Commit Graph

4936 Commits

Author SHA1 Message Date
Sanimir Agovic 58a84dcf29 test: add mi vla test
testsuite/gdb.mi/

	* mi-vla-c99.exp: New file.
	* vla.c: New file.
2014-04-11 13:44:00 +01:00
Sanimir Agovic c8655f75e2 test: basic c99 vla tests for C primitives
gdb/testsuite:
	* gdb.base/vla-datatypes.c: New file.
	* gdb.base/vla-datatypes.exp: New file.
2014-04-11 13:43:59 +01:00
Sanimir Agovic 024e13b46f test: evaluate pointers to C99 vla correctly.
gdb/testsuite:
	* gdb.base/vla-ptr.c: New file.
	* gdb.base/vla-ptr.exp: New file.
2014-04-11 13:43:58 +01:00
Sanimir Agovic 1a237e0ee5 test: multi-dimensional c99 vla.
gdb/testsuite:
	* gdb.base/vla-multi.c: New file.
	* gdb.base/vla-multi.exp: New file.
2014-04-11 13:43:57 +01:00
Sanimir Agovic 504f34326e test: cover subranges with present DW_AT_count attribute
The dwarf attribute DW_AT_count specifies the elements of a subrange.
This test covers subranges with present count but absent upper bound
attribute, both with static and dynamic attribute values.

testsuite:
	* gdb.dwarf2/count.exp: New file.
2014-04-11 13:43:56 +01:00
Sanimir Agovic 3bce82377f vla: evaluate operand of sizeof if its type is a vla
The c99 standard in "6.5.3.4 The sizeof operator" states:

 If the type of the operand is a variable length array type, the operand
 is evaluated;[...]

This patch mirrors the following c99 semantic in gdb:

 1| int vla[n][m];
 2| int i = 1;
 3| sizeof(vla[i++][0]); // No sideffect
 4| assert (i == 1);
 5| sizeof(vla[i++]);    // With sideffect
 6| assert (i == 2);

Note: ptype/whatsis still do not allow any sideeffects.

This patch was motivated by:

  https://sourceware.org/ml/gdb-patches/2014-01/msg00732.html

	* eval.c (evaluate_subexp_for_sizeof): Add enum noside argument.
	(evaluate_subexp_standard): Pass noside argument.
	(evaluate_subexp_for_sizeof) <BINOP_SUBSCRIPT>: Handle subscript case
	if noside equals EVAL_NORMAL. If the subscript yields a vla type
	re-evaluate subscript operation with EVAL_NORMAL to enable sideffects.
	* gdbtypes.c (resolve_dynamic_bounds): Mark bound as evaluated.
	* gdbtypes.h (enum range_flags): Add RANGE_EVALUATED case.

testsuite/gdb.base/

	* vla-sideeffect.c: New file.
	* vla-sideeffect.exp: New file.
2014-04-11 13:43:55 +01:00
Yao Qi 322f9c2100 Check file exists before completion tests
Doug told me that there are some regressions in gdb.base/completion.exp.
They are caused by my recent change, and can be reproduced via:

$ make check-parallel TESTS=gdb.base/completion.exp
FAIL: gdb.base/completion.exp: complete target core ./gdb.base/completion
FAIL: gdb.base/completion.exp: complete target tfile ./gdb.base/completion
FAIL: gdb.base/completion.exp: complete target exec ./gdb.base/completion

Current tests assume that gdb.base/completion exists but that is wrong
in a parallel run, because binary file and object files are placed
in outputs/gdb.base/completion/.

This patch is to check file exists on two candidate directories,
"gdb.base" and "outputs/gdb.base/completion/", and run tests with files
existed in either of them.

gdb/testsuite:

2014-04-11  Yao Qi  <yao@codesourcery.com>

	* gdb.base/completion.exp: Check file exists before running tests
	on file completion.
2014-04-11 12:54:09 +08:00
Pedro Alves d708bcd102 Conditional Z1 breakpoint hangs GDBserver.
While trying to fix hbreak2.exp against GDBserver I noticed this...

 (gdb) hbreak main if 1
 Sending packet: $m400580,40#2e...Packet received: e8d2ffffff5dc3554889e54883ec10c745fc00000000eb0eb800000000e8c1ffffff8345fc01817dfce70300007ee9b800000000c9c3662e0f1f840000000000
 Sending packet: $m40058f,1#31...Packet received: c7
 Hardware assisted breakpoint 1 at 0x40058f: file ../../../src/gdb/testsuite/gdb.base/break-idempotent.c, line 46.
 Sending packet: $Z1,40058f,1;X3,220127#9b...
 *hangs forever*

The issue is that nothing advances the packet pointer if
add_breakpoint_condition either fails to parse the agent expression,
or fails to find the breakpoint, resulting in an infinite loop in
process_point_options.  The latter case should really be fixed by
GDBserver tracking GDB Z1 breakpoints in its breakpoint structures
like Z0 breakpoints are, but the latter case still needs handling.
add_breakpoint_commands has the same issue, though at present I don't
know any way to trigger it other than sending a manually cooked
packet.

Unbelievably, it doesn't look like we have any test that tries setting
a conditional hardware breakpoint.  Looking at cond-eval-mode.exp, it
looks like the file was meant to actually test something, but it's
mostly empty today.  This patch adds tests that tries all sorts of
conditional breakpoints and watchpoints.  The test hangs/fails without
the GDBserver fix.

Tested on x86_64 Fedora 17.

gdb/gdbserver/
2014-04-10  Pedro Alves  <palves@redhat.com>

	* mem-break.c (add_breakpoint_condition, add_breakpoint_commands):
	Check if the condition or command is NULL before checking if the
	breakpoint is known.  On success, return true.
	* mem-break.h (add_breakpoint_condition): Document return.
	(add_breakpoint_commands): Add describing comment.
	* server.c (skip_to_semicolon): New function.
	(process_point_options): Use it.

gdb/testsuite/
2014-04-10  Pedro Alves  <palves@redhat.com>

	* gdb.base/cond-eval-mode.c: New file.
	* gdb.base/cond-eval-mode.exp: Use standard_testfile.  Adjust
	prepare_for_testing to build the new file.  Check result of
	runto_main.
	(test_break, test_watch): New procedures.
	(top level): Use them.
2014-04-10 17:14:12 +01:00
Pierre Muller ae1d276159 [testsuite] Disable Ctrl-V use for mingw hosts.
On mingw host, we have seen two fails as below,

p int1dim[0]^V@2
Invalid character '^V' in expression.
(gdb) FAIL: gdb.base/printcmds.exp: p int1dim[0]@2
p int1dim[0]^V@2^V@3
Invalid character '^V' in expression.
(gdb) FAIL: gdb.base/printcmds.exp: p int1dim[0]@2@3

In the test, the comment says "# Send \026@ instead of just @ in case
the kill character is @".  Historically, kill character was @, and
Ctrl-V (\026) is to escape the next character.  However, we don't have
to do so on mingw.  This patch is to disable ctrl-v usage on mingw
hots.  With this patch applied, it becomes:

p int1dim[0]@2
$607 = {0, 1}
(gdb) PASS: gdb.base/printcmds.exp: p int1dim[0]@2
p int1dim[0]@2@3
$608 = {{0, 1}, {2, 3}, {4, 5}}

Note that this patch is picked from Pierre's submission,

  [RFC 6/6] Fix remaining failures in gdb.base/printcmds.exp for mingw hosts.
  https://www.sourceware.org/ml/gdb-patches/2013-09/msg00943.html

gdb/testsuite:

2014-04-08  Pierre Muller  <muller@sourceware.org>

	* gdb.base/printcmds.exp (test_artificial_arrays): Disable
	Ctrl-V use for mingw hosts.
2014-04-08 14:07:28 +08:00
Siva Chandra 7af389b892 [python] Fix gdb.Value.dynamic_type for reference values.
gdb.Value.dynamic_type is supposed to work for reference and pointer
values.  However, the value object in the function 'valpy_get_dynamic_type'
was being dereferenced using 'value_ind' irrespective of the value type
being TYPE_CODE_PTR or TYPE_CODE_REF.  This patch fixes that to use
'coerce_ref' for TYPE_CODE_REF values.

ChangeLog:

	* python/py-value.c (valpy_get_dynamic_type): Use coerce_ref to
	dereference TYPE_CODE_REF values.

	testsuite/
	* gdb.python/py-value.c: Improve test case.
	* gdb.python/py-value.exp: Add new test.
2014-04-07 14:18:44 -07:00
Doug Evans 5e70318114 Add support to recognize clang.
* lib/compiler.c: Identify the clang compiler.
	* lib/compiler.cc: Ditto.
2014-04-07 14:14:03 -07:00
Yao Qi 9810b41048 Escape backslash in windows path
Hi,
On windows host, we see the following ERROR,

(gdb) PASS: gdb.base/setshow.exp: set history filename ~/foobar.baz
ERROR OCCURED: couldn't compile regular expression pattern: invalid escape \ seq
uence
    while executing
"expect -nobrace -i exp13 -timeout 10 -re {.*A problem internal to GDB has been
detected} {
	    fail "$message (GDB internal error)"
	    gdb_internal..."
    invoked from within
"expect {
-i exp13 -timeout 10
	-re ".*A problem internal to GDB has been detected" {
	    fail "$message (GDB internal error)"
	    gdb_internal_erro..."
    ("uplevel" body line 1)
    invoked from within
"uplevel $body" REGEXP REG_EESCAPE {invalid escape \ sequence} couldn't compile
regular expression pattern: invalid escape \ sequenceERROR: Process no longer ex
ists

which leads to
UNRESOLVED: gdb.base/setshow.exp: show history filename (~/foobar.baz)

and this error is thrown from this test below:

gdb_test "show history filename" \
    "The filename in which to record the command history is \"$HOME/foobar.baz\"..*" \
    "show history filename (~/foobar.baz)"

HOME is a windows path, like C:\foo\bar.  When it is used in gdb_test to match
output, the error is thrown because backslash is a special character in
regular expression.  This patch is to escape backslash to fix this
error by using string_to_regexp.

gdb/testsuite:

2014-04-03  Yao Qi  <yao@codesourcery.com>

	* gdb.base/setshow.exp: Invoke string_to_regexp to HOME and PWD.
2014-04-03 14:51:40 +08:00
Anton Blanchard 98d1b8dcd8 gdb.arch/ppc64-atomic-inst.exp: Improve error handling.
gdb/testsuite/
2014-04-01  Anton Blanchard  <anton@samba.org>

	* gdb.arch/ppc64-atomic-inst.exp: Use untested.  Make test
	messages unique.
2014-04-01 12:12:59 +11:00
Anton Blanchard 3114cea14b gdb.arch/ppc64-atomic-inst.exp: Use standard_testfile, prepare_for_testing.
gdb/testsuite/
2014-04-01  Anton Blanchard  <anton@samba.org>

	* gdb.arch/ppc64-atomic-inst.exp: Use standard_testfile,
	prepare_for_testing.
2014-04-01 12:12:55 +11:00
Anton Blanchard 62f7182c14 Fix ppc64 single step over atomic sequence testcase.
The current ppc64 single step over atomic sequence testcase is written
in C and breaks with some versions of gcc. Convert the test to
assembly and use stepi to step through it.

gdb/testsuite/
2014-04-01  Anton Blanchard  <anton@samba.org>

	* gdb.arch/ppc64-atomic-inst.c: Remove.
	* gdb.arch/ppc64-atomic-inst.S: New file.
	* gdb.arch/ppc64-atomic-inst.exp: Adapt for asm based testcase.
2014-04-01 12:12:48 +11:00
Doug Evans 770e7fc78c New option "set print symbol-loading".
* NEWS: Mention it.
	* solib.c (solib_read_symbols): Only print symbol loading messages
	if requested.
	(solib_add): If symbol loading is in "brief" mode, notify user
	symbols are being loaded.
	(reload_shared_libraries_1): Ditto.
	* symfile.c (print_symbol_loading_off): New static global.
	(print_symbol_loading_brief): New static global.
	(print_symbol_loading_full): New static global.
	(print_symbol_loading_enums): New static global.
	(print_symbol_loading): New static global.
	(print_symbol_loading_p): New function.
	(symbol_file_add_with_addrs): Only print symbol loading messages
	if requested.
	(_initialize_symfile): Register "print symbol-loading" set/show
	command.
	* symfile.h (print_symbol_loading_p): Declare.

	doc/
	* gdb.texinfo (Symbols): Document set/show print symbol-loading.

	testsuite/
	* gdb.base/print-symbol-loading-lib.c: New file.
	* gdb.base/print-symbol-loading-main.c: New file.
	* gdb.base/print-symbol-loading.exp: New file.
2014-03-31 12:07:48 -07:00
Yao Qi 46e2bafa7a Allow ';' as a directory separator
Hi,
I find two fails in source-dir.exp on mingw32 host.

(gdb) directory /nOtExStInG/a /nOtExStInG/b /nOtExStInG/c^M
Warning: /nOtExStInG/a: No such file or directory.^M
Warning: /nOtExStInG/b: No such file or directory.^M
Warning: /nOtExStInG/c: No such file or directory.^M
Source directories searched: /nOtExStInG/a;/nOtExStInG/b;/nOtExStInG/c;$cdir;$cwd^M
(gdb) FAIL: gdb.base/source-dir.exp: directory /nOtExStInG/a /nOtExStInG/b /nOtExStInG/c
directory /nOtExStInG/b /nOtExStInG/d /nOtExStInG/c^M
Warning: /nOtExStInG/b: No such file or directory.^M
Warning: /nOtExStInG/d: No such file or directory.^M
Warning: /nOtExStInG/c: No such file or directory.^M
Source directories searched: /nOtExStInG/b;/nOtExStInG/d;/nOtExStInG/c;/nOtExStInG/a;$cdir;$cwd^M
(gdb) FAIL: gdb.base/source-dir.exp: directory /nOtExStInG/b /nOtExStInG/d /nOtExStInG/c

The regular expression expects ':' and ';' is path separator on Windows.
This patch is to allow ';' as a path separator in regular expression.

This patch is similar to Dan's patch to fix a similar problem here

 Re: directory separators on minGW hosts
 https://sourceware.org/ml/gdb-patches/2006-02/msg00359.html

It is obvious.  Pushed it in.

gdb/testsuite:

2014-03-31  Yao Qi  <yao@codesourcery.com>

	* gdb.base/source-dir.exp: Allow ';' as a directory separator.
2014-03-31 15:00:28 +08:00
Joel Brobecker 8776cfe971 [varobj] false type-changed status for reference to Ada array
Given the following variable...

   BT : Bounded := New_Bounded (Low => 1, High => 3);

... where type Bounded is defined as a simple unconstrained array:

   type Bounded is array (Integer range <>) of Integer;

Creating a varobj for that variable, and immediately asking for
varobj updates, GDB says that our varobj changed types!

    (gdb)
    -var-create bt * bt
    ^done,name="bt",numchild="3",value="[3]",type="<ref> array (1 .. 3) of integer",has_more="0"
    (gdb)
    -var-update 1 *
    ^done,changelist=[{name="bt",value="[3]",in_scope="true",type_changed="true",new_type="<ref> array (1 .. 3) of integer",new_num_children="3",has_more="0"}]

The expected output for the -var-update command is, in this case:

    (gdb)
    -var-update 1 *
    ^done,changelist=[]

The problem occurs because the ada-varobj module does not handle
references, and while the references gets stripped when the varobj
gets created, it doesn't when computing varobj updates.

More specifically, when creating the varobj, varobj_create creates
a new value which is a reference to a TYPE_CODE_ARRAY. It then calls
install_new_value which calls coerce_ref with the following comment:

    /* We are not interested in the address of references, and given
       that in C++ a reference is not rebindable, it cannot
       meaningfully change.  So, get hold of the real value.  */
    if (value)
      value = coerce_ref (value);

This leaves the varobj's type component still a ref, while
the varobj's value is now our array, without the ref. This explains
why the "value" field in the varobj indicates an array with 3 elements
"[3]" while the "type" field shows a ref to an array. Generally
speaking, most users have said that showing the ref was a useful
piece of information, so this patch is not touching this part.

Next, when the user issues the -var-update request, varobj_update
calls value_of_root to compute the varobj's new value as well as
determine whether the value's type has changed or not. What happens
in a nutshell is that it calls value_of_root_1 (which re-evaluates
the expression and returns the corresponding new value), finds that
the new value is not NULL, and thus asks whether it has mutated:

    else if (varobj_value_has_mutated (var, value, value_type (value)))

This then indirectly delegates the determination to the language-specific
callback, which fails, because it does not handle references.

This patch fixes the issue by adjusting varobj_value_has_mutated to
expect references, and strip them when seen. This allows the various
language-specific implementations to remain unaware of references.

gdb/ChangeLog:

        * varobj.c (varobj_value_has_mutated): If NEW_VALUE is
        a reference, strip the reference layer before calling
        the lang_ops value_has_mutated callback.

gdb/testsuite/ChangeLog:

        * gdb.ada/mi_dyn_arr: New testcase.
2014-03-28 06:22:24 -07:00
Doug Evans 5d1ef36157 * gdb.dwarf2/dw2-abs-hi-pc.exp: Build tests with "nodebug". 2014-03-27 11:38:30 -07:00
Yao Qi b5bee91426 Return zero in can_single_step_to_signal_handler for nios2-*-* target
nios2 uses software single step, so GDB is unable to single step to
the signal handler.  In order to reflect this, teach
can_single_step_to_signal_handler to return zero for nios2 target.

gdb/testsuite:

2014-03-27  Yao Qi  <yao@codesourcery.com>

	* lib/gdb.exp (can_single_step_to_signal_handler): Return zero
	if target is nios2-*-*.
2014-03-27 16:34:35 +08:00
Yao Qi 0d4d0e772a Skip tests on completion and readline when readline lib isn't used
The completion feature and other features on readline depend on the
readline library.  However, readline library is not always used, for
example, running testsuite like

  make check RUNTESTFLAGS="--host_board=local-remote-host"

the input stream is not a tty, and GDB doesn't use readline library
as a result.

This patch is to skip tests on completion and readline if
'show editing' is off, which means readline isn't used.  Note that
some tests in gdb.base/completion.exp test command complete, which
isn't related to readline, so these tests aren't affected by readline
library.  This patch also moves these tests up, run them
unconditionally, and run the rest if readline library is used.

gdb/testsuite:

2014-03-26  Yao Qi  <yao@codesourcery.com>

	* lib/gdb.exp (readline_is_used): New proc.
	* gdb.base/completion.exp: Move tests on command complete up.
	Skip the rest of tests if readline is not used.
	* gdb.ada/complete.exp: Skp the test if readline is not
	used.
	* gdb.base/filesym.exp: Likewise.
	* gdb.base/macscp.exp: Likewise.
	* gdb.base/readline-ask.exp: Likewise.
	* gdb.base/readline.exp: Likewise.
	* gdb.python/py-cmd.exp: Likewise.
	* gdb.trace/tfile.exp: Likewise.
2014-03-26 21:11:08 +08:00
Yao Qi 29361eee14 Fix code format issues gdb.base/macscp.exp
When I do something else, I find code format in gdb.base/macscp.exp is
messy.  This patch is to fix various code format issues in it.

Pushed as it is obvious.

gdb/testsuite:

2014-03-26  Yao Qi  <yao@codesourcery.com>

	* gdb.base/macscp.exp: Fix code format issues.
2014-03-26 13:17:37 +08:00
Ulrich Weigand bc9a55253e Support gdb.asm/asm-source.exp on powerpc64le
Add new powerpc64le.inc file appropriate for the ELFv2 ABI and
use it to support the asm-source.exp test case on powerpc64le.

gdb/testsuite/
2014-03-25  Ulrich Weigand  <uweigand@de.ibm.com>

	* gdb.asm/asm-source.exp: Handle powerpc64le-* targets.
	* gdb.asm/powerpc64le.inc: New file.
2014-03-25 15:39:32 +01:00
Pedro Alves d3839ede05 "source", foreground execution commands, and target-async
Sourcing a GDB script that runs foreground execution commands in
succession fails if the target can async:

 Breakpoint 1, main () at ../../../src/gdb/testsuite/gdb.base/source-execution.c:36
 36        func1 ();
 (gdb) source ../../../src/gdb/testsuite/gdb.base/source-execution.gdb
 ../../../src/gdb/testsuite/gdb.base/source-execution.gdb:21: Error in sourced command file:
 Cannot execute this command while the selected thread is running.
 (gdb) FAIL: gdb.base/source-execution.exp: source source-execution.gdb

That is, after a foreground execution command, GDB moves on to the
following command immediately before waiting for the previous command
to complete.

https://sourceware.org/ml/gdb-patches/2011-09/msg00037.html (b4a14fd0)
addressed this for command lists, Python's gdb.execute, etc., but
missed "source".  Fixed now in the same way.

gdb/
2014-03-25  Pedro Alves  <palves@redhat.com>

	* cli/cli-script.c (script_from_file): Force the interpreter to
	sync mode.

gdb/testsuite/
2014-03-25  Pedro Alves  <palves@redhat.com>
	    Doug Evans  <dje@google.com>

	* gdb.base/source-execution.c: New file.
	* gdb.base/source-execution.exp: New file.
	* gdb.base/source-execution.gdb: New file.
2014-03-25 11:45:53 +00:00
Doug Evans 01672a570a gdb.linespec/macro-relative.exp: Mark the test as unsupported if using fission. 2014-03-24 16:03:20 -07:00
Hui Zhu 88bbeca9d5 Fix PR breakpoints/16101: gdb.base/dprintf.exp agent-printf failures with non-Z0-supporting gdbservers
After a previous patch that was committed by Pedro (0000e5cc), trying
to set a dprintf with with a GDBserver that doesn't support agent
commands at all now throws an error.  But the dprintf tests still fail
with some GDBserver targets because they doesn't try to handle the
case of the server reporting support for breakpoint commands, but not
be able to use those in combination with Z0 (because Z0 isn't actually
supported, for example):

 FAIL: gdb.base/dprintf.exp: 1st dprintf, agent
 FAIL: gdb.base/dprintf.exp: 2nd dprintf, agent
 FAIL: gdb.base/dprintf.exp: dprintf info 2 (pattern 4)

Similarly for the MI test.

This patch makes the tests handle this scenario.

Tested with native, and native gdbserver on x86_64 Fedora 17.

Also tested with the native-gdbserver.exp board hacked with:

 set GDBFLAGS "${GDBFLAGS} -ex \"set remote breakpoint-commands off\""

(actually, "set remote breakpoint-commands off" is presently broken,
so this was on top of a fix for that command.)

which results in:
 (gdb) PASS: gdb.base/dprintf.exp: 2nd dprintf, gdb
 set dprintf-style agent
 warning: Target cannot run dprintf commands, falling back to GDB printf
 warning: Target cannot run dprintf commands, falling back to GDB printf
 (gdb) UNSUPPORTED: gdb.base/dprintf.exp: set dprintf style to agent

gdb.sum:
 Running target native-gdbserver
 Running ../../../src/gdb/testsuite/gdb.base/dprintf.exp ...
 PASS: gdb.base/dprintf.exp: dprintf
 PASS: gdb.base/dprintf.exp: dprintf foo
 PASS: gdb.base/dprintf.exp: dprintf 29
 PASS: gdb.base/dprintf.exp: dprintf foo,"At foo entry\n"
 PASS: gdb.base/dprintf.exp: ignore $bpnum 1
 PASS: gdb.base/dprintf.exp: dprintf 26,"arg=%d, g=%d\n", arg, g
 PASS: gdb.base/dprintf.exp: dprintf info 1
 PASS: gdb.base/dprintf.exp: break 27
 PASS: gdb.base/dprintf.exp: 1st dprintf, gdb
 PASS: gdb.base/dprintf.exp: 2nd dprintf, gdb
 UNSUPPORTED: gdb.base/dprintf.exp: set dprintf style to agent
 PASS: gdb.base/dprintf.exp: Set dprintf style to an unrecognized type

And also with the native-gdbserver.exp board hacked with:

 set GDBFLAGS "${GDBFLAGS} -ex \"set remote Z-packet off\""

which results in:
 (gdb) continue
 Continuing.
 Warning:
 Cannot insert breakpoint 3: Target doesn't support breakpoints that have target side commands.
 Cannot insert breakpoint 4: Target doesn't support breakpoints that have target side commands.

 (gdb) UNSUPPORTED: gdb.base/dprintf.exp: 1st dprintf, agent

gdb.sum:
 Running target native-gdbserver
 Running ../../../src/gdb/testsuite/gdb.base/dprintf.exp ...
 PASS: gdb.base/dprintf.exp: dprintf
 PASS: gdb.base/dprintf.exp: dprintf foo
 PASS: gdb.base/dprintf.exp: dprintf 29
 PASS: gdb.base/dprintf.exp: dprintf foo,"At foo entry\n"
 PASS: gdb.base/dprintf.exp: ignore $bpnum 1
 PASS: gdb.base/dprintf.exp: dprintf 26,"arg=%d, g=%d\n", arg, g
 PASS: gdb.base/dprintf.exp: dprintf info 1
 PASS: gdb.base/dprintf.exp: break 27
 PASS: gdb.base/dprintf.exp: 1st dprintf, gdb
 PASS: gdb.base/dprintf.exp: 2nd dprintf, gdb
 PASS: gdb.base/dprintf.exp: set dprintf style to agent
 UNSUPPORTED: gdb.base/dprintf.exp: 1st dprintf, agent
 PASS: gdb.base/dprintf.exp: Set dprintf style to an unrecognized type

(One of the new comments mentions breakpoint always-inserted mode.
Actually testing with breakpoint always-inserted mode fails these
dprintf tests, due to the way they are written.  But that'll take a
more substancial rewrite of the tests, so I'm leaving that for another
day.)

gdb/testsuite/
2014-03-24  Hui Zhu  <hui@codesourcery.com>
	    Pedro Alves  <palves@redhat.com>

	PR breakpoints/16101
	* gdb.base/dprintf.exp: Use unsupported rather than changing the
	test pass/fail messages.  Detect missing support for dprintf when
	breakpoints are actually inserted.
	* gdb.base/mi-dprintf.exp: Detect missing support for dprintf when
	breakpoints are actually inserted.
	* lib/mi-support.exp (mi_run_cmd_full): Return -1 if continue
	fails.
2014-03-24 19:30:50 +00:00
Jan Kratochvil d23487918b testsuite: Remove needless linux-nat requirement in gdb-sigterm.exp.
That "set debug lin-lwp 1" command even is not needed for the functionality of
this testcase.

This patch does fix a testcase error on aarch64-none-elf.

gdb/testsuite/
2014-03-24  Jan Kratochvil  <jan.kratochvil@redhat.com>

	* gdb.base/gdb-sigterm.exp (do_test): Remove "set debug lin-lwp 1".

Message-ID: <20140323165745.GA23830@host2.jankratochvil.net>
2014-03-24 17:37:32 +01:00
Doug Evans 25d743f9e6 Fix typo in previous entry. 2014-03-22 02:59:04 -04:00
Doug Evans 51b8d20cf4 * gdb.guile/guile.exp (guile not supported): Verify multi-line
guile command issues an error.
2014-03-22 02:57:08 -04:00
Doug Evans feef67abfa * extension.c (eval_ext_lang_from_control_command): Avoid dereferencing
NULL pointer.

	testsuite/
	* gdb.python/python.exp (python not supported): Verify multi-line
	python command issues an error.
2014-03-22 02:44:39 -04:00
Maciej W. Rozycki ecebef6a9a gdb.threads/thread-specific.exp: Fix uninitialized variable references
This fixes:

FAIL: gdb.threads/thread-specific.exp: continue to thread-specific breakpoint (timeout)
ERROR: tcl error sourcing .../gdb/testsuite/gdb.threads/thread-specific.exp.
ERROR: can't read "this_breakpoint": no such variable
    while executing
"gdb_test_multiple "info breakpoint $this_breakpoint" "info on bp" {
    -re ".*stop only in thread (\[0-9\]*).*$gdb_prompt $" {
        set this_thread $expe..."
    (file ".../gdb/testsuite/gdb.threads/thread-specific.exp" line 108)
    invoked from within
"source .../gdb/testsuite/gdb.threads/thread-specific.exp"
    ("uplevel" body line 1)
    invoked from within
"uplevel #0 source .../gdb/testsuite/gdb.threads/thread-specific.exp"
    invoked from within
"catch "uplevel #0 source $test_file_name""

and then:

FAIL: gdb.threads/thread-specific.exp: continue to thread-specific breakpoint (timeout)
UNTESTED: gdb.threads/thread-specific.exp: info on bp
ERROR: tcl error sourcing .../gdb/testsuite/gdb.threads/thread-specific.exp.
ERROR: can't read "this_thread": no such variable
    while executing
"gdb_test {print $_thread} ".* = $this_thread" "thread var at break""
    (file ".../gdb/testsuite/gdb.threads/thread-specific.exp" line 119)
    invoked from within
"source .../gdb/testsuite/gdb.threads/thread-specific.exp"
    ("uplevel" body line 1)
    invoked from within
"uplevel #0 source .../gdb/testsuite/gdb.threads/thread-specific.exp"
    invoked from within
"catch "uplevel #0 source $test_file_name""

Final results:

FAIL: gdb.threads/thread-specific.exp: continue to thread-specific breakpoint (timeout)
UNTESTED: gdb.threads/thread-specific.exp: info on bp
UNTESTED: gdb.threads/thread-specific.exp: thread var at break

Of course the first failure best wasn't there, but failing that the script
shouldn't crash.

	* gdb.threads/thread-specific.exp: Handle the lack of usable
	$this_breakpoint and $this_thread.
2014-03-21 23:51:16 +00:00
Hui Zhu ccdd1909ad Fix internal warning when "gdb -p xxx"
The issue that was fixed by b4ab256ded
can not be found in regression test.
Update attach.exp to test it.

https://sourceware.org/ml/gdb-patches/2014-03/msg00438.html

2014-03-21  Hui Zhu  <hui@codesourcery.com>

	* gdb.base/attach.exp (do_command_attach_tests): New.
2014-03-21 11:23:06 +08:00
Pedro Alves beb460e8d2 make dprintf.exp pass in target async mode
When target-async is enabled, dprintf.exp fails:

 Running ../../../src/gdb/testsuite/gdb.base/dprintf.exp ...
 FAIL: gdb.base/dprintf.exp: 1st dprintf, call
 FAIL: gdb.base/dprintf.exp: 2nd dprintf, call
 FAIL: gdb.base/dprintf.exp: Set dprintf function
 FAIL: gdb.base/dprintf.exp: 1st dprintf, fprintf
 FAIL: gdb.base/dprintf.exp: 2nd dprintf, fprintf

 Breakpoint 2, main (argc=1, argv=0x7fffffffd3f8) at ../../../src/gdb/testsuite/gdb.base/dprintf.c:33
 33        int loc = 1234;
 (gdb) continue
 Continuing.
 kickoff 1234
 also to stderr 1234
 At foo entry
 (gdb) FAIL: gdb.base/dprintf.exp: 1st dprintf, call

The problem is that GDB gave the prompt back to the user too early.

This happens when calling functions while handling an event that
doesn't cause a user visible stop.  dprintf with "set dprintf-style
gdb" is one such case.  This patch adds a test case that has a
breakpoint with a condition that calls a function that returns false,
so that regression testing isn't dependent on the implementation of
dprintf.

The problem happens because run_inferior_call causes GDB to forget
that it is running in sync_execution mode, so any event that runs an
inferior call causes fetch_inferior_event to display the prompt, even
if the event should not result in a user visible stop (that is, gdb
resumes the inferior and waits for the next event).

This patch fixes the issue by noticing when GDB was in sync_execution
mode in run_inferior_call, and taking care to restore this state
afterward.

gdb/
2014-03-20  Tom Tromey  <tromey@redhat.com>

	PR cli/15718
	* infcall.c: Include event-top.h.
	(run_inferior_call): Call async_disable_stdin if needed.

gdb/testsuite/
2014-03-20  Tom Tromey  <tromey@redhat.com>
	    Pedro Alves  <palves@redhat.com>

	PR cli/15718
	* gdb.base/condbreak-call-false.c: New file.
	* gdb.base/condbreak-call-false.exp: New file.
2014-03-20 17:49:51 +00:00
Pedro Alves 40acf43aad Further cleanup of signal-while-stepping-over-bp-other-thread.c.
This test now uses pthread_kill instead of the host's kill command, so
no longer need to block signals, or store the the inferior's PID.

gdb/testsuite/
2014-03-20  Pedro Alves  <palves@redhat.com>

	* gdb.threads/signal-while-stepping-over-bp-other-thread.c (pid):
	Delete.
	(block_signals, unblock_signals): Delete.
	(child_function_2, main): Remove references to deleted variable
	and functions.
2014-03-20 14:09:53 +00:00
Pedro Alves 9f5e1e021a Make signal-while-stepping-over-bp-other-thread.exp run against remote targets too.
Use pthread_kill instead of the host's "kill".  The reason the test
wasn't written that way to begin with, is that done this way, before
the previous fixes to make GDB step-over all other threads before the
stepping thread, the test would fail...

Tested on x86_64 Fedora 17, native and gdbserver.

gdb/testsuite/
2014-03-20  Pedro Alves  <palves@redhat.com>

	* gdb.threads/signal-while-stepping-over-bp-other-thread.c (main):
	Use pthread_kill to signal thread 2.
	* gdb.threads/signal-while-stepping-over-bp-other-thread.exp:
	Adjust to make the test send itself a signal rather than using the
	host's "kill" command.
2014-03-20 13:44:32 +00:00
Pedro Alves 99619beac6 Handle multiple step-overs.
This test fails with current mainline.

If the program stopped for a breakpoint in thread 1, and then the user
switches to thread 2, and resumes the program, GDB first switches back
to thread 1 to step it over the breakpoint, in order to make progress.

However, that logic only considers the last reported event, assuming
only one thread needs that stepping over dance.

That's actually not true when we play with scheduler-locking.  The
patch adds an example to the testsuite of multiple threads needing a
step-over before the stepping thread can be resumed.  With current
mainline, the program re-traps the same breakpoint it had already
trapped before.

E.g.:

 Breakpoint 2, main () at ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c:99
 99	  wait_threads (); /* set wait-threads breakpoint here */
 (gdb) PASS: gdb.threads/multiple-step-overs.exp: step: continue to breakpoint: run to breakpoint
 info threads
   Id   Target Id         Frame
   3    Thread 0x7ffff77c9700 (LWP 4310) "multiple-step-o" 0x00000000004007ca in child_function_3 (arg=0x1) at ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c:43
   2    Thread 0x7ffff7fca700 (LWP 4309) "multiple-step-o" 0x0000000000400827 in child_function_2 (arg=0x0) at ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c:60
 * 1    Thread 0x7ffff7fcb740 (LWP 4305) "multiple-step-o" main () at ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c:99
 (gdb) PASS: gdb.threads/multiple-step-overs.exp: step: info threads shows all threads
 set scheduler-locking on
 (gdb) PASS: gdb.threads/multiple-step-overs.exp: step: set scheduler-locking on
 break 44
 Breakpoint 3 at 0x4007d3: file ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c, line 44.
 (gdb) break 61
 Breakpoint 4 at 0x40082d: file ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c, line 61.
 (gdb) thread 3
 [Switching to thread 3 (Thread 0x7ffff77c9700 (LWP 4310))]
 #0  0x00000000004007ca in child_function_3 (arg=0x1) at ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c:43
 43	      (*myp) ++;
 (gdb) PASS: gdb.threads/multiple-step-overs.exp: step: thread 3
 continue
 Continuing.

 Breakpoint 3, child_function_3 (arg=0x1) at ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c:44
 44	      callme (); /* set breakpoint thread 3 here */
 (gdb) PASS: gdb.threads/multiple-step-overs.exp: step: continue to breakpoint: run to breakpoint in thread 3
 p *myp = 0
 $1 = 0
 (gdb) PASS: gdb.threads/multiple-step-overs.exp: step: unbreak loop in thread 3
 thread 2
 [Switching to thread 2 (Thread 0x7ffff7fca700 (LWP 4309))]
 #0  0x0000000000400827 in child_function_2 (arg=0x0) at ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c:60
 60	      (*myp) ++;
 (gdb) PASS: gdb.threads/multiple-step-overs.exp: step: thread 2
 continue
 Continuing.

 Breakpoint 4, child_function_2 (arg=0x0) at ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c:61
 61	      callme (); /* set breakpoint thread 2 here */
 (gdb) PASS: gdb.threads/multiple-step-overs.exp: step: continue to breakpoint: run to breakpoint in thread 2
 p *myp = 0
 $2 = 0
 (gdb) PASS: gdb.threads/multiple-step-overs.exp: step: unbreak loop in thread 2
 thread 1
 [Switching to thread 1 (Thread 0x7ffff7fcb740 (LWP 4305))]
 #0  main () at ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c:99
 99	  wait_threads (); /* set wait-threads breakpoint here */
 (gdb) PASS: gdb.threads/multiple-step-overs.exp: step: thread 1
 set scheduler-locking off
 (gdb) PASS: gdb.threads/multiple-step-overs.exp: step: set scheduler-locking off

At this point all thread are stopped for a breakpoint that needs stepping over.

 (gdb) step

 Breakpoint 2, main () at ../../../src/gdb/testsuite/gdb.threads/multiple-step-overs.c:99
 99	  wait_threads (); /* set wait-threads breakpoint here */
 (gdb) FAIL: gdb.threads/multiple-step-overs.exp: step

But that "step" retriggers the same breakpoint instead of making
progress.

The patch teaches GDB to step over all breakpoints of all threads
before resuming the stepping thread.

Tested on x86_64 Fedora 17, against pristine mainline, and also my
branch that implements software single-stepping on x86.

gdb/
2014-03-20  Pedro Alves  <palves@redhat.com>

	* infrun.c (prepare_to_proceed): Delete.
	(thread_still_needs_step_over): New function.
	(find_thread_needs_step_over): New function.
	(proceed): If the current thread needs a step-over, set its
	steping_over_breakpoint flag.  Adjust to use
	find_thread_needs_step_over instead of prepare_to_proceed.
	(process_event_stop_test): For BPSTAT_WHAT_STOP_NOISY and
	BPSTAT_WHAT_STOP_SILENT, assume the thread stopped for a
	breakpoint.
	(switch_back_to_stepped_thread): Step over breakpoints of all
	threads not the stepping thread, before switching back to the
	stepping thread.

gdb/testsuite/
2014-03-20  Pedro Alves  <palves@redhat.com>

	* gdb.threads/multiple-step-overs.c: New file.
	* gdb.threads/multiple-step-overs.exp: New file.
	* gdb.threads/signal-while-stepping-over-bp-other-thread.exp:
	Adjust expected infrun debug output.
2014-03-20 13:43:28 +00:00
Pedro Alves 2adfaa28b5 Fix for even more missed events; eliminate thread-hop code.
Even with deferred_step_ptid out of the way, GDB can still lose
watchpoints.

If a watchpoint triggers and the PC points to an address where a
thread-specific breakpoint for another thread is set, the thread-hop
code triggers, and we lose the watchpoint:

  if (ecs->event_thread->suspend.stop_signal == GDB_SIGNAL_TRAP)
    {
      int thread_hop_needed = 0;
      struct address_space *aspace =
	get_regcache_aspace (get_thread_regcache (ecs->ptid));

      /* Check if a regular breakpoint has been hit before checking
         for a potential single step breakpoint.  Otherwise, GDB will
         not see this breakpoint hit when stepping onto breakpoints.  */
      if (regular_breakpoint_inserted_here_p (aspace, stop_pc))
	{
	  if (!breakpoint_thread_match (aspace, stop_pc, ecs->ptid))
	    thread_hop_needed = 1;
	    ^^^^^^^^^^^^^^^^^^^^^
	}

And on software single-step targets, even without a thread-specific
breakpoint in the way, here in the thread-hop code:

      else if (singlestep_breakpoints_inserted_p)
	{
...
	  if (!ptid_equal (singlestep_ptid, ecs->ptid)
	      && in_thread_list (singlestep_ptid))
	    {
	      /* If the PC of the thread we were trying to single-step
		 has changed, discard this event (which we were going
		 to ignore anyway), and pretend we saw that thread
		 trap.  This prevents us continuously moving the
		 single-step breakpoint forward, one instruction at a
		 time.  If the PC has changed, then the thread we were
		 trying to single-step has trapped or been signalled,
		 but the event has not been reported to GDB yet.

		 There might be some cases where this loses signal
		 information, if a signal has arrived at exactly the
		 same time that the PC changed, but this is the best
		 we can do with the information available.  Perhaps we
		 should arrange to report all events for all threads
		 when they stop, or to re-poll the remote looking for
		 this particular thread (i.e. temporarily enable
		 schedlock).  */

	     CORE_ADDR new_singlestep_pc
	       = regcache_read_pc (get_thread_regcache (singlestep_ptid));

	     if (new_singlestep_pc != singlestep_pc)
	       {
		 enum gdb_signal stop_signal;

		 if (debug_infrun)
		   fprintf_unfiltered (gdb_stdlog, "infrun: unexpected thread,"
				       " but expected thread advanced also\n");

		 /* The current context still belongs to
		    singlestep_ptid.  Don't swap here, since that's
		    the context we want to use.  Just fudge our
		    state and continue.  */
                 stop_signal = ecs->event_thread->suspend.stop_signal;
                 ecs->event_thread->suspend.stop_signal = GDB_SIGNAL_0;
                 ecs->ptid = singlestep_ptid;
                 ecs->event_thread = find_thread_ptid (ecs->ptid);
                 ecs->event_thread->suspend.stop_signal = stop_signal;
                 stop_pc = new_singlestep_pc;
               }
             else
	       {
		 if (debug_infrun)
		   fprintf_unfiltered (gdb_stdlog,
				       "infrun: unexpected thread\n");

		 thread_hop_needed = 1;
		 stepping_past_singlestep_breakpoint = 1;
		 saved_singlestep_ptid = singlestep_ptid;
	       }
	    }
	}

we either end up with thread_hop_needed, ignoring the watchpoint
SIGTRAP, or switch to the stepping thread, again ignoring that the
SIGTRAP could be for some other event.

The new test added by this patch exercises both paths.

So the fix is similar to the deferred_step_ptid fix -- defer the
thread hop to _after_ the SIGTRAP had a change of passing through the
regular bpstat handling.  If the wrong thread hits a breakpoint, we'll
just end up with BPSTAT_WHAT_SINGLE, and if nothing causes a stop,
keep_going starts a step-over.

Most of the stepping_past_singlestep_breakpoint mechanism is really
not necessary -- setting the thread to step over a breakpoint with
thread->trap_expected is sufficient to keep all other threads locked.
It's best to still keep the flag in some form though, because when we
get to keep_going, the software single-step breakpoint we need to step
over is already gone -- an optimization done by a follow up patch will
check whether a step-over is still be necessary by looking to see
whether the breakpoint is still there, and would find the thread no
longer needs a step-over, while we still want it.

Special care is still needed to handle the case of PC of the thread we
were trying to single-step having changed, like in the old code.  We
can't just keep_going and re-step it, as in that case we can over-step
the thread (if it was already done with the step, but hasn't reported
it yet, we'd ask it to step even further).  That's now handled in
switch_back_to_stepped_thread.  As bonus, we're now using a technique
that doesn't lose signals, unlike the old code -- we now insert a
breakpoint at PC, and resume, which either reports the breakpoint
immediately, or any pending signal.

Tested on x86_64 Fedora 17, against pristine mainline, and against a
branch that implements software single-step on x86.

gdb/
2014-03-20  Pedro Alves  <palves@redhat.com>

	* breakpoint.c (single_step_breakpoint_inserted_here_p): Make
	extern.
	* breakpoint.h (single_step_breakpoint_inserted_here_p): Declare.
	* infrun.c (saved_singlestep_ptid)
	(stepping_past_singlestep_breakpoint): Delete.
	(resume): Remove stepping_past_singlestep_breakpoint handling.
	(proceed): Store the prev_pc of the stepping thread too.
	(init_wait_for_inferior): Adjust.  Clear singlestep_ptid and
	singlestep_pc.
	(enum infwait_states): Delete infwait_thread_hop_state.
	(struct execution_control_state) <hit_singlestep_breakpoint>: New
	field.
	(handle_inferior_event): Adjust.
	(handle_signal_stop): Delete stepping_past_singlestep_breakpoint
	handling and the thread-hop code.  Before removing single-step
	breakpoints, check whether the thread hit a single-step breakpoint
	of another thread.  If it did, the trap is not a random signal.
	(switch_back_to_stepped_thread): If the event thread hit a
	single-step breakpoint, unblock it before switching to the
	stepping thread.  Handle the case of the stepped thread having
	advanced already.
	(keep_going): Handle the case of the current thread moving past a
	single-step breakpoint.

gdb/testsuite/
2014-03-20  Pedro Alves  <palves@redhat.com>

	* gdb.threads/step-over-trips-on-watchpoint.c: New file.
	* gdb.threads/step-over-trips-on-watchpoint.exp: New file.
2014-03-20 13:42:23 +00:00
Pedro Alves 31e77af205 PR breakpoints/7143 - Watchpoint does not trigger when first set
Say the program is stopped at a breakpoint, and the user sets a
watchpoint.  When the program is next resumed, GDB will first step
over the breakpoint, as explained in the manual:

  @value {GDBN} normally ignores breakpoints when it resumes
  execution, until at least one instruction has been executed.  If it
  it did not do this, you would be unable to proceed past a breakpoint
  without first disabling the breakpoint.  This rule applies whether
  or not the breakpoint already existed when your program stopped.

However, GDB currently also removes watchpoints, catchpoints, etc.,
and that means that the first instruction off the breakpoint does not
trigger the watchpoint, catchpoint, etc.

testsuite/gdb.base/watchpoint.exp has a kfail for this.

The PR proposes installing watchpoints only when stepping over a
breakpoint, but that misses catchpoints, etc.

A better fix would instead work from the opposite direction -- remove
only real breakpoints, leaving all other kinds of breakpoints
inserted.

But, going further, it's really a waste to constantly remove/insert
all breakpoints when stepping over a single breakpoint (generating a
pair of RSP z/Z packets for each breakpoint), so the fix goes a step
further and makes GDB remove _only_ the breakpoint being stepped over,
leaving all others installed.  This then has the added benefit of
reducing breakpoint-related RSP traffic substancialy when there are
many breakpoints set.

gdb/
2014-03-20  Pedro Alves  <palves@redhat.com>

	PR breakpoints/7143
	* breakpoint.c (should_be_inserted): Don't insert breakpoints that
	are being stepped over.
	(breakpoint_address_match): Make extern.
	* breakpoint.h (breakpoint_address_match): New declaration.
	* inferior.h (stepping_past_instruction_at): New declaration.
	* infrun.c (struct step_over_info): New type.
	(step_over_info): New global.
	(set_step_over_info, clear_step_over_info)
	(stepping_past_instruction_at): New functions.
	(handle_inferior_event): Clear the step-over info when
	trap_expected is cleared.
	(resume): Remove now stale comment.
	(clear_proceed_status): Clear step-over info.
	(proceed): Adjust step-over handling to set or clear the step-over
	info instead of removing all breakpoints.
	(handle_signal_stop): When setting up a thread-hop, don't remove
	breakpoints here.
	(stop_stepping): Clear step-over info.
	(keep_going): Adjust step-over handling to set or clear step-over
	info and then always inserting breakpoints, instead of removing
	all breakpoints when stepping over one.

gdb/testsuite/
2014-03-20  Pedro Alves  <palves@redhat.com>

	PR breakpoints/7143
	* gdb.base/watchpoint.exp: Mention bugzilla bug number instead of
	old gnats gdb/38.  Remove kfail.  Adjust to use gdb_test instead
	of gdb_test_multiple.
	* gdb.cp/annota2.exp: Remove kfail for gdb/38.
	* gdb.cp/annota3.exp: Remove kfail for gdb/38.
2014-03-20 13:41:08 +00:00
Pedro Alves b9f437de50 Fix missing breakpoint/watchpoint hits, eliminate deferred_step_ptid.
Consider the case of the user doing "step" in thread 2, while thread 1
had previously stopped for a breakpoint.  In order to make progress,
GDB makes thread 1 step over its breakpoint first (with all other
threads stopped), and once that is over, thread 2 then starts stepping
(with thread 1 and all others running free, by default).  If GDB
didn't do that, thread 1 would just trip on the same breakpoint
immediately again.  This is what the prepare_to_proceed /
deferred_step_ptid code is all about.

However, deferred_step_ptid code resumes the target with:

	  resume (1, GDB_SIGNAL_0);
	  prepare_to_wait (ecs);
	  return;

Recall we were just stepping over a breakpoint when we get here.  That
means that _nothing_ had installed breakpoints yet!  If there's
another breakpoint just after the breakpoint that was just stepped,
we'll miss it.  The fix for that would be to use keep_going instead.

However, there are more problems.  What if the instruction that was
just single-stepped triggers a watchpoint?  Currently, GDB just
happily resumes the thread, losing that too...

Missed watchpoints will need yet further fixes, but we should keep
those in mind.

So the fix must be to let the trap fall through the regular bpstat
handling, and only if no breakpoint, watchpoint, etc. claims the trap,
shall we switch back to the stepped thread.

Now, nowadays, we have code at the tail end of trap handling that does
exactly that -- switch back to the stepped thread
(switch_back_to_the_stepped_thread).

So the deferred_step_ptid code is just standing in the way, and can
simply be eliminated, fixing bugs in the process.  Sweet.

The comment about spurious "Switching to ..." made me pause, but is
actually stale nowadays.  That isn't needed anymore.
previous_inferior_ptid used to be re-set at each (internal) event, but
now it's only touched in proceed and normal stop.

The two tests added by this patch fail without the fix.

Tested on x86_64 Fedora 17 (also against my software single-stepping
on x86 branch).

gdb/
2014-03-20  Pedro Alves  <palves@redhat.com>

	* infrun.c (previous_inferior_ptid): Adjust comment.
	(deferred_step_ptid): Delete.
	(infrun_thread_ptid_changed, prepare_to_proceed)
	(init_wait_for_inferior): Adjust.
	(handle_signal_stop): Delete deferred_step_ptid handling.

gdb/testsuite/
2014-03-20  Pedro Alves  <palves@redhat.com>

	* gdb.threads/step-over-lands-on-breakpoint.c: New file.
	* gdb.threads/step-over-lands-on-breakpoint.exp: New file.
2014-03-20 13:26:31 +00:00
Pedro Alves 05adc73e82 gdb.base/async.exp: Enable it.
There's no reason not to enable this test anymore.

Even if the current output isn't ideal (we mess up the prompt), it's what
we have today.  We can adjust the test if the output improves.

gdb/testsuite/
2014-03-19  Pedro Alves  <palves@redhat.com>

	* gdb.base/async.exp: Remove early return.
2014-03-19 15:55:06 +00:00
Pedro Alves 6048b9501d gdb.base/async.exp: Make test messages unique.
$ cat gdb.sum| grep PASS| sort | uniq -c |sort -n
       1 PASS: gdb.base/async.exp: finish&
       1 PASS: gdb.base/async.exp: jump&
       1 PASS: gdb.base/async.exp: next&
       1 PASS: gdb.base/async.exp: nexti&
       1 PASS: gdb.base/async.exp: set exec-done-display off
       1 PASS: gdb.base/async.exp: set exec-done-display on
       1 PASS: gdb.base/async.exp: set target-async on
       1 PASS: gdb.base/async.exp: stepi&
       1 PASS: gdb.base/async.exp: until&
       2 PASS: gdb.base/async.exp: step&

gdb/testsuite/
2014-03-19  Pedro Alves  <palves@redhat.com>

	* gdb.base/async.exp (step& tests): Pass explicit test messages.
2014-03-19 15:54:31 +00:00
Pedro Alves 8bcfb00a77 gdb.base/async.exp: Fix races.
This test is currently racy:

 PASS: gdb.base/async.exp: step&
 stepi&
 (gdb) 0x0000000000400547        14       x = 5; x = 5;
 completed.
 PASS: gdb.base/async.exp: stepi&
 nexti&
 (gdb) 15         y = 3;
 completed.FAIL: gdb.base/async.exp: nexti&

The problem is here:

 	-re "^$command\r\n${before_prompt}${gdb_prompt}${after_prompt}completed\.\r\n" {
 	    pass "$command"
 	}
	-re "$gdb_prompt.*completed\.$" {
 	    fail "$command"
	}

Note how the fail pattern is a subset of the pass pattern.  If the
expect buffer happens to end up with:

  "^$command\r\n${before_prompt}${gdb_prompt}${after_prompt}completed\."

that is, the final "\r\n" has't reached the expect buffer yet, but
"completed." has, then the fail pattern matches...

gdb/testsuite/
2014-03-19  Pedro Alves  <palves@redhat.com>

	* gdb.base/async.exp (test_background): Expect \r\n after
	"completed." in the fail pattern.
2014-03-19 15:53:00 +00:00
Pedro Alves 884e37dceb gdb.base/async.exp: Factor out test pattern to a procedure.
All the tests here follow the same pattern (and they all have the same
problem, not fixed here yet).  Add a new procedure, factoring out the
pattern to a simple place.

gdb/testsuite/
2014-03-19  Pedro Alves  <palves@redhat.com>

	* gdb.base/async.exp (test_background): New procedure.
	Use it for all background execution command tests.
2014-03-19 15:51:54 +00:00
Pedro Alves 148e57e232 gdb.base/async.exp: Use prepare_for_testing.
gdb/testsuite/
2014-03-19  Pedro Alves  <palves@redhat.com>

	* gdb.base/async.exp: Use prepare_for_testing.
2014-03-19 15:51:29 +00:00
Pedro Alves f48088c7de gdb.base/async.exp: Fix stepi& test.
Currently the test assumes that "stepi" over:

 13       x = 5;

end up somewhere midline.  But, (at least) on x86, that assignment
ends up compiled as just one movl instruction, so a stepi stops at the
next line already:

 completed.
 PASS: gdb.base/async.exp: step &
 step&
 (gdb) foo () at ../../../src/gdb/testsuite/gdb.base/async.c:13
 13       x = 5;
 completed.
 PASS: gdb.base/async.exp: step &
 stepi&
 (gdb) 14         y = 3;
 completed.
 FAIL: gdb.base/async.exp: (timeout) stepi &
 nexti&
 (gdb) 16         return x + y;
 completed.
 FAIL: gdb.base/async.exp: (timeout) nexti &
 finish&
 Run till exit from #0  foo () at ../../../src/gdb/testsuite/gdb.base/async.c:16

This patch fixes it, by making sure there's more than one instruction
in that line.

gdb/testsuite/
2014-03-19  Pedro Alves  <palves@redhat.com>

	* gdb.base/async.c (foo): Make 'x' volatile.  Write to it twice in
	the same line.
2014-03-19 15:50:53 +00:00
Pedro Alves e2f6c96628 gdb.base/async.exp: Don't hardcode line numbers.
gdb/testsuite/
2014-03-19  Pedro Alves  <palves@redhat.com>

	* gdb.base/async.c (main): Add "jump here" and "until here" line
	marker comments.
	* gdb.base/async.exp (jump_here): New global.
	(jump& test): Use it.
	(until_here): New global.
	(until& test): Use it.
2014-03-19 15:48:47 +00:00
Pedro Alves c30568d4d1 gdb.base/async.exp: Leave gdb_protocol alone.
Many eons ago, async was only implemented in the remote target, and
you'd activate it by doing "target async" rather than "target remote".
That's long gone now, replaced by "set target-async on".

gdb/testsuite/
2014-03-19  Pedro Alves  <palves@redhat.com>

	* gdb.base/async.exp: Don't frob gdb_protocol.
2014-03-19 15:22:44 +00:00
Doug Evans 0172b6a7de * gdb.base/async.exp: Whitespace fixes. Turn on target-async.
Fix spelling of exec-done-display.
2014-03-18 19:19:51 -04:00
Jan Kratochvil 06c868a8dc Fix SIGTERM signal safety (PR gdb/15358).
gdb/
2014-03-18  Jan Kratochvil  <jan.kratochvil@redhat.com>

	PR gdb/15358
	* defs.h (sync_quit_force_run): New declaration.
	(QUIT): Check also SYNC_QUIT_FORCE_RUN.
	* event-top.c (async_sigterm_handler): New declaration.
	(async_sigterm_token): New variable.
	(async_init_signals): Create also async_sigterm_token.
	(async_sigterm_handler): New function.
	(sync_quit_force_run): New variable.
	(handle_sigterm): Replace quit_force call by other calls.
	* utils.c (quit): Call quit_force if SYNC_QUIT_FORCE_RUN.

gdb/testsuite/
2014-03-18  Jan Kratochvil  <jan.kratochvil@redhat.com>

	PR gdb/15358
	* gdb.base/gdb-sigterm.c: New file.
	* gdb.base/gdb-sigterm.exp: New file.

Message-ID: <20140316135334.GA30698@host2.jankratochvil.net>
2014-03-18 22:48:06 +01:00
Pedro Alves 0c7e1a4602 PR gdb/13860: make "-exec-foo"'s MI output equal to "foo"'s MI output.
Part of PR gdb/13860 is about the mi-solib.exp test's output being
different in sync vs async modes.

sync:

  >./gdb -nx -q ./testsuite/gdb.mi/solib-main -ex "set stop-on-solib-events 1" -ex "set target-async off" -i=mi
  =thread-group-added,id="i1"
  ~"Reading symbols from /home/pedro/gdb/mygit/build/gdb/testsuite/gdb.mi/solib-main..."
  ~"done.\n"
  (gdb)
  &"start\n"
  ~"Temporary breakpoint 1 at 0x400608: file ../../../src/gdb/testsuite/gdb.mi/solib-main.c, line 21.\n"
  =breakpoint-created,bkpt={number="1",type="breakpoint",disp="del",enabled="y",addr="0x0000000000400608",func="main",file="../../../src/gdb/testsuite/gdb.mi/solib-main.c",fullname="/home/pedro/gdb/mygit/src/gdb/testsuite/gdb.mi/solib-main.c",line="21",times="0",original-location="main"}
  ~"Starting program: /home/pedro/gdb/mygit/build/gdb/testsuite/gdb.mi/solib-main \n"
  =thread-group-started,id="i1",pid="17724"
  =thread-created,id="1",group-id="i1"
  ^running
  *running,thread-id="all"
  (gdb)
  =library-loaded,id="/lib64/ld-linux-x86-64.so.2",target-name="/lib64/ld-linux-x86-64.so.2",host-name="/lib64/ld-linux-x86-64.so.2",symbols-loaded="0",thread-group="i1"
  ~"Stopped due to shared library event (no libraries added or removed)\n"
  *stopped,reason="solib-event",frame={addr="0x000000379180f990",func="_dl_debug_state",args=[],from="/lib64/ld-linux-x86-64.so.2"},thread-id="1",stopped-threads="all",core="3"
  (gdb)

async:

  >./gdb -nx -q ./testsuite/gdb.mi/solib-main -ex "set stop-on-solib-events 1" -ex "set target-async on" -i=mi
  =thread-group-added,id="i1"
  ~"Reading symbols from /home/pedro/gdb/mygit/build/gdb/testsuite/gdb.mi/solib-main..."
  ~"done.\n"
  (gdb)
  start
  &"start\n"
  ~"Temporary breakpoint 1 at 0x400608: file ../../../src/gdb/testsuite/gdb.mi/solib-main.c, line 21.\n"
  =breakpoint-created,bkpt={number="1",type="breakpoint",disp="del",enabled="y",addr="0x0000000000400608",func="main",file="../../../src/gdb/testsuite/gdb.mi/solib-main.c",fullname="/home/pedro/gdb/mygit/src/gdb/testsuite/gdb.mi/solib-main.c",line="21",times="0",original-location="main"}
  ~"Starting program: /home/pedro/gdb/mygit/build/gdb/testsuite/gdb.mi/solib-main \n"
  =thread-group-started,id="i1",pid="17729"
  =thread-created,id="1",group-id="i1"
  ^running
  *running,thread-id="all"
  =library-loaded,id="/lib64/ld-linux-x86-64.so.2",target-name="/lib64/ld-linux-x86-64.so.2",host-name="/lib64/ld-linux-x86-64.so.2",symbols-loaded="0",thread-group="i1"
  (gdb)
  *stopped,reason="solib-event",thread-id="1",stopped-threads="all",core="1"

For now, let's focus only on the *stopped event.  We see that the
async output is missing frame info.  And this causes a test failure in
async mode, as "mi_expect_stop solib-event" wants to see the frame
info.

However, if we compare the event output when a real MI execution
command is used, compared to a CLI command (e.g., run vs -exec-run,
next vs -exec-next, etc.), we see:

  >./gdb -nx -q ./testsuite/gdb.mi/solib-main -ex "set stop-on-solib-events 1" -ex "set target-async off" -i=mi
  =thread-group-added,id="i1"
  ~"Reading symbols from /home/pedro/gdb/mygit/build/gdb/testsuite/gdb.mi/solib-main..."
  ~"done.\n"
  (gdb)
  r
  &"r\n"
  ~"Starting program: /home/pedro/gdb/mygit/build/gdb/testsuite/gdb.mi/solib-main \n"
  =thread-group-started,id="i1",pid="17751"
  =thread-created,id="1",group-id="i1"
  ^running
  *running,thread-id="all"
  (gdb)
  =library-loaded,id="/lib64/ld-linux-x86-64.so.2",target-name="/lib64/ld-linux-x86-64.so.2",host-name="/lib64/ld-linux-x86-64.so.2",symbols-loaded="0",thread-group="i1"
  ~"Stopped due to shared library event (no libraries added or removed)\n"
  *stopped,reason="solib-event",frame={addr="0x000000379180f990",func="_dl_debug_state",args=[],from="/lib64/ld-linux-x86-64.so.2"},thread-id="1",stopped-threads="all",core="3"
  (gdb)
  -exec-run
  =thread-exited,id="1",group-id="i1"
  =thread-group-exited,id="i1"
  =library-unloaded,id="/lib64/ld-linux-x86-64.so.2",target-name="/lib64/ld-linux-x86-64.so.2",host-name="/lib64/ld-linux-x86-64.so.2",thread-group="i1"
  =thread-group-started,id="i1",pid="17754"
  =thread-created,id="1",group-id="i1"
  ^running
  *running,thread-id="all"
  (gdb)
  =library-loaded,id="/lib64/ld-linux-x86-64.so.2",target-name="/lib64/ld-linux-x86-64.so.2",host-name="/lib64/ld-linux-x86-64.so.2",symbols-loaded="0",thread-group="i1"
  *stopped,reason="solib-event",thread-id="1",stopped-threads="all",core="1"
  =thread-selected,id="1"
  (gdb)

As seen above, with MI commands, the *stopped event _doesn't_ have
frame info.  This is because normal_stop, as commanded by the result
of bpstat_print, skips printing frame info in this case (it's an
"event", not a "breakpoint"), and when the interpreter is MI,
mi_on_normal_stop skips calling print_stack_frame, as the normal_stop
call was already done with the MI uiout.  This explains why the async
output is different even with a CLI command.  Its because in async
mode, the mi_on_normal_stop path is always taken; it is always reached
with the MI uiout, because the stop is handled from the event loop,
instead of from within `proceed -> wait_for_inferior -> normal_stop'
with the interpreter overridden, as in sync mode.

This patch fixes the issue by making all cases output the same
*stopped event, by factoring out the print code from normal_stop, and
using it from mi_on_normal_stop as well.  I chose the *stopped output
without a frame, mainly because that is what you already get if you
use MI execution commands, the commands frontends are supposed to use
(except when implementing a console).  This patch makes it simpler to
tweak the MI output differently if desired, as we only have to change
the centralized print_stop_event (taking into account whether the
uiout is MI-like), and all different modes will change accordingly.

Tested on x86_64 Fedora 17, no regressions.  The mi-solib.exp test no
longer fails in async mode with this patch, so the patch removes the
kfail.

2014-03-18  Pedro Alves  <palves@redhat.com>

	PR gdb/13860
	* inferior.h (print_stop_event): Declare.
	* infrun.c (print_stop_event): New, factored out from ...
	(normal_stop): ... this.
	* mi/mi-interp.c (mi_on_normal_stop): Use print_stop_event instead
	of bpstat_print/print_stack_frame.

2014-03-18  Pedro Alves  <palves@redhat.com>

	PR gdb/13860
	* gdb.mi/mi-solib.exp: Remove gdb/13860 kfail.
	* lib/mi-support.exp (mi_expect_stop): Add special handling for
	solib-event.
2014-03-18 17:50:28 +00:00
Joel Brobecker f7c77d9323 [testsuite/Ada] New testcase for packed array renaming.
gdb/testsuite/ChangeLog:

        * gdb.ada/pckd_arr_ren: New testcase.
2014-03-17 08:45:55 -07:00
Doug Evans 5a1e8c7a83 Fix pr 16612.
* guile/scm-type.c (tyscm_copy_type_recursive): Move type to its
	new eq?-hashtab.

	testsuite/
	* gdb.guile/scm-value.ep (test_value_after_death): Do a garbage
	collect after discarding symbols.
2014-03-13 09:55:12 -07:00
Doug Evans 350e1a768c Fix segv when referencing a value added to history after a Guile garbage collect.
* value.c (record_latest_value): Call release_value_or_incref
	instead of release_value.

	testsuite/
	* gdb.guile/scm-value.exp (test_value_in_inferior): Verify value added
	to history survives a gc.
2014-03-13 09:24:19 -07:00
Pedro Alves a69900ae4e Rename Solaris's target to "target child" like most other ports.
Note that "target procfs" is used by QNX, but the test must be failing
there, as nto-procfs.c overrides to_open with a method that doesn't
throw the error being tested.  So I'm just removing the test
completely.

gdb/
2014-03-13  Pedro Alves  <palves@redhat.com>

	* procfs.c (procfs_target): Don't override to_shortname,
	to_longname or to_doc.

gdb/testsuite/
2014-03-13  Pedro Alves  <palves@redhat.com>

	* gdb.base/default.exp: Don't test "target procfs".
2014-03-13 12:30:38 +00:00
Pedro Alves 5db9f0bdb5 Don't mention "Unix" in native target name.
I find the mention of "Unix" unnecessary (and really slightly a lie)
on GNU/Linux in a couple of places:

 (gdb) maint print target-stack
 The current target stack is:
  - multi-thread (multi-threaded child process.)
  - child (Unix child process)
  - exec (Local exec file)
  - None (None)

 (gdb) help target child
 Unix child process (started by the "run" command).

 (gdb) target child
 Use the "run" command to start a Unix child process.

It's also odd that e.g., the Windows port says "Unix" in reaction to
"target child" (it was already that way before Windows used
inf-child.c):

 (gdb) target child
 Use the "run" command to start a Unix child process.
 (gdb)

So drop "Unix", going in the direction of saying mostly the same on
all native targets:

  (gdb) maint print target-stack
  The current target stack is:
   - multi-thread (multi-threaded child process.)
 - - child (Unix child process)
 + - child (Child process)
   - exec (Local exec file)
   - None (None)

  (gdb) help target child
 - Unix child process (started by the "run" command).
 + Child process (started by the "run" command).

 (gdb) target child
 -Use the "run" command to start a Unix child process.
 +Use the "run" command to start a child process.

gdb/
2014-03-13  Pedro Alves  <palves@redhat.com>

	* inf-child.c (inf_child_open, inf_child_target): Don't mention
	Unix in user visible strings.

gdb/testsuite/
2014-03-13  Pedro Alves  <palves@redhat.com>

	* gdb.base/default.exp: Update "target child" and "target procfs"
	tests to not expect "Unix".
2014-03-13 12:02:24 +00:00
Tom Tromey b3ccfe11d3 fix regressions with target-async
A patch in the target cleanup series caused a regression when using
record with target-async.  Version 4 of the patch is here:

    https://sourceware.org/ml/gdb-patches/2014-03/msg00159.html

The immediate problem is that record supplies to_can_async_p and
to_is_async_p methods, but does not supply a to_async method.  So,
when target-async is set, record claims to support async -- but if the
underlying target does not support async, then the to_async method
call will end up in that method's default implementation, namely
tcomplain.

This worked previously because the record target used to provide a
to_async method; one that (erroneously, only at push time) checked the
other members of the target stack, and then simply dropped to_async
calls in the "does not implement async" case.

My first thought was to simply drop tcomplain as the default for
to_async.  This works, but Pedro pointed out that the only reason
record has to supply to_can_async_p and to_is_async_p is that these
default to using the find_default_run_target machinery -- and these
defaults are only needed by "run" and "attach".

So, a nicer solution presents itself: change run and attach to
explicitly call into the default run target when needed; and change
to_is_async_p and to_can_async_p to default to "return 0".  This makes
the target stack simpler to use and lets us remove the method
implementations from record.  This is also in harmony with other plans
for the target stack; namely trying to reduce the impact of
find_default_run_target.  This approach makes it clear that
find_default_is_async_p is not needed -- it is asking whether a target
that may not even be pushed is actually async, which seems like a
nonsensical question.

While an improvement, this approach proved to introduce the same bug
when using the core target.  Looking a bit deeper, the issue is that
code in "attach" and "run" may need to use either the current target
stack or the default run target -- but different calls into the target
API in those functions could wind up querying different targets.

This new patch makes the target to use more explicit in "run" and
"attach".  Then these commands explicitly make the needed calls
against that target.  This ensures that a single target is used for
all relevant operations.  This lets us remove a couple find_default_*
functions from various targets, including the dummy target.  I think
this is a decent understandability improvement.

One issue I see with this patch is that the new calls in "run" and
"attach" are not very much like the rest of the target API.  I think
fundamentally this is due to bad factoring in the target API, which
may need to be fixed for multi-target.  Tackling that seemed ambitious
for a regression fix.

While working on this I noticed that there don't seem to be any test
cases that involve both target-async and record, so this patch changes
break-precsave.exp to add some.  It also changes corefile.exp to add
some target-async tests; these pass with current trunk and with this
patch applied, but fail with the v1 patch.

This patch differs from v4 in that it moves initialization of
to_can_async_p and to_supports_non_stop into inf-child, adds some
assertions to complete_target_initialization, and adds some comments
to target.h.

Built and regtested on x86-64 Fedora 20.

2014-03-12  Tom Tromey  <tromey@redhat.com>

	* inf-child.c (return_zero): New function.
	(inf_child_target): Set to_can_async_p, to_supports_non_stop.
	* aix-thread.c (aix_thread_inferior_created): New function.
	(aix_thread_attach): Remove.
	(init_aix_thread_ops): Don't set to_attach.
	(_initialize_aix_thread): Register inferior_created observer.
	* corelow.c (init_core_ops): Don't set to_attach or
	to_create_inferior.
	* exec.c (init_exec_ops): Don't set to_attach or
	to_create_inferior.
	* infcmd.c (run_command_1): Use find_run_target.  Make direct
	target calls.
	(attach_command): Use find_attach_target.  Make direct target
	calls.
	* record-btrace.c (init_record_btrace_ops): Don't set
	to_create_inferior.
	* record-full.c (record_full_can_async_p, record_full_is_async_p):
	Remove.
	(init_record_full_ops, init_record_full_core_ops): Update.  Don't
	set to_create_inferior.
	* target.c (complete_target_initialization): Add assertion.
	(target_create_inferior): Remove.
	(find_default_attach, find_default_create_inferior): Remove.
	(find_attach_target, find_run_target): New functions.
	(find_default_is_async_p, find_default_can_async_p)
	(target_supports_non_stop, target_attach): Remove.
	(init_dummy_target): Don't set to_create_inferior or
	to_supports_non_stop.
	* target.h (struct target_ops) <to_attach>: Add comment.  Remove
	TARGET_DEFAULT_FUNC.
	<to_create_inferior>: Add comment.
	<to_can_async_p, to_is_async_p, to_supports_non_stop>: Use
	TARGET_DEFAULT_RETURN.
	<to_can_async_p, to_supports_non_stop, to_can_run>: Add comments.
	(find_attach_target, find_run_target): Declare.
	(target_create_inferior): Remove.
	(target_has_execution_1): Update comment.
	(target_supports_non_stop): Remove.
	* target-delegates.c: Rebuild.

2014-03-12  Tom Tromey  <tromey@redhat.com>

	* gdb.base/corefile.exp (corefile_test_run, corefile_test_attach):
	New procs.  Add target-async tests.
	* gdb.reverse/break-precsave.exp (precsave_tests): New proc.
	Add target-async tests.
2014-03-12 13:05:58 -06:00
Andreas Arnez 646f441776 Fix dw2-ifort-parameter.exp on PPC64
On PPC64, 'func' and 'main' are function descriptors and don't point
to the actual code.  Thus the usage of these symbols in the DWARF
assembler source was broken.  The patch introduces new labels
func_start and func_end for this purpose.
2014-03-12 16:22:19 +01:00
Andreas Arnez 288c211f8c Migrate dw2-ifort-parameter.exp to Dwarf::assemble
A "side effect" of the migration to Dwarf::assemble is that the DWARF
address size is now automatically adjusted to the target architecture.
The original assembler source hard-coded the DWARF address size to 4,
even on 64-bit architectures.  This address size mismatch caused a
test case failure on s390x due to a wrong result from DW_OP_deref.
2014-03-12 16:22:19 +01:00
Andreas Arnez e0c0f156b4 Exploit 'prepare_for_testing' etc. for 'Dwarf::assemble'-generated files
Now that prepare_for_testing etc. can cope with absolute path names,
this can be exploited for test cases with generated source files.
This is just to simplify the code and shouldn't cause any functional
change.
2014-03-12 16:22:18 +01:00
Andreas Arnez 0e5c45554b gdb.exp: Support absolute path name args in 'prepare_for_testing' etc.
Test cases that produce source files in the build directory have not
been able to use prepare_for_testing and friends.  This was because
build_executable_from_specs unconditionally prepended the source
directory path name to its arguments.
2014-03-12 16:22:18 +01:00
Jerome Guitton 5ec18f2b48 [Ada] Full view of tagged type with ptype
When evaluating an expression, if it is of a tagged type, GDB reads
the tag in memory and deduces the full view. At parsing time, however,
this operation is done only in the case of OP_VAR_VALUE. ptype does
not go through a full evaluation of expressions so it may return some
odd results:

 (gdb) print c.menu_name
 $1 = 0x0
 (gdb) ptype $
 type = system.strings.string_access
 (gdb) ptype c.menu_name
 type = <void>

This change removes this peculiarity by extending the tag resolution
to UNOP_IND and STRUCTOP_STRUCT. As in the case of OP_VAR_VALUE, this
implies switching from EVAL_AVOID_SIDE_EFFECTS to EVAL_NORMAL when a
tagged type is dereferenced.

gdb/
	* ada-lang.c (ada_evaluate_subexp): Resolve tagged types to
	full view in the case of UNOP_IND and STRUCTOP_STRUCT.

gdb/testsuite/

	* gdb.ada/tagged_access: New testcase.
2014-03-10 14:40:35 +01:00
Markus Metzger 847fc4f296 btrace, test: fix gdb.btrace/data test
The format of the output changed.  Fix the test.

testsuite/
	* gdb.btrace/data.exp: Update expected output.
2014-03-07 10:05:42 +01:00
Yao Qi cc3da68801 Fix PR16508
This patch fixes PR16508, which is about MI "-trace-find frame-number 0"
behaves differently from CLI "tfind 0".  In CLI, we check both
status->running and status->filename, but in MI, we only check
status->running, which looks wrong to me.  This patch moves the code
of checking to a new function check_trace_running, and use it in
both CLI and MI.

This patch also adds a test case pr16508.exp, which fails without this
fix, and passes with the fix applied.

  FAIL: gdb.trace/pr16508.exp: interpreter-exec mi "-trace-find frame-number 0"

gdb:

2014-03-06  Yao Qi  <yao@codesourcery.com>

	PR breakpoints/16508
	* tracepoint.c (check_trace_running): New function.
	(trace_find_command): Move code to check_trace_running and
	call check_trace_running.
	(trace_find_pc_command): Likewise.
	(trace_find_tracepoint_command): Likewise.
	(trace_find_line_command): Likewise.
	(trace_find_range_command): Likewise.
	* tracepoint.h (check_trace_running): Likewise.
	* mi/mi-main.c (mi_cmd_trace_find): Call check_trace_running.

gdb/testsuite:

2014-03-06  Yao Qi  <yao@codesourcery.com>

	* gdb.trace/pr16508.exp: New file.
2014-03-06 11:33:06 +08:00
Pedro Alves 0f26cec1fd PR gdb/16575: stale breakpoint instructions in the code cache
In non-stop mode, or rather, breakpoints always-inserted mode, the
code cache can easily end up with stale breakpoint instructions:

All it takes is filling a cache line when breakpoints already exist in
that memory region, and then delete the breakpoint.

Vis. (from the new test):

 (gdb) set breakpoint always-inserted on
 (gdb) b 23
 Breakpoint 2 at 0x400540: file ../../../src/gdb/testsuite/gdb.base/breakpoint-shadow.c, line 23.
 (gdb) b 24
 Breakpoint 3 at 0x400547: file ../../../src/gdb/testsuite/gdb.base/breakpoint-shadow.c, line 24.
 disass main
 Dump of assembler code for function main:
    0x000000000040053c <+0>:     push   %rbp
    0x000000000040053d <+1>:     mov    %rsp,%rbp
 => 0x0000000000400540 <+4>:     movl   $0x1,-0x4(%rbp)
    0x0000000000400547 <+11>:    movl   $0x2,-0x4(%rbp)
    0x000000000040054e <+18>:    mov    $0x0,%eax
    0x0000000000400553 <+23>:    pop    %rbp
    0x0000000000400554 <+24>:    retq
 End of assembler dump.

So far so good.  Now flush the code cache:

 (gdb) set code-cache off
 (gdb) set code-cache on

Requesting a disassembly works as expected, breakpoint shadowing is
applied:

 (gdb) disass main
 Dump of assembler code for function main:
    0x000000000040053c <+0>:     push   %rbp
    0x000000000040053d <+1>:     mov    %rsp,%rbp
 => 0x0000000000400540 <+4>:     movl   $0x1,-0x4(%rbp)
    0x0000000000400547 <+11>:    movl   $0x2,-0x4(%rbp)
    0x000000000040054e <+18>:    mov    $0x0,%eax
    0x0000000000400553 <+23>:    pop    %rbp
    0x0000000000400554 <+24>:    retq
 End of assembler dump.

However, now delete the breakpoints:

 (gdb) delete
 Delete all breakpoints? (y or n) y

And disassembly shows the old breakpoint instructions:

 (gdb) disass main
 Dump of assembler code for function main:
    0x000000000040053c <+0>:     push   %rbp
    0x000000000040053d <+1>:     mov    %rsp,%rbp
 => 0x0000000000400540 <+4>:     int3
    0x0000000000400541 <+5>:     rex.RB cld
    0x0000000000400543 <+7>:     add    %eax,(%rax)
    0x0000000000400545 <+9>:     add    %al,(%rax)
    0x0000000000400547 <+11>:    int3
    0x0000000000400548 <+12>:    rex.RB cld
    0x000000000040054a <+14>:    add    (%rax),%al
    0x000000000040054c <+16>:    add    %al,(%rax)
    0x000000000040054e <+18>:    mov    $0x0,%eax
    0x0000000000400553 <+23>:    pop    %rbp
    0x0000000000400554 <+24>:    retq
 End of assembler dump.

Those breakpoint instructions are no longer installed in target memory
they're stale in the code cache.  Easily confirmed by just disabling
the code cache:

 (gdb) set code-cache off
 (gdb) disass main
 Dump of assembler code for function main:
    0x000000000040053c <+0>:     push   %rbp
    0x000000000040053d <+1>:     mov    %rsp,%rbp
 => 0x0000000000400540 <+4>:     movl   $0x1,-0x4(%rbp)
    0x0000000000400547 <+11>:    movl   $0x2,-0x4(%rbp)
    0x000000000040054e <+18>:    mov    $0x0,%eax
    0x0000000000400553 <+23>:    pop    %rbp
    0x0000000000400554 <+24>:    retq
 End of assembler dump.


I stumbled upon this when writing a patch to infrun.c, that made
handle_inferior_event & co fill in the cache before breakpoints were
removed from the target.  Recall that wait_for_inferior flushes the
dcache for every event.  So in that case, always-inserted mode was not
necessary to trigger this.  It's just a convenient way to expose the
issue.

The dcache works at the raw memory level.  We need to update it
whenever memory is written, no matter what kind of target memory
object was originally passed down by the caller.  The issue is that
the dcache update code isn't reached when a caller explicitly writes
raw memory.  Breakpoint insertion/removal is one such case --
mem-break.c uses target_write_read_memory/target_write_raw_memory.

The fix is to move the dcache update code from memory_xfer_partial_1
to raw_memory_xfer_partial so that it's always reachable.

When we do that, we can actually simplify a series of things.
memory_xfer_partial_1 no longer needs to handle writes for any kind of
memory object, and therefore dcache_xfer_memory no longer needs to
handle writes either.  So the latter (dcache_xfer_memory) and its
callees can be simplified to only care about reads.  While we're
touching dcache_xfer_memory's prototype, might as well rename it to
reflect that fact that it only handles reads, and make it follow the
new target_xfer_status/xfered_len style.  This made me notice that
dcache_xfer_memory loses the real error status if a memory read fails:
we could have failed to read due to TARGET_XFER_E_UNAVAILABLE, for
instance, but we always return TARGET_XFER_E_IO, hence the FIXME note.
I felt that fixing that fell out of the scope of this patch.

Currently dcache_xfer_memory handles the case of a write failing.  The
whole cache line is invalidated when that happens.  However,
dcache_update, the sole mechanism for handling writes that will remain
after the patch, does not presently handle that scenario.  That's a
bug.  The patch makes it handle that, by passing down the
target_xfer_status status from the caller, so that it can better
decide what to do itself.  While I was changing the function's
prototype, I constified the myaddr parameter, getting rid of the need
for the cast as seen in its existing caller.

Tested on x86_64 Fedora 17, native and gdbserver.

gdb/
2014-03-05  Pedro Alves  <palves@redhat.com>

	PR gdb/16575
	* dcache.c (dcache_poke_byte): Constify ptr parameter.  Return
	void.  Update comment.
	(dcache_xfer_memory): Delete.
	(dcache_read_memory_partial): New, based on the read bits of
	dcache_xfer_memory.
	(dcache_update): Add status parameter.  Use ULONGEST for len, and
	adjust.  Discard cache lines if the reason for the update was
	error.
	* dcache.h (dcache_xfer_memory): Delete declaration.
	(dcache_read_memory_partial): New declaration.
	(dcache_update): Update prototype.
	* target.c (raw_memory_xfer_partial): Update the dcache here.
	(memory_xfer_partial_1): Don't handle dcache writes here.

gdb/testsuite/
2014-03-05  Pedro Alves  <palves@redhat.com>

	PR gdb/16575
	* gdb.base/breakpoint-shadow.exp (compare_disassembly): New
	procedure.
	(top level): Adjust to use it.  Add tests that exercise breakpoint
	interaction with the code-cache.
2014-03-05 14:18:28 +00:00
Ludovic Courtès 7a5a839f3a guile: Add 'history-append!' procedure.
gdb/
2014-02-26  Ludovic Courtès  <ludo@gnu.org>

	* guile/scm-value.c (gdbscm_history_append_x): New function.
	(value_functions): Add it.

gdb/testsuite/
2014-02-26  Ludovic Courtès  <ludo@gnu.org>

	* gdb.guile/scm-value.exp (test_value_in_inferior): Add
	test for 'history-append!'.

gdb/doc/
2014-02-26  Ludovic Courtès  <ludo@gnu.org>

	* gdb/doc/guile.texi (Basic Guile): Document 'history-append!'.
2014-02-26 22:59:42 +01:00
Joel Brobecker 31aa7e4ee9 DWARF: Read constant-class addresses correctly
Starting with DWARF version 4, the description of the DW_AT_high_pc
attribute was amended to say:

   if it is of class constant, the value is an unsigned integer offset
   which when added to the low PC gives the address of the first
   location past the last instruction associated with the entity.

A change was made in Apr 27th, 2012 to reflect that change:

  | commit 91da14142c
  | Author: Mark Wielaard <mjw@redhat.com>
  | Date:   Fri Apr 27 18:55:19 2012 +0000
  |
  |     * dwarf2read.c (dwarf2_get_pc_bounds): Check DW_AT_high_pc form to
  |     see whether it is an address or a constant offset from DW_AT_low_pc.
  |     (dwarf2_record_block_ranges): Likewise.
  |     (read_partial_die): Likewise.

Unfortunately, this new interpretation is now used regardless of
the CU's DWARF version. It turns out that one of WindRiver's compilers
(FTR: Diabdata 4.4) is generating DWARF version 2 info with
DW_AT_high_pc attributes improperly using the data4 form. Because of
that, we miscompute all high PCs incorrectly. This leads to a lot of
symtabs having overlapping ranges, which in turn causes havoc in
pc-to-symtab-and-line translations.

One visible effect is when inserting a breakpoint on a given function:

    (gdb) b world
    Breakpoint 1 at 0x4005c4

The source location of the breakpoint is missing. The output should be:

    (gdb) b world
    Breakpoint 1 at 0x4005c8: file dw2-rel-hi-pc-world.c, line 24.

What happens in this case is that the pc-to-SAL translation first
starts be trying to find the symtab associated to our PC using
each symtab's ranges. Because of the high_pc miscomputation,
many symtabs end up matching, and the heuristic trying to select
the most probable one unfortunately returns one that is unrelated
(it really had no change in this case to do any better). Once we
have the wrong symtab, the start searching the associated linetable,
where the addresses are correct, thus finding no match, and therefore
no SAL.

This patch is an attempt at handling the situation as gracefully
as we can, without guarantees.  It introduces a new function
"attr_value_as_address" which uses the correct accessor for getting
the value of a given attribute.  It then adjust the code throughout
this unit to use this function instead of assuming that addresses always
have the DW_FORM_addr format.

It also fixes the original issue of miscomputing the high_pc
by limiting the new interpretation of constant form DW_AT_high_pc
attributes to units using DWARF version 4 or later.

gdb/ChangeLog:

        * dwarf2read.c (attr_value_as_address): New function.
        (dwarf2_find_base_address, read_call_site_scope): Use
        attr_value_as_address in place of DW_ADDR.
        (dwarf2_get_pc_bounds): Use attr_value_as_address to get
        the low and high addresses.  Slight rework of the handling
        of the high pc being a constant form, and limit it to
        DWARF verson 4 or higher.
        (dwarf2_record_block_ranges): Likewise.
        (read_partial_die): Likewise.
        (new_symbol_full): Use attr_value_as_address in place of DW_ADDR.

gdb/testsuite/ChangeLog:

        * gdb.dwarf2/dw2-abs-hi-pc-hello-dbg.S: New file.
        * gdb.dwarf2/dw2-abs-hi-pc-hello.c: New file.
        * gdb.dwarf2/dw2-abs-hi-pc-world-dbg.S: New file.
        * gdb.dwarf2/dw2-abs-hi-pc-world.c: New file.
        * gdb.dwarf2/dw2-abs-hi-pc.c: New file.
        * gdb.dwarf2/dw2-abs-hi-pc.exp: New file.

Tested on x86_64-linux.
2014-02-26 11:43:23 -08:00
Joel Brobecker 1b58801583 [Python] Make regexp collection printers work with typedefs as well.
Consider the following type for which we would like to provide
a pretty-printer and manage it via RegexpCollectionPrettyPrinter:

        typedef long time_t;

Currently, this does not work because this framework only considers
the type's tag name:

        typename = gdb.types.get_basic_type(val.type).tag
        if not typename:
            return None

This patch extends it to use the type's name if the basic type
does not have a tag name, thus allowing the framework to also
work with typedefs like the above.

gdb/ChangeLog:

        * python/lib/gdb/printing.py (RegexpCollectionPrettyPrinter):
        Use the type's name if its basic type does not have a tag.

gdb/testsuite/ChangeLog:

        * testsuite/gdb.python/py-pp-re-notag.c: New file.
        * testsuite/gdb.python/py-pp-re-notag.ex: New file.
        * testsuite/gdb.python/py-pp-re-notag.p: New file.
2014-02-26 11:04:12 -08:00
Joel Brobecker 55426c9d52 DWARF: Set enum type "flag_enum" and "unsigned" flags at type creation.
Consider the following Ada code:

   --  An array whose index is an enumeration type with 128 enumerators.
   type Enum_T is (Enum_000, Enum_001, [...], Enum_128);
   type Table is array (Enum_T) of Boolean;

When the compiler is configured to generate pure DWARF debugging info,
trying to print type Table's description yields:

    ptype pck.table
    type = array (enum_000 .. -128) of boolean

The expected output was:

    ptype pck.table
    type = array (enum_000 .. enum_128) of boolean

The DWARF debugging info for our array looks like this:

    <1><44>: Abbrev Number: 5 (DW_TAG_array_type)
       <45>   DW_AT_name        : pck__table
       <50>   DW_AT_type        : <0x28>
    <2><54>: Abbrev Number: 6 (DW_TAG_subrange_type)
       <55>   DW_AT_type        : <0x5c>
       <59>   DW_AT_lower_bound : 0
       <5a>   DW_AT_upper_bound : 128

The array index type is, by construction with the DWARF standard,
a subrange of our enumeration type, defined as follow:

    <2><5b>: Abbrev Number: 0
    <1><5c>: Abbrev Number: 7 (DW_TAG_enumeration_type)
       <5d>   DW_AT_name        : pck__enum_t
       <69>   DW_AT_byte_size   : 1
    <2><6b>: Abbrev Number: 8 (DW_TAG_enumerator)
       <6c>   DW_AT_name        : pck__enum_000
       <7a>   DW_AT_const_value : 0
    [etc]

Therefore, while processing these DIEs, the array index type ends
up being a TYPE_CODE_RANGE whose target type is our enumeration type.
But the problem is that we read the upper bound as a negative value
(-128), which is then used as is by the type printer to print the
array upper bound. This negative value explains the "-128" in the
output.

To understand why the range type's upper bound is read as a negative
value, one needs to look at how it is determined, in read_subrange_type:

  orig_base_type = die_type (die, cu);
  base_type = check_typedef (orig_base_type);
  [... high is first correctly read as 128, but then ...]
  if (!TYPE_UNSIGNED (base_type) && (high & negative_mask))
    high |= negative_mask;

The negative_mask is applied, here, because BASE_TYPE->FLAG_UNSIGNED
is not set. And the reason for that is because the base_type was only
partially constructed during the call to die_type. While the enum
is constructed on the fly by read_enumeration_type, its flag_unsigned
flag is only set later on, while creating the symbols corresponding to
the enum type's enumerators (see process_enumeration_scope), after
we've already finished creating our range type - and therefore too
late.

My first naive attempt at fixing this problem consisted in extracting
the part in process_enumeration_scope which processes all enumerators,
to generate the associated symbols, but more importantly set the type's
various flags when necessary. However, this does not always work well,
because we're still in the subrange_type's scope, and it might be
different from the scope where the enumeration type is defined.

So, instead, what this patch does to fix the issue is to extract
from process_enumeration_scope the part that determines whether
the enumeration type should have the flag_unsigned and/or the
flag_flag_enum flags set. It turns out that, aside from the code
implementing the loop, this part is fairly independent of the symbol
creation. With that part extracted, we can then use it at the end
of our enumeration type creation, to produce a type which should now
no longer need any adjustment.

Once the enumeration type produced is correctly marked as unsigned,
the subrange type's upper bound is then correctly read as an unsigned
value, therefore giving us an upper bound of 128 instead of -128.

gdb/ChangeLog:

        * dwarf2read.c (update_enumeration_type_from_children): New
        function, mostly extracted from process_structure_scope.
        (read_enumeration_type): Call update_enumeration_type_from_children.
        (process_enumeration_scope): Do not set THIS_TYPE's flag_unsigned
        and flag_flag_enum fields.

gdb/testsuite/ChangeLog:

        * gdb.dwarf2/arr-subrange.c, gdb.dwarf2/arr-subrange.exp: New files.
2014-02-26 10:39:25 -08:00
Joel Brobecker dc53a7adb5 DWARF: Add array DW_AT_bit_stride and DW_AT_byte_stride support
Consider the following declarations in Ada...

   type Item is range -32 .. 31;
   for Item'Size use 6;

   type Table is array (Natural range 0 .. 4) of Item;
   pragma Pack (Table);

... which declare a packed array whose elements are 6 bits long.
The debugger currently does not notice that the array is packed,
and thus prints values of this type incorrectly. This can be seen
in the "ptype" output:

    (gdb) ptype table
    type = array (0 .. 4) of foo.item

Normally, the debugger should print:

    (gdb) ptype table
    type = array (0 .. 4) of foo.item <packed: 6-bit elements>

The debugging information for this array looks like this:

        .uleb128 0xf    # (DIE (0x15c) DW_TAG_array_type)
        .long   .LASF9  # DW_AT_name: "pck__table"
        .byte   0x6     # DW_AT_bit_stride
        .long   0x1a9   # DW_AT_type
        .uleb128 0x10   # (DIE (0x16a) DW_TAG_subrange_type)
        .long   0x3b    # DW_AT_type
        .byte   0       # DW_AT_lower_bound
        .byte   0x4     # DW_AT_upper_bound
        .byte   0       # end of children of DIE 0x15c

The interesting part is the DW_AT_bit_stride attribute, which tells
the size of the array elements is 6 bits, rather than the normal
element type's size.

This patch adds support for this attribute by first creating
gdbtypes.c::create_array_type_with_stride, which is an enhanced
version of create_array_type taking an extra parameter as the stride.
The old create_array_type can then be re-implemented very simply
by calling the new create_array_type_with_stride.

We can then use this new function from dwarf2read, to create
arrays with or without stride.

gdb/ChangeLog:

        * gdbtypes.h (create_array_type_with_stride): Add declaration.
        * gdbtypes.c (create_array_type_with_stride): New function,
        renaming create_array_type, but with an added parameter
        called "bit_stride".
        (create_array_type): Re-implement using
        create_array_type_with_stride.
        * dwarf2read.c (read_array_type): Add support for DW_AT_byte_stride
        and DW_AT_bit_stride attributes.

gdb/testsuite/ChangeLog:

        * gdb.dwarf2/arr-stride.c: New file.
        * gdb.dwarf2/arr-stride.exp: New file.

The test, relying purely on generating an assembly file, only
verifies the type description of our array. But I was also
able to verify manually that the debugger print values of these
types correctly as well (which was not the case prior to this
patch).
2014-02-26 06:32:39 -08:00
Pedro Alves 12ab52e977 Multiple Ada task-specific breakpoints at the same address.
With the test changed as in the patch, against current mainline, we get:

 (gdb) PASS: gdb.ada/tasks.exp: info tasks before inserting breakpoint
 break break_me task 1
 Breakpoint 2 at 0x4030b0: file /home/pedro/gdb/mygit/src/gdb/testsuite/gdb.ada/tasks/foo.adb, line 27.
 (gdb) PASS: gdb.ada/tasks.exp: break break_me task 1
 break break_me task 3
 Note: breakpoint 2 also set at pc 0x4030b0.
 Breakpoint 3 at 0x4030b0: file /home/pedro/gdb/mygit/src/gdb/testsuite/gdb.ada/tasks/foo.adb, line 27.
 (gdb) PASS: gdb.ada/tasks.exp: break break_me task 3
 continue
 Continuing.
 [Switching to Thread 0x7ffff7dc7700 (LWP 27133)]

 Breakpoint 2, foo.break_me () at /home/pedro/gdb/mygit/src/gdb/testsuite/gdb.ada/tasks/foo.adb:27
 27	      null;
 (gdb) FAIL: gdb.ada/tasks.exp: continue to breakpoint
 info tasks
    ID       TID P-ID Pri State                  Name
     1    63b010       48 Waiting on RV with 3   main_task
     2    63bd80    1  48 Accept or Select Term  task_list(1)
 *   3    63f510    1  48 Accepting RV with 1    task_list(2)
     4    642ca0    1  48 Accept or Select Term  task_list(3)
 (gdb) PASS: gdb.ada/tasks.exp: info tasks after hitting breakpoint

The breakpoint that caused a stop is breakpoint 3, but GDB end up
reporting (and running breakpoint commands of) "Breakpoint 2" instead.

The issue is that the bpstat_check_breakpoint_conditions logic of
"wrong thread" is missing the "wrong task" check.  This is usually
harmless, because the thread hop code in infrun.c code that handles
wrong-task-hitting-breakpoint does check for task-specific breakpoints
(within breakpoint_thread_match):

      /* Check if a regular breakpoint has been hit before checking
         for a potential single step breakpoint.  Otherwise, GDB will
         not see this breakpoint hit when stepping onto breakpoints.  */
      if (regular_breakpoint_inserted_here_p (aspace, stop_pc))
	{
	  if (!breakpoint_thread_match (aspace, stop_pc, ecs->ptid))
	    thread_hop_needed = 1;
	}

IOW, usually, when one only has a task specific breakpoint at a given
address, things work correctly.  Put another task-specific or
non-task-specific breakpoint there, and things break.

A patch that eliminates the special thread hop code in infrun.c is
what exposed this, as after that GDB solely relies on
bpstat_check_breakpoint_conditions to know whether the right or wrong
task hit a breakpoint.  IOW, given the latent bug, Ada task-specific
breakpoints become non-task-specific, and that is caught by the
testsuite, as:

 break break_me task 3
 Breakpoint 2 at 0x4030b0: file /home/pedro/gdb/mygit/src/gdb/testsuite/gdb.ada/tasks/foo.adb, line 27.
 (gdb) PASS: gdb.ada/tasks.exp: break break_me task 3
 continue
 Continuing.
 [Switching to Thread 0x7ffff7fcb700 (LWP 17122)]

 Breakpoint 2, foo.break_me () at /home/pedro/gdb/mygit/src/gdb/testsuite/gdb.ada/tasks/foo.adb:27
 27	      null;
 (gdb) PASS: gdb.ada/tasks.exp: continue to breakpoint
 info tasks
    ID       TID P-ID Pri State                  Name
     1    63b010       48 Waiting on RV with 2   main_task
 *   2    63bd80    1  48 Accepting RV with 1    task_list(1)
     3    63f510    1  48 Accept or Select Term  task_list(2)
     4    642ca0    1  48 Accept or Select Term  task_list(3)
 (gdb) FAIL: gdb.ada/tasks.exp: info tasks after hitting breakpoint

It was after seeing this that I thought of how to expose the bug with
current mainline.

Tested on x86_64 Fedora 17.

gdb/
2014-02-26  Pedro Alves  <palves@redhat.com>

	* breakpoint.c (bpstat_check_breakpoint_conditions): Handle
	task-specific breakpoints.

gdb/testsuite/
2014-02-26  Pedro Alves  <palves@redhat.com>

	* gdb.ada/tasks.exp: Set a task-specific breakpoint at break_me
	that won't ever trigger.  Make sure that GDB reports the correct
	breakpoint that caused the stop.
2014-02-26 14:22:33 +00:00
Jan Kratochvil 71b7d79337 PR gdb/16626
gdb/testsuite/
2014-02-25  Jan Kratochvil  <jan.kratochvil@redhat.com>

	PR gdb/16626
	* gdb.base/auto-load.exp: Fix out-of-srctree run.

Message-ID: <87k3cjt3jl.fsf@fleche.redhat.com>
2014-02-25 20:47:09 +01:00
Jan Kratochvil 849c862eb2 PR gdb/16626
Fix auto-load 7.7 regression,
the regression affects any loading from /usr/share/gdb/auto-load .

5b2bf9471f is the first bad commit
commit 5b2bf9471f
Author: Doug Evans <xdje42@gmail.com>
Date:   Fri Nov 29 21:29:26 2013 -0800
    Move .debug_gdb_script processing to auto-load.c.
    Simplify handling of auto-loaded objfile scripts.

Fedora 20 x86_64
$ gdb -q /usr/lib64/libgobject-2.0.so
Reading symbols from /usr/lib64/libglib-2.0.so.0.3800.2...Reading symbols from
/usr/lib/debug/usr/lib64/libglib-2.0.so.0.3800.2.debug...done.
done.
(gdb) _

Fedora Rawhide x86_64
$ gdb -q /usr/lib64/libgobject-2.0.so
Reading symbols from /usr/lib64/libglib-2.0.so...Reading symbols from
/usr/lib/debug/usr/lib64/libglib-2.0.so.0.3990.0.debug...done.
done.
warning: File "/usr/lib64/libglib-2.0.so.0.3990.0-gdb.py" auto-loading has been declined by your `auto-load safe-path'
set to "$debugdir:$datadir/auto-load:/usr/bin/mono-gdb.py".
To enable execution of this file add
        add-auto-load-safe-path /usr/lib64/libglib-2.0.so.0.3990.0-gdb.py
line to your configuration file "/home/jkratoch/.gdbinit".
To completely disable this security protection add
        set auto-load safe-path /
line to your configuration file "/home/jkratoch/.gdbinit".
For more information about this security protection see the
"Auto-loading safe path" section in the GDB manual.  E.g., run from the shell:
        info "(gdb)Auto-loading safe path"
(gdb) _

That is it tries to load "forbidden"
	/usr/lib64/libglib-2.0.so.0.3990.0-gdb.py
but it should load instead
	/usr/share/gdb/auto-load/usr/lib64/libglib-2.0.so.0.3990.0-gdb.py*
Although that is also not exactly this way, there does not exist any
	/usr/lib64/libglib-2.0.so.0.3990.0-gdb.py
despite regressed GDB says so.

gdb/
2014-02-24  Jan Kratochvil  <jan.kratochvil@redhat.com>

	PR gdb/16626
	* auto-load.c (auto_load_objfile_script_1): Change filename to
	debugfile.

gdb/testsuite/
2014-02-24  Jan Kratochvil  <jan.kratochvil@redhat.com>

	PR gdb/16626
	* gdb.base/auto-load-script: New file.
	* gdb.base/auto-load.c: New file.
	* gdb.base/auto-load.exp: New file.

Message-ID: <20140223212400.GA8831@host2.jankratochvil.net>
2014-02-25 18:32:32 +01:00
Jan Kratochvil e2f0d509b3 Fix dw2-icycle.exp -fsanitize=address GDB crash.
binutils readelf -wi:
 <4><a2>: Abbrev Number: 26 (DW_TAG_inlined_subroutine)
    <a3>   DW_AT_abstract_origin: <0x5a>
    <a7>   DW_AT_low_pc      : 0x400590
    <ab>   DW_AT_high_pc     : 0x4
    <af>   DW_AT_call_file   : 1
    <b0>   DW_AT_call_line   : 20
    <b1>   DW_AT_sibling     : <0xb8>
 <2><b8>: Abbrev Number: 35 (DW_TAG_inlined_subroutine)
    <b9>   DW_AT_abstract_origin: <0x5a>
    <bd>   DW_AT_low_pc      : 0x400590
    <c1>   DW_AT_high_pc     : 0x4
    <c5>   DW_AT_call_file   : 1
    <c6>   DW_AT_call_line   : 29

<b1> DW_AT_sibling points to the next DIE - but that DIE is 2 levels
upwards - definitely not a sibling.  This confuses GDB up to a crash:

==32143== ERROR: AddressSanitizer: heap-buffer-overflow on address 0x6024000198ac at pc 0xb4d104 bp 0x7fff63e96e70 sp
0x7fff63e96e60
READ of size 1 at 0x6024000198ac thread T0
    #0 0xb4d103 in read_unsigned_leb128 (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0xb4d103)
    #1 0xb15f3c in peek_die_abbrev (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0xb15f3c)
    #2 0xb46185 in load_partial_dies (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0xb46185)
    #3 0xb103fb in process_psymtab_comp_unit_reader (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0xb103fb)
    #4 0xb0d2a9 in init_cutu_and_read_dies (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0xb0d2a9)
    #5 0xb1115f in process_psymtab_comp_unit (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0xb1115f)
    #6 0xb1235f in dwarf2_build_psymtabs_hard (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0xb1235f)
    #7 0xb05536 in dwarf2_build_psymtabs (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0xb05536)
    #8 0x86d5a5 in read_psyms (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0x86d5a5)
    #9 0x9b1c37 in require_partial_symbols (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0x9b1c37)
    #10 0x9bf2d0 in read_symbols (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0x9bf2d0)
    #11 0x9c014c in syms_from_objfile_1 (/home/jkratoch/redhat/gdb-clean/gdb/gdb+0x9c014c)

gdb/testsuite/
2014-02-25  Jan Kratochvil  <jan.kratochvil@redhat.com>

	Fix dw2-icycle.exp -fsanitize=address GDB crash.
	* gdb.dwarf2/dw2-icycle.S: Remove all DW_AT_sibling.

Message-ID: <20140224201011.GA28926@host2.jankratochvil.net>
2014-02-25 18:28:38 +01:00
Doug Evans 50cc37c849 lib/gdb.exp (run_on_host): Log error output if program fails. 2014-02-24 13:39:14 -08:00
Pedro Alves ea4758f2dd Rename test.
I realized that the name of this test only made sense when considering
the old (never committed) implementation of the fix that came along
with the test originally, that forced a schedlock while a step-resume
(to get over the signal handler) was inserted.  The final solution
that went into the tree does not force that locking.

So this renames it to something more descriptive.

gdb/testsuite/
2014-02-21  Pedro Alves  <palves@redhat.com>

	* gdb.threads/step-after-sr-lock.c: Rename to ...
	* gdb.threads/signal-while-stepping-over-bp-other-thread.c: ... this.
	* gdb.threads/step-after-sr-lock.exp: Rename to ...
	* gdb.threads/signal-while-stepping-over-bp-other-thread.exp:
	... this.
2014-02-21 13:30:12 +00:00
Sergio Durigan Junior d7b30f6729 Fix for PR tdep/16397: SystemTap SDT probe support for x86 doesn't work with "triplet operands"
This is the continuation of what Joel proposed on:

<https://sourceware.org/ml/gdb-patches/2013-12/msg00977.html>

Now that I have already submitted and pushed the patch to split
i386_stap_parse_special_token into two smaller functions, it is indeed
simpler to understand this patch.

It occurs because, on x86, triplet displacement operands are allowed
(like "-4+8-20(%rbp)"), and the current parser for this expression is
buggy.  It does not correctly extract the register name from the
expression, which leads to incorrect evaluation.  The parser was also
being very "generous" with the expression, so I included a few more
checks to ensure that we're indeed dealing with a triplet displacement
operand.

This patch also includes testcases for the two different kind of
expressions that can be encountered on x86: the triplet displacement
(explained above) and the three-argument displacement (as in
"(%rbx,%ebx,-8)").  The tests are obviously arch-dependent and are
placed under gdb.arch/.

Message-ID: <m3mwj1j12v.fsf@redhat.com>
URL: <https://sourceware.org/ml/gdb-patches/2014-01/msg00310.html>

gdb/
2014-02-20  Sergio Durigan Junior  <sergiodj@redhat.com>

	PR tdep/16397
	* i386-tdep.c (i386_stap_parse_special_token_triplet): Check if a
	number comes after the + or - signs.  Adjust length of register
	name to be extracted.

gdb/testsuite/
2014-02-20  Sergio Durigan Junior  <sergiodj@redhat.com>

	PR tdep/16397
	* gdb.arch/amd64-stap-special-operands.exp: New file.
	* gdb.arch/amd64-stap-three-arg-disp.S: Likewise.
	* gdb.arch/amd64-stap-three-arg-disp.c: Likewise.
	* gdb.arch/amd64-stap-triplet.S: Likewise.
	* gdb.arch/amd64-stap-triplet.c: Likewise.
2014-02-20 18:49:09 -03:00
Joel Brobecker 83deb43f87 Simplify .section in dw2-icycle.S
The arm-elf assembler chokes on the extra parameters in the .section
pseudo-op, so this patch removes them.

gdb/testsuite/ChangeLog:

        * gdb.dwarf2/dw2-icycle.S: Remove second and third parameters
        in .section pseudo-op.
2014-02-20 18:38:44 +01:00
Doug Evans adde2bff07 Fix PR symtab/16581
* dwarf2read.c (struct die_info): New member in_process.
	(reset_die_in_process): New function.
	(process_die): Set it at the start, reset when returning.
	(inherit_abstract_dies): Only call process_die if origin_child_die
	not already being processed.

	testsuite/
	* gdb.dwarf2/dw2-icycle.S: New file.
	* gdb.dwarf2/dw2-icycle.c: New file.
	* gdb.dwarf2/dw2-icycle.exp: New file.
2014-02-20 09:13:53 -08:00
Siva Chandra f7bd0f7854 Call overloaded operators to perform operations on gdb.Value objects.
* NEWS: Add entry for the new feature
	* python/py-value.c (valpy_binop): Call value_x_binop for struct
	and class values.

	testsuite/
	* gdb.python/py-value-cc.cc: Improve test case to enable testing
	operations on gdb.Value objects.
	* gdb.python/py-value-cc.exp: Add new test to test operations on
	gdb.Value objects.

	doc/
	* python.texi (Values From Inferior): Add description about the
	new feature.
2014-02-19 15:47:45 -08:00
Doug Evans c17ef0d5d2 New TESTS variable to run a subset of tests in parallel.
* Makefile.in (TESTS): New variable.
	(expanded_tests, expanded_tests_or_none): New variables
	(check-single): Pass $(expanded_tests_or_none) to runtest.
	(check-parallel): Only run tests in $(TESTS) if non-empty.
	(check/no-matching-tests-found): New rule.
	* README: Document TESTS makefile variable.
2014-02-18 16:11:02 -08:00
Doug Evans 5dd3176fb7 * Makefile.in (check-parallel): rm -rf outputs temp. 2014-02-18 16:01:34 -08:00
Jan Kratochvil 0b10be4faf Fix "ERROR: no fileid for" in the testsuite.
If GDB has crashed then gdb_spawn_id still exists (although it does not work).
So my patch does not change anything.  And also currently it will leave the
stale gdbserver running anyway.

In general if gdb_spawn_id does not exist then send_gdb + gdb_expect just do
not make sense anyway.  So this patch just prevents the error in such case.

The killing of stale gdbserver could be improved multiple ways (also as
suggested by Pedro in the original thread) but that is IMO outside of the
scope of this patch.  Apparently if there is no good response from GDB then
gdb_finish() should try to call gdb_start just to kill that gdbserver, IIUC.

gdb/testsuite/
2014-02-16  Jan Kratochvil  <jan.kratochvil@redhat.com>

	Fix "ERROR: no fileid for" in the testsuite.
	* lib/gdb.exp (gdb_finish): Check gdb_spawn_id.

Message-ID: <20140206205814.GA18495@host2.jankratochvil.net>
2014-02-16 21:49:40 +01:00
Doug Evans 85f224e7e0 Test for binary,dwp symlinks into different directories.
* gdb.dwarf2/Makefile.in (EXECUTABLES): Add dwp-symlink.
	(MISCELLANEOUS): New variable.
	(clean): rm -rf $(MISCELLANEOUS).
	* gdb.dwarf2/dwp-symlink.exp: Test the case where the executable and
	dwp live in the same directory as symlinks, with each symlink pointed
	to a differently named file in a different directory.
2014-02-12 11:38:48 -08:00
Doug Evans 149b30ffe4 * gdb.dwarf2/dwp-symlink.exp: Rewrite to use remote_* commands instead
of Tcl file commands.
2014-02-11 15:48:44 -08:00
Mark Kettenis 1dfdac3275 Avoid killing all processes.
gdb/ChangeLog:

        * gdb.threads/step-after-sr-lock.exp: Avoid executing
        "kill -SIGUSR1 -1".
2014-02-10 18:07:12 +01:00
Joel Brobecker aa4fb036e9 Wrong type for 'Length result.
Consider the following code:

   type Color is (Black, Red, Green, Blue, White);
   type Primary_Table is array (Color range Red .. Blue) of Boolean;
   Prim : Primary_Table := (True, False, False);

GDB prints the length of arrays in a fairly odd way:

   (gdb) p prim'length
   $2 = blue

The length returned should be an integer, not the array index type,
and this patch fixes this.

gdb/ChangeLog:

	* ada-lang.c (ada_evaluate_subexp): Set the type of the value
	returned by the 'Length attribute to integer.

testsuite/ChangeLog:

	* gdb.ada/tick_length_array_enum_idx: New testcase.
2014-02-10 13:15:43 +04:00
Doug Evans ed3ef33944 Add Guile as an extension language.
* NEWS: Mention Guile scripting.
	* Makefile.in (SUBDIR_GUILE_OBS): New variable.
	(SUBDIR_GUILE_SRCS, SUBDIR_GUILE_DEPS): New variables
	(SUBDIR_GUILE_LDFLAGS, SUBDIR_GUILE_CFLAGS): New variables.
	(INTERNAL_CPPFLAGS): Add GUILE_CPPFLAGS.
	(CLIBS): Add GUILE_LIBS.
	(install-guile): New rule.
	(guile.o): New rule.
	(scm-arch.o, scm-auto-load.o, scm-block.o): New rules.
	(scm-breakpoint.o, scm-disasm.o, scm-exception.o): New rules.
	(scm-frame.o, scm-iterator.o, scm-lazy-string.o): New rules.
	(scm-math.o, scm-objfile.o, scm-ports.o): New rules.
	(scm-pretty-print.o, scm-safe-call.o, scm-gsmob.o): New rules.
	(scm-string.o, scm-symbol.o, scm-symtab.o): New rules.
	(scm-type.o, scm-utils.o, scm-value.o): New rules.
	* configure.ac: New option --with-guile.
	* configure: Regenerate.
	* config.in: Regenerate.
	* auto-load.c: Remove #include "python/python.h".  Add #include
	"gdb/section-scripts.h".
	(source_section_scripts): Handle Guile scripts.
	(_initialize_auto_load): Add name of Guile objfile script to
	scripts-directory help text.
	* breakpoint.c (condition_command): Tweak comment to include Scheme.
	* breakpoint.h (gdbscm_breakpoint_object): Add forward decl.
	(struct breakpoint): New member scm_bp_object.
	* defs.h (enum command_control_type): New value guile_control.
	* cli/cli-cmds.c: Remove #include "python/python.h".  Add #include
	"extension.h".
	(show_user): Update comment.
	(_initialize_cli_cmds): Update help text for "show user".  Update help
	text for max-user-call-depth.
	* cli/cli-script.c: Remove #include "python/python.h".  Add #include
	"extension.h".
	(multi_line_command_p): Add guile_control.
	(print_command_lines): Handle guile_control.
	(execute_control_command, recurse_read_control_structure): Ditto.
	(process_next_line): Recognize "guile" commands.
	* disasm.c (gdb_disassemble_info): Make non-static.
	* disasm.h: #include "dis-asm.h".
	(struct gdbarch): Add forward decl.
	(gdb_disassemble_info): Declare.
	* extension.c: #include "guile/guile.h".
	(extension_languages): Add guile.
	(get_ext_lang_defn): Handle EXT_LANG_GDB.
	* extension.h (enum extension_language): New value EXT_LANG_GUILE.
	* gdbtypes.c (get_unsigned_type_max): New function.
	(get_signed_type_minmax): New function.
	* gdbtypes.h (get_unsigned_type_max): Declare.
	(get_signed_type_minmax): Declare.
	* guile/README: New file.
	* guile/guile-internal.h: New file.
	* guile/guile.c: New file.
	* guile/guile.h: New file.
	* guile/scm-arch.c: New file.
	* guile/scm-auto-load.c: New file.
	* guile/scm-block.c: New file.
	* guile/scm-breakpoint.c: New file.
	* guile/scm-disasm.c: New file.
	* guile/scm-exception.c: New file.
	* guile/scm-frame.c: New file.
	* guile/scm-gsmob.c: New file.
	* guile/scm-iterator.c: New file.
	* guile/scm-lazy-string.c: New file.
	* guile/scm-math.c: New file.
	* guile/scm-objfile.c: New file.
	* guile/scm-ports.c: New file.
	* guile/scm-pretty-print.c: New file.
	* guile/scm-safe-call.c: New file.
	* guile/scm-string.c: New file.
	* guile/scm-symbol.c: New file.
	* guile/scm-symtab.c: New file.
	* guile/scm-type.c: New file.
	* guile/scm-utils.c: New file.
	* guile/scm-value.c: New file.
	* guile/lib/gdb.scm: New file.
	* guile/lib/gdb/boot.scm: New file.
	* guile/lib/gdb/experimental.scm: New file.
	* guile/lib/gdb/init.scm: New file.
	* guile/lib/gdb/iterator.scm: New file.
	* guile/lib/gdb/printing.scm: New file.
	* guile/lib/gdb/types.scm: New file.
	* data-directory/Makefile.in (GUILE_SRCDIR): New variable.
	(VPATH): Add $(GUILE_SRCDIR).
	(GUILE_DIR): New variable.
	(GUILE_INSTALL_DIR, GUILE_FILES): New variables.
	(all): Add stamp-guile dependency.
	(stamp-guile): New rule.
	(clean-guile, install-guile, uninstall-guile): New rules.
	(install-only): Add install-guile dependency.
	(uninstall): Add uninstall-guile dependency.
	(clean): Add clean-guile dependency.

	doc/
	* Makefile.in (GDB_DOC_FILES): Add guile.texi.
	* gdb.texinfo (Auto-loading): Add set/show auto-load guile-scripts.
	(Extending GDB): New menu entries Guile, Multiple Extension Languages.
	(Guile docs): Include guile.texi.
	(objfile-gdbdotext file): Add objfile-gdb.scm.
	(dotdebug_gdb_scripts section): Mention Guile scripts.
	(Multiple Extension Languages): New node.
	* guile.texi: New file.

	testsuite/
	* configure.ac (AC_OUTPUT): Add gdb.guile.
	* configure: Regenerate.
	* lib/gdb-guile.exp: New file.
	* lib/gdb.exp (get_target_charset): New function.
	* gdb.base/help.exp: Update expected output from "apropos apropos".
	* gdb.guile/Makefile.in: New file.
	* gdb.guile/guile.exp: New file.
	* gdb.guile/scm-arch.c: New file.
	* gdb.guile/scm-arch.exp: New file.
	* gdb.guile/scm-block.c: New file.
	* gdb.guile/scm-block.exp: New file.
	* gdb.guile/scm-breakpoint.c: New file.
	* gdb.guile/scm-breakpoint.exp: New file.
	* gdb.guile/scm-disasm.c: New file.
	* gdb.guile/scm-disasm.exp: New file.
	* gdb.guile/scm-equal.c: New file.
	* gdb.guile/scm-equal.exp: New file.
	* gdb.guile/scm-error.exp: New file.
	* gdb.guile/scm-error.scm: New file.
	* gdb.guile/scm-frame-args.c: New file.
	* gdb.guile/scm-frame-args.exp: New file.
	* gdb.guile/scm-frame-args.scm: New file.
	* gdb.guile/scm-frame-inline.c: New file.
	* gdb.guile/scm-frame-inline.exp: New file.
	* gdb.guile/scm-frame.c: New file.
	* gdb.guile/scm-frame.exp: New file.
	* gdb.guile/scm-generics.exp: New file.
	* gdb.guile/scm-gsmob.exp: New file.
	* gdb.guile/scm-iterator.c: New file.
	* gdb.guile/scm-iterator.exp: New file.
	* gdb.guile/scm-math.c: New file.
	* gdb.guile/scm-math.exp: New file.
	* gdb.guile/scm-objfile-script-gdb.in: New file.
	* gdb.guile/scm-objfile-script.c: New file.
	* gdb.guile/scm-objfile-script.exp: New file.
	* gdb.guile/scm-objfile.c: New file.
	* gdb.guile/scm-objfile.exp: New file.
	* gdb.guile/scm-ports.exp: New file.
	* gdb.guile/scm-pretty-print.c: New file.
	* gdb.guile/scm-pretty-print.exp: New file.
	* gdb.guile/scm-pretty-print.scm: New file.
	* gdb.guile/scm-section-script.c: New file.
	* gdb.guile/scm-section-script.exp: New file.
	* gdb.guile/scm-section-script.scm: New file.
	* gdb.guile/scm-symbol.c: New file.
	* gdb.guile/scm-symbol.exp: New file.
	* gdb.guile/scm-symtab-2.c: New file.
	* gdb.guile/scm-symtab.c: New file.
	* gdb.guile/scm-symtab.exp: New file.
	* gdb.guile/scm-type.c: New file.
	* gdb.guile/scm-type.exp: New file.
	* gdb.guile/scm-value-cc.cc: New file.
	* gdb.guile/scm-value-cc.exp: New file.
	* gdb.guile/scm-value.c: New file.
	* gdb.guile/scm-value.exp: New file.
	* gdb.guile/source2.scm: New file.
	* gdb.guile/types-module.cc: New file.
	* gdb.guile/types-module.exp: New file.
2014-02-09 19:40:01 -08:00
Yao Qi 7026a7c16e Fix PR16543
Tests in gdb.gdb fail because directory gdb/testsuite/gdb.gdb doesn't
exist in build tree.  This patch appends gdb.gdb/Makefile in AC_OUTPUT,
and adds new Makefile.in in gdb.gdb, so that directory gdb.gdb can be
created during configure.

With this patch applied, tests under gdb.gdb can be run,

$ make check RUNTESTFLAGS='--directory=gdb.gdb'

Using /usr/share/dejagnu/baseboards/unix.exp as board description file for target.
Using /usr/share/dejagnu/config/unix.exp as generic interface file for target.
Using ../../../../git/gdb/testsuite/config/unix.exp as tool-and-target-specific interface file.
Running ../../../../git/gdb/testsuite/gdb.gdb/complaints.exp ...
Running ../../../../git/gdb/testsuite/gdb.gdb/observer.exp ...
Running ../../../../git/gdb/testsuite/gdb.gdb/python-interrupts.exp ...
FAIL: gdb.gdb/python-interrupts.exp: signal SIGINT
Running ../../../../git/gdb/testsuite/gdb.gdb/python-selftest.exp ...
FAIL: gdb.gdb/python-selftest.exp: call catch_command_errors(execute_command, "python print 5", 0, RETURN_MASK_ALL)
Running ../../../../git/gdb/testsuite/gdb.gdb/selftest.exp ...
Running ../../../../git/gdb/testsuite/gdb.gdb/xfullpath.exp ...

                === gdb Summary ===

gdb/testsuite:

2014-02-10  Yao Qi  <yao@codesourcery.com>

	PR testsuite/16543
	* configure.ac: Append gdb.gdb/Makefile in AC_OUTPUT.
	* configure: Regenerated.
	* Makefile.in: New file.
2014-02-10 09:51:10 +08:00
Andreas Schwab 6c46644734 Fix typo in test name
* gdb.python/py-framefilter.exp: Fix typo.
2014-02-08 10:44:11 +01:00
Yao Qi 6e85473513 Test no =breakpoint-modified is emitted for modifications from MI commands
As design, =breakpoint-modified isn't emitted when breakpoints are modified
by MI commands.  This patch is to add tests for this.

gdb/testsuite:

2014-02-08  Yao Qi  <yao@codesourcery.com>

	* gdb.mi/mi-breakpoint-changed.exp (test_insert_delete_modify): Test
	that no =breakpoint-modified is emitted when breakpoints are
	modified through MI commands.
2014-02-08 09:41:01 +08:00
Pedro Alves d137e6dc79 Make sure we don't resume the stepped thread by accident.
Say:

<stopped at a breakpoint in thread 2>
(gdb) thread 3
(gdb) step

The above triggers the prepare_to_proceed/deferred_step_ptid process,
which switches back to thread 2, to step over its breakpoint before
getting back to thread 3 and "step" it.

If while stepping over the breakpoint in thread 2, a signal arrives,
and it is set to pass/nostop, we'll set a step-resume breakpoint at
the supposed signal-handler resume address, and call keep_going.  The
problem is that we were supposedly stepping thread 3, and that
keep_going delivers a signal to thread 2, and due to scheduler-locking
off, resumes everything else, _including_ thread 3, the thread we want
stepping.  This means that we lose control of thread 3 until the next
event, when we stop everything.  The end result for the user, is that
GDB lost control of the "step".

Here's the current infrun debug output of the above, with the testcase
in the patch below:

infrun: clear_proceed_status_thread (Thread 0x2aaaab8f5700 (LWP 11663))
infrun: clear_proceed_status_thread (Thread 0x2aaaab6f4700 (LWP 11662))
infrun: clear_proceed_status_thread (Thread 0x2aaaab4f2b20 (LWP 11659))
infrun: proceed (addr=0xffffffffffffffff, signal=144, step=1)
infrun: prepare_to_proceed (step=1), switched to [Thread 0x2aaaab6f4700 (LWP 11662)]
infrun: resume (step=1, signal=0), trap_expected=1, current thread [Thread 0x2aaaab6f4700 (LWP 11662)] at 0x40098f
infrun: wait_for_inferior ()
infrun: target_wait (-1, status) =
infrun:   11659 [Thread 0x2aaaab6f4700 (LWP 11662)],
infrun:   status->kind = stopped, signal = SIGUSR1
infrun: infwait_normal_state
infrun: TARGET_WAITKIND_STOPPED
infrun: stop_pc = 0x40098f
infrun: random signal 30

Program received signal SIGUSR1, User defined signal 1.
infrun: signal arrived while stepping over breakpoint
infrun: inserting step-resume breakpoint at 0x40098f
infrun: resume (step=0, signal=30), trap_expected=0, current thread [Thread 0x2aaaab6f4700 (LWP 11662)] at 0x40098f

^^^ this is a wildcard resume.

infrun: prepare_to_wait
infrun: target_wait (-1, status) =
infrun:   11659 [Thread 0x2aaaab6f4700 (LWP 11662)],
infrun:   status->kind = stopped, signal = SIGTRAP
infrun: infwait_normal_state
infrun: TARGET_WAITKIND_STOPPED
infrun: stop_pc = 0x40098f
infrun: BPSTAT_WHAT_STEP_RESUME
infrun: resume (step=1, signal=0), trap_expected=1, current thread [Thread 0x2aaaab6f4700 (LWP 11662)] at 0x40098f

^^^ step-resume hit, meaning the handler returned, so we go back to stepping thread 3.

infrun: prepare_to_wait
infrun: target_wait (-1, status) =
infrun:   11659 [Thread 0x2aaaab6f4700 (LWP 11662)],
infrun:   status->kind = stopped, signal = SIGTRAP
infrun: infwait_normal_state
infrun: TARGET_WAITKIND_STOPPED

infrun: stop_pc = 0x40088b
infrun: switching back to stepped thread
infrun: Switching context from Thread 0x2aaaab6f4700 (LWP 11662) to Thread 0x2aaaab8f5700 (LWP 11663)
infrun: resume (step=1, signal=0), trap_expected=0, current thread [Thread 0x2aaaab8f5700 (LWP 11663)] at 0x400938
infrun: prepare_to_wait
infrun: target_wait (-1, status) =
infrun:   11659 [Thread 0x2aaaab8f5700 (LWP 11663)],
infrun:   status->kind = stopped, signal = SIGTRAP
infrun: infwait_normal_state
infrun: TARGET_WAITKIND_STOPPED
infrun: stop_pc = 0x40093a
infrun: keep going
infrun: resume (step=1, signal=0), trap_expected=0, current thread [Thread 0x2aaaab8f5700 (LWP 11663)] at 0x40093a
infrun: prepare_to_wait
infrun: target_wait (-1, status) =
infrun:   11659 [Thread 0x2aaaab8f5700 (LWP 11663)],
infrun:   status->kind = stopped, signal = SIGTRAP
infrun: infwait_normal_state
infrun: TARGET_WAITKIND_STOPPED
infrun: stop_pc = 0x40091e
infrun: stepped to a different line
infrun: stop_stepping
[Switching to Thread 0x2aaaab8f5700 (LWP 11663)]
69            (*myp) ++; /* set breakpoint child_two here */

^^^ we stopped at the wrong line.  We still stepped a bit because the
test is running in a loop, and when we got back to stepping thread 3,
it happened to be in the stepping range.  (The loop increments a
counter, and the test makes sure it increments exactly once.  Without
the fix, the counter increments a bunch, since the user-stepped thread
runs free without GDB noticing.)

The fix is to switch to the stepping thread before continuing for the
step-resume breakpoint.

gdb/
2014-02-07  Pedro Alves  <palves@redhat.com>

	* infrun.c (handle_signal_stop) <signal arrives while stepping
	over a breakpoint>: Switch back to the stepping thread.

gdb/testsuite/
2014-02-07  Pedro Alves  <pedro@codesourcery.com>
	    Pedro Alves  <palves@redhat.com>

	* gdb.threads/step-after-sr-lock.c: New file.
	* gdb.threads/step-after-sr-lock.exp: New file.
2014-02-07 19:35:30 +00:00
Pedro Alves b5ee5a50d4 Fix gdb.threads/stepi-random-signal.exp on software single-step targets.
Currently on software single-step Linux targets we get:

 (gdb) PASS: gdb.threads/stepi-random-signal.exp: before stepi: get hexadecimal valueof "$pc"
 stepi
 infrun: clear_proceed_status_thread (Thread 0x7ffff7fca700 (LWP 7073))
 infrun: clear_proceed_status_thread (Thread 0x7ffff7fcb740 (LWP 7069))
 infrun: proceed (addr=0xffffffffffffffff, signal=GDB_SIGNAL_DEFAULT, step=1)
 infrun: resume (step=1, signal=GDB_SIGNAL_0), trap_expected=0, current thread [Thread 0x7ffff7fcb740 (LWP 7069)] at 0x400700
 infrun: wait_for_inferior ()
 infrun: target_wait (-1, status) =
 infrun:   7069 [Thread 0x7ffff7fcb740 (LWP 7069)],
 infrun:   status->kind = stopped, signal = GDB_SIGNAL_TRAP
 infrun: infwait_normal_state
 infrun: TARGET_WAITKIND_STOPPED
 infrun: stop_pc = 0x400704
 infrun: software single step trap for Thread 0x7ffff7fcb740 (LWP 7069)
 infrun: stepi/nexti
 infrun: stop_stepping
 44        while (counter != 0)
 (gdb) FAIL: gdb.threads/stepi-random-signal.exp: stepi (no random signal)

Vs hardware-step targets:

 (gdb) PASS: gdb.threads/stepi-random-signal.exp: before stepi: get hexadecimal valueof "$pc"
 stepi
 infrun: clear_proceed_status_thread (Thread 0x7ffff7fca700 (LWP 9565))
 infrun: clear_proceed_status_thread (Thread 0x7ffff7fcb740 (LWP 9561))
 infrun: proceed (addr=0xffffffffffffffff, signal=GDB_SIGNAL_DEFAULT, step=1)
 infrun: resume (step=1, signal=GDB_SIGNAL_0), trap_expected=0, current thread [Thread 0x7ffff7fcb740 (LWP 9561)] at 0x400700
 infrun: wait_for_inferior ()
 infrun: target_wait (-1, status) =
 infrun:   9561 [Thread 0x7ffff7fcb740 (LWP 9561)],
 infrun:   status->kind = stopped, signal = GDB_SIGNAL_CHLD
 infrun: infwait_normal_state
 infrun: TARGET_WAITKIND_STOPPED
 infrun: stop_pc = 0x400700
 infrun: random signal (GDB_SIGNAL_CHLD)
 infrun: random signal, keep going
 infrun: resume (step=1, signal=GDB_SIGNAL_CHLD), trap_expected=0, current thread [Thread 0x7ffff7fcb740 (LWP 9561)] at 0x400700
 infrun: prepare_to_wait
 infrun: target_wait (-1, status) =
 infrun:   9561 [Thread 0x7ffff7fcb740 (LWP 9561)],
 infrun:   status->kind = stopped, signal = GDB_SIGNAL_TRAP
 infrun: infwait_normal_state
 infrun: TARGET_WAITKIND_STOPPED
 infrun: stop_pc = 0x400704
 infrun: stepi/nexti
 infrun: stop_stepping
 44        while (counter != 0)
 (gdb) PASS: gdb.threads/stepi-random-signal.exp: stepi

The test turns on infrun debug, does a stepi while a SIGCHLD is
pending, and checks whether the "random signal" paths in infrun.c are
taken.

On the software single-step variant above, those paths were not taken.

This is a test bug.

The Linux backend short-circuits reporting signals that are set to
pass/nostop/noprint.  But _only_ if the thread is _not_
single-stepping.  So on hardware-step targets, even though the signal
is set to pass/nostop/noprint by default, the thread is indeed told to
single-step, and so the core sees the signal.  On the other hand, on
software single-step architectures, the backend never actually gets a
single-step request (steps are emulated by setting a breakpoint at the
next pc, and then the target told to continue, not step).  So the
short-circuiting code triggers and the core doesn't see the signal.

The fix is to make the test be sure the target doesn't bypass
reporting the signal to the core.

Tested on x86_64 Fedora 17, both with and without a series that
implements software single-step for x86_64.

gdb/testsuite/
2014-02-07  Pedro Alves  <palves@redhat.com>

	* gdb.threads/stepi-random-signal.exp: Set SIGCHLD to print.
2014-02-07 19:04:10 +00:00
Jan Kratochvil 3c77faf33d Fix i386-sse-stack-align.exp regression since GDB_PARALLEL.
gdb/testsuite/
2014-02-06  Jan Kratochvil  <jan.kratochvil@redhat.com>

	Fix i386-sse-stack-align.exp regression since GDB_PARALLEL.
	* gdb.arch/i386-sse-stack-align.exp: Use standard_output_file.
2014-02-06 23:14:20 +01:00
Doug Evans 6dddc817c1 Extension Language API
* configure.ac (libpython checking): Remove all but python.o from
	CONFIG_OBS.  Remove all but python.c from CONFIG_SRCS.
	* configure: Regenerate.

	* Makefile.in (SFILES): Add extension.c.
	(HFILES_NO_SRCDIR): Add extension.h, extension-priv.h
	(COMMON_OBS): Add extension.o.
	* extension.h: New file.
	* extension-priv.h: New file.
	* extension.c: New file.

	* python/python-internal.h: #include "extension.h".
	(gdbpy_auto_load_enabled): Declare.
	(gdbpy_apply_val_pretty_printer): Declare.
	(gdbpy_apply_frame_filter): Declare.
	(gdbpy_preserve_values): Declare.
	(gdbpy_breakpoint_cond_says_stop): Declare.
	(gdbpy_breakpoint_has_cond): Declare.
	(void source_python_script_for_objfile): Delete.
	* python/python.c: #include "extension-priv.h".
	Delete inclusion of "observer.h".
	(extension_language_python): Moved here and renamed from
	script_language_python in py-auto-load.c.
	Redefined to be of type extension_language_defn.
	(python_extension_script_ops): New global.
	(python_extension_ops): New global.
	(struct python_env): New member previous_active.
	(restore_python_env): Call restore_active_ext_lang.
	(ensure_python_env): Call set_active_ext_lang.
	(gdbpy_clear_quit_flag): Renamed from clear_quit_flag, made static.
	New arg extlang.
	(gdbpy_set_quit_flag): Renamed from set_quit_flag, made static.
	New arg extlang.
	(gdbpy_check_quit_flag): Renamed from check_quit_flag, made static.
	New arg extlang.
	(gdbpy_eval_from_control_command): Renamed from
	eval_python_from_control_command, made static.  New arg extlang.
	(gdbpy_source_script) Renamed from source_python_script, made static.
	New arg extlang.
	(gdbpy_before_prompt_hook): Renamed from before_prompt_hook.  Change
	result to int.  New arg extlang.
	(gdbpy_source_objfile_script): Renamed from
	source_python_script_for_objfile, made static.  New arg extlang.
	(gdbpy_start_type_printers): Renamed from start_type_printers, made
	static.  New args extlang, extlang_printers.  Change result type to
	"void".
	(gdbpy_apply_type_printers): Renamed from apply_type_printers, made
	static.  New arg extlang.  Rename arg printers to extlang_printers
	and change type to ext_lang_type_printers *.
	(gdbpy_free_type_printers): Renamed from free_type_printers, made
	static.  Replace argument arg with extlang, extlang_printers.
	(!HAVE_PYTHON, eval_python_from_control_command): Delete.
	(!HAVE_PYTHON, source_python_script): Delete.
	(!HAVE_PYTHON, gdbpy_should_stop): Delete.
	(!HAVE_PYTHON, gdbpy_breakpoint_has_py_cond): Delete.
	(!HAVE_PYTHON, start_type_printers): Delete.
	(!HAVE_PYTHON, apply_type_printers): Delete.
	(!HAVE_PYTHON, free_type_printers): Delete.
	(_initialize_python): Delete call to observer_attach_before_prompt.
	(finalize_python): Set/restore active extension language.
	(gdbpy_finish_initialization) Renamed from
	finish_python_initialization, made static.  New arg extlang.
	(gdbpy_initialized): New function.
	* python/python.h: #include "extension.h".  Delete #include
	"value.h", "mi/mi-cmds.h".
	(extension_language_python): Declare.
	(GDBPY_AUTO_FILE_NAME): Delete.
	(enum py_bt_status): Moved to extension.h and renamed to
	ext_lang_bt_status.
	(enum frame_filter_flags): Moved to extension.h.
	(enum py_frame_args): Moved to extension.h and renamed to
	ext_lang_frame_args.
	(finish_python_initialization): Delete.
	(eval_python_from_control_command): Delete.
	(source_python_script): Delete.
	(apply_val_pretty_printer): Delete.
	(apply_frame_filter): Delete.
	(preserve_python_values): Delete.
	(gdbpy_script_language_defn): Delete.
	(gdbpy_should_stop, gdbpy_breakpoint_has_py_cond): Delete.
	(start_type_printers, apply_type_printers, free_type_printers): Delete.

	* auto-load.c: #include "extension.h".
	(GDB_AUTO_FILE_NAME): Delete.
	(auto_load_gdb_scripts_enabled): Make public.  New arg extlang.
	(script_language_gdb): Delete, moved to extension.c and renamed to
	extension_language_gdb.
	(source_gdb_script_for_objfile): Delete.
	(auto_load_pspace_info): New member unsupported_script_warning_printed.
	(loaded_script): Change type of language member to
	struct extension_language_defn *.
	(init_loaded_scripts_info): Initialize
	unsupported_script_warning_printed.
	(maybe_add_script): Make static.  Change type of language arg to
	struct extension_language_defn *.
	(clear_section_scripts): Reset unsupported_script_warning_printed.
	(auto_load_objfile_script_1): Rewrite to use extension language API.
	(auto_load_objfile_script): Make public.  Remove support-compiled-in
	and auto-load-enabled checks, moved to auto_load_scripts_for_objfile.
	(source_section_scripts): Rewrite to use extension language API.
	(load_auto_scripts_for_objfile): Rewrite to use
	auto_load_scripts_for_objfile.
	(collect_matching_scripts_data): Change type of language member to
	struct extension_language_defn *.
	(auto_load_info_scripts): Change type of language arg to
	struct extension_language_defn *.
	(unsupported_script_warning_print): New function.
	(script_not_found_warning_print): Make static.
	(_initialize_auto_load): Rewrite construction of scripts-directory
	help.
	* auto-load.h (struct objfile): Add forward decl.
	(struct script_language): Delete.
	(struct auto_load_pspace_info): Add forward decl.
	(struct extension_language_defn): Add forward decl.
	(maybe_add_script): Delete.
	(auto_load_objfile_script): Declare.
	(script_not_found_warning_print): Delete.
	(auto_load_info_scripts): Update prototype.
	(auto_load_gdb_scripts_enabled): Declare.
	* python/py-auto-load.c (gdbpy_auto_load_enabled): Renamed from
	auto_load_python_scripts_enabled and made public.
	(script_language_python): Delete, moved to python.c.
	(gdbpy_script_language_defn): Delete.
	(info_auto_load_python_scripts): Update to use
	extension_language_python.

	* breakpoint.c (condition_command): Replace call to
	gdbpy_breakpoint_has_py_cond with call to get_breakpoint_cond_ext_lang.
	(bpstat_check_breakpoint_conditions): Replace call to gdbpy_should_stop
	with call to breakpoint_ext_lang_cond_says_stop.
	* python/py-breakpoint.c (gdbpy_breakpoint_cond_says_stop): Renamed
	from gdbpy_should_stop.  Change result type to enum scr_bp_stop.
	New arg slang.  Return SCR_BP_STOP_UNSET if py_bp_object is NULL.
	(gdbpy_breakpoint_has_cond): Renamed from gdbpy_breakpoint_has_py_cond.
	New arg slang.
	(local_setattro): Print name of extension language with existing
	stop condition.

	* valprint.c (val_print, value_print): Update to call
	apply_ext_lang_val_pretty_printer.
	* cp-valprint.c (cp_print_value): Update call to
	apply_ext_lang_val_pretty_printer.
	* python/py-prettyprint.c: Remove #ifdef HAVE_PYTHON.
	(gdbpy_apply_val_pretty_printer): Renamed from
	apply_val_pretty_printer.  New arg extlang.
	(!HAVE_PYTHON, apply_val_pretty_printer): Delete.

	* cli/cli-cmds.c (source_script_from_stream): Rewrite to use
	extension language API.
	* cli/cli-script.c (execute_control_command): Update to call
	eval_ext_lang_from_control_command.

	* mi/mi-cmd-stack.c (mi_cmd_stack_list_frames): Update to use
	enum ext_lang_bt_status values.  Update call to
	apply_ext_lang_frame_filter.
	(mi_cmd_stack_list_locals): Ditto.
	(mi_cmd_stack_list_args): Ditto.
	(mi_cmd_stack_list_variables): Ditto.
	* mi/mi-main.c: Delete #include "python/python-internal.h".
	Add #include "extension.h".
	(mi_cmd_list_features): Replace reference to python internal variable
	gdb_python_initialized with call to ext_lang_initialized_p.

	* stack.c (backtrace_command_1): Update to use enum ext_lang_bt_status.
	Update to use enum ext_lang_frame_args.  Update to call
	apply_ext_lang_frame_filter.
	* python/py-framefilter.c (extract_sym): Update to use enum
	ext_lang_bt_status.
	(extract_value, py_print_type, py_print_value): Ditto.
	(py_print_single_arg, enumerate_args, enumerate_locals): Ditto.
	(py_mi_print_variables, py_print_locals, py_print_args): Ditto.
	(py_print_frame): Ditto.
	(gdbpy_apply_frame_filter): Renamed from apply_frame_filter.
	New arg extlang.  Update to use enum ext_lang_bt_status.

	* top.c (gdb_init): Delete #ifdef HAVE_PYTHON call to
	finish_python_initialization.  Replace with call to
	finish_ext_lang_initialization.

	* typeprint.c (do_free_global_table): Update to call
	free_ext_lang_type_printers.
	(create_global_typedef_table): Update to call
	start_ext_lang_type_printers.
	(find_global_typedef): Update to call apply_ext_lang_type_printers.
	* typeprint.h (struct ext_lang_type_printers): Add forward decl.
	(type_print_options): Change type of global_printers from "void *"
	to "struct ext_lang_type_printers *".

	* value.c (preserve_values): Update to call preserve_ext_lang_values.
	* python/py-value.c: Remove #ifdef HAVE_PYTHON.
	(gdbpy_preserve_values): Renamed from preserve_python_values.
	New arg extlang.
	(!HAVE_PYTHON, preserve_python_values): Delete.

	* utils.c (quit_flag): Delete, moved to extension.c.
	(clear_quit_flag, set_quit_flag, check_quit_flag): Delete, moved to
	extension.c.

	* eval.c: Delete #include "python/python.h".
	* main.c: Delete #include "python/python.h".

	* defs.h: Update comment.

	testsuite/

	* gdb.python/py-breakpoint.exp (test_bkpt_eval_funcs): Update expected
	output.

	* gdb.gdb/python-interrupts.exp: New file.
2014-02-05 19:27:58 -08:00
Yao Qi de7b289385 Create inferior for ctf target.
This patch creates inferior when GDB opens a ctf trace data, to be
consistent with tfile target.  A test case is added to test for
live target, tfile and ctf target.

gdb:

2014-02-05  Yao Qi  <yao@codesourcery.com>

	* ctf.c: Include "inferior.h" and "gdbthread.h".
	(CTF_PID): A new macro.
	(ctf_open): Call inferior_appeared and add_thread_silent.
	(ctf_close): Call exit_inferior_silent and set inferior_ptid.
	(ctf_thread_alive): New function.
	(init_ctf_ops): Install ctf_thread_alive to to_thread_alive.

gdb/testsuite:

2014-02-05  Yao Qi  <yao@codesourcery.com>

	* gdb.trace/report.exp (use_collected_data): Test the output
	of "info threads" and "info inferiors".
2014-02-05 19:37:25 +08:00
Yao Qi 66d032ac62 Create inferior for tfile target
When a trace file is loaded in Eclipse, it is expected to see thread
and process (=thread-group-started and =thread-created).  Create an
inferior and add a thread for this purpose.

This patch just reverts my previous patch.

gdb/testsuite:

2014-02-05  Yao Qi  <yao@codesourcery.com>

	Revert this patch:

	2013-05-24  Yao Qi  <yao@codesourcery.com>

	* gdb.trace/tfile.exp: Test inferior and thread.

gdb:

2014-02-05  Yao Qi  <yao@codesourcery.com>

	Revert this patch:

	2013-05-24  Yao Qi  <yao@codesourcery.com>

	* tracepoint.c (TFILE_PID): Remove.
	(tfile_open): Don't add thread and inferior.
	(tfile_close): Don't set 'inferior_ptid'.  Don't call
	exit_inferior_silent.
	(tfile_thread_alive): Remove.
	(init_tfile_ops): Don't set field 'to_thread_alive' of
	tfile_ops.
2014-02-05 19:35:39 +08:00
Ulrich Weigand 591a12a1d4 PowerPC64 ELFv2 ABI: skip global entry point code
This patch handles another aspect of the ELFv2 ABI, which unfortunately
requires common code changes.

In ELFv2, functions may provide both a global and a local entry point.
The global entry point (where the function symbol points to) is intended
to be used for function-pointer or cross-module (PLT) calls, and requires
r12 to be set up to the entry point address itself.   The local entry
point (which is found at a fixed offset after the global entry point,
as defined by bits in the symbol table entries' st_other field), instead
expects r2 to be set up to the current TOC.

Now, when setting a breakpoint on a function by name, you really want
that breakpoint to trigger either way, no matter whether the function
is called via its local or global entry point.  Since the global entry
point will always fall through into the local entry point, the way to
achieve that is to simply set the breakpoint at the local entry point.

One way to do that would be to have prologue parsing skip the code
sequence that makes up the global entry point.  Unfortunately, this
does not work reliably, since -for optimized code- GDB these days
will not actuall invoke the prologue parsing code but instead just
set the breakpoint at the symbol address and rely on DWARF being
correct at any point throughout the function ...

Unfortunately, I don't really see any way to express the notion of
local entry points with the current set of gdbarch callbacks.

Thus this patch adds a new callback, skip_entrypoint, that is
somewhat analogous to skip_prologue, but is called every time
GDB needs to determine a function start address, even in those
cases where GDB decides to not call skip_prologue.

As a side effect, the skip_entrypoint implementation on ppc64
does not need to perform any instruction parsing; it can simply
rely on the local entry point flags in the symbol table entry.

With this implemented, two test cases would still fail to set
the breakpoint correctly, but that's because they use the construct:

 gdb_test "break *hello"

Now, using "*hello" explicitly instructs GDB to set the breakpoint
at the numerical value of "hello" treated as function pointer, so
it will by definition only hit the global entry point.

I think this behaviour is unavoidable, but acceptable -- most people
do not use this construct, and if they do, they get what they
asked for ...

In one of those two test cases, use of this construct is really
not appropriate.  I think this was added way back when as a means
to work around prologue skipping problems on some platforms.  These
days that shouldn't really be necessary any more ...

For the other (step-bt), we really want to make sure backtracing
works on the very first instruction of the routine.  To enable that
test also on powerpc64le-linux, we can modify the code to call the
test function via function pointer (which makes it use the global
entry point in the ELFv2 ABI).

gdb/ChangeLog:

	* gdbarch.sh (skip_entrypoint): New callback.
	* gdbarch.c, gdbarch.h: Regenerate.
	* symtab.c (skip_prologue_sal): Call gdbarch_skip_entrypoint.
	* infrun.c (fill_in_stop_func): Likewise.
	* ppc-linux-tdep.c: Include "elf/ppc64.h".
	(ppc_elfv2_elf_make_msymbol_special): New function.
	(ppc_elfv2_skip_entrypoint): Likewise.
	(ppc_linux_init_abi): Install them for ELFv2.

gdb/testsuite/ChangeLog:

	* gdb.base/sigbpt.exp: Do not use "*" when setting breakpoint
	on a function.
	* gdb.base/step-bt.c: Call hello via function pointer to make
	sure its first instruction is executed on powerpc64le-linux.
2014-02-04 18:44:14 +01:00
Ulrich Weigand 0ff3e01fdc PowerPC64 little-endian fixes: 128-bit DFP parameters / registers
The powerpc64le-linux ABI specifies that when a 128-bit DFP value is
passed in a pair of floating-point registers, the first register holds
the most-significant part of the value.  This is as opposed to the
usual rule on little-endian systems, where the first register would
hold the least-significant part.

This affects two places in GDB, the read/write routines for the
128-bit DFP pseudo-registers, and the function call / return
sequence.  For the former, current code already distinguishes
between big- and little-endian targets, but gets the latter
wrong.  This is presumably because *GCC* also got it wrong,
and GDB matches the old GCC behavior.  But GCC is now fixed:
http://gcc.gnu.org/ml/gcc-patches/2013-11/msg02145.html
so GDB needs to be fixed too.  (Old code shouldn't really be
an issue since there is no code "out there" so far that uses
dfp128 on little-endian ...)

gdb/ChangeLog:

	* ppc-sysv-tdep.c (ppc64_sysv_abi_push_freg): Use correct order
	within a register pair holding a DFP 128-bit value on little-endian.
	(ppc64_sysv_abi_return_value_base): Likewise.
	* rs6000-tdep.c (dfp_pseudo_register_read): Likewise.
	(dfp_pseudo_register_write): Likewise.

gdb/testsuite/ChangeLog:

	* gdb.arch/powerpc-d128-regs.exp: Enable on powerpc64*-*.
2014-02-04 18:36:54 +01:00
Ulrich Weigand 084ee54552 PowerPC64 little-endian fixes: VSX tests and pseudo-regs
Many VSX test were failing on powerpc64le-linux, since -as opposed to the
AltiVec tests- there never were little-endian versions of the test patterns.

This patch adds such patterns, along the lines of altivec-regs.exp.

In addition, there is an actual code change required: For those VSX
registers that overlap a floating-point register, the FP register
overlaps the most-significant half of the VSX register both on big-
and little-endian systems.  However, on little-endian systems, that
half is stored at an offset of 8 bytes (not 0).  This works already
for the "real" FP registers, but current code gets it wrong for
the "extended" pseudo FP register GDB generates for the second
half of the VSX register bank.

This patch updates the corresponding pseudo read/write routines
to take the appropriate offset into consideration.

gdb/ChangeLog:

	* rs6000-tdep.c (efpr_pseudo_register_read): Use correct offset
	of the overlapped FP register within the VSX register on little-
	endian platforms.
	(efpr_pseudo_register_write): Likewise.

gdb/testsuite/ChangeLog:

	* gdb.arch/vsx-regs.exp: Check target endianness.  Provide variants
	of the test patterns for use on little-endian systems.
2014-02-04 18:31:38 +01:00
Ulrich Weigand 6ed14ff339 PowerPC64 little-endian fixes: AltiVec tests
A couple of AltiVec tests fail spuriously on powerpc64le-linux, because
they compare against an incorrect pattern.  Note that those tests already
contain little-endian variants of the patterns, but those seem to have
bit-rotted a bit: when outputting a vector, GDB no longer omits trailing
zero elements (as it used to do in the past).

This patch updates the pattern to the new GDB output behavior.

In addition, the patch updates the endian test to use the new
gdb_test_multiple logic instead of gdb_expect.

gdb/testsuite/ChangeLog:

	* gdb.arch/altivec-regs.exp: Use gdb_test_multiple for endian test.
	(decimal_vector): Fix for little-endian.
2014-02-04 18:28:24 +01:00