -- ANSI X3J11
1305 1.45 chuck * They don't exclude field widths read from args.
1306 1.45 chuck */
1307 1.45 chuck if ((width = va_arg(ap, int)) >= 0)
1308 1.45 chuck goto rflag;
1309 1.45 chuck width = -width;
1310 1.45 chuck /* FALLTHROUGH */
1311 1.45 chuck case '-':
1312 1.45 chuck flags |= LADJUST;
1313 1.45 chuck goto rflag;
1314 1.45 chuck case '+':
1315 1.45 chuck sign = '+';
1316 1.45 chuck goto rflag;
1317 1.45 chuck case '.':
1318 1.45 chuck if ((ch = *fmt++) == '*') {
1319 1.45 chuck n = va_arg(ap, int);
1320 1.45 chuck prec = n < 0 ? -1 : n;
1321 1.45 chuck goto rflag;
1322 1.45 chuck }
1323 1.45 chuck n = 0;
1324 1.45 chuck while (is_digit(ch)) {
1325 1.45 chuck n = 10 * n + to_digit(ch);
1326 1.45 chuck ch = *fmt++;
1327 1.45 chuck }
1328 1.45 chuck prec = n < 0 ? -1 : n;
1329 1.45 chuck goto reswitch;
1330 1.45 chuck case '0':
1331 1.45 chuck /*
1332 1.45 chuck * ``Note that 0 is taken as a flag, not as the
1333 1.45 chuck * beginning of a field width.''
1334 1.45 chuck * -- ANSI X3J11
1335 1.45 chuck */
1336 1.45 chuck flags |= ZEROPAD;
1337 1.45 chuck goto rflag;
1338 1.45 chuck case '1': case '2': case '3': case '4':
1339 1.45 chuck case '5': case '6': case '7': case '8': case '9':
1340 1.45 chuck n = 0;
1341 1.45 chuck do {
1342 1.45 chuck n = 10 * n + to_digit(ch);
1343 1.45 chuck ch = *fmt++;
1344 1.45 chuck } while (is_digit(ch));
1345 1.45 chuck width = n;
1346 1.45 chuck goto reswitch;
1347 1.45 chuck case 'h':
1348 1.45 chuck flags |= SHORTINT;
1349 1.45 chuck goto rflag;
1350 1.78 kleink case 'j':
1351 1.78 kleink flags |= MAXINT;
1352 1.78 kleink goto rflag;
1353 1.45 chuck case 'l':
1354 1.45 chuck if (*fmt == 'l') {
1355 1.45 chuck fmt++;
1356 1.45 chuck flags |= QUADINT;
1357 1.45 chuck } else {
1358 1.45 chuck flags |= LONGINT;
1359 1.45 chuck }
1360 1.45 chuck goto rflag;
1361 1.45 chuck case 'q':
1362 1.45 chuck flags |= QUADINT;
1363 1.45 chuck goto rflag;
1364 1.78 kleink case 't':
1365 1.78 kleink flags |= PTRINT;
1366 1.78 kleink goto rflag;
1367 1.78 kleink case 'z':
1368 1.78 kleink flags |= SIZEINT;
1369 1.78 kleink goto rflag;
1370 1.45 chuck case 'c':
1371 1.98 christos *(cp = bf) = va_arg(ap, int);
1372 1.45 chuck size = 1;
1373 1.45 chuck sign = '\0';
1374 1.45 chuck break;
1375 1.45 chuck case 'D':
1376 1.45 chuck flags |= LONGINT;
1377 1.45 chuck /*FALLTHROUGH*/
1378 1.45 chuck case 'd':
1379 1.45 chuck case 'i':
1380 1.45 chuck _uquad = SARG();
1381 1.45 chuck if ((quad_t)_uquad < 0) {
1382 1.45 chuck _uquad = -_uquad;
1383 1.45 chuck sign = '-';
1384 1.45 chuck }
1385 1.45 chuck base = DEC;
1386 1.45 chuck goto number;
1387 1.45 chuck case 'n':
1388 1.78 kleink if (flags & MAXINT)
1389 1.78 kleink *va_arg(ap, intmax_t *) = ret;
1390 1.78 kleink else if (flags & PTRINT)
1391 1.78 kleink *va_arg(ap, intptr_t *) = ret;
1392 1.78 kleink else if (flags & SIZEINT)
1393 1.78 kleink *va_arg(ap, ssize_t *) = ret;
1394 1.78 kleink else if (flags & QUADINT)
1395 1.45 chuck *va_arg(ap, quad_t *) = ret;
1396 1.45 chuck else if (flags & LONGINT)
1397 1.45 chuck *va_arg(ap, long *) = ret;
1398 1.45 chuck else if (flags & SHORTINT)
1399 1.45 chuck *va_arg(ap, short *) = ret;
1400 1.45 chuck else
1401 1.45 chuck *va_arg(ap, int *) = ret;
1402 1.45 chuck continue; /* no output */
1403 1.45 chuck case 'O':
1404 1.45 chuck flags |= LONGINT;
1405 1.45 chuck /*FALLTHROUGH*/
1406 1.45 chuck case 'o':
1407 1.45 chuck _uquad = UARG();
1408 1.45 chuck base = OCT;
1409 1.45 chuck goto nosign;
1410 1.45 chuck case 'p':
1411 1.45 chuck /*
1412 1.45 chuck * ``The argument shall be a pointer to void. The
1413 1.45 chuck * value of the pointer is converted to a sequence
1414 1.45 chuck * of printable characters, in an implementation-
1415 1.45 chuck * defined manner.''
1416 1.45 chuck * -- ANSI X3J11
1417 1.45 chuck */
1418 1.45 chuck /* NOSTRICT */
1419 1.45 chuck _uquad = (u_long)va_arg(ap, void *);
1420 1.45 chuck base = HEX;
1421 1.97 christos xdigs = hexdigits;
1422 1.45 chuck flags |= HEXPREFIX;
1423 1.45 chuck ch = 'x';
1424 1.45 chuck goto nosign;
1425 1.45 chuck case 's':
1426 1.45 chuck if ((cp = va_arg(ap, char *)) == NULL)
1427 1.98 christos /*XXXUNCONST*/
1428 1.98 christos cp = __UNCONST("(null)");
1429 1.45 chuck if (prec >= 0) {
1430 1.45 chuck /*
1431 1.45 chuck * can't use strlen; can only look for the
1432 1.45 chuck * NUL in the first `prec' characters, and
1433 1.45 chuck * strlen() will go further.
1434 1.45 chuck */
1435 1.45 chuck char *p = memchr(cp, 0, prec);
1436 1.45 chuck
1437 1.45 chuck if (p != NULL) {
1438 1.45 chuck size = p - cp;
1439 1.45 chuck if (size > prec)
1440 1.45 chuck size = prec;
1441 1.45 chuck } else
1442 1.45 chuck size = prec;
1443 1.45 chuck } else
1444 1.45 chuck size = strlen(cp);
1445 1.45 chuck sign = '\0';
1446 1.45 chuck break;
1447 1.45 chuck case 'U':
1448 1.45 chuck flags |= LONGINT;
1449 1.45 chuck /*FALLTHROUGH*/
1450 1.45 chuck case 'u':
1451 1.45 chuck _uquad = UARG();
1452 1.45 chuck base = DEC;
1453 1.45 chuck goto nosign;
1454 1.45 chuck case 'X':
1455 1.103 martin xdigs = HEXDIGITS;
1456 1.45 chuck goto hex;
1457 1.45 chuck case 'x':
1458 1.97 christos xdigs = hexdigits;
1459 1.45 chuck hex: _uquad = UARG();
1460 1.45 chuck base = HEX;
1461 1.45 chuck /* leading 0x/X only if non-zero */
1462 1.45 chuck if (flags & ALT && _uquad != 0)
1463 1.45 chuck flags |= HEXPREFIX;
1464 1.45 chuck
1465 1.45 chuck /* unsigned conversions */
1466 1.45 chuck nosign: sign = '\0';
1467 1.45 chuck /*
1468 1.45 chuck * ``... diouXx conversions ... if a precision is
1469 1.45 chuck * specified, the 0 flag will be ignored.''
1470 1.45 chuck * -- ANSI X3J11
1471 1.45 chuck */
1472 1.45 chuck number: if ((dprec = prec) >= 0)
1473 1.45 chuck flags &= ~ZEROPAD;
1474 1.45 chuck
1475 1.45 chuck /*
1476 1.45 chuck * ``The result of converting a zero value with an
1477 1.45 chuck * explicit precision of zero is no characters.''
1478 1.45 chuck * -- ANSI X3J11
1479 1.45 chuck */
1480 1.98 christos cp = bf + KPRINTF_BUFSIZE;
1481 1.45 chuck if (_uquad != 0 || prec != 0) {
1482 1.45 chuck /*
1483 1.45 chuck * Unsigned mod is hard, and unsigned mod
1484 1.45 chuck * by a constant is easier than that by
1485 1.45 chuck * a variable; hence this switch.
1486 1.45 chuck */
1487 1.45 chuck switch (base) {
1488 1.45 chuck case OCT:
1489 1.45 chuck do {
1490 1.45 chuck *--cp = to_char(_uquad & 7);
1491 1.45 chuck _uquad >>= 3;
1492 1.45 chuck } while (_uquad);
1493 1.45 chuck /* handle octal leading 0 */
1494 1.45 chuck if (flags & ALT && *cp != '0')
1495 1.45 chuck *--cp = '0';
1496 1.45 chuck break;
1497 1.45 chuck
1498 1.45 chuck case DEC:
1499 1.45 chuck /* many numbers are 1 digit */
1500 1.45 chuck while (_uquad >= 10) {
1501 1.45 chuck *--cp = to_char(_uquad % 10);
1502 1.45 chuck _uquad /= 10;
1503 1.45 chuck }
1504 1.45 chuck *--cp = to_char(_uquad);
1505 1.45 chuck break;
1506 1.45 chuck
1507 1.45 chuck case HEX:
1508 1.45 chuck do {
1509 1.45 chuck *--cp = xdigs[_uquad & 15];
1510 1.45 chuck _uquad >>= 4;
1511 1.45 chuck } while (_uquad);
1512 1.45 chuck break;
1513 1.45 chuck
1514 1.45 chuck default:
1515 1.98 christos /*XXXUNCONST*/
1516 1.98 christos cp = __UNCONST("bug in kprintf: bad base");
1517 1.45 chuck size = strlen(cp);
1518 1.45 chuck goto skipsize;
1519 1.45 chuck }
1520 1.45 chuck }
1521 1.98 christos size = bf + KPRINTF_BUFSIZE - cp;
1522 1.45 chuck skipsize:
1523 1.45 chuck break;
1524 1.45 chuck default: /* "%?" prints ?, unless ? is NUL */
1525 1.45 chuck if (ch == '\0')
1526 1.45 chuck goto done;
1527 1.45 chuck /* pretend it was %c with argument ch */
1528 1.98 christos cp = bf;
1529 1.45 chuck *cp = ch;
1530 1.45 chuck size = 1;
1531 1.45 chuck sign = '\0';
1532 1.45 chuck break;
1533 1.45 chuck }
1534 1.45 chuck
1535 1.45 chuck /*
1536 1.45 chuck * All reasonable formats wind up here. At this point, `cp'
1537 1.45 chuck * points to a string which (if not flags&LADJUST) should be
1538 1.45 chuck * padded out to `width' places. If flags&ZEROPAD, it should
1539 1.45 chuck * first be prefixed by any sign or other prefix; otherwise,
1540 1.45 chuck * it should be blank padded before the prefix is emitted.
1541 1.45 chuck * After any left-hand padding and prefixing, emit zeroes
1542 1.45 chuck * required by a decimal [diouxX] precision, then print the
1543 1.45 chuck * string proper, then emit zeroes required by any leftover
1544 1.45 chuck * floating precision; finally, if LADJUST, pad with blanks.
1545 1.45 chuck *
1546 1.45 chuck * Compute actual size, so we know how much to pad.
1547 1.45 chuck * size excludes decimal prec; realsz includes it.
1548 1.45 chuck */
1549 1.45 chuck realsz = dprec > size ? dprec : size;
1550 1.45 chuck if (sign)
1551 1.45 chuck realsz++;
1552 1.45 chuck else if (flags & HEXPREFIX)
1553 1.45 chuck realsz+= 2;
1554 1.45 chuck
1555 1.58 msaitoh /* adjust ret */
1556 1.58 msaitoh ret += width > realsz ? width : realsz;
1557 1.58 msaitoh
1558 1.45 chuck /* right-adjusting blank padding */
1559 1.45 chuck if ((flags & (LADJUST|ZEROPAD)) == 0) {
1560 1.45 chuck n = width - realsz;
1561 1.45 chuck while (n-- > 0)
1562 1.45 chuck KPRINTF_PUTCHAR(' ');
1563 1.45 chuck }
1564 1.45 chuck
1565 1.45 chuck /* prefix */
1566 1.45 chuck if (sign) {
1567 1.45 chuck KPRINTF_PUTCHAR(sign);
1568 1.45 chuck } else if (flags & HEXPREFIX) {
1569 1.45 chuck KPRINTF_PUTCHAR('0');
1570 1.45 chuck KPRINTF_PUTCHAR(ch);
1571 1.45 chuck }
1572 1.45 chuck
1573 1.45 chuck /* right-adjusting zero padding */
1574 1.45 chuck if ((flags & (LADJUST|ZEROPAD)) == ZEROPAD) {
1575 1.45 chuck n = width - realsz;
1576 1.45 chuck while (n-- > 0)
1577 1.45 chuck KPRINTF_PUTCHAR('0');
1578 1.45 chuck }
1579 1.45 chuck
1580 1.45 chuck /* leading zeroes from decimal precision */
1581 1.45 chuck n = dprec - size;
1582 1.45 chuck while (n-- > 0)
1583 1.45 chuck KPRINTF_PUTCHAR('0');
1584 1.45 chuck
1585 1.45 chuck /* the string or number proper */
1586 1.147 christos for (; size--; cp++)
1587 1.147 christos KPRINTF_PUTCHAR(*cp);
1588 1.45 chuck /* left-adjusting padding (always blank) */
1589 1.45 chuck if (flags & LADJUST) {
1590 1.45 chuck n = width - realsz;
1591 1.45 chuck while (n-- > 0)
1592 1.45 chuck KPRINTF_PUTCHAR(' ');
1593 1.45 chuck }
1594 1.58 msaitoh }
1595 1.45 chuck
1596 1.45 chuck done:
1597 1.58 msaitoh if ((oflags == TOBUFONLY) && (vp != NULL))
1598 1.58 msaitoh *(char **)vp = sbuf;
1599 1.92 matt (*v_flush)();
1600 1.154 tls
1601 1.154 tls #ifdef RND_PRINTF
1602 1.155 mrg if (!cold) {
1603 1.155 mrg struct timespec ts;
1604 1.155 mrg (void)nanotime(&ts);
1605 1.155 mrg SHA512_Update(&kprnd_sha, (char *)&ts, sizeof(ts));
1606 1.155 mrg }
1607 1.154 tls #endif
1608 1.144 christos return ret;
1609 1.12 cgd }
1610