1 /* Interface GDB to the GNU Hurd. 2 Copyright (C) 1992-2020 Free Software Foundation, Inc. 3 4 This file is part of GDB. 5 6 Written by Miles Bader <miles@gnu.ai.mit.edu> 7 8 Some code and ideas from m3-nat.c by Jukka Virtanen <jtv@hut.fi> 9 10 This program is free software; you can redistribute it and/or modify 11 it under the terms of the GNU General Public License as published by 12 the Free Software Foundation; either version 3 of the License, or 13 (at your option) any later version. 14 15 This program is distributed in the hope that it will be useful, 16 but WITHOUT ANY WARRANTY; without even the implied warranty of 17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 18 GNU General Public License for more details. 19 20 You should have received a copy of the GNU General Public License 21 along with this program. If not, see <http://www.gnu.org/licenses/>. */ 22 23 /* Include this first, to pick up the <mach.h> 'thread_info' diversion. */ 24 #include "gnu-nat.h" 25 26 /* Mach/Hurd headers are not yet ready for C++ compilation. */ 27 extern "C" 28 { 29 #include <mach.h> 30 #include <mach_error.h> 31 #include <mach/exception.h> 32 #include <mach/message.h> 33 #include <mach/notify.h> 34 #include <mach/vm_attributes.h> 35 36 #include <hurd.h> 37 #include <hurd/interrupt.h> 38 #include <hurd/msg.h> 39 #include <hurd/msg_request.h> 40 #include <hurd/process.h> 41 /* Defined in <hurd/process.h>, but we need forward declarations from 42 <hurd/process_request.h> as well. */ 43 #undef _process_user_ 44 #include <hurd/process_request.h> 45 #include <hurd/signal.h> 46 #include <hurd/sigpreempt.h> 47 48 #include <portinfo.h> 49 } 50 51 #include "defs.h" 52 53 #include <ctype.h> 54 #include <limits.h> 55 #include <setjmp.h> 56 #include <signal.h> 57 #include <sys/ptrace.h> 58 #include <elf.h> 59 #include <link.h> 60 61 #include "inferior.h" 62 #include "symtab.h" 63 #include "value.h" 64 #include "language.h" 65 #include "target.h" 66 #include "gdbsupport/gdb_wait.h" 67 #include "gdbarch.h" 68 #include "gdbcmd.h" 69 #include "gdbcore.h" 70 #include "gdbthread.h" 71 #include "gdb_obstack.h" 72 #include "tid-parse.h" 73 #include "nat/fork-inferior.h" 74 75 #include "inf-child.h" 76 77 /* MIG stubs are not yet ready for C++ compilation. */ 78 extern "C" 79 { 80 #include "exc_request_S.h" 81 #include "notify_S.h" 82 #include "process_reply_S.h" 83 #include "msg_reply_S.h" 84 #include "exc_request_U.h" 85 #include "msg_U.h" 86 87 #include "gnu-nat-mig.h" 88 } 89 90 struct gnu_nat_target *gnu_target; 91 92 static process_t proc_server = MACH_PORT_NULL; 93 94 /* If we've sent a proc_wait_request to the proc server, the pid of the 95 process we asked about. We can only ever have one outstanding. */ 96 int proc_wait_pid = 0; 97 98 /* The number of wait requests we've sent, and expect replies from. */ 99 int proc_waits_pending = 0; 100 101 bool gnu_debug_flag = false; 102 103 /* Forward decls */ 104 105 static struct inf *make_inf (); 106 107 #define inf_debug(_inf, msg, args...) \ 108 do { struct inf *__inf = (_inf); \ 109 debug ("{inf %d %s}: " msg, __inf->pid, \ 110 host_address_to_string (__inf) , ##args); } while (0) 111 112 /* Evaluate RPC_EXPR in a scope with the variables MSGPORT and REFPORT bound 113 to INF's msg port and task port respectively. If it has no msg port, 114 EIEIO is returned. INF must refer to a running process! */ 115 #define INF_MSGPORT_RPC(inf, rpc_expr) \ 116 HURD_MSGPORT_RPC (proc_getmsgport (proc_server, inf->pid, &msgport), \ 117 (refport = inf->task->port, 0), 0, \ 118 msgport ? (rpc_expr) : EIEIO) 119 120 /* Like INF_MSGPORT_RPC, but will also resume the signal thread to ensure 121 there's someone around to deal with the RPC (and resuspend things 122 afterwards). This effects INF's threads' resume_sc count. */ 123 #define INF_RESUME_MSGPORT_RPC(inf, rpc_expr) \ 124 (inf_set_threads_resume_sc_for_signal_thread (inf) \ 125 ? ({ kern_return_t __e; \ 126 inf_resume (inf); \ 127 __e = INF_MSGPORT_RPC (inf, rpc_expr); \ 128 inf_suspend (inf); \ 129 __e; }) \ 130 : EIEIO) 131 132 133 /* The state passed by an exception message. */ 134 struct exc_state 135 { 136 int exception; /* The exception code. */ 137 int code, subcode; 138 mach_port_t handler; /* The real exception port to handle this. */ 139 mach_port_t reply; /* The reply port from the exception call. */ 140 }; 141 142 /* The results of the last wait an inf did. */ 143 struct inf_wait 144 { 145 struct target_waitstatus status; /* The status returned to gdb. */ 146 struct exc_state exc; /* The exception that caused us to return. */ 147 struct proc *thread; /* The thread in question. */ 148 int suppress; /* Something trivial happened. */ 149 }; 150 151 /* The state of an inferior. */ 152 struct inf 153 { 154 /* Fields describing the current inferior. */ 155 156 struct proc *task; /* The mach task. */ 157 struct proc *threads; /* A linked list of all threads in TASK. */ 158 159 /* True if THREADS needn't be validated by querying the task. We 160 assume that we and the task in question are the only ones 161 frobbing the thread list, so as long as we don't let any code 162 run, we don't have to worry about THREADS changing. */ 163 int threads_up_to_date; 164 165 pid_t pid; /* The real system PID. */ 166 167 struct inf_wait wait; /* What to return from target_wait. */ 168 169 /* One thread proc in INF may be in `single-stepping mode'. This 170 is it. */ 171 struct proc *step_thread; 172 173 /* The thread we think is the signal thread. */ 174 struct proc *signal_thread; 175 176 mach_port_t event_port; /* Where we receive various msgs. */ 177 178 /* True if we think at least one thread in the inferior could currently be 179 running. */ 180 unsigned int running:1; 181 182 /* True if the process has stopped (in the proc server sense). Note that 183 since a proc server `stop' leaves the signal thread running, the inf can 184 be RUNNING && STOPPED... */ 185 unsigned int stopped:1; 186 187 /* True if the inferior has no message port. */ 188 unsigned int nomsg:1; 189 190 /* True if the inferior is traced. */ 191 unsigned int traced:1; 192 193 /* True if we shouldn't try waiting for the inferior, usually because we 194 can't for some reason. */ 195 unsigned int no_wait:1; 196 197 /* When starting a new inferior, we don't try to validate threads until all 198 the proper execs have been done, which this flag states we still 199 expect to happen. */ 200 unsigned int pending_execs:1; 201 202 /* Fields describing global state. */ 203 204 /* The task suspend count used when gdb has control. This is normally 1 to 205 make things easier for us, but sometimes (like when attaching to vital 206 system servers) it may be desirable to let the task continue to run 207 (pausing individual threads as necessary). */ 208 int pause_sc; 209 210 /* The task suspend count left when detaching from a task. */ 211 int detach_sc; 212 213 /* The initial values used for the run_sc and pause_sc of newly discovered 214 threads -- see the definition of those fields in struct proc. */ 215 int default_thread_run_sc; 216 int default_thread_pause_sc; 217 int default_thread_detach_sc; 218 219 /* True if the process should be traced when started/attached. Newly 220 started processes *must* be traced at first to exec them properly, but 221 if this is false, tracing is turned off as soon it has done so. */ 222 int want_signals; 223 224 /* True if exceptions from the inferior process should be trapped. This 225 must be on to use breakpoints. */ 226 int want_exceptions; 227 }; 228 229 230 int 231 __proc_pid (struct proc *proc) 232 { 233 return proc->inf->pid; 234 } 235 236 237 /* Update PROC's real suspend count to match it's desired one. Returns true 238 if we think PROC is now in a runnable state. */ 239 int 240 gnu_nat_target::proc_update_sc (struct proc *proc) 241 { 242 int running; 243 int err = 0; 244 int delta = proc->sc - proc->cur_sc; 245 246 if (delta) 247 proc_debug (proc, "sc: %d --> %d", proc->cur_sc, proc->sc); 248 249 if (proc->sc == 0 && proc->state_changed) 250 /* Since PROC may start running, we must write back any state changes. */ 251 { 252 gdb_assert (proc_is_thread (proc)); 253 proc_debug (proc, "storing back changed thread state"); 254 err = thread_set_state (proc->port, THREAD_STATE_FLAVOR, 255 (thread_state_t) &proc->state, THREAD_STATE_SIZE); 256 if (!err) 257 proc->state_changed = 0; 258 } 259 260 if (delta > 0) 261 { 262 while (delta-- > 0 && !err) 263 { 264 if (proc_is_task (proc)) 265 err = task_suspend (proc->port); 266 else 267 err = thread_suspend (proc->port); 268 } 269 } 270 else 271 { 272 while (delta++ < 0 && !err) 273 { 274 if (proc_is_task (proc)) 275 err = task_resume (proc->port); 276 else 277 err = thread_resume (proc->port); 278 } 279 } 280 if (!err) 281 proc->cur_sc = proc->sc; 282 283 /* If we got an error, then the task/thread has disappeared. */ 284 running = !err && proc->sc == 0; 285 286 proc_debug (proc, "is %s", err ? "dead" : running ? "running" : "suspended"); 287 if (err) 288 proc_debug (proc, "err = %s", safe_strerror (err)); 289 290 if (running) 291 { 292 proc->aborted = 0; 293 proc->state_valid = proc->state_changed = 0; 294 proc->fetched_regs = 0; 295 } 296 297 return running; 298 } 299 300 301 /* Thread_abort is called on PROC if needed. PROC must be a thread proc. 302 If PROC is deemed `precious', then nothing is done unless FORCE is true. 303 In particular, a thread is precious if it's running (in which case forcing 304 it includes suspending it first), or if it has an exception pending. */ 305 void 306 gnu_nat_target::proc_abort (struct proc *proc, int force) 307 { 308 gdb_assert (proc_is_thread (proc)); 309 310 if (!proc->aborted) 311 { 312 struct inf *inf = proc->inf; 313 int running = (proc->cur_sc == 0 && inf->task->cur_sc == 0); 314 315 if (running && force) 316 { 317 proc->sc = 1; 318 inf_update_suspends (proc->inf); 319 running = 0; 320 warning (_("Stopped %s."), proc_string (proc)); 321 } 322 else if (proc == inf->wait.thread && inf->wait.exc.reply && !force) 323 /* An exception is pending on PROC, which don't mess with. */ 324 running = 1; 325 326 if (!running) 327 /* We only abort the thread if it's not actually running. */ 328 { 329 thread_abort (proc->port); 330 proc_debug (proc, "aborted"); 331 proc->aborted = 1; 332 } 333 else 334 proc_debug (proc, "not aborting"); 335 } 336 } 337 338 /* Make sure that the state field in PROC is up to date, and return a pointer 339 to it, or 0 if something is wrong. If WILL_MODIFY is true, makes sure 340 that the thread is stopped and aborted first, and sets the state_changed 341 field in PROC to true. */ 342 thread_state_t 343 gnu_nat_target::proc_get_state (struct proc *proc, int will_modify) 344 { 345 int was_aborted = proc->aborted; 346 347 proc_debug (proc, "updating state info%s", 348 will_modify ? " (with intention to modify)" : ""); 349 350 proc_abort (proc, will_modify); 351 352 if (!was_aborted && proc->aborted) 353 /* PROC's state may have changed since we last fetched it. */ 354 proc->state_valid = 0; 355 356 if (!proc->state_valid) 357 { 358 mach_msg_type_number_t state_size = THREAD_STATE_SIZE; 359 kern_return_t err = 360 thread_get_state (proc->port, THREAD_STATE_FLAVOR, 361 (thread_state_t) &proc->state, &state_size); 362 363 proc_debug (proc, "getting thread state"); 364 proc->state_valid = !err; 365 } 366 367 if (proc->state_valid) 368 { 369 if (will_modify) 370 proc->state_changed = 1; 371 return (thread_state_t) &proc->state; 372 } 373 else 374 return 0; 375 } 376 377 378 /* Set PORT to PROC's exception port. */ 379 kern_return_t 380 gnu_nat_target::proc_get_exception_port (struct proc * proc, mach_port_t * port) 381 { 382 if (proc_is_task (proc)) 383 return task_get_exception_port (proc->port, port); 384 else 385 return thread_get_exception_port (proc->port, port); 386 } 387 388 /* Set PROC's exception port to PORT. */ 389 kern_return_t 390 gnu_nat_target::proc_set_exception_port (struct proc * proc, mach_port_t port) 391 { 392 proc_debug (proc, "setting exception port: %lu", port); 393 if (proc_is_task (proc)) 394 return task_set_exception_port (proc->port, port); 395 else 396 return thread_set_exception_port (proc->port, port); 397 } 398 399 /* Get PROC's exception port, cleaning up a bit if proc has died. */ 400 mach_port_t 401 gnu_nat_target::_proc_get_exc_port (struct proc *proc) 402 { 403 mach_port_t exc_port; 404 kern_return_t err = proc_get_exception_port (proc, &exc_port); 405 406 if (err) 407 /* PROC must be dead. */ 408 { 409 if (proc->exc_port) 410 mach_port_deallocate (mach_task_self (), proc->exc_port); 411 proc->exc_port = MACH_PORT_NULL; 412 if (proc->saved_exc_port) 413 mach_port_deallocate (mach_task_self (), proc->saved_exc_port); 414 proc->saved_exc_port = MACH_PORT_NULL; 415 } 416 417 return exc_port; 418 } 419 420 /* Replace PROC's exception port with EXC_PORT, unless it's already 421 been done. Stash away any existing exception port so we can 422 restore it later. */ 423 void 424 gnu_nat_target::proc_steal_exc_port (struct proc *proc, mach_port_t exc_port) 425 { 426 mach_port_t cur_exc_port = _proc_get_exc_port (proc); 427 428 if (cur_exc_port) 429 { 430 kern_return_t err = 0; 431 432 proc_debug (proc, "inserting exception port: %lu", exc_port); 433 434 if (cur_exc_port != exc_port) 435 /* Put in our exception port. */ 436 err = proc_set_exception_port (proc, exc_port); 437 438 if (err || cur_exc_port == proc->exc_port) 439 /* We previously set the exception port, and it's still set. So we 440 just keep the old saved port which is what the proc set. */ 441 { 442 if (cur_exc_port) 443 mach_port_deallocate (mach_task_self (), cur_exc_port); 444 } 445 else 446 /* Keep a copy of PROC's old exception port so it can be restored. */ 447 { 448 if (proc->saved_exc_port) 449 mach_port_deallocate (mach_task_self (), proc->saved_exc_port); 450 proc->saved_exc_port = cur_exc_port; 451 } 452 453 proc_debug (proc, "saved exception port: %lu", proc->saved_exc_port); 454 455 if (!err) 456 proc->exc_port = exc_port; 457 else 458 warning (_("Error setting exception port for %s: %s"), 459 proc_string (proc), safe_strerror (err)); 460 } 461 } 462 463 /* If we previously replaced PROC's exception port, put back what we 464 found there at the time, unless *our* exception port has since been 465 overwritten, in which case who knows what's going on. */ 466 void 467 gnu_nat_target::proc_restore_exc_port (struct proc *proc) 468 { 469 mach_port_t cur_exc_port = _proc_get_exc_port (proc); 470 471 if (cur_exc_port) 472 { 473 kern_return_t err = 0; 474 475 proc_debug (proc, "restoring real exception port"); 476 477 if (proc->exc_port == cur_exc_port) 478 /* Our's is still there. */ 479 err = proc_set_exception_port (proc, proc->saved_exc_port); 480 481 if (proc->saved_exc_port) 482 mach_port_deallocate (mach_task_self (), proc->saved_exc_port); 483 proc->saved_exc_port = MACH_PORT_NULL; 484 485 if (!err) 486 proc->exc_port = MACH_PORT_NULL; 487 else 488 warning (_("Error setting exception port for %s: %s"), 489 proc_string (proc), safe_strerror (err)); 490 } 491 } 492 493 494 /* Turns hardware tracing in PROC on or off when SET is true or false, 495 respectively. Returns true on success. */ 496 int 497 gnu_nat_target::proc_trace (struct proc *proc, int set) 498 { 499 thread_state_t state = proc_get_state (proc, 1); 500 501 if (!state) 502 return 0; /* The thread must be dead. */ 503 504 proc_debug (proc, "tracing %s", set ? "on" : "off"); 505 506 if (set) 507 { 508 /* XXX We don't get the exception unless the thread has its own 509 exception port???? */ 510 if (proc->exc_port == MACH_PORT_NULL) 511 proc_steal_exc_port (proc, proc->inf->event_port); 512 THREAD_STATE_SET_TRACED (state); 513 } 514 else 515 THREAD_STATE_CLEAR_TRACED (state); 516 517 return 1; 518 } 519 520 521 /* A variable from which to assign new TIDs. */ 522 static int next_thread_id = 1; 523 524 /* Returns a new proc structure with the given fields. Also adds a 525 notification for PORT becoming dead to be sent to INF's notify port. */ 526 struct proc * 527 gnu_nat_target::make_proc (struct inf *inf, mach_port_t port, int tid) 528 { 529 kern_return_t err; 530 mach_port_t prev_port = MACH_PORT_NULL; 531 struct proc *proc = XNEW (struct proc); 532 533 proc->port = port; 534 proc->tid = tid; 535 proc->inf = inf; 536 proc->next = 0; 537 proc->saved_exc_port = MACH_PORT_NULL; 538 proc->exc_port = MACH_PORT_NULL; 539 540 proc->sc = 0; 541 proc->cur_sc = 0; 542 543 /* Note that these are all the values for threads; the task simply uses the 544 corresponding field in INF directly. */ 545 proc->run_sc = inf->default_thread_run_sc; 546 proc->pause_sc = inf->default_thread_pause_sc; 547 proc->detach_sc = inf->default_thread_detach_sc; 548 proc->resume_sc = proc->run_sc; 549 550 proc->aborted = 0; 551 proc->dead = 0; 552 proc->state_valid = 0; 553 proc->state_changed = 0; 554 555 proc_debug (proc, "is new"); 556 557 /* Get notified when things die. */ 558 err = 559 mach_port_request_notification (mach_task_self (), port, 560 MACH_NOTIFY_DEAD_NAME, 1, 561 inf->event_port, 562 MACH_MSG_TYPE_MAKE_SEND_ONCE, 563 &prev_port); 564 if (err) 565 warning (_("Couldn't request notification for port %lu: %s"), 566 port, safe_strerror (err)); 567 else 568 { 569 proc_debug (proc, "notifications to: %lu", inf->event_port); 570 if (prev_port != MACH_PORT_NULL) 571 mach_port_deallocate (mach_task_self (), prev_port); 572 } 573 574 if (inf->want_exceptions) 575 { 576 if (proc_is_task (proc)) 577 /* Make the task exception port point to us. */ 578 proc_steal_exc_port (proc, inf->event_port); 579 else 580 /* Just clear thread exception ports -- they default to the 581 task one. */ 582 proc_steal_exc_port (proc, MACH_PORT_NULL); 583 } 584 585 return proc; 586 } 587 588 /* Frees PROC and any resources it uses, and returns the value of PROC's 589 next field. */ 590 struct proc * 591 gnu_nat_target::_proc_free (struct proc *proc) 592 { 593 struct inf *inf = proc->inf; 594 struct proc *next = proc->next; 595 596 proc_debug (proc, "freeing..."); 597 598 if (proc == inf->step_thread) 599 /* Turn off single stepping. */ 600 inf_set_step_thread (inf, 0); 601 if (proc == inf->wait.thread) 602 inf_clear_wait (inf); 603 if (proc == inf->signal_thread) 604 inf->signal_thread = 0; 605 606 if (proc->port != MACH_PORT_NULL) 607 { 608 if (proc->exc_port != MACH_PORT_NULL) 609 /* Restore the original exception port. */ 610 proc_restore_exc_port (proc); 611 if (proc->cur_sc != 0) 612 /* Resume the thread/task. */ 613 { 614 proc->sc = 0; 615 proc_update_sc (proc); 616 } 617 mach_port_deallocate (mach_task_self (), proc->port); 618 } 619 620 xfree (proc); 621 return next; 622 } 623 624 625 static struct inf * 626 make_inf (void) 627 { 628 struct inf *inf = XNEW (struct inf); 629 630 inf->task = 0; 631 inf->threads = 0; 632 inf->threads_up_to_date = 0; 633 inf->pid = 0; 634 inf->wait.status.kind = TARGET_WAITKIND_SPURIOUS; 635 inf->wait.thread = 0; 636 inf->wait.exc.handler = MACH_PORT_NULL; 637 inf->wait.exc.reply = MACH_PORT_NULL; 638 inf->step_thread = 0; 639 inf->signal_thread = 0; 640 inf->event_port = MACH_PORT_NULL; 641 inf->running = 0; 642 inf->stopped = 0; 643 inf->nomsg = 1; 644 inf->traced = 0; 645 inf->no_wait = 0; 646 inf->pending_execs = 0; 647 inf->pause_sc = 1; 648 inf->detach_sc = 0; 649 inf->default_thread_run_sc = 0; 650 inf->default_thread_pause_sc = 0; 651 inf->default_thread_detach_sc = 0; 652 inf->want_signals = 1; /* By default */ 653 inf->want_exceptions = 1; /* By default */ 654 655 return inf; 656 } 657 658 /* Clear INF's target wait status. */ 659 void 660 gnu_nat_target::inf_clear_wait (struct inf *inf) 661 { 662 inf_debug (inf, "clearing wait"); 663 inf->wait.status.kind = TARGET_WAITKIND_SPURIOUS; 664 inf->wait.thread = 0; 665 inf->wait.suppress = 0; 666 if (inf->wait.exc.handler != MACH_PORT_NULL) 667 { 668 mach_port_deallocate (mach_task_self (), inf->wait.exc.handler); 669 inf->wait.exc.handler = MACH_PORT_NULL; 670 } 671 if (inf->wait.exc.reply != MACH_PORT_NULL) 672 { 673 mach_port_deallocate (mach_task_self (), inf->wait.exc.reply); 674 inf->wait.exc.reply = MACH_PORT_NULL; 675 } 676 } 677 678 679 void 680 gnu_nat_target::inf_cleanup (struct inf *inf) 681 { 682 inf_debug (inf, "cleanup"); 683 684 inf_clear_wait (inf); 685 686 inf_set_pid (inf, -1); 687 inf->pid = 0; 688 inf->running = 0; 689 inf->stopped = 0; 690 inf->nomsg = 1; 691 inf->traced = 0; 692 inf->no_wait = 0; 693 inf->pending_execs = 0; 694 695 if (inf->event_port) 696 { 697 mach_port_destroy (mach_task_self (), inf->event_port); 698 inf->event_port = MACH_PORT_NULL; 699 } 700 } 701 702 void 703 gnu_nat_target::inf_startup (struct inf *inf, int pid) 704 { 705 kern_return_t err; 706 707 inf_debug (inf, "startup: pid = %d", pid); 708 709 inf_cleanup (inf); 710 711 /* Make the port on which we receive all events. */ 712 err = mach_port_allocate (mach_task_self (), 713 MACH_PORT_RIGHT_RECEIVE, &inf->event_port); 714 if (err) 715 error (_("Error allocating event port: %s"), safe_strerror (err)); 716 717 /* Make a send right for it, so we can easily copy it for other people. */ 718 mach_port_insert_right (mach_task_self (), inf->event_port, 719 inf->event_port, MACH_MSG_TYPE_MAKE_SEND); 720 inf_set_pid (inf, pid); 721 } 722 723 724 /* Close current process, if any, and attach INF to process PORT. */ 725 void 726 gnu_nat_target::inf_set_pid (struct inf *inf, pid_t pid) 727 { 728 task_t task_port; 729 struct proc *task = inf->task; 730 731 inf_debug (inf, "setting pid: %d", pid); 732 733 if (pid < 0) 734 task_port = MACH_PORT_NULL; 735 else 736 { 737 kern_return_t err = proc_pid2task (proc_server, pid, &task_port); 738 739 if (err) 740 error (_("Error getting task for pid %d: %s"), 741 pid, safe_strerror (err)); 742 } 743 744 inf_debug (inf, "setting task: %lu", task_port); 745 746 if (inf->pause_sc) 747 task_suspend (task_port); 748 749 if (task && task->port != task_port) 750 { 751 inf->task = 0; 752 inf_validate_procs (inf); /* Trash all the threads. */ 753 _proc_free (task); /* And the task. */ 754 } 755 756 if (task_port != MACH_PORT_NULL) 757 { 758 inf->task = make_proc (inf, task_port, PROC_TID_TASK); 759 inf->threads_up_to_date = 0; 760 } 761 762 if (inf->task) 763 { 764 inf->pid = pid; 765 if (inf->pause_sc) 766 /* Reflect task_suspend above. */ 767 inf->task->sc = inf->task->cur_sc = 1; 768 } 769 else 770 inf->pid = -1; 771 } 772 773 774 /* Validates INF's stopped, nomsg and traced field from the actual 775 proc server state. Note that the traced field is only updated from 776 the proc server state if we do not have a message port. If we do 777 have a message port we'd better look at the tracemask itself. */ 778 void 779 gnu_nat_target::inf_validate_procinfo (struct inf *inf) 780 { 781 char *noise; 782 mach_msg_type_number_t noise_len = 0; 783 struct procinfo *pi; 784 mach_msg_type_number_t pi_len = 0; 785 int info_flags = 0; 786 kern_return_t err = 787 proc_getprocinfo (proc_server, inf->pid, &info_flags, 788 (procinfo_t *) &pi, &pi_len, &noise, &noise_len); 789 790 if (!err) 791 { 792 inf->stopped = !!(pi->state & PI_STOPPED); 793 inf->nomsg = !!(pi->state & PI_NOMSG); 794 if (inf->nomsg) 795 inf->traced = !!(pi->state & PI_TRACED); 796 vm_deallocate (mach_task_self (), (vm_address_t) pi, 797 pi_len * sizeof (*(procinfo_t) 0)); 798 if (noise_len > 0) 799 vm_deallocate (mach_task_self (), (vm_address_t) noise, noise_len); 800 } 801 } 802 803 /* Validates INF's task suspend count. If it's higher than we expect, 804 verify with the user before `stealing' the extra count. */ 805 void 806 gnu_nat_target::inf_validate_task_sc (struct inf *inf) 807 { 808 char *noise; 809 mach_msg_type_number_t noise_len = 0; 810 struct procinfo *pi; 811 mach_msg_type_number_t pi_len = 0; 812 int info_flags = PI_FETCH_TASKINFO; 813 int suspend_count = -1; 814 kern_return_t err; 815 816 retry: 817 err = proc_getprocinfo (proc_server, inf->pid, &info_flags, 818 (procinfo_t *) &pi, &pi_len, &noise, &noise_len); 819 if (err) 820 { 821 inf->task->dead = 1; /* oh well */ 822 return; 823 } 824 825 if (inf->task->cur_sc < pi->taskinfo.suspend_count && suspend_count == -1) 826 { 827 /* The proc server might have suspended the task while stopping 828 it. This happens when the task is handling a traced signal. 829 Refetch the suspend count. The proc server should be 830 finished stopping the task by now. */ 831 suspend_count = pi->taskinfo.suspend_count; 832 goto retry; 833 } 834 835 suspend_count = pi->taskinfo.suspend_count; 836 837 vm_deallocate (mach_task_self (), (vm_address_t) pi, 838 pi_len * sizeof (*(procinfo_t) 0)); 839 if (noise_len > 0) 840 vm_deallocate (mach_task_self (), (vm_address_t) noise, noise_len); 841 842 if (inf->task->cur_sc < suspend_count) 843 { 844 if (!query (_("Pid %d has an additional task suspend count of %d;" 845 " clear it? "), inf->pid, 846 suspend_count - inf->task->cur_sc)) 847 error (_("Additional task suspend count left untouched.")); 848 849 inf->task->cur_sc = suspend_count; 850 } 851 } 852 853 /* Turns tracing for INF on or off, depending on ON, unless it already 854 is. If INF is running, the resume_sc count of INF's threads will 855 be modified, and the signal thread will briefly be run to change 856 the trace state. */ 857 void 858 gnu_nat_target::inf_set_traced (struct inf *inf, int on) 859 { 860 if (on == inf->traced) 861 return; 862 863 if (inf->task && !inf->task->dead) 864 /* Make it take effect immediately. */ 865 { 866 sigset_t mask = on ? ~(sigset_t) 0 : 0; 867 kern_return_t err = 868 INF_RESUME_MSGPORT_RPC (inf, msg_set_init_int (msgport, refport, 869 INIT_TRACEMASK, mask)); 870 871 if (err == EIEIO) 872 { 873 if (on) 874 warning (_("Can't modify tracing state for pid %d: %s"), 875 inf->pid, "No signal thread"); 876 inf->traced = on; 877 } 878 else if (err) 879 warning (_("Can't modify tracing state for pid %d: %s"), 880 inf->pid, safe_strerror (err)); 881 else 882 inf->traced = on; 883 } 884 else 885 inf->traced = on; 886 } 887 888 889 /* Makes all the real suspend count deltas of all the procs in INF 890 match the desired values. Careful to always do thread/task suspend 891 counts in the safe order. Returns true if at least one thread is 892 thought to be running. */ 893 int 894 gnu_nat_target::inf_update_suspends (struct inf *inf) 895 { 896 struct proc *task = inf->task; 897 898 /* We don't have to update INF->threads even though we're iterating over it 899 because we'll change a thread only if it already has an existing proc 900 entry. */ 901 inf_debug (inf, "updating suspend counts"); 902 903 if (task) 904 { 905 struct proc *thread; 906 int task_running = (task->sc == 0), thread_running = 0; 907 908 if (task->sc > task->cur_sc) 909 /* The task is becoming _more_ suspended; do before any threads. */ 910 task_running = proc_update_sc (task); 911 912 if (inf->pending_execs) 913 /* When we're waiting for an exec, things may be happening behind our 914 back, so be conservative. */ 915 thread_running = 1; 916 917 /* Do all the thread suspend counts. */ 918 for (thread = inf->threads; thread; thread = thread->next) 919 thread_running |= proc_update_sc (thread); 920 921 if (task->sc != task->cur_sc) 922 /* We didn't do the task first, because we wanted to wait for the 923 threads; do it now. */ 924 task_running = proc_update_sc (task); 925 926 inf_debug (inf, "%srunning...", 927 (thread_running && task_running) ? "" : "not "); 928 929 inf->running = thread_running && task_running; 930 931 /* Once any thread has executed some code, we can't depend on the 932 threads list any more. */ 933 if (inf->running) 934 inf->threads_up_to_date = 0; 935 936 return inf->running; 937 } 938 939 return 0; 940 } 941 942 943 /* Converts a GDB pid to a struct proc. */ 944 struct proc * 945 inf_tid_to_thread (struct inf *inf, int tid) 946 { 947 struct proc *thread = inf->threads; 948 949 while (thread) 950 if (thread->tid == tid) 951 return thread; 952 else 953 thread = thread->next; 954 return 0; 955 } 956 957 /* Converts a thread port to a struct proc. */ 958 static struct proc * 959 inf_port_to_thread (struct inf *inf, mach_port_t port) 960 { 961 struct proc *thread = inf->threads; 962 963 while (thread) 964 if (thread->port == port) 965 return thread; 966 else 967 thread = thread->next; 968 return 0; 969 } 970 971 /* See gnu-nat.h. */ 972 973 void 974 inf_threads (struct inf *inf, inf_threads_ftype *f, void *arg) 975 { 976 struct proc *thread; 977 978 for (thread = inf->threads; thread; thread = thread->next) 979 f (thread, arg); 980 } 981 982 983 /* Make INF's list of threads be consistent with reality of TASK. */ 984 void 985 gnu_nat_target::inf_validate_procs (struct inf *inf) 986 { 987 thread_array_t threads; 988 mach_msg_type_number_t num_threads, i; 989 struct proc *task = inf->task; 990 991 /* If no threads are currently running, this function will guarantee that 992 things are up to date. The exception is if there are zero threads -- 993 then it is almost certainly in an odd state, and probably some outside 994 agent will create threads. */ 995 inf->threads_up_to_date = inf->threads ? !inf->running : 0; 996 997 if (task) 998 { 999 kern_return_t err = task_threads (task->port, &threads, &num_threads); 1000 1001 inf_debug (inf, "fetching threads"); 1002 if (err) 1003 /* TASK must be dead. */ 1004 { 1005 task->dead = 1; 1006 task = 0; 1007 } 1008 } 1009 1010 if (!task) 1011 { 1012 num_threads = 0; 1013 inf_debug (inf, "no task"); 1014 } 1015 1016 { 1017 /* Make things normally linear. */ 1018 mach_msg_type_number_t search_start = 0; 1019 /* Which thread in PROCS corresponds to each task thread, & the task. */ 1020 struct proc *matched[num_threads + 1]; 1021 /* The last thread in INF->threads, so we can add to the end. */ 1022 struct proc *last = 0; 1023 /* The current thread we're considering. */ 1024 struct proc *thread = inf->threads; 1025 1026 memset (matched, 0, sizeof (matched)); 1027 1028 while (thread) 1029 { 1030 mach_msg_type_number_t left; 1031 1032 for (i = search_start, left = num_threads; left; i++, left--) 1033 { 1034 if (i >= num_threads) 1035 i -= num_threads; /* I wrapped around. */ 1036 if (thread->port == threads[i]) 1037 /* We already know about this thread. */ 1038 { 1039 matched[i] = thread; 1040 last = thread; 1041 thread = thread->next; 1042 search_start++; 1043 break; 1044 } 1045 } 1046 1047 if (!left) 1048 { 1049 proc_debug (thread, "died!"); 1050 thread->port = MACH_PORT_NULL; 1051 thread = _proc_free (thread); /* THREAD is dead. */ 1052 if (last) 1053 last->next = thread; 1054 else 1055 inf->threads = thread; 1056 } 1057 } 1058 1059 for (i = 0; i < num_threads; i++) 1060 { 1061 if (matched[i]) 1062 /* Throw away the duplicate send right. */ 1063 mach_port_deallocate (mach_task_self (), threads[i]); 1064 else 1065 /* THREADS[I] is a thread we don't know about yet! */ 1066 { 1067 ptid_t ptid; 1068 1069 thread = make_proc (inf, threads[i], next_thread_id++); 1070 if (last) 1071 last->next = thread; 1072 else 1073 inf->threads = thread; 1074 last = thread; 1075 proc_debug (thread, "new thread: %lu", threads[i]); 1076 1077 ptid = ptid_t (inf->pid, thread->tid, 0); 1078 1079 /* Tell GDB's generic thread code. */ 1080 1081 if (inferior_ptid == ptid_t (inf->pid)) 1082 /* This is the first time we're hearing about thread 1083 ids, after a fork-child. */ 1084 thread_change_ptid (this, inferior_ptid, ptid); 1085 else if (inf->pending_execs != 0) 1086 /* This is a shell thread. */ 1087 add_thread_silent (this, ptid); 1088 else 1089 add_thread (this, ptid); 1090 } 1091 } 1092 1093 vm_deallocate (mach_task_self (), 1094 (vm_address_t) threads, (num_threads * sizeof (thread_t))); 1095 } 1096 } 1097 1098 1099 /* Makes sure that INF's thread list is synced with the actual process. */ 1100 int 1101 inf_update_procs (struct inf *inf) 1102 { 1103 if (!inf->task) 1104 return 0; 1105 if (!inf->threads_up_to_date) 1106 gnu_target->inf_validate_procs (inf); 1107 return !!inf->task; 1108 } 1109 1110 /* Sets the resume_sc of each thread in inf. That of RUN_THREAD is set to 0, 1111 and others are set to their run_sc if RUN_OTHERS is true, and otherwise 1112 their pause_sc. */ 1113 void 1114 gnu_nat_target::inf_set_threads_resume_sc (struct inf *inf, 1115 struct proc *run_thread, int run_others) 1116 { 1117 struct proc *thread; 1118 1119 inf_update_procs (inf); 1120 for (thread = inf->threads; thread; thread = thread->next) 1121 if (thread == run_thread) 1122 thread->resume_sc = 0; 1123 else if (run_others) 1124 thread->resume_sc = thread->run_sc; 1125 else 1126 thread->resume_sc = thread->pause_sc; 1127 } 1128 1129 1130 /* Cause INF to continue execution immediately; individual threads may still 1131 be suspended (but their suspend counts will be updated). */ 1132 void 1133 gnu_nat_target::inf_resume (struct inf *inf) 1134 { 1135 struct proc *thread; 1136 1137 inf_update_procs (inf); 1138 1139 for (thread = inf->threads; thread; thread = thread->next) 1140 thread->sc = thread->resume_sc; 1141 1142 if (inf->task) 1143 { 1144 if (!inf->pending_execs) 1145 /* Try to make sure our task count is correct -- in the case where 1146 we're waiting for an exec though, things are too volatile, so just 1147 assume things will be reasonable (which they usually will be). */ 1148 inf_validate_task_sc (inf); 1149 inf->task->sc = 0; 1150 } 1151 1152 inf_update_suspends (inf); 1153 } 1154 1155 /* Cause INF to stop execution immediately; individual threads may still 1156 be running. */ 1157 void 1158 gnu_nat_target::inf_suspend (struct inf *inf) 1159 { 1160 struct proc *thread; 1161 1162 inf_update_procs (inf); 1163 1164 for (thread = inf->threads; thread; thread = thread->next) 1165 thread->sc = thread->pause_sc; 1166 1167 if (inf->task) 1168 inf->task->sc = inf->pause_sc; 1169 1170 inf_update_suspends (inf); 1171 } 1172 1173 1174 /* INF has one thread PROC that is in single-stepping mode. This 1175 function changes it to be PROC, changing any old step_thread to be 1176 a normal one. A PROC of 0 clears any existing value. */ 1177 void 1178 gnu_nat_target::inf_set_step_thread (struct inf *inf, struct proc *thread) 1179 { 1180 gdb_assert (!thread || proc_is_thread (thread)); 1181 1182 if (thread) 1183 inf_debug (inf, "setting step thread: %d/%d", inf->pid, thread->tid); 1184 else 1185 inf_debug (inf, "clearing step thread"); 1186 1187 if (inf->step_thread != thread) 1188 { 1189 if (inf->step_thread && inf->step_thread->port != MACH_PORT_NULL) 1190 if (!proc_trace (inf->step_thread, 0)) 1191 return; 1192 if (thread && proc_trace (thread, 1)) 1193 inf->step_thread = thread; 1194 else 1195 inf->step_thread = 0; 1196 } 1197 } 1198 1199 1200 /* Set up the thread resume_sc's so that only the signal thread is running 1201 (plus whatever other thread are set to always run). Returns true if we 1202 did so, or false if we can't find a signal thread. */ 1203 int 1204 gnu_nat_target::inf_set_threads_resume_sc_for_signal_thread (struct inf *inf) 1205 { 1206 if (inf->signal_thread) 1207 { 1208 inf_set_threads_resume_sc (inf, inf->signal_thread, 0); 1209 return 1; 1210 } 1211 else 1212 return 0; 1213 } 1214 1215 static void 1216 inf_update_signal_thread (struct inf *inf) 1217 { 1218 /* XXX for now we assume that if there's a msgport, the 2nd thread is 1219 the signal thread. */ 1220 inf->signal_thread = inf->threads ? inf->threads->next : 0; 1221 } 1222 1223 1224 /* Detachs from INF's inferior task, letting it run once again... */ 1225 void 1226 gnu_nat_target::inf_detach (struct inf *inf) 1227 { 1228 struct proc *task = inf->task; 1229 1230 inf_debug (inf, "detaching..."); 1231 1232 inf_clear_wait (inf); 1233 inf_set_step_thread (inf, 0); 1234 1235 if (task) 1236 { 1237 struct proc *thread; 1238 1239 inf_validate_procinfo (inf); 1240 1241 inf_set_traced (inf, 0); 1242 if (inf->stopped) 1243 { 1244 if (inf->nomsg) 1245 inf_continue (inf); 1246 else 1247 inf_signal (inf, GDB_SIGNAL_0); 1248 } 1249 1250 proc_restore_exc_port (task); 1251 task->sc = inf->detach_sc; 1252 1253 for (thread = inf->threads; thread; thread = thread->next) 1254 { 1255 proc_restore_exc_port (thread); 1256 thread->sc = thread->detach_sc; 1257 } 1258 1259 inf_update_suspends (inf); 1260 } 1261 1262 inf_cleanup (inf); 1263 } 1264 1265 /* Attaches INF to the process with process id PID, returning it in a 1266 suspended state suitable for debugging. */ 1267 void 1268 gnu_nat_target::inf_attach (struct inf *inf, int pid) 1269 { 1270 inf_debug (inf, "attaching: %d", pid); 1271 1272 if (inf->pid) 1273 inf_detach (inf); 1274 1275 inf_startup (inf, pid); 1276 } 1277 1278 1279 /* Makes sure that we've got our exception ports entrenched in the process. */ 1280 void 1281 gnu_nat_target::inf_steal_exc_ports (struct inf *inf) 1282 { 1283 struct proc *thread; 1284 1285 inf_debug (inf, "stealing exception ports"); 1286 1287 inf_set_step_thread (inf, 0); /* The step thread is special. */ 1288 1289 proc_steal_exc_port (inf->task, inf->event_port); 1290 for (thread = inf->threads; thread; thread = thread->next) 1291 proc_steal_exc_port (thread, MACH_PORT_NULL); 1292 } 1293 1294 /* Makes sure the process has its own exception ports. */ 1295 void 1296 gnu_nat_target::inf_restore_exc_ports (struct inf *inf) 1297 { 1298 struct proc *thread; 1299 1300 inf_debug (inf, "restoring exception ports"); 1301 1302 inf_set_step_thread (inf, 0); /* The step thread is special. */ 1303 1304 proc_restore_exc_port (inf->task); 1305 for (thread = inf->threads; thread; thread = thread->next) 1306 proc_restore_exc_port (thread); 1307 } 1308 1309 1310 /* Deliver signal SIG to INF. If INF is stopped, delivering a signal, even 1311 signal 0, will continue it. INF is assumed to be in a paused state, and 1312 the resume_sc's of INF's threads may be affected. */ 1313 void 1314 gnu_nat_target::inf_signal (struct inf *inf, enum gdb_signal sig) 1315 { 1316 kern_return_t err = 0; 1317 int host_sig = gdb_signal_to_host (sig); 1318 1319 #define NAME gdb_signal_to_name (sig) 1320 1321 if (host_sig >= _NSIG) 1322 /* A mach exception. Exceptions are encoded in the signal space by 1323 putting them after _NSIG; this assumes they're positive (and not 1324 extremely large)! */ 1325 { 1326 struct inf_wait *w = &inf->wait; 1327 1328 if (w->status.kind == TARGET_WAITKIND_STOPPED 1329 && w->status.value.sig == sig 1330 && w->thread && !w->thread->aborted) 1331 /* We're passing through the last exception we received. This is 1332 kind of bogus, because exceptions are per-thread whereas gdb 1333 treats signals as per-process. We just forward the exception to 1334 the correct handler, even it's not for the same thread as TID -- 1335 i.e., we pretend it's global. */ 1336 { 1337 struct exc_state *e = &w->exc; 1338 1339 inf_debug (inf, "passing through exception:" 1340 " task = %lu, thread = %lu, exc = %d" 1341 ", code = %d, subcode = %d", 1342 w->thread->port, inf->task->port, 1343 e->exception, e->code, e->subcode); 1344 err = 1345 exception_raise_request (e->handler, 1346 e->reply, MACH_MSG_TYPE_MOVE_SEND_ONCE, 1347 w->thread->port, inf->task->port, 1348 e->exception, e->code, e->subcode); 1349 } 1350 else 1351 error (_("Can't forward spontaneous exception (%s)."), NAME); 1352 } 1353 else 1354 /* A Unix signal. */ 1355 if (inf->stopped) 1356 /* The process is stopped and expecting a signal. Just send off a 1357 request and let it get handled when we resume everything. */ 1358 { 1359 inf_debug (inf, "sending %s to stopped process", NAME); 1360 err = 1361 INF_MSGPORT_RPC (inf, 1362 msg_sig_post_untraced_request (msgport, 1363 inf->event_port, 1364 MACH_MSG_TYPE_MAKE_SEND_ONCE, 1365 host_sig, 0, 1366 refport)); 1367 if (!err) 1368 /* Posting an untraced signal automatically continues it. 1369 We clear this here rather than when we get the reply 1370 because we'd rather assume it's not stopped when it 1371 actually is, than the reverse. */ 1372 inf->stopped = 0; 1373 } 1374 else 1375 /* It's not expecting it. We have to let just the signal thread 1376 run, and wait for it to get into a reasonable state before we 1377 can continue the rest of the process. When we finally resume the 1378 process the signal we request will be the very first thing that 1379 happens. */ 1380 { 1381 inf_debug (inf, "sending %s to unstopped process" 1382 " (so resuming signal thread)", NAME); 1383 err = 1384 INF_RESUME_MSGPORT_RPC (inf, 1385 msg_sig_post_untraced (msgport, host_sig, 1386 0, refport)); 1387 } 1388 1389 if (err == EIEIO) 1390 /* Can't do too much... */ 1391 warning (_("Can't deliver signal %s: No signal thread."), NAME); 1392 else if (err) 1393 warning (_("Delivering signal %s: %s"), NAME, safe_strerror (err)); 1394 1395 #undef NAME 1396 } 1397 1398 1399 /* Continue INF without delivering a signal. This is meant to be used 1400 when INF does not have a message port. */ 1401 void 1402 gnu_nat_target::inf_continue (struct inf *inf) 1403 { 1404 process_t proc; 1405 kern_return_t err = proc_pid2proc (proc_server, inf->pid, &proc); 1406 1407 if (!err) 1408 { 1409 inf_debug (inf, "continuing process"); 1410 1411 err = proc_mark_cont (proc); 1412 if (!err) 1413 { 1414 struct proc *thread; 1415 1416 for (thread = inf->threads; thread; thread = thread->next) 1417 thread_resume (thread->port); 1418 1419 inf->stopped = 0; 1420 } 1421 } 1422 1423 if (err) 1424 warning (_("Can't continue process: %s"), safe_strerror (err)); 1425 } 1426 1427 1428 /* The inferior used for all gdb target ops. */ 1429 struct inf *gnu_current_inf = 0; 1430 1431 /* The inferior being waited for by gnu_wait. Since GDB is decidely not 1432 multi-threaded, we don't bother to lock this. */ 1433 static struct inf *waiting_inf; 1434 1435 /* Wait for something to happen in the inferior, returning what in STATUS. */ 1436 1437 ptid_t 1438 gnu_nat_target::wait (ptid_t ptid, struct target_waitstatus *status, 1439 int options) 1440 { 1441 struct msg 1442 { 1443 mach_msg_header_t hdr; 1444 mach_msg_type_t type; 1445 int data[8000]; 1446 } msg; 1447 kern_return_t err; 1448 struct proc *thread; 1449 struct inf *inf = gnu_current_inf; 1450 1451 gdb_assert (inf->task); 1452 1453 if (!inf->threads && !inf->pending_execs) 1454 /* No threads! Assume that maybe some outside agency is frobbing our 1455 task, and really look for new threads. If we can't find any, just tell 1456 the user to try again later. */ 1457 { 1458 inf_validate_procs (inf); 1459 if (!inf->threads && !inf->task->dead) 1460 error (_("There are no threads; try again later.")); 1461 } 1462 1463 waiting_inf = inf; 1464 1465 inf_debug (inf, "waiting for: %s", target_pid_to_str (ptid).c_str ()); 1466 1467 rewait: 1468 if (proc_wait_pid != inf->pid && !inf->no_wait) 1469 /* Always get information on events from the proc server. */ 1470 { 1471 inf_debug (inf, "requesting wait on pid %d", inf->pid); 1472 1473 if (proc_wait_pid) 1474 /* The proc server is single-threaded, and only allows a single 1475 outstanding wait request, so we have to cancel the previous one. */ 1476 { 1477 inf_debug (inf, "cancelling previous wait on pid %d", proc_wait_pid); 1478 interrupt_operation (proc_server, 0); 1479 } 1480 1481 err = 1482 proc_wait_request (proc_server, inf->event_port, inf->pid, WUNTRACED); 1483 if (err) 1484 warning (_("wait request failed: %s"), safe_strerror (err)); 1485 else 1486 { 1487 inf_debug (inf, "waits pending: %d", proc_waits_pending); 1488 proc_wait_pid = inf->pid; 1489 /* Even if proc_waits_pending was > 0 before, we still won't 1490 get any other replies, because it was either from a 1491 different INF, or a different process attached to INF -- 1492 and the event port, which is the wait reply port, changes 1493 when you switch processes. */ 1494 proc_waits_pending = 1; 1495 } 1496 } 1497 1498 inf_clear_wait (inf); 1499 1500 /* What can happen? (1) Dead name notification; (2) Exceptions arrive; 1501 (3) wait reply from the proc server. */ 1502 1503 inf_debug (inf, "waiting for an event..."); 1504 err = mach_msg (&msg.hdr, MACH_RCV_MSG | MACH_RCV_INTERRUPT, 1505 0, sizeof (struct msg), inf->event_port, 1506 MACH_MSG_TIMEOUT_NONE, MACH_PORT_NULL); 1507 1508 /* Re-suspend the task. */ 1509 inf_suspend (inf); 1510 1511 if (!inf->task && inf->pending_execs) 1512 /* When doing an exec, it's possible that the old task wasn't reused 1513 (e.g., setuid execs). So if the task seems to have disappeared, 1514 attempt to refetch it, as the pid should still be the same. */ 1515 inf_set_pid (inf, inf->pid); 1516 1517 if (err == EMACH_RCV_INTERRUPTED) 1518 inf_debug (inf, "interrupted"); 1519 else if (err) 1520 error (_("Couldn't wait for an event: %s"), safe_strerror (err)); 1521 else 1522 { 1523 struct 1524 { 1525 mach_msg_header_t hdr; 1526 mach_msg_type_t err_type; 1527 kern_return_t err; 1528 char noise[200]; 1529 } 1530 reply; 1531 1532 inf_debug (inf, "event: msgid = %d", msg.hdr.msgh_id); 1533 1534 /* Handle what we got. */ 1535 if (!notify_server (&msg.hdr, &reply.hdr) 1536 && !exc_server (&msg.hdr, &reply.hdr) 1537 && !process_reply_server (&msg.hdr, &reply.hdr) 1538 && !msg_reply_server (&msg.hdr, &reply.hdr)) 1539 /* Whatever it is, it's something strange. */ 1540 error (_("Got a strange event, msg id = %d."), msg.hdr.msgh_id); 1541 1542 if (reply.err) 1543 error (_("Handling event, msgid = %d: %s"), 1544 msg.hdr.msgh_id, safe_strerror (reply.err)); 1545 } 1546 1547 if (inf->pending_execs) 1548 /* We're waiting for the inferior to finish execing. */ 1549 { 1550 struct inf_wait *w = &inf->wait; 1551 enum target_waitkind kind = w->status.kind; 1552 1553 if (kind == TARGET_WAITKIND_SPURIOUS) 1554 /* Since gdb is actually counting the number of times the inferior 1555 stops, expecting one stop per exec, we only return major events 1556 while execing. */ 1557 { 1558 w->suppress = 1; 1559 inf_debug (inf, "pending_execs, ignoring minor event"); 1560 } 1561 else if (kind == TARGET_WAITKIND_STOPPED 1562 && w->status.value.sig == GDB_SIGNAL_TRAP) 1563 /* Ah hah! A SIGTRAP from the inferior while starting up probably 1564 means we've succesfully completed an exec! */ 1565 { 1566 inf_debug (inf, "one pending exec completed"); 1567 } 1568 else if (kind == TARGET_WAITKIND_STOPPED) 1569 /* It's possible that this signal is because of a crashed process 1570 being handled by the hurd crash server; in this case, the process 1571 will have an extra task suspend, which we need to know about. 1572 Since the code in inf_resume that normally checks for this is 1573 disabled while INF->pending_execs, we do the check here instead. */ 1574 inf_validate_task_sc (inf); 1575 } 1576 1577 if (inf->wait.suppress) 1578 /* Some totally spurious event happened that we don't consider 1579 worth returning to gdb. Just keep waiting. */ 1580 { 1581 inf_debug (inf, "suppressing return, rewaiting..."); 1582 inf_resume (inf); 1583 goto rewait; 1584 } 1585 1586 /* Pass back out our results. */ 1587 memcpy (status, &inf->wait.status, sizeof (*status)); 1588 1589 thread = inf->wait.thread; 1590 if (thread) 1591 ptid = ptid_t (inf->pid, thread->tid, 0); 1592 else if (ptid == minus_one_ptid) 1593 thread = inf_tid_to_thread (inf, -1); 1594 else 1595 thread = inf_tid_to_thread (inf, ptid.lwp ()); 1596 1597 if (!thread || thread->port == MACH_PORT_NULL) 1598 { 1599 /* TID is dead; try and find a new thread. */ 1600 if (inf_update_procs (inf) && inf->threads) 1601 ptid = ptid_t (inf->pid, inf->threads->tid, 0); /* The first 1602 available 1603 thread. */ 1604 else 1605 ptid = inferior_ptid; /* let wait_for_inferior handle exit case */ 1606 } 1607 1608 if (thread 1609 && ptid != minus_one_ptid 1610 && status->kind != TARGET_WAITKIND_SPURIOUS 1611 && inf->pause_sc == 0 && thread->pause_sc == 0) 1612 /* If something actually happened to THREAD, make sure we 1613 suspend it. */ 1614 { 1615 thread->sc = 1; 1616 inf_update_suspends (inf); 1617 } 1618 1619 inf_debug (inf, "returning ptid = %s, %s", 1620 target_pid_to_str (ptid).c_str (), 1621 target_waitstatus_to_string (status).c_str ()); 1622 1623 return ptid; 1624 } 1625 1626 1627 /* The rpc handler called by exc_server. */ 1628 kern_return_t 1629 S_exception_raise_request (mach_port_t port, mach_port_t reply_port, 1630 thread_t thread_port, task_t task_port, 1631 int exception, int code, int subcode) 1632 { 1633 struct inf *inf = waiting_inf; 1634 struct proc *thread = inf_port_to_thread (inf, thread_port); 1635 1636 inf_debug (waiting_inf, 1637 "thread = %lu, task = %lu, exc = %d, code = %d, subcode = %d", 1638 thread_port, task_port, exception, code, subcode); 1639 1640 if (!thread) 1641 /* We don't know about thread? */ 1642 { 1643 inf_update_procs (inf); 1644 thread = inf_port_to_thread (inf, thread_port); 1645 if (!thread) 1646 /* Give up, the generating thread is gone. */ 1647 return 0; 1648 } 1649 1650 mach_port_deallocate (mach_task_self (), thread_port); 1651 mach_port_deallocate (mach_task_self (), task_port); 1652 1653 if (!thread->aborted) 1654 /* THREAD hasn't been aborted since this exception happened (abortion 1655 clears any exception state), so it must be real. */ 1656 { 1657 /* Store away the details; this will destroy any previous info. */ 1658 inf->wait.thread = thread; 1659 1660 inf->wait.status.kind = TARGET_WAITKIND_STOPPED; 1661 1662 if (exception == EXC_BREAKPOINT) 1663 /* GDB likes to get SIGTRAP for breakpoints. */ 1664 { 1665 inf->wait.status.value.sig = GDB_SIGNAL_TRAP; 1666 mach_port_deallocate (mach_task_self (), reply_port); 1667 } 1668 else 1669 /* Record the exception so that we can forward it later. */ 1670 { 1671 if (thread->exc_port == port) 1672 { 1673 inf_debug (waiting_inf, "Handler is thread exception port <%lu>", 1674 thread->saved_exc_port); 1675 inf->wait.exc.handler = thread->saved_exc_port; 1676 } 1677 else 1678 { 1679 inf_debug (waiting_inf, "Handler is task exception port <%lu>", 1680 inf->task->saved_exc_port); 1681 inf->wait.exc.handler = inf->task->saved_exc_port; 1682 gdb_assert (inf->task->exc_port == port); 1683 } 1684 if (inf->wait.exc.handler != MACH_PORT_NULL) 1685 /* Add a reference to the exception handler. */ 1686 mach_port_mod_refs (mach_task_self (), 1687 inf->wait.exc.handler, MACH_PORT_RIGHT_SEND, 1688 1); 1689 1690 inf->wait.exc.exception = exception; 1691 inf->wait.exc.code = code; 1692 inf->wait.exc.subcode = subcode; 1693 inf->wait.exc.reply = reply_port; 1694 1695 /* Exceptions are encoded in the signal space by putting 1696 them after _NSIG; this assumes they're positive (and not 1697 extremely large)! */ 1698 inf->wait.status.value.sig = 1699 gdb_signal_from_host (_NSIG + exception); 1700 } 1701 } 1702 else 1703 /* A suppressed exception, which ignore. */ 1704 { 1705 inf->wait.suppress = 1; 1706 mach_port_deallocate (mach_task_self (), reply_port); 1707 } 1708 1709 return 0; 1710 } 1711 1712 1713 /* Fill in INF's wait field after a task has died without giving us more 1714 detailed information. */ 1715 static void 1716 inf_task_died_status (struct inf *inf) 1717 { 1718 warning (_("Pid %d died with unknown exit status, using SIGKILL."), 1719 inf->pid); 1720 inf->wait.status.kind = TARGET_WAITKIND_SIGNALLED; 1721 inf->wait.status.value.sig = GDB_SIGNAL_KILL; 1722 } 1723 1724 /* Notify server routines. The only real one is dead name notification. */ 1725 kern_return_t 1726 do_mach_notify_dead_name (mach_port_t notify, mach_port_t dead_port) 1727 { 1728 struct inf *inf = waiting_inf; 1729 1730 inf_debug (waiting_inf, "port = %lu", dead_port); 1731 1732 if (inf->task && inf->task->port == dead_port) 1733 { 1734 proc_debug (inf->task, "is dead"); 1735 inf->task->port = MACH_PORT_NULL; 1736 if (proc_wait_pid == inf->pid) 1737 /* We have a wait outstanding on the process, which will return more 1738 detailed information, so delay until we get that. */ 1739 inf->wait.suppress = 1; 1740 else 1741 /* We never waited for the process (maybe it wasn't a child), so just 1742 pretend it got a SIGKILL. */ 1743 inf_task_died_status (inf); 1744 } 1745 else 1746 { 1747 struct proc *thread = inf_port_to_thread (inf, dead_port); 1748 1749 if (thread) 1750 { 1751 proc_debug (thread, "is dead"); 1752 thread->port = MACH_PORT_NULL; 1753 } 1754 1755 if (inf->task->dead) 1756 /* Since the task is dead, its threads are dying with it. */ 1757 inf->wait.suppress = 1; 1758 } 1759 1760 mach_port_deallocate (mach_task_self (), dead_port); 1761 inf->threads_up_to_date = 0; /* Just in case. */ 1762 1763 return 0; 1764 } 1765 1766 1767 #define ILL_RPC(fun, ...) \ 1768 extern kern_return_t fun (__VA_ARGS__); \ 1769 kern_return_t fun (__VA_ARGS__) \ 1770 { \ 1771 warning (_("illegal rpc: %s"), #fun); \ 1772 return 0; \ 1773 } 1774 1775 ILL_RPC (do_mach_notify_no_senders, 1776 mach_port_t notify, mach_port_mscount_t count) 1777 ILL_RPC (do_mach_notify_port_deleted, 1778 mach_port_t notify, mach_port_t name) 1779 ILL_RPC (do_mach_notify_msg_accepted, 1780 mach_port_t notify, mach_port_t name) 1781 ILL_RPC (do_mach_notify_port_destroyed, 1782 mach_port_t notify, mach_port_t name) 1783 ILL_RPC (do_mach_notify_send_once, 1784 mach_port_t notify) 1785 1786 /* Process_reply server routines. We only use process_wait_reply. */ 1787 1788 kern_return_t 1789 S_proc_wait_reply (mach_port_t reply, kern_return_t err, 1790 int status, int sigcode, rusage_t rusage, pid_t pid) 1791 { 1792 struct inf *inf = waiting_inf; 1793 1794 inf_debug (inf, "err = %s, pid = %d, status = 0x%x, sigcode = %d", 1795 err ? safe_strerror (err) : "0", pid, status, sigcode); 1796 1797 if (err && proc_wait_pid && (!inf->task || !inf->task->port)) 1798 /* Ack. The task has died, but the task-died notification code didn't 1799 tell anyone because it thought a more detailed reply from the 1800 procserver was forthcoming. However, we now learn that won't 1801 happen... So we have to act like the task just died, and this time, 1802 tell the world. */ 1803 inf_task_died_status (inf); 1804 1805 if (--proc_waits_pending == 0) 1806 /* PROC_WAIT_PID represents the most recent wait. We will always get 1807 replies in order because the proc server is single threaded. */ 1808 proc_wait_pid = 0; 1809 1810 inf_debug (inf, "waits pending now: %d", proc_waits_pending); 1811 1812 if (err) 1813 { 1814 if (err != EINTR) 1815 { 1816 warning (_("Can't wait for pid %d: %s"), 1817 inf->pid, safe_strerror (err)); 1818 inf->no_wait = 1; 1819 1820 /* Since we can't see the inferior's signals, don't trap them. */ 1821 gnu_target->inf_set_traced (inf, 0); 1822 } 1823 } 1824 else if (pid == inf->pid) 1825 { 1826 store_waitstatus (&inf->wait.status, status); 1827 if (inf->wait.status.kind == TARGET_WAITKIND_STOPPED) 1828 /* The process has sent us a signal, and stopped itself in a sane 1829 state pending our actions. */ 1830 { 1831 inf_debug (inf, "process has stopped itself"); 1832 inf->stopped = 1; 1833 } 1834 } 1835 else 1836 inf->wait.suppress = 1; /* Something odd happened. Ignore. */ 1837 1838 return 0; 1839 } 1840 1841 ILL_RPC (S_proc_setmsgport_reply, 1842 mach_port_t reply_port, kern_return_t return_code, 1843 mach_port_t oldmsgport) 1844 ILL_RPC (S_proc_getmsgport_reply, 1845 mach_port_t reply_port, kern_return_t return_code, 1846 mach_port_t msgports, mach_msg_type_name_t msgportsPoly) 1847 ILL_RPC (S_proc_pid2task_reply, 1848 mach_port_t reply_port, kern_return_t return_code, mach_port_t task) 1849 ILL_RPC (S_proc_task2pid_reply, 1850 mach_port_t reply_port, kern_return_t return_code, pid_t pid) 1851 ILL_RPC (S_proc_task2proc_reply, 1852 mach_port_t reply_port, kern_return_t return_code, 1853 mach_port_t proc, mach_msg_type_name_t procPoly) 1854 ILL_RPC (S_proc_proc2task_reply, 1855 mach_port_t reply_port, kern_return_t return_code, mach_port_t task) 1856 ILL_RPC (S_proc_pid2proc_reply, 1857 mach_port_t reply_port, kern_return_t return_code, 1858 mach_port_t proc, mach_msg_type_name_t procPoly) 1859 ILL_RPC (S_proc_getprocinfo_reply, 1860 mach_port_t reply_port, kern_return_t return_code, 1861 int flags, procinfo_t procinfo, mach_msg_type_number_t procinfoCnt, 1862 data_t threadwaits, mach_msg_type_number_t threadwaitsCnt) 1863 ILL_RPC (S_proc_getprocargs_reply, 1864 mach_port_t reply_port, kern_return_t return_code, 1865 data_t procargs, mach_msg_type_number_t procargsCnt) 1866 ILL_RPC (S_proc_getprocenv_reply, 1867 mach_port_t reply_port, kern_return_t return_code, 1868 data_t procenv, mach_msg_type_number_t procenvCnt) 1869 ILL_RPC (S_proc_getloginid_reply, 1870 mach_port_t reply_port, kern_return_t return_code, pid_t login_id) 1871 ILL_RPC (S_proc_getloginpids_reply, 1872 mach_port_t reply_port, kern_return_t return_code, 1873 pidarray_t pids, mach_msg_type_number_t pidsCnt) 1874 ILL_RPC (S_proc_getlogin_reply, 1875 mach_port_t reply_port, kern_return_t return_code, string_t logname) 1876 ILL_RPC (S_proc_getsid_reply, 1877 mach_port_t reply_port, kern_return_t return_code, pid_t sid) 1878 ILL_RPC (S_proc_getsessionpgids_reply, 1879 mach_port_t reply_port, kern_return_t return_code, 1880 pidarray_t pgidset, mach_msg_type_number_t pgidsetCnt) 1881 ILL_RPC (S_proc_getsessionpids_reply, 1882 mach_port_t reply_port, kern_return_t return_code, 1883 pidarray_t pidset, mach_msg_type_number_t pidsetCnt) 1884 ILL_RPC (S_proc_getsidport_reply, 1885 mach_port_t reply_port, kern_return_t return_code, 1886 mach_port_t sessport) 1887 ILL_RPC (S_proc_getpgrp_reply, 1888 mach_port_t reply_port, kern_return_t return_code, pid_t pgrp) 1889 ILL_RPC (S_proc_getpgrppids_reply, 1890 mach_port_t reply_port, kern_return_t return_code, 1891 pidarray_t pidset, mach_msg_type_number_t pidsetCnt) 1892 ILL_RPC (S_proc_get_tty_reply, 1893 mach_port_t reply_port, kern_return_t return_code, mach_port_t tty) 1894 ILL_RPC (S_proc_getnports_reply, 1895 mach_port_t reply_port, kern_return_t return_code, 1896 mach_msg_type_number_t nports) 1897 ILL_RPC (S_proc_is_important_reply, 1898 mach_port_t reply_port, kern_return_t return_code, 1899 boolean_t essential) 1900 ILL_RPC (S_proc_get_code_reply, 1901 mach_port_t reply_port, kern_return_t return_code, 1902 vm_address_t start_code, vm_address_t end_code) 1903 1904 /* Msg_reply server routines. We only use msg_sig_post_untraced_reply. */ 1905 1906 kern_return_t 1907 S_msg_sig_post_untraced_reply (mach_port_t reply, kern_return_t err) 1908 { 1909 struct inf *inf = waiting_inf; 1910 1911 if (err == EBUSY) 1912 /* EBUSY is what we get when the crash server has grabbed control of the 1913 process and doesn't like what signal we tried to send it. Just act 1914 like the process stopped (using a signal of 0 should mean that the 1915 *next* time the user continues, it will pass signal 0, which the crash 1916 server should like). */ 1917 { 1918 inf->wait.status.kind = TARGET_WAITKIND_STOPPED; 1919 inf->wait.status.value.sig = GDB_SIGNAL_0; 1920 } 1921 else if (err) 1922 warning (_("Signal delivery failed: %s"), safe_strerror (err)); 1923 1924 if (err) 1925 /* We only get this reply when we've posted a signal to a process which we 1926 thought was stopped, and which we expected to continue after the signal. 1927 Given that the signal has failed for some reason, it's reasonable to 1928 assume it's still stopped. */ 1929 inf->stopped = 1; 1930 else 1931 inf->wait.suppress = 1; 1932 1933 return 0; 1934 } 1935 1936 ILL_RPC (S_msg_sig_post_reply, 1937 mach_port_t reply, kern_return_t err) 1938 1939 /* Returns the number of messages queued for the receive right PORT. */ 1940 static mach_port_msgcount_t 1941 port_msgs_queued (mach_port_t port) 1942 { 1943 struct mach_port_status status; 1944 kern_return_t err = 1945 mach_port_get_receive_status (mach_task_self (), port, &status); 1946 1947 if (err) 1948 return 0; 1949 else 1950 return status.mps_msgcount; 1951 } 1952 1953 1954 /* Resume execution of the inferior process. 1955 1956 If STEP is nonzero, single-step it. 1957 If SIGNAL is nonzero, give it that signal. 1958 1959 TID STEP: 1960 -1 true Single step the current thread allowing other threads to run. 1961 -1 false Continue the current thread allowing other threads to run. 1962 X true Single step the given thread, don't allow any others to run. 1963 X false Continue the given thread, do not allow any others to run. 1964 (Where X, of course, is anything except -1) 1965 1966 Note that a resume may not `take' if there are pending exceptions/&c 1967 still unprocessed from the last resume we did (any given resume may result 1968 in multiple events returned by wait). */ 1969 1970 void 1971 gnu_nat_target::resume (ptid_t ptid, int step, enum gdb_signal sig) 1972 { 1973 struct proc *step_thread = 0; 1974 int resume_all; 1975 struct inf *inf = gnu_current_inf; 1976 1977 inf_debug (inf, "ptid = %s, step = %d, sig = %d", 1978 target_pid_to_str (ptid).c_str (), step, sig); 1979 1980 inf_validate_procinfo (inf); 1981 1982 if (sig != GDB_SIGNAL_0 || inf->stopped) 1983 { 1984 if (sig == GDB_SIGNAL_0 && inf->nomsg) 1985 inf_continue (inf); 1986 else 1987 inf_signal (inf, sig); 1988 } 1989 else if (inf->wait.exc.reply != MACH_PORT_NULL) 1990 /* We received an exception to which we have chosen not to forward, so 1991 abort the faulting thread, which will perhaps retake it. */ 1992 { 1993 proc_abort (inf->wait.thread, 1); 1994 warning (_("Aborting %s with unforwarded exception %s."), 1995 proc_string (inf->wait.thread), 1996 gdb_signal_to_name (inf->wait.status.value.sig)); 1997 } 1998 1999 if (port_msgs_queued (inf->event_port)) 2000 /* If there are still messages in our event queue, don't bother resuming 2001 the process, as we're just going to stop it right away anyway. */ 2002 return; 2003 2004 inf_update_procs (inf); 2005 2006 /* A specific PTID means `step only this process id'. */ 2007 resume_all = ptid == minus_one_ptid; 2008 2009 if (resume_all) 2010 /* Allow all threads to run, except perhaps single-stepping one. */ 2011 { 2012 inf_debug (inf, "running all threads; tid = %d", 2013 inferior_ptid.pid ()); 2014 ptid = inferior_ptid; /* What to step. */ 2015 inf_set_threads_resume_sc (inf, 0, 1); 2016 } 2017 else 2018 /* Just allow a single thread to run. */ 2019 { 2020 struct proc *thread = inf_tid_to_thread (inf, ptid.lwp ()); 2021 2022 if (!thread) 2023 error (_("Can't run single thread id %s: no such thread!"), 2024 target_pid_to_str (ptid).c_str ()); 2025 inf_debug (inf, "running one thread: %s", 2026 target_pid_to_str (ptid).c_str ()); 2027 inf_set_threads_resume_sc (inf, thread, 0); 2028 } 2029 2030 if (step) 2031 { 2032 step_thread = inf_tid_to_thread (inf, ptid.lwp ()); 2033 if (!step_thread) 2034 warning (_("Can't step thread id %s: no such thread."), 2035 target_pid_to_str (ptid).c_str ()); 2036 else 2037 inf_debug (inf, "stepping thread: %s", 2038 target_pid_to_str (ptid).c_str ()); 2039 } 2040 if (step_thread != inf->step_thread) 2041 inf_set_step_thread (inf, step_thread); 2042 2043 inf_debug (inf, "here we go..."); 2044 inf_resume (inf); 2045 } 2046 2047 2048 void 2049 gnu_nat_target::kill () 2050 { 2051 struct proc *task = gnu_current_inf->task; 2052 2053 if (task) 2054 { 2055 proc_debug (task, "terminating..."); 2056 task_terminate (task->port); 2057 inf_set_pid (gnu_current_inf, -1); 2058 } 2059 target_mourn_inferior (inferior_ptid); 2060 } 2061 2062 /* Clean up after the inferior dies. */ 2063 void 2064 gnu_nat_target::mourn_inferior () 2065 { 2066 inf_debug (gnu_current_inf, "rip"); 2067 inf_detach (gnu_current_inf); 2068 inf_child_target::mourn_inferior (); 2069 } 2070 2071 2072 /* Fork an inferior process, and start debugging it. */ 2073 2074 /* Set INFERIOR_PID to the first thread available in the child, if any. */ 2075 static int 2076 inf_pick_first_thread (void) 2077 { 2078 if (gnu_current_inf->task && gnu_current_inf->threads) 2079 /* The first thread. */ 2080 return gnu_current_inf->threads->tid; 2081 else 2082 /* What may be the next thread. */ 2083 return next_thread_id; 2084 } 2085 2086 static struct inf * 2087 cur_inf (void) 2088 { 2089 if (!gnu_current_inf) 2090 gnu_current_inf = make_inf (); 2091 return gnu_current_inf; 2092 } 2093 2094 static void 2095 gnu_ptrace_me (void) 2096 { 2097 /* We're in the child; make this process stop as soon as it execs. */ 2098 struct inf *inf = cur_inf (); 2099 inf_debug (inf, "tracing self"); 2100 if (ptrace (PTRACE_TRACEME) != 0) 2101 trace_start_error_with_name ("ptrace"); 2102 } 2103 2104 void 2105 gnu_nat_target::create_inferior (const char *exec_file, 2106 const std::string &allargs, 2107 char **env, 2108 int from_tty) 2109 { 2110 struct inf *inf = cur_inf (); 2111 int pid; 2112 2113 inf_debug (inf, "creating inferior"); 2114 2115 if (!target_is_pushed (this)) 2116 push_target (this); 2117 2118 pid = fork_inferior (exec_file, allargs, env, gnu_ptrace_me, 2119 NULL, NULL, NULL, NULL); 2120 2121 /* We have something that executes now. We'll be running through 2122 the shell at this point (if startup-with-shell is true), but the 2123 pid shouldn't change. */ 2124 thread_info *thr = add_thread_silent (this, ptid_t (pid)); 2125 switch_to_thread (thr); 2126 2127 /* Attach to the now stopped child, which is actually a shell... */ 2128 inf_debug (inf, "attaching to child: %d", pid); 2129 2130 inf_attach (inf, pid); 2131 2132 inf->pending_execs = 1; 2133 inf->nomsg = 1; 2134 inf->traced = 1; 2135 2136 /* Now let the child run again, knowing that it will stop 2137 immediately because of the ptrace. */ 2138 inf_resume (inf); 2139 2140 /* We now have thread info. */ 2141 thread_change_ptid (this, inferior_ptid, 2142 ptid_t (inf->pid, inf_pick_first_thread (), 0)); 2143 2144 gdb_startup_inferior (pid, START_INFERIOR_TRAPS_EXPECTED); 2145 2146 inf->pending_execs = 0; 2147 /* Get rid of the old shell threads. */ 2148 prune_threads (); 2149 2150 inf_validate_procinfo (inf); 2151 inf_update_signal_thread (inf); 2152 inf_set_traced (inf, inf->want_signals); 2153 2154 /* Execing the process will have trashed our exception ports; steal them 2155 back (or make sure they're restored if the user wants that). */ 2156 if (inf->want_exceptions) 2157 inf_steal_exc_ports (inf); 2158 else 2159 inf_restore_exc_ports (inf); 2160 } 2161 2162 2163 /* Attach to process PID, then initialize for debugging it 2164 and wait for the trace-trap that results from attaching. */ 2165 void 2166 gnu_nat_target::attach (const char *args, int from_tty) 2167 { 2168 int pid; 2169 struct inf *inf = cur_inf (); 2170 struct inferior *inferior; 2171 2172 pid = parse_pid_to_attach (args); 2173 2174 if (pid == getpid ()) /* Trying to masturbate? */ 2175 error (_("I refuse to debug myself!")); 2176 2177 if (from_tty) 2178 { 2179 const char *exec_file = get_exec_file (0); 2180 2181 if (exec_file) 2182 printf_unfiltered ("Attaching to program `%s', pid %d\n", 2183 exec_file, pid); 2184 else 2185 printf_unfiltered ("Attaching to pid %d\n", pid); 2186 } 2187 2188 inf_debug (inf, "attaching to pid: %d", pid); 2189 2190 inf_attach (inf, pid); 2191 2192 push_target (this); 2193 2194 inferior = current_inferior (); 2195 inferior_appeared (inferior, pid); 2196 inferior->attach_flag = 1; 2197 2198 inf_update_procs (inf); 2199 2200 thread_info *thr 2201 = find_thread_ptid (this, ptid_t (pid, inf_pick_first_thread ())); 2202 switch_to_thread (thr); 2203 2204 /* We have to initialize the terminal settings now, since the code 2205 below might try to restore them. */ 2206 target_terminal::init (); 2207 2208 /* If the process was stopped before we attached, make it continue the next 2209 time the user does a continue. */ 2210 inf_validate_procinfo (inf); 2211 2212 inf_update_signal_thread (inf); 2213 inf_set_traced (inf, inf->want_signals); 2214 2215 #if 0 /* Do we need this? */ 2216 renumber_threads (0); /* Give our threads reasonable names. */ 2217 #endif 2218 } 2219 2220 2221 /* Take a program previously attached to and detaches it. 2222 The program resumes execution and will no longer stop 2223 on signals, etc. We'd better not have left any breakpoints 2224 in the program or it'll die when it hits one. For this 2225 to work, it may be necessary for the process to have been 2226 previously attached. It *might* work if the program was 2227 started via fork. */ 2228 void 2229 gnu_nat_target::detach (inferior *inf, int from_tty) 2230 { 2231 if (from_tty) 2232 { 2233 const char *exec_file = get_exec_file (0); 2234 2235 if (exec_file) 2236 printf_unfiltered ("Detaching from program `%s' pid %d\n", 2237 exec_file, gnu_current_inf->pid); 2238 else 2239 printf_unfiltered ("Detaching from pid %d\n", gnu_current_inf->pid); 2240 } 2241 2242 inf_detach (gnu_current_inf); 2243 2244 switch_to_no_thread (); 2245 detach_inferior (inf); 2246 2247 maybe_unpush_target (); 2248 } 2249 2250 2251 void 2252 gnu_nat_target::stop (ptid_t ptid) 2253 { 2254 error (_("stop target function not implemented")); 2255 } 2256 2257 bool 2258 gnu_nat_target::thread_alive (ptid_t ptid) 2259 { 2260 inf_update_procs (gnu_current_inf); 2261 return !!inf_tid_to_thread (gnu_current_inf, 2262 ptid.lwp ()); 2263 } 2264 2265 2266 /* Read inferior task's LEN bytes from ADDR and copy it to MYADDR in 2267 gdb's address space. Return 0 on failure; number of bytes read 2268 otherwise. */ 2269 static int 2270 gnu_read_inferior (task_t task, CORE_ADDR addr, gdb_byte *myaddr, int length) 2271 { 2272 kern_return_t err; 2273 vm_address_t low_address = (vm_address_t) trunc_page (addr); 2274 vm_size_t aligned_length = 2275 (vm_size_t) round_page (addr + length) - low_address; 2276 pointer_t copied; 2277 mach_msg_type_number_t copy_count; 2278 2279 /* Get memory from inferior with page aligned addresses. */ 2280 err = vm_read (task, low_address, aligned_length, &copied, ©_count); 2281 if (err) 2282 return 0; 2283 2284 err = hurd_safe_copyin (myaddr, (void *) (addr - low_address + copied), 2285 length); 2286 if (err) 2287 { 2288 warning (_("Read from inferior faulted: %s"), safe_strerror (err)); 2289 length = 0; 2290 } 2291 2292 err = vm_deallocate (mach_task_self (), copied, copy_count); 2293 if (err) 2294 warning (_("gnu_read_inferior vm_deallocate failed: %s"), 2295 safe_strerror (err)); 2296 2297 return length; 2298 } 2299 2300 #define CHK_GOTO_OUT(str,ret) \ 2301 do if (ret != KERN_SUCCESS) { errstr = #str; goto out; } while(0) 2302 2303 struct vm_region_list 2304 { 2305 struct vm_region_list *next; 2306 vm_prot_t protection; 2307 vm_address_t start; 2308 vm_size_t length; 2309 }; 2310 2311 struct obstack region_obstack; 2312 2313 /* Write gdb's LEN bytes from MYADDR and copy it to ADDR in inferior 2314 task's address space. */ 2315 static int 2316 gnu_write_inferior (task_t task, CORE_ADDR addr, 2317 const gdb_byte *myaddr, int length) 2318 { 2319 kern_return_t err; 2320 vm_address_t low_address = (vm_address_t) trunc_page (addr); 2321 vm_size_t aligned_length = 2322 (vm_size_t) round_page (addr + length) - low_address; 2323 pointer_t copied; 2324 mach_msg_type_number_t copy_count; 2325 int deallocate = 0; 2326 2327 const char *errstr = "Bug in gnu_write_inferior"; 2328 2329 struct vm_region_list *region_element; 2330 struct vm_region_list *region_head = NULL; 2331 2332 /* Get memory from inferior with page aligned addresses. */ 2333 err = vm_read (task, 2334 low_address, 2335 aligned_length, 2336 &copied, 2337 ©_count); 2338 CHK_GOTO_OUT ("gnu_write_inferior vm_read failed", err); 2339 2340 deallocate++; 2341 2342 err = hurd_safe_copyout ((void *) (addr - low_address + copied), 2343 myaddr, length); 2344 CHK_GOTO_OUT ("Write to inferior faulted", err); 2345 2346 obstack_init (®ion_obstack); 2347 2348 /* Do writes atomically. 2349 First check for holes and unwritable memory. */ 2350 { 2351 vm_size_t remaining_length = aligned_length; 2352 vm_address_t region_address = low_address; 2353 2354 struct vm_region_list *scan; 2355 2356 while (region_address < low_address + aligned_length) 2357 { 2358 vm_prot_t protection; 2359 vm_prot_t max_protection; 2360 vm_inherit_t inheritance; 2361 boolean_t shared; 2362 mach_port_t object_name; 2363 vm_offset_t offset; 2364 vm_size_t region_length = remaining_length; 2365 vm_address_t old_address = region_address; 2366 2367 err = vm_region (task, 2368 ®ion_address, 2369 ®ion_length, 2370 &protection, 2371 &max_protection, 2372 &inheritance, 2373 &shared, 2374 &object_name, 2375 &offset); 2376 CHK_GOTO_OUT ("vm_region failed", err); 2377 2378 /* Check for holes in memory. */ 2379 if (old_address != region_address) 2380 { 2381 warning (_("No memory at 0x%lx. Nothing written"), 2382 old_address); 2383 err = KERN_SUCCESS; 2384 length = 0; 2385 goto out; 2386 } 2387 2388 if (!(max_protection & VM_PROT_WRITE)) 2389 { 2390 warning (_("Memory at address 0x%lx is unwritable. " 2391 "Nothing written"), 2392 old_address); 2393 err = KERN_SUCCESS; 2394 length = 0; 2395 goto out; 2396 } 2397 2398 /* Chain the regions for later use. */ 2399 region_element = XOBNEW (®ion_obstack, struct vm_region_list); 2400 2401 region_element->protection = protection; 2402 region_element->start = region_address; 2403 region_element->length = region_length; 2404 2405 /* Chain the regions along with protections. */ 2406 region_element->next = region_head; 2407 region_head = region_element; 2408 2409 region_address += region_length; 2410 remaining_length = remaining_length - region_length; 2411 } 2412 2413 /* If things fail after this, we give up. 2414 Somebody is messing up inferior_task's mappings. */ 2415 2416 /* Enable writes to the chained vm regions. */ 2417 for (scan = region_head; scan; scan = scan->next) 2418 { 2419 if (!(scan->protection & VM_PROT_WRITE)) 2420 { 2421 err = vm_protect (task, 2422 scan->start, 2423 scan->length, 2424 FALSE, 2425 scan->protection | VM_PROT_WRITE); 2426 CHK_GOTO_OUT ("vm_protect: enable write failed", err); 2427 } 2428 } 2429 2430 err = vm_write (task, 2431 low_address, 2432 copied, 2433 aligned_length); 2434 CHK_GOTO_OUT ("vm_write failed", err); 2435 2436 /* Set up the original region protections, if they were changed. */ 2437 for (scan = region_head; scan; scan = scan->next) 2438 { 2439 if (!(scan->protection & VM_PROT_WRITE)) 2440 { 2441 err = vm_protect (task, 2442 scan->start, 2443 scan->length, 2444 FALSE, 2445 scan->protection); 2446 CHK_GOTO_OUT ("vm_protect: enable write failed", err); 2447 } 2448 } 2449 } 2450 2451 out: 2452 if (deallocate) 2453 { 2454 obstack_free (®ion_obstack, 0); 2455 2456 (void) vm_deallocate (mach_task_self (), 2457 copied, 2458 copy_count); 2459 } 2460 2461 if (err != KERN_SUCCESS) 2462 { 2463 warning (_("%s: %s"), errstr, mach_error_string (err)); 2464 return 0; 2465 } 2466 2467 return length; 2468 } 2469 2470 2471 2472 /* Implement the to_xfer_partial target_ops method for 2473 TARGET_OBJECT_MEMORY. */ 2474 2475 static enum target_xfer_status 2476 gnu_xfer_memory (gdb_byte *readbuf, const gdb_byte *writebuf, 2477 CORE_ADDR memaddr, ULONGEST len, ULONGEST *xfered_len) 2478 { 2479 task_t task = (gnu_current_inf 2480 ? (gnu_current_inf->task 2481 ? gnu_current_inf->task->port : 0) 2482 : 0); 2483 int res; 2484 2485 if (task == MACH_PORT_NULL) 2486 return TARGET_XFER_E_IO; 2487 2488 if (writebuf != NULL) 2489 { 2490 inf_debug (gnu_current_inf, "writing %s[%s] <-- %s", 2491 paddress (target_gdbarch (), memaddr), pulongest (len), 2492 host_address_to_string (writebuf)); 2493 res = gnu_write_inferior (task, memaddr, writebuf, len); 2494 } 2495 else 2496 { 2497 inf_debug (gnu_current_inf, "reading %s[%s] --> %s", 2498 paddress (target_gdbarch (), memaddr), pulongest (len), 2499 host_address_to_string (readbuf)); 2500 res = gnu_read_inferior (task, memaddr, readbuf, len); 2501 } 2502 gdb_assert (res >= 0); 2503 if (res == 0) 2504 return TARGET_XFER_E_IO; 2505 else 2506 { 2507 *xfered_len = (ULONGEST) res; 2508 return TARGET_XFER_OK; 2509 } 2510 } 2511 2512 /* GNU does not have auxv, but we can at least fake the AT_ENTRY entry for PIE 2513 binaries. */ 2514 static enum target_xfer_status 2515 gnu_xfer_auxv (gdb_byte *readbuf, const gdb_byte *writebuf, 2516 CORE_ADDR memaddr, ULONGEST len, ULONGEST *xfered_len) 2517 { 2518 task_t task = (gnu_current_inf 2519 ? (gnu_current_inf->task 2520 ? gnu_current_inf->task->port : 0) 2521 : 0); 2522 process_t proc; 2523 kern_return_t err; 2524 vm_address_t entry; 2525 ElfW(auxv_t) auxv[2]; 2526 2527 if (task == MACH_PORT_NULL) 2528 return TARGET_XFER_E_IO; 2529 if (writebuf != NULL) 2530 return TARGET_XFER_E_IO; 2531 2532 if (memaddr == sizeof (auxv)) 2533 return TARGET_XFER_EOF; 2534 if (memaddr > sizeof (auxv)) 2535 return TARGET_XFER_E_IO; 2536 2537 err = proc_task2proc (proc_server, task, &proc); 2538 if (err != 0) 2539 return TARGET_XFER_E_IO; 2540 2541 /* Get entry from proc server. */ 2542 err = proc_get_entry (proc, &entry); 2543 if (err != 0) 2544 return TARGET_XFER_E_IO; 2545 2546 /* Fake auxv entry. */ 2547 auxv[0].a_type = AT_ENTRY; 2548 auxv[0].a_un.a_val = entry; 2549 auxv[1].a_type = AT_NULL; 2550 auxv[1].a_un.a_val = 0; 2551 2552 inf_debug (gnu_current_inf, "reading auxv %s[%s] --> %s", 2553 paddress (target_gdbarch (), memaddr), pulongest (len), 2554 host_address_to_string (readbuf)); 2555 2556 if (memaddr + len > sizeof (auxv)) 2557 len = sizeof (auxv) - memaddr; 2558 2559 memcpy (readbuf, (gdb_byte *) &auxv + memaddr, len); 2560 *xfered_len = len; 2561 2562 return TARGET_XFER_OK; 2563 } 2564 2565 /* Target to_xfer_partial implementation. */ 2566 2567 enum target_xfer_status 2568 gnu_nat_target::xfer_partial (enum target_object object, 2569 const char *annex, gdb_byte *readbuf, 2570 const gdb_byte *writebuf, ULONGEST offset, 2571 ULONGEST len, ULONGEST *xfered_len) 2572 { 2573 switch (object) 2574 { 2575 case TARGET_OBJECT_MEMORY: 2576 return gnu_xfer_memory (readbuf, writebuf, offset, len, xfered_len); 2577 case TARGET_OBJECT_AUXV: 2578 return gnu_xfer_auxv (readbuf, writebuf, offset, len, xfered_len); 2579 default: 2580 return TARGET_XFER_E_IO; 2581 } 2582 } 2583 2584 /* Call FUNC on each memory region in the task. */ 2585 2586 int 2587 gnu_nat_target::find_memory_regions (find_memory_region_ftype func, 2588 void *data) 2589 { 2590 kern_return_t err; 2591 task_t task; 2592 vm_address_t region_address, last_region_address, last_region_end; 2593 vm_prot_t last_protection; 2594 2595 if (gnu_current_inf == 0 || gnu_current_inf->task == 0) 2596 return 0; 2597 task = gnu_current_inf->task->port; 2598 if (task == MACH_PORT_NULL) 2599 return 0; 2600 2601 region_address = last_region_address = last_region_end = VM_MIN_ADDRESS; 2602 last_protection = VM_PROT_NONE; 2603 while (region_address < VM_MAX_ADDRESS) 2604 { 2605 vm_prot_t protection; 2606 vm_prot_t max_protection; 2607 vm_inherit_t inheritance; 2608 boolean_t shared; 2609 mach_port_t object_name; 2610 vm_offset_t offset; 2611 vm_size_t region_length = VM_MAX_ADDRESS - region_address; 2612 2613 err = vm_region (task, 2614 ®ion_address, 2615 ®ion_length, 2616 &protection, 2617 &max_protection, 2618 &inheritance, 2619 &shared, 2620 &object_name, 2621 &offset); 2622 if (err == KERN_NO_SPACE) 2623 break; 2624 if (err != KERN_SUCCESS) 2625 { 2626 warning (_("vm_region failed: %s"), mach_error_string (err)); 2627 return -1; 2628 } 2629 2630 if (protection == last_protection && region_address == last_region_end) 2631 /* This region is contiguous with and indistinguishable from 2632 the previous one, so we just extend that one. */ 2633 last_region_end = region_address += region_length; 2634 else 2635 { 2636 /* This region is distinct from the last one we saw, so report 2637 that previous one. */ 2638 if (last_protection != VM_PROT_NONE) 2639 (*func) (last_region_address, 2640 last_region_end - last_region_address, 2641 last_protection & VM_PROT_READ, 2642 last_protection & VM_PROT_WRITE, 2643 last_protection & VM_PROT_EXECUTE, 2644 1, /* MODIFIED is unknown, pass it as true. */ 2645 data); 2646 last_region_address = region_address; 2647 last_region_end = region_address += region_length; 2648 last_protection = protection; 2649 } 2650 } 2651 2652 /* Report the final region. */ 2653 if (last_region_end > last_region_address && last_protection != VM_PROT_NONE) 2654 (*func) (last_region_address, last_region_end - last_region_address, 2655 last_protection & VM_PROT_READ, 2656 last_protection & VM_PROT_WRITE, 2657 last_protection & VM_PROT_EXECUTE, 2658 1, /* MODIFIED is unknown, pass it as true. */ 2659 data); 2660 2661 return 0; 2662 } 2663 2664 2665 /* Return printable description of proc. */ 2666 char * 2667 proc_string (struct proc *proc) 2668 { 2669 static char tid_str[80]; 2670 2671 if (proc_is_task (proc)) 2672 xsnprintf (tid_str, sizeof (tid_str), "process %d", proc->inf->pid); 2673 else 2674 xsnprintf (tid_str, sizeof (tid_str), "Thread %d.%d", 2675 proc->inf->pid, proc->tid); 2676 return tid_str; 2677 } 2678 2679 std::string 2680 gnu_nat_target::pid_to_str (ptid_t ptid) 2681 { 2682 struct inf *inf = gnu_current_inf; 2683 int tid = ptid.lwp (); 2684 struct proc *thread = inf_tid_to_thread (inf, tid); 2685 2686 if (thread) 2687 return proc_string (thread); 2688 else 2689 return string_printf ("bogus thread id %d", tid); 2690 } 2691 2692 2693 /* User task commands. */ 2694 2695 static struct cmd_list_element *set_task_cmd_list = 0; 2696 static struct cmd_list_element *show_task_cmd_list = 0; 2697 /* User thread commands. */ 2698 2699 /* Commands with a prefix of `set/show thread'. */ 2700 extern struct cmd_list_element *thread_cmd_list; 2701 struct cmd_list_element *set_thread_cmd_list = NULL; 2702 struct cmd_list_element *show_thread_cmd_list = NULL; 2703 2704 /* Commands with a prefix of `set/show thread default'. */ 2705 struct cmd_list_element *set_thread_default_cmd_list = NULL; 2706 struct cmd_list_element *show_thread_default_cmd_list = NULL; 2707 2708 static void 2709 set_thread_cmd (const char *args, int from_tty) 2710 { 2711 printf_unfiltered ("\"set thread\" must be followed by the " 2712 "name of a thread property, or \"default\".\n"); 2713 } 2714 2715 static void 2716 show_thread_cmd (const char *args, int from_tty) 2717 { 2718 printf_unfiltered ("\"show thread\" must be followed by the " 2719 "name of a thread property, or \"default\".\n"); 2720 } 2721 2722 static void 2723 set_thread_default_cmd (const char *args, int from_tty) 2724 { 2725 printf_unfiltered ("\"set thread default\" must be followed " 2726 "by the name of a thread property.\n"); 2727 } 2728 2729 static void 2730 show_thread_default_cmd (const char *args, int from_tty) 2731 { 2732 printf_unfiltered ("\"show thread default\" must be followed " 2733 "by the name of a thread property.\n"); 2734 } 2735 2736 static int 2737 parse_int_arg (const char *args, const char *cmd_prefix) 2738 { 2739 if (args) 2740 { 2741 char *arg_end; 2742 int val = strtoul (args, &arg_end, 10); 2743 2744 if (*args && *arg_end == '\0') 2745 return val; 2746 } 2747 error (_("Illegal argument for \"%s\" command, should be an integer."), 2748 cmd_prefix); 2749 } 2750 2751 static int 2752 _parse_bool_arg (const char *args, const char *t_val, const char *f_val, 2753 const char *cmd_prefix) 2754 { 2755 if (!args || strcmp (args, t_val) == 0) 2756 return 1; 2757 else if (strcmp (args, f_val) == 0) 2758 return 0; 2759 else 2760 error (_("Illegal argument for \"%s\" command, " 2761 "should be \"%s\" or \"%s\"."), 2762 cmd_prefix, t_val, f_val); 2763 } 2764 2765 #define parse_bool_arg(args, cmd_prefix) \ 2766 _parse_bool_arg (args, "on", "off", cmd_prefix) 2767 2768 static void 2769 check_empty (const char *args, const char *cmd_prefix) 2770 { 2771 if (args) 2772 error (_("Garbage after \"%s\" command: `%s'"), cmd_prefix, args); 2773 } 2774 2775 /* Returns the alive thread named by INFERIOR_PID, or signals an error. */ 2776 static struct proc * 2777 cur_thread (void) 2778 { 2779 struct inf *inf = cur_inf (); 2780 struct proc *thread = inf_tid_to_thread (inf, 2781 inferior_ptid.lwp ()); 2782 if (!thread) 2783 error (_("No current thread.")); 2784 return thread; 2785 } 2786 2787 /* Returns the current inferior, but signals an error if it has no task. */ 2788 static struct inf * 2789 active_inf (void) 2790 { 2791 struct inf *inf = cur_inf (); 2792 2793 if (!inf->task) 2794 error (_("No current process.")); 2795 return inf; 2796 } 2797 2798 2799 static void 2800 set_task_pause_cmd (int arg, int from_tty) 2801 { 2802 struct inf *inf = cur_inf (); 2803 int old_sc = inf->pause_sc; 2804 2805 inf->pause_sc = arg; 2806 2807 if (old_sc == 0 && inf->pause_sc != 0) 2808 /* If the task is currently unsuspended, immediately suspend it, 2809 otherwise wait until the next time it gets control. */ 2810 gnu_target->inf_suspend (inf); 2811 } 2812 2813 static void 2814 set_task_pause_cmd (const char *args, int from_tty) 2815 { 2816 set_task_pause_cmd (parse_bool_arg (args, "set task pause"), from_tty); 2817 } 2818 2819 static void 2820 show_task_pause_cmd (const char *args, int from_tty) 2821 { 2822 struct inf *inf = cur_inf (); 2823 2824 check_empty (args, "show task pause"); 2825 printf_unfiltered ("The inferior task %s suspended while gdb has control.\n", 2826 inf->task 2827 ? (inf->pause_sc == 0 ? "isn't" : "is") 2828 : (inf->pause_sc == 0 ? "won't be" : "will be")); 2829 } 2830 2831 static void 2832 set_task_detach_sc_cmd (const char *args, int from_tty) 2833 { 2834 cur_inf ()->detach_sc = parse_int_arg (args, 2835 "set task detach-suspend-count"); 2836 } 2837 2838 static void 2839 show_task_detach_sc_cmd (const char *args, int from_tty) 2840 { 2841 check_empty (args, "show task detach-suspend-count"); 2842 printf_unfiltered ("The inferior task will be left with a " 2843 "suspend count of %d when detaching.\n", 2844 cur_inf ()->detach_sc); 2845 } 2846 2847 2848 static void 2849 set_thread_default_pause_cmd (const char *args, int from_tty) 2850 { 2851 struct inf *inf = cur_inf (); 2852 2853 inf->default_thread_pause_sc = 2854 parse_bool_arg (args, "set thread default pause") ? 0 : 1; 2855 } 2856 2857 static void 2858 show_thread_default_pause_cmd (const char *args, int from_tty) 2859 { 2860 struct inf *inf = cur_inf (); 2861 int sc = inf->default_thread_pause_sc; 2862 2863 check_empty (args, "show thread default pause"); 2864 printf_unfiltered ("New threads %s suspended while gdb has control%s.\n", 2865 sc ? "are" : "aren't", 2866 !sc && inf->pause_sc ? " (but the task is)" : ""); 2867 } 2868 2869 static void 2870 set_thread_default_run_cmd (const char *args, int from_tty) 2871 { 2872 struct inf *inf = cur_inf (); 2873 2874 inf->default_thread_run_sc = 2875 parse_bool_arg (args, "set thread default run") ? 0 : 1; 2876 } 2877 2878 static void 2879 show_thread_default_run_cmd (const char *args, int from_tty) 2880 { 2881 struct inf *inf = cur_inf (); 2882 2883 check_empty (args, "show thread default run"); 2884 printf_unfiltered ("New threads %s allowed to run.\n", 2885 inf->default_thread_run_sc == 0 ? "are" : "aren't"); 2886 } 2887 2888 static void 2889 set_thread_default_detach_sc_cmd (const char *args, int from_tty) 2890 { 2891 cur_inf ()->default_thread_detach_sc = 2892 parse_int_arg (args, "set thread default detach-suspend-count"); 2893 } 2894 2895 static void 2896 show_thread_default_detach_sc_cmd (const char *args, int from_tty) 2897 { 2898 check_empty (args, "show thread default detach-suspend-count"); 2899 printf_unfiltered ("New threads will get a detach-suspend-count of %d.\n", 2900 cur_inf ()->default_thread_detach_sc); 2901 } 2902 2903 2904 /* Steal a send right called NAME in the inferior task, and make it PROC's 2905 saved exception port. */ 2906 void 2907 gnu_nat_target::steal_exc_port (struct proc *proc, mach_port_t name) 2908 { 2909 kern_return_t err; 2910 mach_port_t port; 2911 mach_msg_type_name_t port_type; 2912 2913 if (!proc || !proc->inf->task) 2914 error (_("No inferior task.")); 2915 2916 err = mach_port_extract_right (proc->inf->task->port, 2917 name, MACH_MSG_TYPE_COPY_SEND, 2918 &port, &port_type); 2919 if (err) 2920 error (_("Couldn't extract send right %lu from inferior: %s"), 2921 name, safe_strerror (err)); 2922 2923 if (proc->saved_exc_port) 2924 /* Get rid of our reference to the old one. */ 2925 mach_port_deallocate (mach_task_self (), proc->saved_exc_port); 2926 2927 proc->saved_exc_port = port; 2928 2929 if (!proc->exc_port) 2930 /* If PROC is a thread, we may not have set its exception port 2931 before. We can't use proc_steal_exc_port because it also sets 2932 saved_exc_port. */ 2933 { 2934 proc->exc_port = proc->inf->event_port; 2935 err = proc_set_exception_port (proc, proc->exc_port); 2936 error (_("Can't set exception port for %s: %s"), 2937 proc_string (proc), safe_strerror (err)); 2938 } 2939 } 2940 2941 static void 2942 set_task_exc_port_cmd (const char *args, int from_tty) 2943 { 2944 struct inf *inf = cur_inf (); 2945 2946 if (!args) 2947 error (_("No argument to \"set task exception-port\" command.")); 2948 gnu_target->steal_exc_port (inf->task, parse_and_eval_address (args)); 2949 } 2950 2951 static void 2952 set_stopped_cmd (const char *args, int from_tty) 2953 { 2954 cur_inf ()->stopped = _parse_bool_arg (args, "yes", "no", "set stopped"); 2955 } 2956 2957 static void 2958 show_stopped_cmd (const char *args, int from_tty) 2959 { 2960 struct inf *inf = active_inf (); 2961 2962 check_empty (args, "show stopped"); 2963 printf_unfiltered ("The inferior process %s stopped.\n", 2964 inf->stopped ? "is" : "isn't"); 2965 } 2966 2967 static void 2968 set_sig_thread_cmd (const char *args, int from_tty) 2969 { 2970 struct inf *inf = cur_inf (); 2971 2972 if (!args || (!isdigit (*args) && strcmp (args, "none") != 0)) 2973 error (_("Illegal argument to \"set signal-thread\" command.\n" 2974 "Should be a thread ID, or \"none\".")); 2975 2976 if (strcmp (args, "none") == 0) 2977 inf->signal_thread = 0; 2978 else 2979 { 2980 struct thread_info *tp = parse_thread_id (args, NULL); 2981 inf->signal_thread = inf_tid_to_thread (inf, tp->ptid.lwp ()); 2982 } 2983 } 2984 2985 static void 2986 show_sig_thread_cmd (const char *args, int from_tty) 2987 { 2988 struct inf *inf = active_inf (); 2989 2990 check_empty (args, "show signal-thread"); 2991 if (inf->signal_thread) 2992 printf_unfiltered ("The signal thread is %s.\n", 2993 proc_string (inf->signal_thread)); 2994 else 2995 printf_unfiltered ("There is no signal thread.\n"); 2996 } 2997 2998 2999 static void 3000 set_signals_cmd (int arg, int from_tty) 3001 { 3002 struct inf *inf = cur_inf (); 3003 3004 inf->want_signals = arg; 3005 3006 if (inf->task && inf->want_signals != inf->traced) 3007 /* Make this take effect immediately in a running process. */ 3008 gnu_target->inf_set_traced (inf, inf->want_signals); 3009 } 3010 3011 static void 3012 set_signals_cmd (const char *args, int from_tty) 3013 { 3014 set_signals_cmd(parse_bool_arg (args, "set signals"), from_tty); 3015 } 3016 3017 static void 3018 show_signals_cmd (const char *args, int from_tty) 3019 { 3020 struct inf *inf = cur_inf (); 3021 3022 check_empty (args, "show signals"); 3023 printf_unfiltered ("The inferior process's signals %s intercepted.\n", 3024 inf->task 3025 ? (inf->traced ? "are" : "aren't") 3026 : (inf->want_signals ? "will be" : "won't be")); 3027 } 3028 3029 static void 3030 set_exceptions_cmd (int arg, int from_tty) 3031 { 3032 struct inf *inf = cur_inf (); 3033 3034 /* Make this take effect immediately in a running process. */ 3035 /* XXX */ ; 3036 3037 inf->want_exceptions = arg; 3038 } 3039 3040 static void 3041 set_exceptions_cmd (const char *args, int from_tty) 3042 { 3043 set_exceptions_cmd (parse_bool_arg (args, "set exceptions"), from_tty); 3044 } 3045 3046 static void 3047 show_exceptions_cmd (const char *args, int from_tty) 3048 { 3049 struct inf *inf = cur_inf (); 3050 3051 check_empty (args, "show exceptions"); 3052 printf_unfiltered ("Exceptions in the inferior %s trapped.\n", 3053 inf->task 3054 ? (inf->want_exceptions ? "are" : "aren't") 3055 : (inf->want_exceptions ? "will be" : "won't be")); 3056 } 3057 3058 3059 static void 3060 set_task_cmd (const char *args, int from_tty) 3061 { 3062 printf_unfiltered ("\"set task\" must be followed by the name" 3063 " of a task property.\n"); 3064 } 3065 3066 static void 3067 show_task_cmd (const char *args, int from_tty) 3068 { 3069 struct inf *inf = cur_inf (); 3070 3071 check_empty (args, "show task"); 3072 3073 show_signals_cmd (0, from_tty); 3074 show_exceptions_cmd (0, from_tty); 3075 show_task_pause_cmd (0, from_tty); 3076 3077 if (inf->pause_sc == 0) 3078 show_thread_default_pause_cmd (0, from_tty); 3079 show_thread_default_run_cmd (0, from_tty); 3080 3081 if (inf->task) 3082 { 3083 show_stopped_cmd (0, from_tty); 3084 show_sig_thread_cmd (0, from_tty); 3085 } 3086 3087 if (inf->detach_sc != 0) 3088 show_task_detach_sc_cmd (0, from_tty); 3089 if (inf->default_thread_detach_sc != 0) 3090 show_thread_default_detach_sc_cmd (0, from_tty); 3091 } 3092 3093 3094 static void 3095 set_noninvasive_cmd (const char *args, int from_tty) 3096 { 3097 /* Invert the sense of the arg for each component. */ 3098 int inv_arg = parse_bool_arg (args, "set noninvasive") ? 0 : 1; 3099 3100 set_task_pause_cmd (inv_arg, from_tty); 3101 set_signals_cmd (inv_arg, from_tty); 3102 set_exceptions_cmd (inv_arg, from_tty); 3103 } 3104 3105 3106 static void 3107 info_port_rights (const char *args, mach_port_type_t only) 3108 { 3109 struct inf *inf = active_inf (); 3110 struct value *vmark = value_mark (); 3111 3112 if (args) 3113 /* Explicit list of port rights. */ 3114 { 3115 while (*args) 3116 { 3117 struct value *val = parse_to_comma_and_eval (&args); 3118 long right = value_as_long (val); 3119 error_t err = 3120 print_port_info (right, 0, inf->task->port, PORTINFO_DETAILS, 3121 stdout); 3122 3123 if (err) 3124 error (_("%ld: %s."), right, safe_strerror (err)); 3125 } 3126 } 3127 else 3128 /* Print all of them. */ 3129 { 3130 error_t err = 3131 print_task_ports_info (inf->task->port, only, PORTINFO_DETAILS, 3132 stdout); 3133 if (err) 3134 error (_("%s."), safe_strerror (err)); 3135 } 3136 3137 value_free_to_mark (vmark); 3138 } 3139 3140 static void 3141 info_send_rights_cmd (const char *args, int from_tty) 3142 { 3143 info_port_rights (args, MACH_PORT_TYPE_SEND); 3144 } 3145 3146 static void 3147 info_recv_rights_cmd (const char *args, int from_tty) 3148 { 3149 info_port_rights (args, MACH_PORT_TYPE_RECEIVE); 3150 } 3151 3152 static void 3153 info_port_sets_cmd (const char *args, int from_tty) 3154 { 3155 info_port_rights (args, MACH_PORT_TYPE_PORT_SET); 3156 } 3157 3158 static void 3159 info_dead_names_cmd (const char *args, int from_tty) 3160 { 3161 info_port_rights (args, MACH_PORT_TYPE_DEAD_NAME); 3162 } 3163 3164 static void 3165 info_port_rights_cmd (const char *args, int from_tty) 3166 { 3167 info_port_rights (args, ~0); 3168 } 3169 3170 3171 static void 3172 add_task_commands (void) 3173 { 3174 add_cmd ("pause", class_run, set_thread_default_pause_cmd, _("\ 3175 Set whether the new threads are suspended while gdb has control.\n\ 3176 This property normally has no effect because the whole task is\n\ 3177 suspended, however, that may be disabled with \"set task pause off\".\n\ 3178 The default value is \"off\"."), 3179 &set_thread_default_cmd_list); 3180 add_cmd ("pause", no_class, show_thread_default_pause_cmd, _("\ 3181 Show whether new threads are suspended while gdb has control."), 3182 &show_thread_default_cmd_list); 3183 3184 add_cmd ("run", class_run, set_thread_default_run_cmd, _("\ 3185 Set whether new threads are allowed to run (once gdb has noticed them)."), 3186 &set_thread_default_cmd_list); 3187 add_cmd ("run", no_class, show_thread_default_run_cmd, _("\ 3188 Show whether new threads are allowed to run (once gdb has noticed them)."), 3189 &show_thread_default_cmd_list); 3190 3191 add_cmd ("detach-suspend-count", class_run, set_thread_default_detach_sc_cmd, 3192 _("Set the default detach-suspend-count value for new threads."), 3193 &set_thread_default_cmd_list); 3194 add_cmd ("detach-suspend-count", no_class, show_thread_default_detach_sc_cmd, 3195 _("Show the default detach-suspend-count value for new threads."), 3196 &show_thread_default_cmd_list); 3197 3198 add_cmd ("signals", class_run, set_signals_cmd, _("\ 3199 Set whether the inferior process's signals will be intercepted.\n\ 3200 Mach exceptions (such as breakpoint traps) are not affected."), 3201 &setlist); 3202 add_alias_cmd ("sigs", "signals", class_run, 1, &setlist); 3203 add_cmd ("signals", no_class, show_signals_cmd, _("\ 3204 Show whether the inferior process's signals will be intercepted."), 3205 &showlist); 3206 add_alias_cmd ("sigs", "signals", no_class, 1, &showlist); 3207 3208 add_cmd ("signal-thread", class_run, set_sig_thread_cmd, _("\ 3209 Set the thread that gdb thinks is the libc signal thread.\n\ 3210 This thread is run when delivering a signal to a non-stopped process."), 3211 &setlist); 3212 add_alias_cmd ("sigthread", "signal-thread", class_run, 1, &setlist); 3213 add_cmd ("signal-thread", no_class, show_sig_thread_cmd, _("\ 3214 Set the thread that gdb thinks is the libc signal thread."), 3215 &showlist); 3216 add_alias_cmd ("sigthread", "signal-thread", no_class, 1, &showlist); 3217 3218 add_cmd ("stopped", class_run, set_stopped_cmd, _("\ 3219 Set whether gdb thinks the inferior process is stopped as with SIGSTOP.\n\ 3220 Stopped process will be continued by sending them a signal."), 3221 &setlist); 3222 add_cmd ("stopped", no_class, show_stopped_cmd, _("\ 3223 Show whether gdb thinks the inferior process is stopped as with SIGSTOP."), 3224 &showlist); 3225 3226 add_cmd ("exceptions", class_run, set_exceptions_cmd, _("\ 3227 Set whether exceptions in the inferior process will be trapped.\n\ 3228 When exceptions are turned off, neither breakpoints nor single-stepping\n\ 3229 will work."), 3230 &setlist); 3231 /* Allow `set exc' despite conflict with `set exception-port'. */ 3232 add_alias_cmd ("exc", "exceptions", class_run, 1, &setlist); 3233 add_cmd ("exceptions", no_class, show_exceptions_cmd, _("\ 3234 Show whether exceptions in the inferior process will be trapped."), 3235 &showlist); 3236 3237 add_prefix_cmd ("task", no_class, set_task_cmd, 3238 _("Command prefix for setting task attributes."), 3239 &set_task_cmd_list, "set task ", 0, &setlist); 3240 add_prefix_cmd ("task", no_class, show_task_cmd, 3241 _("Command prefix for showing task attributes."), 3242 &show_task_cmd_list, "show task ", 0, &showlist); 3243 3244 add_cmd ("pause", class_run, set_task_pause_cmd, _("\ 3245 Set whether the task is suspended while gdb has control.\n\ 3246 A value of \"on\" takes effect immediately, otherwise nothing happens\n\ 3247 until the next time the program is continued.\n\ 3248 When setting this to \"off\", \"set thread default pause on\" can be\n\ 3249 used to pause individual threads by default instead."), 3250 &set_task_cmd_list); 3251 add_cmd ("pause", no_class, show_task_pause_cmd, 3252 _("Show whether the task is suspended while gdb has control."), 3253 &show_task_cmd_list); 3254 3255 add_cmd ("detach-suspend-count", class_run, set_task_detach_sc_cmd, 3256 _("Set the suspend count will leave on the thread when detaching."), 3257 &set_task_cmd_list); 3258 add_cmd ("detach-suspend-count", no_class, show_task_detach_sc_cmd, 3259 _("Show the suspend count will leave " 3260 "on the thread when detaching."), 3261 &show_task_cmd_list); 3262 3263 add_cmd ("exception-port", no_class, set_task_exc_port_cmd, _("\ 3264 Set the task exception port to which we forward exceptions.\n\ 3265 The argument should be the value of the send right in the task."), 3266 &set_task_cmd_list); 3267 add_alias_cmd ("excp", "exception-port", no_class, 1, &set_task_cmd_list); 3268 add_alias_cmd ("exc-port", "exception-port", no_class, 1, 3269 &set_task_cmd_list); 3270 3271 /* A convenient way of turning on all options require to noninvasively 3272 debug running tasks. */ 3273 add_cmd ("noninvasive", no_class, set_noninvasive_cmd, _("\ 3274 Set task options so that we interfere as little as possible.\n\ 3275 This is the same as setting `task pause', `exceptions', and\n\ 3276 `signals' to the opposite value."), 3277 &setlist); 3278 3279 /* Commands to show information about the task's ports. */ 3280 add_info ("send-rights", info_send_rights_cmd, 3281 _("Show information about the task's send rights.")); 3282 add_info ("receive-rights", info_recv_rights_cmd, 3283 _("Show information about the task's receive rights.")); 3284 add_info ("port-rights", info_port_rights_cmd, 3285 _("Show information about the task's port rights.")); 3286 add_info ("port-sets", info_port_sets_cmd, 3287 _("Show information about the task's port sets.")); 3288 add_info ("dead-names", info_dead_names_cmd, 3289 _("Show information about the task's dead names.")); 3290 add_info_alias ("ports", "port-rights", 1); 3291 add_info_alias ("port", "port-rights", 1); 3292 add_info_alias ("psets", "port-sets", 1); 3293 } 3294 3295 3296 static void 3297 set_thread_pause_cmd (const char *args, int from_tty) 3298 { 3299 struct proc *thread = cur_thread (); 3300 int old_sc = thread->pause_sc; 3301 3302 thread->pause_sc = parse_bool_arg (args, "set thread pause"); 3303 if (old_sc == 0 && thread->pause_sc != 0 && thread->inf->pause_sc == 0) 3304 /* If the task is currently unsuspended, immediately suspend it, 3305 otherwise wait until the next time it gets control. */ 3306 gnu_target->inf_suspend (thread->inf); 3307 } 3308 3309 static void 3310 show_thread_pause_cmd (const char *args, int from_tty) 3311 { 3312 struct proc *thread = cur_thread (); 3313 int sc = thread->pause_sc; 3314 3315 check_empty (args, "show task pause"); 3316 printf_unfiltered ("Thread %s %s suspended while gdb has control%s.\n", 3317 proc_string (thread), 3318 sc ? "is" : "isn't", 3319 !sc && thread->inf->pause_sc ? " (but the task is)" : ""); 3320 } 3321 3322 static void 3323 set_thread_run_cmd (const char *args, int from_tty) 3324 { 3325 struct proc *thread = cur_thread (); 3326 3327 thread->run_sc = parse_bool_arg (args, "set thread run") ? 0 : 1; 3328 } 3329 3330 static void 3331 show_thread_run_cmd (const char *args, int from_tty) 3332 { 3333 struct proc *thread = cur_thread (); 3334 3335 check_empty (args, "show thread run"); 3336 printf_unfiltered ("Thread %s %s allowed to run.", 3337 proc_string (thread), 3338 thread->run_sc == 0 ? "is" : "isn't"); 3339 } 3340 3341 static void 3342 set_thread_detach_sc_cmd (const char *args, int from_tty) 3343 { 3344 cur_thread ()->detach_sc = parse_int_arg (args, 3345 "set thread detach-suspend-count"); 3346 } 3347 3348 static void 3349 show_thread_detach_sc_cmd (const char *args, int from_tty) 3350 { 3351 struct proc *thread = cur_thread (); 3352 3353 check_empty (args, "show thread detach-suspend-count"); 3354 printf_unfiltered ("Thread %s will be left with a suspend count" 3355 " of %d when detaching.\n", 3356 proc_string (thread), 3357 thread->detach_sc); 3358 } 3359 3360 static void 3361 set_thread_exc_port_cmd (const char *args, int from_tty) 3362 { 3363 struct proc *thread = cur_thread (); 3364 3365 if (!args) 3366 error (_("No argument to \"set thread exception-port\" command.")); 3367 gnu_target->steal_exc_port (thread, parse_and_eval_address (args)); 3368 } 3369 3370 #if 0 3371 static void 3372 show_thread_cmd (char *args, int from_tty) 3373 { 3374 struct proc *thread = cur_thread (); 3375 3376 check_empty (args, "show thread"); 3377 show_thread_run_cmd (0, from_tty); 3378 show_thread_pause_cmd (0, from_tty); 3379 if (thread->detach_sc != 0) 3380 show_thread_detach_sc_cmd (0, from_tty); 3381 } 3382 #endif 3383 3384 static void 3385 thread_takeover_sc_cmd (const char *args, int from_tty) 3386 { 3387 struct proc *thread = cur_thread (); 3388 3389 thread_basic_info_data_t _info; 3390 thread_basic_info_t info = &_info; 3391 mach_msg_type_number_t info_len = THREAD_BASIC_INFO_COUNT; 3392 kern_return_t err 3393 = mach_thread_info (thread->port, THREAD_BASIC_INFO, 3394 (int *) &info, &info_len); 3395 if (err) 3396 error (("%s."), safe_strerror (err)); 3397 thread->sc = info->suspend_count; 3398 if (from_tty) 3399 printf_unfiltered ("Suspend count was %d.\n", thread->sc); 3400 if (info != &_info) 3401 vm_deallocate (mach_task_self (), (vm_address_t) info, 3402 info_len * sizeof (int)); 3403 } 3404 3405 3406 static void 3407 add_thread_commands (void) 3408 { 3409 add_prefix_cmd ("thread", no_class, set_thread_cmd, 3410 _("Command prefix for setting thread properties."), 3411 &set_thread_cmd_list, "set thread ", 0, &setlist); 3412 add_prefix_cmd ("default", no_class, show_thread_cmd, 3413 _("Command prefix for setting default thread properties."), 3414 &set_thread_default_cmd_list, "set thread default ", 0, 3415 &set_thread_cmd_list); 3416 add_prefix_cmd ("thread", no_class, set_thread_default_cmd, 3417 _("Command prefix for showing thread properties."), 3418 &show_thread_cmd_list, "show thread ", 0, &showlist); 3419 add_prefix_cmd ("default", no_class, show_thread_default_cmd, 3420 _("Command prefix for showing default thread properties."), 3421 &show_thread_default_cmd_list, "show thread default ", 0, 3422 &show_thread_cmd_list); 3423 3424 add_cmd ("pause", class_run, set_thread_pause_cmd, _("\ 3425 Set whether the current thread is suspended while gdb has control.\n\ 3426 A value of \"on\" takes effect immediately, otherwise nothing happens\n\ 3427 until the next time the program is continued. This property normally\n\ 3428 has no effect because the whole task is suspended, however, that may\n\ 3429 be disabled with \"set task pause off\".\n\ 3430 The default value is \"off\"."), 3431 &set_thread_cmd_list); 3432 add_cmd ("pause", no_class, show_thread_pause_cmd, _("\ 3433 Show whether the current thread is suspended while gdb has control."), 3434 &show_thread_cmd_list); 3435 3436 add_cmd ("run", class_run, set_thread_run_cmd, 3437 _("Set whether the current thread is allowed to run."), 3438 &set_thread_cmd_list); 3439 add_cmd ("run", no_class, show_thread_run_cmd, 3440 _("Show whether the current thread is allowed to run."), 3441 &show_thread_cmd_list); 3442 3443 add_cmd ("detach-suspend-count", class_run, set_thread_detach_sc_cmd, _("\ 3444 Set the suspend count will leave on the thread when detaching.\n\ 3445 Note that this is relative to suspend count when gdb noticed the thread;\n\ 3446 use the `thread takeover-suspend-count' to force it to an absolute value."), 3447 &set_thread_cmd_list); 3448 add_cmd ("detach-suspend-count", no_class, show_thread_detach_sc_cmd, _("\ 3449 Show the suspend count will leave on the thread when detaching.\n\ 3450 Note that this is relative to suspend count when gdb noticed the thread;\n\ 3451 use the `thread takeover-suspend-count' to force it to an absolute value."), 3452 &show_thread_cmd_list); 3453 3454 add_cmd ("exception-port", no_class, set_thread_exc_port_cmd, _("\ 3455 Set the thread exception port to which we forward exceptions.\n\ 3456 This overrides the task exception port.\n\ 3457 The argument should be the value of the send right in the task."), 3458 &set_thread_cmd_list); 3459 add_alias_cmd ("excp", "exception-port", no_class, 1, &set_thread_cmd_list); 3460 add_alias_cmd ("exc-port", "exception-port", no_class, 1, 3461 &set_thread_cmd_list); 3462 3463 add_cmd ("takeover-suspend-count", no_class, thread_takeover_sc_cmd, _("\ 3464 Force the threads absolute suspend-count to be gdb's.\n\ 3465 Prior to giving this command, gdb's thread suspend-counts are relative\n\ 3466 to the thread's initial suspend-count when gdb notices the threads."), 3467 &thread_cmd_list); 3468 } 3469 3470 void _initialize_gnu_nat (); 3471 void 3472 _initialize_gnu_nat () 3473 { 3474 proc_server = getproc (); 3475 3476 add_task_commands (); 3477 add_thread_commands (); 3478 add_setshow_boolean_cmd ("gnu-nat", class_maintenance, 3479 &gnu_debug_flag, 3480 _("Set debugging output for the gnu backend."), 3481 _("Show debugging output for the gnu backend."), 3482 NULL, 3483 NULL, 3484 NULL, 3485 &setdebuglist, 3486 &showdebuglist); 3487 } 3488 3489 #ifdef FLUSH_INFERIOR_CACHE 3490 3491 /* When over-writing code on some machines the I-Cache must be flushed 3492 explicitly, because it is not kept coherent by the lazy hardware. 3493 This definitely includes breakpoints, for instance, or else we 3494 end up looping in mysterious Bpt traps. */ 3495 3496 void 3497 flush_inferior_icache (CORE_ADDR pc, int amount) 3498 { 3499 vm_machine_attribute_val_t flush = MATTR_VAL_ICACHE_FLUSH; 3500 kern_return_t ret; 3501 3502 ret = vm_machine_attribute (gnu_current_inf->task->port, 3503 pc, 3504 amount, 3505 MATTR_CACHE, 3506 &flush); 3507 if (ret != KERN_SUCCESS) 3508 warning (_("Error flushing inferior's cache : %s"), safe_strerror (ret)); 3509 } 3510 #endif /* FLUSH_INFERIOR_CACHE */ 3511