testsuite: Restore gdb_is_target_remote_prompt
[deliverable/binutils-gdb.git] / gdb / testsuite / lib / gdb.exp
1 # Copyright 1992-2018 Free Software Foundation, Inc.
2
3 # This program is free software; you can redistribute it and/or modify
4 # it under the terms of the GNU General Public License as published by
5 # the Free Software Foundation; either version 3 of the License, or
6 # (at your option) any later version.
7 #
8 # This program is distributed in the hope that it will be useful,
9 # but WITHOUT ANY WARRANTY; without even the implied warranty of
10 # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
11 # GNU General Public License for more details.
12 #
13 # You should have received a copy of the GNU General Public License
14 # along with this program. If not, see <http://www.gnu.org/licenses/>.
15
16 # This file was written by Fred Fish. (fnf@cygnus.com)
17
18 # Generic gdb subroutines that should work for any target. If these
19 # need to be modified for any target, it can be done with a variable
20 # or by passing arguments.
21
22 if {$tool == ""} {
23 # Tests would fail, logs on get_compiler_info() would be missing.
24 send_error "`site.exp' not found, run `make site.exp'!\n"
25 exit 2
26 }
27
28 load_lib libgloss.exp
29 load_lib cache.exp
30 load_lib gdb-utils.exp
31 load_lib memory.exp
32
33 global GDB
34
35 # The spawn ID used for I/O interaction with the inferior. For native
36 # targets, or remote targets that can do I/O through GDB
37 # (semi-hosting) this will be the same as the host/GDB's spawn ID.
38 # Otherwise, the board may set this to some other spawn ID. E.g.,
39 # when debugging with GDBserver, this is set to GDBserver's spawn ID,
40 # so input/output is done on gdbserver's tty.
41 global inferior_spawn_id
42
43 if [info exists TOOL_EXECUTABLE] {
44 set GDB $TOOL_EXECUTABLE
45 }
46 if ![info exists GDB] {
47 if ![is_remote host] {
48 set GDB [findfile $base_dir/../../gdb/gdb "$base_dir/../../gdb/gdb" [transform gdb]]
49 } else {
50 set GDB [transform gdb]
51 }
52 }
53 verbose "using GDB = $GDB" 2
54
55 # GDBFLAGS is available for the user to set on the command line.
56 # E.g. make check RUNTESTFLAGS=GDBFLAGS=mumble
57 # Testcases may use it to add additional flags, but they must:
58 # - append new flags, not overwrite
59 # - restore the original value when done
60 global GDBFLAGS
61 if ![info exists GDBFLAGS] {
62 set GDBFLAGS ""
63 }
64 verbose "using GDBFLAGS = $GDBFLAGS" 2
65
66 # Make the build data directory available to tests.
67 set BUILD_DATA_DIRECTORY "[pwd]/../data-directory"
68
69 # INTERNAL_GDBFLAGS contains flags that the testsuite requires.
70 global INTERNAL_GDBFLAGS
71 if ![info exists INTERNAL_GDBFLAGS] {
72 set INTERNAL_GDBFLAGS "-nw -nx -data-directory $BUILD_DATA_DIRECTORY"
73 }
74
75 # The variable gdb_prompt is a regexp which matches the gdb prompt.
76 # Set it if it is not already set. This is also set by default_gdb_init
77 # but it's not clear what removing one of them will break.
78 # See with_gdb_prompt for more details on prompt handling.
79 global gdb_prompt
80 if ![info exists gdb_prompt] then {
81 set gdb_prompt "\\(gdb\\)"
82 }
83
84 # A regexp that matches the pagination prompt.
85 set pagination_prompt [string_to_regexp "---Type <return> to continue, or q <return> to quit---"]
86
87 # The variable fullname_syntax_POSIX is a regexp which matches a POSIX
88 # absolute path ie. /foo/
89 set fullname_syntax_POSIX {/[^\n]*/}
90 # The variable fullname_syntax_UNC is a regexp which matches a Windows
91 # UNC path ie. \\D\foo\
92 set fullname_syntax_UNC {\\\\[^\\]+\\[^\n]+\\}
93 # The variable fullname_syntax_DOS_CASE is a regexp which matches a
94 # particular DOS case that GDB most likely will output
95 # ie. \foo\, but don't match \\.*\
96 set fullname_syntax_DOS_CASE {\\[^\\][^\n]*\\}
97 # The variable fullname_syntax_DOS is a regexp which matches a DOS path
98 # ie. a:\foo\ && a:foo\
99 set fullname_syntax_DOS {[a-zA-Z]:[^\n]*\\}
100 # The variable fullname_syntax is a regexp which matches what GDB considers
101 # an absolute path. It is currently debatable if the Windows style paths
102 # d:foo and \abc should be considered valid as an absolute path.
103 # Also, the purpse of this regexp is not to recognize a well formed
104 # absolute path, but to say with certainty that a path is absolute.
105 set fullname_syntax "($fullname_syntax_POSIX|$fullname_syntax_UNC|$fullname_syntax_DOS_CASE|$fullname_syntax_DOS)"
106
107 # Needed for some tests under Cygwin.
108 global EXEEXT
109 global env
110
111 if ![info exists env(EXEEXT)] {
112 set EXEEXT ""
113 } else {
114 set EXEEXT $env(EXEEXT)
115 }
116
117 set octal "\[0-7\]+"
118
119 set inferior_exited_re "(\\\[Inferior \[0-9\]+ \\(.*\\) exited)"
120
121 # A regular expression that matches a value history number.
122 # E.g., $1, $2, etc.
123 set valnum_re "\\\$$decimal"
124
125 ### Only procedures should come after this point.
126
127 #
128 # gdb_version -- extract and print the version number of GDB
129 #
130 proc default_gdb_version {} {
131 global GDB
132 global INTERNAL_GDBFLAGS GDBFLAGS
133 global gdb_prompt
134 global inotify_pid
135
136 if {[info exists inotify_pid]} {
137 eval exec kill $inotify_pid
138 }
139
140 set output [remote_exec host "$GDB $INTERNAL_GDBFLAGS --version"]
141 set tmp [lindex $output 1]
142 set version ""
143 regexp " \[0-9\]\[^ \t\n\r\]+" "$tmp" version
144 if ![is_remote host] {
145 clone_output "[which $GDB] version $version $INTERNAL_GDBFLAGS $GDBFLAGS\n"
146 } else {
147 clone_output "$GDB on remote host version $version $INTERNAL_GDBFLAGS $GDBFLAGS\n"
148 }
149 }
150
151 proc gdb_version { } {
152 return [default_gdb_version]
153 }
154
155 #
156 # gdb_unload -- unload a file if one is loaded
157 # Return 0 on success, -1 on error.
158 #
159
160 proc gdb_unload {} {
161 global verbose
162 global GDB
163 global gdb_prompt
164 send_gdb "file\n"
165 gdb_expect 60 {
166 -re "No executable file now\[^\r\n\]*\[\r\n\]" { exp_continue }
167 -re "No symbol file now\[^\r\n\]*\[\r\n\]" { exp_continue }
168 -re "A program is being debugged already.*Are you sure you want to change the file.*y or n. $" {
169 send_gdb "y\n"
170 exp_continue
171 }
172 -re "Discard symbol table from .*y or n.*$" {
173 send_gdb "y\n"
174 exp_continue
175 }
176 -re "$gdb_prompt $" {}
177 timeout {
178 perror "couldn't unload file in $GDB (timeout)."
179 return -1
180 }
181 }
182 return 0
183 }
184
185 # Many of the tests depend on setting breakpoints at various places and
186 # running until that breakpoint is reached. At times, we want to start
187 # with a clean-slate with respect to breakpoints, so this utility proc
188 # lets us do this without duplicating this code everywhere.
189 #
190
191 proc delete_breakpoints {} {
192 global gdb_prompt
193
194 # we need a larger timeout value here or this thing just confuses
195 # itself. May need a better implementation if possible. - guo
196 #
197 set timeout 100
198
199 set msg "delete all breakpoints in delete_breakpoints"
200 set deleted 0
201 gdb_test_multiple "delete breakpoints" "$msg" {
202 -re "Delete all breakpoints.*y or n.*$" {
203 send_gdb "y\n"
204 exp_continue
205 }
206 -re "$gdb_prompt $" {
207 set deleted 1
208 }
209 }
210
211 if {$deleted} {
212 # Confirm with "info breakpoints".
213 set deleted 0
214 set msg "info breakpoints"
215 gdb_test_multiple $msg $msg {
216 -re "No breakpoints or watchpoints..*$gdb_prompt $" {
217 set deleted 1
218 }
219 -re "$gdb_prompt $" {
220 }
221 }
222 }
223
224 if {!$deleted} {
225 perror "breakpoints not deleted"
226 }
227 }
228
229 # Returns true iff the target supports using the "run" command.
230
231 proc target_can_use_run_cmd {} {
232 if [target_info exists use_gdb_stub] {
233 # In this case, when we connect, the inferior is already
234 # running.
235 return 0
236 }
237
238 # Assume yes.
239 return 1
240 }
241
242 # Generic run command.
243 #
244 # The second pattern below matches up to the first newline *only*.
245 # Using ``.*$'' could swallow up output that we attempt to match
246 # elsewhere.
247 #
248 # N.B. This function does not wait for gdb to return to the prompt,
249 # that is the caller's responsibility.
250
251 proc gdb_run_cmd {args} {
252 global gdb_prompt use_gdb_stub
253
254 foreach command [gdb_init_commands] {
255 send_gdb "$command\n"
256 gdb_expect 30 {
257 -re "$gdb_prompt $" { }
258 default {
259 perror "gdb_init_command for target failed"
260 return
261 }
262 }
263 }
264
265 if $use_gdb_stub {
266 if [target_info exists gdb,do_reload_on_run] {
267 if { [gdb_reload] != 0 } {
268 return
269 }
270 send_gdb "continue\n"
271 gdb_expect 60 {
272 -re "Continu\[^\r\n\]*\[\r\n\]" {}
273 default {}
274 }
275 return
276 }
277
278 if [target_info exists gdb,start_symbol] {
279 set start [target_info gdb,start_symbol]
280 } else {
281 set start "start"
282 }
283 send_gdb "jump *$start\n"
284 set start_attempt 1
285 while { $start_attempt } {
286 # Cap (re)start attempts at three to ensure that this loop
287 # always eventually fails. Don't worry about trying to be
288 # clever and not send a command when it has failed.
289 if [expr $start_attempt > 3] {
290 perror "Jump to start() failed (retry count exceeded)"
291 return
292 }
293 set start_attempt [expr $start_attempt + 1]
294 gdb_expect 30 {
295 -re "Continuing at \[^\r\n\]*\[\r\n\]" {
296 set start_attempt 0
297 }
298 -re "No symbol \"_start\" in current.*$gdb_prompt $" {
299 perror "Can't find start symbol to run in gdb_run"
300 return
301 }
302 -re "No symbol \"start\" in current.*$gdb_prompt $" {
303 send_gdb "jump *_start\n"
304 }
305 -re "No symbol.*context.*$gdb_prompt $" {
306 set start_attempt 0
307 }
308 -re "Line.* Jump anyway.*y or n. $" {
309 send_gdb "y\n"
310 }
311 -re "The program is not being run.*$gdb_prompt $" {
312 if { [gdb_reload] != 0 } {
313 return
314 }
315 send_gdb "jump *$start\n"
316 }
317 timeout {
318 perror "Jump to start() failed (timeout)"
319 return
320 }
321 }
322 }
323 return
324 }
325
326 if [target_info exists gdb,do_reload_on_run] {
327 if { [gdb_reload] != 0 } {
328 return
329 }
330 }
331 send_gdb "run $args\n"
332 # This doesn't work quite right yet.
333 # Use -notransfer here so that test cases (like chng-sym.exp)
334 # may test for additional start-up messages.
335 gdb_expect 60 {
336 -re "The program .* has been started already.*y or n. $" {
337 send_gdb "y\n"
338 exp_continue
339 }
340 -notransfer -re "Starting program: \[^\r\n\]*" {}
341 -notransfer -re "$gdb_prompt $" {
342 # There is no more input expected.
343 }
344 }
345 }
346
347 # Generic start command. Return 0 if we could start the program, -1
348 # if we could not.
349 #
350 # N.B. This function does not wait for gdb to return to the prompt,
351 # that is the caller's responsibility.
352
353 proc gdb_start_cmd {args} {
354 global gdb_prompt use_gdb_stub
355
356 foreach command [gdb_init_commands] {
357 send_gdb "$command\n"
358 gdb_expect 30 {
359 -re "$gdb_prompt $" { }
360 default {
361 perror "gdb_init_command for target failed"
362 return -1
363 }
364 }
365 }
366
367 if $use_gdb_stub {
368 return -1
369 }
370
371 send_gdb "start $args\n"
372 # Use -notransfer here so that test cases (like chng-sym.exp)
373 # may test for additional start-up messages.
374 gdb_expect 60 {
375 -re "The program .* has been started already.*y or n. $" {
376 send_gdb "y\n"
377 exp_continue
378 }
379 -notransfer -re "Starting program: \[^\r\n\]*" {
380 return 0
381 }
382 }
383 return -1
384 }
385
386 # Generic starti command. Return 0 if we could start the program, -1
387 # if we could not.
388 #
389 # N.B. This function does not wait for gdb to return to the prompt,
390 # that is the caller's responsibility.
391
392 proc gdb_starti_cmd {args} {
393 global gdb_prompt use_gdb_stub
394
395 foreach command [gdb_init_commands] {
396 send_gdb "$command\n"
397 gdb_expect 30 {
398 -re "$gdb_prompt $" { }
399 default {
400 perror "gdb_init_command for target failed"
401 return -1
402 }
403 }
404 }
405
406 if $use_gdb_stub {
407 return -1
408 }
409
410 send_gdb "starti $args\n"
411 gdb_expect 60 {
412 -re "The program .* has been started already.*y or n. $" {
413 send_gdb "y\n"
414 exp_continue
415 }
416 -re "Starting program: \[^\r\n\]*" {
417 return 0
418 }
419 }
420 return -1
421 }
422
423 # Set a breakpoint at FUNCTION. If there is an additional argument it is
424 # a list of options; the supported options are allow-pending, temporary,
425 # message, no-message, passfail and qualified.
426 # The result is 1 for success, 0 for failure.
427 #
428 # Note: The handling of message vs no-message is messed up, but it's based
429 # on historical usage. By default this function does not print passes,
430 # only fails.
431 # no-message: turns off printing of fails (and passes, but they're already off)
432 # message: turns on printing of passes (and fails, but they're already on)
433
434 proc gdb_breakpoint { function args } {
435 global gdb_prompt
436 global decimal
437
438 set pending_response n
439 if {[lsearch -exact $args allow-pending] != -1} {
440 set pending_response y
441 }
442
443 set break_command "break"
444 set break_message "Breakpoint"
445 if {[lsearch -exact $args temporary] != -1} {
446 set break_command "tbreak"
447 set break_message "Temporary breakpoint"
448 }
449
450 if {[lsearch -exact $args qualified] != -1} {
451 append break_command " -qualified"
452 }
453
454 set print_pass 0
455 set print_fail 1
456 set no_message_loc [lsearch -exact $args no-message]
457 set message_loc [lsearch -exact $args message]
458 # The last one to appear in args wins.
459 if { $no_message_loc > $message_loc } {
460 set print_fail 0
461 } elseif { $message_loc > $no_message_loc } {
462 set print_pass 1
463 }
464
465 set test_name "setting breakpoint at $function"
466
467 send_gdb "$break_command $function\n"
468 # The first two regexps are what we get with -g, the third is without -g.
469 gdb_expect 30 {
470 -re "$break_message \[0-9\]* at .*: file .*, line $decimal.\r\n$gdb_prompt $" {}
471 -re "$break_message \[0-9\]*: file .*, line $decimal.\r\n$gdb_prompt $" {}
472 -re "$break_message \[0-9\]* at .*$gdb_prompt $" {}
473 -re "$break_message \[0-9\]* \\(.*\\) pending.*$gdb_prompt $" {
474 if {$pending_response == "n"} {
475 if { $print_fail } {
476 fail $test_name
477 }
478 return 0
479 }
480 }
481 -re "Make breakpoint pending.*y or \\\[n\\\]. $" {
482 send_gdb "$pending_response\n"
483 exp_continue
484 }
485 -re "A problem internal to GDB has been detected" {
486 if { $print_fail } {
487 fail "$test_name (GDB internal error)"
488 }
489 gdb_internal_error_resync
490 return 0
491 }
492 -re "$gdb_prompt $" {
493 if { $print_fail } {
494 fail $test_name
495 }
496 return 0
497 }
498 eof {
499 if { $print_fail } {
500 fail "$test_name (eof)"
501 }
502 return 0
503 }
504 timeout {
505 if { $print_fail } {
506 fail "$test_name (timeout)"
507 }
508 return 0
509 }
510 }
511 if { $print_pass } {
512 pass $test_name
513 }
514 return 1
515 }
516
517 # Set breakpoint at function and run gdb until it breaks there.
518 # Since this is the only breakpoint that will be set, if it stops
519 # at a breakpoint, we will assume it is the one we want. We can't
520 # just compare to "function" because it might be a fully qualified,
521 # single quoted C++ function specifier.
522 #
523 # If there are additional arguments, pass them to gdb_breakpoint.
524 # We recognize no-message/message ourselves.
525 # The default is no-message.
526 # no-message is messed up here, like gdb_breakpoint: to preserve
527 # historical usage fails are always printed by default.
528 # no-message: turns off printing of fails (and passes, but they're already off)
529 # message: turns on printing of passes (and fails, but they're already on)
530
531 proc runto { function args } {
532 global gdb_prompt
533 global decimal
534
535 delete_breakpoints
536
537 # Default to "no-message".
538 set args "no-message $args"
539
540 set print_pass 0
541 set print_fail 1
542 set no_message_loc [lsearch -exact $args no-message]
543 set message_loc [lsearch -exact $args message]
544 # The last one to appear in args wins.
545 if { $no_message_loc > $message_loc } {
546 set print_fail 0
547 } elseif { $message_loc > $no_message_loc } {
548 set print_pass 1
549 }
550
551 set test_name "running to $function in runto"
552
553 # We need to use eval here to pass our varargs args to gdb_breakpoint
554 # which is also a varargs function.
555 # But we also have to be careful because $function may have multiple
556 # elements, and we don't want Tcl to move the remaining elements after
557 # the first to $args. That is why $function is wrapped in {}.
558 if ![eval gdb_breakpoint {$function} $args] {
559 return 0
560 }
561
562 gdb_run_cmd
563
564 # the "at foo.c:36" output we get with -g.
565 # the "in func" output we get without -g.
566 gdb_expect 30 {
567 -re "Break.* at .*:$decimal.*$gdb_prompt $" {
568 if { $print_pass } {
569 pass $test_name
570 }
571 return 1
572 }
573 -re "Breakpoint \[0-9\]*, \[0-9xa-f\]* in .*$gdb_prompt $" {
574 if { $print_pass } {
575 pass $test_name
576 }
577 return 1
578 }
579 -re "The target does not support running in non-stop mode.\r\n$gdb_prompt $" {
580 if { $print_fail } {
581 unsupported "non-stop mode not supported"
582 }
583 return 0
584 }
585 -re ".*A problem internal to GDB has been detected" {
586 if { $print_fail } {
587 fail "$test_name (GDB internal error)"
588 }
589 gdb_internal_error_resync
590 return 0
591 }
592 -re "$gdb_prompt $" {
593 if { $print_fail } {
594 fail $test_name
595 }
596 return 0
597 }
598 eof {
599 if { $print_fail } {
600 fail "$test_name (eof)"
601 }
602 return 0
603 }
604 timeout {
605 if { $print_fail } {
606 fail "$test_name (timeout)"
607 }
608 return 0
609 }
610 }
611 if { $print_pass } {
612 pass $test_name
613 }
614 return 1
615 }
616
617 # Ask gdb to run until we hit a breakpoint at main.
618 #
619 # N.B. This function deletes all existing breakpoints.
620 # If you don't want that, use gdb_start_cmd.
621
622 proc runto_main { } {
623 return [runto main no-message]
624 }
625
626 ### Continue, and expect to hit a breakpoint.
627 ### Report a pass or fail, depending on whether it seems to have
628 ### worked. Use NAME as part of the test name; each call to
629 ### continue_to_breakpoint should use a NAME which is unique within
630 ### that test file.
631 proc gdb_continue_to_breakpoint {name {location_pattern .*}} {
632 global gdb_prompt
633 set full_name "continue to breakpoint: $name"
634
635 gdb_test_multiple "continue" $full_name {
636 -re "(?:Breakpoint|Temporary breakpoint) .* (at|in) $location_pattern\r\n$gdb_prompt $" {
637 pass $full_name
638 }
639 }
640 }
641
642
643 # gdb_internal_error_resync:
644 #
645 # Answer the questions GDB asks after it reports an internal error
646 # until we get back to a GDB prompt. Decline to quit the debugging
647 # session, and decline to create a core file. Return non-zero if the
648 # resync succeeds.
649 #
650 # This procedure just answers whatever questions come up until it sees
651 # a GDB prompt; it doesn't require you to have matched the input up to
652 # any specific point. However, it only answers questions it sees in
653 # the output itself, so if you've matched a question, you had better
654 # answer it yourself before calling this.
655 #
656 # You can use this function thus:
657 #
658 # gdb_expect {
659 # ...
660 # -re ".*A problem internal to GDB has been detected" {
661 # gdb_internal_error_resync
662 # }
663 # ...
664 # }
665 #
666 proc gdb_internal_error_resync {} {
667 global gdb_prompt
668
669 verbose -log "Resyncing due to internal error."
670
671 set count 0
672 while {$count < 10} {
673 gdb_expect {
674 -re "Quit this debugging session\\? \\(y or n\\) $" {
675 send_gdb "n\n"
676 incr count
677 }
678 -re "Create a core file of GDB\\? \\(y or n\\) $" {
679 send_gdb "n\n"
680 incr count
681 }
682 -re "$gdb_prompt $" {
683 # We're resynchronized.
684 return 1
685 }
686 timeout {
687 perror "Could not resync from internal error (timeout)"
688 return 0
689 }
690 }
691 }
692 perror "Could not resync from internal error (resync count exceeded)"
693 return 0
694 }
695
696
697 # gdb_test_multiple COMMAND MESSAGE EXPECT_ARGUMENTS
698 # Send a command to gdb; test the result.
699 #
700 # COMMAND is the command to execute, send to GDB with send_gdb. If
701 # this is the null string no command is sent.
702 # MESSAGE is a message to be printed with the built-in failure patterns
703 # if one of them matches. If MESSAGE is empty COMMAND will be used.
704 # EXPECT_ARGUMENTS will be fed to expect in addition to the standard
705 # patterns. Pattern elements will be evaluated in the caller's
706 # context; action elements will be executed in the caller's context.
707 # Unlike patterns for gdb_test, these patterns should generally include
708 # the final newline and prompt.
709 #
710 # Returns:
711 # 1 if the test failed, according to a built-in failure pattern
712 # 0 if only user-supplied patterns matched
713 # -1 if there was an internal error.
714 #
715 # You can use this function thus:
716 #
717 # gdb_test_multiple "print foo" "test foo" {
718 # -re "expected output 1" {
719 # pass "print foo"
720 # }
721 # -re "expected output 2" {
722 # fail "print foo"
723 # }
724 # }
725 #
726 # Like with "expect", you can also specify the spawn id to match with
727 # -i "$id". Interesting spawn ids are $inferior_spawn_id and
728 # $gdb_spawn_id. The former matches inferior I/O, while the latter
729 # matches GDB I/O. E.g.:
730 #
731 # send_inferior "hello\n"
732 # gdb_test_multiple "continue" "test echo" {
733 # -i "$inferior_spawn_id" -re "^hello\r\nhello\r\n$" {
734 # pass "got echo"
735 # }
736 # -i "$gdb_spawn_id" -re "Breakpoint.*$gdb_prompt $" {
737 # fail "hit breakpoint"
738 # }
739 # }
740 #
741 # The standard patterns, such as "Inferior exited..." and "A problem
742 # ...", all being implicitly appended to that list. These are always
743 # expected from $gdb_spawn_id. IOW, callers do not need to worry
744 # about resetting "-i" back to $gdb_spawn_id explicitly.
745 #
746 proc gdb_test_multiple { command message user_code } {
747 global verbose use_gdb_stub
748 global gdb_prompt pagination_prompt
749 global GDB
750 global gdb_spawn_id
751 global inferior_exited_re
752 upvar timeout timeout
753 upvar expect_out expect_out
754 global any_spawn_id
755
756 if { $message == "" } {
757 set message $command
758 }
759
760 if [string match "*\[\r\n\]" $command] {
761 error "Invalid trailing newline in \"$message\" test"
762 }
763
764 if [string match "*\[\r\n\]*" $message] {
765 error "Invalid newline in \"$message\" test"
766 }
767
768 if {$use_gdb_stub
769 && [regexp -nocase {^\s*(r|run|star|start|at|att|atta|attac|attach)\M} \
770 $command]} {
771 error "gdbserver does not support $command without extended-remote"
772 }
773
774 # TCL/EXPECT WART ALERT
775 # Expect does something very strange when it receives a single braced
776 # argument. It splits it along word separators and performs substitutions.
777 # This means that { "[ab]" } is evaluated as "[ab]", but { "\[ab\]" } is
778 # evaluated as "\[ab\]". But that's not how TCL normally works; inside a
779 # double-quoted list item, "\[ab\]" is just a long way of representing
780 # "[ab]", because the backslashes will be removed by lindex.
781
782 # Unfortunately, there appears to be no easy way to duplicate the splitting
783 # that expect will do from within TCL. And many places make use of the
784 # "\[0-9\]" construct, so we need to support that; and some places make use
785 # of the "[func]" construct, so we need to support that too. In order to
786 # get this right we have to substitute quoted list elements differently
787 # from braced list elements.
788
789 # We do this roughly the same way that Expect does it. We have to use two
790 # lists, because if we leave unquoted newlines in the argument to uplevel
791 # they'll be treated as command separators, and if we escape newlines
792 # we mangle newlines inside of command blocks. This assumes that the
793 # input doesn't contain a pattern which contains actual embedded newlines
794 # at this point!
795
796 regsub -all {\n} ${user_code} { } subst_code
797 set subst_code [uplevel list $subst_code]
798
799 set processed_code ""
800 set patterns ""
801 set expecting_action 0
802 set expecting_arg 0
803 foreach item $user_code subst_item $subst_code {
804 if { $item == "-n" || $item == "-notransfer" || $item == "-nocase" } {
805 lappend processed_code $item
806 continue
807 }
808 if { $item == "-indices" || $item == "-re" || $item == "-ex" } {
809 lappend processed_code $item
810 continue
811 }
812 if { $item == "-timeout" || $item == "-i" } {
813 set expecting_arg 1
814 lappend processed_code $item
815 continue
816 }
817 if { $expecting_arg } {
818 set expecting_arg 0
819 lappend processed_code $subst_item
820 continue
821 }
822 if { $expecting_action } {
823 lappend processed_code "uplevel [list $item]"
824 set expecting_action 0
825 # Cosmetic, no effect on the list.
826 append processed_code "\n"
827 continue
828 }
829 set expecting_action 1
830 lappend processed_code $subst_item
831 if {$patterns != ""} {
832 append patterns "; "
833 }
834 append patterns "\"$subst_item\""
835 }
836
837 # Also purely cosmetic.
838 regsub -all {\r} $patterns {\\r} patterns
839 regsub -all {\n} $patterns {\\n} patterns
840
841 if $verbose>2 then {
842 send_user "Sending \"$command\" to gdb\n"
843 send_user "Looking to match \"$patterns\"\n"
844 send_user "Message is \"$message\"\n"
845 }
846
847 set result -1
848 set string "${command}\n"
849 if { $command != "" } {
850 set multi_line_re "\[\r\n\] *>"
851 while { "$string" != "" } {
852 set foo [string first "\n" "$string"]
853 set len [string length "$string"]
854 if { $foo < [expr $len - 1] } {
855 set str [string range "$string" 0 $foo]
856 if { [send_gdb "$str"] != "" } {
857 global suppress_flag
858
859 if { ! $suppress_flag } {
860 perror "Couldn't send $command to GDB."
861 }
862 fail "$message"
863 return $result
864 }
865 # since we're checking if each line of the multi-line
866 # command are 'accepted' by GDB here,
867 # we need to set -notransfer expect option so that
868 # command output is not lost for pattern matching
869 # - guo
870 gdb_expect 2 {
871 -notransfer -re "$multi_line_re$" { verbose "partial: match" 3 }
872 timeout { verbose "partial: timeout" 3 }
873 }
874 set string [string range "$string" [expr $foo + 1] end]
875 set multi_line_re "$multi_line_re.*\[\r\n\] *>"
876 } else {
877 break
878 }
879 }
880 if { "$string" != "" } {
881 if { [send_gdb "$string"] != "" } {
882 global suppress_flag
883
884 if { ! $suppress_flag } {
885 perror "Couldn't send $command to GDB."
886 }
887 fail "$message"
888 return $result
889 }
890 }
891 }
892
893 set code {
894 -re ".*A problem internal to GDB has been detected" {
895 fail "$message (GDB internal error)"
896 gdb_internal_error_resync
897 set result -1
898 }
899 -re "\\*\\*\\* DOSEXIT code.*" {
900 if { $message != "" } {
901 fail "$message"
902 }
903 gdb_suppress_entire_file "GDB died"
904 set result -1
905 }
906 }
907 append code $processed_code
908 append code {
909 # Reset the spawn id, in case the processed code used -i.
910 -i "$gdb_spawn_id"
911
912 -re "Ending remote debugging.*$gdb_prompt $" {
913 if ![isnative] then {
914 warning "Can`t communicate to remote target."
915 }
916 gdb_exit
917 gdb_start
918 set result -1
919 }
920 -re "Undefined\[a-z\]* command:.*$gdb_prompt $" {
921 perror "Undefined command \"$command\"."
922 fail "$message"
923 set result 1
924 }
925 -re "Ambiguous command.*$gdb_prompt $" {
926 perror "\"$command\" is not a unique command name."
927 fail "$message"
928 set result 1
929 }
930 -re "$inferior_exited_re with code \[0-9\]+.*$gdb_prompt $" {
931 if ![string match "" $message] then {
932 set errmsg "$message (the program exited)"
933 } else {
934 set errmsg "$command (the program exited)"
935 }
936 fail "$errmsg"
937 set result -1
938 }
939 -re "$inferior_exited_re normally.*$gdb_prompt $" {
940 if ![string match "" $message] then {
941 set errmsg "$message (the program exited)"
942 } else {
943 set errmsg "$command (the program exited)"
944 }
945 fail "$errmsg"
946 set result -1
947 }
948 -re "The program is not being run.*$gdb_prompt $" {
949 if ![string match "" $message] then {
950 set errmsg "$message (the program is no longer running)"
951 } else {
952 set errmsg "$command (the program is no longer running)"
953 }
954 fail "$errmsg"
955 set result -1
956 }
957 -re "\r\n$gdb_prompt $" {
958 if ![string match "" $message] then {
959 fail "$message"
960 }
961 set result 1
962 }
963 -re "$pagination_prompt" {
964 send_gdb "\n"
965 perror "Window too small."
966 fail "$message"
967 set result -1
968 }
969 -re "\\((y or n|y or \\\[n\\\]|\\\[y\\\] or n)\\) " {
970 send_gdb "n\n"
971 gdb_expect -re "$gdb_prompt $"
972 fail "$message (got interactive prompt)"
973 set result -1
974 }
975 -re "\\\[0\\\] cancel\r\n\\\[1\\\] all.*\r\n> $" {
976 send_gdb "0\n"
977 gdb_expect -re "$gdb_prompt $"
978 fail "$message (got breakpoint menu)"
979 set result -1
980 }
981
982 # Patterns below apply to any spawn id specified.
983 -i $any_spawn_id
984 eof {
985 perror "Process no longer exists"
986 if { $message != "" } {
987 fail "$message"
988 }
989 return -1
990 }
991 full_buffer {
992 perror "internal buffer is full."
993 fail "$message"
994 set result -1
995 }
996 timeout {
997 if ![string match "" $message] then {
998 fail "$message (timeout)"
999 }
1000 set result 1
1001 }
1002 }
1003
1004 set result 0
1005 set code [catch {gdb_expect $code} string]
1006 if {$code == 1} {
1007 global errorInfo errorCode
1008 return -code error -errorinfo $errorInfo -errorcode $errorCode $string
1009 } elseif {$code > 1} {
1010 return -code $code $string
1011 }
1012 return $result
1013 }
1014
1015 # gdb_test COMMAND PATTERN MESSAGE QUESTION RESPONSE
1016 # Send a command to gdb; test the result.
1017 #
1018 # COMMAND is the command to execute, send to GDB with send_gdb. If
1019 # this is the null string no command is sent.
1020 # PATTERN is the pattern to match for a PASS, and must NOT include
1021 # the \r\n sequence immediately before the gdb prompt. This argument
1022 # may be omitted to just match the prompt, ignoring whatever output
1023 # precedes it.
1024 # MESSAGE is an optional message to be printed. If this is
1025 # omitted, then the pass/fail messages use the command string as the
1026 # message. (If this is the empty string, then sometimes we don't
1027 # call pass or fail at all; I don't understand this at all.)
1028 # QUESTION is a question GDB may ask in response to COMMAND, like
1029 # "are you sure?"
1030 # RESPONSE is the response to send if QUESTION appears.
1031 #
1032 # Returns:
1033 # 1 if the test failed,
1034 # 0 if the test passes,
1035 # -1 if there was an internal error.
1036 #
1037 proc gdb_test { args } {
1038 global gdb_prompt
1039 upvar timeout timeout
1040
1041 if [llength $args]>2 then {
1042 set message [lindex $args 2]
1043 } else {
1044 set message [lindex $args 0]
1045 }
1046 set command [lindex $args 0]
1047 set pattern [lindex $args 1]
1048
1049 if [llength $args]==5 {
1050 set question_string [lindex $args 3]
1051 set response_string [lindex $args 4]
1052 } else {
1053 set question_string "^FOOBAR$"
1054 }
1055
1056 return [gdb_test_multiple $command $message {
1057 -re "\[\r\n\]*(?:$pattern)\[\r\n\]+$gdb_prompt $" {
1058 if ![string match "" $message] then {
1059 pass "$message"
1060 }
1061 }
1062 -re "(${question_string})$" {
1063 send_gdb "$response_string\n"
1064 exp_continue
1065 }
1066 }]
1067 }
1068
1069 # gdb_test_no_output COMMAND MESSAGE
1070 # Send a command to GDB and verify that this command generated no output.
1071 #
1072 # See gdb_test_multiple for a description of the COMMAND and MESSAGE
1073 # parameters. If MESSAGE is ommitted, then COMMAND will be used as
1074 # the message. (If MESSAGE is the empty string, then sometimes we do not
1075 # call pass or fail at all; I don't understand this at all.)
1076
1077 proc gdb_test_no_output { args } {
1078 global gdb_prompt
1079 set command [lindex $args 0]
1080 if [llength $args]>1 then {
1081 set message [lindex $args 1]
1082 } else {
1083 set message $command
1084 }
1085
1086 set command_regex [string_to_regexp $command]
1087 gdb_test_multiple $command $message {
1088 -re "^$command_regex\r\n$gdb_prompt $" {
1089 if ![string match "" $message] then {
1090 pass "$message"
1091 }
1092 }
1093 }
1094 }
1095
1096 # Send a command and then wait for a sequence of outputs.
1097 # This is useful when the sequence is long and contains ".*", a single
1098 # regexp to match the entire output can get a timeout much easier.
1099 #
1100 # COMMAND is the command to execute, send to GDB with send_gdb. If
1101 # this is the null string no command is sent.
1102 # TEST_NAME is passed to pass/fail. COMMAND is used if TEST_NAME is "".
1103 # EXPECTED_OUTPUT_LIST is a list of regexps of expected output, which are
1104 # processed in order, and all must be present in the output.
1105 #
1106 # It is unnecessary to specify ".*" at the beginning or end of any regexp,
1107 # there is an implicit ".*" between each element of EXPECTED_OUTPUT_LIST.
1108 # There is also an implicit ".*" between the last regexp and the gdb prompt.
1109 #
1110 # Like gdb_test and gdb_test_multiple, the output is expected to end with the
1111 # gdb prompt, which must not be specified in EXPECTED_OUTPUT_LIST.
1112 #
1113 # Returns:
1114 # 1 if the test failed,
1115 # 0 if the test passes,
1116 # -1 if there was an internal error.
1117
1118 proc gdb_test_sequence { command test_name expected_output_list } {
1119 global gdb_prompt
1120 if { $test_name == "" } {
1121 set test_name $command
1122 }
1123 lappend expected_output_list ""; # implicit ".*" before gdb prompt
1124 if { $command != "" } {
1125 send_gdb "$command\n"
1126 }
1127 return [gdb_expect_list $test_name "$gdb_prompt $" $expected_output_list]
1128 }
1129
1130 \f
1131 # Test that a command gives an error. For pass or fail, return
1132 # a 1 to indicate that more tests can proceed. However a timeout
1133 # is a serious error, generates a special fail message, and causes
1134 # a 0 to be returned to indicate that more tests are likely to fail
1135 # as well.
1136
1137 proc test_print_reject { args } {
1138 global gdb_prompt
1139 global verbose
1140
1141 if [llength $args]==2 then {
1142 set expectthis [lindex $args 1]
1143 } else {
1144 set expectthis "should never match this bogus string"
1145 }
1146 set sendthis [lindex $args 0]
1147 if $verbose>2 then {
1148 send_user "Sending \"$sendthis\" to gdb\n"
1149 send_user "Looking to match \"$expectthis\"\n"
1150 }
1151 send_gdb "$sendthis\n"
1152 #FIXME: Should add timeout as parameter.
1153 gdb_expect {
1154 -re "A .* in expression.*\\.*$gdb_prompt $" {
1155 pass "reject $sendthis"
1156 return 1
1157 }
1158 -re "Invalid syntax in expression.*$gdb_prompt $" {
1159 pass "reject $sendthis"
1160 return 1
1161 }
1162 -re "Junk after end of expression.*$gdb_prompt $" {
1163 pass "reject $sendthis"
1164 return 1
1165 }
1166 -re "Invalid number.*$gdb_prompt $" {
1167 pass "reject $sendthis"
1168 return 1
1169 }
1170 -re "Invalid character constant.*$gdb_prompt $" {
1171 pass "reject $sendthis"
1172 return 1
1173 }
1174 -re "No symbol table is loaded.*$gdb_prompt $" {
1175 pass "reject $sendthis"
1176 return 1
1177 }
1178 -re "No symbol .* in current context.*$gdb_prompt $" {
1179 pass "reject $sendthis"
1180 return 1
1181 }
1182 -re "Unmatched single quote.*$gdb_prompt $" {
1183 pass "reject $sendthis"
1184 return 1
1185 }
1186 -re "A character constant must contain at least one character.*$gdb_prompt $" {
1187 pass "reject $sendthis"
1188 return 1
1189 }
1190 -re "$expectthis.*$gdb_prompt $" {
1191 pass "reject $sendthis"
1192 return 1
1193 }
1194 -re ".*$gdb_prompt $" {
1195 fail "reject $sendthis"
1196 return 1
1197 }
1198 default {
1199 fail "reject $sendthis (eof or timeout)"
1200 return 0
1201 }
1202 }
1203 }
1204 \f
1205
1206 # Same as gdb_test, but the second parameter is not a regexp,
1207 # but a string that must match exactly.
1208
1209 proc gdb_test_exact { args } {
1210 upvar timeout timeout
1211
1212 set command [lindex $args 0]
1213
1214 # This applies a special meaning to a null string pattern. Without
1215 # this, "$pattern\r\n$gdb_prompt $" will match anything, including error
1216 # messages from commands that should have no output except a new
1217 # prompt. With this, only results of a null string will match a null
1218 # string pattern.
1219
1220 set pattern [lindex $args 1]
1221 if [string match $pattern ""] {
1222 set pattern [string_to_regexp [lindex $args 0]]
1223 } else {
1224 set pattern [string_to_regexp [lindex $args 1]]
1225 }
1226
1227 # It is most natural to write the pattern argument with only
1228 # embedded \n's, especially if you are trying to avoid Tcl quoting
1229 # problems. But gdb_expect really wants to see \r\n in patterns. So
1230 # transform the pattern here. First transform \r\n back to \n, in
1231 # case some users of gdb_test_exact already do the right thing.
1232 regsub -all "\r\n" $pattern "\n" pattern
1233 regsub -all "\n" $pattern "\r\n" pattern
1234 if [llength $args]==3 then {
1235 set message [lindex $args 2]
1236 } else {
1237 set message $command
1238 }
1239
1240 return [gdb_test $command $pattern $message]
1241 }
1242
1243 # Wrapper around gdb_test_multiple that looks for a list of expected
1244 # output elements, but which can appear in any order.
1245 # CMD is the gdb command.
1246 # NAME is the name of the test.
1247 # ELM_FIND_REGEXP specifies how to partition the output into elements to
1248 # compare.
1249 # ELM_EXTRACT_REGEXP specifies the part of ELM_FIND_REGEXP to compare.
1250 # RESULT_MATCH_LIST is a list of exact matches for each expected element.
1251 # All elements of RESULT_MATCH_LIST must appear for the test to pass.
1252 #
1253 # A typical use of ELM_FIND_REGEXP/ELM_EXTRACT_REGEXP is to extract one line
1254 # of text per element and then strip trailing \r\n's.
1255 # Example:
1256 # gdb_test_list_exact "foo" "bar" \
1257 # "\[^\r\n\]+\[\r\n\]+" \
1258 # "\[^\r\n\]+" \
1259 # { \
1260 # {expected result 1} \
1261 # {expected result 2} \
1262 # }
1263
1264 proc gdb_test_list_exact { cmd name elm_find_regexp elm_extract_regexp result_match_list } {
1265 global gdb_prompt
1266
1267 set matches [lsort $result_match_list]
1268 set seen {}
1269 gdb_test_multiple $cmd $name {
1270 "$cmd\[\r\n\]" { exp_continue }
1271 -re $elm_find_regexp {
1272 set str $expect_out(0,string)
1273 verbose -log "seen: $str" 3
1274 regexp -- $elm_extract_regexp $str elm_seen
1275 verbose -log "extracted: $elm_seen" 3
1276 lappend seen $elm_seen
1277 exp_continue
1278 }
1279 -re "$gdb_prompt $" {
1280 set failed ""
1281 foreach got [lsort $seen] have $matches {
1282 if {![string equal $got $have]} {
1283 set failed $have
1284 break
1285 }
1286 }
1287 if {[string length $failed] != 0} {
1288 fail "$name ($failed not found)"
1289 } else {
1290 pass $name
1291 }
1292 }
1293 }
1294 }
1295
1296 # gdb_test_stdio COMMAND INFERIOR_PATTERN GDB_PATTERN MESSAGE
1297 # Send a command to gdb; expect inferior and gdb output.
1298 #
1299 # See gdb_test_multiple for a description of the COMMAND and MESSAGE
1300 # parameters.
1301 #
1302 # INFERIOR_PATTERN is the pattern to match against inferior output.
1303 #
1304 # GDB_PATTERN is the pattern to match against gdb output, and must NOT
1305 # include the \r\n sequence immediately before the gdb prompt, nor the
1306 # prompt. The default is empty.
1307 #
1308 # Both inferior and gdb patterns must match for a PASS.
1309 #
1310 # If MESSAGE is ommitted, then COMMAND will be used as the message.
1311 #
1312 # Returns:
1313 # 1 if the test failed,
1314 # 0 if the test passes,
1315 # -1 if there was an internal error.
1316 #
1317
1318 proc gdb_test_stdio {command inferior_pattern {gdb_pattern ""} {message ""}} {
1319 global inferior_spawn_id gdb_spawn_id
1320 global gdb_prompt
1321
1322 if {$message == ""} {
1323 set message $command
1324 }
1325
1326 set inferior_matched 0
1327 set gdb_matched 0
1328
1329 # Use an indirect spawn id list, and remove the inferior spawn id
1330 # from the expected output as soon as it matches, in case
1331 # $inferior_pattern happens to be a prefix of the resulting full
1332 # gdb pattern below (e.g., "\r\n").
1333 global gdb_test_stdio_spawn_id_list
1334 set gdb_test_stdio_spawn_id_list "$inferior_spawn_id"
1335
1336 # Note that if $inferior_spawn_id and $gdb_spawn_id are different,
1337 # then we may see gdb's output arriving before the inferior's
1338 # output.
1339 set res [gdb_test_multiple $command $message {
1340 -i gdb_test_stdio_spawn_id_list -re "$inferior_pattern" {
1341 set inferior_matched 1
1342 if {!$gdb_matched} {
1343 set gdb_test_stdio_spawn_id_list ""
1344 exp_continue
1345 }
1346 }
1347 -i $gdb_spawn_id -re "$gdb_pattern\r\n$gdb_prompt $" {
1348 set gdb_matched 1
1349 if {!$inferior_matched} {
1350 exp_continue
1351 }
1352 }
1353 }]
1354 if {$res == 0} {
1355 pass $message
1356 } else {
1357 verbose -log "inferior_matched=$inferior_matched, gdb_matched=$gdb_matched"
1358 }
1359 return $res
1360 }
1361
1362 \f
1363
1364 # Issue a PASS and return true if evaluating CONDITION in the caller's
1365 # frame returns true, and issue a FAIL and return false otherwise.
1366 # MESSAGE is the pass/fail message to be printed. If MESSAGE is
1367 # omitted or is empty, then the pass/fail messages use the condition
1368 # string as the message.
1369
1370 proc gdb_assert { condition {message ""} } {
1371 if { $message == ""} {
1372 set message $condition
1373 }
1374
1375 set res [uplevel 1 expr $condition]
1376 if {!$res} {
1377 fail $message
1378 } else {
1379 pass $message
1380 }
1381 return $res
1382 }
1383
1384 proc gdb_reinitialize_dir { subdir } {
1385 global gdb_prompt
1386
1387 if [is_remote host] {
1388 return ""
1389 }
1390 send_gdb "dir\n"
1391 gdb_expect 60 {
1392 -re "Reinitialize source path to empty.*y or n. " {
1393 send_gdb "y\n"
1394 gdb_expect 60 {
1395 -re "Source directories searched.*$gdb_prompt $" {
1396 send_gdb "dir $subdir\n"
1397 gdb_expect 60 {
1398 -re "Source directories searched.*$gdb_prompt $" {
1399 verbose "Dir set to $subdir"
1400 }
1401 -re "$gdb_prompt $" {
1402 perror "Dir \"$subdir\" failed."
1403 }
1404 }
1405 }
1406 -re "$gdb_prompt $" {
1407 perror "Dir \"$subdir\" failed."
1408 }
1409 }
1410 }
1411 -re "$gdb_prompt $" {
1412 perror "Dir \"$subdir\" failed."
1413 }
1414 }
1415 }
1416
1417 #
1418 # gdb_exit -- exit the GDB, killing the target program if necessary
1419 #
1420 proc default_gdb_exit {} {
1421 global GDB
1422 global INTERNAL_GDBFLAGS GDBFLAGS
1423 global verbose
1424 global gdb_spawn_id inferior_spawn_id
1425 global inotify_log_file
1426
1427 gdb_stop_suppressing_tests
1428
1429 if ![info exists gdb_spawn_id] {
1430 return
1431 }
1432
1433 verbose "Quitting $GDB $INTERNAL_GDBFLAGS $GDBFLAGS"
1434
1435 if {[info exists inotify_log_file] && [file exists $inotify_log_file]} {
1436 set fd [open $inotify_log_file]
1437 set data [read -nonewline $fd]
1438 close $fd
1439
1440 if {[string compare $data ""] != 0} {
1441 warning "parallel-unsafe file creations noticed"
1442
1443 # Clear the log.
1444 set fd [open $inotify_log_file w]
1445 close $fd
1446 }
1447 }
1448
1449 if { [is_remote host] && [board_info host exists fileid] } {
1450 send_gdb "quit\n"
1451 gdb_expect 10 {
1452 -re "y or n" {
1453 send_gdb "y\n"
1454 exp_continue
1455 }
1456 -re "DOSEXIT code" { }
1457 default { }
1458 }
1459 }
1460
1461 if ![is_remote host] {
1462 remote_close host
1463 }
1464 unset gdb_spawn_id
1465 unset inferior_spawn_id
1466 }
1467
1468 # Load a file into the debugger.
1469 # The return value is 0 for success, -1 for failure.
1470 #
1471 # This procedure also set the global variable GDB_FILE_CMD_DEBUG_INFO
1472 # to one of these values:
1473 #
1474 # debug file was loaded successfully and has debug information
1475 # nodebug file was loaded successfully and has no debug information
1476 # lzma file was loaded, .gnu_debugdata found, but no LZMA support
1477 # compiled in
1478 # fail file was not loaded
1479 #
1480 # I tried returning this information as part of the return value,
1481 # but ran into a mess because of the many re-implementations of
1482 # gdb_load in config/*.exp.
1483 #
1484 # TODO: gdb.base/sepdebug.exp and gdb.stabs/weird.exp might be able to use
1485 # this if they can get more information set.
1486
1487 proc gdb_file_cmd { arg } {
1488 global gdb_prompt
1489 global verbose
1490 global GDB
1491 global last_loaded_file
1492
1493 # Save this for the benefit of gdbserver-support.exp.
1494 set last_loaded_file $arg
1495
1496 # Set whether debug info was found.
1497 # Default to "fail".
1498 global gdb_file_cmd_debug_info
1499 set gdb_file_cmd_debug_info "fail"
1500
1501 if [is_remote host] {
1502 set arg [remote_download host $arg]
1503 if { $arg == "" } {
1504 perror "download failed"
1505 return -1
1506 }
1507 }
1508
1509 # The file command used to kill the remote target. For the benefit
1510 # of the testsuite, preserve this behavior.
1511 send_gdb "kill\n"
1512 gdb_expect 120 {
1513 -re "Kill the program being debugged. .y or n. $" {
1514 send_gdb "y\n"
1515 verbose "\t\tKilling previous program being debugged"
1516 exp_continue
1517 }
1518 -re "$gdb_prompt $" {
1519 # OK.
1520 }
1521 }
1522
1523 send_gdb "file $arg\n"
1524 gdb_expect 120 {
1525 -re "Reading symbols from.*LZMA support was disabled.*done.*$gdb_prompt $" {
1526 verbose "\t\tLoaded $arg into $GDB; .gnu_debugdata found but no LZMA available"
1527 set gdb_file_cmd_debug_info "lzma"
1528 return 0
1529 }
1530 -re "Reading symbols from.*no debugging symbols found.*done.*$gdb_prompt $" {
1531 verbose "\t\tLoaded $arg into $GDB with no debugging symbols"
1532 set gdb_file_cmd_debug_info "nodebug"
1533 return 0
1534 }
1535 -re "Reading symbols from.*done.*$gdb_prompt $" {
1536 verbose "\t\tLoaded $arg into $GDB"
1537 set gdb_file_cmd_debug_info "debug"
1538 return 0
1539 }
1540 -re "Load new symbol table from \".*\".*y or n. $" {
1541 send_gdb "y\n"
1542 gdb_expect 120 {
1543 -re "Reading symbols from.*done.*$gdb_prompt $" {
1544 verbose "\t\tLoaded $arg with new symbol table into $GDB"
1545 set gdb_file_cmd_debug_info "debug"
1546 return 0
1547 }
1548 timeout {
1549 perror "Couldn't load $arg, other program already loaded (timeout)."
1550 return -1
1551 }
1552 eof {
1553 perror "Couldn't load $arg, other program already loaded (eof)."
1554 return -1
1555 }
1556 }
1557 }
1558 -re "No such file or directory.*$gdb_prompt $" {
1559 perror "($arg) No such file or directory"
1560 return -1
1561 }
1562 -re "A problem internal to GDB has been detected" {
1563 fail "($arg) (GDB internal error)"
1564 gdb_internal_error_resync
1565 return -1
1566 }
1567 -re "$gdb_prompt $" {
1568 perror "Couldn't load $arg into $GDB."
1569 return -1
1570 }
1571 timeout {
1572 perror "Couldn't load $arg into $GDB (timeout)."
1573 return -1
1574 }
1575 eof {
1576 # This is an attempt to detect a core dump, but seems not to
1577 # work. Perhaps we need to match .* followed by eof, in which
1578 # gdb_expect does not seem to have a way to do that.
1579 perror "Couldn't load $arg into $GDB (eof)."
1580 return -1
1581 }
1582 }
1583 }
1584
1585 # Default gdb_spawn procedure.
1586
1587 proc default_gdb_spawn { } {
1588 global use_gdb_stub
1589 global GDB
1590 global INTERNAL_GDBFLAGS GDBFLAGS
1591 global gdb_spawn_id
1592
1593 gdb_stop_suppressing_tests
1594
1595 # Set the default value, it may be overriden later by specific testfile.
1596 #
1597 # Use `set_board_info use_gdb_stub' for the board file to flag the inferior
1598 # is already started after connecting and run/attach are not supported.
1599 # This is used for the "remote" protocol. After GDB starts you should
1600 # check global $use_gdb_stub instead of the board as the testfile may force
1601 # a specific different target protocol itself.
1602 set use_gdb_stub [target_info exists use_gdb_stub]
1603
1604 verbose "Spawning $GDB $INTERNAL_GDBFLAGS $GDBFLAGS"
1605
1606 if [info exists gdb_spawn_id] {
1607 return 0
1608 }
1609
1610 if ![is_remote host] {
1611 if { [which $GDB] == 0 } then {
1612 perror "$GDB does not exist."
1613 exit 1
1614 }
1615 }
1616 set res [remote_spawn host "$GDB $INTERNAL_GDBFLAGS $GDBFLAGS [host_info gdb_opts]"]
1617 if { $res < 0 || $res == "" } {
1618 perror "Spawning $GDB failed."
1619 return 1
1620 }
1621
1622 set gdb_spawn_id $res
1623 return 0
1624 }
1625
1626 # Default gdb_start procedure.
1627
1628 proc default_gdb_start { } {
1629 global gdb_prompt pagination_prompt
1630 global gdb_spawn_id
1631 global inferior_spawn_id
1632
1633 if [info exists gdb_spawn_id] {
1634 return 0
1635 }
1636
1637 set res [gdb_spawn]
1638 if { $res != 0} {
1639 return $res
1640 }
1641
1642 # Default to assuming inferior I/O is done on GDB's terminal.
1643 if {![info exists inferior_spawn_id]} {
1644 set inferior_spawn_id $gdb_spawn_id
1645 }
1646
1647 # When running over NFS, particularly if running many simultaneous
1648 # tests on different hosts all using the same server, things can
1649 # get really slow. Give gdb at least 3 minutes to start up.
1650 set loop_again 1
1651 while { $loop_again } {
1652 set loop_again 0
1653 gdb_expect 360 {
1654 -re "$pagination_prompt" {
1655 verbose "Hit pagination during startup. Pressing enter to continue."
1656 send_gdb "\n"
1657 set loop_again 1
1658 }
1659 -re "\[\r\n\]$gdb_prompt $" {
1660 verbose "GDB initialized."
1661 }
1662 -re "$gdb_prompt $" {
1663 perror "GDB never initialized."
1664 unset gdb_spawn_id
1665 return -1
1666 }
1667 timeout {
1668 perror "(timeout) GDB never initialized after 10 seconds."
1669 remote_close host
1670 unset gdb_spawn_id
1671 return -1
1672 }
1673 }
1674 }
1675
1676 # force the height to "unlimited", so no pagers get used
1677
1678 send_gdb "set height 0\n"
1679 gdb_expect 10 {
1680 -re "$gdb_prompt $" {
1681 verbose "Setting height to 0." 2
1682 }
1683 timeout {
1684 warning "Couldn't set the height to 0"
1685 }
1686 }
1687 # force the width to "unlimited", so no wraparound occurs
1688 send_gdb "set width 0\n"
1689 gdb_expect 10 {
1690 -re "$gdb_prompt $" {
1691 verbose "Setting width to 0." 2
1692 }
1693 timeout {
1694 warning "Couldn't set the width to 0."
1695 }
1696 }
1697 return 0
1698 }
1699
1700 # Utility procedure to give user control of the gdb prompt in a script. It is
1701 # meant to be used for debugging test cases, and should not be left in the
1702 # test cases code.
1703
1704 proc gdb_interact { } {
1705 global gdb_spawn_id
1706 set spawn_id $gdb_spawn_id
1707
1708 send_user "+------------------------------------------+\n"
1709 send_user "| Script interrupted, you can now interact |\n"
1710 send_user "| with by gdb. Type >>> to continue. |\n"
1711 send_user "+------------------------------------------+\n"
1712
1713 interact {
1714 ">>>" return
1715 }
1716 }
1717
1718 # Examine the output of compilation to determine whether compilation
1719 # failed or not. If it failed determine whether it is due to missing
1720 # compiler or due to compiler error. Report pass, fail or unsupported
1721 # as appropriate
1722
1723 proc gdb_compile_test {src output} {
1724 if { $output == "" } {
1725 pass "compilation [file tail $src]"
1726 } elseif { [regexp {^[a-zA-Z_0-9]+: Can't find [^ ]+\.$} $output] } {
1727 unsupported "compilation [file tail $src]"
1728 } elseif { [regexp {.*: command not found[\r|\n]*$} $output] } {
1729 unsupported "compilation [file tail $src]"
1730 } elseif { [regexp {.*: [^\r\n]*compiler not installed[^\r\n]*[\r|\n]*$} $output] } {
1731 unsupported "compilation [file tail $src]"
1732 } else {
1733 verbose -log "compilation failed: $output" 2
1734 fail "compilation [file tail $src]"
1735 }
1736 }
1737
1738 # Return a 1 for configurations for which we don't even want to try to
1739 # test C++.
1740
1741 proc skip_cplus_tests {} {
1742 if { [istarget "h8300-*-*"] } {
1743 return 1
1744 }
1745
1746 # The C++ IO streams are too large for HC11/HC12 and are thus not
1747 # available. The gdb C++ tests use them and don't compile.
1748 if { [istarget "m6811-*-*"] } {
1749 return 1
1750 }
1751 if { [istarget "m6812-*-*"] } {
1752 return 1
1753 }
1754 return 0
1755 }
1756
1757 # Return a 1 for configurations for which don't have both C++ and the STL.
1758
1759 proc skip_stl_tests {} {
1760 # Symbian supports the C++ language, but the STL is missing
1761 # (both headers and libraries).
1762 if { [istarget "arm*-*-symbianelf*"] } {
1763 return 1
1764 }
1765
1766 return [skip_cplus_tests]
1767 }
1768
1769 # Return a 1 if I don't even want to try to test FORTRAN.
1770
1771 proc skip_fortran_tests {} {
1772 return 0
1773 }
1774
1775 # Return a 1 if I don't even want to try to test ada.
1776
1777 proc skip_ada_tests {} {
1778 return 0
1779 }
1780
1781 # Return a 1 if I don't even want to try to test GO.
1782
1783 proc skip_go_tests {} {
1784 return 0
1785 }
1786
1787 # Return a 1 if I don't even want to try to test D.
1788
1789 proc skip_d_tests {} {
1790 return 0
1791 }
1792
1793 # Return 1 to skip Rust tests, 0 to try them.
1794 proc skip_rust_tests {} {
1795 return [expr {![isnative]}]
1796 }
1797
1798 # Return a 1 for configurations that do not support Python scripting.
1799 # PROMPT_REGEXP is the expected prompt.
1800
1801 proc skip_python_tests_prompt { prompt_regexp } {
1802 global gdb_py_is_py3k
1803 global gdb_py_is_py24
1804
1805 gdb_test_multiple "python print ('test')" "verify python support" {
1806 -re "not supported.*$prompt_regexp" {
1807 unsupported "Python support is disabled."
1808 return 1
1809 }
1810 -re "$prompt_regexp" {}
1811 }
1812
1813 set gdb_py_is_py24 0
1814 gdb_test_multiple "python print (sys.version_info\[0\])" "check if python 3" {
1815 -re "3.*$prompt_regexp" {
1816 set gdb_py_is_py3k 1
1817 }
1818 -re ".*$prompt_regexp" {
1819 set gdb_py_is_py3k 0
1820 }
1821 }
1822 if { $gdb_py_is_py3k == 0 } {
1823 gdb_test_multiple "python print (sys.version_info\[1\])" "check if python 2.4" {
1824 -re "\[45\].*$prompt_regexp" {
1825 set gdb_py_is_py24 1
1826 }
1827 -re ".*$prompt_regexp" {
1828 set gdb_py_is_py24 0
1829 }
1830 }
1831 }
1832
1833 return 0
1834 }
1835
1836 # Return a 1 for configurations that do not support Python scripting.
1837 # Note: This also sets various globals that specify which version of Python
1838 # is in use. See skip_python_tests_prompt.
1839
1840 proc skip_python_tests {} {
1841 global gdb_prompt
1842 return [skip_python_tests_prompt "$gdb_prompt $"]
1843 }
1844
1845 # Return a 1 if we should skip shared library tests.
1846
1847 proc skip_shlib_tests {} {
1848 # Run the shared library tests on native systems.
1849 if {[isnative]} {
1850 return 0
1851 }
1852
1853 # An abbreviated list of remote targets where we should be able to
1854 # run shared library tests.
1855 if {([istarget *-*-linux*]
1856 || [istarget *-*-*bsd*]
1857 || [istarget *-*-solaris2*]
1858 || [istarget arm*-*-symbianelf*]
1859 || [istarget *-*-mingw*]
1860 || [istarget *-*-cygwin*]
1861 || [istarget *-*-pe*])} {
1862 return 0
1863 }
1864
1865 return 1
1866 }
1867
1868 # Return 1 if we should skip tui related tests.
1869
1870 proc skip_tui_tests {} {
1871 global gdb_prompt
1872
1873 gdb_test_multiple "help layout" "verify tui support" {
1874 -re "Undefined command: \"layout\".*$gdb_prompt $" {
1875 return 1
1876 }
1877 -re "$gdb_prompt $" {
1878 }
1879 }
1880
1881 return 0
1882 }
1883
1884 # Test files shall make sure all the test result lines in gdb.sum are
1885 # unique in a test run, so that comparing the gdb.sum files of two
1886 # test runs gives correct results. Test files that exercise
1887 # variations of the same tests more than once, shall prefix the
1888 # different test invocations with different identifying strings in
1889 # order to make them unique.
1890 #
1891 # About test prefixes:
1892 #
1893 # $pf_prefix is the string that dejagnu prints after the result (FAIL,
1894 # PASS, etc.), and before the test message/name in gdb.sum. E.g., the
1895 # underlined substring in
1896 #
1897 # PASS: gdb.base/mytest.exp: some test
1898 # ^^^^^^^^^^^^^^^^^^^^
1899 #
1900 # is $pf_prefix.
1901 #
1902 # The easiest way to adjust the test prefix is to append a test
1903 # variation prefix to the $pf_prefix, using the with_test_prefix
1904 # procedure. E.g.,
1905 #
1906 # proc do_tests {} {
1907 # gdb_test ... ... "test foo"
1908 # gdb_test ... ... "test bar"
1909 #
1910 # with_test_prefix "subvariation a" {
1911 # gdb_test ... ... "test x"
1912 # }
1913 #
1914 # with_test_prefix "subvariation b" {
1915 # gdb_test ... ... "test x"
1916 # }
1917 # }
1918 #
1919 # with_test_prefix "variation1" {
1920 # ...do setup for variation 1...
1921 # do_tests
1922 # }
1923 #
1924 # with_test_prefix "variation2" {
1925 # ...do setup for variation 2...
1926 # do_tests
1927 # }
1928 #
1929 # Results in:
1930 #
1931 # PASS: gdb.base/mytest.exp: variation1: test foo
1932 # PASS: gdb.base/mytest.exp: variation1: test bar
1933 # PASS: gdb.base/mytest.exp: variation1: subvariation a: test x
1934 # PASS: gdb.base/mytest.exp: variation1: subvariation b: test x
1935 # PASS: gdb.base/mytest.exp: variation2: test foo
1936 # PASS: gdb.base/mytest.exp: variation2: test bar
1937 # PASS: gdb.base/mytest.exp: variation2: subvariation a: test x
1938 # PASS: gdb.base/mytest.exp: variation2: subvariation b: test x
1939 #
1940 # If for some reason more flexibility is necessary, one can also
1941 # manipulate the pf_prefix global directly, treating it as a string.
1942 # E.g.,
1943 #
1944 # global pf_prefix
1945 # set saved_pf_prefix
1946 # append pf_prefix "${foo}: bar"
1947 # ... actual tests ...
1948 # set pf_prefix $saved_pf_prefix
1949 #
1950
1951 # Run BODY in the context of the caller, with the current test prefix
1952 # (pf_prefix) appended with one space, then PREFIX, and then a colon.
1953 # Returns the result of BODY.
1954 #
1955 proc with_test_prefix { prefix body } {
1956 global pf_prefix
1957
1958 set saved $pf_prefix
1959 append pf_prefix " " $prefix ":"
1960 set code [catch {uplevel 1 $body} result]
1961 set pf_prefix $saved
1962
1963 if {$code == 1} {
1964 global errorInfo errorCode
1965 return -code $code -errorinfo $errorInfo -errorcode $errorCode $result
1966 } else {
1967 return -code $code $result
1968 }
1969 }
1970
1971 # Wrapper for foreach that calls with_test_prefix on each iteration,
1972 # including the iterator's name and current value in the prefix.
1973
1974 proc foreach_with_prefix {var list body} {
1975 upvar 1 $var myvar
1976 foreach myvar $list {
1977 with_test_prefix "$var=$myvar" {
1978 uplevel 1 $body
1979 }
1980 }
1981 }
1982
1983 # Like TCL's native proc, but defines a procedure that wraps its body
1984 # within 'with_test_prefix "$proc_name" { ... }'.
1985 proc proc_with_prefix {name arguments body} {
1986 # Define the advertised proc.
1987 proc $name $arguments [list with_test_prefix $name $body]
1988 }
1989
1990
1991 # Run BODY in the context of the caller. After BODY is run, the variables
1992 # listed in VARS will be reset to the values they had before BODY was run.
1993 #
1994 # This is useful for providing a scope in which it is safe to temporarily
1995 # modify global variables, e.g.
1996 #
1997 # global INTERNAL_GDBFLAGS
1998 # global env
1999 #
2000 # set foo GDBHISTSIZE
2001 #
2002 # save_vars { INTERNAL_GDBFLAGS env($foo) env(HOME) } {
2003 # append INTERNAL_GDBFLAGS " -nx"
2004 # unset -nocomplain env(GDBHISTSIZE)
2005 # gdb_start
2006 # gdb_test ...
2007 # }
2008 #
2009 # Here, although INTERNAL_GDBFLAGS, env(GDBHISTSIZE) and env(HOME) may be
2010 # modified inside BODY, this proc guarantees that the modifications will be
2011 # undone after BODY finishes executing.
2012
2013 proc save_vars { vars body } {
2014 array set saved_scalars { }
2015 array set saved_arrays { }
2016 set unset_vars { }
2017
2018 foreach var $vars {
2019 # First evaluate VAR in the context of the caller in case the variable
2020 # name may be a not-yet-interpolated string like env($foo)
2021 set var [uplevel 1 list $var]
2022
2023 if [uplevel 1 [list info exists $var]] {
2024 if [uplevel 1 [list array exists $var]] {
2025 set saved_arrays($var) [uplevel 1 [list array get $var]]
2026 } else {
2027 set saved_scalars($var) [uplevel 1 [list set $var]]
2028 }
2029 } else {
2030 lappend unset_vars $var
2031 }
2032 }
2033
2034 set code [catch {uplevel 1 $body} result]
2035
2036 foreach {var value} [array get saved_scalars] {
2037 uplevel 1 [list set $var $value]
2038 }
2039
2040 foreach {var value} [array get saved_arrays] {
2041 uplevel 1 [list unset $var]
2042 uplevel 1 [list array set $var $value]
2043 }
2044
2045 foreach var $unset_vars {
2046 uplevel 1 [list unset -nocomplain $var]
2047 }
2048
2049 if {$code == 1} {
2050 global errorInfo errorCode
2051 return -code $code -errorinfo $errorInfo -errorcode $errorCode $result
2052 } else {
2053 return -code $code $result
2054 }
2055 }
2056
2057
2058 # Run tests in BODY with GDB prompt and variable $gdb_prompt set to
2059 # PROMPT. When BODY is finished, restore GDB prompt and variable
2060 # $gdb_prompt.
2061 # Returns the result of BODY.
2062 #
2063 # Notes:
2064 #
2065 # 1) If you want to use, for example, "(foo)" as the prompt you must pass it
2066 # as "(foo)", and not the regexp form "\(foo\)" (expressed as "\\(foo\\)" in
2067 # TCL). PROMPT is internally converted to a suitable regexp for matching.
2068 # We do the conversion from "(foo)" to "\(foo\)" here for a few reasons:
2069 # a) It's more intuitive for callers to pass the plain text form.
2070 # b) We need two forms of the prompt:
2071 # - a regexp to use in output matching,
2072 # - a value to pass to the "set prompt" command.
2073 # c) It's easier to convert the plain text form to its regexp form.
2074 #
2075 # 2) Don't add a trailing space, we do that here.
2076
2077 proc with_gdb_prompt { prompt body } {
2078 global gdb_prompt
2079
2080 # Convert "(foo)" to "\(foo\)".
2081 # We don't use string_to_regexp because while it works today it's not
2082 # clear it will work tomorrow: the value we need must work as both a
2083 # regexp *and* as the argument to the "set prompt" command, at least until
2084 # we start recording both forms separately instead of just $gdb_prompt.
2085 # The testsuite is pretty-much hardwired to interpret $gdb_prompt as the
2086 # regexp form.
2087 regsub -all {[]*+.|()^$\[\\]} $prompt {\\&} prompt
2088
2089 set saved $gdb_prompt
2090
2091 verbose -log "Setting gdb prompt to \"$prompt \"."
2092 set gdb_prompt $prompt
2093 gdb_test_no_output "set prompt $prompt " ""
2094
2095 set code [catch {uplevel 1 $body} result]
2096
2097 verbose -log "Restoring gdb prompt to \"$saved \"."
2098 set gdb_prompt $saved
2099 gdb_test_no_output "set prompt $saved " ""
2100
2101 if {$code == 1} {
2102 global errorInfo errorCode
2103 return -code $code -errorinfo $errorInfo -errorcode $errorCode $result
2104 } else {
2105 return -code $code $result
2106 }
2107 }
2108
2109 # Run tests in BODY with target-charset setting to TARGET_CHARSET. When
2110 # BODY is finished, restore target-charset.
2111
2112 proc with_target_charset { target_charset body } {
2113 global gdb_prompt
2114
2115 set saved ""
2116 gdb_test_multiple "show target-charset" "" {
2117 -re "The target character set is \".*; currently (.*)\"\..*$gdb_prompt " {
2118 set saved $expect_out(1,string)
2119 }
2120 -re "The target character set is \"(.*)\".*$gdb_prompt " {
2121 set saved $expect_out(1,string)
2122 }
2123 -re ".*$gdb_prompt " {
2124 fail "get target-charset"
2125 }
2126 }
2127
2128 gdb_test_no_output "set target-charset $target_charset" ""
2129
2130 set code [catch {uplevel 1 $body} result]
2131
2132 gdb_test_no_output "set target-charset $saved" ""
2133
2134 if {$code == 1} {
2135 global errorInfo errorCode
2136 return -code $code -errorinfo $errorInfo -errorcode $errorCode $result
2137 } else {
2138 return -code $code $result
2139 }
2140 }
2141
2142 # Switch the default spawn id to SPAWN_ID, so that gdb_test,
2143 # mi_gdb_test etc. default to using it.
2144
2145 proc switch_gdb_spawn_id {spawn_id} {
2146 global gdb_spawn_id
2147 global board board_info
2148
2149 set gdb_spawn_id $spawn_id
2150 set board [host_info name]
2151 set board_info($board,fileid) $spawn_id
2152 }
2153
2154 # Clear the default spawn id.
2155
2156 proc clear_gdb_spawn_id {} {
2157 global gdb_spawn_id
2158 global board board_info
2159
2160 unset -nocomplain gdb_spawn_id
2161 set board [host_info name]
2162 unset -nocomplain board_info($board,fileid)
2163 }
2164
2165 # Run BODY with SPAWN_ID as current spawn id.
2166
2167 proc with_spawn_id { spawn_id body } {
2168 global gdb_spawn_id
2169
2170 if [info exists gdb_spawn_id] {
2171 set saved_spawn_id $gdb_spawn_id
2172 }
2173
2174 switch_gdb_spawn_id $spawn_id
2175
2176 set code [catch {uplevel 1 $body} result]
2177
2178 if [info exists saved_spawn_id] {
2179 switch_gdb_spawn_id $saved_spawn_id
2180 } else {
2181 clear_gdb_spawn_id
2182 }
2183
2184 if {$code == 1} {
2185 global errorInfo errorCode
2186 return -code $code -errorinfo $errorInfo -errorcode $errorCode $result
2187 } else {
2188 return -code $code $result
2189 }
2190 }
2191
2192 # Select the largest timeout from all the timeouts:
2193 # - the local "timeout" variable of the scope two levels above,
2194 # - the global "timeout" variable,
2195 # - the board variable "gdb,timeout".
2196
2197 proc get_largest_timeout {} {
2198 upvar #0 timeout gtimeout
2199 upvar 2 timeout timeout
2200
2201 set tmt 0
2202 if [info exists timeout] {
2203 set tmt $timeout
2204 }
2205 if { [info exists gtimeout] && $gtimeout > $tmt } {
2206 set tmt $gtimeout
2207 }
2208 if { [target_info exists gdb,timeout]
2209 && [target_info gdb,timeout] > $tmt } {
2210 set tmt [target_info gdb,timeout]
2211 }
2212 if { $tmt == 0 } {
2213 # Eeeeew.
2214 set tmt 60
2215 }
2216
2217 return $tmt
2218 }
2219
2220 # Run tests in BODY with timeout increased by factor of FACTOR. When
2221 # BODY is finished, restore timeout.
2222
2223 proc with_timeout_factor { factor body } {
2224 global timeout
2225
2226 set savedtimeout $timeout
2227
2228 set timeout [expr [get_largest_timeout] * $factor]
2229 set code [catch {uplevel 1 $body} result]
2230
2231 set timeout $savedtimeout
2232 if {$code == 1} {
2233 global errorInfo errorCode
2234 return -code $code -errorinfo $errorInfo -errorcode $errorCode $result
2235 } else {
2236 return -code $code $result
2237 }
2238 }
2239
2240 # Return 1 if _Complex types are supported, otherwise, return 0.
2241
2242 gdb_caching_proc support_complex_tests {
2243
2244 if { [gdb_skip_float_test] } {
2245 # If floating point is not supported, _Complex is not
2246 # supported.
2247 return 0
2248 }
2249
2250 # Set up, compile, and execute a test program containing _Complex types.
2251 # Include the current process ID in the file names to prevent conflicts
2252 # with invocations for multiple testsuites.
2253 set src [standard_temp_file complex[pid].c]
2254 set exe [standard_temp_file complex[pid].x]
2255
2256 gdb_produce_source $src {
2257 int main() {
2258 _Complex float cf;
2259 _Complex double cd;
2260 _Complex long double cld;
2261 return 0;
2262 }
2263 }
2264
2265 verbose "compiling testfile $src" 2
2266 set compile_flags {debug nowarnings quiet}
2267 set lines [gdb_compile $src $exe executable $compile_flags]
2268 file delete $src
2269 file delete $exe
2270
2271 if ![string match "" $lines] then {
2272 verbose "testfile compilation failed, returning 0" 2
2273 set result 0
2274 } else {
2275 set result 1
2276 }
2277
2278 return $result
2279 }
2280
2281 # Return 1 if GDB can get a type for siginfo from the target, otherwise
2282 # return 0.
2283
2284 proc supports_get_siginfo_type {} {
2285 if { [istarget "*-*-linux*"] } {
2286 return 1
2287 } else {
2288 return 0
2289 }
2290 }
2291
2292 # Return 1 if the target supports hardware single stepping.
2293
2294 proc can_hardware_single_step {} {
2295
2296 if { [istarget "arm*-*-*"] || [istarget "mips*-*-*"]
2297 || [istarget "tic6x-*-*"] || [istarget "sparc*-*-linux*"]
2298 || [istarget "nios2-*-*"] } {
2299 return 0
2300 }
2301
2302 return 1
2303 }
2304
2305 # Return 1 if target hardware or OS supports single stepping to signal
2306 # handler, otherwise, return 0.
2307
2308 proc can_single_step_to_signal_handler {} {
2309 # Targets don't have hardware single step. On these targets, when
2310 # a signal is delivered during software single step, gdb is unable
2311 # to determine the next instruction addresses, because start of signal
2312 # handler is one of them.
2313 return [can_hardware_single_step]
2314 }
2315
2316 # Return 1 if target supports process record, otherwise return 0.
2317
2318 proc supports_process_record {} {
2319
2320 if [target_info exists gdb,use_precord] {
2321 return [target_info gdb,use_precord]
2322 }
2323
2324 if { [istarget "arm*-*-linux*"] || [istarget "x86_64-*-linux*"]
2325 || [istarget "i\[34567\]86-*-linux*"]
2326 || [istarget "aarch64*-*-linux*"]
2327 || [istarget "powerpc*-*-linux*"]
2328 || [istarget "s390*-*-linux*"] } {
2329 return 1
2330 }
2331
2332 return 0
2333 }
2334
2335 # Return 1 if target supports reverse debugging, otherwise return 0.
2336
2337 proc supports_reverse {} {
2338
2339 if [target_info exists gdb,can_reverse] {
2340 return [target_info gdb,can_reverse]
2341 }
2342
2343 if { [istarget "arm*-*-linux*"] || [istarget "x86_64-*-linux*"]
2344 || [istarget "i\[34567\]86-*-linux*"]
2345 || [istarget "aarch64*-*-linux*"]
2346 || [istarget "powerpc*-*-linux*"]
2347 || [istarget "s390*-*-linux*"] } {
2348 return 1
2349 }
2350
2351 return 0
2352 }
2353
2354 # Return 1 if readline library is used.
2355
2356 proc readline_is_used { } {
2357 global gdb_prompt
2358
2359 gdb_test_multiple "show editing" "" {
2360 -re ".*Editing of command lines as they are typed is on\..*$gdb_prompt $" {
2361 return 1
2362 }
2363 -re ".*$gdb_prompt $" {
2364 return 0
2365 }
2366 }
2367 }
2368
2369 # Return 1 if target is ELF.
2370 gdb_caching_proc is_elf_target {
2371 set me "is_elf_target"
2372
2373 set src [standard_temp_file is_elf_target[pid].c]
2374 set obj [standard_temp_file is_elf_target[pid].o]
2375
2376 gdb_produce_source $src {
2377 int foo () {return 0;}
2378 }
2379
2380 verbose "$me: compiling testfile $src" 2
2381 set lines [gdb_compile $src $obj object {quiet}]
2382
2383 file delete $src
2384
2385 if ![string match "" $lines] then {
2386 verbose "$me: testfile compilation failed, returning 0" 2
2387 return 0
2388 }
2389
2390 set fp_obj [open $obj "r"]
2391 fconfigure $fp_obj -translation binary
2392 set data [read $fp_obj]
2393 close $fp_obj
2394
2395 file delete $obj
2396
2397 set ELFMAG "\u007FELF"
2398
2399 if {[string compare -length 4 $data $ELFMAG] != 0} {
2400 verbose "$me: returning 0" 2
2401 return 0
2402 }
2403
2404 verbose "$me: returning 1" 2
2405 return 1
2406 }
2407
2408 # Return 1 if the memory at address zero is readable.
2409
2410 gdb_caching_proc is_address_zero_readable {
2411 global gdb_prompt
2412
2413 set ret 0
2414 gdb_test_multiple "x 0" "" {
2415 -re "Cannot access memory at address 0x0.*$gdb_prompt $" {
2416 set ret 0
2417 }
2418 -re ".*$gdb_prompt $" {
2419 set ret 1
2420 }
2421 }
2422
2423 return $ret
2424 }
2425
2426 # Produce source file NAME and write SOURCES into it.
2427
2428 proc gdb_produce_source { name sources } {
2429 set index 0
2430 set f [open $name "w"]
2431
2432 puts $f $sources
2433 close $f
2434 }
2435
2436 # Return 1 if target is ILP32.
2437 # This cannot be decided simply from looking at the target string,
2438 # as it might depend on externally passed compiler options like -m64.
2439 gdb_caching_proc is_ilp32_target {
2440 set me "is_ilp32_target"
2441
2442 set src [standard_temp_file ilp32[pid].c]
2443 set obj [standard_temp_file ilp32[pid].o]
2444
2445 gdb_produce_source $src {
2446 int dummy[sizeof (int) == 4
2447 && sizeof (void *) == 4
2448 && sizeof (long) == 4 ? 1 : -1];
2449 }
2450
2451 verbose "$me: compiling testfile $src" 2
2452 set lines [gdb_compile $src $obj object {quiet}]
2453 file delete $src
2454 file delete $obj
2455
2456 if ![string match "" $lines] then {
2457 verbose "$me: testfile compilation failed, returning 0" 2
2458 return 0
2459 }
2460
2461 verbose "$me: returning 1" 2
2462 return 1
2463 }
2464
2465 # Return 1 if target is LP64.
2466 # This cannot be decided simply from looking at the target string,
2467 # as it might depend on externally passed compiler options like -m64.
2468 gdb_caching_proc is_lp64_target {
2469 set me "is_lp64_target"
2470
2471 set src [standard_temp_file lp64[pid].c]
2472 set obj [standard_temp_file lp64[pid].o]
2473
2474 gdb_produce_source $src {
2475 int dummy[sizeof (int) == 4
2476 && sizeof (void *) == 8
2477 && sizeof (long) == 8 ? 1 : -1];
2478 }
2479
2480 verbose "$me: compiling testfile $src" 2
2481 set lines [gdb_compile $src $obj object {quiet}]
2482 file delete $src
2483 file delete $obj
2484
2485 if ![string match "" $lines] then {
2486 verbose "$me: testfile compilation failed, returning 0" 2
2487 return 0
2488 }
2489
2490 verbose "$me: returning 1" 2
2491 return 1
2492 }
2493
2494 # Return 1 if target has 64 bit addresses.
2495 # This cannot be decided simply from looking at the target string,
2496 # as it might depend on externally passed compiler options like -m64.
2497 gdb_caching_proc is_64_target {
2498 set me "is_64_target"
2499
2500 set src [standard_temp_file is64[pid].c]
2501 set obj [standard_temp_file is64[pid].o]
2502
2503 gdb_produce_source $src {
2504 int function(void) { return 3; }
2505 int dummy[sizeof (&function) == 8 ? 1 : -1];
2506 }
2507
2508 verbose "$me: compiling testfile $src" 2
2509 set lines [gdb_compile $src $obj object {quiet}]
2510 file delete $src
2511 file delete $obj
2512
2513 if ![string match "" $lines] then {
2514 verbose "$me: testfile compilation failed, returning 0" 2
2515 return 0
2516 }
2517
2518 verbose "$me: returning 1" 2
2519 return 1
2520 }
2521
2522 # Return 1 if target has x86_64 registers - either amd64 or x32.
2523 # x32 target identifies as x86_64-*-linux*, therefore it cannot be determined
2524 # just from the target string.
2525 gdb_caching_proc is_amd64_regs_target {
2526 if {![istarget "x86_64-*-*"] && ![istarget "i?86-*"]} {
2527 return 0
2528 }
2529
2530 set me "is_amd64_regs_target"
2531
2532 set src [standard_temp_file reg64[pid].s]
2533 set obj [standard_temp_file reg64[pid].o]
2534
2535 set list {}
2536 foreach reg \
2537 {rax rbx rcx rdx rsi rdi rbp rsp r8 r9 r10 r11 r12 r13 r14 r15} {
2538 lappend list "\tincq %$reg"
2539 }
2540 gdb_produce_source $src [join $list \n]
2541
2542 verbose "$me: compiling testfile $src" 2
2543 set lines [gdb_compile $src $obj object {quiet}]
2544 file delete $src
2545 file delete $obj
2546
2547 if ![string match "" $lines] then {
2548 verbose "$me: testfile compilation failed, returning 0" 2
2549 return 0
2550 }
2551
2552 verbose "$me: returning 1" 2
2553 return 1
2554 }
2555
2556 # Return 1 if this target is an x86 or x86-64 with -m32.
2557 proc is_x86_like_target {} {
2558 if {![istarget "x86_64-*-*"] && ![istarget i?86-*]} {
2559 return 0
2560 }
2561 return [expr [is_ilp32_target] && ![is_amd64_regs_target]]
2562 }
2563
2564 # Return 1 if this target is an arm or aarch32 on aarch64.
2565
2566 gdb_caching_proc is_aarch32_target {
2567 if { [istarget "arm*-*-*"] } {
2568 return 1
2569 }
2570
2571 if { ![istarget "aarch64*-*-*"] } {
2572 return 0
2573 }
2574
2575 set me "is_aarch32_target"
2576
2577 set src [standard_temp_file aarch32[pid].s]
2578 set obj [standard_temp_file aarch32[pid].o]
2579
2580 set list {}
2581 foreach reg \
2582 {r0 r1 r2 r3} {
2583 lappend list "\tmov $reg, $reg"
2584 }
2585 gdb_produce_source $src [join $list \n]
2586
2587 verbose "$me: compiling testfile $src" 2
2588 set lines [gdb_compile $src $obj object {quiet}]
2589 file delete $src
2590 file delete $obj
2591
2592 if ![string match "" $lines] then {
2593 verbose "$me: testfile compilation failed, returning 0" 2
2594 return 0
2595 }
2596
2597 verbose "$me: returning 1" 2
2598 return 1
2599 }
2600
2601 # Return 1 if this target is an aarch64, either lp64 or ilp32.
2602
2603 proc is_aarch64_target {} {
2604 if { ![istarget "aarch64*-*-*"] } {
2605 return 0
2606 }
2607
2608 return [expr ![is_aarch32_target]]
2609 }
2610
2611 # Return 1 if displaced stepping is supported on target, otherwise, return 0.
2612 proc support_displaced_stepping {} {
2613
2614 if { [istarget "x86_64-*-linux*"] || [istarget "i\[34567\]86-*-linux*"]
2615 || [istarget "arm*-*-linux*"] || [istarget "powerpc-*-linux*"]
2616 || [istarget "powerpc64-*-linux*"] || [istarget "s390*-*-*"]
2617 || [istarget "aarch64*-*-linux*"] } {
2618 return 1
2619 }
2620
2621 return 0
2622 }
2623
2624 # Run a test on the target to see if it supports vmx hardware. Return 0 if so,
2625 # 1 if it does not. Based on 'check_vmx_hw_available' from the GCC testsuite.
2626
2627 gdb_caching_proc skip_altivec_tests {
2628 global srcdir subdir gdb_prompt inferior_exited_re
2629
2630 set me "skip_altivec_tests"
2631
2632 # Some simulators are known to not support VMX instructions.
2633 if { [istarget powerpc-*-eabi] || [istarget powerpc*-*-eabispe] } {
2634 verbose "$me: target known to not support VMX, returning 1" 2
2635 return 1
2636 }
2637
2638 # Make sure we have a compiler that understands altivec.
2639 set compile_flags {debug nowarnings}
2640 if [get_compiler_info] {
2641 warning "Could not get compiler info"
2642 return 1
2643 }
2644 if [test_compiler_info gcc*] {
2645 set compile_flags "$compile_flags additional_flags=-maltivec"
2646 } elseif [test_compiler_info xlc*] {
2647 set compile_flags "$compile_flags additional_flags=-qaltivec"
2648 } else {
2649 verbose "Could not compile with altivec support, returning 1" 2
2650 return 1
2651 }
2652
2653 # Set up, compile, and execute a test program containing VMX instructions.
2654 # Include the current process ID in the file names to prevent conflicts
2655 # with invocations for multiple testsuites.
2656 set src [standard_temp_file vmx[pid].c]
2657 set exe [standard_temp_file vmx[pid].x]
2658
2659 gdb_produce_source $src {
2660 int main() {
2661 #ifdef __MACH__
2662 asm volatile ("vor v0,v0,v0");
2663 #else
2664 asm volatile ("vor 0,0,0");
2665 #endif
2666 return 0;
2667 }
2668 }
2669
2670 verbose "$me: compiling testfile $src" 2
2671 set lines [gdb_compile $src $exe executable $compile_flags]
2672 file delete $src
2673
2674 if ![string match "" $lines] then {
2675 verbose "$me: testfile compilation failed, returning 1" 2
2676 return 1
2677 }
2678
2679 # No error message, compilation succeeded so now run it via gdb.
2680
2681 gdb_exit
2682 gdb_start
2683 gdb_reinitialize_dir $srcdir/$subdir
2684 gdb_load "$exe"
2685 gdb_run_cmd
2686 gdb_expect {
2687 -re ".*Illegal instruction.*${gdb_prompt} $" {
2688 verbose -log "\n$me altivec hardware not detected"
2689 set skip_vmx_tests 1
2690 }
2691 -re ".*$inferior_exited_re normally.*${gdb_prompt} $" {
2692 verbose -log "\n$me: altivec hardware detected"
2693 set skip_vmx_tests 0
2694 }
2695 default {
2696 warning "\n$me: default case taken"
2697 set skip_vmx_tests 1
2698 }
2699 }
2700 gdb_exit
2701 remote_file build delete $exe
2702
2703 verbose "$me: returning $skip_vmx_tests" 2
2704 return $skip_vmx_tests
2705 }
2706
2707 # Run a test on the target to see if it supports vmx hardware. Return 0 if so,
2708 # 1 if it does not. Based on 'check_vmx_hw_available' from the GCC testsuite.
2709
2710 gdb_caching_proc skip_vsx_tests {
2711 global srcdir subdir gdb_prompt inferior_exited_re
2712
2713 set me "skip_vsx_tests"
2714
2715 # Some simulators are known to not support Altivec instructions, so
2716 # they won't support VSX instructions as well.
2717 if { [istarget powerpc-*-eabi] || [istarget powerpc*-*-eabispe] } {
2718 verbose "$me: target known to not support VSX, returning 1" 2
2719 return 1
2720 }
2721
2722 # Make sure we have a compiler that understands altivec.
2723 set compile_flags {debug nowarnings quiet}
2724 if [get_compiler_info] {
2725 warning "Could not get compiler info"
2726 return 1
2727 }
2728 if [test_compiler_info gcc*] {
2729 set compile_flags "$compile_flags additional_flags=-mvsx"
2730 } elseif [test_compiler_info xlc*] {
2731 set compile_flags "$compile_flags additional_flags=-qasm=gcc"
2732 } else {
2733 verbose "Could not compile with vsx support, returning 1" 2
2734 return 1
2735 }
2736
2737 set src [standard_temp_file vsx[pid].c]
2738 set exe [standard_temp_file vsx[pid].x]
2739
2740 gdb_produce_source $src {
2741 int main() {
2742 double a[2] = { 1.0, 2.0 };
2743 #ifdef __MACH__
2744 asm volatile ("lxvd2x v0,v0,%[addr]" : : [addr] "r" (a));
2745 #else
2746 asm volatile ("lxvd2x 0,0,%[addr]" : : [addr] "r" (a));
2747 #endif
2748 return 0;
2749 }
2750 }
2751
2752 verbose "$me: compiling testfile $src" 2
2753 set lines [gdb_compile $src $exe executable $compile_flags]
2754 file delete $src
2755
2756 if ![string match "" $lines] then {
2757 verbose "$me: testfile compilation failed, returning 1" 2
2758 return 1
2759 }
2760
2761 # No error message, compilation succeeded so now run it via gdb.
2762
2763 gdb_exit
2764 gdb_start
2765 gdb_reinitialize_dir $srcdir/$subdir
2766 gdb_load "$exe"
2767 gdb_run_cmd
2768 gdb_expect {
2769 -re ".*Illegal instruction.*${gdb_prompt} $" {
2770 verbose -log "\n$me VSX hardware not detected"
2771 set skip_vsx_tests 1
2772 }
2773 -re ".*$inferior_exited_re normally.*${gdb_prompt} $" {
2774 verbose -log "\n$me: VSX hardware detected"
2775 set skip_vsx_tests 0
2776 }
2777 default {
2778 warning "\n$me: default case taken"
2779 set skip_vsx_tests 1
2780 }
2781 }
2782 gdb_exit
2783 remote_file build delete $exe
2784
2785 verbose "$me: returning $skip_vsx_tests" 2
2786 return $skip_vsx_tests
2787 }
2788
2789 # Run a test on the target to see if it supports TSX hardware. Return 0 if so,
2790 # 1 if it does not. Based on 'check_vmx_hw_available' from the GCC testsuite.
2791
2792 gdb_caching_proc skip_tsx_tests {
2793 global srcdir subdir gdb_prompt inferior_exited_re
2794
2795 set me "skip_tsx_tests"
2796
2797 set src [standard_temp_file tsx[pid].c]
2798 set exe [standard_temp_file tsx[pid].x]
2799
2800 gdb_produce_source $src {
2801 int main() {
2802 asm volatile ("xbegin .L0");
2803 asm volatile ("xend");
2804 asm volatile (".L0: nop");
2805 return 0;
2806 }
2807 }
2808
2809 verbose "$me: compiling testfile $src" 2
2810 set lines [gdb_compile $src $exe executable {nowarnings quiet}]
2811 file delete $src
2812
2813 if ![string match "" $lines] then {
2814 verbose "$me: testfile compilation failed." 2
2815 return 1
2816 }
2817
2818 # No error message, compilation succeeded so now run it via gdb.
2819
2820 gdb_exit
2821 gdb_start
2822 gdb_reinitialize_dir $srcdir/$subdir
2823 gdb_load "$exe"
2824 gdb_run_cmd
2825 gdb_expect {
2826 -re ".*Illegal instruction.*${gdb_prompt} $" {
2827 verbose -log "$me: TSX hardware not detected."
2828 set skip_tsx_tests 1
2829 }
2830 -re ".*$inferior_exited_re normally.*${gdb_prompt} $" {
2831 verbose -log "$me: TSX hardware detected."
2832 set skip_tsx_tests 0
2833 }
2834 default {
2835 warning "\n$me: default case taken."
2836 set skip_tsx_tests 1
2837 }
2838 }
2839 gdb_exit
2840 remote_file build delete $exe
2841
2842 verbose "$me: returning $skip_tsx_tests" 2
2843 return $skip_tsx_tests
2844 }
2845
2846 # Run a test on the target to see if it supports btrace hardware. Return 0 if so,
2847 # 1 if it does not. Based on 'check_vmx_hw_available' from the GCC testsuite.
2848
2849 gdb_caching_proc skip_btrace_tests {
2850 global srcdir subdir gdb_prompt inferior_exited_re
2851
2852 set me "skip_btrace_tests"
2853 if { ![istarget "i?86-*-*"] && ![istarget "x86_64-*-*"] } {
2854 verbose "$me: target does not support btrace, returning 1" 2
2855 return 1
2856 }
2857
2858 # Set up, compile, and execute a test program.
2859 # Include the current process ID in the file names to prevent conflicts
2860 # with invocations for multiple testsuites.
2861 set src [standard_temp_file btrace[pid].c]
2862 set exe [standard_temp_file btrace[pid].x]
2863
2864 gdb_produce_source $src {
2865 int main(void) { return 0; }
2866 }
2867
2868 verbose "$me: compiling testfile $src" 2
2869 set compile_flags {debug nowarnings quiet}
2870 set lines [gdb_compile $src $exe executable $compile_flags]
2871
2872 if ![string match "" $lines] then {
2873 verbose "$me: testfile compilation failed, returning 1" 2
2874 file delete $src
2875 return 1
2876 }
2877
2878 # No error message, compilation succeeded so now run it via gdb.
2879
2880 gdb_exit
2881 gdb_start
2882 gdb_reinitialize_dir $srcdir/$subdir
2883 gdb_load $exe
2884 if ![runto_main] {
2885 file delete $src
2886 return 1
2887 }
2888 file delete $src
2889 # In case of an unexpected output, we return 2 as a fail value.
2890 set skip_btrace_tests 2
2891 gdb_test_multiple "record btrace" "check btrace support" {
2892 -re "You can't do that when your target is.*\r\n$gdb_prompt $" {
2893 set skip_btrace_tests 1
2894 }
2895 -re "Target does not support branch tracing.*\r\n$gdb_prompt $" {
2896 set skip_btrace_tests 1
2897 }
2898 -re "Could not enable branch tracing.*\r\n$gdb_prompt $" {
2899 set skip_btrace_tests 1
2900 }
2901 -re "^record btrace\r\n$gdb_prompt $" {
2902 set skip_btrace_tests 0
2903 }
2904 }
2905 gdb_exit
2906 remote_file build delete $exe
2907
2908 verbose "$me: returning $skip_btrace_tests" 2
2909 return $skip_btrace_tests
2910 }
2911
2912 # Run a test on the target to see if it supports btrace pt hardware.
2913 # Return 0 if so, 1 if it does not. Based on 'check_vmx_hw_available'
2914 # from the GCC testsuite.
2915
2916 gdb_caching_proc skip_btrace_pt_tests {
2917 global srcdir subdir gdb_prompt inferior_exited_re
2918
2919 set me "skip_btrace_tests"
2920 if { ![istarget "i?86-*-*"] && ![istarget "x86_64-*-*"] } {
2921 verbose "$me: target does not support btrace, returning 1" 2
2922 return 1
2923 }
2924
2925 # Set up, compile, and execute a test program.
2926 # Include the current process ID in the file names to prevent conflicts
2927 # with invocations for multiple testsuites.
2928 set src [standard_temp_file btrace[pid].c]
2929 set exe [standard_temp_file btrace[pid].x]
2930
2931 gdb_produce_source $src {
2932 int main(void) { return 0; }
2933 }
2934
2935 verbose "$me: compiling testfile $src" 2
2936 set compile_flags {debug nowarnings quiet}
2937 set lines [gdb_compile $src $exe executable $compile_flags]
2938
2939 if ![string match "" $lines] then {
2940 verbose "$me: testfile compilation failed, returning 1" 2
2941 file delete $src
2942 return 1
2943 }
2944
2945 # No error message, compilation succeeded so now run it via gdb.
2946
2947 gdb_exit
2948 gdb_start
2949 gdb_reinitialize_dir $srcdir/$subdir
2950 gdb_load $exe
2951 if ![runto_main] {
2952 file delete $src
2953 return 1
2954 }
2955 file delete $src
2956 # In case of an unexpected output, we return 2 as a fail value.
2957 set skip_btrace_tests 2
2958 gdb_test_multiple "record btrace pt" "check btrace pt support" {
2959 -re "You can't do that when your target is.*\r\n$gdb_prompt $" {
2960 set skip_btrace_tests 1
2961 }
2962 -re "Target does not support branch tracing.*\r\n$gdb_prompt $" {
2963 set skip_btrace_tests 1
2964 }
2965 -re "Could not enable branch tracing.*\r\n$gdb_prompt $" {
2966 set skip_btrace_tests 1
2967 }
2968 -re "support was disabled at compile time.*\r\n$gdb_prompt $" {
2969 set skip_btrace_tests 1
2970 }
2971 -re "^record btrace pt\r\n$gdb_prompt $" {
2972 set skip_btrace_tests 0
2973 }
2974 }
2975 gdb_exit
2976 remote_file build delete $exe
2977
2978 verbose "$me: returning $skip_btrace_tests" 2
2979 return $skip_btrace_tests
2980 }
2981
2982 # Return whether we should skip tests for showing inlined functions in
2983 # backtraces. Requires get_compiler_info and get_debug_format.
2984
2985 proc skip_inline_frame_tests {} {
2986 # GDB only recognizes inlining information in DWARF 2 (DWARF 3).
2987 if { ! [test_debug_format "DWARF 2"] } {
2988 return 1
2989 }
2990
2991 # GCC before 4.1 does not emit DW_AT_call_file / DW_AT_call_line.
2992 if { ([test_compiler_info "gcc-2-*"]
2993 || [test_compiler_info "gcc-3-*"]
2994 || [test_compiler_info "gcc-4-0-*"]) } {
2995 return 1
2996 }
2997
2998 return 0
2999 }
3000
3001 # Return whether we should skip tests for showing variables from
3002 # inlined functions. Requires get_compiler_info and get_debug_format.
3003
3004 proc skip_inline_var_tests {} {
3005 # GDB only recognizes inlining information in DWARF 2 (DWARF 3).
3006 if { ! [test_debug_format "DWARF 2"] } {
3007 return 1
3008 }
3009
3010 return 0
3011 }
3012
3013 # Return a 1 if we should skip tests that require hardware breakpoints
3014
3015 proc skip_hw_breakpoint_tests {} {
3016 # Skip tests if requested by the board (note that no_hardware_watchpoints
3017 # disables both watchpoints and breakpoints)
3018 if { [target_info exists gdb,no_hardware_watchpoints]} {
3019 return 1
3020 }
3021
3022 # These targets support hardware breakpoints natively
3023 if { [istarget "i?86-*-*"]
3024 || [istarget "x86_64-*-*"]
3025 || [istarget "ia64-*-*"]
3026 || [istarget "arm*-*-*"]
3027 || [istarget "aarch64*-*-*"]
3028 || [istarget "s390*-*-*"] } {
3029 return 0
3030 }
3031
3032 return 1
3033 }
3034
3035 # Return a 1 if we should skip tests that require hardware watchpoints
3036
3037 proc skip_hw_watchpoint_tests {} {
3038 # Skip tests if requested by the board
3039 if { [target_info exists gdb,no_hardware_watchpoints]} {
3040 return 1
3041 }
3042
3043 # These targets support hardware watchpoints natively
3044 if { [istarget "i?86-*-*"]
3045 || [istarget "x86_64-*-*"]
3046 || [istarget "ia64-*-*"]
3047 || [istarget "arm*-*-*"]
3048 || [istarget "aarch64*-*-*"]
3049 || [istarget "powerpc*-*-linux*"]
3050 || [istarget "s390*-*-*"] } {
3051 return 0
3052 }
3053
3054 return 1
3055 }
3056
3057 # Return a 1 if we should skip tests that require *multiple* hardware
3058 # watchpoints to be active at the same time
3059
3060 proc skip_hw_watchpoint_multi_tests {} {
3061 if { [skip_hw_watchpoint_tests] } {
3062 return 1
3063 }
3064
3065 # These targets support just a single hardware watchpoint
3066 if { [istarget "arm*-*-*"]
3067 || [istarget "powerpc*-*-linux*"] } {
3068 return 1
3069 }
3070
3071 return 0
3072 }
3073
3074 # Return a 1 if we should skip tests that require read/access watchpoints
3075
3076 proc skip_hw_watchpoint_access_tests {} {
3077 if { [skip_hw_watchpoint_tests] } {
3078 return 1
3079 }
3080
3081 # These targets support just write watchpoints
3082 if { [istarget "s390*-*-*"] } {
3083 return 1
3084 }
3085
3086 return 0
3087 }
3088
3089 # Return 1 if we should skip tests that require the runtime unwinder
3090 # hook. This must be invoked while gdb is running, after shared
3091 # libraries have been loaded. This is needed because otherwise a
3092 # shared libgcc won't be visible.
3093
3094 proc skip_unwinder_tests {} {
3095 global gdb_prompt
3096
3097 set ok 0
3098 gdb_test_multiple "print _Unwind_DebugHook" "check for unwinder hook" {
3099 -re "= .*no debug info.*_Unwind_DebugHook.*\r\n$gdb_prompt $" {
3100 }
3101 -re "= .*_Unwind_DebugHook.*\r\n$gdb_prompt $" {
3102 set ok 1
3103 }
3104 -re "No symbol .* in current context.\r\n$gdb_prompt $" {
3105 }
3106 }
3107 if {!$ok} {
3108 gdb_test_multiple "info probe" "check for stap probe in unwinder" {
3109 -re ".*libgcc.*unwind.*\r\n$gdb_prompt $" {
3110 set ok 1
3111 }
3112 -re "\r\n$gdb_prompt $" {
3113 }
3114 }
3115 }
3116 return $ok
3117 }
3118
3119 # Return 0 if we should skip tests that require the libstdc++ stap
3120 # probes. This must be invoked while gdb is running, after shared
3121 # libraries have been loaded.
3122
3123 proc skip_libstdcxx_probe_tests {} {
3124 global gdb_prompt
3125
3126 set ok 0
3127 gdb_test_multiple "info probe" "check for stap probe in libstdc++" {
3128 -re ".*libstdcxx.*catch.*\r\n$gdb_prompt $" {
3129 set ok 1
3130 }
3131 -re "\r\n$gdb_prompt $" {
3132 }
3133 }
3134 return $ok
3135 }
3136
3137 # Return 1 if we should skip tests of the "compile" feature.
3138 # This must be invoked after the inferior has been started.
3139
3140 proc skip_compile_feature_tests {} {
3141 global gdb_prompt
3142
3143 set result 0
3144 gdb_test_multiple "compile code -- ;" "check for working compile command" {
3145 "Could not load libcc1.*\r\n$gdb_prompt $" {
3146 set result 1
3147 }
3148 -re "Command not supported on this host\\..*\r\n$gdb_prompt $" {
3149 set result 1
3150 }
3151 -re "\r\n$gdb_prompt $" {
3152 }
3153 }
3154 return $result
3155 }
3156
3157 # Helper for gdb_is_target_* procs. TARGET_NAME is the name of the target
3158 # we're looking for (used to build the test name). TARGET_STACK_REGEXP
3159 # is a regexp that will match the output of "maint print target-stack" if
3160 # the target in question is currently pushed. PROMPT_REGEXP is a regexp
3161 # matching the expected prompt after the command output.
3162
3163 proc gdb_is_target_1 { target_name target_stack_regexp prompt_regexp } {
3164 set test "probe for target ${target_name}"
3165 gdb_test_multiple "maint print target-stack" $test {
3166 -re "${target_stack_regexp}${prompt_regexp}" {
3167 pass $test
3168 return 1
3169 }
3170 -re "$prompt_regexp" {
3171 pass $test
3172 }
3173 }
3174 return 0
3175 }
3176
3177 # Helper for gdb_is_target_remote where the expected prompt is variable.
3178
3179 proc gdb_is_target_remote_prompt { prompt_regexp } {
3180 return [gdb_is_target_1 "remote" ".*emote serial target in gdb-specific protocol.*" $prompt_regexp]
3181 }
3182
3183 # Check whether we're testing with the remote or extended-remote
3184 # targets.
3185
3186 proc gdb_is_target_remote { } {
3187 global gdb_prompt
3188
3189 return [gdb_is_target_remote_prompt "$gdb_prompt $"]
3190 }
3191
3192 # Check whether we're testing with the native target.
3193
3194 proc gdb_is_target_native { } {
3195 global gdb_prompt
3196
3197 return [gdb_is_target_1 "native" ".*native \\(Native process\\).*" "$gdb_prompt $"]
3198 }
3199
3200 # Return the effective value of use_gdb_stub.
3201 #
3202 # If the use_gdb_stub global has been set (it is set when the gdb process is
3203 # spawned), return that. Otherwise, return the value of the use_gdb_stub
3204 # property from the board file.
3205 #
3206 # This is the preferred way of checking use_gdb_stub, since it allows to check
3207 # the value before the gdb has been spawned and it will return the correct value
3208 # even when it was overriden by the test.
3209
3210 proc use_gdb_stub {} {
3211 global use_gdb_stub
3212
3213 if [info exists use_gdb_stub] {
3214 return $use_gdb_stub
3215 }
3216
3217 return [target_info exists use_gdb_stub]
3218 }
3219
3220 # Return 1 if the current remote target is an instance of our GDBserver, 0
3221 # otherwise. Return -1 if there was an error and we can't tell.
3222
3223 gdb_caching_proc target_is_gdbserver {
3224 global gdb_prompt
3225
3226 set is_gdbserver -1
3227 set test "probing for GDBserver"
3228
3229 gdb_test_multiple "monitor help" $test {
3230 -re "The following monitor commands are supported.*Quit GDBserver.*$gdb_prompt $" {
3231 set is_gdbserver 1
3232 }
3233 -re "$gdb_prompt $" {
3234 set is_gdbserver 0
3235 }
3236 }
3237
3238 if { $is_gdbserver == -1 } {
3239 verbose -log "Unable to tell whether we are using GDBserver or not."
3240 }
3241
3242 return $is_gdbserver
3243 }
3244
3245 # N.B. compiler_info is intended to be local to this file.
3246 # Call test_compiler_info with no arguments to fetch its value.
3247 # Yes, this is counterintuitive when there's get_compiler_info,
3248 # but that's the current API.
3249 if [info exists compiler_info] {
3250 unset compiler_info
3251 }
3252
3253 set gcc_compiled 0
3254
3255 # Figure out what compiler I am using.
3256 # The result is cached so only the first invocation runs the compiler.
3257 #
3258 # ARG can be empty or "C++". If empty, "C" is assumed.
3259 #
3260 # There are several ways to do this, with various problems.
3261 #
3262 # [ gdb_compile -E $ifile -o $binfile.ci ]
3263 # source $binfile.ci
3264 #
3265 # Single Unix Spec v3 says that "-E -o ..." together are not
3266 # specified. And in fact, the native compiler on hp-ux 11 (among
3267 # others) does not work with "-E -o ...". Most targets used to do
3268 # this, and it mostly worked, because it works with gcc.
3269 #
3270 # [ catch "exec $compiler -E $ifile > $binfile.ci" exec_output ]
3271 # source $binfile.ci
3272 #
3273 # This avoids the problem with -E and -o together. This almost works
3274 # if the build machine is the same as the host machine, which is
3275 # usually true of the targets which are not gcc. But this code does
3276 # not figure which compiler to call, and it always ends up using the C
3277 # compiler. Not good for setting hp_aCC_compiler. Target
3278 # hppa*-*-hpux* used to do this.
3279 #
3280 # [ gdb_compile -E $ifile > $binfile.ci ]
3281 # source $binfile.ci
3282 #
3283 # dejagnu target_compile says that it supports output redirection,
3284 # but the code is completely different from the normal path and I
3285 # don't want to sweep the mines from that path. So I didn't even try
3286 # this.
3287 #
3288 # set cppout [ gdb_compile $ifile "" preprocess $args quiet ]
3289 # eval $cppout
3290 #
3291 # I actually do this for all targets now. gdb_compile runs the right
3292 # compiler, and TCL captures the output, and I eval the output.
3293 #
3294 # Unfortunately, expect logs the output of the command as it goes by,
3295 # and dejagnu helpfully prints a second copy of it right afterwards.
3296 # So I turn off expect logging for a moment.
3297 #
3298 # [ gdb_compile $ifile $ciexe_file executable $args ]
3299 # [ remote_exec $ciexe_file ]
3300 # [ source $ci_file.out ]
3301 #
3302 # I could give up on -E and just do this.
3303 # I didn't get desperate enough to try this.
3304 #
3305 # -- chastain 2004-01-06
3306
3307 proc get_compiler_info {{arg ""}} {
3308 # For compiler.c and compiler.cc
3309 global srcdir
3310
3311 # I am going to play with the log to keep noise out.
3312 global outdir
3313 global tool
3314
3315 # These come from compiler.c or compiler.cc
3316 global compiler_info
3317
3318 # Legacy global data symbols.
3319 global gcc_compiled
3320
3321 if [info exists compiler_info] {
3322 # Already computed.
3323 return 0
3324 }
3325
3326 # Choose which file to preprocess.
3327 set ifile "${srcdir}/lib/compiler.c"
3328 if { $arg == "c++" } {
3329 set ifile "${srcdir}/lib/compiler.cc"
3330 }
3331
3332 # Run $ifile through the right preprocessor.
3333 # Toggle gdb.log to keep the compiler output out of the log.
3334 set saved_log [log_file -info]
3335 log_file
3336 if [is_remote host] {
3337 # We have to use -E and -o together, despite the comments
3338 # above, because of how DejaGnu handles remote host testing.
3339 set ppout "$outdir/compiler.i"
3340 gdb_compile "${ifile}" "$ppout" preprocess [list "$arg" quiet]
3341 set file [open $ppout r]
3342 set cppout [read $file]
3343 close $file
3344 } else {
3345 set cppout [ gdb_compile "${ifile}" "" preprocess [list "$arg" quiet] ]
3346 }
3347 eval log_file $saved_log
3348
3349 # Eval the output.
3350 set unknown 0
3351 foreach cppline [ split "$cppout" "\n" ] {
3352 if { [ regexp "^#" "$cppline" ] } {
3353 # line marker
3354 } elseif { [ regexp "^\[\n\r\t \]*$" "$cppline" ] } {
3355 # blank line
3356 } elseif { [ regexp "^\[\n\r\t \]*set\[\n\r\t \]" "$cppline" ] } {
3357 # eval this line
3358 verbose "get_compiler_info: $cppline" 2
3359 eval "$cppline"
3360 } else {
3361 # unknown line
3362 verbose -log "get_compiler_info: $cppline"
3363 set unknown 1
3364 }
3365 }
3366
3367 # Set to unknown if for some reason compiler_info didn't get defined.
3368 if ![info exists compiler_info] {
3369 verbose -log "get_compiler_info: compiler_info not provided"
3370 set compiler_info "unknown"
3371 }
3372 # Also set to unknown compiler if any diagnostics happened.
3373 if { $unknown } {
3374 verbose -log "get_compiler_info: got unexpected diagnostics"
3375 set compiler_info "unknown"
3376 }
3377
3378 # Set the legacy symbols.
3379 set gcc_compiled 0
3380 regexp "^gcc-(\[0-9\]+)-" "$compiler_info" matchall gcc_compiled
3381
3382 # Log what happened.
3383 verbose -log "get_compiler_info: $compiler_info"
3384
3385 # Most compilers will evaluate comparisons and other boolean
3386 # operations to 0 or 1.
3387 uplevel \#0 { set true 1 }
3388 uplevel \#0 { set false 0 }
3389
3390 return 0
3391 }
3392
3393 # Return the compiler_info string if no arg is provided.
3394 # Otherwise the argument is a glob-style expression to match against
3395 # compiler_info.
3396
3397 proc test_compiler_info { {compiler ""} } {
3398 global compiler_info
3399 get_compiler_info
3400
3401 # If no arg, return the compiler_info string.
3402 if [string match "" $compiler] {
3403 return $compiler_info
3404 }
3405
3406 return [string match $compiler $compiler_info]
3407 }
3408
3409 proc current_target_name { } {
3410 global target_info
3411 if [info exists target_info(target,name)] {
3412 set answer $target_info(target,name)
3413 } else {
3414 set answer ""
3415 }
3416 return $answer
3417 }
3418
3419 set gdb_wrapper_initialized 0
3420 set gdb_wrapper_target ""
3421
3422 proc gdb_wrapper_init { args } {
3423 global gdb_wrapper_initialized
3424 global gdb_wrapper_file
3425 global gdb_wrapper_flags
3426 global gdb_wrapper_target
3427
3428 if { $gdb_wrapper_initialized == 1 } { return; }
3429
3430 if {[target_info exists needs_status_wrapper] && \
3431 [target_info needs_status_wrapper] != "0"} {
3432 set result [build_wrapper "testglue.o"]
3433 if { $result != "" } {
3434 set gdb_wrapper_file [lindex $result 0]
3435 set gdb_wrapper_flags [lindex $result 1]
3436 } else {
3437 warning "Status wrapper failed to build."
3438 }
3439 }
3440 set gdb_wrapper_initialized 1
3441 set gdb_wrapper_target [current_target_name]
3442 }
3443
3444 # Determine options that we always want to pass to the compiler.
3445 gdb_caching_proc universal_compile_options {
3446 set me "universal_compile_options"
3447 set options {}
3448
3449 set src [standard_temp_file ccopts[pid].c]
3450 set obj [standard_temp_file ccopts[pid].o]
3451
3452 gdb_produce_source $src {
3453 int foo(void) { return 0; }
3454 }
3455
3456 # Try an option for disabling colored diagnostics. Some compilers
3457 # yield colored diagnostics by default (when run from a tty) unless
3458 # such an option is specified.
3459 set opt "additional_flags=-fdiagnostics-color=never"
3460 set lines [target_compile $src $obj object [list "quiet" $opt]]
3461 if [string match "" $lines] then {
3462 # Seems to have worked; use the option.
3463 lappend options $opt
3464 }
3465 file delete $src
3466 file delete $obj
3467
3468 verbose "$me: returning $options" 2
3469 return $options
3470 }
3471
3472 # Some targets need to always link a special object in. Save its path here.
3473 global gdb_saved_set_unbuffered_mode_obj
3474 set gdb_saved_set_unbuffered_mode_obj ""
3475
3476 # Compile source files specified by SOURCE into a binary of type TYPE at path
3477 # DEST. gdb_compile is implemented using DejaGnu's target_compile, so the type
3478 # parameter and most options are passed directly to it.
3479 #
3480 # The type can be one of the following:
3481 #
3482 # - object: Compile into an object file.
3483 # - executable: Compile and link into an executable.
3484 # - preprocess: Preprocess the source files.
3485 # - assembly: Generate assembly listing.
3486 #
3487 # The following options are understood and processed by gdb_compile:
3488 #
3489 # - shlib=so_path: Add SO_PATH to the sources, and enable some target-specific
3490 # quirks to be able to use shared libraries.
3491 # - shlib_load: Link with appropriate libraries to allow the test to
3492 # dynamically load libraries at runtime. For example, on Linux, this adds
3493 # -ldl so that the test can use dlopen.
3494 # - nowarnings: Inhibit all compiler warnings.
3495 #
3496 # And here are some of the not too obscure options understood by DejaGnu that
3497 # influence the compilation:
3498 #
3499 # - additional_flags=flag: Add FLAG to the compiler flags.
3500 # - libs=library: Add LIBRARY to the libraries passed to the linker. The
3501 # argument can be a file, in which case it's added to the sources, or a
3502 # linker flag.
3503 # - ldflags=flag: Add FLAG to the linker flags.
3504 # - incdir=path: Add PATH to the searched include directories.
3505 # - libdir=path: Add PATH to the linker searched directories.
3506 # - ada, c++, f77: Compile the file as Ada, C++ or Fortran.
3507 # - debug: Build with debug information.
3508 # - optimize: Build with optimization.
3509
3510 proc gdb_compile {source dest type options} {
3511 global GDB_TESTCASE_OPTIONS
3512 global gdb_wrapper_file
3513 global gdb_wrapper_flags
3514 global gdb_wrapper_initialized
3515 global srcdir
3516 global objdir
3517 global gdb_saved_set_unbuffered_mode_obj
3518
3519 set outdir [file dirname $dest]
3520
3521 # Add platform-specific options if a shared library was specified using
3522 # "shlib=librarypath" in OPTIONS.
3523 set new_options {}
3524 if {[lsearch -exact $options rust] != -1} {
3525 # -fdiagnostics-color is not a rustcc option.
3526 } else {
3527 set new_options [universal_compile_options]
3528 }
3529 set shlib_found 0
3530 set shlib_load 0
3531 foreach opt $options {
3532 if {[regexp {^shlib=(.*)} $opt dummy_var shlib_name]
3533 && $type == "executable"} {
3534 if [test_compiler_info "xlc-*"] {
3535 # IBM xlc compiler doesn't accept shared library named other
3536 # than .so: use "-Wl," to bypass this
3537 lappend source "-Wl,$shlib_name"
3538 } elseif { ([istarget "*-*-mingw*"]
3539 || [istarget *-*-cygwin*]
3540 || [istarget *-*-pe*])} {
3541 lappend source "${shlib_name}.a"
3542 } else {
3543 lappend source $shlib_name
3544 }
3545 if { $shlib_found == 0 } {
3546 set shlib_found 1
3547 if { ([istarget "*-*-mingw*"]
3548 || [istarget *-*-cygwin*]) } {
3549 lappend new_options "additional_flags=-Wl,--enable-auto-import"
3550 }
3551 if { [test_compiler_info "gcc-*"] || [test_compiler_info "clang-*"] } {
3552 # Undo debian's change in the default.
3553 # Put it at the front to not override any user-provided
3554 # value, and to make sure it appears in front of all the
3555 # shlibs!
3556 lappend new_options "early_flags=-Wl,--no-as-needed"
3557 }
3558 }
3559 } elseif { $opt == "shlib_load" && $type == "executable" } {
3560 set shlib_load 1
3561 } else {
3562 lappend new_options $opt
3563 }
3564 }
3565
3566 # Because we link with libraries using their basename, we may need
3567 # (depending on the platform) to set a special rpath value, to allow
3568 # the executable to find the libraries it depends on.
3569 if { $shlib_load || $shlib_found } {
3570 if { ([istarget "*-*-mingw*"]
3571 || [istarget *-*-cygwin*]
3572 || [istarget *-*-pe*]) } {
3573 # Do not need anything.
3574 } elseif { [istarget *-*-freebsd*] || [istarget *-*-openbsd*] } {
3575 lappend new_options "ldflags=-Wl,-rpath,${outdir}"
3576 } elseif { [istarget arm*-*-symbianelf*] } {
3577 if { $shlib_load } {
3578 lappend new_options "libs=-ldl"
3579 }
3580 } else {
3581 if { $shlib_load } {
3582 lappend new_options "libs=-ldl"
3583 }
3584 lappend new_options "ldflags=-Wl,-rpath,\\\$ORIGIN"
3585 }
3586 }
3587 set options $new_options
3588
3589 if [info exists GDB_TESTCASE_OPTIONS] {
3590 lappend options "additional_flags=$GDB_TESTCASE_OPTIONS"
3591 }
3592 verbose "options are $options"
3593 verbose "source is $source $dest $type $options"
3594
3595 if { $gdb_wrapper_initialized == 0 } { gdb_wrapper_init }
3596
3597 if {[target_info exists needs_status_wrapper] && \
3598 [target_info needs_status_wrapper] != "0" && \
3599 [info exists gdb_wrapper_file]} {
3600 lappend options "libs=${gdb_wrapper_file}"
3601 lappend options "ldflags=${gdb_wrapper_flags}"
3602 }
3603
3604 # Replace the "nowarnings" option with the appropriate additional_flags
3605 # to disable compiler warnings.
3606 set nowarnings [lsearch -exact $options nowarnings]
3607 if {$nowarnings != -1} {
3608 if [target_info exists gdb,nowarnings_flag] {
3609 set flag "additional_flags=[target_info gdb,nowarnings_flag]"
3610 } else {
3611 set flag "additional_flags=-w"
3612 }
3613 set options [lreplace $options $nowarnings $nowarnings $flag]
3614 }
3615
3616 if { $type == "executable" } {
3617 if { ([istarget "*-*-mingw*"]
3618 || [istarget "*-*-*djgpp"]
3619 || [istarget "*-*-cygwin*"])} {
3620 # Force output to unbuffered mode, by linking in an object file
3621 # with a global contructor that calls setvbuf.
3622 #
3623 # Compile the special object seperatelly for two reasons:
3624 # 1) Insulate it from $options.
3625 # 2) Avoid compiling it for every gdb_compile invocation,
3626 # which is time consuming, especially if we're remote
3627 # host testing.
3628 #
3629 if { $gdb_saved_set_unbuffered_mode_obj == "" } {
3630 verbose "compiling gdb_saved_set_unbuffered_obj"
3631 set unbuf_src ${srcdir}/lib/set_unbuffered_mode.c
3632 set unbuf_obj ${objdir}/set_unbuffered_mode.o
3633
3634 set result [gdb_compile "${unbuf_src}" "${unbuf_obj}" object {nowarnings}]
3635 if { $result != "" } {
3636 return $result
3637 }
3638 if {[is_remote host]} {
3639 set gdb_saved_set_unbuffered_mode_obj set_unbuffered_mode_saved.o
3640 } else {
3641 set gdb_saved_set_unbuffered_mode_obj ${objdir}/set_unbuffered_mode_saved.o
3642 }
3643 # Link a copy of the output object, because the
3644 # original may be automatically deleted.
3645 remote_download host $unbuf_obj $gdb_saved_set_unbuffered_mode_obj
3646 } else {
3647 verbose "gdb_saved_set_unbuffered_obj already compiled"
3648 }
3649
3650 # Rely on the internal knowledge that the global ctors are ran in
3651 # reverse link order. In that case, we can use ldflags to
3652 # avoid copying the object file to the host multiple
3653 # times.
3654 # This object can only be added if standard libraries are
3655 # used. Thus, we need to disable it if -nostdlib option is used
3656 if {[lsearch -regexp $options "-nostdlib"] < 0 } {
3657 lappend options "ldflags=$gdb_saved_set_unbuffered_mode_obj"
3658 }
3659 }
3660 }
3661
3662 set result [target_compile $source $dest $type $options]
3663
3664 # Prune uninteresting compiler (and linker) output.
3665 regsub "Creating library file: \[^\r\n\]*\[\r\n\]+" $result "" result
3666
3667 regsub "\[\r\n\]*$" "$result" "" result
3668 regsub "^\[\r\n\]*" "$result" "" result
3669
3670 if {[lsearch $options quiet] < 0} {
3671 # We shall update this on a per language basis, to avoid
3672 # changing the entire testsuite in one go.
3673 if {[lsearch $options f77] >= 0} {
3674 gdb_compile_test $source $result
3675 } elseif { $result != "" } {
3676 clone_output "gdb compile failed, $result"
3677 }
3678 }
3679 return $result
3680 }
3681
3682
3683 # This is just like gdb_compile, above, except that it tries compiling
3684 # against several different thread libraries, to see which one this
3685 # system has.
3686 proc gdb_compile_pthreads {source dest type options} {
3687 set built_binfile 0
3688 set why_msg "unrecognized error"
3689 foreach lib {-lpthreads -lpthread -lthread ""} {
3690 # This kind of wipes out whatever libs the caller may have
3691 # set. Or maybe theirs will override ours. How infelicitous.
3692 set options_with_lib [concat $options [list libs=$lib quiet]]
3693 set ccout [gdb_compile $source $dest $type $options_with_lib]
3694 switch -regexp -- $ccout {
3695 ".*no posix threads support.*" {
3696 set why_msg "missing threads include file"
3697 break
3698 }
3699 ".*cannot open -lpthread.*" {
3700 set why_msg "missing runtime threads library"
3701 }
3702 ".*Can't find library for -lpthread.*" {
3703 set why_msg "missing runtime threads library"
3704 }
3705 {^$} {
3706 pass "successfully compiled posix threads test case"
3707 set built_binfile 1
3708 break
3709 }
3710 }
3711 }
3712 if {!$built_binfile} {
3713 unsupported "couldn't compile [file tail $source]: ${why_msg}"
3714 return -1
3715 }
3716 }
3717
3718 # Build a shared library from SOURCES.
3719
3720 proc gdb_compile_shlib {sources dest options} {
3721 set obj_options $options
3722
3723 set info_options ""
3724 if { [lsearch -exact $options "c++"] >= 0 } {
3725 set info_options "c++"
3726 }
3727 if [get_compiler_info ${info_options}] {
3728 return -1
3729 }
3730
3731 switch -glob [test_compiler_info] {
3732 "xlc-*" {
3733 lappend obj_options "additional_flags=-qpic"
3734 }
3735 "clang-*" {
3736 if { !([istarget "*-*-cygwin*"]
3737 || [istarget "*-*-mingw*"]) } {
3738 lappend obj_options "additional_flags=-fpic"
3739 }
3740 }
3741 "gcc-*" {
3742 if { !([istarget "powerpc*-*-aix*"]
3743 || [istarget "rs6000*-*-aix*"]
3744 || [istarget "*-*-cygwin*"]
3745 || [istarget "*-*-mingw*"]
3746 || [istarget "*-*-pe*"]) } {
3747 lappend obj_options "additional_flags=-fpic"
3748 }
3749 }
3750 "icc-*" {
3751 lappend obj_options "additional_flags=-fpic"
3752 }
3753 default {
3754 # don't know what the compiler is...
3755 }
3756 }
3757
3758 set outdir [file dirname $dest]
3759 set objects ""
3760 foreach source $sources {
3761 set sourcebase [file tail $source]
3762 if {[gdb_compile $source "${outdir}/${sourcebase}.o" object $obj_options] != ""} {
3763 return -1
3764 }
3765 lappend objects ${outdir}/${sourcebase}.o
3766 }
3767
3768 set link_options $options
3769 if [test_compiler_info "xlc-*"] {
3770 lappend link_options "additional_flags=-qmkshrobj"
3771 } else {
3772 lappend link_options "additional_flags=-shared"
3773
3774 if { ([istarget "*-*-mingw*"]
3775 || [istarget *-*-cygwin*]
3776 || [istarget *-*-pe*]) } {
3777 if { [is_remote host] } {
3778 set name [file tail ${dest}]
3779 } else {
3780 set name ${dest}
3781 }
3782 lappend link_options "additional_flags=-Wl,--out-implib,${name}.a"
3783 } else {
3784 # Set the soname of the library. This causes the linker on ELF
3785 # systems to create the DT_NEEDED entry in the executable referring
3786 # to the soname of the library, and not its absolute path. This
3787 # (using the absolute path) would be problem when testing on a
3788 # remote target.
3789 #
3790 # In conjunction with setting the soname, we add the special
3791 # rpath=$ORIGIN value when building the executable, so that it's
3792 # able to find the library in its own directory.
3793 set destbase [file tail $dest]
3794 lappend link_options "additional_flags=-Wl,-soname,$destbase"
3795 }
3796 }
3797 if {[gdb_compile "${objects}" "${dest}" executable $link_options] != ""} {
3798 return -1
3799 }
3800 if { [is_remote host]
3801 && ([istarget "*-*-mingw*"]
3802 || [istarget *-*-cygwin*]
3803 || [istarget *-*-pe*]) } {
3804 set dest_tail_name [file tail ${dest}]
3805 remote_upload host $dest_tail_name.a ${dest}.a
3806 remote_file host delete $dest_tail_name.a
3807 }
3808
3809 return ""
3810 }
3811
3812 # This is just like gdb_compile_shlib, above, except that it tries compiling
3813 # against several different thread libraries, to see which one this
3814 # system has.
3815 proc gdb_compile_shlib_pthreads {sources dest options} {
3816 set built_binfile 0
3817 set why_msg "unrecognized error"
3818 foreach lib {-lpthreads -lpthread -lthread ""} {
3819 # This kind of wipes out whatever libs the caller may have
3820 # set. Or maybe theirs will override ours. How infelicitous.
3821 set options_with_lib [concat $options [list libs=$lib quiet]]
3822 set ccout [gdb_compile_shlib $sources $dest $options_with_lib]
3823 switch -regexp -- $ccout {
3824 ".*no posix threads support.*" {
3825 set why_msg "missing threads include file"
3826 break
3827 }
3828 ".*cannot open -lpthread.*" {
3829 set why_msg "missing runtime threads library"
3830 }
3831 ".*Can't find library for -lpthread.*" {
3832 set why_msg "missing runtime threads library"
3833 }
3834 {^$} {
3835 pass "successfully compiled posix threads test case"
3836 set built_binfile 1
3837 break
3838 }
3839 }
3840 }
3841 if {!$built_binfile} {
3842 unsupported "couldn't compile $sources: ${why_msg}"
3843 return -1
3844 }
3845 }
3846
3847 # This is just like gdb_compile_pthreads, above, except that we always add the
3848 # objc library for compiling Objective-C programs
3849 proc gdb_compile_objc {source dest type options} {
3850 set built_binfile 0
3851 set why_msg "unrecognized error"
3852 foreach lib {-lobjc -lpthreads -lpthread -lthread solaris} {
3853 # This kind of wipes out whatever libs the caller may have
3854 # set. Or maybe theirs will override ours. How infelicitous.
3855 if { $lib == "solaris" } {
3856 set lib "-lpthread -lposix4"
3857 }
3858 if { $lib != "-lobjc" } {
3859 set lib "-lobjc $lib"
3860 }
3861 set options_with_lib [concat $options [list libs=$lib quiet]]
3862 set ccout [gdb_compile $source $dest $type $options_with_lib]
3863 switch -regexp -- $ccout {
3864 ".*no posix threads support.*" {
3865 set why_msg "missing threads include file"
3866 break
3867 }
3868 ".*cannot open -lpthread.*" {
3869 set why_msg "missing runtime threads library"
3870 }
3871 ".*Can't find library for -lpthread.*" {
3872 set why_msg "missing runtime threads library"
3873 }
3874 {^$} {
3875 pass "successfully compiled objc with posix threads test case"
3876 set built_binfile 1
3877 break
3878 }
3879 }
3880 }
3881 if {!$built_binfile} {
3882 unsupported "couldn't compile [file tail $source]: ${why_msg}"
3883 return -1
3884 }
3885 }
3886
3887 proc send_gdb { string } {
3888 global suppress_flag
3889 if { $suppress_flag } {
3890 return "suppressed"
3891 }
3892 return [remote_send host "$string"]
3893 }
3894
3895 # Send STRING to the inferior's terminal.
3896
3897 proc send_inferior { string } {
3898 global inferior_spawn_id
3899
3900 if {[catch "send -i $inferior_spawn_id -- \$string" errorInfo]} {
3901 return "$errorInfo"
3902 } else {
3903 return ""
3904 }
3905 }
3906
3907 #
3908 #
3909
3910 proc gdb_expect { args } {
3911 if { [llength $args] == 2 && [lindex $args 0] != "-re" } {
3912 set atimeout [lindex $args 0]
3913 set expcode [list [lindex $args 1]]
3914 } else {
3915 set expcode $args
3916 }
3917
3918 # A timeout argument takes precedence, otherwise of all the timeouts
3919 # select the largest.
3920 if [info exists atimeout] {
3921 set tmt $atimeout
3922 } else {
3923 set tmt [get_largest_timeout]
3924 }
3925
3926 global suppress_flag
3927 global remote_suppress_flag
3928 if [info exists remote_suppress_flag] {
3929 set old_val $remote_suppress_flag
3930 }
3931 if [info exists suppress_flag] {
3932 if { $suppress_flag } {
3933 set remote_suppress_flag 1
3934 }
3935 }
3936 set code [catch \
3937 {uplevel remote_expect host $tmt $expcode} string]
3938 if [info exists old_val] {
3939 set remote_suppress_flag $old_val
3940 } else {
3941 if [info exists remote_suppress_flag] {
3942 unset remote_suppress_flag
3943 }
3944 }
3945
3946 if {$code == 1} {
3947 global errorInfo errorCode
3948
3949 return -code error -errorinfo $errorInfo -errorcode $errorCode $string
3950 } else {
3951 return -code $code $string
3952 }
3953 }
3954
3955 # gdb_expect_list TEST SENTINEL LIST -- expect a sequence of outputs
3956 #
3957 # Check for long sequence of output by parts.
3958 # TEST: is the test message to be printed with the test success/fail.
3959 # SENTINEL: Is the terminal pattern indicating that output has finished.
3960 # LIST: is the sequence of outputs to match.
3961 # If the sentinel is recognized early, it is considered an error.
3962 #
3963 # Returns:
3964 # 1 if the test failed,
3965 # 0 if the test passes,
3966 # -1 if there was an internal error.
3967
3968 proc gdb_expect_list {test sentinel list} {
3969 global gdb_prompt
3970 global suppress_flag
3971 set index 0
3972 set ok 1
3973 if { $suppress_flag } {
3974 set ok 0
3975 unresolved "${test}"
3976 }
3977 while { ${index} < [llength ${list}] } {
3978 set pattern [lindex ${list} ${index}]
3979 set index [expr ${index} + 1]
3980 verbose -log "gdb_expect_list pattern: /$pattern/" 2
3981 if { ${index} == [llength ${list}] } {
3982 if { ${ok} } {
3983 gdb_expect {
3984 -re "${pattern}${sentinel}" {
3985 # pass "${test}, pattern ${index} + sentinel"
3986 }
3987 -re "${sentinel}" {
3988 fail "${test} (pattern ${index} + sentinel)"
3989 set ok 0
3990 }
3991 -re ".*A problem internal to GDB has been detected" {
3992 fail "${test} (GDB internal error)"
3993 set ok 0
3994 gdb_internal_error_resync
3995 }
3996 timeout {
3997 fail "${test} (pattern ${index} + sentinel) (timeout)"
3998 set ok 0
3999 }
4000 }
4001 } else {
4002 # unresolved "${test}, pattern ${index} + sentinel"
4003 }
4004 } else {
4005 if { ${ok} } {
4006 gdb_expect {
4007 -re "${pattern}" {
4008 # pass "${test}, pattern ${index}"
4009 }
4010 -re "${sentinel}" {
4011 fail "${test} (pattern ${index})"
4012 set ok 0
4013 }
4014 -re ".*A problem internal to GDB has been detected" {
4015 fail "${test} (GDB internal error)"
4016 set ok 0
4017 gdb_internal_error_resync
4018 }
4019 timeout {
4020 fail "${test} (pattern ${index}) (timeout)"
4021 set ok 0
4022 }
4023 }
4024 } else {
4025 # unresolved "${test}, pattern ${index}"
4026 }
4027 }
4028 }
4029 if { ${ok} } {
4030 pass "${test}"
4031 return 0
4032 } else {
4033 return 1
4034 }
4035 }
4036
4037 #
4038 #
4039 proc gdb_suppress_entire_file { reason } {
4040 global suppress_flag
4041
4042 warning "$reason\n"
4043 set suppress_flag -1
4044 }
4045
4046 #
4047 # Set suppress_flag, which will cause all subsequent calls to send_gdb and
4048 # gdb_expect to fail immediately (until the next call to
4049 # gdb_stop_suppressing_tests).
4050 #
4051 proc gdb_suppress_tests { args } {
4052 global suppress_flag
4053
4054 return; # fnf - disable pending review of results where
4055 # testsuite ran better without this
4056 incr suppress_flag
4057
4058 if { $suppress_flag == 1 } {
4059 if { [llength $args] > 0 } {
4060 warning "[lindex $args 0]\n"
4061 } else {
4062 warning "Because of previous failure, all subsequent tests in this group will automatically fail.\n"
4063 }
4064 }
4065 }
4066
4067 #
4068 # Clear suppress_flag.
4069 #
4070 proc gdb_stop_suppressing_tests { } {
4071 global suppress_flag
4072
4073 if [info exists suppress_flag] {
4074 if { $suppress_flag > 0 } {
4075 set suppress_flag 0
4076 clone_output "Tests restarted.\n"
4077 }
4078 } else {
4079 set suppress_flag 0
4080 }
4081 }
4082
4083 proc gdb_clear_suppressed { } {
4084 global suppress_flag
4085
4086 set suppress_flag 0
4087 }
4088
4089 # Spawn the gdb process.
4090 #
4091 # This doesn't expect any output or do any other initialization,
4092 # leaving those to the caller.
4093 #
4094 # Overridable function -- you can override this function in your
4095 # baseboard file.
4096
4097 proc gdb_spawn { } {
4098 default_gdb_spawn
4099 }
4100
4101 # Spawn GDB with CMDLINE_FLAGS appended to the GDBFLAGS global.
4102
4103 proc gdb_spawn_with_cmdline_opts { cmdline_flags } {
4104 global GDBFLAGS
4105
4106 set saved_gdbflags $GDBFLAGS
4107
4108 if {$GDBFLAGS != ""} {
4109 append GDBFLAGS " "
4110 }
4111 append GDBFLAGS $cmdline_flags
4112
4113 set res [gdb_spawn]
4114
4115 set GDBFLAGS $saved_gdbflags
4116
4117 return $res
4118 }
4119
4120 # Start gdb running, wait for prompt, and disable the pagers.
4121
4122 # Overridable function -- you can override this function in your
4123 # baseboard file.
4124
4125 proc gdb_start { } {
4126 default_gdb_start
4127 }
4128
4129 proc gdb_exit { } {
4130 catch default_gdb_exit
4131 }
4132
4133 # Return true if we can spawn a program on the target and attach to
4134 # it.
4135
4136 proc can_spawn_for_attach { } {
4137 # We use exp_pid to get the inferior's pid, assuming that gives
4138 # back the pid of the program. On remote boards, that would give
4139 # us instead the PID of e.g., the ssh client, etc.
4140 if [is_remote target] then {
4141 return 0
4142 }
4143
4144 # The "attach" command doesn't make sense when the target is
4145 # stub-like, where GDB finds the program already started on
4146 # initial connection.
4147 if {[target_info exists use_gdb_stub]} {
4148 return 0
4149 }
4150
4151 # Assume yes.
4152 return 1
4153 }
4154
4155 # Kill a progress previously started with spawn_wait_for_attach, and
4156 # reap its wait status. PROC_SPAWN_ID is the spawn id associated with
4157 # the process.
4158
4159 proc kill_wait_spawned_process { proc_spawn_id } {
4160 set pid [exp_pid -i $proc_spawn_id]
4161
4162 verbose -log "killing ${pid}"
4163 remote_exec build "kill -9 ${pid}"
4164
4165 verbose -log "closing ${proc_spawn_id}"
4166 catch "close -i $proc_spawn_id"
4167 verbose -log "waiting for ${proc_spawn_id}"
4168
4169 # If somehow GDB ends up still attached to the process here, a
4170 # blocking wait hangs until gdb is killed (or until gdb / the
4171 # ptracer reaps the exit status too, but that won't happen because
4172 # something went wrong.) Passing -nowait makes expect tell Tcl to
4173 # wait for the PID in the background. That's fine because we
4174 # don't care about the exit status. */
4175 wait -nowait -i $proc_spawn_id
4176 }
4177
4178 # Returns the process id corresponding to the given spawn id.
4179
4180 proc spawn_id_get_pid { spawn_id } {
4181 set testpid [exp_pid -i $spawn_id]
4182
4183 if { [istarget "*-*-cygwin*"] } {
4184 # testpid is the Cygwin PID, GDB uses the Windows PID, which
4185 # might be different due to the way fork/exec works.
4186 set testpid [ exec ps -e | gawk "{ if (\$1 == $testpid) print \$4; }" ]
4187 }
4188
4189 return $testpid
4190 }
4191
4192 # Start a set of programs running and then wait for a bit, to be sure
4193 # that they can be attached to. Return a list of processes spawn IDs,
4194 # one element for each process spawned. It's a test error to call
4195 # this when [can_spawn_for_attach] is false.
4196
4197 proc spawn_wait_for_attach { executable_list } {
4198 set spawn_id_list {}
4199
4200 if ![can_spawn_for_attach] {
4201 # The caller should have checked can_spawn_for_attach itself
4202 # before getting here.
4203 error "can't spawn for attach with this target/board"
4204 }
4205
4206 foreach {executable} $executable_list {
4207 # Note we use Expect's spawn, not Tcl's exec, because with
4208 # spawn we control when to wait for/reap the process. That
4209 # allows killing the process by PID without being subject to
4210 # pid-reuse races.
4211 lappend spawn_id_list [remote_spawn target $executable]
4212 }
4213
4214 sleep 2
4215
4216 return $spawn_id_list
4217 }
4218
4219 #
4220 # gdb_load_cmd -- load a file into the debugger.
4221 # ARGS - additional args to load command.
4222 # return a -1 if anything goes wrong.
4223 #
4224 proc gdb_load_cmd { args } {
4225 global gdb_prompt
4226
4227 if [target_info exists gdb_load_timeout] {
4228 set loadtimeout [target_info gdb_load_timeout]
4229 } else {
4230 set loadtimeout 1600
4231 }
4232 send_gdb "load $args\n"
4233 verbose "Timeout is now $loadtimeout seconds" 2
4234 gdb_expect $loadtimeout {
4235 -re "Loading section\[^\r\]*\r\n" {
4236 exp_continue
4237 }
4238 -re "Start address\[\r\]*\r\n" {
4239 exp_continue
4240 }
4241 -re "Transfer rate\[\r\]*\r\n" {
4242 exp_continue
4243 }
4244 -re "Memory access error\[^\r\]*\r\n" {
4245 perror "Failed to load program"
4246 return -1
4247 }
4248 -re "$gdb_prompt $" {
4249 return 0
4250 }
4251 -re "(.*)\r\n$gdb_prompt " {
4252 perror "Unexpected reponse from 'load' -- $expect_out(1,string)"
4253 return -1
4254 }
4255 timeout {
4256 perror "Timed out trying to load $args."
4257 return -1
4258 }
4259 }
4260 return -1
4261 }
4262
4263 # Invoke "gcore". CORE is the name of the core file to write. TEST
4264 # is the name of the test case. This will return 1 if the core file
4265 # was created, 0 otherwise. If this fails to make a core file because
4266 # this configuration of gdb does not support making core files, it
4267 # will call "unsupported", not "fail". However, if this fails to make
4268 # a core file for some other reason, then it will call "fail".
4269
4270 proc gdb_gcore_cmd {core test} {
4271 global gdb_prompt
4272
4273 set result 0
4274 gdb_test_multiple "gcore $core" $test {
4275 -re "Saved corefile .*\[\r\n\]+$gdb_prompt $" {
4276 pass $test
4277 set result 1
4278 }
4279 -re "(?:Can't create a corefile|Target does not support core file generation\\.)\[\r\n\]+$gdb_prompt $" {
4280 unsupported $test
4281 }
4282 }
4283
4284 return $result
4285 }
4286
4287 # Load core file CORE. TEST is the name of the test case.
4288 # This will record a pass/fail for loading the core file.
4289 # Returns:
4290 # 1 - core file is successfully loaded
4291 # 0 - core file loaded but has a non fatal error
4292 # -1 - core file failed to load
4293
4294 proc gdb_core_cmd { core test } {
4295 global gdb_prompt
4296
4297 gdb_test_multiple "core $core" "$test" {
4298 -re "\\\[Thread debugging using \[^ \r\n\]* enabled\\\]\r\n" {
4299 exp_continue
4300 }
4301 -re " is not a core dump:.*\r\n$gdb_prompt $" {
4302 fail "$test (bad file format)"
4303 return -1
4304 }
4305 -re ": No such file or directory.*\r\n$gdb_prompt $" {
4306 fail "$test (file not found)"
4307 return -1
4308 }
4309 -re "Couldn't find .* registers in core file.*\r\n$gdb_prompt $" {
4310 fail "$test (incomplete note section)"
4311 return 0
4312 }
4313 -re "Core was generated by .*\r\n$gdb_prompt $" {
4314 pass "$test"
4315 return 1
4316 }
4317 -re ".*$gdb_prompt $" {
4318 fail "$test"
4319 return -1
4320 }
4321 timeout {
4322 fail "$test (timeout)"
4323 return -1
4324 }
4325 }
4326 fail "unsupported output from 'core' command"
4327 return -1
4328 }
4329
4330 # Return the filename to download to the target and load on the target
4331 # for this shared library. Normally just LIBNAME, unless shared libraries
4332 # for this target have separate link and load images.
4333
4334 proc shlib_target_file { libname } {
4335 return $libname
4336 }
4337
4338 # Return the filename GDB will load symbols from when debugging this
4339 # shared library. Normally just LIBNAME, unless shared libraries for
4340 # this target have separate link and load images.
4341
4342 proc shlib_symbol_file { libname } {
4343 return $libname
4344 }
4345
4346 # Return the filename to download to the target and load for this
4347 # executable. Normally just BINFILE unless it is renamed to something
4348 # else for this target.
4349
4350 proc exec_target_file { binfile } {
4351 return $binfile
4352 }
4353
4354 # Return the filename GDB will load symbols from when debugging this
4355 # executable. Normally just BINFILE unless executables for this target
4356 # have separate files for symbols.
4357
4358 proc exec_symbol_file { binfile } {
4359 return $binfile
4360 }
4361
4362 # Rename the executable file. Normally this is just BINFILE1 being renamed
4363 # to BINFILE2, but some targets require multiple binary files.
4364 proc gdb_rename_execfile { binfile1 binfile2 } {
4365 file rename -force [exec_target_file ${binfile1}] \
4366 [exec_target_file ${binfile2}]
4367 if { [exec_target_file ${binfile1}] != [exec_symbol_file ${binfile1}] } {
4368 file rename -force [exec_symbol_file ${binfile1}] \
4369 [exec_symbol_file ${binfile2}]
4370 }
4371 }
4372
4373 # "Touch" the executable file to update the date. Normally this is just
4374 # BINFILE, but some targets require multiple files.
4375 proc gdb_touch_execfile { binfile } {
4376 set time [clock seconds]
4377 file mtime [exec_target_file ${binfile}] $time
4378 if { [exec_target_file ${binfile}] != [exec_symbol_file ${binfile}] } {
4379 file mtime [exec_symbol_file ${binfile}] $time
4380 }
4381 }
4382
4383 # Like remote_download but provides a gdb-specific behavior.
4384 #
4385 # If the destination board is remote, the local file FROMFILE is transferred as
4386 # usual with remote_download to TOFILE on the remote board. The destination
4387 # filename is added to the CLEANFILES global, so it can be cleaned up at the
4388 # end of the test.
4389 #
4390 # If the destination board is local, the destination path TOFILE is passed
4391 # through standard_output_file, and FROMFILE is copied there.
4392 #
4393 # In both cases, if TOFILE is omitted, it defaults to the [file tail] of
4394 # FROMFILE.
4395
4396 proc gdb_remote_download {dest fromfile {tofile {}}} {
4397 # If TOFILE is not given, default to the same filename as FROMFILE.
4398 if {[string length $tofile] == 0} {
4399 set tofile [file tail $fromfile]
4400 }
4401
4402 if {[is_remote $dest]} {
4403 # When the DEST is remote, we simply send the file to DEST.
4404 global cleanfiles
4405
4406 set destname [remote_download $dest $fromfile $tofile]
4407 lappend cleanfiles $destname
4408
4409 return $destname
4410 } else {
4411 # When the DEST is local, we copy the file to the test directory (where
4412 # the executable is).
4413 #
4414 # Note that we pass TOFILE through standard_output_file, regardless of
4415 # whether it is absolute or relative, because we don't want the tests
4416 # to be able to write outside their standard output directory.
4417
4418 set tofile [standard_output_file $tofile]
4419
4420 file copy -force $fromfile $tofile
4421
4422 return $tofile
4423 }
4424 }
4425
4426 # gdb_load_shlib LIB...
4427 #
4428 # Copy the listed library to the target.
4429
4430 proc gdb_load_shlib { file } {
4431 set dest [gdb_remote_download target [shlib_target_file $file]]
4432
4433 if {[is_remote target]} {
4434 # If the target is remote, we need to tell gdb where to find the
4435 # libraries.
4436 #
4437 # We could set this even when not testing remotely, but a user
4438 # generally won't set it unless necessary. In order to make the tests
4439 # more like the real-life scenarios, we don't set it for local testing.
4440 gdb_test "set solib-search-path [file dirname $file]" "" ""
4441 }
4442
4443 return $dest
4444 }
4445
4446 #
4447 # gdb_load -- load a file into the debugger. Specifying no file
4448 # defaults to the executable currently being debugged.
4449 # The return value is 0 for success, -1 for failure.
4450 # Many files in config/*.exp override this procedure.
4451 #
4452 proc gdb_load { arg } {
4453 if { $arg != "" } {
4454 return [gdb_file_cmd $arg]
4455 }
4456 return 0
4457 }
4458
4459 # gdb_reload -- load a file into the target. Called before "running",
4460 # either the first time or after already starting the program once,
4461 # for remote targets. Most files that override gdb_load should now
4462 # override this instead.
4463
4464 proc gdb_reload { } {
4465 # For the benefit of existing configurations, default to gdb_load.
4466 # Specifying no file defaults to the executable currently being
4467 # debugged.
4468 return [gdb_load ""]
4469 }
4470
4471 proc gdb_continue { function } {
4472 global decimal
4473
4474 return [gdb_test "continue" ".*Breakpoint $decimal, $function .*" "continue to $function"]
4475 }
4476
4477 proc default_gdb_init { test_file_name } {
4478 global gdb_wrapper_initialized
4479 global gdb_wrapper_target
4480 global gdb_test_file_name
4481 global cleanfiles
4482 global pf_prefix
4483
4484 set cleanfiles {}
4485
4486 gdb_clear_suppressed
4487
4488 set gdb_test_file_name [file rootname [file tail $test_file_name]]
4489
4490 # Make sure that the wrapper is rebuilt
4491 # with the appropriate multilib option.
4492 if { $gdb_wrapper_target != [current_target_name] } {
4493 set gdb_wrapper_initialized 0
4494 }
4495
4496 # Unlike most tests, we have a small number of tests that generate
4497 # a very large amount of output. We therefore increase the expect
4498 # buffer size to be able to contain the entire test output. This
4499 # is especially needed by gdb.base/info-macros.exp.
4500 match_max -d 65536
4501 # Also set this value for the currently running GDB.
4502 match_max [match_max -d]
4503
4504 # We want to add the name of the TCL testcase to the PASS/FAIL messages.
4505 set pf_prefix "[file tail [file dirname $test_file_name]]/[file tail $test_file_name]:"
4506
4507 global gdb_prompt
4508 if [target_info exists gdb_prompt] {
4509 set gdb_prompt [target_info gdb_prompt]
4510 } else {
4511 set gdb_prompt "\\(gdb\\)"
4512 }
4513 global use_gdb_stub
4514 if [info exists use_gdb_stub] {
4515 unset use_gdb_stub
4516 }
4517 }
4518
4519 # Return a path using GDB_PARALLEL.
4520 # ARGS is a list of path elements to append to "$objdir/$GDB_PARALLEL".
4521 # GDB_PARALLEL must be defined, the caller must check.
4522 #
4523 # The default value for GDB_PARALLEL is, canonically, ".".
4524 # The catch is that tests don't expect an additional "./" in file paths so
4525 # omit any directory for the default case.
4526 # GDB_PARALLEL is written as "yes" for the default case in Makefile.in to mark
4527 # its special handling.
4528
4529 proc make_gdb_parallel_path { args } {
4530 global GDB_PARALLEL objdir
4531 set joiner [list "file" "join" $objdir]
4532 if { [info exists GDB_PARALLEL] && $GDB_PARALLEL != "yes" } {
4533 lappend joiner $GDB_PARALLEL
4534 }
4535 set joiner [concat $joiner $args]
4536 return [eval $joiner]
4537 }
4538
4539 # Turn BASENAME into a full file name in the standard output
4540 # directory. It is ok if BASENAME is the empty string; in this case
4541 # the directory is returned.
4542
4543 proc standard_output_file {basename} {
4544 global objdir subdir gdb_test_file_name
4545
4546 set dir [make_gdb_parallel_path outputs $subdir $gdb_test_file_name]
4547 file mkdir $dir
4548 return [file join $dir $basename]
4549 }
4550
4551 # Return the name of a file in our standard temporary directory.
4552
4553 proc standard_temp_file {basename} {
4554 # Since a particular runtest invocation is only executing a single test
4555 # file at any given time, we can use the runtest pid to build the
4556 # path of the temp directory.
4557 set dir [make_gdb_parallel_path temp [pid]]
4558 file mkdir $dir
4559 return [file join $dir $basename]
4560 }
4561
4562 # Set 'testfile', 'srcfile', and 'binfile'.
4563 #
4564 # ARGS is a list of source file specifications.
4565 # Without any arguments, the .exp file's base name is used to
4566 # compute the source file name. The ".c" extension is added in this case.
4567 # If ARGS is not empty, each entry is a source file specification.
4568 # If the specification starts with a ".", it is treated as a suffix
4569 # to append to the .exp file's base name.
4570 # If the specification is the empty string, it is treated as if it
4571 # were ".c".
4572 # Otherwise it is a file name.
4573 # The first file in the list is used to set the 'srcfile' global.
4574 # Each subsequent name is used to set 'srcfile2', 'srcfile3', etc.
4575 #
4576 # Most tests should call this without arguments.
4577 #
4578 # If a completely different binary file name is needed, then it
4579 # should be handled in the .exp file with a suitable comment.
4580
4581 proc standard_testfile {args} {
4582 global gdb_test_file_name
4583 global subdir
4584 global gdb_test_file_last_vars
4585
4586 # Outputs.
4587 global testfile binfile
4588
4589 set testfile $gdb_test_file_name
4590 set binfile [standard_output_file ${testfile}]
4591
4592 if {[llength $args] == 0} {
4593 set args .c
4594 }
4595
4596 # Unset our previous output variables.
4597 # This can help catch hidden bugs.
4598 if {[info exists gdb_test_file_last_vars]} {
4599 foreach varname $gdb_test_file_last_vars {
4600 global $varname
4601 catch {unset $varname}
4602 }
4603 }
4604 # 'executable' is often set by tests.
4605 set gdb_test_file_last_vars {executable}
4606
4607 set suffix ""
4608 foreach arg $args {
4609 set varname srcfile$suffix
4610 global $varname
4611
4612 # Handle an extension.
4613 if {$arg == ""} {
4614 set arg $testfile.c
4615 } elseif {[string range $arg 0 0] == "."} {
4616 set arg $testfile$arg
4617 }
4618
4619 set $varname $arg
4620 lappend gdb_test_file_last_vars $varname
4621
4622 if {$suffix == ""} {
4623 set suffix 2
4624 } else {
4625 incr suffix
4626 }
4627 }
4628 }
4629
4630 # The default timeout used when testing GDB commands. We want to use
4631 # the same timeout as the default dejagnu timeout, unless the user has
4632 # already provided a specific value (probably through a site.exp file).
4633 global gdb_test_timeout
4634 if ![info exists gdb_test_timeout] {
4635 set gdb_test_timeout $timeout
4636 }
4637
4638 # A list of global variables that GDB testcases should not use.
4639 # We try to prevent their use by monitoring write accesses and raising
4640 # an error when that happens.
4641 set banned_variables { bug_id prms_id }
4642
4643 # A list of procedures that GDB testcases should not use.
4644 # We try to prevent their use by monitoring invocations and raising
4645 # an error when that happens.
4646 set banned_procedures { strace }
4647
4648 # gdb_init is called by runtest at start, but also by several
4649 # tests directly; gdb_finish is only called from within runtest after
4650 # each test source execution.
4651 # Placing several traces by repetitive calls to gdb_init leads
4652 # to problems, as only one trace is removed in gdb_finish.
4653 # To overcome this possible problem, we add a variable that records
4654 # if the banned variables and procedures are already traced.
4655 set banned_traced 0
4656
4657 proc gdb_init { test_file_name } {
4658 # Reset the timeout value to the default. This way, any testcase
4659 # that changes the timeout value without resetting it cannot affect
4660 # the timeout used in subsequent testcases.
4661 global gdb_test_timeout
4662 global timeout
4663 set timeout $gdb_test_timeout
4664
4665 if { [regexp ".*gdb\.reverse\/.*" $test_file_name]
4666 && [target_info exists gdb_reverse_timeout] } {
4667 set timeout [target_info gdb_reverse_timeout]
4668 }
4669
4670 # If GDB_INOTIFY is given, check for writes to '.'. This is a
4671 # debugging tool to help confirm that the test suite is
4672 # parallel-safe. You need "inotifywait" from the
4673 # inotify-tools package to use this.
4674 global GDB_INOTIFY inotify_pid
4675 if {[info exists GDB_INOTIFY] && ![info exists inotify_pid]} {
4676 global outdir tool inotify_log_file
4677
4678 set exclusions {outputs temp gdb[.](log|sum) cache}
4679 set exclusion_re ([join $exclusions |])
4680
4681 set inotify_log_file [standard_temp_file inotify.out]
4682 set inotify_pid [exec inotifywait -r -m -e move,create,delete . \
4683 --exclude $exclusion_re \
4684 |& tee -a $outdir/$tool.log $inotify_log_file &]
4685
4686 # Wait for the watches; hopefully this is long enough.
4687 sleep 2
4688
4689 # Clear the log so that we don't emit a warning the first time
4690 # we check it.
4691 set fd [open $inotify_log_file w]
4692 close $fd
4693 }
4694
4695 # Block writes to all banned variables, and invocation of all
4696 # banned procedures...
4697 global banned_variables
4698 global banned_procedures
4699 global banned_traced
4700 if (!$banned_traced) {
4701 foreach banned_var $banned_variables {
4702 global "$banned_var"
4703 trace add variable "$banned_var" write error
4704 }
4705 foreach banned_proc $banned_procedures {
4706 global "$banned_proc"
4707 trace add execution "$banned_proc" enter error
4708 }
4709 set banned_traced 1
4710 }
4711
4712 # We set LC_ALL, LC_CTYPE, and LANG to C so that we get the same
4713 # messages as expected.
4714 setenv LC_ALL C
4715 setenv LC_CTYPE C
4716 setenv LANG C
4717
4718 # Don't let a .inputrc file or an existing setting of INPUTRC mess up
4719 # the test results. Even if /dev/null doesn't exist on the particular
4720 # platform, the readline library will use the default setting just by
4721 # failing to open the file. OTOH, opening /dev/null successfully will
4722 # also result in the default settings being used since nothing will be
4723 # read from this file.
4724 setenv INPUTRC "/dev/null"
4725
4726 # The gdb.base/readline.exp arrow key test relies on the standard VT100
4727 # bindings, so make sure that an appropriate terminal is selected.
4728 # The same bug doesn't show up if we use ^P / ^N instead.
4729 setenv TERM "vt100"
4730
4731 # Some tests (for example gdb.base/maint.exp) shell out from gdb to use
4732 # grep. Clear GREP_OPTIONS to make the behavior predictable,
4733 # especially having color output turned on can cause tests to fail.
4734 setenv GREP_OPTIONS ""
4735
4736 # Clear $gdbserver_reconnect_p.
4737 global gdbserver_reconnect_p
4738 set gdbserver_reconnect_p 1
4739 unset gdbserver_reconnect_p
4740
4741 return [default_gdb_init $test_file_name]
4742 }
4743
4744 proc gdb_finish { } {
4745 global gdbserver_reconnect_p
4746 global gdb_prompt
4747 global cleanfiles
4748
4749 # Exit first, so that the files are no longer in use.
4750 gdb_exit
4751
4752 if { [llength $cleanfiles] > 0 } {
4753 eval remote_file target delete $cleanfiles
4754 set cleanfiles {}
4755 }
4756
4757 # Unblock write access to the banned variables. Dejagnu typically
4758 # resets some of them between testcases.
4759 global banned_variables
4760 global banned_procedures
4761 global banned_traced
4762 if ($banned_traced) {
4763 foreach banned_var $banned_variables {
4764 global "$banned_var"
4765 trace remove variable "$banned_var" write error
4766 }
4767 foreach banned_proc $banned_procedures {
4768 global "$banned_proc"
4769 trace remove execution "$banned_proc" enter error
4770 }
4771 set banned_traced 0
4772 }
4773 }
4774
4775 global debug_format
4776 set debug_format "unknown"
4777
4778 # Run the gdb command "info source" and extract the debugging format
4779 # information from the output and save it in debug_format.
4780
4781 proc get_debug_format { } {
4782 global gdb_prompt
4783 global verbose
4784 global expect_out
4785 global debug_format
4786
4787 set debug_format "unknown"
4788 send_gdb "info source\n"
4789 gdb_expect 10 {
4790 -re "Compiled with (.*) debugging format.\r\n.*$gdb_prompt $" {
4791 set debug_format $expect_out(1,string)
4792 verbose "debug format is $debug_format"
4793 return 1
4794 }
4795 -re "No current source file.\r\n$gdb_prompt $" {
4796 perror "get_debug_format used when no current source file"
4797 return 0
4798 }
4799 -re "$gdb_prompt $" {
4800 warning "couldn't check debug format (no valid response)."
4801 return 1
4802 }
4803 timeout {
4804 warning "couldn't check debug format (timeout)."
4805 return 1
4806 }
4807 }
4808 }
4809
4810 # Return true if FORMAT matches the debug format the current test was
4811 # compiled with. FORMAT is a shell-style globbing pattern; it can use
4812 # `*', `[...]', and so on.
4813 #
4814 # This function depends on variables set by `get_debug_format', above.
4815
4816 proc test_debug_format {format} {
4817 global debug_format
4818
4819 return [expr [string match $format $debug_format] != 0]
4820 }
4821
4822 # Like setup_xfail, but takes the name of a debug format (DWARF 1,
4823 # COFF, stabs, etc). If that format matches the format that the
4824 # current test was compiled with, then the next test is expected to
4825 # fail for any target. Returns 1 if the next test or set of tests is
4826 # expected to fail, 0 otherwise (or if it is unknown). Must have
4827 # previously called get_debug_format.
4828 proc setup_xfail_format { format } {
4829 set ret [test_debug_format $format]
4830
4831 if {$ret} then {
4832 setup_xfail "*-*-*"
4833 }
4834 return $ret
4835 }
4836
4837 # gdb_get_line_number TEXT [FILE]
4838 #
4839 # Search the source file FILE, and return the line number of the
4840 # first line containing TEXT. If no match is found, an error is thrown.
4841 #
4842 # TEXT is a string literal, not a regular expression.
4843 #
4844 # The default value of FILE is "$srcdir/$subdir/$srcfile". If FILE is
4845 # specified, and does not start with "/", then it is assumed to be in
4846 # "$srcdir/$subdir". This is awkward, and can be fixed in the future,
4847 # by changing the callers and the interface at the same time.
4848 # In particular: gdb.base/break.exp, gdb.base/condbreak.exp,
4849 # gdb.base/ena-dis-br.exp.
4850 #
4851 # Use this function to keep your test scripts independent of the
4852 # exact line numbering of the source file. Don't write:
4853 #
4854 # send_gdb "break 20"
4855 #
4856 # This means that if anyone ever edits your test's source file,
4857 # your test could break. Instead, put a comment like this on the
4858 # source file line you want to break at:
4859 #
4860 # /* breakpoint spot: frotz.exp: test name */
4861 #
4862 # and then write, in your test script (which we assume is named
4863 # frotz.exp):
4864 #
4865 # send_gdb "break [gdb_get_line_number "frotz.exp: test name"]\n"
4866 #
4867 # (Yes, Tcl knows how to handle the nested quotes and brackets.
4868 # Try this:
4869 # $ tclsh
4870 # % puts "foo [lindex "bar baz" 1]"
4871 # foo baz
4872 # %
4873 # Tcl is quite clever, for a little stringy language.)
4874 #
4875 # ===
4876 #
4877 # The previous implementation of this procedure used the gdb search command.
4878 # This version is different:
4879 #
4880 # . It works with MI, and it also works when gdb is not running.
4881 #
4882 # . It operates on the build machine, not the host machine.
4883 #
4884 # . For now, this implementation fakes a current directory of
4885 # $srcdir/$subdir to be compatible with the old implementation.
4886 # This will go away eventually and some callers will need to
4887 # be changed.
4888 #
4889 # . The TEXT argument is literal text and matches literally,
4890 # not a regular expression as it was before.
4891 #
4892 # . State changes in gdb, such as changing the current file
4893 # and setting $_, no longer happen.
4894 #
4895 # After a bit of time we can forget about the differences from the
4896 # old implementation.
4897 #
4898 # --chastain 2004-08-05
4899
4900 proc gdb_get_line_number { text { file "" } } {
4901 global srcdir
4902 global subdir
4903 global srcfile
4904
4905 if { "$file" == "" } then {
4906 set file "$srcfile"
4907 }
4908 if { ! [regexp "^/" "$file"] } then {
4909 set file "$srcdir/$subdir/$file"
4910 }
4911
4912 if { [ catch { set fd [open "$file"] } message ] } then {
4913 error "$message"
4914 }
4915
4916 set found -1
4917 for { set line 1 } { 1 } { incr line } {
4918 if { [ catch { set nchar [gets "$fd" body] } message ] } then {
4919 error "$message"
4920 }
4921 if { $nchar < 0 } then {
4922 break
4923 }
4924 if { [string first "$text" "$body"] >= 0 } then {
4925 set found $line
4926 break
4927 }
4928 }
4929
4930 if { [ catch { close "$fd" } message ] } then {
4931 error "$message"
4932 }
4933
4934 if {$found == -1} {
4935 error "undefined tag \"$text\""
4936 }
4937
4938 return $found
4939 }
4940
4941 # Continue the program until it ends.
4942 #
4943 # MSSG is the error message that gets printed. If not given, a
4944 # default is used.
4945 # COMMAND is the command to invoke. If not given, "continue" is
4946 # used.
4947 # ALLOW_EXTRA is a flag indicating whether the test should expect
4948 # extra output between the "Continuing." line and the program
4949 # exiting. By default it is zero; if nonzero, any extra output
4950 # is accepted.
4951
4952 proc gdb_continue_to_end {{mssg ""} {command continue} {allow_extra 0}} {
4953 global inferior_exited_re use_gdb_stub
4954
4955 if {$mssg == ""} {
4956 set text "continue until exit"
4957 } else {
4958 set text "continue until exit at $mssg"
4959 }
4960 if {$allow_extra} {
4961 set extra ".*"
4962 } else {
4963 set extra ""
4964 }
4965
4966 # By default, we don't rely on exit() behavior of remote stubs --
4967 # it's common for exit() to be implemented as a simple infinite
4968 # loop, or a forced crash/reset. For native targets, by default, we
4969 # assume process exit is reported as such. If a non-reliable target
4970 # is used, we set a breakpoint at exit, and continue to that.
4971 if { [target_info exists exit_is_reliable] } {
4972 set exit_is_reliable [target_info exit_is_reliable]
4973 } else {
4974 set exit_is_reliable [expr ! $use_gdb_stub]
4975 }
4976
4977 if { ! $exit_is_reliable } {
4978 if {![gdb_breakpoint "exit"]} {
4979 return 0
4980 }
4981 gdb_test $command "Continuing..*Breakpoint .*exit.*" \
4982 $text
4983 } else {
4984 # Continue until we exit. Should not stop again.
4985 # Don't bother to check the output of the program, that may be
4986 # extremely tough for some remote systems.
4987 gdb_test $command \
4988 "Continuing.\[\r\n0-9\]+${extra}(... EXIT code 0\[\r\n\]+|$inferior_exited_re normally).*"\
4989 $text
4990 }
4991 }
4992
4993 proc rerun_to_main {} {
4994 global gdb_prompt use_gdb_stub
4995
4996 if $use_gdb_stub {
4997 gdb_run_cmd
4998 gdb_expect {
4999 -re ".*Breakpoint .*main .*$gdb_prompt $"\
5000 {pass "rerun to main" ; return 0}
5001 -re "$gdb_prompt $"\
5002 {fail "rerun to main" ; return 0}
5003 timeout {fail "(timeout) rerun to main" ; return 0}
5004 }
5005 } else {
5006 send_gdb "run\n"
5007 gdb_expect {
5008 -re "The program .* has been started already.*y or n. $" {
5009 send_gdb "y\n"
5010 exp_continue
5011 }
5012 -re "Starting program.*$gdb_prompt $"\
5013 {pass "rerun to main" ; return 0}
5014 -re "$gdb_prompt $"\
5015 {fail "rerun to main" ; return 0}
5016 timeout {fail "(timeout) rerun to main" ; return 0}
5017 }
5018 }
5019 }
5020
5021 # Return true if a test should be skipped due to lack of floating
5022 # point support or GDB can't fetch the contents from floating point
5023 # registers.
5024
5025 gdb_caching_proc gdb_skip_float_test {
5026 if [target_info exists gdb,skip_float_tests] {
5027 return 1
5028 }
5029
5030 # There is an ARM kernel ptrace bug that hardware VFP registers
5031 # are not updated after GDB ptrace set VFP registers. The bug
5032 # was introduced by kernel commit 8130b9d7b9d858aa04ce67805e8951e3cb6e9b2f
5033 # in 2012 and is fixed in e2dfb4b880146bfd4b6aa8e138c0205407cebbaf
5034 # in May 2016. In other words, kernels older than 4.6.3, 4.4.14,
5035 # 4.1.27, 3.18.36, and 3.14.73 have this bug.
5036 # This kernel bug is detected by check how does GDB change the
5037 # program result by changing one VFP register.
5038 if { [istarget "arm*-*-linux*"] } {
5039
5040 set compile_flags {debug nowarnings }
5041
5042 # Set up, compile, and execute a test program having VFP
5043 # operations.
5044 set src [standard_temp_file arm_vfp[pid].c]
5045 set exe [standard_temp_file arm_vfp[pid].x]
5046
5047 gdb_produce_source $src {
5048 int main() {
5049 double d = 4.0;
5050 int ret;
5051
5052 asm ("vldr d0, [%0]" : : "r" (&d));
5053 asm ("vldr d1, [%0]" : : "r" (&d));
5054 asm (".global break_here\n"
5055 "break_here:");
5056 asm ("vcmp.f64 d0, d1\n"
5057 "vmrs APSR_nzcv, fpscr\n"
5058 "bne L_value_different\n"
5059 "movs %0, #0\n"
5060 "b L_end\n"
5061 "L_value_different:\n"
5062 "movs %0, #1\n"
5063 "L_end:\n" : "=r" (ret) :);
5064
5065 /* Return $d0 != $d1. */
5066 return ret;
5067 }
5068 }
5069
5070 verbose "compiling testfile $src" 2
5071 set lines [gdb_compile $src $exe executable $compile_flags]
5072 file delete $src
5073
5074 if ![string match "" $lines] then {
5075 verbose "testfile compilation failed, returning 1" 2
5076 return 0
5077 }
5078
5079 # No error message, compilation succeeded so now run it via gdb.
5080 # Run the test up to 5 times to detect whether ptrace can
5081 # correctly update VFP registers or not.
5082 set skip_vfp_test 0
5083 for {set i 0} {$i < 5} {incr i} {
5084 global gdb_prompt srcdir subdir
5085
5086 gdb_exit
5087 gdb_start
5088 gdb_reinitialize_dir $srcdir/$subdir
5089 gdb_load "$exe"
5090
5091 runto_main
5092 gdb_test "break *break_here"
5093 gdb_continue_to_breakpoint "break_here"
5094
5095 # Modify $d0 to a different value, so the exit code should
5096 # be 1.
5097 gdb_test "set \$d0 = 5.0"
5098
5099 set test "continue to exit"
5100 gdb_test_multiple "continue" "$test" {
5101 -re "exited with code 01.*$gdb_prompt $" {
5102 }
5103 -re "exited normally.*$gdb_prompt $" {
5104 # However, the exit code is 0. That means something
5105 # wrong in setting VFP registers.
5106 set skip_vfp_test 1
5107 break
5108 }
5109 }
5110 }
5111
5112 gdb_exit
5113 remote_file build delete $exe
5114
5115 return $skip_vfp_test
5116 }
5117 return 0
5118 }
5119
5120 # Print a message and return true if a test should be skipped
5121 # due to lack of stdio support.
5122
5123 proc gdb_skip_stdio_test { msg } {
5124 if [target_info exists gdb,noinferiorio] {
5125 verbose "Skipping test '$msg': no inferior i/o."
5126 return 1
5127 }
5128 return 0
5129 }
5130
5131 proc gdb_skip_bogus_test { msg } {
5132 return 0
5133 }
5134
5135 # Return true if a test should be skipped due to lack of XML support
5136 # in the host GDB.
5137 # NOTE: This must be called while gdb is *not* running.
5138
5139 gdb_caching_proc gdb_skip_xml_test {
5140 global gdb_spawn_id
5141 global gdb_prompt
5142 global srcdir
5143
5144 if { [info exists gdb_spawn_id] } {
5145 error "GDB must not be running in gdb_skip_xml_tests."
5146 }
5147
5148 set xml_file [gdb_remote_download host "${srcdir}/gdb.xml/trivial.xml"]
5149
5150 gdb_start
5151 set xml_missing 0
5152 gdb_test_multiple "set tdesc filename $xml_file" "" {
5153 -re ".*XML support was disabled at compile time.*$gdb_prompt $" {
5154 set xml_missing 1
5155 }
5156 -re ".*$gdb_prompt $" { }
5157 }
5158 gdb_exit
5159 return $xml_missing
5160 }
5161
5162 # Return true if argv[0] is available.
5163
5164 gdb_caching_proc gdb_has_argv0 {
5165 set result 0
5166
5167 # Set up, compile, and execute a test program to check whether
5168 # argv[0] is available.
5169 set src [standard_temp_file has_argv0[pid].c]
5170 set exe [standard_temp_file has_argv0[pid].x]
5171
5172 gdb_produce_source $src {
5173 int main (int argc, char **argv) {
5174 return 0;
5175 }
5176 }
5177
5178 gdb_compile $src $exe executable {debug}
5179
5180 # Helper proc.
5181 proc gdb_has_argv0_1 { exe } {
5182 global srcdir subdir
5183 global gdb_prompt hex
5184
5185 gdb_exit
5186 gdb_start
5187 gdb_reinitialize_dir $srcdir/$subdir
5188 gdb_load "$exe"
5189
5190 # Set breakpoint on main.
5191 gdb_test_multiple "break main" "break main" {
5192 -re "Breakpoint.*${gdb_prompt} $" {
5193 }
5194 -re "${gdb_prompt} $" {
5195 return 0
5196 }
5197 }
5198
5199 # Run to main.
5200 gdb_run_cmd
5201 gdb_test_multiple "" "run to main" {
5202 -re "Breakpoint.*${gdb_prompt} $" {
5203 }
5204 -re "${gdb_prompt} $" {
5205 return 0
5206 }
5207 }
5208
5209 set old_elements "200"
5210 set test "show print elements"
5211 gdb_test_multiple $test $test {
5212 -re "Limit on string chars or array elements to print is (\[^\r\n\]+)\\.\r\n$gdb_prompt $" {
5213 set old_elements $expect_out(1,string)
5214 }
5215 }
5216 set old_repeats "200"
5217 set test "show print repeats"
5218 gdb_test_multiple $test $test {
5219 -re "Threshold for repeated print elements is (\[^\r\n\]+)\\.\r\n$gdb_prompt $" {
5220 set old_repeats $expect_out(1,string)
5221 }
5222 }
5223 gdb_test_no_output "set print elements unlimited" ""
5224 gdb_test_no_output "set print repeats unlimited" ""
5225
5226 set retval 0
5227 # Check whether argc is 1.
5228 gdb_test_multiple "p argc" "p argc" {
5229 -re " = 1\r\n${gdb_prompt} $" {
5230
5231 gdb_test_multiple "p argv\[0\]" "p argv\[0\]" {
5232 -re " = $hex \".*[file tail $exe]\"\r\n${gdb_prompt} $" {
5233 set retval 1
5234 }
5235 -re "${gdb_prompt} $" {
5236 }
5237 }
5238 }
5239 -re "${gdb_prompt} $" {
5240 }
5241 }
5242
5243 gdb_test_no_output "set print elements $old_elements" ""
5244 gdb_test_no_output "set print repeats $old_repeats" ""
5245
5246 return $retval
5247 }
5248
5249 set result [gdb_has_argv0_1 $exe]
5250
5251 gdb_exit
5252 file delete $src
5253 file delete $exe
5254
5255 if { !$result
5256 && ([istarget *-*-linux*]
5257 || [istarget *-*-freebsd*] || [istarget *-*-kfreebsd*]
5258 || [istarget *-*-netbsd*] || [istarget *-*-knetbsd*]
5259 || [istarget *-*-openbsd*]
5260 || [istarget *-*-darwin*]
5261 || [istarget *-*-solaris*]
5262 || [istarget *-*-aix*]
5263 || [istarget *-*-gnu*]
5264 || [istarget *-*-cygwin*] || [istarget *-*-mingw32*]
5265 || [istarget *-*-*djgpp*] || [istarget *-*-go32*]
5266 || [istarget *-wince-pe] || [istarget *-*-mingw32ce*]
5267 || [istarget *-*-symbianelf*]
5268 || [istarget *-*-osf*]
5269 || [istarget *-*-dicos*]
5270 || [istarget *-*-nto*]
5271 || [istarget *-*-*vms*]
5272 || [istarget *-*-lynx*178]) } {
5273 fail "argv\[0\] should be available on this target"
5274 }
5275
5276 return $result
5277 }
5278
5279 # Note: the procedure gdb_gnu_strip_debug will produce an executable called
5280 # ${binfile}.dbglnk, which is just like the executable ($binfile) but without
5281 # the debuginfo. Instead $binfile has a .gnu_debuglink section which contains
5282 # the name of a debuginfo only file. This file will be stored in the same
5283 # subdirectory.
5284
5285 # Functions for separate debug info testing
5286
5287 # starting with an executable:
5288 # foo --> original executable
5289
5290 # at the end of the process we have:
5291 # foo.stripped --> foo w/o debug info
5292 # foo.debug --> foo's debug info
5293 # foo --> like foo, but with a new .gnu_debuglink section pointing to foo.debug.
5294
5295 # Fetch the build id from the file.
5296 # Returns "" if there is none.
5297
5298 proc get_build_id { filename } {
5299 if { ([istarget "*-*-mingw*"]
5300 || [istarget *-*-cygwin*]) } {
5301 set objdump_program [gdb_find_objdump]
5302 set result [catch {set data [exec $objdump_program -p $filename | grep signature | cut "-d " -f4]} output]
5303 verbose "result is $result"
5304 verbose "output is $output"
5305 if {$result == 1} {
5306 return ""
5307 }
5308 return $data
5309 } else {
5310 set tmp [standard_output_file "${filename}-tmp"]
5311 set objcopy_program [gdb_find_objcopy]
5312 set result [catch "exec $objcopy_program -j .note.gnu.build-id -O binary $filename $tmp" output]
5313 verbose "result is $result"
5314 verbose "output is $output"
5315 if {$result == 1} {
5316 return ""
5317 }
5318 set fi [open $tmp]
5319 fconfigure $fi -translation binary
5320 # Skip the NOTE header.
5321 read $fi 16
5322 set data [read $fi]
5323 close $fi
5324 file delete $tmp
5325 if ![string compare $data ""] then {
5326 return ""
5327 }
5328 # Convert it to hex.
5329 binary scan $data H* data
5330 return $data
5331 }
5332 }
5333
5334 # Return the build-id hex string (usually 160 bits as 40 hex characters)
5335 # converted to the form: .build-id/ab/cdef1234...89.debug
5336 # Return "" if no build-id found.
5337 proc build_id_debug_filename_get { filename } {
5338 set data [get_build_id $filename]
5339 if { $data == "" } {
5340 return ""
5341 }
5342 regsub {^..} $data {\0/} data
5343 return ".build-id/${data}.debug"
5344 }
5345
5346 # Create stripped files for DEST, replacing it. If ARGS is passed, it is a
5347 # list of optional flags. The only currently supported flag is no-main,
5348 # which removes the symbol entry for main from the separate debug file.
5349 #
5350 # Function returns zero on success. Function will return non-zero failure code
5351 # on some targets not supporting separate debug info (such as i386-msdos).
5352
5353 proc gdb_gnu_strip_debug { dest args } {
5354
5355 # Use the first separate debug info file location searched by GDB so the
5356 # run cannot be broken by some stale file searched with higher precedence.
5357 set debug_file "${dest}.debug"
5358
5359 set strip_to_file_program [transform strip]
5360 set objcopy_program [gdb_find_objcopy]
5361
5362 set debug_link [file tail $debug_file]
5363 set stripped_file "${dest}.stripped"
5364
5365 # Get rid of the debug info, and store result in stripped_file
5366 # something like gdb/testsuite/gdb.base/blah.stripped.
5367 set result [catch "exec $strip_to_file_program --strip-debug ${dest} -o ${stripped_file}" output]
5368 verbose "result is $result"
5369 verbose "output is $output"
5370 if {$result == 1} {
5371 return 1
5372 }
5373
5374 # Workaround PR binutils/10802:
5375 # Preserve the 'x' bit also for PIEs (Position Independent Executables).
5376 set perm [file attributes ${dest} -permissions]
5377 file attributes ${stripped_file} -permissions $perm
5378
5379 # Get rid of everything but the debug info, and store result in debug_file
5380 # This will be in the .debug subdirectory, see above.
5381 set result [catch "exec $strip_to_file_program --only-keep-debug ${dest} -o ${debug_file}" output]
5382 verbose "result is $result"
5383 verbose "output is $output"
5384 if {$result == 1} {
5385 return 1
5386 }
5387
5388 # If no-main is passed, strip the symbol for main from the separate
5389 # file. This is to simulate the behavior of elfutils's eu-strip, which
5390 # leaves the symtab in the original file only. There's no way to get
5391 # objcopy or strip to remove the symbol table without also removing the
5392 # debugging sections, so this is as close as we can get.
5393 if { [llength $args] == 1 && [lindex $args 0] == "no-main" } {
5394 set result [catch "exec $objcopy_program -N main ${debug_file} ${debug_file}-tmp" output]
5395 verbose "result is $result"
5396 verbose "output is $output"
5397 if {$result == 1} {
5398 return 1
5399 }
5400 file delete "${debug_file}"
5401 file rename "${debug_file}-tmp" "${debug_file}"
5402 }
5403
5404 # Link the two previous output files together, adding the .gnu_debuglink
5405 # section to the stripped_file, containing a pointer to the debug_file,
5406 # save the new file in dest.
5407 # This will be the regular executable filename, in the usual location.
5408 set result [catch "exec $objcopy_program --add-gnu-debuglink=${debug_file} ${stripped_file} ${dest}" output]
5409 verbose "result is $result"
5410 verbose "output is $output"
5411 if {$result == 1} {
5412 return 1
5413 }
5414
5415 # Workaround PR binutils/10802:
5416 # Preserve the 'x' bit also for PIEs (Position Independent Executables).
5417 set perm [file attributes ${stripped_file} -permissions]
5418 file attributes ${dest} -permissions $perm
5419
5420 return 0
5421 }
5422
5423 # Test the output of GDB_COMMAND matches the pattern obtained
5424 # by concatenating all elements of EXPECTED_LINES. This makes
5425 # it possible to split otherwise very long string into pieces.
5426 # If third argument is not empty, it's used as the name of the
5427 # test to be printed on pass/fail.
5428 proc help_test_raw { gdb_command expected_lines args } {
5429 set message $gdb_command
5430 if [llength $args]>0 then {
5431 set message [lindex $args 0]
5432 }
5433 set expected_output [join $expected_lines ""]
5434 gdb_test "${gdb_command}" "${expected_output}" $message
5435 }
5436
5437 # Test the output of "help COMMAND_CLASS". EXPECTED_INITIAL_LINES
5438 # are regular expressions that should match the beginning of output,
5439 # before the list of commands in that class. The presence of
5440 # command list and standard epilogue will be tested automatically.
5441 # Notice that the '[' and ']' characters don't need to be escaped for strings
5442 # wrapped in {} braces.
5443 proc test_class_help { command_class expected_initial_lines args } {
5444 set l_stock_body {
5445 "List of commands\:.*[\r\n]+"
5446 "Type \"help\" followed by command name for full documentation\.[\r\n]+"
5447 "Type \"apropos word\" to search for commands related to \"word\"\.[\r\n]+"
5448 "Command name abbreviations are allowed if unambiguous\."
5449 }
5450 set l_entire_body [concat $expected_initial_lines $l_stock_body]
5451
5452 eval [list help_test_raw "help ${command_class}" $l_entire_body] $args
5453 }
5454
5455 # COMMAND_LIST should have either one element -- command to test, or
5456 # two elements -- abbreviated command to test, and full command the first
5457 # element is abbreviation of.
5458 # The command must be a prefix command. EXPECTED_INITIAL_LINES
5459 # are regular expressions that should match the beginning of output,
5460 # before the list of subcommands. The presence of
5461 # subcommand list and standard epilogue will be tested automatically.
5462 proc test_prefix_command_help { command_list expected_initial_lines args } {
5463 set command [lindex $command_list 0]
5464 if {[llength $command_list]>1} {
5465 set full_command [lindex $command_list 1]
5466 } else {
5467 set full_command $command
5468 }
5469 # Use 'list' and not just {} because we want variables to
5470 # be expanded in this list.
5471 set l_stock_body [list\
5472 "List of $full_command subcommands\:.*\[\r\n\]+"\
5473 "Type \"help $full_command\" followed by $full_command subcommand name for full documentation\.\[\r\n\]+"\
5474 "Type \"apropos word\" to search for commands related to \"word\"\.\[\r\n\]+"\
5475 "Command name abbreviations are allowed if unambiguous\."]
5476 set l_entire_body [concat $expected_initial_lines $l_stock_body]
5477 if {[llength $args]>0} {
5478 help_test_raw "help ${command}" $l_entire_body [lindex $args 0]
5479 } else {
5480 help_test_raw "help ${command}" $l_entire_body
5481 }
5482 }
5483
5484 # Build executable named EXECUTABLE from specifications that allow
5485 # different options to be passed to different sub-compilations.
5486 # TESTNAME is the name of the test; this is passed to 'untested' if
5487 # something fails.
5488 # OPTIONS is passed to the final link, using gdb_compile. If OPTIONS
5489 # contains the option "pthreads", then gdb_compile_pthreads is used.
5490 # ARGS is a flat list of source specifications, of the form:
5491 # { SOURCE1 OPTIONS1 [ SOURCE2 OPTIONS2 ]... }
5492 # Each SOURCE is compiled to an object file using its OPTIONS,
5493 # using gdb_compile.
5494 # Returns 0 on success, -1 on failure.
5495 proc build_executable_from_specs {testname executable options args} {
5496 global subdir
5497 global srcdir
5498
5499 set binfile [standard_output_file $executable]
5500
5501 set info_options ""
5502 if { [lsearch -exact $options "c++"] >= 0 } {
5503 set info_options "c++"
5504 }
5505 if [get_compiler_info ${info_options}] {
5506 return -1
5507 }
5508
5509 set func gdb_compile
5510 set func_index [lsearch -regexp $options {^(pthreads|shlib|shlib_pthreads)$}]
5511 if {$func_index != -1} {
5512 set func "${func}_[lindex $options $func_index]"
5513 }
5514
5515 # gdb_compile_shlib and gdb_compile_shlib_pthreads do not use the 3rd
5516 # parameter. They also requires $sources while gdb_compile and
5517 # gdb_compile_pthreads require $objects. Moreover they ignore any options.
5518 if [string match gdb_compile_shlib* $func] {
5519 set sources_path {}
5520 foreach {s local_options} $args {
5521 if { [regexp "^/" "$s"] } then {
5522 lappend sources_path "$s"
5523 } else {
5524 lappend sources_path "$srcdir/$subdir/$s"
5525 }
5526 }
5527 set ret [$func $sources_path "${binfile}" $options]
5528 } elseif {[lsearch -exact $options rust] != -1} {
5529 set sources_path {}
5530 foreach {s local_options} $args {
5531 if { [regexp "^/" "$s"] } then {
5532 lappend sources_path "$s"
5533 } else {
5534 lappend sources_path "$srcdir/$subdir/$s"
5535 }
5536 }
5537 set ret [gdb_compile_rust $sources_path "${binfile}" $options]
5538 } else {
5539 set objects {}
5540 set i 0
5541 foreach {s local_options} $args {
5542 if { ! [regexp "^/" "$s"] } then {
5543 set s "$srcdir/$subdir/$s"
5544 }
5545 if { [gdb_compile "${s}" "${binfile}${i}.o" object $local_options] != "" } {
5546 untested $testname
5547 return -1
5548 }
5549 lappend objects "${binfile}${i}.o"
5550 incr i
5551 }
5552 set ret [$func $objects "${binfile}" executable $options]
5553 }
5554 if { $ret != "" } {
5555 untested $testname
5556 return -1
5557 }
5558
5559 return 0
5560 }
5561
5562 # Build executable named EXECUTABLE, from SOURCES. If SOURCES are not
5563 # provided, uses $EXECUTABLE.c. The TESTNAME paramer is the name of test
5564 # to pass to untested, if something is wrong. OPTIONS are passed
5565 # to gdb_compile directly.
5566 proc build_executable { testname executable {sources ""} {options {debug}} } {
5567 if {[llength $sources]==0} {
5568 set sources ${executable}.c
5569 }
5570
5571 set arglist [list $testname $executable $options]
5572 foreach source $sources {
5573 lappend arglist $source $options
5574 }
5575
5576 return [eval build_executable_from_specs $arglist]
5577 }
5578
5579 # Starts fresh GDB binary and loads an optional executable into GDB.
5580 # Usage: clean_restart [executable]
5581 # EXECUTABLE is the basename of the binary.
5582
5583 proc clean_restart { args } {
5584 global srcdir
5585 global subdir
5586
5587 if { [llength $args] > 1 } {
5588 error "bad number of args: [llength $args]"
5589 }
5590
5591 gdb_exit
5592 gdb_start
5593 gdb_reinitialize_dir $srcdir/$subdir
5594
5595 if { [llength $args] >= 1 } {
5596 set executable [lindex $args 0]
5597 set binfile [standard_output_file ${executable}]
5598 gdb_load ${binfile}
5599 }
5600 }
5601
5602 # Prepares for testing by calling build_executable_full, then
5603 # clean_restart.
5604 # TESTNAME is the name of the test.
5605 # Each element in ARGS is a list of the form
5606 # { EXECUTABLE OPTIONS SOURCE_SPEC... }
5607 # These are passed to build_executable_from_specs, which see.
5608 # The last EXECUTABLE is passed to clean_restart.
5609 # Returns 0 on success, non-zero on failure.
5610 proc prepare_for_testing_full {testname args} {
5611 foreach spec $args {
5612 if {[eval build_executable_from_specs [list $testname] $spec] == -1} {
5613 return -1
5614 }
5615 set executable [lindex $spec 0]
5616 }
5617 clean_restart $executable
5618 return 0
5619 }
5620
5621 # Prepares for testing, by calling build_executable, and then clean_restart.
5622 # Please refer to build_executable for parameter description.
5623 proc prepare_for_testing { testname executable {sources ""} {options {debug}}} {
5624
5625 if {[build_executable $testname $executable $sources $options] == -1} {
5626 return -1
5627 }
5628 clean_restart $executable
5629
5630 return 0
5631 }
5632
5633 # Retrieve the value of EXP in the inferior, represented in format
5634 # specified in FMT (using "printFMT"). DEFAULT is used as fallback if
5635 # print fails. TEST is the test message to use. It can be omitted,
5636 # in which case a test message is built from EXP.
5637
5638 proc get_valueof { fmt exp default {test ""} } {
5639 global gdb_prompt
5640
5641 if {$test == "" } {
5642 set test "get valueof \"${exp}\""
5643 }
5644
5645 set val ${default}
5646 gdb_test_multiple "print${fmt} ${exp}" "$test" {
5647 -re "\\$\[0-9\]* = (\[^\r\n\]*)\[\r\n\]*$gdb_prompt $" {
5648 set val $expect_out(1,string)
5649 pass "$test ($val)"
5650 }
5651 timeout {
5652 fail "$test (timeout)"
5653 }
5654 }
5655 return ${val}
5656 }
5657
5658 # Retrieve the value of EXP in the inferior, as a signed decimal value
5659 # (using "print /d"). DEFAULT is used as fallback if print fails.
5660 # TEST is the test message to use. It can be omitted, in which case
5661 # a test message is built from EXP.
5662
5663 proc get_integer_valueof { exp default {test ""} } {
5664 global gdb_prompt
5665
5666 if {$test == ""} {
5667 set test "get integer valueof \"${exp}\""
5668 }
5669
5670 set val ${default}
5671 gdb_test_multiple "print /d ${exp}" "$test" {
5672 -re "\\$\[0-9\]* = (\[-\]*\[0-9\]*).*$gdb_prompt $" {
5673 set val $expect_out(1,string)
5674 pass "$test"
5675 }
5676 timeout {
5677 fail "$test (timeout)"
5678 }
5679 }
5680 return ${val}
5681 }
5682
5683 # Retrieve the value of EXP in the inferior, as an hexadecimal value
5684 # (using "print /x"). DEFAULT is used as fallback if print fails.
5685 # TEST is the test message to use. It can be omitted, in which case
5686 # a test message is built from EXP.
5687
5688 proc get_hexadecimal_valueof { exp default {test ""} } {
5689 global gdb_prompt
5690
5691 if {$test == ""} {
5692 set test "get hexadecimal valueof \"${exp}\""
5693 }
5694
5695 set val ${default}
5696 gdb_test_multiple "print /x ${exp}" $test {
5697 -re "\\$\[0-9\]* = (0x\[0-9a-zA-Z\]+).*$gdb_prompt $" {
5698 set val $expect_out(1,string)
5699 pass "$test"
5700 }
5701 }
5702 return ${val}
5703 }
5704
5705 # Retrieve the size of TYPE in the inferior, as a decimal value. DEFAULT
5706 # is used as fallback if print fails. TEST is the test message to use.
5707 # It can be omitted, in which case a test message is 'sizeof (TYPE)'.
5708
5709 proc get_sizeof { type default {test ""} } {
5710 return [get_integer_valueof "sizeof (${type})" $default $test]
5711 }
5712
5713 proc get_target_charset { } {
5714 global gdb_prompt
5715
5716 gdb_test_multiple "show target-charset" "" {
5717 -re "The target character set is \"auto; currently (\[^\"\]*)\".*$gdb_prompt $" {
5718 return $expect_out(1,string)
5719 }
5720 -re "The target character set is \"(\[^\"\]*)\".*$gdb_prompt $" {
5721 return $expect_out(1,string)
5722 }
5723 }
5724
5725 # Pick a reasonable default.
5726 warning "Unable to read target-charset."
5727 return "UTF-8"
5728 }
5729
5730 # Get the address of VAR.
5731
5732 proc get_var_address { var } {
5733 global gdb_prompt hex
5734
5735 # Match output like:
5736 # $1 = (int *) 0x0
5737 # $5 = (int (*)()) 0
5738 # $6 = (int (*)()) 0x24 <function_bar>
5739
5740 gdb_test_multiple "print &${var}" "get address of ${var}" {
5741 -re "\\\$\[0-9\]+ = \\(.*\\) (0|$hex)( <${var}>)?\[\r\n\]+${gdb_prompt} $"
5742 {
5743 pass "get address of ${var}"
5744 if { $expect_out(1,string) == "0" } {
5745 return "0x0"
5746 } else {
5747 return $expect_out(1,string)
5748 }
5749 }
5750 }
5751 return ""
5752 }
5753
5754 # Get the current value for remotetimeout and return it.
5755 proc get_remotetimeout { } {
5756 global gdb_prompt
5757 global decimal
5758
5759 gdb_test_multiple "show remotetimeout" "" {
5760 -re "Timeout limit to wait for target to respond is ($decimal).*$gdb_prompt $" {
5761 return $expect_out(1,string)
5762 }
5763 }
5764
5765 # Pick the default that gdb uses
5766 warning "Unable to read remotetimeout"
5767 return 300
5768 }
5769
5770 # Set the remotetimeout to the specified timeout. Nothing is returned.
5771 proc set_remotetimeout { timeout } {
5772 global gdb_prompt
5773
5774 gdb_test_multiple "set remotetimeout $timeout" "" {
5775 -re "$gdb_prompt $" {
5776 verbose "Set remotetimeout to $timeout\n"
5777 }
5778 }
5779 }
5780
5781 # Get the target's current endianness and return it.
5782 proc get_endianness { } {
5783 global gdb_prompt
5784
5785 gdb_test_multiple "show endian" "determine endianness" {
5786 -re ".* (little|big) endian.*\r\n$gdb_prompt $" {
5787 # Pass silently.
5788 return $expect_out(1,string)
5789 }
5790 }
5791 return "little"
5792 }
5793
5794 # ROOT and FULL are file names. Returns the relative path from ROOT
5795 # to FULL. Note that FULL must be in a subdirectory of ROOT.
5796 # For example, given ROOT = /usr/bin and FULL = /usr/bin/ls, this
5797 # will return "ls".
5798
5799 proc relative_filename {root full} {
5800 set root_split [file split $root]
5801 set full_split [file split $full]
5802
5803 set len [llength $root_split]
5804
5805 if {[eval file join $root_split]
5806 != [eval file join [lrange $full_split 0 [expr {$len - 1}]]]} {
5807 error "$full not a subdir of $root"
5808 }
5809
5810 return [eval file join [lrange $full_split $len end]]
5811 }
5812
5813 # Log gdb command line and script if requested.
5814 if {[info exists TRANSCRIPT]} {
5815 rename send_gdb real_send_gdb
5816 rename remote_spawn real_remote_spawn
5817 rename remote_close real_remote_close
5818
5819 global gdb_transcript
5820 set gdb_transcript ""
5821
5822 global gdb_trans_count
5823 set gdb_trans_count 1
5824
5825 proc remote_spawn {args} {
5826 global gdb_transcript gdb_trans_count outdir
5827
5828 if {$gdb_transcript != ""} {
5829 close $gdb_transcript
5830 }
5831 set gdb_transcript [open [file join $outdir transcript.$gdb_trans_count] w]
5832 puts $gdb_transcript [lindex $args 1]
5833 incr gdb_trans_count
5834
5835 return [uplevel real_remote_spawn $args]
5836 }
5837
5838 proc remote_close {args} {
5839 global gdb_transcript
5840
5841 if {$gdb_transcript != ""} {
5842 close $gdb_transcript
5843 set gdb_transcript ""
5844 }
5845
5846 return [uplevel real_remote_close $args]
5847 }
5848
5849 proc send_gdb {args} {
5850 global gdb_transcript
5851
5852 if {$gdb_transcript != ""} {
5853 puts -nonewline $gdb_transcript [lindex $args 0]
5854 }
5855
5856 return [uplevel real_send_gdb $args]
5857 }
5858 }
5859
5860 # If GDB_PARALLEL exists, then set up the parallel-mode directories.
5861 if {[info exists GDB_PARALLEL]} {
5862 if {[is_remote host]} {
5863 unset GDB_PARALLEL
5864 } else {
5865 file mkdir \
5866 [make_gdb_parallel_path outputs] \
5867 [make_gdb_parallel_path temp] \
5868 [make_gdb_parallel_path cache]
5869 }
5870 }
5871
5872 proc core_find {binfile {deletefiles {}} {arg ""}} {
5873 global objdir subdir
5874
5875 set destcore "$binfile.core"
5876 file delete $destcore
5877
5878 # Create a core file named "$destcore" rather than just "core", to
5879 # avoid problems with sys admin types that like to regularly prune all
5880 # files named "core" from the system.
5881 #
5882 # Arbitrarily try setting the core size limit to "unlimited" since
5883 # this does not hurt on systems where the command does not work and
5884 # allows us to generate a core on systems where it does.
5885 #
5886 # Some systems append "core" to the name of the program; others append
5887 # the name of the program to "core"; still others (like Linux, as of
5888 # May 2003) create cores named "core.PID". In the latter case, we
5889 # could have many core files lying around, and it may be difficult to
5890 # tell which one is ours, so let's run the program in a subdirectory.
5891 set found 0
5892 set coredir [standard_output_file coredir.[getpid]]
5893 file mkdir $coredir
5894 catch "system \"(cd ${coredir}; ulimit -c unlimited; ${binfile} ${arg}; true) >/dev/null 2>&1\""
5895 # remote_exec host "${binfile}"
5896 foreach i "${coredir}/core ${coredir}/core.coremaker.c ${binfile}.core" {
5897 if [remote_file build exists $i] {
5898 remote_exec build "mv $i $destcore"
5899 set found 1
5900 }
5901 }
5902 # Check for "core.PID".
5903 if { $found == 0 } {
5904 set names [glob -nocomplain -directory $coredir core.*]
5905 if {[llength $names] == 1} {
5906 set corefile [file join $coredir [lindex $names 0]]
5907 remote_exec build "mv $corefile $destcore"
5908 set found 1
5909 }
5910 }
5911 if { $found == 0 } {
5912 # The braindamaged HPUX shell quits after the ulimit -c above
5913 # without executing ${binfile}. So we try again without the
5914 # ulimit here if we didn't find a core file above.
5915 # Oh, I should mention that any "braindamaged" non-Unix system has
5916 # the same problem. I like the cd bit too, it's really neat'n stuff.
5917 catch "system \"(cd ${objdir}/${subdir}; ${binfile}; true) >/dev/null 2>&1\""
5918 foreach i "${objdir}/${subdir}/core ${objdir}/${subdir}/core.coremaker.c ${binfile}.core" {
5919 if [remote_file build exists $i] {
5920 remote_exec build "mv $i $destcore"
5921 set found 1
5922 }
5923 }
5924 }
5925
5926 # Try to clean up after ourselves.
5927 foreach deletefile $deletefiles {
5928 remote_file build delete [file join $coredir $deletefile]
5929 }
5930 remote_exec build "rmdir $coredir"
5931
5932 if { $found == 0 } {
5933 warning "can't generate a core file - core tests suppressed - check ulimit -c"
5934 return ""
5935 }
5936 return $destcore
5937 }
5938
5939 # gdb_target_symbol_prefix compiles a test program and then examines
5940 # the output from objdump to determine the prefix (such as underscore)
5941 # for linker symbol prefixes.
5942
5943 gdb_caching_proc gdb_target_symbol_prefix {
5944 # Set up and compile a simple test program...
5945 set src [standard_temp_file main[pid].c]
5946 set exe [standard_temp_file main[pid].x]
5947
5948 gdb_produce_source $src {
5949 int main() {
5950 return 0;
5951 }
5952 }
5953
5954 verbose "compiling testfile $src" 2
5955 set compile_flags {debug nowarnings quiet}
5956 set lines [gdb_compile $src $exe executable $compile_flags]
5957
5958 set prefix ""
5959
5960 if ![string match "" $lines] then {
5961 verbose "gdb_target_symbol_prefix: testfile compilation failed, returning null prefix" 2
5962 } else {
5963 set objdump_program [gdb_find_objdump]
5964 set result [catch "exec $objdump_program --syms $exe" output]
5965
5966 if { $result == 0 \
5967 && ![regexp -lineanchor \
5968 { ([^ a-zA-Z0-9]*)main$} $output dummy prefix] } {
5969 verbose "gdb_target_symbol_prefix: Could not find main in objdump output; returning null prefix" 2
5970 }
5971 }
5972
5973 file delete $src
5974 file delete $exe
5975
5976 return $prefix
5977 }
5978
5979 # gdb_target_symbol returns the provided symbol with the correct prefix
5980 # prepended. (See gdb_target_symbol_prefix, above.)
5981
5982 proc gdb_target_symbol { symbol } {
5983 set prefix [gdb_target_symbol_prefix]
5984 return "${prefix}${symbol}"
5985 }
5986
5987 # gdb_target_symbol_prefix_flags_asm returns a string that can be
5988 # added to gdb_compile options to define the C-preprocessor macro
5989 # SYMBOL_PREFIX with a value that can be prepended to symbols
5990 # for targets which require a prefix, such as underscore.
5991 #
5992 # This version (_asm) defines the prefix without double quotes
5993 # surrounding the prefix. It is used to define the macro
5994 # SYMBOL_PREFIX for assembly language files. Another version, below,
5995 # is used for symbols in inline assembler in C/C++ files.
5996 #
5997 # The lack of quotes in this version (_asm) makes it possible to
5998 # define supporting macros in the .S file. (The version which
5999 # uses quotes for the prefix won't work for such files since it's
6000 # impossible to define a quote-stripping macro in C.)
6001 #
6002 # It's possible to use this version (_asm) for C/C++ source files too,
6003 # but a string is usually required in such files; providing a version
6004 # (no _asm) which encloses the prefix with double quotes makes it
6005 # somewhat easier to define the supporting macros in the test case.
6006
6007 proc gdb_target_symbol_prefix_flags_asm {} {
6008 set prefix [gdb_target_symbol_prefix]
6009 if {$prefix ne ""} {
6010 return "additional_flags=-DSYMBOL_PREFIX=$prefix"
6011 } else {
6012 return "";
6013 }
6014 }
6015
6016 # gdb_target_symbol_prefix_flags returns the same string as
6017 # gdb_target_symbol_prefix_flags_asm, above, but with the prefix
6018 # enclosed in double quotes if there is a prefix.
6019 #
6020 # See the comment for gdb_target_symbol_prefix_flags_asm for an
6021 # extended discussion.
6022
6023 proc gdb_target_symbol_prefix_flags {} {
6024 set prefix [gdb_target_symbol_prefix]
6025 if {$prefix ne ""} {
6026 return "additional_flags=-DSYMBOL_PREFIX=\"$prefix\""
6027 } else {
6028 return "";
6029 }
6030 }
6031
6032 # A wrapper for 'remote_exec host' that passes or fails a test.
6033 # Returns 0 if all went well, nonzero on failure.
6034 # TEST is the name of the test, other arguments are as for remote_exec.
6035
6036 proc run_on_host { test program args } {
6037 verbose -log "run_on_host: $program $args"
6038 # remote_exec doesn't work properly if the output is set but the
6039 # input is the empty string -- so replace an empty input with
6040 # /dev/null.
6041 if {[llength $args] > 1 && [lindex $args 1] == ""} {
6042 set args [lreplace $args 1 1 "/dev/null"]
6043 }
6044 set result [eval remote_exec host [list $program] $args]
6045 verbose "result is $result"
6046 set status [lindex $result 0]
6047 set output [lindex $result 1]
6048 if {$status == 0} {
6049 pass $test
6050 return 0
6051 } else {
6052 verbose -log "run_on_host failed: $output"
6053 fail $test
6054 return -1
6055 }
6056 }
6057
6058 # Return non-zero if "board_info debug_flags" mentions Fission.
6059 # http://gcc.gnu.org/wiki/DebugFission
6060 # Fission doesn't support everything yet.
6061 # This supports working around bug 15954.
6062
6063 proc using_fission { } {
6064 set debug_flags [board_info [target_info name] debug_flags]
6065 return [regexp -- "-gsplit-dwarf" $debug_flags]
6066 }
6067
6068 # Search the caller's ARGS list and set variables according to the list of
6069 # valid options described by ARGSET.
6070 #
6071 # The first member of each one- or two-element list in ARGSET defines the
6072 # name of a variable that will be added to the caller's scope.
6073 #
6074 # If only one element is given to describe an option, it the value is
6075 # 0 if the option is not present in (the caller's) ARGS or 1 if
6076 # it is.
6077 #
6078 # If two elements are given, the second element is the default value of
6079 # the variable. This is then overwritten if the option exists in ARGS.
6080 #
6081 # Any parse_args elements in (the caller's) ARGS will be removed, leaving
6082 # any optional components.
6083
6084 # Example:
6085 # proc myproc {foo args} {
6086 # parse_args {{bar} {baz "abc"} {qux}}
6087 # # ...
6088 # }
6089 # myproc ABC -bar -baz DEF peanut butter
6090 # will define the following variables in myproc:
6091 # foo (=ABC), bar (=1), baz (=DEF), and qux (=0)
6092 # args will be the list {peanut butter}
6093
6094 proc parse_args { argset } {
6095 upvar args args
6096
6097 foreach argument $argset {
6098 if {[llength $argument] == 1} {
6099 # No default specified, so we assume that we should set
6100 # the value to 1 if the arg is present and 0 if it's not.
6101 # It is assumed that no value is given with the argument.
6102 set result [lsearch -exact $args "-$argument"]
6103 if {$result != -1} then {
6104 uplevel 1 [list set $argument 1]
6105 set args [lreplace $args $result $result]
6106 } else {
6107 uplevel 1 [list set $argument 0]
6108 }
6109 } elseif {[llength $argument] == 2} {
6110 # There are two items in the argument. The second is a
6111 # default value to use if the item is not present.
6112 # Otherwise, the variable is set to whatever is provided
6113 # after the item in the args.
6114 set arg [lindex $argument 0]
6115 set result [lsearch -exact $args "-[lindex $arg 0]"]
6116 if {$result != -1} then {
6117 uplevel 1 [list set $arg [lindex $args [expr $result+1]]]
6118 set args [lreplace $args $result [expr $result+1]]
6119 } else {
6120 uplevel 1 [list set $arg [lindex $argument 1]]
6121 }
6122 } else {
6123 error "Badly formatted argument \"$argument\" in argument set"
6124 }
6125 }
6126
6127 # The remaining args should be checked to see that they match the
6128 # number of items expected to be passed into the procedure...
6129 }
6130
6131 # Capture the output of COMMAND in a string ignoring PREFIX (a regexp);
6132 # return that string.
6133
6134 proc capture_command_output { command prefix } {
6135 global gdb_prompt
6136 global expect_out
6137
6138 set output_string ""
6139 gdb_test_multiple "$command" "capture_command_output for $command" {
6140 -re "[string_to_regexp ${command}]\[\r\n\]+${prefix}(.*)\[\r\n\]+$gdb_prompt $" {
6141 set output_string $expect_out(1,string)
6142 }
6143 }
6144 return $output_string
6145 }
6146
6147 # A convenience function that joins all the arguments together, with a
6148 # regexp that matches exactly one end of line in between each argument.
6149 # This function is ideal to write the expected output of a GDB command
6150 # that generates more than a couple of lines, as this allows us to write
6151 # each line as a separate string, which is easier to read by a human
6152 # being.
6153
6154 proc multi_line { args } {
6155 return [join $args "\r\n"]
6156 }
6157
6158 # Similar to the above, but while multi_line is meant to be used to
6159 # match GDB output, this one is meant to be used to build strings to
6160 # send as GDB input.
6161
6162 proc multi_line_input { args } {
6163 return [join $args "\n"]
6164 }
6165
6166 # Return the version of the DejaGnu framework.
6167 #
6168 # The return value is a list containing the major, minor and patch version
6169 # numbers. If the version does not contain a minor or patch number, they will
6170 # be set to 0. For example:
6171 #
6172 # 1.6 -> {1 6 0}
6173 # 1.6.1 -> {1 6 1}
6174 # 2 -> {2 0 0}
6175
6176 proc dejagnu_version { } {
6177 # The frame_version variable is defined by DejaGnu, in runtest.exp.
6178 global frame_version
6179
6180 verbose -log "DejaGnu version: $frame_version"
6181 verbose -log "Expect version: [exp_version]"
6182 verbose -log "Tcl version: [info tclversion]"
6183
6184 set dg_ver [split $frame_version .]
6185
6186 while { [llength $dg_ver] < 3 } {
6187 lappend dg_ver 0
6188 }
6189
6190 return $dg_ver
6191 }
6192
6193 # Define user-defined command COMMAND using the COMMAND_LIST as the
6194 # command's definition. The terminating "end" is added automatically.
6195
6196 proc gdb_define_cmd {command command_list} {
6197 global gdb_prompt
6198
6199 set input [multi_line_input {*}$command_list "end"]
6200 set test "define $command"
6201
6202 gdb_test_multiple "define $command" $test {
6203 -re "End with" {
6204 gdb_test_multiple $input $test {
6205 -re "\r\n$gdb_prompt " {
6206 }
6207 }
6208 }
6209 }
6210 }
6211
6212 # Always load compatibility stuff.
6213 load_lib future.exp
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