libpthread_db.c revision 177490
1/*
2 * Copyright (c) 2004 David Xu <davidxu@freebsd.org>
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 *
14 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
15 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24 * SUCH DAMAGE.
25 */
26
27#include <sys/cdefs.h>
28__FBSDID("$FreeBSD: head/lib/libthread_db/libpthread_db.c 177490 2008-03-22 05:40:44Z davidxu $");
29
30#include <stddef.h>
31#include <stdlib.h>
32#include <string.h>
33#include <unistd.h>
34#include <pthread.h>
35#include <sys/types.h>
36#include <sys/linker_set.h>
37#include <sys/kse.h>
38#include <sys/ptrace.h>
39#include <proc_service.h>
40#include <thread_db.h>
41
42#include "libpthread_db.h"
43
44#define P2T(c) ps2td(c)
45
46static void pt_unmap_lwp(const td_thragent_t *ta, lwpid_t lwp);
47static int pt_validate(const td_thrhandle_t *th);
48
49static int
50ps2td(int c)
51{
52	switch (c) {
53	case PS_OK:
54		return TD_OK;
55	case PS_ERR:
56		return TD_ERR;
57	case PS_BADPID:
58		return TD_BADPH;
59	case PS_BADLID:
60		return TD_NOLWP;
61	case PS_BADADDR:
62		return TD_ERR;
63	case PS_NOSYM:
64		return TD_NOLIBTHREAD;
65	case PS_NOFREGS:
66		return TD_NOFPREGS;
67	default:
68		return TD_ERR;
69	}
70}
71
72static long
73pt_map_thread(const td_thragent_t *const_ta, psaddr_t pt, int type)
74{
75	td_thragent_t *ta = __DECONST(td_thragent_t *, const_ta);
76	struct pt_map *new;
77	int i, first = -1;
78
79	/* leave zero out */
80	for (i = 1; i < ta->map_len; ++i) {
81		if (ta->map[i].type == PT_NONE) {
82			if (first == -1)
83				first = i;
84		} else if (ta->map[i].type == type && ta->map[i].thr == pt) {
85				return (i);
86		}
87	}
88
89	if (first == -1) {
90		if (ta->map_len == 0) {
91			ta->map = calloc(20, sizeof(struct pt_map));
92			if (ta->map == NULL)
93				return (-1);
94			ta->map_len = 20;
95			first = 1;
96		} else {
97			new = realloc(ta->map,
98			              sizeof(struct pt_map) * ta->map_len * 2);
99			if (new == NULL)
100				return (-1);
101			memset(new + ta->map_len, '\0', sizeof(struct pt_map) *
102			       ta->map_len);
103			first = ta->map_len;
104			ta->map = new;
105			ta->map_len *= 2;
106		}
107	}
108
109	ta->map[first].type = type;
110	ta->map[first].thr = pt;
111	return (first);
112}
113
114static td_err_e
115pt_init(void)
116{
117	pt_md_init();
118	return (0);
119}
120
121static td_err_e
122pt_ta_new(struct ps_prochandle *ph, td_thragent_t **pta)
123{
124#define LOOKUP_SYM(proc, sym, addr) 			\
125	ret = ps_pglobal_lookup(proc, NULL, sym, addr);	\
126	if (ret != 0) {					\
127		TDBG("can not find symbol: %s\n", sym);	\
128		ret = TD_NOLIBTHREAD;			\
129		goto error;				\
130	}
131
132#define	LOOKUP_VAL(proc, sym, val)			\
133	ret = ps_pglobal_lookup(proc, NULL, sym, &vaddr);\
134	if (ret != 0) {					\
135		TDBG("can not find symbol: %s\n", sym);	\
136		ret = TD_NOLIBTHREAD;			\
137		goto error;				\
138	}						\
139	ret = ps_pread(proc, vaddr, val, sizeof(int));	\
140	if (ret != 0) {					\
141		TDBG("can not read value of %s\n", sym);\
142		ret = TD_NOLIBTHREAD;			\
143		goto error;				\
144	}
145
146	td_thragent_t *ta;
147	psaddr_t vaddr;
148	int dbg;
149	int ret;
150
151	TDBG_FUNC();
152
153	ta = malloc(sizeof(td_thragent_t));
154	if (ta == NULL)
155		return (TD_MALLOC);
156
157	ta->ph = ph;
158	ta->thread_activated = 0;
159	ta->map = NULL;
160	ta->map_len = 0;
161
162	LOOKUP_SYM(ph, "_libkse_debug",		&ta->libkse_debug_addr);
163	LOOKUP_SYM(ph, "_thread_list",		&ta->thread_list_addr);
164	LOOKUP_SYM(ph, "_thread_activated",	&ta->thread_activated_addr);
165	LOOKUP_SYM(ph, "_thread_active_threads",&ta->thread_active_threads_addr);
166	LOOKUP_SYM(ph, "_thread_keytable",	&ta->thread_keytable_addr);
167	LOOKUP_VAL(ph, "_thread_off_dtv",	&ta->thread_off_dtv);
168	LOOKUP_VAL(ph, "_thread_off_kse_locklevel", &ta->thread_off_kse_locklevel);
169	LOOKUP_VAL(ph, "_thread_off_kse",	&ta->thread_off_kse);
170	LOOKUP_VAL(ph, "_thread_off_tlsindex",	&ta->thread_off_tlsindex);
171	LOOKUP_VAL(ph, "_thread_off_attr_flags",	&ta->thread_off_attr_flags);
172	LOOKUP_VAL(ph, "_thread_size_key",	&ta->thread_size_key);
173	LOOKUP_VAL(ph, "_thread_off_tcb",	&ta->thread_off_tcb);
174	LOOKUP_VAL(ph, "_thread_off_linkmap",	&ta->thread_off_linkmap);
175	LOOKUP_VAL(ph, "_thread_off_tmbx",	&ta->thread_off_tmbx);
176	LOOKUP_VAL(ph, "_thread_off_thr_locklevel",	&ta->thread_off_thr_locklevel);
177	LOOKUP_VAL(ph, "_thread_off_next",	&ta->thread_off_next);
178	LOOKUP_VAL(ph, "_thread_off_state",	&ta->thread_off_state);
179	LOOKUP_VAL(ph, "_thread_max_keys",	&ta->thread_max_keys);
180	LOOKUP_VAL(ph, "_thread_off_key_allocated", &ta->thread_off_key_allocated);
181	LOOKUP_VAL(ph, "_thread_off_key_destructor", &ta->thread_off_key_destructor);
182	LOOKUP_VAL(ph, "_thread_state_running", &ta->thread_state_running);
183	LOOKUP_VAL(ph, "_thread_state_zoombie", &ta->thread_state_zoombie);
184	LOOKUP_VAL(ph, "_thread_off_sigmask",	&ta->thread_off_sigmask);
185	LOOKUP_VAL(ph, "_thread_off_sigpend",	&ta->thread_off_sigpend);
186	dbg = getpid();
187	/*
188	 * If this fails it probably means we're debugging a core file and
189	 * can't write to it.
190	 */
191	ps_pwrite(ph, ta->libkse_debug_addr, &dbg, sizeof(int));
192	*pta = ta;
193	return (0);
194
195error:
196	free(ta);
197	return (ret);
198}
199
200static td_err_e
201pt_ta_delete(td_thragent_t *ta)
202{
203	int dbg;
204
205	TDBG_FUNC();
206
207	dbg = 0;
208	/*
209	 * Error returns from this write are not really a problem;
210	 * the process doesn't exist any more.
211	 */
212	ps_pwrite(ta->ph, ta->libkse_debug_addr, &dbg, sizeof(int));
213	if (ta->map)
214		free(ta->map);
215	free(ta);
216	return (TD_OK);
217}
218
219static td_err_e
220pt_ta_map_id2thr(const td_thragent_t *ta, thread_t id, td_thrhandle_t *th)
221{
222	prgregset_t gregs;
223	TAILQ_HEAD(, pthread) thread_list;
224	psaddr_t pt, tcb_addr;
225	lwpid_t lwp;
226	int ret;
227
228	TDBG_FUNC();
229
230	if (id < 0 || id >= ta->map_len || ta->map[id].type == PT_NONE)
231		return (TD_NOTHR);
232	ret = ps_pread(ta->ph, ta->thread_list_addr, &thread_list,
233			sizeof(thread_list));
234	if (ret != 0)
235		return (P2T(ret));
236	pt = (psaddr_t)thread_list.tqh_first;
237	if (ta->map[id].type == PT_LWP) {
238		/*
239		 * if we are referencing a lwp, make sure it was not already
240		 * mapped to user thread.
241		 */
242		while (pt != 0) {
243			ret = ps_pread(ta->ph,
244			        pt + ta->thread_off_tcb,
245			        &tcb_addr, sizeof(tcb_addr));
246			if (ret != 0)
247				return (P2T(ret));
248			ret = ps_pread(ta->ph,
249			        tcb_addr + ta->thread_off_tmbx +
250				offsetof(struct kse_thr_mailbox, tm_lwp),
251				&lwp, sizeof(lwp));
252			if (ret != 0)
253				return (P2T(ret));
254			/*
255			 * If the lwp was already mapped to userland thread,
256			 * we shouldn't reference it directly in future.
257			 */
258			if (lwp == ta->map[id].lwp) {
259				ta->map[id].type = PT_NONE;
260				return (TD_NOTHR);
261			}
262			/* get next thread */
263			ret = ps_pread(ta->ph,
264			        pt + ta->thread_off_next,
265			        &pt, sizeof(pt));
266			if (ret != 0)
267				return (P2T(ret));
268		}
269		/* check lwp */
270		ret = ps_lgetregs(ta->ph, ta->map[id].lwp, gregs);
271		if (ret != PS_OK) {
272			/* no longer exists */
273			ta->map[id].type = PT_NONE;
274			return (TD_NOTHR);
275		}
276	} else {
277		while (pt != 0 && ta->map[id].thr != pt) {
278			ret = ps_pread(ta->ph,
279				pt + ta->thread_off_tcb,
280				&tcb_addr, sizeof(tcb_addr));
281			if (ret != 0)
282				return (P2T(ret));
283			/* get next thread */
284			ret = ps_pread(ta->ph,
285				pt + ta->thread_off_next,
286				&pt, sizeof(pt));
287			if (ret != 0)
288				return (P2T(ret));
289		}
290
291		if (pt == 0) {
292			/* no longer exists */
293			ta->map[id].type = PT_NONE;
294			return (TD_NOTHR);
295		}
296	}
297	th->th_ta = ta;
298	th->th_tid = id;
299	th->th_thread = pt;
300	return (TD_OK);
301}
302
303static td_err_e
304pt_ta_map_lwp2thr(const td_thragent_t *ta, lwpid_t lwp, td_thrhandle_t *th)
305{
306	TAILQ_HEAD(, pthread) thread_list;
307	psaddr_t pt, ptr;
308	lwpid_t tmp_lwp;
309	int ret;
310
311	TDBG_FUNC();
312
313	ret = ps_pread(ta->ph, ta->thread_list_addr, &thread_list,
314	                sizeof(thread_list));
315	if (ret != 0)
316		return (P2T(ret));
317	pt = (psaddr_t)thread_list.tqh_first;
318	while (pt != 0) {
319		ret = ps_pread(ta->ph, pt + ta->thread_off_tcb,
320				&ptr, sizeof(ptr));
321		if (ret != 0)
322			return (P2T(ret));
323		ptr += ta->thread_off_tmbx +
324		       offsetof(struct kse_thr_mailbox, tm_lwp);
325		ret = ps_pread(ta->ph, ptr, &tmp_lwp, sizeof(lwpid_t));
326		if (ret != 0)
327			return (P2T(ret));
328		if (tmp_lwp == lwp) {
329			th->th_ta = ta;
330			th->th_tid = pt_map_thread(ta, pt, PT_USER);
331			if (th->th_tid == -1)
332				return (TD_MALLOC);
333			pt_unmap_lwp(ta, lwp);
334			th->th_thread = pt;
335			return (TD_OK);
336		}
337
338		/* get next thread */
339		ret = ps_pread(ta->ph,
340		           pt + ta->thread_off_next,
341		           &pt, sizeof(pt));
342		if (ret != 0)
343			return (P2T(ret));
344	}
345
346	return (TD_NOTHR);
347}
348
349static td_err_e
350pt_ta_thr_iter(const td_thragent_t *ta,
351               td_thr_iter_f *callback, void *cbdata_p,
352               td_thr_state_e state, int ti_pri,
353               sigset_t *ti_sigmask_p,
354               unsigned int ti_user_flags)
355{
356	TAILQ_HEAD(, pthread) thread_list;
357	td_thrhandle_t th;
358	psaddr_t pt;
359	ps_err_e pserr;
360	int activated;
361
362	TDBG_FUNC();
363
364	pserr = ps_pread(ta->ph, ta->thread_activated_addr, &activated,
365	    sizeof(int));
366	if (pserr != PS_OK)
367		return (P2T(pserr));
368	if (!activated)
369		return (TD_OK);
370
371	pserr = ps_pread(ta->ph, ta->thread_list_addr, &thread_list,
372	    sizeof(thread_list));
373	if (pserr != 0)
374		return (P2T(pserr));
375	pt = (psaddr_t)thread_list.tqh_first;
376	while (pt != 0) {
377		th.th_ta = ta;
378		th.th_tid = pt_map_thread(ta, pt, PT_USER);
379		th.th_thread = pt;
380		/* should we unmap lwp here ? */
381		if (th.th_tid == -1)
382			return (TD_MALLOC);
383		if ((*callback)(&th, cbdata_p))
384			return (TD_DBERR);
385		/* get next thread */
386		pserr = ps_pread(ta->ph,
387		    pt + ta->thread_off_next, &pt,
388		    sizeof(pt));
389		if (pserr != PS_OK)
390			return (P2T(pserr));
391	}
392	return (TD_OK);
393}
394
395static td_err_e
396pt_ta_tsd_iter(const td_thragent_t *ta, td_key_iter_f *ki, void *arg)
397{
398	char *keytable;
399	void *destructor;
400	int i, ret, allocated;
401
402	TDBG_FUNC();
403
404	keytable = malloc(ta->thread_max_keys * ta->thread_size_key);
405	if (keytable == NULL)
406		return (TD_MALLOC);
407	ret = ps_pread(ta->ph, (psaddr_t)ta->thread_keytable_addr, keytable,
408	               ta->thread_max_keys * ta->thread_size_key);
409	if (ret != 0) {
410		free(keytable);
411		return (P2T(ret));
412	}
413	for (i = 0; i < ta->thread_max_keys; i++) {
414		allocated = *(int *)(keytable + i * ta->thread_size_key +
415			ta->thread_off_key_allocated);
416		destructor = *(void **)(keytable + i * ta->thread_size_key +
417			ta->thread_off_key_destructor);
418		if (allocated) {
419			ret = (ki)(i, destructor, arg);
420			if (ret != 0) {
421				free(keytable);
422				return (TD_DBERR);
423			}
424		}
425	}
426	free(keytable);
427	return (TD_OK);
428}
429
430static td_err_e
431pt_ta_event_addr(const td_thragent_t *ta, td_event_e event, td_notify_t *ptr)
432{
433	TDBG_FUNC();
434	return (TD_ERR);
435}
436
437static td_err_e
438pt_ta_set_event(const td_thragent_t *ta, td_thr_events_t *events)
439{
440	TDBG_FUNC();
441	return (0);
442}
443
444static td_err_e
445pt_ta_clear_event(const td_thragent_t *ta, td_thr_events_t *events)
446{
447	TDBG_FUNC();
448	return (0);
449}
450
451static td_err_e
452pt_ta_event_getmsg(const td_thragent_t *ta, td_event_msg_t *msg)
453{
454	TDBG_FUNC();
455	return (TD_NOMSG);
456}
457
458static td_err_e
459pt_dbsuspend(const td_thrhandle_t *th, int suspend)
460{
461	td_thragent_t *ta = (td_thragent_t *)th->th_ta;
462	psaddr_t tcb_addr, tmbx_addr, ptr;
463	lwpid_t lwp;
464	uint32_t dflags;
465	int attrflags, locklevel, ret;
466
467	TDBG_FUNC();
468
469	ret = pt_validate(th);
470	if (ret)
471		return (ret);
472
473	if (ta->map[th->th_tid].type == PT_LWP) {
474		if (suspend)
475			ret = ps_lstop(ta->ph, ta->map[th->th_tid].lwp);
476		else
477			ret = ps_lcontinue(ta->ph, ta->map[th->th_tid].lwp);
478		return (P2T(ret));
479	}
480
481	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr +
482		ta->thread_off_attr_flags,
483		&attrflags, sizeof(attrflags));
484	if (ret != 0)
485		return (P2T(ret));
486	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr +
487	               ta->thread_off_tcb,
488	               &tcb_addr, sizeof(tcb_addr));
489	if (ret != 0)
490		return (P2T(ret));
491	tmbx_addr = tcb_addr + ta->thread_off_tmbx;
492	ptr = tmbx_addr + offsetof(struct kse_thr_mailbox, tm_lwp);
493	ret = ps_pread(ta->ph, ptr, &lwp, sizeof(lwpid_t));
494	if (ret != 0)
495		return (P2T(ret));
496
497	if (lwp != 0) {
498		/* don't suspend signal thread */
499		if (attrflags & 0x200)
500			return (0);
501		if (attrflags & PTHREAD_SCOPE_SYSTEM) {
502			/*
503			 * don't suspend system scope thread if it is holding
504			 * some low level locks
505			 */
506			ptr = ta->map[th->th_tid].thr + ta->thread_off_kse;
507			ret = ps_pread(ta->ph, ptr, &ptr, sizeof(ptr));
508			if (ret != 0)
509				return (P2T(ret));
510			ret = ps_pread(ta->ph, ptr + ta->thread_off_kse_locklevel,
511				&locklevel, sizeof(int));
512			if (ret != 0)
513				return (P2T(ret));
514			if (locklevel <= 0) {
515				ptr = ta->map[th->th_tid].thr +
516					ta->thread_off_thr_locklevel;
517				ret = ps_pread(ta->ph, ptr, &locklevel,
518					sizeof(int));
519				if (ret != 0)
520					return (P2T(ret));
521			}
522			if (suspend) {
523				if (locklevel <= 0)
524					ret = ps_lstop(ta->ph, lwp);
525			} else {
526				ret = ps_lcontinue(ta->ph, lwp);
527			}
528			if (ret != 0)
529				return (P2T(ret));
530			/* FALLTHROUGH */
531		} else {
532			struct ptrace_lwpinfo pl;
533
534			if (ps_linfo(ta->ph, lwp, (caddr_t)&pl))
535				return (TD_ERR);
536			if (suspend) {
537				if (!(pl.pl_flags & PL_FLAG_BOUND))
538					ret = ps_lstop(ta->ph, lwp);
539			} else {
540				ret = ps_lcontinue(ta->ph, lwp);
541			}
542			if (ret != 0)
543				return (P2T(ret));
544			/* FALLTHROUGH */
545		}
546	}
547	/* read tm_dflags */
548	ret = ps_pread(ta->ph,
549		tmbx_addr + offsetof(struct kse_thr_mailbox, tm_dflags),
550		&dflags, sizeof(dflags));
551	if (ret != 0)
552		return (P2T(ret));
553	if (suspend)
554		dflags |= TMDF_SUSPEND;
555	else
556		dflags &= ~TMDF_SUSPEND;
557	ret = ps_pwrite(ta->ph,
558	       tmbx_addr + offsetof(struct kse_thr_mailbox, tm_dflags),
559	       &dflags, sizeof(dflags));
560	return (P2T(ret));
561}
562
563static td_err_e
564pt_thr_dbresume(const td_thrhandle_t *th)
565{
566	TDBG_FUNC();
567
568	return pt_dbsuspend(th, 0);
569}
570
571static td_err_e
572pt_thr_dbsuspend(const td_thrhandle_t *th)
573{
574	TDBG_FUNC();
575
576	return pt_dbsuspend(th, 1);
577}
578
579static td_err_e
580pt_thr_validate(const td_thrhandle_t *th)
581{
582	td_thrhandle_t temp;
583	int ret;
584
585	TDBG_FUNC();
586
587	ret = pt_ta_map_id2thr(th->th_ta, th->th_tid,
588	                       &temp);
589	return (ret);
590}
591
592static td_err_e
593pt_thr_get_info(const td_thrhandle_t *th, td_thrinfo_t *info)
594{
595	const td_thragent_t *ta = th->th_ta;
596	struct ptrace_lwpinfo linfo;
597	psaddr_t tcb_addr;
598	uint32_t dflags;
599	lwpid_t lwp;
600	int state;
601	int ret;
602	int attrflags;
603
604	TDBG_FUNC();
605
606	bzero(info, sizeof(*info));
607	ret = pt_validate(th);
608	if (ret)
609		return (ret);
610
611	memset(info, 0, sizeof(*info));
612	if (ta->map[th->th_tid].type == PT_LWP) {
613		info->ti_type = TD_THR_SYSTEM;
614		info->ti_lid = ta->map[th->th_tid].lwp;
615		info->ti_tid = th->th_tid;
616		info->ti_state = TD_THR_RUN;
617		info->ti_type = TD_THR_SYSTEM;
618		return (TD_OK);
619	}
620
621	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr +
622		ta->thread_off_attr_flags,
623		&attrflags, sizeof(attrflags));
624	if (ret != 0)
625		return (P2T(ret));
626	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr + ta->thread_off_tcb,
627	               &tcb_addr, sizeof(tcb_addr));
628	if (ret != 0)
629		return (P2T(ret));
630	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr + ta->thread_off_state,
631	               &state, sizeof(state));
632	ret = ps_pread(ta->ph,
633	        tcb_addr + ta->thread_off_tmbx +
634		 offsetof(struct kse_thr_mailbox, tm_lwp),
635	        &info->ti_lid, sizeof(lwpid_t));
636	if (ret != 0)
637		return (P2T(ret));
638	ret = ps_pread(ta->ph,
639		tcb_addr + ta->thread_off_tmbx +
640		 offsetof(struct kse_thr_mailbox, tm_dflags),
641		&dflags, sizeof(dflags));
642	if (ret != 0)
643		return (P2T(ret));
644	ret = ps_pread(ta->ph, tcb_addr + ta->thread_off_tmbx +
645		offsetof(struct kse_thr_mailbox, tm_lwp), &lwp, sizeof(lwpid_t));
646	if (ret != 0)
647		return (P2T(ret));
648	info->ti_ta_p = th->th_ta;
649	info->ti_tid = th->th_tid;
650
651	if (attrflags & PTHREAD_SCOPE_SYSTEM) {
652		ret = ps_linfo(ta->ph, lwp, &linfo);
653		if (ret == PS_OK) {
654			info->ti_sigmask = linfo.pl_sigmask;
655			info->ti_pending = linfo.pl_siglist;
656		} else
657			return (ret);
658	} else {
659		ret = ps_pread(ta->ph,
660			ta->map[th->th_tid].thr + ta->thread_off_sigmask,
661			&info->ti_sigmask, sizeof(sigset_t));
662		if (ret)
663			return (ret);
664		ret = ps_pread(ta->ph,
665			ta->map[th->th_tid].thr + ta->thread_off_sigpend,
666			&info->ti_pending, sizeof(sigset_t));
667		if (ret)
668			return (ret);
669	}
670
671	if (state == ta->thread_state_running)
672		info->ti_state = TD_THR_RUN;
673	else if (state == ta->thread_state_zoombie)
674		info->ti_state = TD_THR_ZOMBIE;
675	else
676		info->ti_state = TD_THR_SLEEP;
677	info->ti_db_suspended = ((dflags & TMDF_SUSPEND) != 0);
678	info->ti_type = TD_THR_USER;
679	return (0);
680}
681
682#ifdef __i386__
683static td_err_e
684pt_thr_getxmmregs(const td_thrhandle_t *th, char *fxsave)
685{
686	const td_thragent_t *ta = th->th_ta;
687	struct kse_thr_mailbox tmbx;
688	psaddr_t tcb_addr, tmbx_addr, ptr;
689	lwpid_t lwp;
690	int ret;
691
692	return TD_ERR;
693
694	TDBG_FUNC();
695
696	ret = pt_validate(th);
697	if (ret)
698		return (ret);
699
700	if (ta->map[th->th_tid].type == PT_LWP) {
701		ret = ps_lgetxmmregs(ta->ph, ta->map[th->th_tid].lwp, fxsave);
702		return (P2T(ret));
703	}
704
705	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr + ta->thread_off_tcb,
706	               &tcb_addr, sizeof(tcb_addr));
707	if (ret != 0)
708		return (P2T(ret));
709	tmbx_addr = tcb_addr + ta->thread_off_tmbx;
710	ptr = tmbx_addr + offsetof(struct kse_thr_mailbox, tm_lwp);
711	ret = ps_pread(ta->ph, ptr, &lwp, sizeof(lwpid_t));
712	if (ret != 0)
713		return (P2T(ret));
714	if (lwp != 0) {
715		ret = ps_lgetxmmregs(ta->ph, lwp, fxsave);
716		return (P2T(ret));
717	}
718
719	ret = ps_pread(ta->ph, tmbx_addr, &tmbx, sizeof(tmbx));
720	if (ret != 0)
721		return (P2T(ret));
722	pt_ucontext_to_fxsave(&tmbx.tm_context, fxsave);
723	return (0);
724}
725#endif
726
727static td_err_e
728pt_thr_getfpregs(const td_thrhandle_t *th, prfpregset_t *fpregs)
729{
730	const td_thragent_t *ta = th->th_ta;
731	struct kse_thr_mailbox tmbx;
732	psaddr_t tcb_addr, tmbx_addr, ptr;
733	lwpid_t lwp;
734	int ret;
735
736	TDBG_FUNC();
737
738	ret = pt_validate(th);
739	if (ret)
740		return (ret);
741
742	if (ta->map[th->th_tid].type == PT_LWP) {
743		ret = ps_lgetfpregs(ta->ph, ta->map[th->th_tid].lwp, fpregs);
744		return (P2T(ret));
745	}
746
747	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr + ta->thread_off_tcb,
748	               &tcb_addr, sizeof(tcb_addr));
749	if (ret != 0)
750		return (P2T(ret));
751	tmbx_addr = tcb_addr + ta->thread_off_tmbx;
752	ptr = tmbx_addr + offsetof(struct kse_thr_mailbox, tm_lwp);
753	ret = ps_pread(ta->ph, ptr, &lwp, sizeof(lwpid_t));
754	if (ret != 0)
755		return (P2T(ret));
756	if (lwp != 0) {
757		ret = ps_lgetfpregs(ta->ph, lwp, fpregs);
758		return (P2T(ret));
759	}
760
761	ret = ps_pread(ta->ph, tmbx_addr, &tmbx, sizeof(tmbx));
762	if (ret != 0)
763		return (P2T(ret));
764	pt_ucontext_to_fpreg(&tmbx.tm_context, fpregs);
765	return (0);
766}
767
768static td_err_e
769pt_thr_getgregs(const td_thrhandle_t *th, prgregset_t gregs)
770{
771	const td_thragent_t *ta = th->th_ta;
772	struct kse_thr_mailbox tmbx;
773	psaddr_t tcb_addr, tmbx_addr, ptr;
774	lwpid_t lwp;
775	int ret;
776
777	TDBG_FUNC();
778
779	ret = pt_validate(th);
780	if (ret)
781		return (ret);
782
783	if (ta->map[th->th_tid].type == PT_LWP) {
784		ret = ps_lgetregs(ta->ph,
785		                  ta->map[th->th_tid].lwp, gregs);
786		return (P2T(ret));
787	}
788
789	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr + ta->thread_off_tcb,
790			&tcb_addr, sizeof(tcb_addr));
791	if (ret != 0)
792		return (P2T(ret));
793	tmbx_addr = tcb_addr + ta->thread_off_tmbx;
794	ptr = tmbx_addr + offsetof(struct kse_thr_mailbox, tm_lwp);
795	ret = ps_pread(ta->ph, ptr, &lwp, sizeof(lwpid_t));
796	if (ret != 0)
797		return (P2T(ret));
798	if (lwp != 0) {
799		ret = ps_lgetregs(ta->ph, lwp, gregs);
800		return (P2T(ret));
801	}
802	ret = ps_pread(ta->ph, tmbx_addr, &tmbx, sizeof(tmbx));
803	if (ret != 0)
804		return (P2T(ret));
805	pt_ucontext_to_reg(&tmbx.tm_context, gregs);
806	return (0);
807}
808
809#ifdef __i386__
810static td_err_e
811pt_thr_setxmmregs(const td_thrhandle_t *th, const char *fxsave)
812{
813	const td_thragent_t *ta = th->th_ta;
814	struct kse_thr_mailbox tmbx;
815	psaddr_t tcb_addr, tmbx_addr, ptr;
816	lwpid_t lwp;
817	int ret;
818
819	return TD_ERR;
820
821	TDBG_FUNC();
822
823	ret = pt_validate(th);
824	if (ret)
825		return (ret);
826
827	if (ta->map[th->th_tid].type == PT_LWP) {
828		ret = ps_lsetxmmregs(ta->ph, ta->map[th->th_tid].lwp, fxsave);
829		return (P2T(ret));
830	}
831
832	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr +
833	                ta->thread_off_tcb,
834                        &tcb_addr, sizeof(tcb_addr));
835	if (ret != 0)
836		return (P2T(ret));
837	tmbx_addr = tcb_addr + ta->thread_off_tmbx;
838	ptr = tmbx_addr + offsetof(struct kse_thr_mailbox, tm_lwp);
839	ret = ps_pread(ta->ph, ptr, &lwp, sizeof(lwpid_t));
840	if (ret != 0)
841		return (P2T(ret));
842	if (lwp != 0) {
843		ret = ps_lsetxmmregs(ta->ph, lwp, fxsave);
844		return (P2T(ret));
845	}
846	/*
847	 * Read a copy of context, this makes sure that registers
848	 * not covered by structure reg won't be clobbered
849	 */
850	ret = ps_pread(ta->ph, tmbx_addr, &tmbx, sizeof(tmbx));
851	if (ret != 0)
852		return (P2T(ret));
853
854	pt_fxsave_to_ucontext(fxsave, &tmbx.tm_context);
855	ret = ps_pwrite(ta->ph, tmbx_addr, &tmbx, sizeof(tmbx));
856	return (P2T(ret));
857}
858#endif
859
860static td_err_e
861pt_thr_setfpregs(const td_thrhandle_t *th, const prfpregset_t *fpregs)
862{
863	const td_thragent_t *ta = th->th_ta;
864	struct kse_thr_mailbox tmbx;
865	psaddr_t tcb_addr, tmbx_addr, ptr;
866	lwpid_t lwp;
867	int ret;
868
869	TDBG_FUNC();
870
871	ret = pt_validate(th);
872	if (ret)
873		return (ret);
874
875	if (ta->map[th->th_tid].type == PT_LWP) {
876		ret = ps_lsetfpregs(ta->ph, ta->map[th->th_tid].lwp, fpregs);
877		return (P2T(ret));
878	}
879
880	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr +
881	                ta->thread_off_tcb,
882                        &tcb_addr, sizeof(tcb_addr));
883	if (ret != 0)
884		return (P2T(ret));
885	tmbx_addr = tcb_addr + ta->thread_off_tmbx;
886	ptr = tmbx_addr + offsetof(struct kse_thr_mailbox, tm_lwp);
887	ret = ps_pread(ta->ph, ptr, &lwp, sizeof(lwpid_t));
888	if (ret != 0)
889		return (P2T(ret));
890	if (lwp != 0) {
891		ret = ps_lsetfpregs(ta->ph, lwp, fpregs);
892		return (P2T(ret));
893	}
894	/*
895	 * Read a copy of context, this makes sure that registers
896	 * not covered by structure reg won't be clobbered
897	 */
898	ret = ps_pread(ta->ph, tmbx_addr, &tmbx, sizeof(tmbx));
899	if (ret != 0)
900		return (P2T(ret));
901
902	pt_fpreg_to_ucontext(fpregs, &tmbx.tm_context);
903	ret = ps_pwrite(ta->ph, tmbx_addr, &tmbx, sizeof(tmbx));
904	return (P2T(ret));
905}
906
907static td_err_e
908pt_thr_setgregs(const td_thrhandle_t *th, const prgregset_t gregs)
909{
910	const td_thragent_t *ta = th->th_ta;
911	struct kse_thr_mailbox tmbx;
912	psaddr_t tcb_addr, tmbx_addr, ptr;
913	lwpid_t lwp;
914	int ret;
915
916	TDBG_FUNC();
917
918	ret = pt_validate(th);
919	if (ret)
920		return (ret);
921
922	if (ta->map[th->th_tid].type == PT_LWP) {
923		ret = ps_lsetregs(ta->ph, ta->map[th->th_tid].lwp, gregs);
924		return (P2T(ret));
925	}
926
927	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr +
928	                ta->thread_off_tcb,
929	                &tcb_addr, sizeof(tcb_addr));
930	if (ret != 0)
931		return (P2T(ret));
932	tmbx_addr = tcb_addr + ta->thread_off_tmbx;
933	ptr = tmbx_addr + offsetof(struct kse_thr_mailbox, tm_lwp);
934	ret = ps_pread(ta->ph, ptr, &lwp, sizeof(lwpid_t));
935	if (ret != 0)
936		return (P2T(ret));
937	if (lwp != 0) {
938		ret = ps_lsetregs(ta->ph, lwp, gregs);
939		return (P2T(ret));
940	}
941
942	/*
943	 * Read a copy of context, make sure that registers
944	 * not covered by structure reg won't be clobbered
945	 */
946	ret = ps_pread(ta->ph, tmbx_addr, &tmbx, sizeof(tmbx));
947	if (ret != 0)
948		return (P2T(ret));
949	pt_reg_to_ucontext(gregs, &tmbx.tm_context);
950	ret = ps_pwrite(ta->ph, tmbx_addr, &tmbx, sizeof(tmbx));
951	return (P2T(ret));
952}
953
954static td_err_e
955pt_thr_event_enable(const td_thrhandle_t *th, int en)
956{
957	TDBG_FUNC();
958	return (0);
959}
960
961static td_err_e
962pt_thr_set_event(const td_thrhandle_t *th, td_thr_events_t *setp)
963{
964	TDBG_FUNC();
965	return (0);
966}
967
968static td_err_e
969pt_thr_clear_event(const td_thrhandle_t *th, td_thr_events_t *setp)
970{
971	TDBG_FUNC();
972	return (0);
973}
974
975static td_err_e
976pt_thr_event_getmsg(const td_thrhandle_t *th, td_event_msg_t *msg)
977{
978	TDBG_FUNC();
979	return (TD_NOMSG);
980}
981
982static td_err_e
983pt_thr_sstep(const td_thrhandle_t *th, int step)
984{
985	const td_thragent_t *ta = th->th_ta;
986	struct kse_thr_mailbox tmbx;
987	struct reg regs;
988	psaddr_t tcb_addr, tmbx_addr;
989	uint32_t dflags;
990	lwpid_t lwp;
991	int ret;
992
993	TDBG_FUNC();
994
995	ret = pt_validate(th);
996	if (ret)
997		return (ret);
998
999	if (ta->map[th->th_tid].type == PT_LWP)
1000		return (TD_BADTH);
1001
1002	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr +
1003	                ta->thread_off_tcb,
1004	                &tcb_addr, sizeof(tcb_addr));
1005	if (ret != 0)
1006		return (P2T(ret));
1007
1008	/* Clear or set single step flag in thread mailbox */
1009	ret = ps_pread(ta->ph,
1010		tcb_addr + ta->thread_off_tmbx +
1011		 offsetof(struct kse_thr_mailbox, tm_dflags),
1012		&dflags, sizeof(uint32_t));
1013	if (ret != 0)
1014		return (P2T(ret));
1015	if (step != 0)
1016		dflags |= TMDF_SSTEP;
1017	else
1018		dflags &= ~TMDF_SSTEP;
1019	ret = ps_pwrite(ta->ph,
1020		tcb_addr + ta->thread_off_tmbx +
1021		 offsetof(struct kse_thr_mailbox, tm_dflags),
1022	        &dflags, sizeof(uint32_t));
1023	if (ret != 0)
1024		return (P2T(ret));
1025	/* Get lwp */
1026	ret = ps_pread(ta->ph,
1027		tcb_addr + ta->thread_off_tmbx +
1028		 offsetof(struct kse_thr_mailbox, tm_lwp),
1029		&lwp, sizeof(lwpid_t));
1030	if (ret != 0)
1031		return (P2T(ret));
1032	if (lwp != 0)
1033		return (0);
1034
1035	tmbx_addr = tcb_addr + ta->thread_off_tmbx;
1036	/*
1037	 * context is in userland, some architectures store
1038	 * single step status in registers, we should change
1039	 * these registers.
1040	 */
1041	ret = ps_pread(ta->ph, tmbx_addr, &tmbx, sizeof(tmbx));
1042	if (ret == 0) {
1043		pt_ucontext_to_reg(&tmbx.tm_context, &regs);
1044		/* only write out if it is really changed. */
1045		if (pt_reg_sstep(&regs, step) != 0) {
1046			pt_reg_to_ucontext(&regs, &tmbx.tm_context);
1047			ret = ps_pwrite(ta->ph, tmbx_addr, &tmbx,
1048			                 sizeof(tmbx));
1049		}
1050	}
1051	return (P2T(ret));
1052}
1053
1054static void
1055pt_unmap_lwp(const td_thragent_t *ta, lwpid_t lwp)
1056{
1057	int i;
1058
1059	for (i = 0; i < ta->map_len; ++i) {
1060		if (ta->map[i].type == PT_LWP && ta->map[i].lwp == lwp) {
1061			ta->map[i].type = PT_NONE;
1062			return;
1063		}
1064	}
1065}
1066
1067static int
1068pt_validate(const td_thrhandle_t *th)
1069{
1070
1071	if (th->th_tid < 0 || th->th_tid >= th->th_ta->map_len ||
1072	    th->th_ta->map[th->th_tid].type == PT_NONE)
1073		return (TD_NOTHR);
1074	return (TD_OK);
1075}
1076
1077td_err_e
1078pt_thr_tls_get_addr(const td_thrhandle_t *th, void *_linkmap, size_t offset,
1079		    void **address)
1080{
1081	char *obj_entry;
1082	const td_thragent_t *ta = th->th_ta;
1083	psaddr_t tcb_addr, *dtv_addr;
1084	int tls_index, ret;
1085
1086	/* linkmap is a member of Obj_Entry */
1087	obj_entry = (char *)_linkmap - ta->thread_off_linkmap;
1088
1089	/* get tlsindex of the object file */
1090	ret = ps_pread(ta->ph,
1091		obj_entry + ta->thread_off_tlsindex,
1092		&tls_index, sizeof(tls_index));
1093	if (ret != 0)
1094		return (P2T(ret));
1095
1096	/* get thread tcb */
1097	ret = ps_pread(ta->ph, ta->map[th->th_tid].thr +
1098		ta->thread_off_tcb,
1099		&tcb_addr, sizeof(tcb_addr));
1100	if (ret != 0)
1101		return (P2T(ret));
1102
1103	/* get dtv array address */
1104	ret = ps_pread(ta->ph, tcb_addr + ta->thread_off_dtv,
1105		&dtv_addr, sizeof(dtv_addr));
1106	if (ret != 0)
1107		return (P2T(ret));
1108	/* now get the object's tls block base address */
1109	ret = ps_pread(ta->ph, &dtv_addr[tls_index+1], address,
1110		sizeof(*address));
1111	if (ret != 0)
1112		return (P2T(ret));
1113
1114	*address += offset;
1115	return (TD_OK);
1116}
1117
1118struct ta_ops libpthread_db_ops = {
1119	.to_init		= pt_init,
1120	.to_ta_clear_event	= pt_ta_clear_event,
1121	.to_ta_delete		= pt_ta_delete,
1122	.to_ta_event_addr	= pt_ta_event_addr,
1123	.to_ta_event_getmsg	= pt_ta_event_getmsg,
1124	.to_ta_map_id2thr	= pt_ta_map_id2thr,
1125	.to_ta_map_lwp2thr	= pt_ta_map_lwp2thr,
1126	.to_ta_new		= pt_ta_new,
1127	.to_ta_set_event	= pt_ta_set_event,
1128	.to_ta_thr_iter		= pt_ta_thr_iter,
1129	.to_ta_tsd_iter		= pt_ta_tsd_iter,
1130	.to_thr_clear_event	= pt_thr_clear_event,
1131	.to_thr_dbresume	= pt_thr_dbresume,
1132	.to_thr_dbsuspend	= pt_thr_dbsuspend,
1133	.to_thr_event_enable	= pt_thr_event_enable,
1134	.to_thr_event_getmsg	= pt_thr_event_getmsg,
1135	.to_thr_get_info	= pt_thr_get_info,
1136	.to_thr_getfpregs	= pt_thr_getfpregs,
1137	.to_thr_getgregs	= pt_thr_getgregs,
1138	.to_thr_set_event	= pt_thr_set_event,
1139	.to_thr_setfpregs	= pt_thr_setfpregs,
1140	.to_thr_setgregs	= pt_thr_setgregs,
1141	.to_thr_validate	= pt_thr_validate,
1142	.to_thr_tls_get_addr	= pt_thr_tls_get_addr,
1143
1144	/* FreeBSD specific extensions. */
1145	.to_thr_sstep		= pt_thr_sstep,
1146#ifdef __i386__
1147	.to_thr_getxmmregs	= pt_thr_getxmmregs,
1148	.to_thr_setxmmregs	= pt_thr_setxmmregs,
1149#endif
1150};
1151
1152DATA_SET(__ta_ops, libpthread_db_ops);
1153