1 /* Python interface to inferiors. 2 3 Copyright (C) 2009-2015 Free Software Foundation, Inc. 4 5 This file is part of GDB. 6 7 This program is free software; you can redistribute it and/or modify 8 it under the terms of the GNU General Public License as published by 9 the Free Software Foundation; either version 3 of the License, or 10 (at your option) any later version. 11 12 This program is distributed in the hope that it will be useful, 13 but WITHOUT ANY WARRANTY; without even the implied warranty of 14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 15 GNU General Public License for more details. 16 17 You should have received a copy of the GNU General Public License 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */ 19 20 #include "defs.h" 21 #include "gdbcore.h" 22 #include "gdbthread.h" 23 #include "inferior.h" 24 #include "objfiles.h" 25 #include "observer.h" 26 #include "python-internal.h" 27 #include "arch-utils.h" 28 #include "language.h" 29 #include "gdb_signals.h" 30 #include "py-event.h" 31 #include "py-stopevent.h" 32 33 struct threadlist_entry { 34 thread_object *thread_obj; 35 struct threadlist_entry *next; 36 }; 37 38 typedef struct 39 { 40 PyObject_HEAD 41 42 /* The inferior we represent. */ 43 struct inferior *inferior; 44 45 /* thread_object instances under this inferior. This list owns a 46 reference to each object it contains. */ 47 struct threadlist_entry *threads; 48 49 /* Number of threads in the list. */ 50 int nthreads; 51 } inferior_object; 52 53 extern PyTypeObject inferior_object_type 54 CPYCHECKER_TYPE_OBJECT_FOR_TYPEDEF ("inferior_object"); 55 56 static const struct inferior_data *infpy_inf_data_key; 57 58 typedef struct { 59 PyObject_HEAD 60 void *buffer; 61 62 /* These are kept just for mbpy_str. */ 63 CORE_ADDR addr; 64 CORE_ADDR length; 65 } membuf_object; 66 67 extern PyTypeObject membuf_object_type 68 CPYCHECKER_TYPE_OBJECT_FOR_TYPEDEF ("membuf_object"); 69 70 /* Require that INFERIOR be a valid inferior ID. */ 71 #define INFPY_REQUIRE_VALID(Inferior) \ 72 do { \ 73 if (!Inferior->inferior) \ 74 { \ 75 PyErr_SetString (PyExc_RuntimeError, \ 76 _("Inferior no longer exists.")); \ 77 return NULL; \ 78 } \ 79 } while (0) 80 81 static void 82 python_on_normal_stop (struct bpstats *bs, int print_frame) 83 { 84 struct cleanup *cleanup; 85 enum gdb_signal stop_signal; 86 87 if (!gdb_python_initialized) 88 return; 89 90 if (!find_thread_ptid (inferior_ptid)) 91 return; 92 93 stop_signal = inferior_thread ()->suspend.stop_signal; 94 95 cleanup = ensure_python_env (get_current_arch (), current_language); 96 97 if (emit_stop_event (bs, stop_signal) < 0) 98 gdbpy_print_stack (); 99 100 do_cleanups (cleanup); 101 } 102 103 static void 104 python_on_resume (ptid_t ptid) 105 { 106 struct cleanup *cleanup; 107 108 if (!gdb_python_initialized) 109 return; 110 111 cleanup = ensure_python_env (target_gdbarch (), current_language); 112 113 if (emit_continue_event (ptid) < 0) 114 gdbpy_print_stack (); 115 116 do_cleanups (cleanup); 117 } 118 119 /* Callback, registered as an observer, that notifies Python listeners 120 when an inferior function call is about to be made. */ 121 122 static void 123 python_on_inferior_call_pre (ptid_t thread, CORE_ADDR address) 124 { 125 struct cleanup *cleanup; 126 127 cleanup = ensure_python_env (target_gdbarch (), current_language); 128 129 if (emit_inferior_call_event (INFERIOR_CALL_PRE, thread, address) < 0) 130 gdbpy_print_stack (); 131 132 do_cleanups (cleanup); 133 } 134 135 /* Callback, registered as an observer, that notifies Python listeners 136 when an inferior function call has completed. */ 137 138 static void 139 python_on_inferior_call_post (ptid_t thread, CORE_ADDR address) 140 { 141 struct cleanup *cleanup; 142 143 cleanup = ensure_python_env (target_gdbarch (), current_language); 144 145 if (emit_inferior_call_event (INFERIOR_CALL_POST, thread, address) < 0) 146 gdbpy_print_stack (); 147 148 do_cleanups (cleanup); 149 } 150 151 /* Callback, registered as an observer, that notifies Python listeners 152 when a part of memory has been modified by user action (eg via a 153 'set' command). */ 154 155 static void 156 python_on_memory_change (struct inferior *inferior, CORE_ADDR addr, ssize_t len, const bfd_byte *data) 157 { 158 struct cleanup *cleanup; 159 160 cleanup = ensure_python_env (target_gdbarch (), current_language); 161 162 if (emit_memory_changed_event (addr, len) < 0) 163 gdbpy_print_stack (); 164 165 do_cleanups (cleanup); 166 } 167 168 /* Callback, registered as an observer, that notifies Python listeners 169 when a register has been modified by user action (eg via a 'set' 170 command). */ 171 172 static void 173 python_on_register_change (struct frame_info *frame, int regnum) 174 { 175 struct cleanup *cleanup; 176 177 cleanup = ensure_python_env (target_gdbarch (), current_language); 178 179 if (emit_register_changed_event (frame, regnum) < 0) 180 gdbpy_print_stack (); 181 182 do_cleanups (cleanup); 183 } 184 185 static void 186 python_inferior_exit (struct inferior *inf) 187 { 188 struct cleanup *cleanup; 189 const LONGEST *exit_code = NULL; 190 191 if (!gdb_python_initialized) 192 return; 193 194 cleanup = ensure_python_env (target_gdbarch (), current_language); 195 196 if (inf->has_exit_code) 197 exit_code = &inf->exit_code; 198 199 if (emit_exited_event (exit_code, inf) < 0) 200 gdbpy_print_stack (); 201 202 do_cleanups (cleanup); 203 } 204 205 /* Callback used to notify Python listeners about new objfiles loaded in the 206 inferior. OBJFILE may be NULL which means that the objfile list has been 207 cleared (emptied). */ 208 209 static void 210 python_new_objfile (struct objfile *objfile) 211 { 212 struct cleanup *cleanup; 213 214 if (!gdb_python_initialized) 215 return; 216 217 cleanup = ensure_python_env (objfile != NULL 218 ? get_objfile_arch (objfile) 219 : target_gdbarch (), 220 current_language); 221 222 if (objfile == NULL) 223 { 224 if (emit_clear_objfiles_event () < 0) 225 gdbpy_print_stack (); 226 } 227 else 228 { 229 if (emit_new_objfile_event (objfile) < 0) 230 gdbpy_print_stack (); 231 } 232 233 do_cleanups (cleanup); 234 } 235 236 /* Return a reference to the Python object of type Inferior 237 representing INFERIOR. If the object has already been created, 238 return it and increment the reference count, otherwise, create it. 239 Return NULL on failure. */ 240 PyObject * 241 inferior_to_inferior_object (struct inferior *inferior) 242 { 243 inferior_object *inf_obj; 244 245 inf_obj = inferior_data (inferior, infpy_inf_data_key); 246 if (!inf_obj) 247 { 248 inf_obj = PyObject_New (inferior_object, &inferior_object_type); 249 if (!inf_obj) 250 return NULL; 251 252 inf_obj->inferior = inferior; 253 inf_obj->threads = NULL; 254 inf_obj->nthreads = 0; 255 256 set_inferior_data (inferior, infpy_inf_data_key, inf_obj); 257 258 } 259 else 260 Py_INCREF ((PyObject *)inf_obj); 261 262 return (PyObject *) inf_obj; 263 } 264 265 /* Finds the Python Inferior object for the given PID. Returns a 266 reference, or NULL if PID does not match any inferior object. */ 267 268 PyObject * 269 find_inferior_object (int pid) 270 { 271 struct inferior *inf = find_inferior_pid (pid); 272 273 if (inf) 274 return inferior_to_inferior_object (inf); 275 276 return NULL; 277 } 278 279 thread_object * 280 find_thread_object (ptid_t ptid) 281 { 282 int pid; 283 struct threadlist_entry *thread; 284 PyObject *inf_obj; 285 thread_object *found = NULL; 286 287 pid = ptid_get_pid (ptid); 288 if (pid == 0) 289 return NULL; 290 291 inf_obj = find_inferior_object (pid); 292 293 if (! inf_obj) 294 return NULL; 295 296 for (thread = ((inferior_object *)inf_obj)->threads; thread; 297 thread = thread->next) 298 if (ptid_equal (thread->thread_obj->thread->ptid, ptid)) 299 { 300 found = thread->thread_obj; 301 break; 302 } 303 304 Py_DECREF (inf_obj); 305 306 if (found) 307 return found; 308 309 return NULL; 310 } 311 312 static void 313 add_thread_object (struct thread_info *tp) 314 { 315 struct cleanup *cleanup; 316 thread_object *thread_obj; 317 inferior_object *inf_obj; 318 struct threadlist_entry *entry; 319 320 if (!gdb_python_initialized) 321 return; 322 323 cleanup = ensure_python_env (python_gdbarch, python_language); 324 325 thread_obj = create_thread_object (tp); 326 if (!thread_obj) 327 { 328 gdbpy_print_stack (); 329 do_cleanups (cleanup); 330 return; 331 } 332 333 inf_obj = (inferior_object *) thread_obj->inf_obj; 334 335 entry = xmalloc (sizeof (struct threadlist_entry)); 336 entry->thread_obj = thread_obj; 337 entry->next = inf_obj->threads; 338 339 inf_obj->threads = entry; 340 inf_obj->nthreads++; 341 342 do_cleanups (cleanup); 343 } 344 345 static void 346 delete_thread_object (struct thread_info *tp, int ignore) 347 { 348 struct cleanup *cleanup; 349 inferior_object *inf_obj; 350 struct threadlist_entry **entry, *tmp; 351 352 if (!gdb_python_initialized) 353 return; 354 355 cleanup = ensure_python_env (python_gdbarch, python_language); 356 357 inf_obj 358 = (inferior_object *) find_inferior_object (ptid_get_pid (tp->ptid)); 359 if (!inf_obj) 360 { 361 do_cleanups (cleanup); 362 return; 363 } 364 365 /* Find thread entry in its inferior's thread_list. */ 366 for (entry = &inf_obj->threads; *entry != NULL; entry = 367 &(*entry)->next) 368 if ((*entry)->thread_obj->thread == tp) 369 break; 370 371 if (!*entry) 372 { 373 Py_DECREF (inf_obj); 374 do_cleanups (cleanup); 375 return; 376 } 377 378 tmp = *entry; 379 tmp->thread_obj->thread = NULL; 380 381 *entry = (*entry)->next; 382 inf_obj->nthreads--; 383 384 Py_DECREF (tmp->thread_obj); 385 Py_DECREF (inf_obj); 386 xfree (tmp); 387 388 do_cleanups (cleanup); 389 } 390 391 static PyObject * 392 infpy_threads (PyObject *self, PyObject *args) 393 { 394 int i; 395 struct threadlist_entry *entry; 396 inferior_object *inf_obj = (inferior_object *) self; 397 PyObject *tuple; 398 399 INFPY_REQUIRE_VALID (inf_obj); 400 401 TRY 402 { 403 update_thread_list (); 404 } 405 CATCH (except, RETURN_MASK_ALL) 406 { 407 GDB_PY_HANDLE_EXCEPTION (except); 408 } 409 END_CATCH 410 411 tuple = PyTuple_New (inf_obj->nthreads); 412 if (!tuple) 413 return NULL; 414 415 for (i = 0, entry = inf_obj->threads; i < inf_obj->nthreads; 416 i++, entry = entry->next) 417 { 418 Py_INCREF (entry->thread_obj); 419 PyTuple_SET_ITEM (tuple, i, (PyObject *) entry->thread_obj); 420 } 421 422 return tuple; 423 } 424 425 static PyObject * 426 infpy_get_num (PyObject *self, void *closure) 427 { 428 inferior_object *inf = (inferior_object *) self; 429 430 INFPY_REQUIRE_VALID (inf); 431 432 return PyLong_FromLong (inf->inferior->num); 433 } 434 435 static PyObject * 436 infpy_get_pid (PyObject *self, void *closure) 437 { 438 inferior_object *inf = (inferior_object *) self; 439 440 INFPY_REQUIRE_VALID (inf); 441 442 return PyLong_FromLong (inf->inferior->pid); 443 } 444 445 static PyObject * 446 infpy_get_was_attached (PyObject *self, void *closure) 447 { 448 inferior_object *inf = (inferior_object *) self; 449 450 INFPY_REQUIRE_VALID (inf); 451 if (inf->inferior->attach_flag) 452 Py_RETURN_TRUE; 453 Py_RETURN_FALSE; 454 } 455 456 static int 457 build_inferior_list (struct inferior *inf, void *arg) 458 { 459 PyObject *list = arg; 460 PyObject *inferior = inferior_to_inferior_object (inf); 461 int success = 0; 462 463 if (! inferior) 464 return 0; 465 466 success = PyList_Append (list, inferior); 467 Py_DECREF (inferior); 468 469 if (success) 470 return 1; 471 472 return 0; 473 } 474 475 /* Implementation of gdb.inferiors () -> (gdb.Inferior, ...). 476 Returns a tuple of all inferiors. */ 477 PyObject * 478 gdbpy_inferiors (PyObject *unused, PyObject *unused2) 479 { 480 PyObject *list, *tuple; 481 482 list = PyList_New (0); 483 if (!list) 484 return NULL; 485 486 if (iterate_over_inferiors (build_inferior_list, list)) 487 { 488 Py_DECREF (list); 489 return NULL; 490 } 491 492 tuple = PyList_AsTuple (list); 493 Py_DECREF (list); 494 495 return tuple; 496 } 497 498 /* Membuf and memory manipulation. */ 499 500 /* Implementation of Inferior.read_memory (address, length). 501 Returns a Python buffer object with LENGTH bytes of the inferior's 502 memory at ADDRESS. Both arguments are integers. Returns NULL on error, 503 with a python exception set. */ 504 static PyObject * 505 infpy_read_memory (PyObject *self, PyObject *args, PyObject *kw) 506 { 507 CORE_ADDR addr, length; 508 void *buffer = NULL; 509 membuf_object *membuf_obj; 510 PyObject *addr_obj, *length_obj, *result; 511 static char *keywords[] = { "address", "length", NULL }; 512 513 if (! PyArg_ParseTupleAndKeywords (args, kw, "OO", keywords, 514 &addr_obj, &length_obj)) 515 return NULL; 516 517 if (get_addr_from_python (addr_obj, &addr) < 0 518 || get_addr_from_python (length_obj, &length) < 0) 519 return NULL; 520 521 TRY 522 { 523 buffer = xmalloc (length); 524 525 read_memory (addr, buffer, length); 526 } 527 CATCH (except, RETURN_MASK_ALL) 528 { 529 xfree (buffer); 530 GDB_PY_HANDLE_EXCEPTION (except); 531 } 532 END_CATCH 533 534 membuf_obj = PyObject_New (membuf_object, &membuf_object_type); 535 if (membuf_obj == NULL) 536 { 537 xfree (buffer); 538 return NULL; 539 } 540 541 membuf_obj->buffer = buffer; 542 membuf_obj->addr = addr; 543 membuf_obj->length = length; 544 545 #ifdef IS_PY3K 546 result = PyMemoryView_FromObject ((PyObject *) membuf_obj); 547 #else 548 result = PyBuffer_FromReadWriteObject ((PyObject *) membuf_obj, 0, 549 Py_END_OF_BUFFER); 550 #endif 551 Py_DECREF (membuf_obj); 552 553 return result; 554 } 555 556 /* Implementation of Inferior.write_memory (address, buffer [, length]). 557 Writes the contents of BUFFER (a Python object supporting the read 558 buffer protocol) at ADDRESS in the inferior's memory. Write LENGTH 559 bytes from BUFFER, or its entire contents if the argument is not 560 provided. The function returns nothing. Returns NULL on error, with 561 a python exception set. */ 562 static PyObject * 563 infpy_write_memory (PyObject *self, PyObject *args, PyObject *kw) 564 { 565 struct gdb_exception except = exception_none; 566 Py_ssize_t buf_len; 567 const char *buffer; 568 CORE_ADDR addr, length; 569 PyObject *addr_obj, *length_obj = NULL; 570 static char *keywords[] = { "address", "buffer", "length", NULL }; 571 #ifdef IS_PY3K 572 Py_buffer pybuf; 573 574 if (! PyArg_ParseTupleAndKeywords (args, kw, "Os*|O", keywords, 575 &addr_obj, &pybuf, 576 &length_obj)) 577 return NULL; 578 579 buffer = pybuf.buf; 580 buf_len = pybuf.len; 581 #else 582 if (! PyArg_ParseTupleAndKeywords (args, kw, "Os#|O", keywords, 583 &addr_obj, &buffer, &buf_len, 584 &length_obj)) 585 return NULL; 586 #endif 587 588 if (get_addr_from_python (addr_obj, &addr) < 0) 589 goto fail; 590 591 if (!length_obj) 592 length = buf_len; 593 else if (get_addr_from_python (length_obj, &length) < 0) 594 goto fail; 595 596 TRY 597 { 598 write_memory_with_notification (addr, (gdb_byte *) buffer, length); 599 } 600 CATCH (ex, RETURN_MASK_ALL) 601 { 602 except = ex; 603 } 604 END_CATCH 605 606 #ifdef IS_PY3K 607 PyBuffer_Release (&pybuf); 608 #endif 609 GDB_PY_HANDLE_EXCEPTION (except); 610 611 Py_RETURN_NONE; 612 613 fail: 614 #ifdef IS_PY3K 615 PyBuffer_Release (&pybuf); 616 #endif 617 return NULL; 618 } 619 620 /* Destructor of Membuf objects. */ 621 static void 622 mbpy_dealloc (PyObject *self) 623 { 624 xfree (((membuf_object *) self)->buffer); 625 Py_TYPE (self)->tp_free (self); 626 } 627 628 /* Return a description of the Membuf object. */ 629 static PyObject * 630 mbpy_str (PyObject *self) 631 { 632 membuf_object *membuf_obj = (membuf_object *) self; 633 634 return PyString_FromFormat (_("Memory buffer for address %s, \ 635 which is %s bytes long."), 636 paddress (python_gdbarch, membuf_obj->addr), 637 pulongest (membuf_obj->length)); 638 } 639 640 #ifdef IS_PY3K 641 642 static int 643 get_buffer (PyObject *self, Py_buffer *buf, int flags) 644 { 645 membuf_object *membuf_obj = (membuf_object *) self; 646 int ret; 647 648 ret = PyBuffer_FillInfo (buf, self, membuf_obj->buffer, 649 membuf_obj->length, 0, 650 PyBUF_CONTIG); 651 buf->format = "c"; 652 653 return ret; 654 } 655 656 #else 657 658 static Py_ssize_t 659 get_read_buffer (PyObject *self, Py_ssize_t segment, void **ptrptr) 660 { 661 membuf_object *membuf_obj = (membuf_object *) self; 662 663 if (segment) 664 { 665 PyErr_SetString (PyExc_SystemError, 666 _("The memory buffer supports only one segment.")); 667 return -1; 668 } 669 670 *ptrptr = membuf_obj->buffer; 671 672 return membuf_obj->length; 673 } 674 675 static Py_ssize_t 676 get_write_buffer (PyObject *self, Py_ssize_t segment, void **ptrptr) 677 { 678 return get_read_buffer (self, segment, ptrptr); 679 } 680 681 static Py_ssize_t 682 get_seg_count (PyObject *self, Py_ssize_t *lenp) 683 { 684 if (lenp) 685 *lenp = ((membuf_object *) self)->length; 686 687 return 1; 688 } 689 690 static Py_ssize_t 691 get_char_buffer (PyObject *self, Py_ssize_t segment, char **ptrptr) 692 { 693 void *ptr = NULL; 694 Py_ssize_t ret; 695 696 ret = get_read_buffer (self, segment, &ptr); 697 *ptrptr = (char *) ptr; 698 699 return ret; 700 } 701 702 #endif /* IS_PY3K */ 703 704 /* Implementation of 705 gdb.search_memory (address, length, pattern). ADDRESS is the 706 address to start the search. LENGTH specifies the scope of the 707 search from ADDRESS. PATTERN is the pattern to search for (and 708 must be a Python object supporting the buffer protocol). 709 Returns a Python Long object holding the address where the pattern 710 was located, or if the pattern was not found, returns None. Returns NULL 711 on error, with a python exception set. */ 712 static PyObject * 713 infpy_search_memory (PyObject *self, PyObject *args, PyObject *kw) 714 { 715 struct gdb_exception except = exception_none; 716 CORE_ADDR start_addr, length; 717 static char *keywords[] = { "address", "length", "pattern", NULL }; 718 PyObject *start_addr_obj, *length_obj; 719 Py_ssize_t pattern_size; 720 const void *buffer; 721 CORE_ADDR found_addr; 722 int found = 0; 723 #ifdef IS_PY3K 724 Py_buffer pybuf; 725 726 if (! PyArg_ParseTupleAndKeywords (args, kw, "OOs*", keywords, 727 &start_addr_obj, &length_obj, 728 &pybuf)) 729 return NULL; 730 731 buffer = pybuf.buf; 732 pattern_size = pybuf.len; 733 #else 734 PyObject *pattern; 735 736 if (! PyArg_ParseTupleAndKeywords (args, kw, "OOO", keywords, 737 &start_addr_obj, &length_obj, 738 &pattern)) 739 return NULL; 740 741 if (!PyObject_CheckReadBuffer (pattern)) 742 { 743 PyErr_SetString (PyExc_RuntimeError, 744 _("The pattern is not a Python buffer.")); 745 746 return NULL; 747 } 748 749 if (PyObject_AsReadBuffer (pattern, &buffer, &pattern_size) == -1) 750 return NULL; 751 #endif 752 753 if (get_addr_from_python (start_addr_obj, &start_addr) < 0) 754 goto fail; 755 756 if (get_addr_from_python (length_obj, &length) < 0) 757 goto fail; 758 759 if (!length) 760 { 761 PyErr_SetString (PyExc_ValueError, 762 _("Search range is empty.")); 763 goto fail; 764 } 765 /* Watch for overflows. */ 766 else if (length > CORE_ADDR_MAX 767 || (start_addr + length - 1) < start_addr) 768 { 769 PyErr_SetString (PyExc_ValueError, 770 _("The search range is too large.")); 771 goto fail; 772 } 773 774 TRY 775 { 776 found = target_search_memory (start_addr, length, 777 buffer, pattern_size, 778 &found_addr); 779 } 780 CATCH (ex, RETURN_MASK_ALL) 781 { 782 except = ex; 783 } 784 END_CATCH 785 786 #ifdef IS_PY3K 787 PyBuffer_Release (&pybuf); 788 #endif 789 GDB_PY_HANDLE_EXCEPTION (except); 790 791 if (found) 792 return PyLong_FromLong (found_addr); 793 else 794 Py_RETURN_NONE; 795 796 fail: 797 #ifdef IS_PY3K 798 PyBuffer_Release (&pybuf); 799 #endif 800 return NULL; 801 } 802 803 /* Implementation of gdb.Inferior.is_valid (self) -> Boolean. 804 Returns True if this inferior object still exists in GDB. */ 805 806 static PyObject * 807 infpy_is_valid (PyObject *self, PyObject *args) 808 { 809 inferior_object *inf = (inferior_object *) self; 810 811 if (! inf->inferior) 812 Py_RETURN_FALSE; 813 814 Py_RETURN_TRUE; 815 } 816 817 static void 818 infpy_dealloc (PyObject *obj) 819 { 820 inferior_object *inf_obj = (inferior_object *) obj; 821 struct inferior *inf = inf_obj->inferior; 822 823 if (! inf) 824 return; 825 826 set_inferior_data (inf, infpy_inf_data_key, NULL); 827 } 828 829 /* Clear the INFERIOR pointer in an Inferior object and clear the 830 thread list. */ 831 static void 832 py_free_inferior (struct inferior *inf, void *datum) 833 { 834 835 struct cleanup *cleanup; 836 inferior_object *inf_obj = datum; 837 struct threadlist_entry *th_entry, *th_tmp; 838 839 if (!gdb_python_initialized) 840 return; 841 842 cleanup = ensure_python_env (python_gdbarch, python_language); 843 844 inf_obj->inferior = NULL; 845 846 /* Deallocate threads list. */ 847 for (th_entry = inf_obj->threads; th_entry != NULL;) 848 { 849 Py_DECREF (th_entry->thread_obj); 850 851 th_tmp = th_entry; 852 th_entry = th_entry->next; 853 xfree (th_tmp); 854 } 855 856 inf_obj->nthreads = 0; 857 858 Py_DECREF ((PyObject *) inf_obj); 859 do_cleanups (cleanup); 860 } 861 862 /* Implementation of gdb.selected_inferior() -> gdb.Inferior. 863 Returns the current inferior object. */ 864 865 PyObject * 866 gdbpy_selected_inferior (PyObject *self, PyObject *args) 867 { 868 return inferior_to_inferior_object (current_inferior ()); 869 } 870 871 int 872 gdbpy_initialize_inferior (void) 873 { 874 if (PyType_Ready (&inferior_object_type) < 0) 875 return -1; 876 877 if (gdb_pymodule_addobject (gdb_module, "Inferior", 878 (PyObject *) &inferior_object_type) < 0) 879 return -1; 880 881 infpy_inf_data_key = 882 register_inferior_data_with_cleanup (NULL, py_free_inferior); 883 884 observer_attach_new_thread (add_thread_object); 885 observer_attach_thread_exit (delete_thread_object); 886 observer_attach_normal_stop (python_on_normal_stop); 887 observer_attach_target_resumed (python_on_resume); 888 observer_attach_inferior_call_pre (python_on_inferior_call_pre); 889 observer_attach_inferior_call_post (python_on_inferior_call_post); 890 observer_attach_memory_changed (python_on_memory_change); 891 observer_attach_register_changed (python_on_register_change); 892 observer_attach_inferior_exit (python_inferior_exit); 893 observer_attach_new_objfile (python_new_objfile); 894 895 membuf_object_type.tp_new = PyType_GenericNew; 896 if (PyType_Ready (&membuf_object_type) < 0) 897 return -1; 898 899 return gdb_pymodule_addobject (gdb_module, "Membuf", (PyObject *) 900 &membuf_object_type); 901 } 902 903 static PyGetSetDef inferior_object_getset[] = 904 { 905 { "num", infpy_get_num, NULL, "ID of inferior, as assigned by GDB.", NULL }, 906 { "pid", infpy_get_pid, NULL, "PID of inferior, as assigned by the OS.", 907 NULL }, 908 { "was_attached", infpy_get_was_attached, NULL, 909 "True if the inferior was created using 'attach'.", NULL }, 910 { NULL } 911 }; 912 913 static PyMethodDef inferior_object_methods[] = 914 { 915 { "is_valid", infpy_is_valid, METH_NOARGS, 916 "is_valid () -> Boolean.\n\ 917 Return true if this inferior is valid, false if not." }, 918 { "threads", infpy_threads, METH_NOARGS, 919 "Return all the threads of this inferior." }, 920 { "read_memory", (PyCFunction) infpy_read_memory, 921 METH_VARARGS | METH_KEYWORDS, 922 "read_memory (address, length) -> buffer\n\ 923 Return a buffer object for reading from the inferior's memory." }, 924 { "write_memory", (PyCFunction) infpy_write_memory, 925 METH_VARARGS | METH_KEYWORDS, 926 "write_memory (address, buffer [, length])\n\ 927 Write the given buffer object to the inferior's memory." }, 928 { "search_memory", (PyCFunction) infpy_search_memory, 929 METH_VARARGS | METH_KEYWORDS, 930 "search_memory (address, length, pattern) -> long\n\ 931 Return a long with the address of a match, or None." }, 932 { NULL } 933 }; 934 935 PyTypeObject inferior_object_type = 936 { 937 PyVarObject_HEAD_INIT (NULL, 0) 938 "gdb.Inferior", /* tp_name */ 939 sizeof (inferior_object), /* tp_basicsize */ 940 0, /* tp_itemsize */ 941 infpy_dealloc, /* tp_dealloc */ 942 0, /* tp_print */ 943 0, /* tp_getattr */ 944 0, /* tp_setattr */ 945 0, /* tp_compare */ 946 0, /* tp_repr */ 947 0, /* tp_as_number */ 948 0, /* tp_as_sequence */ 949 0, /* tp_as_mapping */ 950 0, /* tp_hash */ 951 0, /* tp_call */ 952 0, /* tp_str */ 953 0, /* tp_getattro */ 954 0, /* tp_setattro */ 955 0, /* tp_as_buffer */ 956 Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_ITER, /* tp_flags */ 957 "GDB inferior object", /* tp_doc */ 958 0, /* tp_traverse */ 959 0, /* tp_clear */ 960 0, /* tp_richcompare */ 961 0, /* tp_weaklistoffset */ 962 0, /* tp_iter */ 963 0, /* tp_iternext */ 964 inferior_object_methods, /* tp_methods */ 965 0, /* tp_members */ 966 inferior_object_getset, /* tp_getset */ 967 0, /* tp_base */ 968 0, /* tp_dict */ 969 0, /* tp_descr_get */ 970 0, /* tp_descr_set */ 971 0, /* tp_dictoffset */ 972 0, /* tp_init */ 973 0 /* tp_alloc */ 974 }; 975 976 #ifdef IS_PY3K 977 978 static PyBufferProcs buffer_procs = 979 { 980 get_buffer 981 }; 982 983 #else 984 985 /* Python doesn't provide a decent way to get compatibility here. */ 986 #if HAVE_LIBPYTHON2_4 987 #define CHARBUFFERPROC_NAME getcharbufferproc 988 #else 989 #define CHARBUFFERPROC_NAME charbufferproc 990 #endif 991 992 static PyBufferProcs buffer_procs = { 993 get_read_buffer, 994 get_write_buffer, 995 get_seg_count, 996 /* The cast here works around a difference between Python 2.4 and 997 Python 2.5. */ 998 (CHARBUFFERPROC_NAME) get_char_buffer 999 }; 1000 #endif /* IS_PY3K */ 1001 1002 PyTypeObject membuf_object_type = { 1003 PyVarObject_HEAD_INIT (NULL, 0) 1004 "gdb.Membuf", /*tp_name*/ 1005 sizeof (membuf_object), /*tp_basicsize*/ 1006 0, /*tp_itemsize*/ 1007 mbpy_dealloc, /*tp_dealloc*/ 1008 0, /*tp_print*/ 1009 0, /*tp_getattr*/ 1010 0, /*tp_setattr*/ 1011 0, /*tp_compare*/ 1012 0, /*tp_repr*/ 1013 0, /*tp_as_number*/ 1014 0, /*tp_as_sequence*/ 1015 0, /*tp_as_mapping*/ 1016 0, /*tp_hash */ 1017 0, /*tp_call*/ 1018 mbpy_str, /*tp_str*/ 1019 0, /*tp_getattro*/ 1020 0, /*tp_setattro*/ 1021 &buffer_procs, /*tp_as_buffer*/ 1022 Py_TPFLAGS_DEFAULT, /*tp_flags*/ 1023 "GDB memory buffer object", /*tp_doc*/ 1024 0, /* tp_traverse */ 1025 0, /* tp_clear */ 1026 0, /* tp_richcompare */ 1027 0, /* tp_weaklistoffset */ 1028 0, /* tp_iter */ 1029 0, /* tp_iternext */ 1030 0, /* tp_methods */ 1031 0, /* tp_members */ 1032 0, /* tp_getset */ 1033 0, /* tp_base */ 1034 0, /* tp_dict */ 1035 0, /* tp_descr_get */ 1036 0, /* tp_descr_set */ 1037 0, /* tp_dictoffset */ 1038 0, /* tp_init */ 1039 0, /* tp_alloc */ 1040 }; 1041