1 /* Trace file TFILE format support in GDB. 2 3 Copyright (C) 1997-2023 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 "tracefile.h" 22 #include "readline/tilde.h" 23 #include "gdbsupport/filestuff.h" 24 #include "gdbsupport/rsp-low.h" /* bin2hex */ 25 #include "regcache.h" 26 #include "inferior.h" 27 #include "gdbthread.h" 28 #include "exec.h" 29 #include "completer.h" 30 #include "filenames.h" 31 #include "remote.h" 32 #include "xml-tdesc.h" 33 #include "target-descriptions.h" 34 #include "gdbsupport/buffer.h" 35 #include "gdbsupport/pathstuff.h" 36 #include <algorithm> 37 38 #ifndef O_LARGEFILE 39 #define O_LARGEFILE 0 40 #endif 41 42 /* The tfile target. */ 43 44 static const target_info tfile_target_info = { 45 "tfile", 46 N_("Local trace dump file"), 47 N_("Use a trace file as a target.\n\ 48 Specify the filename of the trace file.") 49 }; 50 51 class tfile_target final : public tracefile_target 52 { 53 public: 54 const target_info &info () const override 55 { return tfile_target_info; } 56 57 void close () override; 58 void fetch_registers (struct regcache *, int) override; 59 enum target_xfer_status xfer_partial (enum target_object object, 60 const char *annex, 61 gdb_byte *readbuf, 62 const gdb_byte *writebuf, 63 ULONGEST offset, ULONGEST len, 64 ULONGEST *xfered_len) override; 65 void files_info () override; 66 int trace_find (enum trace_find_type type, int num, 67 CORE_ADDR addr1, CORE_ADDR addr2, int *tpp) override; 68 bool get_trace_state_variable_value (int tsv, LONGEST *val) override; 69 traceframe_info_up traceframe_info () override; 70 71 void get_tracepoint_status (struct breakpoint *tp, 72 struct uploaded_tp *utp) override; 73 }; 74 75 /* TFILE trace writer. */ 76 77 struct tfile_trace_file_writer 78 { 79 struct trace_file_writer base; 80 81 /* File pointer to tfile trace file. */ 82 FILE *fp; 83 /* Path name of the tfile trace file. */ 84 char *pathname; 85 }; 86 87 /* This is the implementation of trace_file_write_ops method 88 target_save. We just call the generic target 89 target_save_trace_data to do target-side saving. */ 90 91 static int 92 tfile_target_save (struct trace_file_writer *self, 93 const char *filename) 94 { 95 int err = target_save_trace_data (filename); 96 97 return (err >= 0); 98 } 99 100 /* This is the implementation of trace_file_write_ops method 101 dtor. */ 102 103 static void 104 tfile_dtor (struct trace_file_writer *self) 105 { 106 struct tfile_trace_file_writer *writer 107 = (struct tfile_trace_file_writer *) self; 108 109 xfree (writer->pathname); 110 111 if (writer->fp != NULL) 112 fclose (writer->fp); 113 } 114 115 /* This is the implementation of trace_file_write_ops method 116 start. It creates the trace file FILENAME and registers some 117 cleanups. */ 118 119 static void 120 tfile_start (struct trace_file_writer *self, const char *filename) 121 { 122 struct tfile_trace_file_writer *writer 123 = (struct tfile_trace_file_writer *) self; 124 125 writer->pathname = tilde_expand (filename); 126 writer->fp = gdb_fopen_cloexec (writer->pathname, "wb").release (); 127 if (writer->fp == NULL) 128 error (_("Unable to open file '%s' for saving trace data (%s)"), 129 writer->pathname, safe_strerror (errno)); 130 } 131 132 /* This is the implementation of trace_file_write_ops method 133 write_header. Write the TFILE header. */ 134 135 static void 136 tfile_write_header (struct trace_file_writer *self) 137 { 138 struct tfile_trace_file_writer *writer 139 = (struct tfile_trace_file_writer *) self; 140 int written; 141 142 /* Write a file header, with a high-bit-set char to indicate a 143 binary file, plus a hint as what this file is, and a version 144 number in case of future needs. */ 145 written = fwrite ("\x7fTRACE0\n", 8, 1, writer->fp); 146 if (written < 1) 147 perror_with_name (writer->pathname); 148 } 149 150 /* This is the implementation of trace_file_write_ops method 151 write_regblock_type. Write the size of register block. */ 152 153 static void 154 tfile_write_regblock_type (struct trace_file_writer *self, int size) 155 { 156 struct tfile_trace_file_writer *writer 157 = (struct tfile_trace_file_writer *) self; 158 159 fprintf (writer->fp, "R %x\n", size); 160 } 161 162 /* This is the implementation of trace_file_write_ops method 163 write_status. */ 164 165 static void 166 tfile_write_status (struct trace_file_writer *self, 167 struct trace_status *ts) 168 { 169 struct tfile_trace_file_writer *writer 170 = (struct tfile_trace_file_writer *) self; 171 172 fprintf (writer->fp, "status %c;%s", 173 (ts->running ? '1' : '0'), stop_reason_names[ts->stop_reason]); 174 if (ts->stop_reason == tracepoint_error 175 || ts->stop_reason == trace_stop_command) 176 { 177 char *buf = (char *) alloca (strlen (ts->stop_desc) * 2 + 1); 178 179 bin2hex ((gdb_byte *) ts->stop_desc, buf, strlen (ts->stop_desc)); 180 fprintf (writer->fp, ":%s", buf); 181 } 182 fprintf (writer->fp, ":%x", ts->stopping_tracepoint); 183 if (ts->traceframe_count >= 0) 184 fprintf (writer->fp, ";tframes:%x", ts->traceframe_count); 185 if (ts->traceframes_created >= 0) 186 fprintf (writer->fp, ";tcreated:%x", ts->traceframes_created); 187 if (ts->buffer_free >= 0) 188 fprintf (writer->fp, ";tfree:%x", ts->buffer_free); 189 if (ts->buffer_size >= 0) 190 fprintf (writer->fp, ";tsize:%x", ts->buffer_size); 191 if (ts->disconnected_tracing) 192 fprintf (writer->fp, ";disconn:%x", ts->disconnected_tracing); 193 if (ts->circular_buffer) 194 fprintf (writer->fp, ";circular:%x", ts->circular_buffer); 195 if (ts->start_time) 196 { 197 fprintf (writer->fp, ";starttime:%s", 198 phex_nz (ts->start_time, sizeof (ts->start_time))); 199 } 200 if (ts->stop_time) 201 { 202 fprintf (writer->fp, ";stoptime:%s", 203 phex_nz (ts->stop_time, sizeof (ts->stop_time))); 204 } 205 if (ts->notes != NULL) 206 { 207 char *buf = (char *) alloca (strlen (ts->notes) * 2 + 1); 208 209 bin2hex ((gdb_byte *) ts->notes, buf, strlen (ts->notes)); 210 fprintf (writer->fp, ";notes:%s", buf); 211 } 212 if (ts->user_name != NULL) 213 { 214 char *buf = (char *) alloca (strlen (ts->user_name) * 2 + 1); 215 216 bin2hex ((gdb_byte *) ts->user_name, buf, strlen (ts->user_name)); 217 fprintf (writer->fp, ";username:%s", buf); 218 } 219 fprintf (writer->fp, "\n"); 220 } 221 222 /* This is the implementation of trace_file_write_ops method 223 write_uploaded_tsv. */ 224 225 static void 226 tfile_write_uploaded_tsv (struct trace_file_writer *self, 227 struct uploaded_tsv *utsv) 228 { 229 char *buf = NULL; 230 struct tfile_trace_file_writer *writer 231 = (struct tfile_trace_file_writer *) self; 232 233 if (utsv->name) 234 { 235 buf = (char *) xmalloc (strlen (utsv->name) * 2 + 1); 236 bin2hex ((gdb_byte *) (utsv->name), buf, strlen (utsv->name)); 237 } 238 239 fprintf (writer->fp, "tsv %x:%s:%x:%s\n", 240 utsv->number, phex_nz (utsv->initial_value, 8), 241 utsv->builtin, buf != NULL ? buf : ""); 242 243 if (utsv->name) 244 xfree (buf); 245 } 246 247 #define MAX_TRACE_UPLOAD 2000 248 249 /* This is the implementation of trace_file_write_ops method 250 write_uploaded_tp. */ 251 252 static void 253 tfile_write_uploaded_tp (struct trace_file_writer *self, 254 struct uploaded_tp *utp) 255 { 256 struct tfile_trace_file_writer *writer 257 = (struct tfile_trace_file_writer *) self; 258 char buf[MAX_TRACE_UPLOAD]; 259 260 fprintf (writer->fp, "tp T%x:%s:%c:%x:%x", 261 utp->number, phex_nz (utp->addr, sizeof (utp->addr)), 262 (utp->enabled ? 'E' : 'D'), utp->step, utp->pass); 263 if (utp->type == bp_fast_tracepoint) 264 fprintf (writer->fp, ":F%x", utp->orig_size); 265 if (utp->cond) 266 fprintf (writer->fp, 267 ":X%x,%s", (unsigned int) strlen (utp->cond.get ()) / 2, 268 utp->cond.get ()); 269 fprintf (writer->fp, "\n"); 270 for (const auto &act : utp->actions) 271 fprintf (writer->fp, "tp A%x:%s:%s\n", 272 utp->number, phex_nz (utp->addr, sizeof (utp->addr)), act.get ()); 273 for (const auto &act : utp->step_actions) 274 fprintf (writer->fp, "tp S%x:%s:%s\n", 275 utp->number, phex_nz (utp->addr, sizeof (utp->addr)), act.get ()); 276 if (utp->at_string) 277 { 278 encode_source_string (utp->number, utp->addr, 279 "at", utp->at_string.get (), 280 buf, MAX_TRACE_UPLOAD); 281 fprintf (writer->fp, "tp Z%s\n", buf); 282 } 283 if (utp->cond_string) 284 { 285 encode_source_string (utp->number, utp->addr, 286 "cond", utp->cond_string.get (), 287 buf, MAX_TRACE_UPLOAD); 288 fprintf (writer->fp, "tp Z%s\n", buf); 289 } 290 for (const auto &act : utp->cmd_strings) 291 { 292 encode_source_string (utp->number, utp->addr, "cmd", act.get (), 293 buf, MAX_TRACE_UPLOAD); 294 fprintf (writer->fp, "tp Z%s\n", buf); 295 } 296 fprintf (writer->fp, "tp V%x:%s:%x:%s\n", 297 utp->number, phex_nz (utp->addr, sizeof (utp->addr)), 298 utp->hit_count, 299 phex_nz (utp->traceframe_usage, 300 sizeof (utp->traceframe_usage))); 301 } 302 303 /* This is the implementation of trace_file_write_ops method 304 write_tdesc. */ 305 306 static void 307 tfile_write_tdesc (struct trace_file_writer *self) 308 { 309 struct tfile_trace_file_writer *writer 310 = (struct tfile_trace_file_writer *) self; 311 312 gdb::optional<std::string> tdesc 313 = target_fetch_description_xml (current_inferior ()->top_target ()); 314 315 if (!tdesc) 316 return; 317 318 const char *ptr = tdesc->c_str (); 319 320 /* Write tdesc line by line, prefixing each line with "tdesc ". */ 321 while (ptr != NULL) 322 { 323 const char *next = strchr (ptr, '\n'); 324 if (next != NULL) 325 { 326 fprintf (writer->fp, "tdesc %.*s\n", (int) (next - ptr), ptr); 327 /* Skip the \n. */ 328 next++; 329 } 330 else if (*ptr != '\0') 331 { 332 /* Last line, doesn't have a newline. */ 333 fprintf (writer->fp, "tdesc %s\n", ptr); 334 } 335 ptr = next; 336 } 337 } 338 339 /* This is the implementation of trace_file_write_ops method 340 write_definition_end. */ 341 342 static void 343 tfile_write_definition_end (struct trace_file_writer *self) 344 { 345 struct tfile_trace_file_writer *writer 346 = (struct tfile_trace_file_writer *) self; 347 348 fprintf (writer->fp, "\n"); 349 } 350 351 /* This is the implementation of trace_file_write_ops method 352 write_raw_data. */ 353 354 static void 355 tfile_write_raw_data (struct trace_file_writer *self, gdb_byte *buf, 356 LONGEST len) 357 { 358 struct tfile_trace_file_writer *writer 359 = (struct tfile_trace_file_writer *) self; 360 361 if (fwrite (buf, len, 1, writer->fp) < 1) 362 perror_with_name (writer->pathname); 363 } 364 365 /* This is the implementation of trace_file_write_ops method 366 end. */ 367 368 static void 369 tfile_end (struct trace_file_writer *self) 370 { 371 struct tfile_trace_file_writer *writer 372 = (struct tfile_trace_file_writer *) self; 373 uint32_t gotten = 0; 374 375 /* Mark the end of trace data. */ 376 if (fwrite (&gotten, 4, 1, writer->fp) < 1) 377 perror_with_name (writer->pathname); 378 } 379 380 /* Operations to write trace buffers into TFILE format. */ 381 382 static const struct trace_file_write_ops tfile_write_ops = 383 { 384 tfile_dtor, 385 tfile_target_save, 386 tfile_start, 387 tfile_write_header, 388 tfile_write_regblock_type, 389 tfile_write_status, 390 tfile_write_uploaded_tsv, 391 tfile_write_uploaded_tp, 392 tfile_write_tdesc, 393 tfile_write_definition_end, 394 tfile_write_raw_data, 395 NULL, 396 tfile_end, 397 }; 398 399 /* Return a trace writer for TFILE format. */ 400 401 struct trace_file_writer * 402 tfile_trace_file_writer_new (void) 403 { 404 struct tfile_trace_file_writer *writer 405 = XNEW (struct tfile_trace_file_writer); 406 407 writer->base.ops = &tfile_write_ops; 408 writer->fp = NULL; 409 writer->pathname = NULL; 410 411 return (struct trace_file_writer *) writer; 412 } 413 414 /* target tfile command */ 415 416 static tfile_target tfile_ops; 417 418 #define TRACE_HEADER_SIZE 8 419 420 #define TFILE_PID (1) 421 422 static char *trace_filename; 423 static int trace_fd = -1; 424 static off_t trace_frames_offset; 425 static off_t cur_offset; 426 static int cur_data_size; 427 int trace_regblock_size; 428 static struct buffer trace_tdesc; 429 430 static void tfile_append_tdesc_line (const char *line); 431 static void tfile_interp_line (char *line, 432 struct uploaded_tp **utpp, 433 struct uploaded_tsv **utsvp); 434 435 /* Read SIZE bytes into READBUF from the trace frame, starting at 436 TRACE_FD's current position. Note that this call `read' 437 underneath, hence it advances the file's seek position. Throws an 438 error if the `read' syscall fails, or less than SIZE bytes are 439 read. */ 440 441 static void 442 tfile_read (gdb_byte *readbuf, int size) 443 { 444 int gotten; 445 446 gotten = read (trace_fd, readbuf, size); 447 if (gotten < 0) 448 perror_with_name (trace_filename); 449 else if (gotten < size) 450 error (_("Premature end of file while reading trace file")); 451 } 452 453 /* Open the tfile target. */ 454 455 static void 456 tfile_target_open (const char *arg, int from_tty) 457 { 458 int flags; 459 int scratch_chan; 460 char header[TRACE_HEADER_SIZE]; 461 char linebuf[1000]; /* Should be max remote packet size or so. */ 462 gdb_byte byte; 463 int bytes, i; 464 struct trace_status *ts; 465 struct uploaded_tp *uploaded_tps = NULL; 466 struct uploaded_tsv *uploaded_tsvs = NULL; 467 468 target_preopen (from_tty); 469 if (!arg) 470 error (_("No trace file specified.")); 471 472 gdb::unique_xmalloc_ptr<char> filename (tilde_expand (arg)); 473 if (!IS_ABSOLUTE_PATH (filename.get ())) 474 filename = make_unique_xstrdup (gdb_abspath (filename.get ()).c_str ()); 475 476 flags = O_BINARY | O_LARGEFILE; 477 flags |= O_RDONLY; 478 scratch_chan = gdb_open_cloexec (filename.get (), flags, 0).release (); 479 if (scratch_chan < 0) 480 perror_with_name (filename.get ()); 481 482 /* Looks semi-reasonable. Toss the old trace file and work on the new. */ 483 484 current_inferior ()->unpush_target (&tfile_ops); 485 486 trace_filename = filename.release (); 487 trace_fd = scratch_chan; 488 489 /* Make sure this is clear. */ 490 buffer_free (&trace_tdesc); 491 492 bytes = 0; 493 /* Read the file header and test for validity. */ 494 tfile_read ((gdb_byte *) &header, TRACE_HEADER_SIZE); 495 496 bytes += TRACE_HEADER_SIZE; 497 if (!(header[0] == 0x7f 498 && (startswith (header + 1, "TRACE0\n")))) 499 error (_("File is not a valid trace file.")); 500 501 current_inferior ()->push_target (&tfile_ops); 502 503 trace_regblock_size = 0; 504 ts = current_trace_status (); 505 /* We know we're working with a file. Record its name. */ 506 ts->filename = trace_filename; 507 /* Set defaults in case there is no status line. */ 508 ts->running_known = 0; 509 ts->stop_reason = trace_stop_reason_unknown; 510 ts->traceframe_count = -1; 511 ts->buffer_free = 0; 512 ts->disconnected_tracing = 0; 513 ts->circular_buffer = 0; 514 515 try 516 { 517 /* Read through a section of newline-terminated lines that 518 define things like tracepoints. */ 519 i = 0; 520 while (1) 521 { 522 tfile_read (&byte, 1); 523 524 ++bytes; 525 if (byte == '\n') 526 { 527 /* Empty line marks end of the definition section. */ 528 if (i == 0) 529 break; 530 linebuf[i] = '\0'; 531 i = 0; 532 tfile_interp_line (linebuf, &uploaded_tps, &uploaded_tsvs); 533 } 534 else 535 linebuf[i++] = byte; 536 if (i >= 1000) 537 error (_("Excessively long lines in trace file")); 538 } 539 540 /* By now, tdesc lines have been read from tfile - let's parse them. */ 541 target_find_description (); 542 543 /* Record the starting offset of the binary trace data. */ 544 trace_frames_offset = bytes; 545 546 /* If we don't have a blocksize, we can't interpret the 547 traceframes. */ 548 if (trace_regblock_size == 0) 549 error (_("No register block size recorded in trace file")); 550 } 551 catch (const gdb_exception &ex) 552 { 553 /* Remove the partially set up target. */ 554 current_inferior ()->unpush_target (&tfile_ops); 555 throw; 556 } 557 558 inferior_appeared (current_inferior (), TFILE_PID); 559 560 thread_info *thr = add_thread_silent (&tfile_ops, ptid_t (TFILE_PID)); 561 switch_to_thread (thr); 562 563 if (ts->traceframe_count <= 0) 564 warning (_("No traceframes present in this file.")); 565 566 /* Add the file's tracepoints and variables into the current mix. */ 567 568 /* Get trace state variables first, they may be checked when parsing 569 uploaded commands. */ 570 merge_uploaded_trace_state_variables (&uploaded_tsvs); 571 572 merge_uploaded_tracepoints (&uploaded_tps); 573 574 post_create_inferior (from_tty); 575 } 576 577 /* Interpret the given line from the definitions part of the trace 578 file. */ 579 580 static void 581 tfile_interp_line (char *line, struct uploaded_tp **utpp, 582 struct uploaded_tsv **utsvp) 583 { 584 char *p = line; 585 586 if (startswith (p, "R ")) 587 { 588 p += strlen ("R "); 589 trace_regblock_size = strtol (p, &p, 16); 590 } 591 else if (startswith (p, "status ")) 592 { 593 p += strlen ("status "); 594 parse_trace_status (p, current_trace_status ()); 595 } 596 else if (startswith (p, "tp ")) 597 { 598 p += strlen ("tp "); 599 parse_tracepoint_definition (p, utpp); 600 } 601 else if (startswith (p, "tsv ")) 602 { 603 p += strlen ("tsv "); 604 parse_tsv_definition (p, utsvp); 605 } 606 else if (startswith (p, "tdesc ")) 607 { 608 p += strlen ("tdesc "); 609 tfile_append_tdesc_line (p); 610 } 611 else 612 warning (_("Ignoring trace file definition \"%s\""), line); 613 } 614 615 /* Close the trace file and generally clean up. */ 616 617 void 618 tfile_target::close () 619 { 620 gdb_assert (trace_fd != -1); 621 622 switch_to_no_thread (); /* Avoid confusion from thread stuff. */ 623 exit_inferior_silent (current_inferior ()); 624 625 ::close (trace_fd); 626 trace_fd = -1; 627 xfree (trace_filename); 628 trace_filename = NULL; 629 buffer_free (&trace_tdesc); 630 631 trace_reset_local_state (); 632 } 633 634 void 635 tfile_target::files_info () 636 { 637 gdb_printf ("\t`%s'\n", trace_filename); 638 } 639 640 void 641 tfile_target::get_tracepoint_status (struct breakpoint *tp, struct uploaded_tp *utp) 642 { 643 /* Other bits of trace status were collected as part of opening the 644 trace files, so nothing to do here. */ 645 } 646 647 /* Given the position of a traceframe in the file, figure out what 648 address the frame was collected at. This would normally be the 649 value of a collected PC register, but if not available, we 650 improvise. */ 651 652 static CORE_ADDR 653 tfile_get_traceframe_address (off_t tframe_offset) 654 { 655 CORE_ADDR addr = 0; 656 short tpnum; 657 struct tracepoint *tp; 658 off_t saved_offset = cur_offset; 659 660 /* FIXME dig pc out of collected registers. */ 661 662 /* Fall back to using tracepoint address. */ 663 lseek (trace_fd, tframe_offset, SEEK_SET); 664 tfile_read ((gdb_byte *) &tpnum, 2); 665 tpnum = (short) extract_signed_integer ((gdb_byte *) &tpnum, 2, 666 gdbarch_byte_order 667 (target_gdbarch ())); 668 669 tp = get_tracepoint_by_number_on_target (tpnum); 670 /* FIXME this is a poor heuristic if multiple locations. */ 671 if (tp && tp->loc) 672 addr = tp->loc->address; 673 674 /* Restore our seek position. */ 675 cur_offset = saved_offset; 676 lseek (trace_fd, cur_offset, SEEK_SET); 677 return addr; 678 } 679 680 /* Given a type of search and some parameters, scan the collection of 681 traceframes in the file looking for a match. When found, return 682 both the traceframe and tracepoint number, otherwise -1 for 683 each. */ 684 685 int 686 tfile_target::trace_find (enum trace_find_type type, int num, 687 CORE_ADDR addr1, CORE_ADDR addr2, int *tpp) 688 { 689 short tpnum; 690 int tfnum = 0, found = 0; 691 unsigned int data_size; 692 struct tracepoint *tp; 693 off_t offset, tframe_offset; 694 CORE_ADDR tfaddr; 695 696 if (num == -1) 697 { 698 if (tpp) 699 *tpp = -1; 700 return -1; 701 } 702 703 lseek (trace_fd, trace_frames_offset, SEEK_SET); 704 offset = trace_frames_offset; 705 while (1) 706 { 707 tframe_offset = offset; 708 tfile_read ((gdb_byte *) &tpnum, 2); 709 tpnum = (short) extract_signed_integer ((gdb_byte *) &tpnum, 2, 710 gdbarch_byte_order 711 (target_gdbarch ())); 712 offset += 2; 713 if (tpnum == 0) 714 break; 715 tfile_read ((gdb_byte *) &data_size, 4); 716 data_size = (unsigned int) extract_unsigned_integer 717 ((gdb_byte *) &data_size, 4, 718 gdbarch_byte_order (target_gdbarch ())); 719 offset += 4; 720 721 if (type == tfind_number) 722 { 723 /* Looking for a specific trace frame. */ 724 if (tfnum == num) 725 found = 1; 726 } 727 else 728 { 729 /* Start from the _next_ trace frame. */ 730 if (tfnum > get_traceframe_number ()) 731 { 732 switch (type) 733 { 734 case tfind_pc: 735 tfaddr = tfile_get_traceframe_address (tframe_offset); 736 if (tfaddr == addr1) 737 found = 1; 738 break; 739 case tfind_tp: 740 tp = get_tracepoint (num); 741 if (tp && tpnum == tp->number_on_target) 742 found = 1; 743 break; 744 case tfind_range: 745 tfaddr = tfile_get_traceframe_address (tframe_offset); 746 if (addr1 <= tfaddr && tfaddr <= addr2) 747 found = 1; 748 break; 749 case tfind_outside: 750 tfaddr = tfile_get_traceframe_address (tframe_offset); 751 if (!(addr1 <= tfaddr && tfaddr <= addr2)) 752 found = 1; 753 break; 754 default: 755 internal_error (_("unknown tfind type")); 756 } 757 } 758 } 759 760 if (found) 761 { 762 if (tpp) 763 *tpp = tpnum; 764 cur_offset = offset; 765 cur_data_size = data_size; 766 767 return tfnum; 768 } 769 /* Skip past the traceframe's data. */ 770 lseek (trace_fd, data_size, SEEK_CUR); 771 offset += data_size; 772 /* Update our own count of traceframes. */ 773 ++tfnum; 774 } 775 /* Did not find what we were looking for. */ 776 if (tpp) 777 *tpp = -1; 778 return -1; 779 } 780 781 /* Prototype of the callback passed to tframe_walk_blocks. */ 782 typedef int (*walk_blocks_callback_func) (char blocktype, void *data); 783 784 /* Callback for traceframe_walk_blocks, used to find a given block 785 type in a traceframe. */ 786 787 static int 788 match_blocktype (char blocktype, void *data) 789 { 790 char *wantedp = (char *) data; 791 792 if (*wantedp == blocktype) 793 return 1; 794 795 return 0; 796 } 797 798 /* Walk over all traceframe block starting at POS offset from 799 CUR_OFFSET, and call CALLBACK for each block found, passing in DATA 800 unmodified. If CALLBACK returns true, this returns the position in 801 the traceframe where the block is found, relative to the start of 802 the traceframe (cur_offset). Returns -1 if no callback call 803 returned true, indicating that all blocks have been walked. */ 804 805 static int 806 traceframe_walk_blocks (walk_blocks_callback_func callback, 807 int pos, void *data) 808 { 809 /* Iterate through a traceframe's blocks, looking for a block of the 810 requested type. */ 811 812 lseek (trace_fd, cur_offset + pos, SEEK_SET); 813 while (pos < cur_data_size) 814 { 815 unsigned short mlen; 816 char block_type; 817 818 tfile_read ((gdb_byte *) &block_type, 1); 819 820 ++pos; 821 822 if ((*callback) (block_type, data)) 823 return pos; 824 825 switch (block_type) 826 { 827 case 'R': 828 lseek (trace_fd, cur_offset + pos + trace_regblock_size, SEEK_SET); 829 pos += trace_regblock_size; 830 break; 831 case 'M': 832 lseek (trace_fd, cur_offset + pos + 8, SEEK_SET); 833 tfile_read ((gdb_byte *) &mlen, 2); 834 mlen = (unsigned short) 835 extract_unsigned_integer ((gdb_byte *) &mlen, 2, 836 gdbarch_byte_order 837 (target_gdbarch ())); 838 lseek (trace_fd, mlen, SEEK_CUR); 839 pos += (8 + 2 + mlen); 840 break; 841 case 'V': 842 lseek (trace_fd, cur_offset + pos + 4 + 8, SEEK_SET); 843 pos += (4 + 8); 844 break; 845 default: 846 error (_("Unknown block type '%c' (0x%x) in trace frame"), 847 block_type, block_type); 848 break; 849 } 850 } 851 852 return -1; 853 } 854 855 /* Convenience wrapper around traceframe_walk_blocks. Looks for the 856 position offset of a block of type TYPE_WANTED in the current trace 857 frame, starting at POS. Returns -1 if no such block was found. */ 858 859 static int 860 traceframe_find_block_type (char type_wanted, int pos) 861 { 862 return traceframe_walk_blocks (match_blocktype, pos, &type_wanted); 863 } 864 865 /* Look for a block of saved registers in the traceframe, and get the 866 requested register from it. */ 867 868 void 869 tfile_target::fetch_registers (struct regcache *regcache, int regno) 870 { 871 struct gdbarch *gdbarch = regcache->arch (); 872 int offset, regn, regsize, dummy; 873 874 /* An uninitialized reg size says we're not going to be 875 successful at getting register blocks. */ 876 if (!trace_regblock_size) 877 return; 878 879 if (traceframe_find_block_type ('R', 0) >= 0) 880 { 881 gdb_byte *regs = (gdb_byte *) alloca (trace_regblock_size); 882 883 tfile_read (regs, trace_regblock_size); 884 885 for (regn = 0; regn < gdbarch_num_regs (gdbarch); regn++) 886 { 887 if (!remote_register_number_and_offset (regcache->arch (), 888 regn, &dummy, &offset)) 889 continue; 890 891 regsize = register_size (gdbarch, regn); 892 /* Make sure we stay within block bounds. */ 893 if (offset + regsize > trace_regblock_size) 894 break; 895 if (regcache->get_register_status (regn) == REG_UNKNOWN) 896 { 897 if (regno == regn) 898 { 899 regcache->raw_supply (regno, regs + offset); 900 break; 901 } 902 else if (regno == -1) 903 { 904 regcache->raw_supply (regn, regs + offset); 905 } 906 } 907 } 908 } 909 else 910 tracefile_fetch_registers (regcache, regno); 911 } 912 913 static enum target_xfer_status 914 tfile_xfer_partial_features (const char *annex, 915 gdb_byte *readbuf, const gdb_byte *writebuf, 916 ULONGEST offset, ULONGEST len, 917 ULONGEST *xfered_len) 918 { 919 if (strcmp (annex, "target.xml")) 920 return TARGET_XFER_E_IO; 921 922 if (readbuf == NULL) 923 error (_("tfile_xfer_partial: tdesc is read-only")); 924 925 if (trace_tdesc.used_size == 0) 926 return TARGET_XFER_E_IO; 927 928 if (offset >= trace_tdesc.used_size) 929 return TARGET_XFER_EOF; 930 931 if (len > trace_tdesc.used_size - offset) 932 len = trace_tdesc.used_size - offset; 933 934 memcpy (readbuf, trace_tdesc.buffer + offset, len); 935 *xfered_len = len; 936 937 return TARGET_XFER_OK; 938 } 939 940 enum target_xfer_status 941 tfile_target::xfer_partial (enum target_object object, 942 const char *annex, gdb_byte *readbuf, 943 const gdb_byte *writebuf, ULONGEST offset, ULONGEST len, 944 ULONGEST *xfered_len) 945 { 946 /* We're only doing regular memory and tdesc for now. */ 947 if (object == TARGET_OBJECT_AVAILABLE_FEATURES) 948 return tfile_xfer_partial_features (annex, readbuf, writebuf, 949 offset, len, xfered_len); 950 if (object != TARGET_OBJECT_MEMORY) 951 return TARGET_XFER_E_IO; 952 953 if (readbuf == NULL) 954 error (_("tfile_xfer_partial: trace file is read-only")); 955 956 if (get_traceframe_number () != -1) 957 { 958 int pos = 0; 959 enum target_xfer_status res; 960 /* Records the lowest available address of all blocks that 961 intersects the requested range. */ 962 ULONGEST low_addr_available = 0; 963 964 /* Iterate through the traceframe's blocks, looking for 965 memory. */ 966 while ((pos = traceframe_find_block_type ('M', pos)) >= 0) 967 { 968 ULONGEST maddr, amt; 969 unsigned short mlen; 970 enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ()); 971 972 tfile_read ((gdb_byte *) &maddr, 8); 973 maddr = extract_unsigned_integer ((gdb_byte *) &maddr, 8, 974 byte_order); 975 tfile_read ((gdb_byte *) &mlen, 2); 976 mlen = (unsigned short) 977 extract_unsigned_integer ((gdb_byte *) &mlen, 2, byte_order); 978 979 /* If the block includes the first part of the desired 980 range, return as much it has; GDB will re-request the 981 remainder, which might be in a different block of this 982 trace frame. */ 983 if (maddr <= offset && offset < (maddr + mlen)) 984 { 985 amt = (maddr + mlen) - offset; 986 if (amt > len) 987 amt = len; 988 989 if (maddr != offset) 990 lseek (trace_fd, offset - maddr, SEEK_CUR); 991 tfile_read (readbuf, amt); 992 *xfered_len = amt; 993 return TARGET_XFER_OK; 994 } 995 996 if (offset < maddr && maddr < (offset + len)) 997 if (low_addr_available == 0 || low_addr_available > maddr) 998 low_addr_available = maddr; 999 1000 /* Skip over this block. */ 1001 pos += (8 + 2 + mlen); 1002 } 1003 1004 /* Requested memory is unavailable in the context of traceframes, 1005 and this address falls within a read-only section, fallback 1006 to reading from executable, up to LOW_ADDR_AVAILABLE. */ 1007 if (offset < low_addr_available) 1008 len = std::min (len, low_addr_available - offset); 1009 res = exec_read_partial_read_only (readbuf, offset, len, xfered_len); 1010 1011 if (res == TARGET_XFER_OK) 1012 return TARGET_XFER_OK; 1013 else 1014 { 1015 /* No use trying further, we know some memory starting 1016 at MEMADDR isn't available. */ 1017 *xfered_len = len; 1018 return TARGET_XFER_UNAVAILABLE; 1019 } 1020 } 1021 else 1022 { 1023 /* Fallback to reading from read-only sections. */ 1024 return section_table_read_available_memory (readbuf, offset, len, 1025 xfered_len); 1026 } 1027 } 1028 1029 /* Iterate through the blocks of a trace frame, looking for a 'V' 1030 block with a matching tsv number. */ 1031 1032 bool 1033 tfile_target::get_trace_state_variable_value (int tsvnum, LONGEST *val) 1034 { 1035 int pos; 1036 bool found = false; 1037 1038 /* Iterate over blocks in current frame and find the last 'V' 1039 block in which tsv number is TSVNUM. In one trace frame, there 1040 may be multiple 'V' blocks created for a given trace variable, 1041 and the last matched 'V' block contains the updated value. */ 1042 pos = 0; 1043 while ((pos = traceframe_find_block_type ('V', pos)) >= 0) 1044 { 1045 int vnum; 1046 1047 tfile_read ((gdb_byte *) &vnum, 4); 1048 vnum = (int) extract_signed_integer ((gdb_byte *) &vnum, 4, 1049 gdbarch_byte_order 1050 (target_gdbarch ())); 1051 if (tsvnum == vnum) 1052 { 1053 tfile_read ((gdb_byte *) val, 8); 1054 *val = extract_signed_integer ((gdb_byte *) val, 8, 1055 gdbarch_byte_order 1056 (target_gdbarch ())); 1057 found = true; 1058 } 1059 pos += (4 + 8); 1060 } 1061 1062 return found; 1063 } 1064 1065 /* Callback for traceframe_walk_blocks. Builds a traceframe_info 1066 object for the tfile target's current traceframe. */ 1067 1068 static int 1069 build_traceframe_info (char blocktype, void *data) 1070 { 1071 struct traceframe_info *info = (struct traceframe_info *) data; 1072 1073 switch (blocktype) 1074 { 1075 case 'M': 1076 { 1077 ULONGEST maddr; 1078 unsigned short mlen; 1079 1080 tfile_read ((gdb_byte *) &maddr, 8); 1081 maddr = extract_unsigned_integer ((gdb_byte *) &maddr, 8, 1082 gdbarch_byte_order 1083 (target_gdbarch ())); 1084 tfile_read ((gdb_byte *) &mlen, 2); 1085 mlen = (unsigned short) 1086 extract_unsigned_integer ((gdb_byte *) &mlen, 1087 2, gdbarch_byte_order 1088 (target_gdbarch ())); 1089 1090 info->memory.emplace_back (maddr, mlen); 1091 break; 1092 } 1093 case 'V': 1094 { 1095 int vnum; 1096 1097 tfile_read ((gdb_byte *) &vnum, 4); 1098 info->tvars.push_back (vnum); 1099 } 1100 case 'R': 1101 case 'S': 1102 { 1103 break; 1104 } 1105 default: 1106 warning (_("Unhandled trace block type (%d) '%c ' " 1107 "while building trace frame info."), 1108 blocktype, blocktype); 1109 break; 1110 } 1111 1112 return 0; 1113 } 1114 1115 traceframe_info_up 1116 tfile_target::traceframe_info () 1117 { 1118 traceframe_info_up info (new struct traceframe_info); 1119 1120 traceframe_walk_blocks (build_traceframe_info, 0, info.get ()); 1121 1122 return info; 1123 } 1124 1125 /* Handles tdesc lines from tfile by appending the payload to 1126 a global trace_tdesc variable. */ 1127 1128 static void 1129 tfile_append_tdesc_line (const char *line) 1130 { 1131 buffer_grow_str (&trace_tdesc, line); 1132 buffer_grow_str (&trace_tdesc, "\n"); 1133 } 1134 1135 void _initialize_tracefile_tfile (); 1136 void 1137 _initialize_tracefile_tfile () 1138 { 1139 add_target (tfile_target_info, tfile_target_open, filename_completer); 1140 } 1141