1 /* 2 * CDDL HEADER START 3 * 4 * The contents of this file are subject to the terms of the 5 * Common Development and Distribution License (the "License"). 6 * You may not use this file except in compliance with the License. 7 * 8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9 * or http://www.opensolaris.org/os/licensing. 10 * See the License for the specific language governing permissions 11 * and limitations under the License. 12 * 13 * When distributing Covered Code, include this CDDL HEADER in each 14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15 * If applicable, add the following below this CDDL HEADER, with the 16 * fields enclosed by brackets "[]" replaced with your own identifying 17 * information: Portions Copyright [yyyy] [name of copyright owner] 18 * 19 * CDDL HEADER END 20 */ 21 /* 22 * Copyright 2006 Sun Microsystems, Inc. All rights reserved. 23 * Use is subject to license terms. 24 */ 25 26 #pragma ident "%Z%%M% %I% %E% SMI" 27 28 /* 29 * User Process Target 30 * 31 * The user process target is invoked when the -u or -p command-line options 32 * are used, or when an ELF executable file or ELF core file is specified on 33 * the command-line. This target is also selected by default when no target 34 * options are present. In this case, it defaults the executable name to 35 * "a.out". If no process or core file is currently attached, the target 36 * functions as a kind of virtual /dev/zero (in accordance with adb(1) 37 * semantics); reads from the virtual address space return zeroes and writes 38 * fail silently. The proc target itself is designed as a wrapper around the 39 * services provided by libproc.so: t->t_pshandle is set to the struct 40 * ps_prochandle pointer returned as a handle by libproc. The target also 41 * opens the executable file itself using the MDB GElf services, for 42 * interpreting the .symtab and .dynsym if no libproc handle has been 43 * initialized, and for handling i/o to and from the object file. Currently, 44 * the only ISA-dependent portions of the proc target are the $r and ::fpregs 45 * dcmds, the callbacks for t_next() and t_step_out(), and the list of named 46 * registers; these are linked in from the proc_isadep.c file for each ISA and 47 * called from the common code in this file. 48 * 49 * The user process target implements complete user process control using the 50 * facilities provided by libproc.so. The MDB execution control model and 51 * an overview of software event management is described in mdb_target.c. The 52 * proc target implements breakpoints by replacing the instruction of interest 53 * with a trap instruction, and then restoring the original instruction to step 54 * over the breakpoint. The idea of replacing program text with instructions 55 * that transfer control to the debugger dates back as far as 1951 [1]. When 56 * the target stops, we replace each breakpoint with the original instruction 57 * as part of the disarm operation. This means that no special processing is 58 * required for t_vread() because the instrumented instructions will never be 59 * seen by the debugger once the target stops. Some debuggers have improved 60 * start/stop performance by leaving breakpoint traps in place and then 61 * handling a read from a breakpoint address as a special case. Although this 62 * improves efficiency for a source-level debugger, it runs somewhat contrary 63 * to the philosophy of the low-level debugger. Since we remove the 64 * instructions, users can apply other external debugging tools to the process 65 * once it has stopped (e.g. the proc(1) tools) and not be misled by MDB 66 * instrumentation. The tracing of faults, signals, system calls, and 67 * watchpoints and general process inspection is implemented directly using 68 * the mechanisms provided by /proc, as described originally in [2] and [3]. 69 * 70 * References 71 * 72 * [1] S. Gill, "The Diagnosis Of Mistakes In Programmes on the EDSAC", 73 * Proceedings of the Royal Society Series A Mathematical and Physical 74 * Sciences, Cambridge University Press, 206(1087), May 1951, pp. 538-554. 75 * 76 * [2] T.J. Killian, "Processes as Files", Proceedings of the USENIX Association 77 * Summer Conference, Salt Lake City, June 1984, pp. 203-207. 78 * 79 * [3] Roger Faulkner and Ron Gomes, "The Process File System and Process 80 * Model in UNIX System V", Proceedings of the USENIX Association 81 * Winter Conference, Dallas, January 1991, pp. 243-252. 82 */ 83 84 #include <mdb/mdb_proc.h> 85 #include <mdb/mdb_disasm.h> 86 #include <mdb/mdb_signal.h> 87 #include <mdb/mdb_string.h> 88 #include <mdb/mdb_module.h> 89 #include <mdb/mdb_debug.h> 90 #include <mdb/mdb_conf.h> 91 #include <mdb/mdb_err.h> 92 #include <mdb/mdb_types.h> 93 #include <mdb/mdb.h> 94 95 #include <sys/utsname.h> 96 #include <sys/wait.h> 97 #include <sys/stat.h> 98 #include <termio.h> 99 #include <signal.h> 100 #include <stdio_ext.h> 101 #include <stdlib.h> 102 #include <string.h> 103 104 #define PC_FAKE -1UL /* illegal pc value unequal 0 */ 105 106 static const char PT_EXEC_PATH[] = "a.out"; /* Default executable */ 107 static const char PT_CORE_PATH[] = "core"; /* Default core file */ 108 109 static const pt_ptl_ops_t proc_lwp_ops; 110 static const pt_ptl_ops_t proc_tdb_ops; 111 static const mdb_se_ops_t proc_brkpt_ops; 112 static const mdb_se_ops_t proc_wapt_ops; 113 114 static int pt_setrun(mdb_tgt_t *, mdb_tgt_status_t *, int); 115 static void pt_activate_common(mdb_tgt_t *); 116 static mdb_tgt_vespec_f pt_ignore_sig; 117 static mdb_tgt_se_f pt_fork; 118 static mdb_tgt_se_f pt_exec; 119 120 static int pt_lookup_by_name_thr(mdb_tgt_t *, const char *, 121 const char *, GElf_Sym *, mdb_syminfo_t *, mdb_tgt_tid_t); 122 static int tlsbase(mdb_tgt_t *, mdb_tgt_tid_t, Lmid_t, const char *, 123 psaddr_t *); 124 125 /* 126 * The Perror_printf() function interposes on the default, empty libproc 127 * definition. It will be called to report additional information on complex 128 * errors, such as a corrupt core file. We just pass the args to vwarn. 129 */ 130 /*ARGSUSED*/ 131 void 132 Perror_printf(struct ps_prochandle *P, const char *format, ...) 133 { 134 va_list alist; 135 136 va_start(alist, format); 137 vwarn(format, alist); 138 va_end(alist); 139 } 140 141 /* 142 * Open the specified i/o backend as the a.out executable file, and attempt to 143 * load its standard and dynamic symbol tables. Note that if mdb_gelf_create 144 * succeeds, io is assigned to p_fio and is automatically held by gelf_create. 145 */ 146 static mdb_gelf_file_t * 147 pt_open_aout(mdb_tgt_t *t, mdb_io_t *io) 148 { 149 pt_data_t *pt = t->t_data; 150 GElf_Sym s1, s2; 151 152 if ((pt->p_file = mdb_gelf_create(io, ET_NONE, GF_FILE)) == NULL) 153 return (NULL); 154 155 pt->p_symtab = mdb_gelf_symtab_create_file(pt->p_file, 156 SHT_SYMTAB, MDB_TGT_SYMTAB); 157 pt->p_dynsym = mdb_gelf_symtab_create_file(pt->p_file, 158 SHT_DYNSYM, MDB_TGT_DYNSYM); 159 160 /* 161 * If we've got an _start symbol with a zero size, prime the private 162 * symbol table with a copy of _start with its size set to the distance 163 * between _mcount and _start. We do this because DevPro has shipped 164 * the Intel crt1.o without proper .size directives for years, which 165 * precludes proper identification of _start in stack traces. 166 */ 167 if (mdb_gelf_symtab_lookup_by_name(pt->p_dynsym, "_start", &s1, 168 NULL) == 0 && s1.st_size == 0 && 169 GELF_ST_TYPE(s1.st_info) == STT_FUNC) { 170 if (mdb_gelf_symtab_lookup_by_name(pt->p_dynsym, "_mcount", 171 &s2, NULL) == 0 && GELF_ST_TYPE(s2.st_info) == STT_FUNC) { 172 s1.st_size = s2.st_value - s1.st_value; 173 mdb_gelf_symtab_insert(mdb.m_prsym, "_start", &s1); 174 } 175 } 176 177 pt->p_fio = io; 178 return (pt->p_file); 179 } 180 181 /* 182 * Destroy the symbol tables and GElf file object associated with p_fio. Note 183 * that we do not need to explicitly free p_fio: its reference count is 184 * automatically decremented by mdb_gelf_destroy, which will free it if needed. 185 */ 186 static void 187 pt_close_aout(mdb_tgt_t *t) 188 { 189 pt_data_t *pt = t->t_data; 190 191 if (pt->p_symtab != NULL) { 192 mdb_gelf_symtab_destroy(pt->p_symtab); 193 pt->p_symtab = NULL; 194 } 195 196 if (pt->p_dynsym != NULL) { 197 mdb_gelf_symtab_destroy(pt->p_dynsym); 198 pt->p_dynsym = NULL; 199 } 200 201 if (pt->p_file != NULL) { 202 mdb_gelf_destroy(pt->p_file); 203 pt->p_file = NULL; 204 } 205 206 mdb_gelf_symtab_delete(mdb.m_prsym, "_start", NULL); 207 pt->p_fio = NULL; 208 } 209 210 /* 211 * Pobject_iter callback that we use to search for the presence of libthread in 212 * order to load the corresponding libthread_db support. We derive the 213 * libthread_db path dynamically based on the libthread path. If libthread is 214 * found, this function returns 1 (and thus Pobject_iter aborts and returns 1) 215 * regardless of whether it was successful in loading the libthread_db support. 216 * If we iterate over all objects and no libthread is found, 0 is returned. 217 * Since libthread_db support was then merged into libc_db, we load either 218 * libc_db or libthread_db, depending on which library we see first. 219 */ 220 /*ARGSUSED*/ 221 static int 222 thr_check(mdb_tgt_t *t, const prmap_t *pmp, const char *name) 223 { 224 pt_data_t *pt = t->t_data; 225 const mdb_tdb_ops_t *ops; 226 char *p, *q; 227 228 char path[MAXPATHLEN + 8]; /* +8 for "/64" "_db" and '\0' */ 229 230 const char *const libs[] = { "/libc.so", "/libthread.so" }; 231 int libn; 232 233 if (name == NULL) 234 return (0); /* no rtld_db object name; keep going */ 235 236 for (libn = 0; libn < sizeof (libs) / sizeof (libs[0]); libn++) { 237 if ((p = strstr(name, libs[libn])) != NULL) 238 break; 239 } 240 241 if (p == NULL) 242 return (0); /* no match; keep going */ 243 244 (void) strncpy(path, name, MAXPATHLEN); 245 path[MAXPATHLEN] = '\0'; 246 q = strstr(path, libs[libn]); 247 ASSERT(q != NULL); 248 249 /* 250 * If the 64-bit debugger is looking at a 32-bit victim, append /64 to 251 * the library directory name so we load the 64-bit version. 252 */ 253 if (Pstatus(t->t_pshandle)->pr_dmodel != PR_MODEL_NATIVE) { 254 (void) strcpy(q, "/64"); 255 q += 3; 256 (void) strcpy(q, p); 257 } 258 259 p = strchr(p, '.'); 260 q = strchr(q, '.'); 261 (void) strcpy(q, "_db"); 262 q += 3; 263 (void) strcpy(q, p); 264 265 if ((ops = mdb_tdb_load(path)) == NULL) { 266 if (libn != 0 || errno != ENOENT) 267 warn("failed to load %s", path); 268 goto err; 269 } 270 271 if (ops == pt->p_tdb_ops) 272 return (1); /* no changes needed */ 273 274 PTL_DTOR(t); 275 pt->p_tdb_ops = ops; 276 pt->p_ptl_ops = &proc_tdb_ops; 277 pt->p_ptl_hdl = NULL; 278 279 if (PTL_CTOR(t) == -1) { 280 warn("failed to initialize %s", path); 281 goto err; 282 } 283 284 mdb_dprintf(MDB_DBG_TGT, "loaded %s for debugging %s\n", path, name); 285 (void) mdb_tgt_status(t, &t->t_status); 286 return (1); 287 err: 288 PTL_DTOR(t); 289 pt->p_tdb_ops = NULL; 290 pt->p_ptl_ops = &proc_lwp_ops; 291 pt->p_ptl_hdl = NULL; 292 293 if (libn != 0 || errno != ENOENT) { 294 warn("warning: debugger will only be able to " 295 "examine raw LWPs\n"); 296 } 297 298 (void) mdb_tgt_status(t, &t->t_status); 299 return (1); 300 } 301 302 /* 303 * Whenever the link map is consistent following an add or delete event, we ask 304 * libproc to update its mappings, check to see if we need to load libthread_db, 305 * and then update breakpoints which have been mapped or unmapped. 306 */ 307 /*ARGSUSED*/ 308 static void 309 pt_rtld_event(mdb_tgt_t *t, int vid, void *private) 310 { 311 struct ps_prochandle *P = t->t_pshandle; 312 pt_data_t *pt = t->t_data; 313 rd_event_msg_t rdm; 314 int docontinue = 1; 315 316 if (rd_event_getmsg(pt->p_rtld, &rdm) == RD_OK) { 317 318 mdb_dprintf(MDB_DBG_TGT, "rtld event type 0x%x state 0x%x\n", 319 rdm.type, rdm.u.state); 320 321 if (rdm.type == RD_DLACTIVITY && rdm.u.state == RD_CONSISTENT) { 322 mdb_sespec_t *sep, *nsep = mdb_list_next(&t->t_active); 323 pt_brkpt_t *ptb; 324 325 Pupdate_maps(P); 326 327 if (Pobject_iter(P, (proc_map_f *)thr_check, t) == 0 && 328 pt->p_ptl_ops != &proc_lwp_ops) { 329 mdb_dprintf(MDB_DBG_TGT, "unloading thread_db " 330 "support after dlclose\n"); 331 PTL_DTOR(t); 332 pt->p_tdb_ops = NULL; 333 pt->p_ptl_ops = &proc_lwp_ops; 334 pt->p_ptl_hdl = NULL; 335 (void) mdb_tgt_status(t, &t->t_status); 336 } 337 338 for (sep = nsep; sep != NULL; sep = nsep) { 339 nsep = mdb_list_next(sep); 340 ptb = sep->se_data; 341 342 if (sep->se_ops == &proc_brkpt_ops && 343 Paddr_to_map(P, ptb->ptb_addr) == NULL) 344 mdb_tgt_sespec_idle_one(t, sep, 345 EMDB_NOMAP); 346 } 347 348 if (!mdb_tgt_sespec_activate_all(t) && 349 (mdb.m_flags & MDB_FL_BPTNOSYMSTOP) && 350 pt->p_rtld_finished) { 351 /* 352 * We weren't able to activate the breakpoints. 353 * If so requested, we'll return without 354 * calling continue, thus throwing the user into 355 * the debugger. 356 */ 357 docontinue = 0; 358 } 359 360 if (pt->p_rdstate == PT_RD_ADD) 361 pt->p_rdstate = PT_RD_CONSIST; 362 } 363 364 if (rdm.type == RD_PREINIT) 365 (void) mdb_tgt_sespec_activate_all(t); 366 367 if (rdm.type == RD_POSTINIT) { 368 pt->p_rtld_finished = TRUE; 369 if (!mdb_tgt_sespec_activate_all(t) && 370 (mdb.m_flags & MDB_FL_BPTNOSYMSTOP)) { 371 /* 372 * Now that rtld has been initialized, we 373 * should be able to initialize all deferred 374 * breakpoints. If we can't, don't let the 375 * target continue. 376 */ 377 docontinue = 0; 378 } 379 } 380 381 if (rdm.type == RD_DLACTIVITY && rdm.u.state == RD_ADD && 382 pt->p_rtld_finished) 383 pt->p_rdstate = MAX(pt->p_rdstate, PT_RD_ADD); 384 } 385 386 if (docontinue) 387 (void) mdb_tgt_continue(t, NULL); 388 } 389 390 static void 391 pt_post_attach(mdb_tgt_t *t) 392 { 393 struct ps_prochandle *P = t->t_pshandle; 394 const lwpstatus_t *psp = &Pstatus(P)->pr_lwp; 395 pt_data_t *pt = t->t_data; 396 int hflag = MDB_TGT_SPEC_HIDDEN; 397 398 mdb_dprintf(MDB_DBG_TGT, "attach pr_flags=0x%x pr_why=%d pr_what=%d\n", 399 psp->pr_flags, psp->pr_why, psp->pr_what); 400 401 /* 402 * When we grab a process, the initial setting of p_rtld_finished 403 * should be false if the process was just created by exec; otherwise 404 * we permit unscoped references to resolve because we do not know how 405 * far the process has proceeded through linker initialization. 406 */ 407 if ((psp->pr_flags & PR_ISTOP) && psp->pr_why == PR_SYSEXIT && 408 psp->pr_errno == 0 && (psp->pr_what == SYS_exec || 409 psp->pr_what == SYS_execve)) { 410 if (mdb.m_target == NULL) { 411 warn("target performed exec of %s\n", 412 IOP_NAME(pt->p_fio)); 413 } 414 pt->p_rtld_finished = FALSE; 415 } else 416 pt->p_rtld_finished = TRUE; 417 418 /* 419 * When we grab a process, if it is stopped by job control and part of 420 * the same session (i.e. same controlling tty), set MDB_FL_JOBCTL so 421 * we will know to bring it to the foreground when we continue it. 422 */ 423 if (mdb.m_term != NULL && (psp->pr_flags & PR_STOPPED) && 424 psp->pr_why == PR_JOBCONTROL && getsid(0) == Pstatus(P)->pr_sid) 425 mdb.m_flags |= MDB_FL_JOBCTL; 426 427 /* 428 * When we grab control of a live process, set F_RDWR so that the 429 * target layer permits writes to the target's address space. 430 */ 431 t->t_flags |= MDB_TGT_F_RDWR; 432 433 (void) Pfault(P, FLTBPT, TRUE); /* always trace breakpoints */ 434 (void) Pfault(P, FLTWATCH, TRUE); /* always trace watchpoints */ 435 (void) Pfault(P, FLTTRACE, TRUE); /* always trace single-step */ 436 437 (void) Punsetflags(P, PR_ASYNC); /* require synchronous mode */ 438 (void) Psetflags(P, PR_BPTADJ); /* always adjust eip on x86 */ 439 (void) Psetflags(P, PR_FORK); /* inherit tracing on fork */ 440 441 /* 442 * Install event specifiers to track fork and exec activities: 443 */ 444 (void) mdb_tgt_add_sysexit(t, SYS_forkall, hflag, pt_fork, NULL); 445 (void) mdb_tgt_add_sysexit(t, SYS_fork1, hflag, pt_fork, NULL); 446 (void) mdb_tgt_add_sysexit(t, SYS_vfork, hflag, pt_fork, NULL); 447 (void) mdb_tgt_add_sysexit(t, SYS_forksys, hflag, pt_fork, NULL); 448 (void) mdb_tgt_add_sysexit(t, SYS_exec, hflag, pt_exec, NULL); 449 (void) mdb_tgt_add_sysexit(t, SYS_execve, hflag, pt_exec, NULL); 450 451 /* 452 * Attempt to instantiate the librtld_db agent and set breakpoints 453 * to track rtld activity. We will legitimately fail to instantiate 454 * the rtld_db agent if the target is statically linked. 455 */ 456 if (pt->p_rtld == NULL && (pt->p_rtld = Prd_agent(P)) != NULL) { 457 rd_notify_t rdn; 458 rd_err_e err; 459 460 if ((err = rd_event_enable(pt->p_rtld, TRUE)) != RD_OK) { 461 warn("failed to enable rtld_db event tracing: %s\n", 462 rd_errstr(err)); 463 goto out; 464 } 465 466 if ((err = rd_event_addr(pt->p_rtld, RD_PREINIT, 467 &rdn)) == RD_OK && rdn.type == RD_NOTIFY_BPT) { 468 (void) mdb_tgt_add_vbrkpt(t, rdn.u.bptaddr, 469 hflag, pt_rtld_event, NULL); 470 } else { 471 warn("failed to install rtld_db preinit tracing: %s\n", 472 rd_errstr(err)); 473 } 474 475 if ((err = rd_event_addr(pt->p_rtld, RD_POSTINIT, 476 &rdn)) == RD_OK && rdn.type == RD_NOTIFY_BPT) { 477 (void) mdb_tgt_add_vbrkpt(t, rdn.u.bptaddr, 478 hflag, pt_rtld_event, NULL); 479 } else { 480 warn("failed to install rtld_db postinit tracing: %s\n", 481 rd_errstr(err)); 482 } 483 484 if ((err = rd_event_addr(pt->p_rtld, RD_DLACTIVITY, 485 &rdn)) == RD_OK && rdn.type == RD_NOTIFY_BPT) { 486 (void) mdb_tgt_add_vbrkpt(t, rdn.u.bptaddr, 487 hflag, pt_rtld_event, NULL); 488 } else { 489 warn("failed to install rtld_db activity tracing: %s\n", 490 rd_errstr(err)); 491 } 492 } 493 out: 494 Pupdate_maps(P); 495 Psync(P); 496 497 /* 498 * If librtld_db failed to initialize due to an error or because we are 499 * debugging a statically linked executable, allow unscoped references. 500 */ 501 if (pt->p_rtld == NULL) 502 pt->p_rtld_finished = TRUE; 503 504 (void) mdb_tgt_sespec_activate_all(t); 505 } 506 507 /*ARGSUSED*/ 508 static int 509 pt_vespec_delete(mdb_tgt_t *t, void *private, int id, void *data) 510 { 511 if (id < 0) { 512 ASSERT(data == NULL); /* we don't use any ve_data */ 513 (void) mdb_tgt_vespec_delete(t, id); 514 } 515 return (0); 516 } 517 518 static void 519 pt_pre_detach(mdb_tgt_t *t, int clear_matched) 520 { 521 const lwpstatus_t *psp = &Pstatus(t->t_pshandle)->pr_lwp; 522 pt_data_t *pt = t->t_data; 523 long cmd = 0; 524 525 /* 526 * If we are about to release the process and it is stopped on a traced 527 * SIGINT, breakpoint fault, single-step fault, or watchpoint, make 528 * sure to clear this event prior to releasing the process so that it 529 * does not subsequently reissue the fault and die from SIGTRAP. 530 */ 531 if (psp->pr_flags & PR_ISTOP) { 532 if (psp->pr_why == PR_FAULTED && (psp->pr_what == FLTBPT || 533 psp->pr_what == FLTTRACE || psp->pr_what == FLTWATCH)) 534 cmd = PCCFAULT; 535 else if (psp->pr_why == PR_SIGNALLED && psp->pr_what == SIGINT) 536 cmd = PCCSIG; 537 538 if (cmd != 0) 539 (void) write(Pctlfd(t->t_pshandle), &cmd, sizeof (cmd)); 540 } 541 542 if (Pstate(t->t_pshandle) == PS_UNDEAD) 543 (void) waitpid(Pstatus(t->t_pshandle)->pr_pid, NULL, WNOHANG); 544 545 (void) mdb_tgt_vespec_iter(t, pt_vespec_delete, NULL); 546 mdb_tgt_sespec_idle_all(t, EMDB_NOPROC, clear_matched); 547 548 if (pt->p_fio != pt->p_aout_fio) { 549 pt_close_aout(t); 550 (void) pt_open_aout(t, pt->p_aout_fio); 551 } 552 553 PTL_DTOR(t); 554 pt->p_tdb_ops = NULL; 555 pt->p_ptl_ops = &proc_lwp_ops; 556 pt->p_ptl_hdl = NULL; 557 558 pt->p_rtld = NULL; 559 pt->p_signal = 0; 560 pt->p_rtld_finished = FALSE; 561 pt->p_rdstate = PT_RD_NONE; 562 } 563 564 static void 565 pt_release_parents(mdb_tgt_t *t) 566 { 567 struct ps_prochandle *P = t->t_pshandle; 568 pt_data_t *pt = t->t_data; 569 570 mdb_sespec_t *sep; 571 pt_vforkp_t *vfp; 572 573 while ((vfp = mdb_list_next(&pt->p_vforkp)) != NULL) { 574 mdb_dprintf(MDB_DBG_TGT, "releasing vfork parent %d\n", 575 (int)Pstatus(vfp->p_pshandle)->pr_pid); 576 577 /* 578 * To release vfork parents, we must also wipe out any armed 579 * events in the parent by switching t_pshandle and calling 580 * se_disarm(). Do not change states or lose the matched list. 581 */ 582 t->t_pshandle = vfp->p_pshandle; 583 584 for (sep = mdb_list_next(&t->t_active); sep != NULL; 585 sep = mdb_list_next(sep)) { 586 if (sep->se_state == MDB_TGT_SPEC_ARMED) 587 (void) sep->se_ops->se_disarm(t, sep); 588 } 589 590 t->t_pshandle = P; 591 592 Prelease(vfp->p_pshandle, PRELEASE_CLEAR); 593 mdb_list_delete(&pt->p_vforkp, vfp); 594 mdb_free(vfp, sizeof (pt_vforkp_t)); 595 } 596 } 597 598 /*ARGSUSED*/ 599 static void 600 pt_fork(mdb_tgt_t *t, int vid, void *private) 601 { 602 struct ps_prochandle *P = t->t_pshandle; 603 const lwpstatus_t *psp = &Pstatus(P)->pr_lwp; 604 pt_data_t *pt = t->t_data; 605 mdb_sespec_t *sep; 606 607 int follow_parent = mdb.m_forkmode != MDB_FM_CHILD; 608 int is_vfork = (psp->pr_what == SYS_vfork || 609 (psp->pr_what == SYS_forksys && psp->pr_sysarg[0] == 2)); 610 611 struct ps_prochandle *C; 612 const lwpstatus_t *csp; 613 char sysname[32]; 614 int gcode; 615 char c; 616 617 mdb_dprintf(MDB_DBG_TGT, "parent %s: errno=%d rv1=%ld rv2=%ld\n", 618 proc_sysname(psp->pr_what, sysname, sizeof (sysname)), 619 psp->pr_errno, psp->pr_rval1, psp->pr_rval2); 620 621 if (psp->pr_errno != 0) { 622 (void) mdb_tgt_continue(t, NULL); 623 return; /* fork failed */ 624 } 625 626 /* 627 * If forkmode is ASK and stdout is a terminal, then ask the user to 628 * explicitly set the fork behavior for this particular fork. 629 */ 630 if (mdb.m_forkmode == MDB_FM_ASK && mdb.m_term != NULL) { 631 mdb_iob_printf(mdb.m_err, "%s: %s detected: follow (p)arent " 632 "or (c)hild? ", mdb.m_pname, sysname); 633 mdb_iob_flush(mdb.m_err); 634 635 while (IOP_READ(mdb.m_term, &c, sizeof (c)) == sizeof (c)) { 636 if (c == 'P' || c == 'p') { 637 mdb_iob_printf(mdb.m_err, "%c\n", c); 638 follow_parent = TRUE; 639 break; 640 } else if (c == 'C' || c == 'c') { 641 mdb_iob_printf(mdb.m_err, "%c\n", c); 642 follow_parent = FALSE; 643 break; 644 } 645 } 646 } 647 648 /* 649 * The parent is now stopped on exit from its fork call. We must now 650 * grab the child on its return from fork in order to manipulate it. 651 */ 652 if ((C = Pgrab(psp->pr_rval1, PGRAB_RETAIN, &gcode)) == NULL) { 653 warn("failed to grab forked child process %ld: %s\n", 654 psp->pr_rval1, Pgrab_error(gcode)); 655 return; /* just stop if we failed to grab the child */ 656 } 657 658 /* 659 * We may have grabbed the child and stopped it prematurely before it 660 * stopped on exit from fork. If so, wait up to 1 sec for it to settle. 661 */ 662 if (Pstatus(C)->pr_lwp.pr_why != PR_SYSEXIT) 663 (void) Pwait(C, MILLISEC); 664 665 csp = &Pstatus(C)->pr_lwp; 666 667 if (csp->pr_why != PR_SYSEXIT || 668 (csp->pr_what != SYS_forkall && 669 csp->pr_what != SYS_fork1 && 670 csp->pr_what != SYS_vfork && 671 csp->pr_what != SYS_forksys)) { 672 warn("forked child process %ld did not stop on exit from " 673 "fork as expected\n", psp->pr_rval1); 674 } 675 676 warn("target forked child process %ld (debugger following %s)\n", 677 psp->pr_rval1, follow_parent ? "parent" : "child"); 678 679 (void) Punsetflags(C, PR_ASYNC); /* require synchronous mode */ 680 (void) Psetflags(C, PR_BPTADJ); /* always adjust eip on x86 */ 681 (void) Prd_agent(C); /* initialize librtld_db */ 682 683 /* 684 * At the time pt_fork() is called, the target event engine has already 685 * disarmed the specifiers on the active list, clearing out events in 686 * the parent process. However, this means that events that change 687 * the address space (e.g. breakpoints) have not been effectively 688 * disarmed in the child since its address space reflects the state of 689 * the process at the time of fork when events were armed. We must 690 * therefore handle this as a special case and re-invoke the disarm 691 * callback of each active specifier to clean out the child process. 692 */ 693 if (!is_vfork) { 694 for (t->t_pshandle = C, sep = mdb_list_next(&t->t_active); 695 sep != NULL; sep = mdb_list_next(sep)) { 696 if (sep->se_state == MDB_TGT_SPEC_ACTIVE) 697 (void) sep->se_ops->se_disarm(t, sep); 698 } 699 700 t->t_pshandle = P; /* restore pshandle to parent */ 701 } 702 703 /* 704 * If we're following the parent process, we need to temporarily change 705 * t_pshandle to refer to the child handle C so that we can clear out 706 * all the events in the child prior to releasing it below. If we are 707 * tracing a vfork, we also need to explicitly wait for the child to 708 * exec, exit, or die before we can reset and continue the parent. We 709 * avoid having to deal with the vfork child forking again by clearing 710 * PR_FORK and setting PR_RLC; if it does fork it will effectively be 711 * released from our control and we will continue following the parent. 712 */ 713 if (follow_parent) { 714 if (is_vfork) { 715 mdb_tgt_status_t status; 716 717 ASSERT(psp->pr_flags & PR_VFORKP); 718 mdb_tgt_sespec_idle_all(t, EBUSY, FALSE); 719 t->t_pshandle = C; 720 721 (void) Psysexit(C, SYS_exec, TRUE); 722 (void) Psysexit(C, SYS_execve, TRUE); 723 724 (void) Punsetflags(C, PR_FORK | PR_KLC); 725 (void) Psetflags(C, PR_RLC); 726 727 do { 728 if (pt_setrun(t, &status, 0) == -1 || 729 status.st_state == MDB_TGT_UNDEAD || 730 status.st_state == MDB_TGT_LOST) 731 break; /* failure or process died */ 732 733 } while (csp->pr_why != PR_SYSEXIT || 734 csp->pr_errno != 0 || (csp->pr_what != SYS_exec && 735 csp->pr_what != SYS_execve)); 736 } else 737 t->t_pshandle = C; 738 } 739 740 /* 741 * If we are following the child, destroy any active libthread_db 742 * handle before we release the parent process. 743 */ 744 if (!follow_parent) { 745 PTL_DTOR(t); 746 pt->p_tdb_ops = NULL; 747 pt->p_ptl_ops = &proc_lwp_ops; 748 pt->p_ptl_hdl = NULL; 749 } 750 751 /* 752 * Idle all events to make sure the address space and tracing flags are 753 * restored, and then release the process we are not tracing. If we 754 * are following the child of a vfork, we push the parent's pshandle 755 * on to a list of vfork parents to be released when we exec or exit. 756 */ 757 if (is_vfork && !follow_parent) { 758 pt_vforkp_t *vfp = mdb_alloc(sizeof (pt_vforkp_t), UM_SLEEP); 759 760 ASSERT(psp->pr_flags & PR_VFORKP); 761 vfp->p_pshandle = P; 762 mdb_list_append(&pt->p_vforkp, vfp); 763 mdb_tgt_sespec_idle_all(t, EBUSY, FALSE); 764 765 } else { 766 mdb_tgt_sespec_idle_all(t, EBUSY, FALSE); 767 Prelease(t->t_pshandle, PRELEASE_CLEAR); 768 if (!follow_parent) 769 pt_release_parents(t); 770 } 771 772 /* 773 * Now that all the hard stuff is done, switch t_pshandle back to the 774 * process we are following and reset our events to the ACTIVE state. 775 * If we are following the child, reset the libthread_db handle as well 776 * as the rtld agent. 777 */ 778 if (follow_parent) 779 t->t_pshandle = P; 780 else { 781 t->t_pshandle = C; 782 pt->p_rtld = Prd_agent(C); 783 (void) Pobject_iter(t->t_pshandle, (proc_map_f *)thr_check, t); 784 } 785 786 (void) mdb_tgt_sespec_activate_all(t); 787 (void) mdb_tgt_continue(t, NULL); 788 } 789 790 /*ARGSUSED*/ 791 static void 792 pt_exec(mdb_tgt_t *t, int vid, void *private) 793 { 794 struct ps_prochandle *P = t->t_pshandle; 795 const pstatus_t *psp = Pstatus(P); 796 pt_data_t *pt = t->t_data; 797 int follow_exec = mdb.m_execmode == MDB_EM_FOLLOW; 798 pid_t pid = psp->pr_pid; 799 800 char execname[MAXPATHLEN]; 801 mdb_sespec_t *sep, *nsep; 802 mdb_io_t *io; 803 char c; 804 805 mdb_dprintf(MDB_DBG_TGT, "exit from %s: errno=%d\n", proc_sysname( 806 psp->pr_lwp.pr_what, execname, sizeof (execname)), 807 psp->pr_lwp.pr_errno); 808 809 if (psp->pr_lwp.pr_errno != 0) { 810 (void) mdb_tgt_continue(t, NULL); 811 return; /* exec failed */ 812 } 813 814 /* 815 * If execmode is ASK and stdout is a terminal, then ask the user to 816 * explicitly set the exec behavior for this particular exec. If 817 * Pstate() still shows PS_LOST, we are being called from pt_setrun() 818 * directly and therefore we must resume the terminal since it is still 819 * in the suspended state as far as tgt_continue() is concerned. 820 */ 821 if (mdb.m_execmode == MDB_EM_ASK && mdb.m_term != NULL) { 822 if (Pstate(P) == PS_LOST) 823 IOP_RESUME(mdb.m_term); 824 825 mdb_iob_printf(mdb.m_err, "%s: %s detected: (f)ollow new " 826 "program or (s)top? ", mdb.m_pname, execname); 827 mdb_iob_flush(mdb.m_err); 828 829 while (IOP_READ(mdb.m_term, &c, sizeof (c)) == sizeof (c)) { 830 if (c == 'F' || c == 'f') { 831 mdb_iob_printf(mdb.m_err, "%c\n", c); 832 follow_exec = TRUE; 833 break; 834 } else if (c == 'S' || c == 's') { 835 mdb_iob_printf(mdb.m_err, "%c\n", c); 836 follow_exec = FALSE; 837 break; 838 } 839 } 840 841 if (Pstate(P) == PS_LOST) 842 IOP_SUSPEND(mdb.m_term); 843 } 844 845 pt_release_parents(t); /* release any waiting vfork parents */ 846 pt_pre_detach(t, FALSE); /* remove our breakpoints and idle events */ 847 Preset_maps(P); /* libproc must delete mappings and symtabs */ 848 pt_close_aout(t); /* free pt symbol tables and GElf file data */ 849 850 /* 851 * If we lost control of the process across the exec and are not able 852 * to reopen it, we have no choice but to clear the matched event list 853 * and wait for the user to quit or otherwise release the process. 854 */ 855 if (Pstate(P) == PS_LOST && Preopen(P) == -1) { 856 int error = errno; 857 858 warn("lost control of PID %d due to exec of %s executable\n", 859 (int)pid, error == EOVERFLOW ? "64-bit" : "set-id"); 860 861 for (sep = t->t_matched; sep != T_SE_END; sep = nsep) { 862 nsep = sep->se_matched; 863 sep->se_matched = NULL; 864 mdb_tgt_sespec_rele(t, sep); 865 } 866 867 if (error != EOVERFLOW) 868 return; /* just stop if we exec'd a set-id executable */ 869 } 870 871 if (Pstate(P) != PS_LOST) { 872 if (Pexecname(P, execname, sizeof (execname)) == NULL) { 873 (void) mdb_iob_snprintf(execname, sizeof (execname), 874 "/proc/%d/object/a.out", (int)pid); 875 } 876 877 if (follow_exec == FALSE || psp->pr_dmodel == PR_MODEL_NATIVE) 878 warn("target performed exec of %s\n", execname); 879 880 io = mdb_fdio_create_path(NULL, execname, pt->p_oflags, 0); 881 if (io == NULL) { 882 warn("failed to open %s", execname); 883 warn("a.out symbol tables will not be available\n"); 884 } else if (pt_open_aout(t, io) == NULL) { 885 (void) mdb_dis_select(pt_disasm(NULL)); 886 mdb_io_destroy(io); 887 } else 888 (void) mdb_dis_select(pt_disasm(&pt->p_file->gf_ehdr)); 889 } 890 891 /* 892 * We reset our libthread_db state here, but deliberately do NOT call 893 * PTL_DTOR because we do not want to call libthread_db's td_ta_delete. 894 * This interface is hopelessly broken in that it writes to the process 895 * address space (which we do not want it to do after an exec) and it 896 * doesn't bother deallocating any of its storage anyway. 897 */ 898 pt->p_tdb_ops = NULL; 899 pt->p_ptl_ops = &proc_lwp_ops; 900 pt->p_ptl_hdl = NULL; 901 902 if (follow_exec && psp->pr_dmodel != PR_MODEL_NATIVE) { 903 const char *argv[3]; 904 char *state, *env; 905 char pidarg[16]; 906 size_t envlen; 907 908 if (realpath(getexecname(), execname) == NULL) { 909 warn("cannot follow PID %d -- failed to resolve " 910 "debugger pathname for re-exec", (int)pid); 911 return; 912 } 913 914 warn("restarting debugger to follow PID %d ...\n", (int)pid); 915 mdb_dprintf(MDB_DBG_TGT, "re-exec'ing %s\n", execname); 916 917 (void) mdb_snprintf(pidarg, sizeof (pidarg), "-p%d", (int)pid); 918 919 state = mdb_get_config(); 920 envlen = strlen(MDB_CONFIG_ENV_VAR) + 1 + strlen(state) + 1; 921 env = mdb_alloc(envlen, UM_SLEEP); 922 snprintf(env, envlen, "%s=%s", MDB_CONFIG_ENV_VAR, state); 923 924 (void) putenv(env); 925 926 argv[0] = mdb.m_pname; 927 argv[1] = pidarg; 928 argv[2] = NULL; 929 930 if (mdb.m_term != NULL) 931 IOP_SUSPEND(mdb.m_term); 932 933 Prelease(P, PRELEASE_CLEAR | PRELEASE_HANG); 934 (void) execv(execname, (char *const *)argv); 935 warn("failed to re-exec debugger"); 936 937 if (mdb.m_term != NULL) 938 IOP_RESUME(mdb.m_term); 939 940 t->t_pshandle = pt->p_idlehandle; 941 return; 942 } 943 944 pt_post_attach(t); /* install tracing flags and activate events */ 945 pt_activate_common(t); /* initialize librtld_db and libthread_db */ 946 947 if (psp->pr_dmodel != PR_MODEL_NATIVE && mdb.m_term != NULL) { 948 warn("loadable dcmds will not operate on non-native %d-bit " 949 "data model\n", psp->pr_dmodel == PR_MODEL_ILP32 ? 32 : 64); 950 warn("use ::release -a and then run mdb -p %d to restart " 951 "debugger\n", (int)pid); 952 } 953 954 if (follow_exec) 955 (void) mdb_tgt_continue(t, NULL); 956 } 957 958 static int 959 pt_setflags(mdb_tgt_t *t, int flags) 960 { 961 pt_data_t *pt = t->t_data; 962 963 if ((flags ^ t->t_flags) & MDB_TGT_F_RDWR) { 964 int mode = (flags & MDB_TGT_F_RDWR) ? O_RDWR : O_RDONLY; 965 mdb_io_t *io; 966 967 if (pt->p_fio == NULL) 968 return (set_errno(EMDB_NOEXEC)); 969 970 io = mdb_fdio_create_path(NULL, IOP_NAME(pt->p_fio), mode, 0); 971 972 if (io == NULL) 973 return (-1); /* errno is set for us */ 974 975 t->t_flags = (t->t_flags & ~MDB_TGT_F_RDWR) | 976 (flags & MDB_TGT_F_RDWR); 977 978 pt->p_fio = mdb_io_hold(io); 979 mdb_io_rele(pt->p_file->gf_io); 980 pt->p_file->gf_io = pt->p_fio; 981 } 982 983 if (flags & MDB_TGT_F_FORCE) { 984 t->t_flags |= MDB_TGT_F_FORCE; 985 pt->p_gflags |= PGRAB_FORCE; 986 } 987 988 return (0); 989 } 990 991 /*ARGSUSED*/ 992 static int 993 pt_frame(void *arglim, uintptr_t pc, uint_t argc, const long *argv, 994 const mdb_tgt_gregset_t *gregs) 995 { 996 argc = MIN(argc, (uint_t)(uintptr_t)arglim); 997 mdb_printf("%a(", pc); 998 999 if (argc != 0) { 1000 mdb_printf("%lr", *argv++); 1001 for (argc--; argc != 0; argc--) 1002 mdb_printf(", %lr", *argv++); 1003 } 1004 1005 mdb_printf(")\n"); 1006 return (0); 1007 } 1008 1009 static int 1010 pt_framev(void *arglim, uintptr_t pc, uint_t argc, const long *argv, 1011 const mdb_tgt_gregset_t *gregs) 1012 { 1013 argc = MIN(argc, (uint_t)(uintptr_t)arglim); 1014 #if defined(__i386) || defined(__amd64) 1015 mdb_printf("%0?lr %a(", gregs->gregs[R_FP], pc); 1016 #else 1017 mdb_printf("%0?lr %a(", gregs->gregs[R_SP], pc); 1018 #endif 1019 if (argc != 0) { 1020 mdb_printf("%lr", *argv++); 1021 for (argc--; argc != 0; argc--) 1022 mdb_printf(", %lr", *argv++); 1023 } 1024 1025 mdb_printf(")\n"); 1026 return (0); 1027 } 1028 1029 static int 1030 pt_framer(void *arglim, uintptr_t pc, uint_t argc, const long *argv, 1031 const mdb_tgt_gregset_t *gregs) 1032 { 1033 if (pt_frameregs(arglim, pc, argc, argv, gregs, pc == PC_FAKE) == -1) { 1034 /* 1035 * Use verbose format if register format is not supported. 1036 */ 1037 return (pt_framev(arglim, pc, argc, argv, gregs)); 1038 } 1039 1040 return (0); 1041 } 1042 1043 /*ARGSUSED*/ 1044 static int 1045 pt_stack_common(uintptr_t addr, uint_t flags, int argc, 1046 const mdb_arg_t *argv, mdb_tgt_stack_f *func, prgreg_t saved_pc) 1047 { 1048 void *arg = (void *)(uintptr_t)mdb.m_nargs; 1049 mdb_tgt_t *t = mdb.m_target; 1050 mdb_tgt_gregset_t gregs; 1051 1052 if (argc != 0) { 1053 if (argv->a_type == MDB_TYPE_CHAR || argc > 1) 1054 return (DCMD_USAGE); 1055 1056 if (argv->a_type == MDB_TYPE_STRING) 1057 arg = (void *)(uintptr_t)mdb_strtoull(argv->a_un.a_str); 1058 else 1059 arg = (void *)(uintptr_t)argv->a_un.a_val; 1060 } 1061 1062 if (t->t_pshandle == NULL || Pstate(t->t_pshandle) == PS_IDLE) { 1063 mdb_warn("no process active\n"); 1064 return (DCMD_ERR); 1065 } 1066 1067 /* 1068 * In the universe of sparcv7, sparcv9, ia32, and amd64 this code can be 1069 * common: <sys/procfs_isa.h> conveniently #defines R_FP to be the 1070 * appropriate register we need to set in order to perform a stack 1071 * traceback from a given frame address. 1072 */ 1073 if (flags & DCMD_ADDRSPEC) { 1074 bzero(&gregs, sizeof (gregs)); 1075 gregs.gregs[R_FP] = addr; 1076 #ifdef __sparc 1077 gregs.gregs[R_I7] = saved_pc; 1078 #endif /* __sparc */ 1079 } else if (PTL_GETREGS(t, PTL_TID(t), gregs.gregs) != 0) { 1080 mdb_warn("failed to get current register set"); 1081 return (DCMD_ERR); 1082 } 1083 1084 (void) mdb_tgt_stack_iter(t, &gregs, func, arg); 1085 return (DCMD_OK); 1086 } 1087 1088 static int 1089 pt_stack(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1090 { 1091 return (pt_stack_common(addr, flags, argc, argv, pt_frame, 0)); 1092 } 1093 1094 static int 1095 pt_stackv(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1096 { 1097 return (pt_stack_common(addr, flags, argc, argv, pt_framev, 0)); 1098 } 1099 1100 static int 1101 pt_stackr(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1102 { 1103 /* 1104 * Force printing of first register window, by setting the 1105 * saved pc (%i7) to PC_FAKE. 1106 */ 1107 return (pt_stack_common(addr, flags, argc, argv, pt_framer, PC_FAKE)); 1108 } 1109 1110 /*ARGSUSED*/ 1111 static int 1112 pt_ignored(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1113 { 1114 struct ps_prochandle *P = mdb.m_target->t_pshandle; 1115 char buf[PRSIGBUFSZ]; 1116 1117 if ((flags & DCMD_ADDRSPEC) || argc != 0) 1118 return (DCMD_USAGE); 1119 1120 if (P == NULL) { 1121 mdb_warn("no process is currently active\n"); 1122 return (DCMD_ERR); 1123 } 1124 1125 mdb_printf("%s\n", proc_sigset2str(&Pstatus(P)->pr_sigtrace, " ", 1126 FALSE, buf, sizeof (buf))); 1127 1128 return (DCMD_OK); 1129 } 1130 1131 /*ARGSUSED*/ 1132 static int 1133 pt_lwpid(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1134 { 1135 struct ps_prochandle *P = mdb.m_target->t_pshandle; 1136 1137 if ((flags & DCMD_ADDRSPEC) || argc != 0) 1138 return (DCMD_USAGE); 1139 1140 if (P == NULL) { 1141 mdb_warn("no process is currently active\n"); 1142 return (DCMD_ERR); 1143 } 1144 1145 mdb_printf("%d\n", Pstatus(P)->pr_lwp.pr_lwpid); 1146 return (DCMD_OK); 1147 } 1148 1149 static int 1150 pt_print_lwpid(int *n, const lwpstatus_t *psp) 1151 { 1152 struct ps_prochandle *P = mdb.m_target->t_pshandle; 1153 int nlwp = Pstatus(P)->pr_nlwp; 1154 1155 if (*n == nlwp - 2) 1156 mdb_printf("%d and ", (int)psp->pr_lwpid); 1157 else if (*n == nlwp - 1) 1158 mdb_printf("%d are", (int)psp->pr_lwpid); 1159 else 1160 mdb_printf("%d, ", (int)psp->pr_lwpid); 1161 1162 (*n)++; 1163 return (0); 1164 } 1165 1166 /*ARGSUSED*/ 1167 static int 1168 pt_lwpids(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1169 { 1170 struct ps_prochandle *P = mdb.m_target->t_pshandle; 1171 int n = 0; 1172 1173 if (P == NULL) { 1174 mdb_warn("no process is currently active\n"); 1175 return (DCMD_ERR); 1176 } 1177 1178 switch (Pstatus(P)->pr_nlwp) { 1179 case 0: 1180 mdb_printf("no lwps are"); 1181 break; 1182 case 1: 1183 mdb_printf("lwpid %d is the only lwp", 1184 Pstatus(P)->pr_lwp.pr_lwpid); 1185 break; 1186 default: 1187 mdb_printf("lwpids "); 1188 (void) Plwp_iter(P, (proc_lwp_f *)pt_print_lwpid, &n); 1189 } 1190 1191 switch (Pstate(P)) { 1192 case PS_DEAD: 1193 mdb_printf(" in core of process %d.\n", Pstatus(P)->pr_pid); 1194 break; 1195 case PS_IDLE: 1196 mdb_printf(" in idle target.\n"); 1197 break; 1198 default: 1199 mdb_printf(" in process %d.\n", (int)Pstatus(P)->pr_pid); 1200 break; 1201 } 1202 1203 return (DCMD_OK); 1204 } 1205 1206 /*ARGSUSED*/ 1207 static int 1208 pt_ignore(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1209 { 1210 pt_data_t *pt = mdb.m_target->t_data; 1211 1212 if (!(flags & DCMD_ADDRSPEC) || argc != 0) 1213 return (DCMD_USAGE); 1214 1215 if (addr < 1 || addr > pt->p_maxsig) { 1216 mdb_warn("invalid signal number -- 0t%lu\n", addr); 1217 return (DCMD_ERR); 1218 } 1219 1220 (void) mdb_tgt_vespec_iter(mdb.m_target, pt_ignore_sig, (void *)addr); 1221 return (DCMD_OK); 1222 } 1223 1224 /*ARGSUSED*/ 1225 static int 1226 pt_attach(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1227 { 1228 mdb_tgt_t *t = mdb.m_target; 1229 pt_data_t *pt = t->t_data; 1230 int state, perr; 1231 1232 if (!(flags & DCMD_ADDRSPEC) && argc == 0) 1233 return (DCMD_USAGE); 1234 1235 if (((flags & DCMD_ADDRSPEC) && argc != 0) || argc > 1 || 1236 (argc != 0 && argv->a_type != MDB_TYPE_STRING)) 1237 return (DCMD_USAGE); 1238 1239 if (t->t_pshandle != NULL && Pstate(t->t_pshandle) != PS_IDLE) { 1240 mdb_warn("debugger is already attached to a %s\n", 1241 (Pstate(t->t_pshandle) == PS_DEAD) ? "core" : "process"); 1242 return (DCMD_ERR); 1243 } 1244 1245 if (pt->p_fio == NULL) { 1246 mdb_warn("attach requires executable to be specified on " 1247 "command-line (or use -p)\n"); 1248 return (DCMD_ERR); 1249 } 1250 1251 if (flags & DCMD_ADDRSPEC) 1252 t->t_pshandle = Pgrab((pid_t)addr, pt->p_gflags, &perr); 1253 else 1254 t->t_pshandle = proc_arg_grab(argv->a_un.a_str, 1255 PR_ARG_ANY, pt->p_gflags, &perr); 1256 1257 if (t->t_pshandle == NULL) { 1258 t->t_pshandle = pt->p_idlehandle; 1259 mdb_warn("cannot attach: %s\n", Pgrab_error(perr)); 1260 return (DCMD_ERR); 1261 } 1262 1263 state = Pstate(t->t_pshandle); 1264 if (state != PS_DEAD && state != PS_IDLE) { 1265 (void) Punsetflags(t->t_pshandle, PR_KLC); 1266 (void) Psetflags(t->t_pshandle, PR_RLC); 1267 pt_post_attach(t); 1268 pt_activate_common(t); 1269 } 1270 1271 (void) mdb_tgt_status(t, &t->t_status); 1272 mdb_module_load_all(0); 1273 return (DCMD_OK); 1274 } 1275 1276 static int 1277 pt_regstatus(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1278 { 1279 mdb_tgt_t *t = mdb.m_target; 1280 1281 if (t->t_pshandle != NULL) { 1282 const pstatus_t *psp = Pstatus(t->t_pshandle); 1283 int cursig = psp->pr_lwp.pr_cursig; 1284 char signame[SIG2STR_MAX]; 1285 int state = Pstate(t->t_pshandle); 1286 1287 if (state != PS_DEAD && state != PS_IDLE) 1288 mdb_printf("process id = %d\n", psp->pr_pid); 1289 else 1290 mdb_printf("no process\n"); 1291 1292 if (cursig != 0 && sig2str(cursig, signame) == 0) 1293 mdb_printf("SIG%s: %s\n", signame, strsignal(cursig)); 1294 } 1295 1296 return (pt_regs(addr, flags, argc, argv)); 1297 } 1298 1299 static int 1300 pt_findstack(uintptr_t tid, uint_t flags, int argc, const mdb_arg_t *argv) 1301 { 1302 mdb_tgt_t *t = mdb.m_target; 1303 mdb_tgt_gregset_t gregs; 1304 int showargs = 0; 1305 int count; 1306 uintptr_t pc, sp; 1307 1308 if (!(flags & DCMD_ADDRSPEC)) 1309 return (DCMD_USAGE); 1310 1311 count = mdb_getopts(argc, argv, 'v', MDB_OPT_SETBITS, TRUE, &showargs, 1312 NULL); 1313 argc -= count; 1314 argv += count; 1315 1316 if (argc > 1 || (argc == 1 && argv->a_type != MDB_TYPE_STRING)) 1317 return (DCMD_USAGE); 1318 1319 if (PTL_GETREGS(t, tid, gregs.gregs) != 0) { 1320 mdb_warn("failed to get register set for thread %p", tid); 1321 return (DCMD_ERR); 1322 } 1323 1324 pc = gregs.gregs[R_PC]; 1325 #if defined(__i386) || defined(__amd64) 1326 sp = gregs.gregs[R_FP]; 1327 #else 1328 sp = gregs.gregs[R_SP]; 1329 #endif 1330 mdb_printf("stack pointer for thread %p: %p\n", tid, sp); 1331 if (pc != 0) 1332 mdb_printf("[ %0?lr %a() ]\n", sp, pc); 1333 1334 (void) mdb_inc_indent(2); 1335 mdb_set_dot(sp); 1336 1337 if (argc == 1) 1338 (void) mdb_eval(argv->a_un.a_str); 1339 else if (showargs) 1340 (void) mdb_eval("<.$C"); 1341 else 1342 (void) mdb_eval("<.$C0"); 1343 1344 (void) mdb_dec_indent(2); 1345 return (DCMD_OK); 1346 } 1347 1348 /*ARGSUSED*/ 1349 static int 1350 pt_gcore(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1351 { 1352 mdb_tgt_t *t = mdb.m_target; 1353 char *prefix = "core"; 1354 char *content_str = NULL; 1355 core_content_t content = CC_CONTENT_DEFAULT; 1356 size_t size; 1357 char *fname; 1358 pid_t pid; 1359 1360 if (flags & DCMD_ADDRSPEC) 1361 return (DCMD_USAGE); 1362 1363 if (mdb_getopts(argc, argv, 1364 'o', MDB_OPT_STR, &prefix, 1365 'c', MDB_OPT_STR, &content_str, NULL) != argc) 1366 return (DCMD_USAGE); 1367 1368 if (content_str != NULL && 1369 (proc_str2content(content_str, &content) != 0 || 1370 content == CC_CONTENT_INVALID)) { 1371 mdb_warn("invalid content string '%s'\n", content_str); 1372 return (DCMD_ERR); 1373 } 1374 1375 if (t->t_pshandle == NULL) { 1376 mdb_warn("no process active\n"); 1377 return (DCMD_ERR); 1378 } 1379 1380 pid = Pstatus(t->t_pshandle)->pr_pid; 1381 size = 1 + mdb_snprintf(NULL, 0, "%s.%d", prefix, (int)pid); 1382 fname = mdb_alloc(size, UM_SLEEP | UM_GC); 1383 (void) mdb_snprintf(fname, size, "%s.%d", prefix, (int)pid); 1384 1385 if (Pgcore(t->t_pshandle, fname, content) != 0) { 1386 mdb_warn("couldn't dump core"); 1387 return (DCMD_ERR); 1388 } 1389 1390 mdb_warn("%s dumped\n", fname); 1391 1392 return (DCMD_OK); 1393 } 1394 1395 /*ARGSUSED*/ 1396 static int 1397 pt_kill(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1398 { 1399 mdb_tgt_t *t = mdb.m_target; 1400 pt_data_t *pt = t->t_data; 1401 int state; 1402 1403 if ((flags & DCMD_ADDRSPEC) || argc != 0) 1404 return (DCMD_USAGE); 1405 1406 if (t->t_pshandle != NULL && 1407 (state = Pstate(t->t_pshandle)) != PS_DEAD && state != PS_IDLE) { 1408 mdb_warn("victim process PID %d forcibly terminated\n", 1409 (int)Pstatus(t->t_pshandle)->pr_pid); 1410 pt_pre_detach(t, TRUE); 1411 pt_release_parents(t); 1412 Prelease(t->t_pshandle, PRELEASE_KILL); 1413 t->t_pshandle = pt->p_idlehandle; 1414 (void) mdb_tgt_status(t, &t->t_status); 1415 mdb.m_flags &= ~(MDB_FL_VCREATE | MDB_FL_JOBCTL); 1416 } else 1417 mdb_warn("no victim process is currently under control\n"); 1418 1419 return (DCMD_OK); 1420 } 1421 1422 /*ARGSUSED*/ 1423 static int 1424 pt_detach(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1425 { 1426 mdb_tgt_t *t = mdb.m_target; 1427 pt_data_t *pt = t->t_data; 1428 int rflags = pt->p_rflags; 1429 1430 if (argc != 0 && argv->a_type == MDB_TYPE_STRING && 1431 strcmp(argv->a_un.a_str, "-a") == 0) { 1432 rflags = PRELEASE_HANG | PRELEASE_CLEAR; 1433 argv++; 1434 argc--; 1435 } 1436 1437 if ((flags & DCMD_ADDRSPEC) || argc != 0) 1438 return (DCMD_USAGE); 1439 1440 if (t->t_pshandle == NULL || Pstate(t->t_pshandle) == PS_IDLE) { 1441 mdb_warn("debugger is not currently attached to a process " 1442 "or core file\n"); 1443 return (DCMD_ERR); 1444 } 1445 1446 pt_pre_detach(t, TRUE); 1447 pt_release_parents(t); 1448 Prelease(t->t_pshandle, rflags); 1449 t->t_pshandle = pt->p_idlehandle; 1450 (void) mdb_tgt_status(t, &t->t_status); 1451 mdb.m_flags &= ~(MDB_FL_VCREATE | MDB_FL_JOBCTL); 1452 1453 return (DCMD_OK); 1454 } 1455 1456 static uintmax_t 1457 reg_disc_get(const mdb_var_t *v) 1458 { 1459 mdb_tgt_t *t = MDB_NV_COOKIE(v); 1460 mdb_tgt_tid_t tid = PTL_TID(t); 1461 mdb_tgt_reg_t r = 0; 1462 1463 if (tid != (mdb_tgt_tid_t)-1L) 1464 (void) mdb_tgt_getareg(t, tid, mdb_nv_get_name(v), &r); 1465 1466 return (r); 1467 } 1468 1469 static void 1470 reg_disc_set(mdb_var_t *v, uintmax_t r) 1471 { 1472 mdb_tgt_t *t = MDB_NV_COOKIE(v); 1473 mdb_tgt_tid_t tid = PTL_TID(t); 1474 1475 if (tid != (mdb_tgt_tid_t)-1L && mdb_tgt_putareg(t, tid, 1476 mdb_nv_get_name(v), r) == -1) 1477 mdb_warn("failed to modify %%%s register", mdb_nv_get_name(v)); 1478 } 1479 1480 static void 1481 pt_print_reason(const lwpstatus_t *psp) 1482 { 1483 char name[SIG2STR_MAX + 4]; /* enough for SIG+name+\0, syscall or flt */ 1484 const char *desc; 1485 1486 switch (psp->pr_why) { 1487 case PR_REQUESTED: 1488 mdb_printf("stopped by debugger"); 1489 break; 1490 case PR_SIGNALLED: 1491 mdb_printf("stopped on %s (%s)", proc_signame(psp->pr_what, 1492 name, sizeof (name)), strsignal(psp->pr_what)); 1493 break; 1494 case PR_SYSENTRY: 1495 mdb_printf("stopped on entry to %s system call", 1496 proc_sysname(psp->pr_what, name, sizeof (name))); 1497 break; 1498 case PR_SYSEXIT: 1499 mdb_printf("stopped on exit from %s system call", 1500 proc_sysname(psp->pr_what, name, sizeof (name))); 1501 break; 1502 case PR_JOBCONTROL: 1503 mdb_printf("stopped by job control"); 1504 break; 1505 case PR_FAULTED: 1506 if (psp->pr_what == FLTBPT) { 1507 mdb_printf("stopped on a breakpoint"); 1508 } else if (psp->pr_what == FLTWATCH) { 1509 switch (psp->pr_info.si_code) { 1510 case TRAP_RWATCH: 1511 desc = "read"; 1512 break; 1513 case TRAP_WWATCH: 1514 desc = "write"; 1515 break; 1516 case TRAP_XWATCH: 1517 desc = "execute"; 1518 break; 1519 default: 1520 desc = "unknown"; 1521 } 1522 mdb_printf("stopped %s a watchpoint (%s access to %p)", 1523 psp->pr_info.si_trapafter ? "after" : "on", 1524 desc, psp->pr_info.si_addr); 1525 } else if (psp->pr_what == FLTTRACE) { 1526 mdb_printf("stopped after a single-step"); 1527 } else { 1528 mdb_printf("stopped on a %s fault", 1529 proc_fltname(psp->pr_what, name, sizeof (name))); 1530 } 1531 break; 1532 case PR_SUSPENDED: 1533 case PR_CHECKPOINT: 1534 mdb_printf("suspended by the kernel"); 1535 break; 1536 default: 1537 mdb_printf("stopped for unknown reason (%d/%d)", 1538 psp->pr_why, psp->pr_what); 1539 } 1540 } 1541 1542 /*ARGSUSED*/ 1543 static int 1544 pt_status_dcmd(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1545 { 1546 mdb_tgt_t *t = mdb.m_target; 1547 struct ps_prochandle *P = t->t_pshandle; 1548 pt_data_t *pt = t->t_data; 1549 1550 if (P != NULL) { 1551 const psinfo_t *pip = Ppsinfo(P); 1552 const pstatus_t *psp = Pstatus(P); 1553 int cursig = 0, bits = 0, coredump = 0; 1554 int state; 1555 GElf_Sym sym; 1556 uintptr_t panicstr; 1557 char panicbuf[128]; 1558 1559 char execname[MAXPATHLEN], buf[BUFSIZ]; 1560 char signame[SIG2STR_MAX + 4]; /* enough for SIG+name+\0 */ 1561 1562 mdb_tgt_spec_desc_t desc; 1563 mdb_sespec_t *sep; 1564 1565 struct utsname uts; 1566 prcred_t cred; 1567 psinfo_t pi; 1568 1569 (void) strcpy(uts.nodename, "unknown machine"); 1570 (void) Puname(P, &uts); 1571 1572 if (pip != NULL) { 1573 bcopy(pip, &pi, sizeof (psinfo_t)); 1574 proc_unctrl_psinfo(&pi); 1575 } else 1576 bzero(&pi, sizeof (psinfo_t)); 1577 1578 bits = pi.pr_dmodel == PR_MODEL_ILP32 ? 32 : 64; 1579 1580 state = Pstate(P); 1581 if (psp != NULL && state != PS_UNDEAD && state != PS_IDLE) 1582 cursig = psp->pr_lwp.pr_cursig; 1583 1584 if (state == PS_DEAD && pip != NULL) { 1585 mdb_printf("debugging core file of %s (%d-bit) " 1586 "from %s\n", pi.pr_fname, bits, uts.nodename); 1587 1588 } else if (state == PS_DEAD) { 1589 mdb_printf("debugging core file\n"); 1590 1591 } else if (state == PS_IDLE) { 1592 const GElf_Ehdr *ehp = &pt->p_file->gf_ehdr; 1593 1594 mdb_printf("debugging %s file (%d-bit)\n", 1595 ehp->e_type == ET_EXEC ? "executable" : "object", 1596 ehp->e_ident[EI_CLASS] == ELFCLASS32 ? 32 : 64); 1597 1598 } else if (state == PS_UNDEAD && pi.pr_pid == 0) { 1599 mdb_printf("debugging defunct process\n"); 1600 1601 } else { 1602 mdb_printf("debugging PID %d (%d-bit)\n", 1603 pi.pr_pid, bits); 1604 } 1605 1606 if (Pexecname(P, execname, sizeof (execname)) != NULL) 1607 mdb_printf("file: %s\n", execname); 1608 1609 if (pip != NULL && state == PS_DEAD) 1610 mdb_printf("initial argv: %s\n", pi.pr_psargs); 1611 1612 if (state != PS_UNDEAD && state != PS_IDLE) { 1613 mdb_printf("threading model: "); 1614 if (pt->p_ptl_ops == &proc_lwp_ops) 1615 mdb_printf("raw lwps\n"); 1616 else 1617 mdb_printf("native threads\n"); 1618 } 1619 1620 mdb_printf("status: "); 1621 switch (state) { 1622 case PS_RUN: 1623 ASSERT(!(psp->pr_flags & PR_STOPPED)); 1624 mdb_printf("process is running"); 1625 if (psp->pr_flags & PR_DSTOP) 1626 mdb_printf(", debugger stop directive pending"); 1627 mdb_printf("\n"); 1628 break; 1629 1630 case PS_STOP: 1631 ASSERT(psp->pr_flags & PR_STOPPED); 1632 pt_print_reason(&psp->pr_lwp); 1633 1634 if (psp->pr_flags & PR_DSTOP) 1635 mdb_printf(", debugger stop directive pending"); 1636 if (psp->pr_flags & PR_ASLEEP) 1637 mdb_printf(", sleeping in %s system call", 1638 proc_sysname(psp->pr_lwp.pr_syscall, 1639 signame, sizeof (signame))); 1640 1641 mdb_printf("\n"); 1642 1643 for (sep = t->t_matched; sep != T_SE_END; 1644 sep = sep->se_matched) { 1645 mdb_printf("event: %s\n", sep->se_ops->se_info( 1646 t, sep, mdb_list_next(&sep->se_velist), 1647 &desc, buf, sizeof (buf))); 1648 } 1649 break; 1650 1651 case PS_LOST: 1652 mdb_printf("debugger lost control of process\n"); 1653 break; 1654 1655 case PS_UNDEAD: 1656 coredump = WIFSIGNALED(pi.pr_wstat) && 1657 WCOREDUMP(pi.pr_wstat); 1658 /*FALLTHRU*/ 1659 1660 case PS_DEAD: 1661 if (cursig == 0 && WIFSIGNALED(pi.pr_wstat)) 1662 cursig = WTERMSIG(pi.pr_wstat); 1663 /* 1664 * We can only use pr_wstat == 0 as a test for gcore if 1665 * an NT_PRCRED note is present; these features were 1666 * added at the same time in Solaris 8. 1667 */ 1668 if (pi.pr_wstat == 0 && Pstate(P) == PS_DEAD && 1669 Pcred(P, &cred, 1) == 0) { 1670 mdb_printf("process core file generated " 1671 "with gcore(1)\n"); 1672 } else if (cursig != 0) { 1673 mdb_printf("process terminated by %s (%s)", 1674 proc_signame(cursig, signame, 1675 sizeof (signame)), strsignal(cursig)); 1676 if (coredump) 1677 mdb_printf(" - core file dumped"); 1678 mdb_printf("\n"); 1679 } else { 1680 mdb_printf("process terminated with exit " 1681 "status %d\n", WEXITSTATUS(pi.pr_wstat)); 1682 } 1683 1684 if (Plookup_by_name(t->t_pshandle, "libc.so", 1685 "panicstr", &sym) == 0 && 1686 Pread(t->t_pshandle, &panicstr, sizeof (panicstr), 1687 sym.st_value) == sizeof (panicstr) && 1688 Pread_string(t->t_pshandle, panicbuf, 1689 sizeof (panicbuf), panicstr) > 0) { 1690 mdb_printf("panic message: %s", 1691 panicbuf); 1692 } 1693 1694 1695 break; 1696 1697 case PS_IDLE: 1698 mdb_printf("idle\n"); 1699 break; 1700 1701 default: 1702 mdb_printf("unknown libproc Pstate: %d\n", Pstate(P)); 1703 } 1704 1705 } else if (pt->p_file != NULL) { 1706 const GElf_Ehdr *ehp = &pt->p_file->gf_ehdr; 1707 1708 mdb_printf("debugging %s file (%d-bit)\n", 1709 ehp->e_type == ET_EXEC ? "executable" : "object", 1710 ehp->e_ident[EI_CLASS] == ELFCLASS32 ? 32 : 64); 1711 mdb_printf("executable file: %s\n", IOP_NAME(pt->p_fio)); 1712 mdb_printf("status: idle\n"); 1713 } 1714 1715 return (DCMD_OK); 1716 } 1717 1718 static int 1719 pt_tls(uintptr_t tid, uint_t flags, int argc, const mdb_arg_t *argv) 1720 { 1721 const char *name; 1722 const char *object; 1723 GElf_Sym sym; 1724 mdb_syminfo_t si; 1725 mdb_tgt_t *t = mdb.m_target; 1726 1727 if (!(flags & DCMD_ADDRSPEC) || argc > 1) 1728 return (DCMD_USAGE); 1729 1730 if (argc == 0) { 1731 psaddr_t b; 1732 1733 if (tlsbase(t, tid, PR_LMID_EVERY, MDB_TGT_OBJ_EXEC, &b) != 0) { 1734 mdb_warn("failed to lookup tlsbase for %r", tid); 1735 return (DCMD_ERR); 1736 } 1737 1738 mdb_printf("%lr\n", b); 1739 mdb_set_dot(b); 1740 1741 return (DCMD_OK); 1742 } 1743 1744 name = argv[0].a_un.a_str; 1745 object = MDB_TGT_OBJ_EVERY; 1746 1747 if (pt_lookup_by_name_thr(t, object, name, &sym, &si, tid) != 0) { 1748 mdb_warn("failed to lookup %s", name); 1749 return (DCMD_ABORT); /* avoid repeated failure */ 1750 } 1751 1752 if (GELF_ST_TYPE(sym.st_info) != STT_TLS && DCMD_HDRSPEC(flags)) 1753 mdb_warn("%s does not refer to thread local storage\n", name); 1754 1755 mdb_printf("%llr\n", sym.st_value); 1756 mdb_set_dot(sym.st_value); 1757 1758 return (DCMD_OK); 1759 } 1760 1761 /*ARGSUSED*/ 1762 static int 1763 pt_tmodel(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1764 { 1765 mdb_tgt_t *t = mdb.m_target; 1766 pt_data_t *pt = t->t_data; 1767 const pt_ptl_ops_t *ptl_ops; 1768 1769 if (argc != 1 || argv->a_type != MDB_TYPE_STRING) 1770 return (DCMD_USAGE); 1771 1772 if (strcmp(argv->a_un.a_str, "thread") == 0) 1773 ptl_ops = &proc_tdb_ops; 1774 else if (strcmp(argv->a_un.a_str, "lwp") == 0) 1775 ptl_ops = &proc_lwp_ops; 1776 else 1777 return (DCMD_USAGE); 1778 1779 if (t->t_pshandle != NULL && pt->p_ptl_ops != ptl_ops) { 1780 PTL_DTOR(t); 1781 pt->p_tdb_ops = NULL; 1782 pt->p_ptl_ops = &proc_lwp_ops; 1783 pt->p_ptl_hdl = NULL; 1784 1785 if (ptl_ops == &proc_tdb_ops) { 1786 (void) Pobject_iter(t->t_pshandle, (proc_map_f *) 1787 thr_check, t); 1788 } 1789 } 1790 1791 (void) mdb_tgt_status(t, &t->t_status); 1792 return (DCMD_OK); 1793 } 1794 1795 static const char * 1796 env_match(const char *cmp, const char *nameval) 1797 { 1798 const char *loc; 1799 size_t cmplen = strlen(cmp); 1800 1801 loc = strchr(nameval, '='); 1802 if (loc != NULL && (loc - nameval) == cmplen && 1803 strncmp(nameval, cmp, cmplen) == 0) { 1804 return (loc + 1); 1805 } 1806 1807 return (NULL); 1808 } 1809 1810 /*ARGSUSED*/ 1811 static int 1812 print_env(void *data, struct ps_prochandle *P, uintptr_t addr, 1813 const char *nameval) 1814 { 1815 const char *value; 1816 1817 if (nameval == NULL) { 1818 mdb_printf("<0x%p>\n", addr); 1819 } else { 1820 if (data == NULL) 1821 mdb_printf("%s\n", nameval); 1822 else if ((value = env_match(data, nameval)) != NULL) 1823 mdb_printf("%s\n", value); 1824 } 1825 1826 return (0); 1827 } 1828 1829 /*ARGSUSED*/ 1830 static int 1831 pt_getenv(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1832 { 1833 mdb_tgt_t *t = mdb.m_target; 1834 pt_data_t *pt = t->t_data; 1835 int i; 1836 uint_t opt_t = 0; 1837 mdb_var_t *v; 1838 1839 i = mdb_getopts(argc, argv, 1840 't', MDB_OPT_SETBITS, TRUE, &opt_t, NULL); 1841 1842 argc -= i; 1843 argv += i; 1844 1845 if ((flags & DCMD_ADDRSPEC) || argc > 1) 1846 return (DCMD_USAGE); 1847 1848 if (argc == 1 && argv->a_type != MDB_TYPE_STRING) 1849 return (DCMD_USAGE); 1850 1851 if (opt_t && t->t_pshandle == NULL) { 1852 mdb_warn("no process active\n"); 1853 return (DCMD_ERR); 1854 } 1855 1856 if (opt_t && (Pstate(t->t_pshandle) == PS_IDLE || 1857 Pstate(t->t_pshandle) == PS_UNDEAD)) { 1858 mdb_warn("-t option requires target to be running\n"); 1859 return (DCMD_ERR); 1860 } 1861 1862 if (opt_t != 0) { 1863 if (Penv_iter(t->t_pshandle, print_env, 1864 argc == 0 ? NULL : (void *)argv->a_un.a_str) != 0) 1865 return (DCMD_ERR); 1866 } else if (argc == 1) { 1867 if ((v = mdb_nv_lookup(&pt->p_env, argv->a_un.a_str)) == NULL) 1868 return (DCMD_ERR); 1869 1870 ASSERT(strchr(mdb_nv_get_cookie(v), '=') != NULL); 1871 mdb_printf("%s\n", strchr(mdb_nv_get_cookie(v), '=') + 1); 1872 } else { 1873 1874 mdb_nv_rewind(&pt->p_env); 1875 while ((v = mdb_nv_advance(&pt->p_env)) != NULL) 1876 mdb_printf("%s\n", mdb_nv_get_cookie(v)); 1877 } 1878 1879 return (DCMD_OK); 1880 } 1881 1882 /* 1883 * Function to set a variable in the internal environment, which is used when 1884 * creating new processes. Note that it is possible that 'nameval' can refer to 1885 * read-only memory, if mdb calls putenv() on an existing value before calling 1886 * this function. While we should avoid this situation, this function is 1887 * designed to be robust in the face of such changes. 1888 */ 1889 static void 1890 pt_env_set(pt_data_t *pt, const char *nameval) 1891 { 1892 mdb_var_t *v; 1893 char *equals, *val; 1894 const char *name; 1895 size_t len; 1896 1897 if ((equals = strchr(nameval, '=')) != NULL) { 1898 val = strdup(nameval); 1899 equals = val + (equals - nameval); 1900 } else { 1901 /* 1902 * nameval doesn't contain an equals character. Convert this to 1903 * be 'nameval='. 1904 */ 1905 len = strlen(nameval); 1906 val = mdb_alloc(len + 2, UM_SLEEP); 1907 (void) mdb_snprintf(val, len + 2, "%s=", nameval); 1908 equals = val + len; 1909 } 1910 1911 /* temporary truncate the string for lookup/insert */ 1912 *equals = '\0'; 1913 v = mdb_nv_lookup(&pt->p_env, val); 1914 1915 if (v != NULL) { 1916 char *old = mdb_nv_get_cookie(v); 1917 mdb_free(old, strlen(old) + 1); 1918 name = mdb_nv_get_name(v); 1919 } else { 1920 /* 1921 * The environment is created using MDB_NV_EXTNAME, so we must 1922 * provide external storage for the variable names. 1923 */ 1924 name = strdup(val); 1925 } 1926 1927 *equals = '='; 1928 1929 (void) mdb_nv_insert(&pt->p_env, name, NULL, (uintptr_t)val, 1930 MDB_NV_EXTNAME); 1931 1932 if (equals) 1933 *equals = '='; 1934 } 1935 1936 /* 1937 * Clears the internal environment. 1938 */ 1939 static void 1940 pt_env_clear(pt_data_t *pt) 1941 { 1942 mdb_var_t *v; 1943 char *val, *name; 1944 1945 mdb_nv_rewind(&pt->p_env); 1946 while ((v = mdb_nv_advance(&pt->p_env)) != NULL) { 1947 1948 name = (char *)mdb_nv_get_name(v); 1949 val = mdb_nv_get_cookie(v); 1950 1951 mdb_nv_remove(&pt->p_env, v); 1952 1953 mdb_free(name, strlen(name) + 1); 1954 mdb_free(val, strlen(val) + 1); 1955 } 1956 } 1957 1958 /*ARGSUSED*/ 1959 static int 1960 pt_setenv(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 1961 { 1962 mdb_tgt_t *t = mdb.m_target; 1963 pt_data_t *pt = t->t_data; 1964 char *nameval; 1965 size_t len; 1966 int alloc; 1967 1968 if ((flags & DCMD_ADDRSPEC) || argc == 0 || argc > 2) 1969 return (DCMD_USAGE); 1970 1971 if ((argc > 0 && argv[0].a_type != MDB_TYPE_STRING) || 1972 (argc > 1 && argv[1].a_type != MDB_TYPE_STRING)) 1973 return (DCMD_USAGE); 1974 1975 if (t->t_pshandle == NULL) { 1976 mdb_warn("no process active\n"); 1977 return (DCMD_ERR); 1978 } 1979 1980 /* 1981 * If the process is in some sort of running state, warn the user that 1982 * changes won't immediately take effect. 1983 */ 1984 if (Pstate(t->t_pshandle) == PS_RUN || 1985 Pstate(t->t_pshandle) == PS_STOP) { 1986 mdb_warn("warning: changes will not take effect until process" 1987 " is restarted\n"); 1988 } 1989 1990 /* 1991 * We allow two forms of operation. The first is the usual "name=value" 1992 * parameter. We also allow the user to specify two arguments, where 1993 * the first is the name of the variable, and the second is the value. 1994 */ 1995 alloc = 0; 1996 if (argc == 1) { 1997 nameval = (char *)argv->a_un.a_str; 1998 } else { 1999 len = strlen(argv[0].a_un.a_str) + 2000 strlen(argv[1].a_un.a_str) + 2; 2001 nameval = mdb_alloc(len, UM_SLEEP); 2002 (void) mdb_snprintf(nameval, len, "%s=%s", argv[0].a_un.a_str, 2003 argv[1].a_un.a_str); 2004 alloc = 1; 2005 } 2006 2007 pt_env_set(pt, nameval); 2008 2009 if (alloc) 2010 mdb_free(nameval, strlen(nameval) + 1); 2011 2012 return (DCMD_OK); 2013 } 2014 2015 /*ARGSUSED*/ 2016 static int 2017 pt_unsetenv(uintptr_t addr, uint_t flags, int argc, const mdb_arg_t *argv) 2018 { 2019 mdb_tgt_t *t = mdb.m_target; 2020 pt_data_t *pt = t->t_data; 2021 mdb_var_t *v; 2022 char *value, *name; 2023 2024 if ((flags & DCMD_ADDRSPEC) || argc > 1) 2025 return (DCMD_USAGE); 2026 2027 if (argc == 1 && argv->a_type != MDB_TYPE_STRING) 2028 return (DCMD_USAGE); 2029 2030 if (t->t_pshandle == NULL) { 2031 mdb_warn("no process active\n"); 2032 return (DCMD_ERR); 2033 } 2034 2035 /* 2036 * If the process is in some sort of running state, warn the user that 2037 * changes won't immediately take effect. 2038 */ 2039 if (Pstate(t->t_pshandle) == PS_RUN || 2040 Pstate(t->t_pshandle) == PS_STOP) { 2041 mdb_warn("warning: changes will not take effect until process" 2042 " is restarted\n"); 2043 } 2044 2045 if (argc == 0) { 2046 pt_env_clear(pt); 2047 } else { 2048 if ((v = mdb_nv_lookup(&pt->p_env, argv->a_un.a_str)) != NULL) { 2049 name = (char *)mdb_nv_get_name(v); 2050 value = mdb_nv_get_cookie(v); 2051 2052 mdb_nv_remove(&pt->p_env, v); 2053 2054 mdb_free(name, strlen(name) + 1); 2055 mdb_free(value, strlen(value) + 1); 2056 } 2057 } 2058 2059 return (DCMD_OK); 2060 } 2061 2062 static const mdb_dcmd_t pt_dcmds[] = { 2063 { "$c", "?[cnt]", "print stack backtrace", pt_stack }, 2064 { "$C", "?[cnt]", "print stack backtrace", pt_stackv }, 2065 { "$i", NULL, "print signals that are ignored", pt_ignored }, 2066 { "$l", NULL, "print the representative thread's lwp id", pt_lwpid }, 2067 { "$L", NULL, "print list of the active lwp ids", pt_lwpids }, 2068 { "$r", "?", "print general-purpose registers", pt_regs }, 2069 { "$x", "?", "print floating point registers", pt_fpregs }, 2070 { "$X", "?", "print floating point registers", pt_fpregs }, 2071 { "$y", "?", "print floating point registers", pt_fpregs }, 2072 { "$Y", "?", "print floating point registers", pt_fpregs }, 2073 { "$?", "?", "print status and registers", pt_regstatus }, 2074 { ":A", "?[core|pid]", "attach to process or core file", pt_attach }, 2075 { ":i", ":", "ignore signal (delete all matching events)", pt_ignore }, 2076 { ":k", NULL, "forcibly kill and release target", pt_kill }, 2077 { ":R", "[-a]", "release the previously attached process", pt_detach }, 2078 { "attach", "?[core|pid]", 2079 "attach to process or core file", pt_attach }, 2080 { "findstack", ":[-v]", "find user thread stack", pt_findstack }, 2081 { "gcore", "[-o prefix] [-c content]", 2082 "produce a core file for the attached process", pt_gcore }, 2083 { "getenv", "[-t] [name]", "display an environment variable", 2084 pt_getenv, NULL }, 2085 { "kill", NULL, "forcibly kill and release target", pt_kill }, 2086 { "release", "[-a]", 2087 "release the previously attached process", pt_detach }, 2088 { "regs", "?", "print general-purpose registers", pt_regs }, 2089 { "fpregs", "?[-dqs]", "print floating point registers", pt_fpregs }, 2090 { "setenv", "name=value", "set an environment variable", pt_setenv }, 2091 { "stack", "?[cnt]", "print stack backtrace", pt_stack }, 2092 { "stackregs", "?", "print stack backtrace and registers", pt_stackr }, 2093 { "status", NULL, "print summary of current target", pt_status_dcmd }, 2094 { "tls", ":symbol", 2095 "lookup TLS data in the context of a given thread", pt_tls }, 2096 { "tmodel", "{thread|lwp}", NULL, pt_tmodel }, 2097 { "unsetenv", "[name]", "clear an environment variable", pt_unsetenv }, 2098 { NULL } 2099 }; 2100 2101 static void 2102 pt_thr_walk_fini(mdb_walk_state_t *wsp) 2103 { 2104 mdb_addrvec_destroy(wsp->walk_data); 2105 mdb_free(wsp->walk_data, sizeof (mdb_addrvec_t)); 2106 } 2107 2108 static int 2109 pt_thr_walk_init(mdb_walk_state_t *wsp) 2110 { 2111 wsp->walk_data = mdb_zalloc(sizeof (mdb_addrvec_t), UM_SLEEP); 2112 mdb_addrvec_create(wsp->walk_data); 2113 2114 if (PTL_ITER(mdb.m_target, wsp->walk_data) == -1) { 2115 mdb_warn("failed to iterate over threads"); 2116 pt_thr_walk_fini(wsp); 2117 return (WALK_ERR); 2118 } 2119 2120 return (WALK_NEXT); 2121 } 2122 2123 static int 2124 pt_thr_walk_step(mdb_walk_state_t *wsp) 2125 { 2126 if (mdb_addrvec_length(wsp->walk_data) != 0) { 2127 return (wsp->walk_callback(mdb_addrvec_shift(wsp->walk_data), 2128 NULL, wsp->walk_cbdata)); 2129 } 2130 return (WALK_DONE); 2131 } 2132 2133 static const mdb_walker_t pt_walkers[] = { 2134 { "thread", "walk list of valid thread identifiers", 2135 pt_thr_walk_init, pt_thr_walk_step, pt_thr_walk_fini }, 2136 { NULL } 2137 }; 2138 2139 2140 static void 2141 pt_activate_common(mdb_tgt_t *t) 2142 { 2143 pt_data_t *pt = t->t_data; 2144 GElf_Sym sym; 2145 2146 /* 2147 * If we have a libproc handle and AT_BASE is set, the process or core 2148 * is dynamically linked. We call Prd_agent() to force libproc to 2149 * try to initialize librtld_db, and issue a warning if that fails. 2150 */ 2151 if (t->t_pshandle != NULL && Pgetauxval(t->t_pshandle, 2152 AT_BASE) != -1L && Prd_agent(t->t_pshandle) == NULL) { 2153 mdb_warn("warning: librtld_db failed to initialize; shared " 2154 "library information will not be available\n"); 2155 } 2156 2157 /* 2158 * If we have a libproc handle and libthread is loaded, attempt to load 2159 * and initialize the corresponding libthread_db. If this fails, fall 2160 * back to our native LWP implementation and issue a warning. 2161 */ 2162 if (t->t_pshandle != NULL && Pstate(t->t_pshandle) != PS_IDLE) 2163 (void) Pobject_iter(t->t_pshandle, (proc_map_f *)thr_check, t); 2164 2165 /* 2166 * If there's a global object named '_mdb_abort_info', assuming we're 2167 * debugging mdb itself and load the developer support module. 2168 */ 2169 if (mdb_gelf_symtab_lookup_by_name(pt->p_symtab, "_mdb_abort_info", 2170 &sym, NULL) == 0 && GELF_ST_TYPE(sym.st_info) == STT_OBJECT) { 2171 if (mdb_module_load("mdb_ds", MDB_MOD_SILENT) < 0) 2172 mdb_warn("warning: failed to load developer support\n"); 2173 } 2174 2175 mdb_tgt_elf_export(pt->p_file); 2176 } 2177 2178 static void 2179 pt_activate(mdb_tgt_t *t) 2180 { 2181 static const mdb_nv_disc_t reg_disc = { reg_disc_set, reg_disc_get }; 2182 2183 pt_data_t *pt = t->t_data; 2184 struct utsname u1, u2; 2185 mdb_var_t *v; 2186 core_content_t content; 2187 2188 if (t->t_pshandle) { 2189 mdb_prop_postmortem = (Pstate(t->t_pshandle) == PS_DEAD); 2190 mdb_prop_kernel = FALSE; 2191 } else 2192 mdb_prop_kernel = mdb_prop_postmortem = FALSE; 2193 2194 mdb_prop_datamodel = MDB_TGT_MODEL_NATIVE; 2195 2196 /* 2197 * If we're examining a core file that doesn't contain program text, 2198 * and uname(2) doesn't match the NT_UTSNAME note recorded in the 2199 * core file, issue a warning. 2200 */ 2201 if (mdb_prop_postmortem == TRUE && 2202 ((content = Pcontent(t->t_pshandle)) == CC_CONTENT_INVALID || 2203 !(content & CC_CONTENT_TEXT)) && 2204 uname(&u1) >= 0 && Puname(t->t_pshandle, &u2) == 0 && 2205 (strcmp(u1.release, u2.release) != 0 || 2206 strcmp(u1.version, u2.version) != 0)) { 2207 mdb_warn("warning: core file is from %s %s %s; shared text " 2208 "mappings may not match installed libraries\n", 2209 u2.sysname, u2.release, u2.version); 2210 } 2211 2212 /* 2213 * Perform the common initialization tasks -- these are shared with 2214 * the pt_exec() and pt_run() subroutines. 2215 */ 2216 pt_activate_common(t); 2217 2218 (void) mdb_tgt_register_dcmds(t, &pt_dcmds[0], MDB_MOD_FORCE); 2219 (void) mdb_tgt_register_walkers(t, &pt_walkers[0], MDB_MOD_FORCE); 2220 2221 /* 2222 * Iterate through our register description list and export 2223 * each register as a named variable. 2224 */ 2225 mdb_nv_rewind(&pt->p_regs); 2226 while ((v = mdb_nv_advance(&pt->p_regs)) != NULL) { 2227 ushort_t rd_flags = MDB_TGT_R_FLAGS(mdb_nv_get_value(v)); 2228 2229 if (!(rd_flags & MDB_TGT_R_EXPORT)) 2230 continue; /* Don't export register as a variable */ 2231 2232 (void) mdb_nv_insert(&mdb.m_nv, mdb_nv_get_name(v), ®_disc, 2233 (uintptr_t)t, MDB_NV_PERSIST); 2234 } 2235 } 2236 2237 static void 2238 pt_deactivate(mdb_tgt_t *t) 2239 { 2240 pt_data_t *pt = t->t_data; 2241 const mdb_dcmd_t *dcp; 2242 const mdb_walker_t *wp; 2243 mdb_var_t *v, *w; 2244 2245 mdb_nv_rewind(&pt->p_regs); 2246 while ((v = mdb_nv_advance(&pt->p_regs)) != NULL) { 2247 ushort_t rd_flags = MDB_TGT_R_FLAGS(mdb_nv_get_value(v)); 2248 2249 if (!(rd_flags & MDB_TGT_R_EXPORT)) 2250 continue; /* Didn't export register as a variable */ 2251 2252 if (w = mdb_nv_lookup(&mdb.m_nv, mdb_nv_get_name(v))) { 2253 w->v_flags &= ~MDB_NV_PERSIST; 2254 mdb_nv_remove(&mdb.m_nv, w); 2255 } 2256 } 2257 2258 for (wp = &pt_walkers[0]; wp->walk_name != NULL; wp++) { 2259 if (mdb_module_remove_walker(t->t_module, wp->walk_name) == -1) 2260 warn("failed to remove walk %s", wp->walk_name); 2261 } 2262 2263 for (dcp = &pt_dcmds[0]; dcp->dc_name != NULL; dcp++) { 2264 if (mdb_module_remove_dcmd(t->t_module, dcp->dc_name) == -1) 2265 warn("failed to remove dcmd %s", dcp->dc_name); 2266 } 2267 2268 mdb_prop_postmortem = FALSE; 2269 mdb_prop_kernel = FALSE; 2270 mdb_prop_datamodel = MDB_TGT_MODEL_UNKNOWN; 2271 } 2272 2273 static void 2274 pt_periodic(mdb_tgt_t *t) 2275 { 2276 pt_data_t *pt = t->t_data; 2277 2278 if (pt->p_rdstate == PT_RD_CONSIST) { 2279 if (t->t_pshandle != NULL && Pstate(t->t_pshandle) < PS_LOST && 2280 !(mdb.m_flags & MDB_FL_NOMODS)) { 2281 mdb_printf("%s: You've got symbols!\n", mdb.m_pname); 2282 mdb_module_load_all(0); 2283 } 2284 pt->p_rdstate = PT_RD_NONE; 2285 } 2286 } 2287 2288 static void 2289 pt_destroy(mdb_tgt_t *t) 2290 { 2291 pt_data_t *pt = t->t_data; 2292 2293 if (pt->p_idlehandle != NULL && pt->p_idlehandle != t->t_pshandle) 2294 Prelease(pt->p_idlehandle, 0); 2295 2296 if (t->t_pshandle != NULL) { 2297 PTL_DTOR(t); 2298 pt_release_parents(t); 2299 pt_pre_detach(t, TRUE); 2300 Prelease(t->t_pshandle, pt->p_rflags); 2301 } 2302 2303 mdb.m_flags &= ~(MDB_FL_VCREATE | MDB_FL_JOBCTL); 2304 pt_close_aout(t); 2305 2306 if (pt->p_aout_fio != NULL) 2307 mdb_io_rele(pt->p_aout_fio); 2308 2309 pt_env_clear(pt); 2310 mdb_nv_destroy(&pt->p_env); 2311 2312 mdb_nv_destroy(&pt->p_regs); 2313 mdb_free(pt, sizeof (pt_data_t)); 2314 } 2315 2316 /*ARGSUSED*/ 2317 static const char * 2318 pt_name(mdb_tgt_t *t) 2319 { 2320 return ("proc"); 2321 } 2322 2323 static const char * 2324 pt_platform(mdb_tgt_t *t) 2325 { 2326 pt_data_t *pt = t->t_data; 2327 2328 if (t->t_pshandle != NULL && 2329 Pplatform(t->t_pshandle, pt->p_platform, MAXNAMELEN) != NULL) 2330 return (pt->p_platform); 2331 2332 return (mdb_conf_platform()); 2333 } 2334 2335 static int 2336 pt_uname(mdb_tgt_t *t, struct utsname *utsp) 2337 { 2338 if (t->t_pshandle != NULL) 2339 return (Puname(t->t_pshandle, utsp)); 2340 2341 return (uname(utsp) >= 0 ? 0 : -1); 2342 } 2343 2344 static int 2345 pt_dmodel(mdb_tgt_t *t) 2346 { 2347 if (t->t_pshandle == NULL) 2348 return (MDB_TGT_MODEL_NATIVE); 2349 2350 switch (Pstatus(t->t_pshandle)->pr_dmodel) { 2351 case PR_MODEL_ILP32: 2352 return (MDB_TGT_MODEL_ILP32); 2353 case PR_MODEL_LP64: 2354 return (MDB_TGT_MODEL_LP64); 2355 } 2356 2357 return (MDB_TGT_MODEL_UNKNOWN); 2358 } 2359 2360 static ssize_t 2361 pt_vread(mdb_tgt_t *t, void *buf, size_t nbytes, uintptr_t addr) 2362 { 2363 ssize_t n; 2364 2365 /* 2366 * If no handle is open yet, reads from virtual addresses are 2367 * allowed to succeed but return zero-filled memory. 2368 */ 2369 if (t->t_pshandle == NULL) { 2370 bzero(buf, nbytes); 2371 return (nbytes); 2372 } 2373 2374 if ((n = Pread(t->t_pshandle, buf, nbytes, addr)) <= 0) 2375 return (set_errno(EMDB_NOMAP)); 2376 2377 return (n); 2378 } 2379 2380 static ssize_t 2381 pt_vwrite(mdb_tgt_t *t, const void *buf, size_t nbytes, uintptr_t addr) 2382 { 2383 ssize_t n; 2384 2385 /* 2386 * If no handle is open yet, writes to virtual addresses are 2387 * allowed to succeed but do not actually modify anything. 2388 */ 2389 if (t->t_pshandle == NULL) 2390 return (nbytes); 2391 2392 n = Pwrite(t->t_pshandle, buf, nbytes, addr); 2393 2394 if (n == -1 && errno == EIO) 2395 return (set_errno(EMDB_NOMAP)); 2396 2397 return (n); 2398 } 2399 2400 static ssize_t 2401 pt_fread(mdb_tgt_t *t, void *buf, size_t nbytes, uintptr_t addr) 2402 { 2403 pt_data_t *pt = t->t_data; 2404 2405 if (pt->p_file != NULL) { 2406 return (mdb_gelf_rw(pt->p_file, buf, nbytes, addr, 2407 IOPF_READ(pt->p_fio), GIO_READ)); 2408 } 2409 2410 bzero(buf, nbytes); 2411 return (nbytes); 2412 } 2413 2414 static ssize_t 2415 pt_fwrite(mdb_tgt_t *t, const void *buf, size_t nbytes, uintptr_t addr) 2416 { 2417 pt_data_t *pt = t->t_data; 2418 2419 if (pt->p_file != NULL) { 2420 return (mdb_gelf_rw(pt->p_file, (void *)buf, nbytes, addr, 2421 IOPF_WRITE(pt->p_fio), GIO_WRITE)); 2422 } 2423 2424 return (nbytes); 2425 } 2426 2427 static const char * 2428 pt_resolve_lmid(const char *object, Lmid_t *lmidp) 2429 { 2430 Lmid_t lmid = PR_LMID_EVERY; 2431 const char *p; 2432 2433 if (object == MDB_TGT_OBJ_EVERY || object == MDB_TGT_OBJ_EXEC) 2434 lmid = LM_ID_BASE; /* restrict scope to a.out's link map */ 2435 else if (object != MDB_TGT_OBJ_RTLD && strncmp(object, "LM", 2) == 0 && 2436 (p = strchr(object, '`')) != NULL) { 2437 object += 2; /* skip past initial "LM" prefix */ 2438 lmid = strntoul(object, (size_t)(p - object), mdb.m_radix); 2439 object = p + 1; /* skip past link map specifier */ 2440 } 2441 2442 *lmidp = lmid; 2443 return (object); 2444 } 2445 2446 static int 2447 tlsbase(mdb_tgt_t *t, mdb_tgt_tid_t tid, Lmid_t lmid, const char *object, 2448 psaddr_t *basep) 2449 { 2450 pt_data_t *pt = t->t_data; 2451 const rd_loadobj_t *loadobjp; 2452 td_thrhandle_t th; 2453 td_err_e err; 2454 2455 if (object == MDB_TGT_OBJ_EVERY) 2456 return (set_errno(EINVAL)); 2457 2458 if (t->t_pshandle == NULL || Pstate(t->t_pshandle) == PS_IDLE) 2459 return (set_errno(EMDB_NOPROC)); 2460 2461 if (pt->p_tdb_ops == NULL) 2462 return (set_errno(EMDB_TDB)); 2463 2464 err = pt->p_tdb_ops->td_ta_map_id2thr(pt->p_ptl_hdl, tid, &th); 2465 if (err != TD_OK) 2466 return (set_errno(tdb_to_errno(err))); 2467 2468 /* 2469 * If this fails, rtld_db has failed to initialize properly. 2470 */ 2471 if ((loadobjp = Plmid_to_loadobj(t->t_pshandle, lmid, object)) == NULL) 2472 return (set_errno(EMDB_NORTLD)); 2473 2474 /* 2475 * This will fail if the TLS block has not been allocated for the 2476 * object that contains the TLS symbol in question. 2477 */ 2478 err = pt->p_tdb_ops->td_thr_tlsbase(&th, loadobjp->rl_tlsmodid, basep); 2479 if (err != TD_OK) 2480 return (set_errno(tdb_to_errno(err))); 2481 2482 return (0); 2483 } 2484 2485 typedef struct { 2486 mdb_tgt_t *pl_tgt; 2487 const char *pl_name; 2488 Lmid_t pl_lmid; 2489 GElf_Sym *pl_symp; 2490 mdb_syminfo_t *pl_sip; 2491 mdb_tgt_tid_t pl_tid; 2492 mdb_bool_t pl_found; 2493 } pt_lookup_t; 2494 2495 /*ARGSUSED*/ 2496 static int 2497 pt_lookup_cb(void *data, const prmap_t *pmp, const char *object) 2498 { 2499 pt_lookup_t *plp = data; 2500 struct ps_prochandle *P = plp->pl_tgt->t_pshandle; 2501 prsyminfo_t si; 2502 GElf_Sym sym; 2503 2504 if (Pxlookup_by_name(P, plp->pl_lmid, object, plp->pl_name, &sym, 2505 &si) != 0) 2506 return (0); 2507 2508 /* 2509 * If we encounter a match with SHN_UNDEF, keep looking for a 2510 * better match. Return the first match with SHN_UNDEF set if no 2511 * better match is found. 2512 */ 2513 if (sym.st_shndx == SHN_UNDEF) { 2514 if (!plp->pl_found) { 2515 plp->pl_found = TRUE; 2516 *plp->pl_symp = sym; 2517 plp->pl_sip->sym_table = si.prs_table; 2518 plp->pl_sip->sym_id = si.prs_id; 2519 } 2520 2521 return (0); 2522 } 2523 2524 /* 2525 * Note that if the symbol's st_shndx is SHN_UNDEF we don't have the 2526 * TLS offset anyway, so adding in the tlsbase would be worthless. 2527 */ 2528 if (GELF_ST_TYPE(sym.st_info) == STT_TLS && 2529 plp->pl_tid != (mdb_tgt_tid_t)-1) { 2530 psaddr_t base; 2531 2532 if (tlsbase(plp->pl_tgt, plp->pl_tid, plp->pl_lmid, object, 2533 &base) != 0) 2534 return (-1); /* errno is set for us */ 2535 2536 sym.st_value += base; 2537 } 2538 2539 plp->pl_found = TRUE; 2540 *plp->pl_symp = sym; 2541 plp->pl_sip->sym_table = si.prs_table; 2542 plp->pl_sip->sym_id = si.prs_id; 2543 2544 return (1); 2545 } 2546 2547 /* 2548 * Lookup the symbol with a thread context so that we can adjust TLS symbols 2549 * to get the values as they would appear in the context of the given thread. 2550 */ 2551 static int 2552 pt_lookup_by_name_thr(mdb_tgt_t *t, const char *object, 2553 const char *name, GElf_Sym *symp, mdb_syminfo_t *sip, mdb_tgt_tid_t tid) 2554 { 2555 struct ps_prochandle *P = t->t_pshandle; 2556 pt_data_t *pt = t->t_data; 2557 Lmid_t lmid; 2558 uint_t i; 2559 const rd_loadobj_t *aout_lop; 2560 2561 object = pt_resolve_lmid(object, &lmid); 2562 2563 if (P != NULL) { 2564 pt_lookup_t pl; 2565 2566 pl.pl_tgt = t; 2567 pl.pl_name = name; 2568 pl.pl_lmid = lmid; 2569 pl.pl_symp = symp; 2570 pl.pl_sip = sip; 2571 pl.pl_tid = tid; 2572 pl.pl_found = FALSE; 2573 2574 if (object == MDB_TGT_OBJ_EVERY) { 2575 if (Pobject_iter(P, pt_lookup_cb, &pl) == -1) 2576 return (-1); /* errno is set for us */ 2577 } else { 2578 const prmap_t *pmp; 2579 2580 /* 2581 * This can fail either due to an invalid lmid or 2582 * an invalid object. To determine which is 2583 * faulty, we test the lmid against known valid 2584 * lmids and then see if using a wild-card lmid 2585 * improves ths situation. 2586 */ 2587 if ((pmp = Plmid_to_map(P, lmid, object)) == NULL) { 2588 if (lmid != PR_LMID_EVERY && 2589 lmid != LM_ID_BASE && 2590 lmid != LM_ID_LDSO && 2591 Plmid_to_map(P, PR_LMID_EVERY, object) 2592 != NULL) 2593 return (set_errno(EMDB_NOLMID)); 2594 else 2595 return (set_errno(EMDB_NOOBJ)); 2596 } 2597 2598 if (pt_lookup_cb(&pl, pmp, object) == -1) 2599 return (-1); /* errno is set for us */ 2600 } 2601 2602 if (pl.pl_found) 2603 return (0); 2604 } 2605 2606 /* 2607 * If libproc doesn't have the symbols for rtld, we're cooked -- 2608 * mdb doesn't have those symbols either. 2609 */ 2610 if (object == MDB_TGT_OBJ_RTLD) 2611 return (set_errno(EMDB_NOSYM)); 2612 2613 if (object != MDB_TGT_OBJ_EXEC && object != MDB_TGT_OBJ_EVERY) { 2614 int status = mdb_gelf_symtab_lookup_by_file(pt->p_symtab, 2615 object, name, symp, &sip->sym_id); 2616 2617 if (status != 0) { 2618 if (P != NULL && 2619 Plmid_to_map(P, PR_LMID_EVERY, object) != NULL) 2620 return (set_errno(EMDB_NOSYM)); 2621 else 2622 return (-1); /* errno set from lookup_by_file */ 2623 } 2624 2625 goto found; 2626 } 2627 2628 if (mdb_gelf_symtab_lookup_by_name(pt->p_symtab, name, symp, &i) == 0) { 2629 sip->sym_table = MDB_TGT_SYMTAB; 2630 sip->sym_id = i; 2631 goto local_found; 2632 } 2633 2634 if (mdb_gelf_symtab_lookup_by_name(pt->p_dynsym, name, symp, &i) == 0) { 2635 sip->sym_table = MDB_TGT_DYNSYM; 2636 sip->sym_id = i; 2637 goto local_found; 2638 } 2639 2640 return (set_errno(EMDB_NOSYM)); 2641 2642 local_found: 2643 if (pt->p_file != NULL && 2644 pt->p_file->gf_ehdr.e_type == ET_DYN && 2645 P != NULL && 2646 (aout_lop = Pname_to_loadobj(P, PR_OBJ_EXEC)) != NULL) 2647 symp->st_value += aout_lop->rl_base; 2648 2649 found: 2650 /* 2651 * If the symbol has type TLS, libproc should have found the symbol 2652 * if it exists and has been allocated. 2653 */ 2654 if (GELF_ST_TYPE(symp->st_info) == STT_TLS) 2655 return (set_errno(EMDB_TLS)); 2656 2657 return (0); 2658 } 2659 2660 static int 2661 pt_lookup_by_name(mdb_tgt_t *t, const char *object, 2662 const char *name, GElf_Sym *symp, mdb_syminfo_t *sip) 2663 { 2664 return (pt_lookup_by_name_thr(t, object, name, symp, sip, PTL_TID(t))); 2665 } 2666 2667 static int 2668 pt_lookup_by_addr(mdb_tgt_t *t, uintptr_t addr, uint_t flags, 2669 char *buf, size_t nbytes, GElf_Sym *symp, mdb_syminfo_t *sip) 2670 { 2671 struct ps_prochandle *P = t->t_pshandle; 2672 pt_data_t *pt = t->t_data; 2673 2674 rd_plt_info_t rpi = { 0 }; 2675 const char *pltsym; 2676 int match, i; 2677 2678 mdb_gelf_symtab_t *gsts[3]; /* mdb.m_prsym, .symtab, .dynsym */ 2679 int gstc = 0; /* number of valid gsts[] entries */ 2680 2681 mdb_gelf_symtab_t *gst = NULL; /* set if 'sym' is from a gst */ 2682 const prmap_t *pmp = NULL; /* set if 'sym' is from libproc */ 2683 GElf_Sym sym; /* best symbol found so far if !exact */ 2684 prsyminfo_t si; 2685 2686 /* 2687 * Fill in our array of symbol table pointers with the private symbol 2688 * table, static symbol table, and dynamic symbol table if applicable. 2689 * These are done in order of precedence so that if we match and 2690 * MDB_TGT_SYM_EXACT is set, we need not look any further. 2691 */ 2692 if (mdb.m_prsym != NULL) 2693 gsts[gstc++] = mdb.m_prsym; 2694 if (P == NULL && pt->p_symtab != NULL) 2695 gsts[gstc++] = pt->p_symtab; 2696 if (P == NULL && pt->p_dynsym != NULL) 2697 gsts[gstc++] = pt->p_dynsym; 2698 2699 /* 2700 * Loop through our array attempting to match the address. If we match 2701 * and we're in exact mode, we're done. Otherwise save the symbol in 2702 * the local sym variable if it is closer than our previous match. 2703 * We explicitly watch for zero-valued symbols since DevPro insists 2704 * on storing __fsr_init_value's value as the symbol value instead 2705 * of storing it in a constant integer. 2706 */ 2707 for (i = 0; i < gstc; i++) { 2708 if (mdb_gelf_symtab_lookup_by_addr(gsts[i], addr, flags, buf, 2709 nbytes, symp, &sip->sym_id) != 0 || symp->st_value == 0) 2710 continue; 2711 2712 if (flags & MDB_TGT_SYM_EXACT) { 2713 gst = gsts[i]; 2714 goto found; 2715 } 2716 2717 if (gst == NULL || mdb_gelf_sym_closer(symp, &sym, addr)) { 2718 gst = gsts[i]; 2719 sym = *symp; 2720 } 2721 } 2722 2723 /* 2724 * If we have no libproc handle active, we're done: fail if gst is 2725 * NULL; otherwise copy out our best symbol and skip to the end. 2726 * We also skip to found if gst is the private symbol table: we 2727 * want this to always take precedence over PLT re-vectoring. 2728 */ 2729 if (P == NULL || (gst != NULL && gst == mdb.m_prsym)) { 2730 if (gst == NULL) 2731 return (set_errno(EMDB_NOSYMADDR)); 2732 *symp = sym; 2733 goto found; 2734 } 2735 2736 /* 2737 * Check to see if the address is in a PLT: if it is, use librtld_db to 2738 * attempt to resolve the PLT entry. If the entry is bound, reset addr 2739 * to the bound address, add a special prefix to the caller's buf, 2740 * forget our previous guess, and then continue using the new addr. 2741 * If the entry is not bound, copy the corresponding symbol name into 2742 * buf and return a fake symbol for the given address. 2743 */ 2744 if ((pltsym = Ppltdest(P, addr)) != NULL) { 2745 const rd_loadobj_t *rlp; 2746 rd_agent_t *rap; 2747 2748 if ((rap = Prd_agent(P)) != NULL && 2749 (rlp = Paddr_to_loadobj(P, addr)) != NULL && 2750 rd_plt_resolution(rap, addr, Pstatus(P)->pr_lwp.pr_lwpid, 2751 rlp->rl_plt_base, &rpi) == RD_OK && 2752 (rpi.pi_flags & RD_FLG_PI_PLTBOUND)) { 2753 size_t n; 2754 n = mdb_iob_snprintf(buf, nbytes, "PLT="); 2755 addr = rpi.pi_baddr; 2756 if (n > nbytes) { 2757 buf += nbytes; 2758 nbytes = 0; 2759 } else { 2760 buf += n; 2761 nbytes -= n; 2762 } 2763 gst = NULL; 2764 } else { 2765 (void) mdb_iob_snprintf(buf, nbytes, "PLT:%s", pltsym); 2766 bzero(symp, sizeof (GElf_Sym)); 2767 symp->st_value = addr; 2768 symp->st_info = GELF_ST_INFO(STB_GLOBAL, STT_FUNC); 2769 return (0); 2770 } 2771 } 2772 2773 /* 2774 * Ask libproc to convert the address to the closest symbol for us. 2775 * Once we get the closest symbol, we perform the EXACT match or 2776 * smart-mode or absolute distance check ourself: 2777 */ 2778 if (Pxlookup_by_addr(P, addr, buf, nbytes, symp, &si) == 0 && 2779 symp->st_value != 0 && (gst == NULL || 2780 mdb_gelf_sym_closer(symp, &sym, addr))) { 2781 2782 if (flags & MDB_TGT_SYM_EXACT) 2783 match = (addr == symp->st_value); 2784 else if (mdb.m_symdist == 0) 2785 match = (addr >= symp->st_value && 2786 addr < symp->st_value + symp->st_size); 2787 else 2788 match = (addr >= symp->st_value && 2789 addr < symp->st_value + mdb.m_symdist); 2790 2791 if (match) { 2792 pmp = Paddr_to_map(P, addr); 2793 gst = NULL; 2794 sip->sym_table = si.prs_table; 2795 sip->sym_id = si.prs_id; 2796 goto found; 2797 } 2798 } 2799 2800 /* 2801 * If we get here, Plookup_by_addr has failed us. If we have no 2802 * previous best symbol (gst == NULL), we've failed completely. 2803 * Otherwise we copy out that symbol and continue on to 'found'. 2804 */ 2805 if (gst == NULL) 2806 return (set_errno(EMDB_NOSYMADDR)); 2807 *symp = sym; 2808 found: 2809 /* 2810 * Once we've found something, copy the final name into the caller's 2811 * buffer and prefix it with the mapping name if appropriate. 2812 */ 2813 if (pmp != NULL && pmp != Pname_to_map(P, PR_OBJ_EXEC)) { 2814 const char *prefix = pmp->pr_mapname; 2815 Lmid_t lmid; 2816 2817 if (Pobjname(P, addr, pt->p_objname, MDB_TGT_MAPSZ)) 2818 prefix = pt->p_objname; 2819 2820 if (buf != NULL && nbytes > 1) { 2821 (void) strncpy(pt->p_symname, buf, MDB_TGT_SYM_NAMLEN); 2822 pt->p_symname[MDB_TGT_SYM_NAMLEN - 1] = '\0'; 2823 } else { 2824 pt->p_symname[0] = '\0'; 2825 } 2826 2827 if (prefix == pt->p_objname && Plmid(P, addr, &lmid) == 0 && ( 2828 (lmid != LM_ID_BASE && lmid != LM_ID_LDSO) || 2829 (mdb.m_flags & MDB_FL_SHOWLMID))) { 2830 (void) mdb_iob_snprintf(buf, nbytes, "LM%lr`%s`%s", 2831 lmid, strbasename(prefix), pt->p_symname); 2832 } else { 2833 (void) mdb_iob_snprintf(buf, nbytes, "%s`%s", 2834 strbasename(prefix), pt->p_symname); 2835 } 2836 2837 } else if (gst != NULL && buf != NULL && nbytes > 0) { 2838 (void) strncpy(buf, mdb_gelf_sym_name(gst, symp), nbytes); 2839 buf[nbytes - 1] = '\0'; 2840 } 2841 2842 return (0); 2843 } 2844 2845 2846 static int 2847 pt_symbol_iter_cb(void *arg, const GElf_Sym *sym, const char *name, 2848 const prsyminfo_t *sip) 2849 { 2850 pt_symarg_t *psp = arg; 2851 2852 psp->psym_info.sym_id = sip->prs_id; 2853 2854 return (psp->psym_func(psp->psym_private, sym, name, &psp->psym_info, 2855 psp->psym_obj)); 2856 } 2857 2858 static int 2859 pt_objsym_iter(void *arg, const prmap_t *pmp, const char *object) 2860 { 2861 Lmid_t lmid = PR_LMID_EVERY; 2862 pt_symarg_t *psp = arg; 2863 2864 psp->psym_obj = object; 2865 2866 (void) Plmid(psp->psym_targ->t_pshandle, pmp->pr_vaddr, &lmid); 2867 (void) Pxsymbol_iter(psp->psym_targ->t_pshandle, lmid, object, 2868 psp->psym_which, psp->psym_type, pt_symbol_iter_cb, arg); 2869 2870 return (0); 2871 } 2872 2873 static int 2874 pt_symbol_filt(void *arg, const GElf_Sym *sym, const char *name, uint_t id) 2875 { 2876 pt_symarg_t *psp = arg; 2877 2878 if (mdb_tgt_sym_match(sym, psp->psym_type)) { 2879 psp->psym_info.sym_id = id; 2880 return (psp->psym_func(psp->psym_private, sym, name, 2881 &psp->psym_info, psp->psym_obj)); 2882 } 2883 2884 return (0); 2885 } 2886 2887 static int 2888 pt_symbol_iter(mdb_tgt_t *t, const char *object, uint_t which, 2889 uint_t type, mdb_tgt_sym_f *func, void *private) 2890 { 2891 pt_data_t *pt = t->t_data; 2892 mdb_gelf_symtab_t *gst; 2893 pt_symarg_t ps; 2894 Lmid_t lmid; 2895 2896 object = pt_resolve_lmid(object, &lmid); 2897 2898 ps.psym_targ = t; 2899 ps.psym_which = which; 2900 ps.psym_type = type; 2901 ps.psym_func = func; 2902 ps.psym_private = private; 2903 ps.psym_obj = object; 2904 2905 if (t->t_pshandle != NULL) { 2906 if (object != MDB_TGT_OBJ_EVERY) { 2907 if (Plmid_to_map(t->t_pshandle, lmid, object) == NULL) 2908 return (set_errno(EMDB_NOOBJ)); 2909 (void) Pxsymbol_iter(t->t_pshandle, lmid, object, 2910 which, type, pt_symbol_iter_cb, &ps); 2911 return (0); 2912 } else if (Prd_agent(t->t_pshandle) != NULL) { 2913 (void) Pobject_iter(t->t_pshandle, pt_objsym_iter, &ps); 2914 return (0); 2915 } 2916 } 2917 2918 if (lmid != LM_ID_BASE && lmid != PR_LMID_EVERY) 2919 return (set_errno(EMDB_NOLMID)); 2920 2921 if (object != MDB_TGT_OBJ_EXEC && object != MDB_TGT_OBJ_EVERY && 2922 pt->p_fio != NULL && 2923 strcmp(object, IOP_NAME(pt->p_fio)) != 0) 2924 return (set_errno(EMDB_NOOBJ)); 2925 2926 if (which == MDB_TGT_SYMTAB) 2927 gst = pt->p_symtab; 2928 else 2929 gst = pt->p_dynsym; 2930 2931 if (gst != NULL) { 2932 ps.psym_info.sym_table = gst->gst_tabid; 2933 mdb_gelf_symtab_iter(gst, pt_symbol_filt, &ps); 2934 } 2935 2936 return (0); 2937 } 2938 2939 static const mdb_map_t * 2940 pt_prmap_to_mdbmap(mdb_tgt_t *t, const prmap_t *prp, mdb_map_t *mp) 2941 { 2942 struct ps_prochandle *P = t->t_pshandle; 2943 char name[MAXPATHLEN]; 2944 Lmid_t lmid; 2945 2946 if (Pobjname(P, prp->pr_vaddr, name, sizeof (name)) != NULL) { 2947 if (Plmid(P, prp->pr_vaddr, &lmid) == 0 && ( 2948 (lmid != LM_ID_BASE && lmid != LM_ID_LDSO) || 2949 (mdb.m_flags & MDB_FL_SHOWLMID))) { 2950 (void) mdb_iob_snprintf(mp->map_name, MDB_TGT_MAPSZ, 2951 "LM%lr`%s", lmid, name); 2952 } else { 2953 (void) strncpy(mp->map_name, name, MDB_TGT_MAPSZ - 1); 2954 mp->map_name[MDB_TGT_MAPSZ - 1] = '\0'; 2955 } 2956 } else { 2957 (void) strncpy(mp->map_name, prp->pr_mapname, 2958 MDB_TGT_MAPSZ - 1); 2959 mp->map_name[MDB_TGT_MAPSZ - 1] = '\0'; 2960 } 2961 2962 mp->map_base = prp->pr_vaddr; 2963 mp->map_size = prp->pr_size; 2964 mp->map_flags = 0; 2965 2966 if (prp->pr_mflags & MA_READ) 2967 mp->map_flags |= MDB_TGT_MAP_R; 2968 if (prp->pr_mflags & MA_WRITE) 2969 mp->map_flags |= MDB_TGT_MAP_W; 2970 if (prp->pr_mflags & MA_EXEC) 2971 mp->map_flags |= MDB_TGT_MAP_X; 2972 2973 if (prp->pr_mflags & MA_SHM) 2974 mp->map_flags |= MDB_TGT_MAP_SHMEM; 2975 if (prp->pr_mflags & MA_BREAK) 2976 mp->map_flags |= MDB_TGT_MAP_HEAP; 2977 if (prp->pr_mflags & MA_STACK) 2978 mp->map_flags |= MDB_TGT_MAP_STACK; 2979 if (prp->pr_mflags & MA_ANON) 2980 mp->map_flags |= MDB_TGT_MAP_ANON; 2981 2982 return (mp); 2983 } 2984 2985 /*ARGSUSED*/ 2986 static int 2987 pt_map_apply(void *arg, const prmap_t *prp, const char *name) 2988 { 2989 pt_maparg_t *pmp = arg; 2990 mdb_map_t map; 2991 2992 return (pmp->pmap_func(pmp->pmap_private, 2993 pt_prmap_to_mdbmap(pmp->pmap_targ, prp, &map), map.map_name)); 2994 } 2995 2996 static int 2997 pt_mapping_iter(mdb_tgt_t *t, mdb_tgt_map_f *func, void *private) 2998 { 2999 if (t->t_pshandle != NULL) { 3000 pt_maparg_t pm; 3001 3002 pm.pmap_targ = t; 3003 pm.pmap_func = func; 3004 pm.pmap_private = private; 3005 3006 (void) Pmapping_iter(t->t_pshandle, pt_map_apply, &pm); 3007 return (0); 3008 } 3009 3010 return (set_errno(EMDB_NOPROC)); 3011 } 3012 3013 static int 3014 pt_object_iter(mdb_tgt_t *t, mdb_tgt_map_f *func, void *private) 3015 { 3016 pt_data_t *pt = t->t_data; 3017 3018 /* 3019 * If we have a libproc handle, we can just call Pobject_iter to 3020 * iterate over its list of load object information. 3021 */ 3022 if (t->t_pshandle != NULL) { 3023 pt_maparg_t pm; 3024 3025 pm.pmap_targ = t; 3026 pm.pmap_func = func; 3027 pm.pmap_private = private; 3028 3029 (void) Pobject_iter(t->t_pshandle, pt_map_apply, &pm); 3030 return (0); 3031 } 3032 3033 /* 3034 * If we're examining an executable or other ELF file but we have no 3035 * libproc handle, fake up some information based on DT_NEEDED entries. 3036 */ 3037 if (pt->p_dynsym != NULL && pt->p_file->gf_dyns != NULL && 3038 pt->p_fio != NULL) { 3039 mdb_gelf_sect_t *gsp = pt->p_dynsym->gst_ssect; 3040 GElf_Dyn *dynp = pt->p_file->gf_dyns; 3041 mdb_map_t *mp = &pt->p_map; 3042 const char *s = IOP_NAME(pt->p_fio); 3043 size_t i; 3044 3045 (void) strncpy(mp->map_name, s, MDB_TGT_MAPSZ); 3046 mp->map_name[MDB_TGT_MAPSZ - 1] = '\0'; 3047 mp->map_flags = MDB_TGT_MAP_R | MDB_TGT_MAP_X; 3048 mp->map_base = NULL; 3049 mp->map_size = 0; 3050 3051 if (func(private, mp, s) != 0) 3052 return (0); 3053 3054 for (i = 0; i < pt->p_file->gf_ndyns; i++, dynp++) { 3055 if (dynp->d_tag == DT_NEEDED) { 3056 s = (char *)gsp->gs_data + dynp->d_un.d_val; 3057 (void) strncpy(mp->map_name, s, MDB_TGT_MAPSZ); 3058 mp->map_name[MDB_TGT_MAPSZ - 1] = '\0'; 3059 if (func(private, mp, s) != 0) 3060 return (0); 3061 } 3062 } 3063 3064 return (0); 3065 } 3066 3067 return (set_errno(EMDB_NOPROC)); 3068 } 3069 3070 static const mdb_map_t * 3071 pt_addr_to_map(mdb_tgt_t *t, uintptr_t addr) 3072 { 3073 pt_data_t *pt = t->t_data; 3074 const prmap_t *pmp; 3075 3076 if (t->t_pshandle == NULL) { 3077 (void) set_errno(EMDB_NOPROC); 3078 return (NULL); 3079 } 3080 3081 if ((pmp = Paddr_to_map(t->t_pshandle, addr)) == NULL) { 3082 (void) set_errno(EMDB_NOMAP); 3083 return (NULL); 3084 } 3085 3086 return (pt_prmap_to_mdbmap(t, pmp, &pt->p_map)); 3087 } 3088 3089 static const mdb_map_t * 3090 pt_name_to_map(mdb_tgt_t *t, const char *object) 3091 { 3092 pt_data_t *pt = t->t_data; 3093 const prmap_t *pmp; 3094 Lmid_t lmid; 3095 3096 if (t->t_pshandle == NULL) { 3097 (void) set_errno(EMDB_NOPROC); 3098 return (NULL); 3099 } 3100 3101 object = pt_resolve_lmid(object, &lmid); 3102 3103 if ((pmp = Plmid_to_map(t->t_pshandle, lmid, object)) == NULL) { 3104 (void) set_errno(EMDB_NOOBJ); 3105 return (NULL); 3106 } 3107 3108 return (pt_prmap_to_mdbmap(t, pmp, &pt->p_map)); 3109 } 3110 3111 static ctf_file_t * 3112 pt_addr_to_ctf(mdb_tgt_t *t, uintptr_t addr) 3113 { 3114 ctf_file_t *ret; 3115 3116 if (t->t_pshandle == NULL) { 3117 (void) set_errno(EMDB_NOPROC); 3118 return (NULL); 3119 } 3120 3121 if ((ret = Paddr_to_ctf(t->t_pshandle, addr)) == NULL) { 3122 (void) set_errno(EMDB_NOOBJ); 3123 return (NULL); 3124 } 3125 3126 return (ret); 3127 } 3128 3129 static ctf_file_t * 3130 pt_name_to_ctf(mdb_tgt_t *t, const char *name) 3131 { 3132 ctf_file_t *ret; 3133 3134 if (t->t_pshandle == NULL) { 3135 (void) set_errno(EMDB_NOPROC); 3136 return (NULL); 3137 } 3138 3139 if ((ret = Pname_to_ctf(t->t_pshandle, name)) == NULL) { 3140 (void) set_errno(EMDB_NOOBJ); 3141 return (NULL); 3142 } 3143 3144 return (ret); 3145 } 3146 3147 static int 3148 pt_status(mdb_tgt_t *t, mdb_tgt_status_t *tsp) 3149 { 3150 const pstatus_t *psp; 3151 prgregset_t gregs; 3152 int state; 3153 3154 bzero(tsp, sizeof (mdb_tgt_status_t)); 3155 3156 if (t->t_pshandle == NULL) { 3157 tsp->st_state = MDB_TGT_IDLE; 3158 return (0); 3159 } 3160 3161 switch (state = Pstate(t->t_pshandle)) { 3162 case PS_RUN: 3163 tsp->st_state = MDB_TGT_RUNNING; 3164 break; 3165 3166 case PS_STOP: 3167 tsp->st_state = MDB_TGT_STOPPED; 3168 psp = Pstatus(t->t_pshandle); 3169 3170 tsp->st_tid = PTL_TID(t); 3171 if (PTL_GETREGS(t, tsp->st_tid, gregs) == 0) 3172 tsp->st_pc = gregs[R_PC]; 3173 3174 if (psp->pr_flags & PR_ISTOP) 3175 tsp->st_flags |= MDB_TGT_ISTOP; 3176 if (psp->pr_flags & PR_DSTOP) 3177 tsp->st_flags |= MDB_TGT_DSTOP; 3178 3179 break; 3180 3181 case PS_LOST: 3182 tsp->st_state = MDB_TGT_LOST; 3183 break; 3184 case PS_UNDEAD: 3185 tsp->st_state = MDB_TGT_UNDEAD; 3186 break; 3187 case PS_DEAD: 3188 tsp->st_state = MDB_TGT_DEAD; 3189 break; 3190 case PS_IDLE: 3191 tsp->st_state = MDB_TGT_IDLE; 3192 break; 3193 default: 3194 fail("unknown libproc state (%d)\n", state); 3195 } 3196 3197 if (t->t_flags & MDB_TGT_F_BUSY) 3198 tsp->st_flags |= MDB_TGT_BUSY; 3199 3200 return (0); 3201 } 3202 3203 static void 3204 pt_dupfd(const char *file, int oflags, mode_t mode, int dfd) 3205 { 3206 int fd; 3207 3208 if ((fd = open(file, oflags, mode)) >= 0) { 3209 (void) fcntl(fd, F_DUP2FD, dfd); 3210 (void) close(fd); 3211 } else 3212 warn("failed to open %s as descriptor %d", file, dfd); 3213 } 3214 3215 /* 3216 * The Pcreate_callback() function interposes on the default, empty libproc 3217 * definition. It will be called following a fork of a new child process by 3218 * Pcreate() below, but before the exec of the new process image. We use this 3219 * callback to optionally redirect stdin and stdout and reset the dispositions 3220 * of SIGPIPE and SIGQUIT from SIG_IGN back to SIG_DFL. 3221 */ 3222 /*ARGSUSED*/ 3223 void 3224 Pcreate_callback(struct ps_prochandle *P) 3225 { 3226 pt_data_t *pt = mdb.m_target->t_data; 3227 3228 if (pt->p_stdin != NULL) 3229 pt_dupfd(pt->p_stdin, O_RDWR, 0, STDIN_FILENO); 3230 if (pt->p_stdout != NULL) 3231 pt_dupfd(pt->p_stdout, O_CREAT | O_WRONLY, 0666, STDOUT_FILENO); 3232 3233 (void) mdb_signal_sethandler(SIGPIPE, SIG_DFL, NULL); 3234 (void) mdb_signal_sethandler(SIGQUIT, SIG_DFL, NULL); 3235 } 3236 3237 static int 3238 pt_run(mdb_tgt_t *t, int argc, const mdb_arg_t *argv) 3239 { 3240 pt_data_t *pt = t->t_data; 3241 struct ps_prochandle *P; 3242 char execname[MAXPATHLEN]; 3243 const char **pargv; 3244 int pargc = 0; 3245 int i, perr; 3246 char **penv; 3247 mdb_var_t *v; 3248 3249 if (pt->p_aout_fio == NULL) { 3250 warn("run requires executable to be specified on " 3251 "command-line\n"); 3252 return (set_errno(EMDB_TGT)); 3253 } 3254 3255 pargv = mdb_alloc(sizeof (char *) * (argc + 2), UM_SLEEP); 3256 pargv[pargc++] = strbasename(IOP_NAME(pt->p_aout_fio)); 3257 3258 for (i = 0; i < argc; i++) { 3259 if (argv[i].a_type != MDB_TYPE_STRING) { 3260 mdb_free(pargv, sizeof (char *) * (argc + 2)); 3261 return (set_errno(EINVAL)); 3262 } 3263 if (argv[i].a_un.a_str[0] == '<') 3264 pt->p_stdin = argv[i].a_un.a_str + 1; 3265 else if (argv[i].a_un.a_str[0] == '>') 3266 pt->p_stdout = argv[i].a_un.a_str + 1; 3267 else 3268 pargv[pargc++] = argv[i].a_un.a_str; 3269 } 3270 pargv[pargc] = NULL; 3271 3272 /* 3273 * Since Pcreate() uses execvp() and "." may not be present in $PATH, 3274 * we must manually prepend "./" when the executable is a simple name. 3275 */ 3276 if (strchr(IOP_NAME(pt->p_aout_fio), '/') == NULL) { 3277 (void) snprintf(execname, sizeof (execname), "./%s", 3278 IOP_NAME(pt->p_aout_fio)); 3279 } else { 3280 (void) snprintf(execname, sizeof (execname), "%s", 3281 IOP_NAME(pt->p_aout_fio)); 3282 } 3283 3284 penv = mdb_alloc((mdb_nv_size(&pt->p_env)+ 1) * sizeof (char *), 3285 UM_SLEEP); 3286 for (mdb_nv_rewind(&pt->p_env), i = 0; 3287 (v = mdb_nv_advance(&pt->p_env)) != NULL; i++) 3288 penv[i] = mdb_nv_get_cookie(v); 3289 penv[i] = NULL; 3290 3291 P = Pxcreate(execname, (char **)pargv, penv, &perr, NULL, 0); 3292 mdb_free(pargv, sizeof (char *) * (argc + 2)); 3293 pt->p_stdin = pt->p_stdout = NULL; 3294 3295 mdb_free(penv, i * sizeof (char *)); 3296 3297 if (P == NULL) { 3298 warn("failed to create process: %s\n", Pcreate_error(perr)); 3299 return (set_errno(EMDB_TGT)); 3300 } 3301 3302 if (t->t_pshandle != NULL) { 3303 pt_pre_detach(t, TRUE); 3304 if (t->t_pshandle != pt->p_idlehandle) 3305 Prelease(t->t_pshandle, pt->p_rflags); 3306 } 3307 3308 (void) Punsetflags(P, PR_RLC); /* make sure run-on-last-close is off */ 3309 (void) Psetflags(P, PR_KLC); /* kill on last close by debugger */ 3310 pt->p_rflags = PRELEASE_KILL; /* kill on debugger Prelease */ 3311 t->t_pshandle = P; 3312 3313 pt_post_attach(t); 3314 pt_activate_common(t); 3315 (void) mdb_tgt_status(t, &t->t_status); 3316 mdb.m_flags |= MDB_FL_VCREATE; 3317 3318 return (0); 3319 } 3320 3321 /* 3322 * Forward a signal to the victim process in order to force it to stop or die. 3323 * Refer to the comments above pt_setrun(), below, for more info. 3324 */ 3325 /*ARGSUSED*/ 3326 static void 3327 pt_sigfwd(int sig, siginfo_t *sip, ucontext_t *ucp, mdb_tgt_t *t) 3328 { 3329 struct ps_prochandle *P = t->t_pshandle; 3330 const lwpstatus_t *psp = &Pstatus(P)->pr_lwp; 3331 pid_t pid = Pstatus(P)->pr_pid; 3332 long ctl[2]; 3333 3334 if (getpgid(pid) != mdb.m_pgid) { 3335 mdb_dprintf(MDB_DBG_TGT, "fwd SIG#%d to %d\n", sig, (int)pid); 3336 (void) kill(pid, sig); 3337 } 3338 3339 if (Pwait(P, 1) == 0 && (psp->pr_flags & PR_STOPPED) && 3340 psp->pr_why == PR_JOBCONTROL && Pdstop(P) == 0) { 3341 /* 3342 * If we're job control stopped and our DSTOP is pending, the 3343 * victim will never see our signal, so undo the kill() and 3344 * then send SIGCONT the victim to kick it out of the job 3345 * control stop and force our DSTOP to take effect. 3346 */ 3347 if ((psp->pr_flags & PR_DSTOP) && 3348 prismember(&Pstatus(P)->pr_sigpend, sig)) { 3349 ctl[0] = PCUNKILL; 3350 ctl[1] = sig; 3351 (void) write(Pctlfd(P), ctl, sizeof (ctl)); 3352 } 3353 3354 mdb_dprintf(MDB_DBG_TGT, "fwd SIGCONT to %d\n", (int)pid); 3355 (void) kill(pid, SIGCONT); 3356 } 3357 } 3358 3359 /* 3360 * Common code for step and continue: if no victim process has been created, 3361 * call pt_run() to create one. Then set the victim running, clearing any 3362 * pending fault. One special case is that if the victim was previously 3363 * stopped on reception of SIGINT, we know that SIGINT was traced and the user 3364 * requested the victim to stop, so clear this signal before continuing. 3365 * For all other traced signals, the signal will be delivered on continue. 3366 * 3367 * Once the victim process is running, we wait for it to stop on an event of 3368 * interest. Although libproc provides the basic primitive to wait for the 3369 * victim, we must be careful in our handling of signals. We want to allow the 3370 * user to issue a SIGINT or SIGQUIT using the designated terminal control 3371 * character (typically ^C and ^\), and have these signals stop the target and 3372 * return control to the debugger if the signals are traced. There are three 3373 * cases to be considered in our implementation: 3374 * 3375 * (1) If the debugger and victim are in the same process group, both receive 3376 * the signal from the terminal driver. The debugger returns from Pwait() with 3377 * errno = EINTR, so we want to loop back and continue waiting until the victim 3378 * stops on receipt of its SIGINT or SIGQUIT. 3379 * 3380 * (2) If the debugger and victim are in different process groups, and the 3381 * victim is a member of the foreground process group, it will receive the 3382 * signal from the terminal driver and the debugger will not. As such, we 3383 * will remain blocked in Pwait() until the victim stops on its signal. 3384 * 3385 * (3) If the debugger and victim are in different process groups, and the 3386 * debugger is a member of the foreground process group, it will receive the 3387 * signal from the terminal driver, and the victim will not. The debugger 3388 * returns from Pwait() with errno = EINTR, so we need to forward the signal 3389 * to the victim process directly and then Pwait() again for it to stop. 3390 * 3391 * We can observe that all three cases are handled by simply calling Pwait() 3392 * repeatedly if it fails with EINTR, and forwarding SIGINT and SIGQUIT to 3393 * the victim if it is in a different process group, using pt_sigfwd() above. 3394 * 3395 * An additional complication is that the process may not be able to field 3396 * the signal if it is currently stopped by job control. In this case, we 3397 * also DSTOP the process, and then send it a SIGCONT to wake it up from 3398 * job control and force it to re-enter stop() under the control of /proc. 3399 * 3400 * Finally, we would like to allow the user to suspend the process using the 3401 * terminal suspend character (typically ^Z) if both are in the same session. 3402 * We again employ pt_sigfwd() to forward SIGTSTP to the victim, wait for it to 3403 * stop from job control, and then capture it using /proc. Once the process 3404 * has stopped, normal SIGTSTP processing is restored and the user can issue 3405 * another ^Z in order to suspend the debugger and return to the parent shell. 3406 */ 3407 static int 3408 pt_setrun(mdb_tgt_t *t, mdb_tgt_status_t *tsp, int flags) 3409 { 3410 struct ps_prochandle *P = t->t_pshandle; 3411 pt_data_t *pt = t->t_data; 3412 pid_t old_pgid = -1; 3413 3414 mdb_signal_f *intf, *quitf, *tstpf; 3415 const lwpstatus_t *psp; 3416 void *intd, *quitd, *tstpd; 3417 3418 int sig = pt->p_signal; 3419 int error = 0; 3420 int pgid = -1; 3421 3422 pt->p_signal = 0; /* clear pending signal */ 3423 3424 if (P == NULL && pt_run(t, 0, NULL) == -1) 3425 return (-1); /* errno is set for us */ 3426 3427 P = t->t_pshandle; 3428 psp = &Pstatus(P)->pr_lwp; 3429 3430 if (sig == 0 && psp->pr_why == PR_SIGNALLED && psp->pr_what == SIGINT) 3431 flags |= PRCSIG; /* clear pending SIGINT */ 3432 else 3433 flags |= PRCFAULT; /* clear any pending fault (e.g. BPT) */ 3434 3435 intf = mdb_signal_gethandler(SIGINT, &intd); 3436 quitf = mdb_signal_gethandler(SIGQUIT, &quitd); 3437 tstpf = mdb_signal_gethandler(SIGTSTP, &tstpd); 3438 3439 (void) mdb_signal_sethandler(SIGINT, (mdb_signal_f *)pt_sigfwd, t); 3440 (void) mdb_signal_sethandler(SIGQUIT, (mdb_signal_f *)pt_sigfwd, t); 3441 (void) mdb_signal_sethandler(SIGTSTP, (mdb_signal_f *)pt_sigfwd, t); 3442 3443 if (sig != 0 && Pstate(P) == PS_RUN && 3444 kill(Pstatus(P)->pr_pid, sig) == -1) { 3445 error = errno; 3446 goto out; 3447 } 3448 3449 /* 3450 * If we attached to a job stopped background process in the same 3451 * session, make its pgid the foreground process group before running 3452 * it. Ignore SIGTTOU while doing this to avoid being suspended. 3453 */ 3454 if (mdb.m_flags & MDB_FL_JOBCTL) { 3455 (void) mdb_signal_sethandler(SIGTTOU, SIG_IGN, NULL); 3456 (void) IOP_CTL(mdb.m_term, TIOCGPGRP, &old_pgid); 3457 (void) IOP_CTL(mdb.m_term, TIOCSPGRP, 3458 (void *)&Pstatus(P)->pr_pgid); 3459 (void) mdb_signal_sethandler(SIGTTOU, SIG_DFL, NULL); 3460 } 3461 3462 if (Pstate(P) != PS_RUN && Psetrun(P, sig, flags) == -1) { 3463 error = errno; 3464 goto out; 3465 } 3466 3467 /* 3468 * If the process is stopped on job control, resume its process group 3469 * by sending it a SIGCONT if we are in the same session. Otherwise 3470 * we have no choice but to wait for someone else to foreground it. 3471 */ 3472 if (psp->pr_why == PR_JOBCONTROL) { 3473 if (mdb.m_flags & MDB_FL_JOBCTL) 3474 (void) kill(-Pstatus(P)->pr_pgid, SIGCONT); 3475 else if (mdb.m_term != NULL) 3476 warn("process is still suspended by job control ...\n"); 3477 } 3478 3479 /* 3480 * Wait for the process to stop. As described above, we loop around if 3481 * we are interrupted (EINTR). If we lose control, attempt to re-open 3482 * the process, or call pt_exec() if that fails to handle a re-exec. 3483 * If the process dies (ENOENT) or Pwait() fails, break out of the loop. 3484 */ 3485 while (Pwait(P, 0) == -1) { 3486 if (errno != EINTR) { 3487 if (Pstate(P) == PS_LOST) { 3488 if (Preopen(P) == 0) 3489 continue; /* Pwait() again */ 3490 else 3491 pt_exec(t, 0, NULL); 3492 } else if (errno != ENOENT) 3493 warn("failed to wait for event"); 3494 break; 3495 } 3496 } 3497 3498 /* 3499 * If we changed the foreground process group, restore the old pgid 3500 * while ignoring SIGTTOU so we are not accidentally suspended. 3501 */ 3502 if (old_pgid != -1) { 3503 (void) mdb_signal_sethandler(SIGTTOU, SIG_IGN, NULL); 3504 (void) IOP_CTL(mdb.m_term, TIOCSPGRP, &pgid); 3505 (void) mdb_signal_sethandler(SIGTTOU, SIG_DFL, NULL); 3506 } 3507 3508 /* 3509 * If we're now stopped on exit from a successful exec, release any 3510 * vfork parents and clean out their address space before returning 3511 * to tgt_continue() and perturbing the list of armed event specs. 3512 * If we're stopped for any other reason, just update the mappings. 3513 */ 3514 switch (Pstate(P)) { 3515 case PS_STOP: 3516 if (psp->pr_why == PR_SYSEXIT && psp->pr_errno == 0 && 3517 (psp->pr_what == SYS_exec || psp->pr_what == SYS_execve)) 3518 pt_release_parents(t); 3519 else 3520 Pupdate_maps(P); 3521 break; 3522 3523 case PS_UNDEAD: 3524 case PS_LOST: 3525 pt_release_parents(t); 3526 break; 3527 } 3528 3529 out: 3530 (void) mdb_signal_sethandler(SIGINT, intf, intd); 3531 (void) mdb_signal_sethandler(SIGQUIT, quitf, quitd); 3532 (void) mdb_signal_sethandler(SIGTSTP, tstpf, tstpd); 3533 (void) pt_status(t, tsp); 3534 3535 return (error ? set_errno(error) : 0); 3536 } 3537 3538 static int 3539 pt_step(mdb_tgt_t *t, mdb_tgt_status_t *tsp) 3540 { 3541 return (pt_setrun(t, tsp, PRSTEP)); 3542 } 3543 3544 static int 3545 pt_continue(mdb_tgt_t *t, mdb_tgt_status_t *tsp) 3546 { 3547 return (pt_setrun(t, tsp, 0)); 3548 } 3549 3550 static int 3551 pt_signal(mdb_tgt_t *t, int sig) 3552 { 3553 pt_data_t *pt = t->t_data; 3554 3555 if (sig > 0 && sig <= pt->p_maxsig) { 3556 pt->p_signal = sig; /* pending until next pt_setrun */ 3557 return (0); 3558 } 3559 3560 return (set_errno(EMDB_BADSIGNUM)); 3561 } 3562 3563 static int 3564 pt_sysenter_ctor(mdb_tgt_t *t, mdb_sespec_t *sep, void *args) 3565 { 3566 struct ps_prochandle *P = t->t_pshandle; 3567 3568 if (P != NULL && Pstate(P) < PS_LOST) { 3569 sep->se_data = args; /* data is raw system call number */ 3570 return (Psysentry(P, (intptr_t)args, TRUE) < 0 ? -1 : 0); 3571 } 3572 3573 return (set_errno(EMDB_NOPROC)); 3574 } 3575 3576 static void 3577 pt_sysenter_dtor(mdb_tgt_t *t, mdb_sespec_t *sep) 3578 { 3579 (void) Psysentry(t->t_pshandle, (intptr_t)sep->se_data, FALSE); 3580 } 3581 3582 /*ARGSUSED*/ 3583 static char * 3584 pt_sysenter_info(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_vespec_t *vep, 3585 mdb_tgt_spec_desc_t *sp, char *buf, size_t nbytes) 3586 { 3587 char name[32]; 3588 int sysnum; 3589 3590 if (vep != NULL) 3591 sysnum = (intptr_t)vep->ve_args; 3592 else 3593 sysnum = (intptr_t)sep->se_data; 3594 3595 (void) proc_sysname(sysnum, name, sizeof (name)); 3596 (void) mdb_iob_snprintf(buf, nbytes, "stop on entry to %s", name); 3597 3598 return (buf); 3599 } 3600 3601 /*ARGSUSED*/ 3602 static int 3603 pt_sysenter_match(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_tgt_status_t *tsp) 3604 { 3605 const lwpstatus_t *psp = &Pstatus(t->t_pshandle)->pr_lwp; 3606 int sysnum = (intptr_t)sep->se_data; 3607 3608 return (psp->pr_why == PR_SYSENTRY && psp->pr_what == sysnum); 3609 } 3610 3611 static const mdb_se_ops_t proc_sysenter_ops = { 3612 pt_sysenter_ctor, /* se_ctor */ 3613 pt_sysenter_dtor, /* se_dtor */ 3614 pt_sysenter_info, /* se_info */ 3615 no_se_secmp, /* se_secmp */ 3616 no_se_vecmp, /* se_vecmp */ 3617 no_se_arm, /* se_arm */ 3618 no_se_disarm, /* se_disarm */ 3619 no_se_cont, /* se_cont */ 3620 pt_sysenter_match /* se_match */ 3621 }; 3622 3623 static int 3624 pt_sysexit_ctor(mdb_tgt_t *t, mdb_sespec_t *sep, void *args) 3625 { 3626 struct ps_prochandle *P = t->t_pshandle; 3627 3628 if (P != NULL && Pstate(P) < PS_LOST) { 3629 sep->se_data = args; /* data is raw system call number */ 3630 return (Psysexit(P, (intptr_t)args, TRUE) < 0 ? -1 : 0); 3631 } 3632 3633 return (set_errno(EMDB_NOPROC)); 3634 } 3635 3636 static void 3637 pt_sysexit_dtor(mdb_tgt_t *t, mdb_sespec_t *sep) 3638 { 3639 (void) Psysexit(t->t_pshandle, (intptr_t)sep->se_data, FALSE); 3640 } 3641 3642 /*ARGSUSED*/ 3643 static char * 3644 pt_sysexit_info(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_vespec_t *vep, 3645 mdb_tgt_spec_desc_t *sp, char *buf, size_t nbytes) 3646 { 3647 char name[32]; 3648 int sysnum; 3649 3650 if (vep != NULL) 3651 sysnum = (intptr_t)vep->ve_args; 3652 else 3653 sysnum = (intptr_t)sep->se_data; 3654 3655 (void) proc_sysname(sysnum, name, sizeof (name)); 3656 (void) mdb_iob_snprintf(buf, nbytes, "stop on exit from %s", name); 3657 3658 return (buf); 3659 } 3660 3661 /*ARGSUSED*/ 3662 static int 3663 pt_sysexit_match(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_tgt_status_t *tsp) 3664 { 3665 const lwpstatus_t *psp = &Pstatus(t->t_pshandle)->pr_lwp; 3666 int sysnum = (intptr_t)sep->se_data; 3667 3668 return (psp->pr_why == PR_SYSEXIT && psp->pr_what == sysnum); 3669 } 3670 3671 static const mdb_se_ops_t proc_sysexit_ops = { 3672 pt_sysexit_ctor, /* se_ctor */ 3673 pt_sysexit_dtor, /* se_dtor */ 3674 pt_sysexit_info, /* se_info */ 3675 no_se_secmp, /* se_secmp */ 3676 no_se_vecmp, /* se_vecmp */ 3677 no_se_arm, /* se_arm */ 3678 no_se_disarm, /* se_disarm */ 3679 no_se_cont, /* se_cont */ 3680 pt_sysexit_match /* se_match */ 3681 }; 3682 3683 static int 3684 pt_signal_ctor(mdb_tgt_t *t, mdb_sespec_t *sep, void *args) 3685 { 3686 struct ps_prochandle *P = t->t_pshandle; 3687 3688 if (P != NULL && Pstate(P) < PS_LOST) { 3689 sep->se_data = args; /* data is raw signal number */ 3690 return (Psignal(P, (intptr_t)args, TRUE) < 0 ? -1 : 0); 3691 } 3692 3693 return (set_errno(EMDB_NOPROC)); 3694 } 3695 3696 static void 3697 pt_signal_dtor(mdb_tgt_t *t, mdb_sespec_t *sep) 3698 { 3699 (void) Psignal(t->t_pshandle, (intptr_t)sep->se_data, FALSE); 3700 } 3701 3702 /*ARGSUSED*/ 3703 static char * 3704 pt_signal_info(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_vespec_t *vep, 3705 mdb_tgt_spec_desc_t *sp, char *buf, size_t nbytes) 3706 { 3707 char name[SIG2STR_MAX]; 3708 int signum; 3709 3710 if (vep != NULL) 3711 signum = (intptr_t)vep->ve_args; 3712 else 3713 signum = (intptr_t)sep->se_data; 3714 3715 (void) proc_signame(signum, name, sizeof (name)); 3716 (void) mdb_iob_snprintf(buf, nbytes, "stop on %s", name); 3717 3718 return (buf); 3719 } 3720 3721 /*ARGSUSED*/ 3722 static int 3723 pt_signal_match(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_tgt_status_t *tsp) 3724 { 3725 const lwpstatus_t *psp = &Pstatus(t->t_pshandle)->pr_lwp; 3726 int signum = (intptr_t)sep->se_data; 3727 3728 return (psp->pr_why == PR_SIGNALLED && psp->pr_what == signum); 3729 } 3730 3731 static const mdb_se_ops_t proc_signal_ops = { 3732 pt_signal_ctor, /* se_ctor */ 3733 pt_signal_dtor, /* se_dtor */ 3734 pt_signal_info, /* se_info */ 3735 no_se_secmp, /* se_secmp */ 3736 no_se_vecmp, /* se_vecmp */ 3737 no_se_arm, /* se_arm */ 3738 no_se_disarm, /* se_disarm */ 3739 no_se_cont, /* se_cont */ 3740 pt_signal_match /* se_match */ 3741 }; 3742 3743 static int 3744 pt_fault_ctor(mdb_tgt_t *t, mdb_sespec_t *sep, void *args) 3745 { 3746 struct ps_prochandle *P = t->t_pshandle; 3747 3748 if (P != NULL && Pstate(P) < PS_LOST) { 3749 sep->se_data = args; /* data is raw fault number */ 3750 return (Pfault(P, (intptr_t)args, TRUE) < 0 ? -1 : 0); 3751 } 3752 3753 return (set_errno(EMDB_NOPROC)); 3754 } 3755 3756 static void 3757 pt_fault_dtor(mdb_tgt_t *t, mdb_sespec_t *sep) 3758 { 3759 int fault = (intptr_t)sep->se_data; 3760 3761 if (fault != FLTBPT && fault != FLTTRACE && fault != FLTWATCH) 3762 (void) Pfault(t->t_pshandle, fault, FALSE); 3763 } 3764 3765 /*ARGSUSED*/ 3766 static char * 3767 pt_fault_info(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_vespec_t *vep, 3768 mdb_tgt_spec_desc_t *sp, char *buf, size_t nbytes) 3769 { 3770 char name[32]; 3771 int fltnum; 3772 3773 if (vep != NULL) 3774 fltnum = (intptr_t)vep->ve_args; 3775 else 3776 fltnum = (intptr_t)sep->se_data; 3777 3778 (void) proc_fltname(fltnum, name, sizeof (name)); 3779 (void) mdb_iob_snprintf(buf, nbytes, "stop on %s", name); 3780 3781 return (buf); 3782 } 3783 3784 /*ARGSUSED*/ 3785 static int 3786 pt_fault_match(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_tgt_status_t *tsp) 3787 { 3788 const lwpstatus_t *psp = &Pstatus(t->t_pshandle)->pr_lwp; 3789 int fltnum = (intptr_t)sep->se_data; 3790 3791 return (psp->pr_why == PR_FAULTED && psp->pr_what == fltnum); 3792 } 3793 3794 static const mdb_se_ops_t proc_fault_ops = { 3795 pt_fault_ctor, /* se_ctor */ 3796 pt_fault_dtor, /* se_dtor */ 3797 pt_fault_info, /* se_info */ 3798 no_se_secmp, /* se_secmp */ 3799 no_se_vecmp, /* se_vecmp */ 3800 no_se_arm, /* se_arm */ 3801 no_se_disarm, /* se_disarm */ 3802 no_se_cont, /* se_cont */ 3803 pt_fault_match /* se_match */ 3804 }; 3805 3806 /* 3807 * Callback for pt_ignore() dcmd above: for each VID, determine if it 3808 * corresponds to a vespec that traces the specified signal, and delete it. 3809 */ 3810 /*ARGSUSED*/ 3811 static int 3812 pt_ignore_sig(mdb_tgt_t *t, void *sig, int vid, void *data) 3813 { 3814 mdb_vespec_t *vep = mdb_tgt_vespec_lookup(t, vid); 3815 3816 if (vep->ve_se->se_ops == &proc_signal_ops && vep->ve_args == sig) 3817 (void) mdb_tgt_vespec_delete(t, vid); 3818 3819 return (0); 3820 } 3821 3822 static int 3823 pt_brkpt_ctor(mdb_tgt_t *t, mdb_sespec_t *sep, void *args) 3824 { 3825 pt_data_t *pt = t->t_data; 3826 pt_bparg_t *pta = args; 3827 pt_brkpt_t *ptb; 3828 GElf_Sym s; 3829 3830 if (t->t_pshandle == NULL || Pstate(t->t_pshandle) >= PS_LOST) 3831 return (set_errno(EMDB_NOPROC)); 3832 3833 if (pta->pta_symbol != NULL) { 3834 if (!pt->p_rtld_finished && 3835 strchr(pta->pta_symbol, '`') == NULL) 3836 return (set_errno(EMDB_NOSYM)); 3837 if (mdb_tgt_lookup_by_scope(t, pta->pta_symbol, &s, 3838 NULL) == -1) { 3839 if (errno != EMDB_NOOBJ && !(errno == EMDB_NOSYM && 3840 (!(mdb.m_flags & MDB_FL_BPTNOSYMSTOP) || 3841 !pt->p_rtld_finished))) { 3842 warn("breakpoint %s activation failed", 3843 pta->pta_symbol); 3844 } 3845 return (-1); /* errno is set for us */ 3846 } 3847 3848 pta->pta_addr = (uintptr_t)s.st_value; 3849 } 3850 3851 #ifdef __sparc 3852 if (pta->pta_addr & 3) 3853 return (set_errno(EMDB_BPALIGN)); 3854 #endif 3855 3856 if (Paddr_to_map(t->t_pshandle, pta->pta_addr) == NULL) 3857 return (set_errno(EMDB_NOMAP)); 3858 3859 ptb = mdb_alloc(sizeof (pt_brkpt_t), UM_SLEEP); 3860 ptb->ptb_addr = pta->pta_addr; 3861 ptb->ptb_instr = NULL; 3862 sep->se_data = ptb; 3863 3864 return (0); 3865 } 3866 3867 /*ARGSUSED*/ 3868 static void 3869 pt_brkpt_dtor(mdb_tgt_t *t, mdb_sespec_t *sep) 3870 { 3871 mdb_free(sep->se_data, sizeof (pt_brkpt_t)); 3872 } 3873 3874 /*ARGSUSED*/ 3875 static char * 3876 pt_brkpt_info(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_vespec_t *vep, 3877 mdb_tgt_spec_desc_t *sp, char *buf, size_t nbytes) 3878 { 3879 uintptr_t addr = NULL; 3880 3881 if (vep != NULL) { 3882 pt_bparg_t *pta = vep->ve_args; 3883 3884 if (pta->pta_symbol != NULL) { 3885 (void) mdb_iob_snprintf(buf, nbytes, "stop at %s", 3886 pta->pta_symbol); 3887 } else { 3888 (void) mdb_iob_snprintf(buf, nbytes, "stop at %a", 3889 pta->pta_addr); 3890 addr = pta->pta_addr; 3891 } 3892 3893 } else { 3894 addr = ((pt_brkpt_t *)sep->se_data)->ptb_addr; 3895 (void) mdb_iob_snprintf(buf, nbytes, "stop at %a", addr); 3896 } 3897 3898 sp->spec_base = addr; 3899 sp->spec_size = sizeof (instr_t); 3900 3901 return (buf); 3902 } 3903 3904 static int 3905 pt_brkpt_secmp(mdb_tgt_t *t, mdb_sespec_t *sep, void *args) 3906 { 3907 pt_brkpt_t *ptb = sep->se_data; 3908 pt_bparg_t *pta = args; 3909 GElf_Sym sym; 3910 3911 if (pta->pta_symbol != NULL) { 3912 return (mdb_tgt_lookup_by_scope(t, pta->pta_symbol, 3913 &sym, NULL) == 0 && sym.st_value == ptb->ptb_addr); 3914 } 3915 3916 return (pta->pta_addr == ptb->ptb_addr); 3917 } 3918 3919 /*ARGSUSED*/ 3920 static int 3921 pt_brkpt_vecmp(mdb_tgt_t *t, mdb_vespec_t *vep, void *args) 3922 { 3923 pt_bparg_t *pta1 = vep->ve_args; 3924 pt_bparg_t *pta2 = args; 3925 3926 if (pta1->pta_symbol != NULL && pta2->pta_symbol != NULL) 3927 return (strcmp(pta1->pta_symbol, pta2->pta_symbol) == 0); 3928 3929 if (pta1->pta_symbol == NULL && pta2->pta_symbol == NULL) 3930 return (pta1->pta_addr == pta2->pta_addr); 3931 3932 return (0); /* fail if one is symbolic, other is an explicit address */ 3933 } 3934 3935 static int 3936 pt_brkpt_arm(mdb_tgt_t *t, mdb_sespec_t *sep) 3937 { 3938 pt_brkpt_t *ptb = sep->se_data; 3939 return (Psetbkpt(t->t_pshandle, ptb->ptb_addr, &ptb->ptb_instr)); 3940 } 3941 3942 /* 3943 * In order to disarm a breakpoint, we replace the trap instruction at ptb_addr 3944 * with the saved instruction. However, if we have stopped after a successful 3945 * exec(2), we do not want to restore ptb_instr because the address space has 3946 * now been replaced with the text of a different executable, and so restoring 3947 * the saved instruction would be incorrect. The exec itself has effectively 3948 * removed all breakpoint trap instructions for us, so we can just return. 3949 */ 3950 static int 3951 pt_brkpt_disarm(mdb_tgt_t *t, mdb_sespec_t *sep) 3952 { 3953 const lwpstatus_t *psp = &Pstatus(t->t_pshandle)->pr_lwp; 3954 pt_brkpt_t *ptb = sep->se_data; 3955 3956 if ((psp->pr_why == PR_SYSEXIT && psp->pr_errno == 0) && 3957 (psp->pr_what == SYS_exec || psp->pr_what == SYS_execve)) 3958 return (0); /* do not restore saved instruction */ 3959 3960 return (Pdelbkpt(t->t_pshandle, ptb->ptb_addr, ptb->ptb_instr)); 3961 } 3962 3963 /* 3964 * Determine whether the specified sespec is an armed watchpoint that overlaps 3965 * with the given breakpoint and has the given flags set. We use this to find 3966 * conflicts with breakpoints, below. 3967 */ 3968 static int 3969 pt_wp_overlap(mdb_sespec_t *sep, pt_brkpt_t *ptb, int flags) 3970 { 3971 const prwatch_t *wp = sep->se_data; 3972 3973 return (sep->se_state == MDB_TGT_SPEC_ARMED && 3974 sep->se_ops == &proc_wapt_ops && (wp->pr_wflags & flags) && 3975 ptb->ptb_addr - wp->pr_vaddr < wp->pr_size); 3976 } 3977 3978 /* 3979 * We step over breakpoints using Pxecbkpt() in libproc. If a conflicting 3980 * watchpoint is present, we must temporarily remove it before stepping over 3981 * the breakpoint so we do not immediately re-trigger the watchpoint. We know 3982 * the watchpoint has already triggered on our trap instruction as part of 3983 * fetching it. Before we return, we must re-install any disabled watchpoints. 3984 */ 3985 static int 3986 pt_brkpt_cont(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_tgt_status_t *tsp) 3987 { 3988 pt_brkpt_t *ptb = sep->se_data; 3989 int status = -1; 3990 int error; 3991 const lwpstatus_t *psp = &Pstatus(t->t_pshandle)->pr_lwp; 3992 3993 /* 3994 * If the PC no longer matches our original address, then the user has 3995 * changed it while we have been stopped. In this case, it no longer 3996 * makes any sense to continue over this breakpoint. We return as if we 3997 * continued normally. 3998 */ 3999 if ((uintptr_t)psp->pr_info.si_addr != psp->pr_reg[R_PC]) 4000 return (pt_status(t, tsp)); 4001 4002 for (sep = mdb_list_next(&t->t_active); sep; sep = mdb_list_next(sep)) { 4003 if (pt_wp_overlap(sep, ptb, WA_EXEC)) 4004 (void) Pdelwapt(t->t_pshandle, sep->se_data); 4005 } 4006 4007 if (Pxecbkpt(t->t_pshandle, ptb->ptb_instr) == 0 && 4008 Pdelbkpt(t->t_pshandle, ptb->ptb_addr, ptb->ptb_instr) == 0) 4009 status = pt_status(t, tsp); 4010 4011 error = errno; /* save errno from Pxecbkpt, Pdelbkpt, or pt_status */ 4012 4013 for (sep = mdb_list_next(&t->t_active); sep; sep = mdb_list_next(sep)) { 4014 if (pt_wp_overlap(sep, ptb, WA_EXEC) && 4015 Psetwapt(t->t_pshandle, sep->se_data) == -1) { 4016 sep->se_state = MDB_TGT_SPEC_ERROR; 4017 sep->se_errno = errno; 4018 } 4019 } 4020 4021 (void) set_errno(error); 4022 return (status); 4023 } 4024 4025 /*ARGSUSED*/ 4026 static int 4027 pt_brkpt_match(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_tgt_status_t *tsp) 4028 { 4029 const lwpstatus_t *psp = &Pstatus(t->t_pshandle)->pr_lwp; 4030 pt_brkpt_t *ptb = sep->se_data; 4031 4032 return (psp->pr_why == PR_FAULTED && psp->pr_what == FLTBPT && 4033 psp->pr_reg[R_PC] == ptb->ptb_addr); 4034 } 4035 4036 static const mdb_se_ops_t proc_brkpt_ops = { 4037 pt_brkpt_ctor, /* se_ctor */ 4038 pt_brkpt_dtor, /* se_dtor */ 4039 pt_brkpt_info, /* se_info */ 4040 pt_brkpt_secmp, /* se_secmp */ 4041 pt_brkpt_vecmp, /* se_vecmp */ 4042 pt_brkpt_arm, /* se_arm */ 4043 pt_brkpt_disarm, /* se_disarm */ 4044 pt_brkpt_cont, /* se_cont */ 4045 pt_brkpt_match /* se_match */ 4046 }; 4047 4048 static int 4049 pt_wapt_ctor(mdb_tgt_t *t, mdb_sespec_t *sep, void *args) 4050 { 4051 if (t->t_pshandle == NULL || Pstate(t->t_pshandle) >= PS_LOST) 4052 return (set_errno(EMDB_NOPROC)); 4053 4054 sep->se_data = mdb_alloc(sizeof (prwatch_t), UM_SLEEP); 4055 bcopy(args, sep->se_data, sizeof (prwatch_t)); 4056 return (0); 4057 } 4058 4059 /*ARGSUSED*/ 4060 static void 4061 pt_wapt_dtor(mdb_tgt_t *t, mdb_sespec_t *sep) 4062 { 4063 mdb_free(sep->se_data, sizeof (prwatch_t)); 4064 } 4065 4066 /*ARGSUSED*/ 4067 static char * 4068 pt_wapt_info(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_vespec_t *vep, 4069 mdb_tgt_spec_desc_t *sp, char *buf, size_t nbytes) 4070 { 4071 prwatch_t *wp = vep != NULL ? vep->ve_args : sep->se_data; 4072 char desc[24]; 4073 4074 ASSERT(wp->pr_wflags != 0); 4075 desc[0] = '\0'; 4076 4077 switch (wp->pr_wflags) { 4078 case WA_READ: 4079 (void) strcat(desc, "/read"); 4080 break; 4081 case WA_WRITE: 4082 (void) strcat(desc, "/write"); 4083 break; 4084 case WA_EXEC: 4085 (void) strcat(desc, "/exec"); 4086 break; 4087 default: 4088 if (wp->pr_wflags & WA_READ) 4089 (void) strcat(desc, "/r"); 4090 if (wp->pr_wflags & WA_WRITE) 4091 (void) strcat(desc, "/w"); 4092 if (wp->pr_wflags & WA_EXEC) 4093 (void) strcat(desc, "/x"); 4094 } 4095 4096 (void) mdb_iob_snprintf(buf, nbytes, "stop on %s of [%la, %la)", 4097 desc + 1, wp->pr_vaddr, wp->pr_vaddr + wp->pr_size); 4098 4099 sp->spec_base = wp->pr_vaddr; 4100 sp->spec_size = wp->pr_size; 4101 4102 return (buf); 4103 } 4104 4105 /*ARGSUSED*/ 4106 static int 4107 pt_wapt_secmp(mdb_tgt_t *t, mdb_sespec_t *sep, void *args) 4108 { 4109 prwatch_t *wp1 = sep->se_data; 4110 prwatch_t *wp2 = args; 4111 4112 return (wp1->pr_vaddr == wp2->pr_vaddr && 4113 wp1->pr_size == wp2->pr_size && wp1->pr_wflags == wp2->pr_wflags); 4114 } 4115 4116 /*ARGSUSED*/ 4117 static int 4118 pt_wapt_vecmp(mdb_tgt_t *t, mdb_vespec_t *vep, void *args) 4119 { 4120 prwatch_t *wp1 = vep->ve_args; 4121 prwatch_t *wp2 = args; 4122 4123 return (wp1->pr_vaddr == wp2->pr_vaddr && 4124 wp1->pr_size == wp2->pr_size && wp1->pr_wflags == wp2->pr_wflags); 4125 } 4126 4127 static int 4128 pt_wapt_arm(mdb_tgt_t *t, mdb_sespec_t *sep) 4129 { 4130 return (Psetwapt(t->t_pshandle, sep->se_data)); 4131 } 4132 4133 static int 4134 pt_wapt_disarm(mdb_tgt_t *t, mdb_sespec_t *sep) 4135 { 4136 return (Pdelwapt(t->t_pshandle, sep->se_data)); 4137 } 4138 4139 /* 4140 * Determine whether the specified sespec is an armed breakpoint at the 4141 * given %pc. We use this to find conflicts with watchpoints below. 4142 */ 4143 static int 4144 pt_bp_overlap(mdb_sespec_t *sep, uintptr_t pc) 4145 { 4146 pt_brkpt_t *ptb = sep->se_data; 4147 4148 return (sep->se_state == MDB_TGT_SPEC_ARMED && 4149 sep->se_ops == &proc_brkpt_ops && ptb->ptb_addr == pc); 4150 } 4151 4152 /* 4153 * We step over watchpoints using Pxecwapt() in libproc. If a conflicting 4154 * breakpoint is present, we must temporarily disarm it before stepping 4155 * over the watchpoint so we do not immediately re-trigger the breakpoint. 4156 * This is similar to the case handled in pt_brkpt_cont(), above. 4157 */ 4158 static int 4159 pt_wapt_cont(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_tgt_status_t *tsp) 4160 { 4161 const lwpstatus_t *psp = &Pstatus(t->t_pshandle)->pr_lwp; 4162 mdb_sespec_t *bep = NULL; 4163 int status = -1; 4164 int error; 4165 4166 /* 4167 * If the PC no longer matches our original address, then the user has 4168 * changed it while we have been stopped. In this case, it no longer 4169 * makes any sense to continue over this instruction. We return as if 4170 * we continued normally. 4171 */ 4172 if ((uintptr_t)psp->pr_info.si_pc != psp->pr_reg[R_PC]) 4173 return (pt_status(t, tsp)); 4174 4175 if (psp->pr_info.si_code != TRAP_XWATCH) { 4176 for (bep = mdb_list_next(&t->t_active); bep != NULL; 4177 bep = mdb_list_next(bep)) { 4178 if (pt_bp_overlap(bep, psp->pr_reg[R_PC])) { 4179 (void) bep->se_ops->se_disarm(t, bep); 4180 bep->se_state = MDB_TGT_SPEC_ACTIVE; 4181 break; 4182 } 4183 } 4184 } 4185 4186 if (Pxecwapt(t->t_pshandle, sep->se_data) == 0) 4187 status = pt_status(t, tsp); 4188 4189 error = errno; /* save errno from Pxecwapt or pt_status */ 4190 4191 if (bep != NULL) 4192 mdb_tgt_sespec_arm_one(t, bep); 4193 4194 (void) set_errno(error); 4195 return (status); 4196 } 4197 4198 /*ARGSUSED*/ 4199 static int 4200 pt_wapt_match(mdb_tgt_t *t, mdb_sespec_t *sep, mdb_tgt_status_t *tsp) 4201 { 4202 const lwpstatus_t *psp = &Pstatus(t->t_pshandle)->pr_lwp; 4203 prwatch_t *wp = sep->se_data; 4204 4205 return (psp->pr_why == PR_FAULTED && psp->pr_what == FLTWATCH && 4206 (uintptr_t)psp->pr_info.si_addr - wp->pr_vaddr < wp->pr_size); 4207 } 4208 4209 static const mdb_se_ops_t proc_wapt_ops = { 4210 pt_wapt_ctor, /* se_ctor */ 4211 pt_wapt_dtor, /* se_dtor */ 4212 pt_wapt_info, /* se_info */ 4213 pt_wapt_secmp, /* se_secmp */ 4214 pt_wapt_vecmp, /* se_vecmp */ 4215 pt_wapt_arm, /* se_arm */ 4216 pt_wapt_disarm, /* se_disarm */ 4217 pt_wapt_cont, /* se_cont */ 4218 pt_wapt_match /* se_match */ 4219 }; 4220 4221 static void 4222 pt_bparg_dtor(mdb_vespec_t *vep) 4223 { 4224 pt_bparg_t *pta = vep->ve_args; 4225 4226 if (pta->pta_symbol != NULL) 4227 strfree(pta->pta_symbol); 4228 4229 mdb_free(pta, sizeof (pt_bparg_t)); 4230 } 4231 4232 static int 4233 pt_add_vbrkpt(mdb_tgt_t *t, uintptr_t addr, 4234 int spec_flags, mdb_tgt_se_f *func, void *data) 4235 { 4236 pt_bparg_t *pta = mdb_alloc(sizeof (pt_bparg_t), UM_SLEEP); 4237 4238 pta->pta_symbol = NULL; 4239 pta->pta_addr = addr; 4240 4241 return (mdb_tgt_vespec_insert(t, &proc_brkpt_ops, spec_flags, 4242 func, data, pta, pt_bparg_dtor)); 4243 } 4244 4245 static int 4246 pt_add_sbrkpt(mdb_tgt_t *t, const char *sym, 4247 int spec_flags, mdb_tgt_se_f *func, void *data) 4248 { 4249 pt_bparg_t *pta; 4250 4251 if (sym[0] == '`') { 4252 (void) set_errno(EMDB_NOOBJ); 4253 return (0); 4254 } 4255 4256 if (sym[strlen(sym) - 1] == '`') { 4257 (void) set_errno(EMDB_NOSYM); 4258 return (0); 4259 } 4260 4261 pta = mdb_alloc(sizeof (pt_bparg_t), UM_SLEEP); 4262 pta->pta_symbol = strdup(sym); 4263 pta->pta_addr = NULL; 4264 4265 return (mdb_tgt_vespec_insert(t, &proc_brkpt_ops, spec_flags, 4266 func, data, pta, pt_bparg_dtor)); 4267 } 4268 4269 static int 4270 pt_wparg_overlap(const prwatch_t *wp1, const prwatch_t *wp2) 4271 { 4272 if (wp2->pr_vaddr + wp2->pr_size <= wp1->pr_vaddr) 4273 return (0); /* no range overlap */ 4274 4275 if (wp1->pr_vaddr + wp1->pr_size <= wp2->pr_vaddr) 4276 return (0); /* no range overlap */ 4277 4278 return (wp1->pr_vaddr != wp2->pr_vaddr || 4279 wp1->pr_size != wp2->pr_size || wp1->pr_wflags != wp2->pr_wflags); 4280 } 4281 4282 static void 4283 pt_wparg_dtor(mdb_vespec_t *vep) 4284 { 4285 mdb_free(vep->ve_args, sizeof (prwatch_t)); 4286 } 4287 4288 static int 4289 pt_add_vwapt(mdb_tgt_t *t, uintptr_t addr, size_t len, uint_t wflags, 4290 int spec_flags, mdb_tgt_se_f *func, void *data) 4291 { 4292 prwatch_t *wp = mdb_alloc(sizeof (prwatch_t), UM_SLEEP); 4293 mdb_sespec_t *sep; 4294 4295 wp->pr_vaddr = addr; 4296 wp->pr_size = len; 4297 wp->pr_wflags = 0; 4298 4299 if (wflags & MDB_TGT_WA_R) 4300 wp->pr_wflags |= WA_READ; 4301 if (wflags & MDB_TGT_WA_W) 4302 wp->pr_wflags |= WA_WRITE; 4303 if (wflags & MDB_TGT_WA_X) 4304 wp->pr_wflags |= WA_EXEC; 4305 4306 for (sep = mdb_list_next(&t->t_active); sep; sep = mdb_list_next(sep)) { 4307 if (sep->se_ops == &proc_wapt_ops && 4308 mdb_list_next(&sep->se_velist) != NULL && 4309 pt_wparg_overlap(wp, sep->se_data)) 4310 goto dup; 4311 } 4312 4313 for (sep = mdb_list_next(&t->t_idle); sep; sep = mdb_list_next(sep)) { 4314 if (sep->se_ops == &proc_wapt_ops && pt_wparg_overlap(wp, 4315 ((mdb_vespec_t *)mdb_list_next(&sep->se_velist))->ve_args)) 4316 goto dup; 4317 } 4318 4319 return (mdb_tgt_vespec_insert(t, &proc_wapt_ops, spec_flags, 4320 func, data, wp, pt_wparg_dtor)); 4321 4322 dup: 4323 mdb_free(wp, sizeof (prwatch_t)); 4324 (void) set_errno(EMDB_WPDUP); 4325 return (0); 4326 } 4327 4328 static int 4329 pt_add_sysenter(mdb_tgt_t *t, int sysnum, 4330 int spec_flags, mdb_tgt_se_f *func, void *data) 4331 { 4332 if (sysnum <= 0 || sysnum > PRMAXSYS) { 4333 (void) set_errno(EMDB_BADSYSNUM); 4334 return (0); 4335 } 4336 4337 return (mdb_tgt_vespec_insert(t, &proc_sysenter_ops, spec_flags, 4338 func, data, (void *)(uintptr_t)sysnum, no_ve_dtor)); 4339 } 4340 4341 static int 4342 pt_add_sysexit(mdb_tgt_t *t, int sysnum, 4343 int spec_flags, mdb_tgt_se_f *func, void *data) 4344 { 4345 if (sysnum <= 0 || sysnum > PRMAXSYS) { 4346 (void) set_errno(EMDB_BADSYSNUM); 4347 return (0); 4348 } 4349 4350 return (mdb_tgt_vespec_insert(t, &proc_sysexit_ops, spec_flags, 4351 func, data, (void *)(uintptr_t)sysnum, no_ve_dtor)); 4352 } 4353 4354 static int 4355 pt_add_signal(mdb_tgt_t *t, int signum, 4356 int spec_flags, mdb_tgt_se_f *func, void *data) 4357 { 4358 pt_data_t *pt = t->t_data; 4359 4360 if (signum <= 0 || signum > pt->p_maxsig) { 4361 (void) set_errno(EMDB_BADSIGNUM); 4362 return (0); 4363 } 4364 4365 return (mdb_tgt_vespec_insert(t, &proc_signal_ops, spec_flags, 4366 func, data, (void *)(uintptr_t)signum, no_ve_dtor)); 4367 } 4368 4369 static int 4370 pt_add_fault(mdb_tgt_t *t, int fltnum, 4371 int spec_flags, mdb_tgt_se_f *func, void *data) 4372 { 4373 if (fltnum <= 0 || fltnum > PRMAXFAULT) { 4374 (void) set_errno(EMDB_BADFLTNUM); 4375 return (0); 4376 } 4377 4378 return (mdb_tgt_vespec_insert(t, &proc_fault_ops, spec_flags, 4379 func, data, (void *)(uintptr_t)fltnum, no_ve_dtor)); 4380 } 4381 4382 static int 4383 pt_getareg(mdb_tgt_t *t, mdb_tgt_tid_t tid, 4384 const char *rname, mdb_tgt_reg_t *rp) 4385 { 4386 pt_data_t *pt = t->t_data; 4387 prgregset_t grs; 4388 mdb_var_t *v; 4389 4390 if (t->t_pshandle == NULL) 4391 return (set_errno(EMDB_NOPROC)); 4392 4393 if ((v = mdb_nv_lookup(&pt->p_regs, rname)) != NULL) { 4394 uintmax_t rd_nval = mdb_nv_get_value(v); 4395 ushort_t rd_num = MDB_TGT_R_NUM(rd_nval); 4396 ushort_t rd_flags = MDB_TGT_R_FLAGS(rd_nval); 4397 4398 if (!MDB_TGT_R_IS_FP(rd_flags)) { 4399 mdb_tgt_reg_t r = 0; 4400 4401 #if defined(__sparc) && defined(_ILP32) 4402 /* 4403 * If we are debugging on 32-bit SPARC, the globals and 4404 * outs can have 32 upper bits hiding in the xregs. 4405 */ 4406 /* gcc doesn't like >= R_G0 because R_G0 == 0 */ 4407 int is_g = (rd_num == R_G0 || 4408 rd_num >= R_G1 && rd_num <= R_G7); 4409 int is_o = (rd_num >= R_O0 && rd_num <= R_O7); 4410 prxregset_t xrs; 4411 4412 if (is_g && PTL_GETXREGS(t, tid, &xrs) == 0 && 4413 xrs.pr_type == XR_TYPE_V8P) { 4414 r |= (uint64_t)xrs.pr_un.pr_v8p.pr_xg[ 4415 rd_num - R_G0 + XR_G0] << 32; 4416 } 4417 4418 if (is_o && PTL_GETXREGS(t, tid, &xrs) == 0 && 4419 xrs.pr_type == XR_TYPE_V8P) { 4420 r |= (uint64_t)xrs.pr_un.pr_v8p.pr_xo[ 4421 rd_num - R_O0 + XR_O0] << 32; 4422 } 4423 #endif /* __sparc && _ILP32 */ 4424 4425 /* 4426 * Avoid sign-extension by casting: recall that procfs 4427 * defines prgreg_t as a long or int and our native 4428 * register handling uses uint64_t's. 4429 */ 4430 if (PTL_GETREGS(t, tid, grs) == 0) { 4431 *rp = r | (ulong_t)grs[rd_num]; 4432 return (0); 4433 } 4434 return (-1); 4435 } else 4436 return (pt_getfpreg(t, tid, rd_num, rd_flags, rp)); 4437 } 4438 4439 return (set_errno(EMDB_BADREG)); 4440 } 4441 4442 static int 4443 pt_putareg(mdb_tgt_t *t, mdb_tgt_tid_t tid, const char *rname, mdb_tgt_reg_t r) 4444 { 4445 pt_data_t *pt = t->t_data; 4446 prgregset_t grs; 4447 mdb_var_t *v; 4448 4449 if (t->t_pshandle == NULL) 4450 return (set_errno(EMDB_NOPROC)); 4451 4452 if ((v = mdb_nv_lookup(&pt->p_regs, rname)) != NULL) { 4453 uintmax_t rd_nval = mdb_nv_get_value(v); 4454 ushort_t rd_num = MDB_TGT_R_NUM(rd_nval); 4455 ushort_t rd_flags = MDB_TGT_R_FLAGS(rd_nval); 4456 4457 if (!MDB_TGT_R_IS_FP(rd_flags)) { 4458 #if defined(__sparc) && defined(_ILP32) 4459 /* 4460 * If we are debugging on 32-bit SPARC, the globals and 4461 * outs can have 32 upper bits stored in the xregs. 4462 */ 4463 int is_g = (rd_num == R_G0 || 4464 rd_num >= R_G1 && rd_num <= R_G7); 4465 int is_o = (rd_num >= R_O0 && rd_num <= R_O7); 4466 prxregset_t xrs; 4467 4468 if ((is_g || is_o) && PTL_GETXREGS(t, tid, &xrs) == 0 && 4469 xrs.pr_type == XR_TYPE_V8P) { 4470 if (is_g) { 4471 xrs.pr_un.pr_v8p.pr_xg[rd_num - 4472 R_G0 + XR_G0] = (uint32_t)(r >> 32); 4473 } else if (is_o) { 4474 xrs.pr_un.pr_v8p.pr_xo[rd_num - 4475 R_O0 + XR_O0] = (uint32_t)(r >> 32); 4476 } 4477 4478 if (PTL_SETXREGS(t, tid, &xrs) == -1) 4479 return (-1); 4480 } 4481 #endif /* __sparc && _ILP32 */ 4482 4483 if (PTL_GETREGS(t, tid, grs) == 0) { 4484 grs[rd_num] = (prgreg_t)r; 4485 return (PTL_SETREGS(t, tid, grs)); 4486 } 4487 return (-1); 4488 } else 4489 return (pt_putfpreg(t, tid, rd_num, rd_flags, r)); 4490 } 4491 4492 return (set_errno(EMDB_BADREG)); 4493 } 4494 4495 static int 4496 pt_stack_call(pt_stkarg_t *psp, const prgregset_t grs, uint_t argc, long *argv) 4497 { 4498 psp->pstk_gotpc |= (grs[R_PC] != 0); 4499 4500 if (!psp->pstk_gotpc) 4501 return (0); /* skip initial zeroed frames */ 4502 4503 return (psp->pstk_func(psp->pstk_private, grs[R_PC], 4504 argc, argv, (const struct mdb_tgt_gregset *)grs)); 4505 } 4506 4507 static int 4508 pt_stack_iter(mdb_tgt_t *t, const mdb_tgt_gregset_t *gsp, 4509 mdb_tgt_stack_f *func, void *arg) 4510 { 4511 if (t->t_pshandle != NULL) { 4512 pt_stkarg_t pstk; 4513 4514 pstk.pstk_func = func; 4515 pstk.pstk_private = arg; 4516 pstk.pstk_gotpc = FALSE; 4517 4518 (void) Pstack_iter(t->t_pshandle, gsp->gregs, 4519 (proc_stack_f *)pt_stack_call, &pstk); 4520 4521 return (0); 4522 } 4523 4524 return (set_errno(EMDB_NOPROC)); 4525 } 4526 4527 static int 4528 pt_auxv(mdb_tgt_t *t, const auxv_t **auxvp) 4529 { 4530 if (t->t_pshandle != NULL) { 4531 *auxvp = Pgetauxvec(t->t_pshandle); 4532 return (0); 4533 } 4534 4535 return (set_errno(EMDB_NOPROC)); 4536 } 4537 4538 4539 static const mdb_tgt_ops_t proc_ops = { 4540 pt_setflags, /* t_setflags */ 4541 (int (*)()) mdb_tgt_notsup, /* t_setcontext */ 4542 pt_activate, /* t_activate */ 4543 pt_deactivate, /* t_deactivate */ 4544 pt_periodic, /* t_periodic */ 4545 pt_destroy, /* t_destroy */ 4546 pt_name, /* t_name */ 4547 (const char *(*)()) mdb_conf_isa, /* t_isa */ 4548 pt_platform, /* t_platform */ 4549 pt_uname, /* t_uname */ 4550 pt_dmodel, /* t_dmodel */ 4551 (ssize_t (*)()) mdb_tgt_notsup, /* t_aread */ 4552 (ssize_t (*)()) mdb_tgt_notsup, /* t_awrite */ 4553 pt_vread, /* t_vread */ 4554 pt_vwrite, /* t_vwrite */ 4555 (ssize_t (*)()) mdb_tgt_notsup, /* t_pread */ 4556 (ssize_t (*)()) mdb_tgt_notsup, /* t_pwrite */ 4557 pt_fread, /* t_fread */ 4558 pt_fwrite, /* t_fwrite */ 4559 (ssize_t (*)()) mdb_tgt_notsup, /* t_ioread */ 4560 (ssize_t (*)()) mdb_tgt_notsup, /* t_iowrite */ 4561 (int (*)()) mdb_tgt_notsup, /* t_vtop */ 4562 pt_lookup_by_name, /* t_lookup_by_name */ 4563 pt_lookup_by_addr, /* t_lookup_by_addr */ 4564 pt_symbol_iter, /* t_symbol_iter */ 4565 pt_mapping_iter, /* t_mapping_iter */ 4566 pt_object_iter, /* t_object_iter */ 4567 pt_addr_to_map, /* t_addr_to_map */ 4568 pt_name_to_map, /* t_name_to_map */ 4569 pt_addr_to_ctf, /* t_addr_to_ctf */ 4570 pt_name_to_ctf, /* t_name_to_ctf */ 4571 pt_status, /* t_status */ 4572 pt_run, /* t_run */ 4573 pt_step, /* t_step */ 4574 pt_step_out, /* t_step_out */ 4575 (int (*)()) mdb_tgt_notsup, /* t_step_branch */ 4576 pt_next, /* t_next */ 4577 pt_continue, /* t_cont */ 4578 pt_signal, /* t_signal */ 4579 pt_add_vbrkpt, /* t_add_vbrkpt */ 4580 pt_add_sbrkpt, /* t_add_sbrkpt */ 4581 (int (*)()) mdb_tgt_null, /* t_add_pwapt */ 4582 pt_add_vwapt, /* t_add_vwapt */ 4583 (int (*)()) mdb_tgt_null, /* t_add_iowapt */ 4584 pt_add_sysenter, /* t_add_sysenter */ 4585 pt_add_sysexit, /* t_add_sysexit */ 4586 pt_add_signal, /* t_add_signal */ 4587 pt_add_fault, /* t_add_fault */ 4588 pt_getareg, /* t_getareg */ 4589 pt_putareg, /* t_putareg */ 4590 pt_stack_iter, /* t_stack_iter */ 4591 pt_auxv /* t_auxv */ 4592 }; 4593 4594 /* 4595 * Utility function for converting libproc errno values to mdb error values 4596 * for the ptl calls below. Currently, we only need to convert ENOENT to 4597 * EMDB_NOTHREAD to produce a more useful error message for the user. 4598 */ 4599 static int 4600 ptl_err(int error) 4601 { 4602 if (error != 0 && errno == ENOENT) 4603 return (set_errno(EMDB_NOTHREAD)); 4604 4605 return (error); 4606 } 4607 4608 /*ARGSUSED*/ 4609 static mdb_tgt_tid_t 4610 pt_lwp_tid(mdb_tgt_t *t, void *tap) 4611 { 4612 if (t->t_pshandle != NULL) 4613 return (Pstatus(t->t_pshandle)->pr_lwp.pr_lwpid); 4614 4615 return (set_errno(EMDB_NOPROC)); 4616 } 4617 4618 static int 4619 pt_lwp_add(mdb_addrvec_t *ap, const lwpstatus_t *psp) 4620 { 4621 mdb_addrvec_unshift(ap, psp->pr_lwpid); 4622 return (0); 4623 } 4624 4625 /*ARGSUSED*/ 4626 static int 4627 pt_lwp_iter(mdb_tgt_t *t, void *tap, mdb_addrvec_t *ap) 4628 { 4629 if (t->t_pshandle != NULL) 4630 return (Plwp_iter(t->t_pshandle, (proc_lwp_f *)pt_lwp_add, ap)); 4631 4632 return (set_errno(EMDB_NOPROC)); 4633 } 4634 4635 /*ARGSUSED*/ 4636 static int 4637 pt_lwp_getregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, prgregset_t gregs) 4638 { 4639 if (t->t_pshandle != NULL) { 4640 return (ptl_err(Plwp_getregs(t->t_pshandle, 4641 (lwpid_t)tid, gregs))); 4642 } 4643 return (set_errno(EMDB_NOPROC)); 4644 } 4645 4646 /*ARGSUSED*/ 4647 static int 4648 pt_lwp_setregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, prgregset_t gregs) 4649 { 4650 if (t->t_pshandle != NULL) { 4651 return (ptl_err(Plwp_setregs(t->t_pshandle, 4652 (lwpid_t)tid, gregs))); 4653 } 4654 return (set_errno(EMDB_NOPROC)); 4655 } 4656 4657 #ifdef __sparc 4658 4659 /*ARGSUSED*/ 4660 static int 4661 pt_lwp_getxregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, prxregset_t *xregs) 4662 { 4663 if (t->t_pshandle != NULL) { 4664 return (ptl_err(Plwp_getxregs(t->t_pshandle, 4665 (lwpid_t)tid, xregs))); 4666 } 4667 return (set_errno(EMDB_NOPROC)); 4668 } 4669 4670 /*ARGSUSED*/ 4671 static int 4672 pt_lwp_setxregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, 4673 const prxregset_t *xregs) 4674 { 4675 if (t->t_pshandle != NULL) { 4676 return (ptl_err(Plwp_setxregs(t->t_pshandle, 4677 (lwpid_t)tid, xregs))); 4678 } 4679 return (set_errno(EMDB_NOPROC)); 4680 } 4681 4682 #endif /* __sparc */ 4683 4684 /*ARGSUSED*/ 4685 static int 4686 pt_lwp_getfpregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, 4687 prfpregset_t *fpregs) 4688 { 4689 if (t->t_pshandle != NULL) { 4690 return (ptl_err(Plwp_getfpregs(t->t_pshandle, 4691 (lwpid_t)tid, fpregs))); 4692 } 4693 return (set_errno(EMDB_NOPROC)); 4694 } 4695 4696 /*ARGSUSED*/ 4697 static int 4698 pt_lwp_setfpregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, 4699 const prfpregset_t *fpregs) 4700 { 4701 if (t->t_pshandle != NULL) { 4702 return (ptl_err(Plwp_setfpregs(t->t_pshandle, 4703 (lwpid_t)tid, fpregs))); 4704 } 4705 return (set_errno(EMDB_NOPROC)); 4706 } 4707 4708 static const pt_ptl_ops_t proc_lwp_ops = { 4709 (int (*)()) mdb_tgt_nop, 4710 (void (*)()) mdb_tgt_nop, 4711 pt_lwp_tid, 4712 pt_lwp_iter, 4713 pt_lwp_getregs, 4714 pt_lwp_setregs, 4715 #ifdef __sparc 4716 pt_lwp_getxregs, 4717 pt_lwp_setxregs, 4718 #endif 4719 pt_lwp_getfpregs, 4720 pt_lwp_setfpregs 4721 }; 4722 4723 static int 4724 pt_tdb_ctor(mdb_tgt_t *t) 4725 { 4726 pt_data_t *pt = t->t_data; 4727 td_thragent_t *tap; 4728 td_err_e err; 4729 4730 if ((err = pt->p_tdb_ops->td_ta_new(t->t_pshandle, &tap)) != TD_OK) 4731 return (set_errno(tdb_to_errno(err))); 4732 4733 pt->p_ptl_hdl = tap; 4734 return (0); 4735 } 4736 4737 static void 4738 pt_tdb_dtor(mdb_tgt_t *t, void *tap) 4739 { 4740 pt_data_t *pt = t->t_data; 4741 4742 ASSERT(tap == pt->p_ptl_hdl); 4743 (void) pt->p_tdb_ops->td_ta_delete(tap); 4744 pt->p_ptl_hdl = NULL; 4745 } 4746 4747 static mdb_tgt_tid_t 4748 pt_tdb_tid(mdb_tgt_t *t, void *tap) 4749 { 4750 pt_data_t *pt = t->t_data; 4751 4752 td_thrhandle_t th; 4753 td_thrinfo_t ti; 4754 td_err_e err; 4755 4756 if (t->t_pshandle == NULL) 4757 return (set_errno(EMDB_NOPROC)); 4758 4759 if ((err = pt->p_tdb_ops->td_ta_map_lwp2thr(tap, 4760 Pstatus(t->t_pshandle)->pr_lwp.pr_lwpid, &th)) != TD_OK) 4761 return (set_errno(tdb_to_errno(err))); 4762 4763 if ((err = pt->p_tdb_ops->td_thr_get_info(&th, &ti)) != TD_OK) 4764 return (set_errno(tdb_to_errno(err))); 4765 4766 return (ti.ti_tid); 4767 } 4768 4769 static int 4770 pt_tdb_add(const td_thrhandle_t *thp, pt_addarg_t *pap) 4771 { 4772 td_thrinfo_t ti; 4773 4774 if (pap->pa_pt->p_tdb_ops->td_thr_get_info(thp, &ti) == TD_OK && 4775 ti.ti_state != TD_THR_ZOMBIE) 4776 mdb_addrvec_unshift(pap->pa_ap, ti.ti_tid); 4777 4778 return (0); 4779 } 4780 4781 static int 4782 pt_tdb_iter(mdb_tgt_t *t, void *tap, mdb_addrvec_t *ap) 4783 { 4784 pt_data_t *pt = t->t_data; 4785 pt_addarg_t arg; 4786 int err; 4787 4788 if (t->t_pshandle == NULL) 4789 return (set_errno(EMDB_NOPROC)); 4790 4791 arg.pa_pt = pt; 4792 arg.pa_ap = ap; 4793 4794 if ((err = pt->p_tdb_ops->td_ta_thr_iter(tap, (td_thr_iter_f *) 4795 pt_tdb_add, &arg, TD_THR_ANY_STATE, TD_THR_LOWEST_PRIORITY, 4796 TD_SIGNO_MASK, TD_THR_ANY_USER_FLAGS)) != TD_OK) 4797 return (set_errno(tdb_to_errno(err))); 4798 4799 return (0); 4800 } 4801 4802 static int 4803 pt_tdb_getregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, prgregset_t gregs) 4804 { 4805 pt_data_t *pt = t->t_data; 4806 4807 td_thrhandle_t th; 4808 td_err_e err; 4809 4810 if (t->t_pshandle == NULL) 4811 return (set_errno(EMDB_NOPROC)); 4812 4813 if ((err = pt->p_tdb_ops->td_ta_map_id2thr(tap, tid, &th)) != TD_OK) 4814 return (set_errno(tdb_to_errno(err))); 4815 4816 err = pt->p_tdb_ops->td_thr_getgregs(&th, gregs); 4817 if (err != TD_OK && err != TD_PARTIALREG) 4818 return (set_errno(tdb_to_errno(err))); 4819 4820 return (0); 4821 } 4822 4823 static int 4824 pt_tdb_setregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, prgregset_t gregs) 4825 { 4826 pt_data_t *pt = t->t_data; 4827 4828 td_thrhandle_t th; 4829 td_err_e err; 4830 4831 if (t->t_pshandle == NULL) 4832 return (set_errno(EMDB_NOPROC)); 4833 4834 if ((err = pt->p_tdb_ops->td_ta_map_id2thr(tap, tid, &th)) != TD_OK) 4835 return (set_errno(tdb_to_errno(err))); 4836 4837 err = pt->p_tdb_ops->td_thr_setgregs(&th, gregs); 4838 if (err != TD_OK && err != TD_PARTIALREG) 4839 return (set_errno(tdb_to_errno(err))); 4840 4841 return (0); 4842 } 4843 4844 #ifdef __sparc 4845 4846 static int 4847 pt_tdb_getxregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, prxregset_t *xregs) 4848 { 4849 pt_data_t *pt = t->t_data; 4850 4851 td_thrhandle_t th; 4852 td_err_e err; 4853 4854 if (t->t_pshandle == NULL) 4855 return (set_errno(EMDB_NOPROC)); 4856 4857 if ((err = pt->p_tdb_ops->td_ta_map_id2thr(tap, tid, &th)) != TD_OK) 4858 return (set_errno(tdb_to_errno(err))); 4859 4860 err = pt->p_tdb_ops->td_thr_getxregs(&th, xregs); 4861 if (err != TD_OK && err != TD_PARTIALREG) 4862 return (set_errno(tdb_to_errno(err))); 4863 4864 return (0); 4865 } 4866 4867 static int 4868 pt_tdb_setxregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, 4869 const prxregset_t *xregs) 4870 { 4871 pt_data_t *pt = t->t_data; 4872 4873 td_thrhandle_t th; 4874 td_err_e err; 4875 4876 if (t->t_pshandle == NULL) 4877 return (set_errno(EMDB_NOPROC)); 4878 4879 if ((err = pt->p_tdb_ops->td_ta_map_id2thr(tap, tid, &th)) != TD_OK) 4880 return (set_errno(tdb_to_errno(err))); 4881 4882 err = pt->p_tdb_ops->td_thr_setxregs(&th, xregs); 4883 if (err != TD_OK && err != TD_PARTIALREG) 4884 return (set_errno(tdb_to_errno(err))); 4885 4886 return (0); 4887 } 4888 4889 #endif /* __sparc */ 4890 4891 static int 4892 pt_tdb_getfpregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, 4893 prfpregset_t *fpregs) 4894 { 4895 pt_data_t *pt = t->t_data; 4896 4897 td_thrhandle_t th; 4898 td_err_e err; 4899 4900 if (t->t_pshandle == NULL) 4901 return (set_errno(EMDB_NOPROC)); 4902 4903 if ((err = pt->p_tdb_ops->td_ta_map_id2thr(tap, tid, &th)) != TD_OK) 4904 return (set_errno(tdb_to_errno(err))); 4905 4906 err = pt->p_tdb_ops->td_thr_getfpregs(&th, fpregs); 4907 if (err != TD_OK && err != TD_PARTIALREG) 4908 return (set_errno(tdb_to_errno(err))); 4909 4910 return (0); 4911 } 4912 4913 static int 4914 pt_tdb_setfpregs(mdb_tgt_t *t, void *tap, mdb_tgt_tid_t tid, 4915 const prfpregset_t *fpregs) 4916 { 4917 pt_data_t *pt = t->t_data; 4918 4919 td_thrhandle_t th; 4920 td_err_e err; 4921 4922 if (t->t_pshandle == NULL) 4923 return (set_errno(EMDB_NOPROC)); 4924 4925 if ((err = pt->p_tdb_ops->td_ta_map_id2thr(tap, tid, &th)) != TD_OK) 4926 return (set_errno(tdb_to_errno(err))); 4927 4928 err = pt->p_tdb_ops->td_thr_setfpregs(&th, fpregs); 4929 if (err != TD_OK && err != TD_PARTIALREG) 4930 return (set_errno(tdb_to_errno(err))); 4931 4932 return (0); 4933 } 4934 4935 static const pt_ptl_ops_t proc_tdb_ops = { 4936 pt_tdb_ctor, 4937 pt_tdb_dtor, 4938 pt_tdb_tid, 4939 pt_tdb_iter, 4940 pt_tdb_getregs, 4941 pt_tdb_setregs, 4942 #ifdef __sparc 4943 pt_tdb_getxregs, 4944 pt_tdb_setxregs, 4945 #endif 4946 pt_tdb_getfpregs, 4947 pt_tdb_setfpregs 4948 }; 4949 4950 static ssize_t 4951 pt_xd_auxv(mdb_tgt_t *t, void *buf, size_t nbytes) 4952 { 4953 struct ps_prochandle *P = t->t_pshandle; 4954 const auxv_t *auxp, *auxv = NULL; 4955 int auxn = 0; 4956 4957 if (P != NULL && (auxv = Pgetauxvec(P)) != NULL && 4958 auxv->a_type != AT_NULL) { 4959 for (auxp = auxv, auxn = 1; auxp->a_type != NULL; auxp++) 4960 auxn++; 4961 } 4962 4963 if (buf == NULL && nbytes == 0) 4964 return (sizeof (auxv_t) * auxn); 4965 4966 if (auxn == 0) 4967 return (set_errno(ENODATA)); 4968 4969 nbytes = MIN(nbytes, sizeof (auxv_t) * auxn); 4970 bcopy(auxv, buf, nbytes); 4971 return (nbytes); 4972 } 4973 4974 static ssize_t 4975 pt_xd_cred(mdb_tgt_t *t, void *buf, size_t nbytes) 4976 { 4977 prcred_t cr, *crp; 4978 size_t cbytes = 0; 4979 4980 if (t->t_pshandle != NULL && Pcred(t->t_pshandle, &cr, 1) == 0) { 4981 cbytes = (cr.pr_ngroups <= 1) ? sizeof (prcred_t) : 4982 (sizeof (prcred_t) + (cr.pr_ngroups - 1) * sizeof (gid_t)); 4983 } 4984 4985 if (buf == NULL && nbytes == 0) 4986 return (cbytes); 4987 4988 if (cbytes == 0) 4989 return (set_errno(ENODATA)); 4990 4991 crp = mdb_alloc(cbytes, UM_SLEEP); 4992 4993 if (Pcred(t->t_pshandle, crp, cr.pr_ngroups) == -1) 4994 return (set_errno(ENODATA)); 4995 4996 nbytes = MIN(nbytes, cbytes); 4997 bcopy(crp, buf, nbytes); 4998 mdb_free(crp, cbytes); 4999 return (nbytes); 5000 } 5001 5002 static ssize_t 5003 pt_xd_ehdr(mdb_tgt_t *t, void *buf, size_t nbytes) 5004 { 5005 pt_data_t *pt = t->t_data; 5006 5007 if (buf == NULL && nbytes == 0) 5008 return (sizeof (GElf_Ehdr)); 5009 5010 if (pt->p_file == NULL) 5011 return (set_errno(ENODATA)); 5012 5013 nbytes = MIN(nbytes, sizeof (GElf_Ehdr)); 5014 bcopy(&pt->p_file->gf_ehdr, buf, nbytes); 5015 return (nbytes); 5016 } 5017 5018 static int 5019 pt_copy_lwp(lwpstatus_t **lspp, const lwpstatus_t *lsp) 5020 { 5021 bcopy(lsp, *lspp, sizeof (lwpstatus_t)); 5022 (*lspp)++; 5023 return (0); 5024 } 5025 5026 static ssize_t 5027 pt_xd_lwpstatus(mdb_tgt_t *t, void *buf, size_t nbytes) 5028 { 5029 lwpstatus_t *lsp, *lbuf; 5030 const pstatus_t *psp; 5031 int nlwp = 0; 5032 5033 if (t->t_pshandle != NULL && (psp = Pstatus(t->t_pshandle)) != NULL) 5034 nlwp = psp->pr_nlwp; 5035 5036 if (buf == NULL && nbytes == 0) 5037 return (sizeof (lwpstatus_t) * nlwp); 5038 5039 if (nlwp == 0) 5040 return (set_errno(ENODATA)); 5041 5042 lsp = lbuf = mdb_alloc(sizeof (lwpstatus_t) * nlwp, UM_SLEEP); 5043 nbytes = MIN(nbytes, sizeof (lwpstatus_t) * nlwp); 5044 5045 (void) Plwp_iter(t->t_pshandle, (proc_lwp_f *)pt_copy_lwp, &lsp); 5046 bcopy(lbuf, buf, nbytes); 5047 5048 mdb_free(lbuf, sizeof (lwpstatus_t) * nlwp); 5049 return (nbytes); 5050 } 5051 5052 static ssize_t 5053 pt_xd_pshandle(mdb_tgt_t *t, void *buf, size_t nbytes) 5054 { 5055 if (buf == NULL && nbytes == 0) 5056 return (sizeof (struct ps_prochandle *)); 5057 5058 if (t->t_pshandle == NULL || nbytes != sizeof (struct ps_prochandle *)) 5059 return (set_errno(ENODATA)); 5060 5061 bcopy(&t->t_pshandle, buf, nbytes); 5062 return (nbytes); 5063 } 5064 5065 static ssize_t 5066 pt_xd_psinfo(mdb_tgt_t *t, void *buf, size_t nbytes) 5067 { 5068 const psinfo_t *psp; 5069 5070 if (buf == NULL && nbytes == 0) 5071 return (sizeof (psinfo_t)); 5072 5073 if (t->t_pshandle == NULL || (psp = Ppsinfo(t->t_pshandle)) == NULL) 5074 return (set_errno(ENODATA)); 5075 5076 nbytes = MIN(nbytes, sizeof (psinfo_t)); 5077 bcopy(psp, buf, nbytes); 5078 return (nbytes); 5079 } 5080 5081 static ssize_t 5082 pt_xd_pstatus(mdb_tgt_t *t, void *buf, size_t nbytes) 5083 { 5084 const pstatus_t *psp; 5085 5086 if (buf == NULL && nbytes == 0) 5087 return (sizeof (pstatus_t)); 5088 5089 if (t->t_pshandle == NULL || (psp = Pstatus(t->t_pshandle)) == NULL) 5090 return (set_errno(ENODATA)); 5091 5092 nbytes = MIN(nbytes, sizeof (pstatus_t)); 5093 bcopy(psp, buf, nbytes); 5094 return (nbytes); 5095 } 5096 5097 static ssize_t 5098 pt_xd_utsname(mdb_tgt_t *t, void *buf, size_t nbytes) 5099 { 5100 struct utsname uts; 5101 5102 if (buf == NULL && nbytes == 0) 5103 return (sizeof (struct utsname)); 5104 5105 if (t->t_pshandle == NULL || Puname(t->t_pshandle, &uts) != 0) 5106 return (set_errno(ENODATA)); 5107 5108 nbytes = MIN(nbytes, sizeof (struct utsname)); 5109 bcopy(&uts, buf, nbytes); 5110 return (nbytes); 5111 } 5112 5113 int 5114 mdb_proc_tgt_create(mdb_tgt_t *t, int argc, const char *argv[]) 5115 { 5116 pt_data_t *pt = mdb_zalloc(sizeof (pt_data_t), UM_SLEEP); 5117 5118 const char *aout_path = argc > 0 ? argv[0] : PT_EXEC_PATH; 5119 const char *core_path = argc > 1 ? argv[1] : NULL; 5120 5121 const mdb_tgt_regdesc_t *rdp; 5122 char execname[MAXPATHLEN]; 5123 struct stat64 st; 5124 int perr; 5125 int state; 5126 struct rlimit rlim; 5127 int i; 5128 5129 if (argc > 2) { 5130 mdb_free(pt, sizeof (pt_data_t)); 5131 return (set_errno(EINVAL)); 5132 } 5133 5134 if (t->t_flags & MDB_TGT_F_RDWR) 5135 pt->p_oflags = O_RDWR; 5136 else 5137 pt->p_oflags = O_RDONLY; 5138 5139 if (t->t_flags & MDB_TGT_F_FORCE) 5140 pt->p_gflags |= PGRAB_FORCE; 5141 if (t->t_flags & MDB_TGT_F_NOSTOP) 5142 pt->p_gflags |= PGRAB_NOSTOP; 5143 5144 pt->p_ptl_ops = &proc_lwp_ops; 5145 pt->p_maxsig = sysconf(_SC_SIGRT_MAX); 5146 5147 (void) mdb_nv_create(&pt->p_regs, UM_SLEEP); 5148 (void) mdb_nv_create(&pt->p_env, UM_SLEEP); 5149 5150 t->t_ops = &proc_ops; 5151 t->t_data = pt; 5152 5153 /* 5154 * If no core file name was specified, but the file ./core is present, 5155 * infer that we want to debug it. I find this behavior confusing, 5156 * so we only do this when precise adb(1) compatibility is required. 5157 */ 5158 if (core_path == NULL && (mdb.m_flags & MDB_FL_ADB) && 5159 access(PT_CORE_PATH, F_OK) == 0) 5160 core_path = PT_CORE_PATH; 5161 5162 /* 5163 * For compatibility with adb(1), the special name "-" may be used 5164 * to suppress the loading of the executable or core file. 5165 */ 5166 if (aout_path != NULL && strcmp(aout_path, "-") == 0) 5167 aout_path = NULL; 5168 if (core_path != NULL && strcmp(core_path, "-") == 0) 5169 core_path = NULL; 5170 5171 /* 5172 * If a core file or pid was specified, attempt to grab it now using 5173 * proc_arg_grab(); otherwise we'll create a fresh process later. 5174 */ 5175 if (core_path != NULL && (t->t_pshandle = proc_arg_xgrab(core_path, 5176 aout_path == PT_EXEC_PATH ? NULL : aout_path, PR_ARG_ANY, 5177 pt->p_gflags, &perr, NULL)) == NULL) { 5178 mdb_warn("cannot debug %s: %s\n", core_path, Pgrab_error(perr)); 5179 goto err; 5180 } 5181 5182 if (aout_path != NULL && 5183 (pt->p_idlehandle = Pgrab_file(aout_path, &perr)) != NULL && 5184 t->t_pshandle == NULL) 5185 t->t_pshandle = pt->p_idlehandle; 5186 5187 if (t->t_pshandle != NULL) 5188 state = Pstate(t->t_pshandle); 5189 5190 /* 5191 * Make sure we'll have enough file descriptors to handle a target 5192 * has many many mappings. 5193 */ 5194 if (getrlimit(RLIMIT_NOFILE, &rlim) == 0) { 5195 rlim.rlim_cur = rlim.rlim_max; 5196 (void) setrlimit(RLIMIT_NOFILE, &rlim); 5197 (void) enable_extended_FILE_stdio(-1, -1); 5198 } 5199 5200 /* 5201 * If we don't have an executable path or the executable path is the 5202 * /proc/<pid>/object/a.out path, but we now have a libproc handle, 5203 * attempt to derive the executable path using Pexecname(). We need 5204 * to do this in the /proc case in order to open the executable for 5205 * writing because /proc/object/<file> permission are masked with 0555. 5206 * If Pexecname() fails us, fall back to /proc/<pid>/object/a.out. 5207 */ 5208 if (t->t_pshandle != NULL && (aout_path == NULL || (stat64(aout_path, 5209 &st) == 0 && strcmp(st.st_fstype, "proc") == 0))) { 5210 GElf_Sym s; 5211 aout_path = Pexecname(t->t_pshandle, execname, MAXPATHLEN); 5212 if (aout_path == NULL && state != PS_DEAD && state != PS_IDLE) { 5213 (void) mdb_iob_snprintf(execname, sizeof (execname), 5214 "/proc/%d/object/a.out", 5215 (int)Pstatus(t->t_pshandle)->pr_pid); 5216 aout_path = execname; 5217 } 5218 if (aout_path == NULL && 5219 Plookup_by_name(t->t_pshandle, "a.out", "_start", &s) != 0) 5220 mdb_warn("warning: failed to infer pathname to " 5221 "executable; symbol table will not be available\n"); 5222 5223 mdb_dprintf(MDB_DBG_TGT, "a.out is %s\n", aout_path); 5224 } 5225 5226 /* 5227 * Attempt to open the executable file. We only want this operation 5228 * to actually cause the constructor to abort if the executable file 5229 * name was given explicitly. If we defaulted to PT_EXEC_PATH or 5230 * derived the executable using Pexecname, then we want to continue 5231 * along with p_fio and p_file set to NULL. 5232 */ 5233 if (aout_path != NULL && (pt->p_aout_fio = mdb_fdio_create_path(NULL, 5234 aout_path, pt->p_oflags, 0)) == NULL && argc > 0) { 5235 mdb_warn("failed to open %s", aout_path); 5236 goto err; 5237 } 5238 5239 /* 5240 * Now create an ELF file from the input file, if we have one. Again, 5241 * only abort the constructor if the name was given explicitly. 5242 */ 5243 if (pt->p_aout_fio != NULL && pt_open_aout(t, 5244 mdb_io_hold(pt->p_aout_fio)) == NULL && argc > 0) 5245 goto err; 5246 5247 /* 5248 * If we've successfully opened an ELF file, select the appropriate 5249 * disassembler based on the ELF header. 5250 */ 5251 if (pt->p_file != NULL) 5252 (void) mdb_dis_select(pt_disasm(&pt->p_file->gf_ehdr)); 5253 else 5254 (void) mdb_dis_select(pt_disasm(NULL)); 5255 5256 /* 5257 * Add each register described in the target ISA register description 5258 * list to our hash table of register descriptions and then add any 5259 * appropriate ISA-specific floating-point register descriptions. 5260 */ 5261 for (rdp = pt_regdesc; rdp->rd_name != NULL; rdp++) { 5262 (void) mdb_nv_insert(&pt->p_regs, rdp->rd_name, NULL, 5263 MDB_TGT_R_NVAL(rdp->rd_num, rdp->rd_flags), MDB_NV_RDONLY); 5264 } 5265 pt_addfpregs(t); 5266 5267 /* 5268 * Certain important /proc structures may be of interest to mdb 5269 * modules and their dcmds. Export these using the xdata interface: 5270 */ 5271 (void) mdb_tgt_xdata_insert(t, "auxv", 5272 "procfs auxv_t array", pt_xd_auxv); 5273 (void) mdb_tgt_xdata_insert(t, "cred", 5274 "procfs prcred_t structure", pt_xd_cred); 5275 (void) mdb_tgt_xdata_insert(t, "ehdr", 5276 "executable file GElf_Ehdr structure", pt_xd_ehdr); 5277 (void) mdb_tgt_xdata_insert(t, "lwpstatus", 5278 "procfs lwpstatus_t array", pt_xd_lwpstatus); 5279 (void) mdb_tgt_xdata_insert(t, "pshandle", 5280 "libproc proc service API handle", pt_xd_pshandle); 5281 (void) mdb_tgt_xdata_insert(t, "psinfo", 5282 "procfs psinfo_t structure", pt_xd_psinfo); 5283 (void) mdb_tgt_xdata_insert(t, "pstatus", 5284 "procfs pstatus_t structure", pt_xd_pstatus); 5285 (void) mdb_tgt_xdata_insert(t, "utsname", 5286 "utsname structure", pt_xd_utsname); 5287 5288 /* 5289 * Force a status update now so that we fill in t_status with the 5290 * latest information based on any successful grab. 5291 */ 5292 (void) mdb_tgt_status(t, &t->t_status); 5293 5294 /* 5295 * If we're not examining a core file, trace SIGINT and all signals 5296 * that cause the process to dump core as part of our initialization. 5297 */ 5298 if ((t->t_pshandle != NULL && state != PS_DEAD && state != PS_IDLE) || 5299 (pt->p_file != NULL && pt->p_file->gf_ehdr.e_type == ET_EXEC)) { 5300 5301 int tflag = MDB_TGT_SPEC_STICKY; /* default sigs are sticky */ 5302 5303 (void) mdb_tgt_add_signal(t, SIGINT, tflag, no_se_f, NULL); 5304 (void) mdb_tgt_add_signal(t, SIGQUIT, tflag, no_se_f, NULL); 5305 (void) mdb_tgt_add_signal(t, SIGILL, tflag, no_se_f, NULL); 5306 (void) mdb_tgt_add_signal(t, SIGTRAP, tflag, no_se_f, NULL); 5307 (void) mdb_tgt_add_signal(t, SIGABRT, tflag, no_se_f, NULL); 5308 (void) mdb_tgt_add_signal(t, SIGEMT, tflag, no_se_f, NULL); 5309 (void) mdb_tgt_add_signal(t, SIGFPE, tflag, no_se_f, NULL); 5310 (void) mdb_tgt_add_signal(t, SIGBUS, tflag, no_se_f, NULL); 5311 (void) mdb_tgt_add_signal(t, SIGSEGV, tflag, no_se_f, NULL); 5312 (void) mdb_tgt_add_signal(t, SIGSYS, tflag, no_se_f, NULL); 5313 (void) mdb_tgt_add_signal(t, SIGXCPU, tflag, no_se_f, NULL); 5314 (void) mdb_tgt_add_signal(t, SIGXFSZ, tflag, no_se_f, NULL); 5315 } 5316 5317 /* 5318 * If we've grabbed a live process, establish our initial breakpoints 5319 * and librtld_db agent so we can track rtld activity. If FL_VCREATE 5320 * is set, this process was created by a previous instantiation of 5321 * the debugger, so reset pr_flags to kill it; otherwise we attached 5322 * to an already running process. Pgrab() has already set the PR_RLC 5323 * flag appropriately based on whether the process was stopped when we 5324 * attached. 5325 */ 5326 if (t->t_pshandle != NULL && state != PS_DEAD && state != PS_IDLE) { 5327 if (mdb.m_flags & MDB_FL_VCREATE) { 5328 (void) Punsetflags(t->t_pshandle, PR_RLC); 5329 (void) Psetflags(t->t_pshandle, PR_KLC); 5330 pt->p_rflags = PRELEASE_KILL; 5331 } else { 5332 (void) Punsetflags(t->t_pshandle, PR_KLC); 5333 } 5334 pt_post_attach(t); 5335 } 5336 5337 /* 5338 * Initialize a local copy of the environment, which can be modified 5339 * before running the program. 5340 */ 5341 for (i = 0; mdb.m_env[i] != NULL; i++) 5342 pt_env_set(pt, mdb.m_env[i]); 5343 5344 /* 5345 * If adb(1) compatibility mode is on, then print the appropriate 5346 * greeting message if we have grabbed a core file. 5347 */ 5348 if ((mdb.m_flags & MDB_FL_ADB) && t->t_pshandle != NULL && 5349 state == PS_DEAD) { 5350 const pstatus_t *psp = Pstatus(t->t_pshandle); 5351 int cursig = psp->pr_lwp.pr_cursig; 5352 char signame[SIG2STR_MAX]; 5353 5354 mdb_printf("core file = %s -- program ``%s'' on platform %s\n", 5355 core_path, aout_path ? aout_path : "?", pt_platform(t)); 5356 5357 if (cursig != 0 && sig2str(cursig, signame) == 0) 5358 mdb_printf("SIG%s: %s\n", signame, strsignal(cursig)); 5359 } 5360 5361 return (0); 5362 5363 err: 5364 pt_destroy(t); 5365 return (-1); 5366 } 5367