1 /* 2 * Copyright (c) 2004 Marcel Moolenaar 3 * All rights reserved. 4 * 5 * Redistribution and use in source and binary forms, with or without 6 * modification, are permitted provided that the following conditions 7 * are met: 8 * 9 * 1. Redistributions of source code must retain the above copyright 10 * notice, this list of conditions and the following disclaimer. 11 * 2. Redistributions in binary form must reproduce the above copyright 12 * notice, this list of conditions and the following disclaimer in the 13 * documentation and/or other materials provided with the distribution. 14 * 15 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 16 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 17 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 18 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 19 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 20 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 21 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 22 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 23 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 24 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 25 */ 26 27 #include "defs.h" 28 #include "command.h" 29 #include "elf-bfd.h" 30 #include "filenames.h" 31 #include "gdbcore.h" 32 #include "gdbthread.h" 33 #include "gdbsupport/gdb_obstack.h" 34 #include "inferior.h" 35 #include "objfiles.h" 36 #include "osabi.h" 37 #include "process-stratum-target.h" 38 #include "solib.h" 39 #include "target.h" 40 #include "value.h" 41 #include "readline/tilde.h" 42 #include "gdbsupport/buildargv.h" 43 #include "gdbsupport/pathstuff.h" 44 #include "gdbsupport/gdb_tilde_expand.h" 45 46 #include <sys/user.h> 47 #include <fcntl.h> 48 #include <kvm.h> 49 50 #include "kgdb.h" 51 52 static CORE_ADDR stoppcbs; 53 static LONGEST pcb_size; 54 55 static std::string vmcore; 56 57 struct fbsd_vmcore_ops 58 { 59 /* Supply registers for a pcb to a register cache. */ 60 void (*supply_pcb)(struct regcache *, CORE_ADDR) = nullptr; 61 62 /* Return address of pcb for thread running on a CPU. */ 63 CORE_ADDR (*cpu_pcb_addr)(u_int) = nullptr; 64 }; 65 66 /* Per-architecture data key. */ 67 static const registry<gdbarch>::key<struct fbsd_vmcore_ops> fbsd_vmcore_data; 68 69 static struct fbsd_vmcore_ops * 70 get_fbsd_vmcore_ops (struct gdbarch *gdbarch) 71 { 72 struct fbsd_vmcore_ops *ops = fbsd_vmcore_data.get (gdbarch); 73 if (ops == nullptr) 74 ops = fbsd_vmcore_data.emplace (gdbarch); 75 return ops; 76 } 77 78 /* Set the function that supplies registers from a pcb 79 for architecture GDBARCH to SUPPLY_PCB. */ 80 81 void 82 fbsd_vmcore_set_supply_pcb (struct gdbarch *gdbarch, 83 void (*supply_pcb) (struct regcache *, 84 CORE_ADDR)) 85 { 86 struct fbsd_vmcore_ops *ops = get_fbsd_vmcore_ops (gdbarch); 87 ops->supply_pcb = supply_pcb; 88 } 89 90 /* Set the function that returns the address of the pcb for a thread 91 running on a CPU for 92 architecture GDBARCH to CPU_PCB_ADDR. */ 93 94 void 95 fbsd_vmcore_set_cpu_pcb_addr (struct gdbarch *gdbarch, 96 CORE_ADDR (*cpu_pcb_addr) (u_int)) 97 { 98 struct fbsd_vmcore_ops *ops = get_fbsd_vmcore_ops (gdbarch); 99 ops->cpu_pcb_addr = cpu_pcb_addr; 100 } 101 102 static CORE_ADDR kernstart; 103 static kvm_t *kvm; 104 int kgdb_quiet; 105 106 static ptid_t 107 fbsd_vmcore_ptid(int tid) 108 { 109 if (kvm == NULL) 110 /* 111 * The remote target stores the 'tid' in the lwp 112 * field. 113 */ 114 return ptid_t(inferior_ptid.pid(), tid, 0); 115 116 /* 117 * This follows the model described in bsd-kvm.c except that 118 * in kernel tids are used as the tid of the ptid instead of a 119 * process ID. 120 */ 121 return ptid_t(1, 1, tid); 122 } 123 124 #define MSGBUF_SEQ_TO_POS(size, seq) ((seq) % (size)) 125 126 static void 127 kgdb_dmesg(void) 128 { 129 CORE_ADDR bufp; 130 int size, rseq, wseq; 131 gdb_byte c; 132 133 /* 134 * Display the unread portion of the message buffer. This gives the 135 * user a some initial data to work from. 136 */ 137 if (kgdb_quiet) 138 return; 139 try { 140 bufp = parse_and_eval_address("msgbufp->msg_ptr"); 141 size = parse_and_eval_long("msgbufp->msg_size"); 142 rseq = parse_and_eval_long("msgbufp->msg_rseq"); 143 wseq = parse_and_eval_long("msgbufp->msg_wseq"); 144 } catch (const gdb_exception_error &e) { 145 return; 146 } 147 if (size == 0) 148 return; 149 rseq = MSGBUF_SEQ_TO_POS(size, rseq); 150 wseq = MSGBUF_SEQ_TO_POS(size, wseq); 151 if (rseq == wseq) 152 return; 153 154 printf("\nUnread portion of the kernel message buffer:\n"); 155 while (rseq < wseq) { 156 read_memory(bufp + rseq, &c, 1); 157 putchar(c); 158 rseq++; 159 if (rseq == size) 160 rseq = 0; 161 } 162 if (c != '\n') 163 putchar('\n'); 164 putchar('\n'); 165 } 166 167 #define KERNEL_INTERP "/red/herring" 168 169 enum gdb_osabi 170 fbsd_kernel_osabi_sniffer(bfd *abfd) 171 { 172 asection *s; 173 bfd_byte buf[sizeof(KERNEL_INTERP)]; 174 bfd_byte *bufp; 175 176 /* First, determine if this is a FreeBSD/ELF binary. */ 177 switch (elf_elfheader(abfd)->e_ident[EI_OSABI]) { 178 case ELFOSABI_FREEBSD: 179 break; 180 case ELFOSABI_NONE: { 181 enum gdb_osabi osabi = GDB_OSABI_UNKNOWN; 182 183 for (asection *sect : gdb_bfd_sections (abfd)) 184 generic_elf_osabi_sniff_abi_tag_sections (abfd, sect, &osabi); 185 186 /* 187 * aarch64 and RISC-V kernels don't have the right 188 * note tag for kernels so just look for /red/herring 189 * anyway. 190 */ 191 if (osabi == GDB_OSABI_UNKNOWN && 192 ((elf_elfheader(abfd)->e_machine == EM_AARCH64) || 193 (elf_elfheader(abfd)->e_machine == EM_RISCV))) 194 break; 195 if (osabi != GDB_OSABI_FREEBSD) 196 return (GDB_OSABI_UNKNOWN); 197 break; 198 } 199 default: 200 return (GDB_OSABI_UNKNOWN); 201 } 202 203 /* FreeBSD ELF kernels have an interpreter path of "/red/herring". */ 204 bufp = buf; 205 s = bfd_get_section_by_name(abfd, ".interp"); 206 if (s != NULL && bfd_section_size(s) == sizeof(buf) && 207 bfd_get_full_section_contents(abfd, s, &bufp) && 208 memcmp(buf, KERNEL_INTERP, sizeof(buf)) == 0) 209 return (GDB_OSABI_FREEBSD_KERNEL); 210 211 return (GDB_OSABI_UNKNOWN); 212 } 213 214 /* The FreeBSD libkvm target. */ 215 216 static const target_info fbsd_kvm_target_info = { 217 "vmcore", 218 N_("Kernel core dump file"), 219 N_("Use a vmcore file as a target.\n\ 220 If no filename is specified, /dev/mem is used to examine the running kernel.\n\ 221 target vmcore [-w] [filename]") 222 }; 223 224 class fbsd_kvm_target final : public process_stratum_target 225 { 226 public: 227 fbsd_kvm_target () = default; 228 229 const target_info &info () const override 230 { return fbsd_kvm_target_info; } 231 232 void close () override; 233 234 void fetch_registers (struct regcache *, int) override; 235 enum target_xfer_status xfer_partial (enum target_object object, 236 const char *annex, 237 gdb_byte *readbuf, 238 const gdb_byte *writebuf, 239 ULONGEST offset, ULONGEST len, 240 ULONGEST *xfered_len) override; 241 242 void files_info () override; 243 bool thread_alive (ptid_t ptid) override; 244 std::string pid_to_str (ptid_t) override; 245 const char *extra_thread_info (thread_info *) override; 246 247 bool has_all_memory () override { return false; } 248 bool has_memory () override; 249 bool has_stack () override; 250 bool has_registers () override; 251 bool has_execution (inferior *inf) override { return false; } 252 }; 253 254 /* Target ops for libkvm interface. */ 255 static fbsd_kvm_target fbsd_kvm_ops; 256 257 #ifdef HAVE_KVM_OPEN2 258 static int 259 kgdb_resolve_symbol(const char *name, kvaddr_t *kva) 260 { 261 struct bound_minimal_symbol ms; 262 263 ms = lookup_minimal_symbol (name, NULL, NULL); 264 if (ms.minsym == NULL) 265 return (1); 266 *kva = ms.value_address (); 267 return (0); 268 } 269 #endif 270 271 static void 272 fbsd_kvm_target_open (const char *args, int from_tty) 273 { 274 struct fbsd_vmcore_ops *ops = get_fbsd_vmcore_ops (current_inferior ()->arch ()); 275 char kvm_err[_POSIX2_LINE_MAX]; 276 struct inferior *inf; 277 struct cleanup *old_chain; 278 struct kthr *kt; 279 kvm_t *nkvm; 280 const char *kernel; 281 std::string filename; 282 LONGEST osreldate; 283 bool writeable; 284 285 if (ops == NULL || ops->supply_pcb == NULL || ops->cpu_pcb_addr == NULL) 286 error ("ABI doesn't support a vmcore target"); 287 288 target_preopen (from_tty); 289 kernel = get_exec_file (0); 290 if (kernel == NULL) 291 error ("Can't open a vmcore without a kernel"); 292 293 writeable = false; 294 if (args != NULL) { 295 gdb_argv built_argv (args); 296 297 for (char **argv = built_argv.get (); *argv != NULL; argv++) { 298 if (**argv == '-') { 299 if (strcmp (*argv, "-w") == 0) 300 writeable = true; 301 else 302 error (_("Invalid argument")); 303 } else { 304 if (!filename.empty ()) 305 error (_("Invalid argument")); 306 307 filename = gdb_tilde_expand (*argv); 308 if (!IS_ABSOLUTE_PATH (filename)) 309 filename = gdb_abspath (filename.c_str ()); 310 } 311 } 312 } 313 314 #ifdef HAVE_KVM_OPEN2 315 nkvm = kvm_open2(kernel, filename.c_str (), 316 writeable ? O_RDWR : O_RDONLY, kvm_err, kgdb_resolve_symbol); 317 #else 318 nkvm = kvm_openfiles(kernel, filename.c_str (), NULL, 319 writeable ? O_RDWR : O_RDONLY, kvm_err); 320 #endif 321 if (nkvm == NULL) { 322 error ("Failed to open vmcore: %s", kvm_err); 323 } 324 325 /* Don't free the filename now and close any previous vmcore. */ 326 current_inferior ()->unpush_target (&fbsd_kvm_ops); 327 328 #ifdef HAVE_KVM_DISP 329 /* Relocate kernel objfile if needed. */ 330 struct objfile *symfile_objfile = 331 current_program_space->symfile_object_file; 332 if (symfile_objfile != nullptr && 333 (bfd_get_file_flags(symfile_objfile->obfd.get ()) & 334 (EXEC_P | DYNAMIC)) != 0) { 335 CORE_ADDR displacement = kvm_kerndisp(nkvm); 336 if (displacement != 0) { 337 section_offsets new_offsets (symfile_objfile->section_offsets.size (), 338 displacement); 339 objfile_relocate(symfile_objfile, new_offsets); 340 } 341 } 342 #endif 343 344 kvm = nkvm; 345 vmcore = std::move(filename); 346 target_unpush_up unpusher; 347 inf = current_inferior(); 348 inf->push_target (&fbsd_kvm_ops); 349 350 if (inf->pid == 0) { 351 inferior_appeared(inf, 1); 352 inf->fake_pid_p = 1; 353 } 354 355 /* 356 * Determine the first address in KVA. Newer kernels export 357 * VM_MAXUSER_ADDRESS and the first kernel address can be 358 * determined by adding one. Older kernels do not provide a 359 * symbol that is valid on all platforms, but kernbase is close 360 * for most platforms. 361 */ 362 try { 363 kernstart = parse_and_eval_address("vm_maxuser_address") + 1; 364 } catch (const gdb_exception_error &e) { 365 kernstart = kgdb_lookup("kernbase"); 366 } 367 368 osreldate = parse_and_eval_long("osreldate"); 369 370 /* 371 * Look up symbols needed for stoppcbs handling, but don't 372 * fail if they aren't present. 373 */ 374 stoppcbs = kgdb_lookup("stoppcbs"); 375 if (osreldate >= 1400088) { 376 /* stoppcbs is now a pointer rather than an array. */ 377 try { 378 stoppcbs = read_memory_typed_address(stoppcbs, 379 builtin_type(current_inferior ()->arch())->builtin_data_ptr); 380 } catch (const gdb_exception_error &e) { 381 stoppcbs = 0; 382 } 383 } 384 385 try { 386 pcb_size = parse_and_eval_long("pcb_size"); 387 } catch (const gdb_exception_error &e) { 388 pcb_size = 0; 389 } 390 391 if (pcb_size == 0) { 392 try { 393 pcb_size = parse_and_eval_long("sizeof(struct pcb)"); 394 } catch (const gdb_exception_error &e) { 395 #ifdef HAVE_KVM_OPEN2 396 if (kvm_native(nkvm)) 397 pcb_size = sizeof(struct pcb); 398 else 399 pcb_size = 0; 400 #else 401 pcb_size = sizeof(struct pcb); 402 #endif 403 } 404 } 405 406 kgdb_dmesg(); 407 408 kt = kgdb_thr_init(ops->cpu_pcb_addr); 409 thread_info *curthr = nullptr; 410 while (kt != NULL) { 411 thread_info *thr = add_thread_silent(&fbsd_kvm_ops, 412 fbsd_vmcore_ptid(kt->tid)); 413 if (kt == curkthr) 414 curthr = thr; 415 kt = kgdb_thr_next(kt); 416 } 417 switch_to_thread (curthr); 418 419 unpusher.release (); 420 421 post_create_inferior (from_tty); 422 423 target_fetch_registers (get_thread_regcache (curthr), -1); 424 425 reinit_frame_cache (); 426 print_stack_frame (get_selected_frame (NULL), 0, SRC_AND_LOC, 1); 427 } 428 429 void 430 fbsd_kvm_target::close() 431 { 432 433 if (kvm != NULL) { 434 switch_to_no_thread (); 435 exit_inferior (current_inferior ()); 436 437 clear_solib (current_program_space); 438 if (kvm_close(kvm) != 0) 439 warning("cannot close \"%s\": %s", vmcore.c_str (), 440 kvm_geterr(kvm)); 441 kvm = NULL; 442 vmcore.clear (); 443 } 444 445 } 446 447 #if 0 448 static void 449 kgdb_trgt_detach(struct target_ops *ops, const char *args, int from_tty) 450 { 451 452 if (args) 453 error ("Too many arguments"); 454 unpush_target(&kgdb_trgt_ops); 455 reinit_frame_cache(); 456 if (from_tty) 457 gdb_printf("No vmcore file now.\n"); 458 } 459 #endif 460 461 const char * 462 fbsd_kvm_target::extra_thread_info(thread_info *ti) 463 { 464 465 return (kgdb_thr_extra_thread_info(ti->ptid.tid())); 466 } 467 468 bool 469 fbsd_kvm_target::has_memory () 470 { 471 return (kvm != NULL); 472 } 473 474 bool 475 fbsd_kvm_target::has_stack () 476 { 477 return (kvm != NULL); 478 } 479 480 bool 481 fbsd_kvm_target::has_registers () 482 { 483 return (kvm != NULL); 484 } 485 486 void 487 fbsd_kvm_target::files_info() 488 { 489 490 gdb_printf ("\t`%s', ", vmcore.c_str ()); 491 gdb_stdout->wrap_here (8); 492 gdb_printf ("file type %s.\n", "FreeBSD kernel vmcore"); 493 } 494 495 std::string 496 fbsd_kvm_target::pid_to_str(ptid_t ptid) 497 { 498 return string_printf (_("Thread %ld"), ptid.tid ()); 499 } 500 501 bool 502 fbsd_kvm_target::thread_alive(ptid_t ptid) 503 { 504 return (kgdb_thr_lookup_tid(ptid.tid()) != NULL); 505 } 506 507 void 508 fbsd_kvm_target::fetch_registers(struct regcache *regcache, int regnum) 509 { 510 struct fbsd_vmcore_ops *ops = get_fbsd_vmcore_ops (regcache->arch ()); 511 struct kthr *kt; 512 513 if (ops->supply_pcb == NULL) 514 return; 515 kt = kgdb_thr_lookup_tid(regcache->ptid().tid()); 516 if (kt == NULL) 517 return; 518 ops->supply_pcb(regcache, kt->pcb); 519 } 520 521 enum target_xfer_status 522 fbsd_kvm_target::xfer_partial(enum target_object object, 523 const char *annex, gdb_byte *readbuf, 524 const gdb_byte *writebuf, 525 ULONGEST offset, ULONGEST len, ULONGEST *xfered_len) 526 { 527 ssize_t nbytes; 528 529 gdb_assert(kvm != NULL); 530 switch (object) { 531 case TARGET_OBJECT_MEMORY: 532 nbytes = len; 533 if (readbuf != NULL) 534 #ifdef HAVE_KVM_OPEN2 535 nbytes = kvm_read2(kvm, offset, readbuf, len); 536 #else 537 nbytes = kvm_read(kvm, offset, readbuf, len); 538 #endif 539 if (writebuf != NULL && len > 0) 540 nbytes = kvm_write(kvm, offset, writebuf, len); 541 if (nbytes < 0) 542 return TARGET_XFER_E_IO; 543 if (nbytes == 0) 544 return TARGET_XFER_EOF; 545 *xfered_len = nbytes; 546 return TARGET_XFER_OK; 547 default: 548 return TARGET_XFER_E_IO; 549 } 550 } 551 552 static void 553 kgdb_switch_to_thread(const char *arg, int tid) 554 { 555 struct thread_info *tp = fbsd_kvm_ops.find_thread (fbsd_vmcore_ptid (tid)); 556 if (tp == NULL) 557 error ("invalid tid"); 558 thread_select (arg, tp); 559 } 560 561 static void 562 kgdb_set_proc_cmd (const char *arg, int from_tty) 563 { 564 CORE_ADDR addr; 565 struct kthr *thr; 566 567 if (!arg) 568 error_no_arg ("proc address for the new context"); 569 570 if (kvm == NULL) 571 error ("only supported for core file target"); 572 573 addr = parse_and_eval_address (arg); 574 575 if (addr < kernstart) { 576 thr = kgdb_thr_lookup_pid((int)addr); 577 if (thr == NULL) 578 error ("invalid pid"); 579 } else { 580 thr = kgdb_thr_lookup_paddr(addr); 581 if (thr == NULL) 582 error("invalid proc address"); 583 } 584 kgdb_switch_to_thread(arg, thr->tid); 585 } 586 587 static void 588 kgdb_set_tid_cmd (const char *arg, int from_tty) 589 { 590 CORE_ADDR addr; 591 struct kthr *thr; 592 593 if (!arg) 594 error_no_arg ("TID or thread address for the new context"); 595 596 addr = (CORE_ADDR) parse_and_eval_address (arg); 597 598 if (kvm != NULL && addr >= kernstart) { 599 thr = kgdb_thr_lookup_taddr(addr); 600 if (thr == NULL) 601 error("invalid thread address"); 602 addr = thr->tid; 603 } 604 kgdb_switch_to_thread(arg, addr); 605 } 606 607 void _initialize_kgdb_target (); 608 void 609 _initialize_kgdb_target () 610 { 611 612 add_target(fbsd_kvm_target_info, fbsd_kvm_target_open, 613 filename_completer); 614 615 add_com ("proc", class_obscure, kgdb_set_proc_cmd, 616 "Set current process context"); 617 add_com ("tid", class_obscure, kgdb_set_tid_cmd, 618 "Set current thread context"); 619 } 620 621 CORE_ADDR 622 kgdb_trgt_stop_pcb(u_int cpuid) 623 { 624 625 if (stoppcbs == 0 || pcb_size == 0) 626 return 0; 627 628 return (stoppcbs + pcb_size * cpuid); 629 } 630