Replace linked list of trampoline frags with an ordered array, so that
instead of indexing fixups trampolines could be indexed. Keep each array
in the trampoline_seg structure, so there's no need to rebuild it for
every new processed segment. Don't run relaxation for each trampoline
frag, instead run it for each fixup in the current segment that needs
relaxation at the beginning of each relaxation pass. This way the
complexity of this process drops from about O(n^2 * m) to about
O(log n * m), where n is the number of trampoline frags and m is the
number of fixups that need relaxation in the segment.
gas/
2017-11-27 Max Filippov <jcmvbkbc@gmail.com>
* config/tc-xtensa.c (trampoline_index): New structure.
(trampoline_seg): Replace trampoline list with trampoline index.
(xg_find_trampoline, xg_add_trampoline_to_index)
(xg_remove_trampoline_from_index, xg_add_trampoline_to_seg)
(xg_is_trampoline_frag_full, xg_get_fulcrum)
(xg_find_best_trampoline, xg_relax_fixup, xg_relax_fixups)
(xg_is_relaxable_fixup): New functions.
(J_MARGIN): New macro.
(xtensa_create_trampoline_frag): Use xg_add_trampoline_to_seg
instead of open-coded addition to the linked list.
(dump_trampolines): Iterate through the trampoline_seg::index.
(cached_fixupS, cached_fixup, fixup_cacheS, fixup_cache)
(fixup_order, xtensa_make_cached_fixup)
(xtensa_realloc_fixup_cache, xtensa_cache_relaxable_fixups)
(xtensa_find_first_cached_fixup, xtensa_delete_cached_fixup)
(xtensa_add_cached_fixup, check_and_update_trampolines): Remove
definitions.
(xg_relax_trampoline): Extract logic into separate functions,
replace body with a call to xg_relax_fixups.
(search_trampolines): Replace search in linked list with search
in index. Change data type of address-tracking variables from
int to offsetT. Replace abs with labs.
(xg_append_jump): Finish the trampoline frag if it's full.
(add_jump_to_trampoline): Remove trampoline frag from the index
if the frag is full.
* config/tc-xtensa.h (xtensa_frag_type): Remove next_trampoline.
* testsuite/gas/xtensa/trampoline.d: Adjust absolute addresses
as the placement of trampolines has slightly changed.
* testsuite/gas/xtensa/trampoline.s: Add _nop so that objdump
stays in sync with instruction stream.
The split between fragS and trampoline_frag doesn't save much space, but
makes trampolines management much more awkward. Merge trampoline_frag
data into the xtensa_frag_type, which is a part of fragS. No functional
changes.
gas/
2017-11-27 Max Filippov <jcmvbkbc@gmail.com>
* config/tc-xtensa.c (init_trampoline_frag): Replace pointer to
struct trampoline_frag parameter with pointer to fragS.
(xg_append_jump): Remove jump_around parameter.
(struct trampoline_frag): Remove.
(struct trampoline_seg): Change type of trampoline_list from
struct trampoline_frag to fragS.
(xtensa_create_trampoline_frag): Don't allocate struct
trampoline_frag. Initialize new fragS::tc_frag_data fields.
(dump_trampolines, xg_relax_trampoline, search_trampolines)
(get_best_trampoline, init_trampoline_frag)
(add_jump_to_trampoline, relax_frag_immed): Replace pointer to
struct trampoline_frag with a pointer to fragS.
(xg_append_jump): Remove jump_around parameter, use
fragS::tc_frag_data.jump_around_fix instead.
(xg_relax_trampoline, init_trampoline_frag)
(add_jump_to_trampoline): Don't pass jump_around parameter to
xg_append_jump.
* config/tc-xtensa.h (struct xtensa_frag_type): Add new fields:
needs_jump_around, next_trampoline and jump_around_fix.
xtensa_create_trampoline_frag has opencoded fragment equivalent to
find_trampoline_seg. Drop the fragment and use find_trampoline_seg
instead. No functional changes.
gas/
2017-11-27 Max Filippov <jcmvbkbc@gmail.com>
* config/tc-xtensa.c (find_trampoline_seg): Move above the first
use.
(xtensa_create_trampoline_frag): Replace trampoline seg search
code with a call to find_trampoline_seg.
init_trampoline_frag, add_jump_to_trampoline and xg_relax_trampoline add
a jump to the end of a trampoline frag. Extract it into a separate
funciton and use it in all these places. No functional changes.
gas/
2017-11-27 Max Filippov <jcmvbkbc@gmail.com>
* config/tc-xtensa.c (xg_append_jump): New function.
(xg_relax_trampoline, init_trampoline_frag)
(add_jump_to_trampoline): Replace trampoline jump assembling
code with a call to xg_append_jump.
To make measurement and changes easier extract trampoline relaxation
function. No functional changes.
gas/
2017-11-27 Max Filippov <jcmvbkbc@gmail.com>
* config/tc-xtensa.c (xg_relax_trampoline): New function.
(xtensa_relax_frag): Replace trampoline relaxation code with a
call to xg_relax_trampoline.
The following patch introduced a new feature related to Ada exception
catchpoints:
commit e547c119d0
Author: Joel Brobecker <brobecker@adacore.com>
Date: Fri Nov 24 17:09:42 2017 -0500
Subject: (Ada) provide the exception message when hitting an exception catchpoint
Unfortunately, the patch left 2 errors in gdb.ada/mi_catch_ex.exp,
both inside the "continue_to_exception" function:
1. The exception message on the console can include the exception
message, and thus this patch adjust the expected output in
the corresponding gdb_expect call to allow it;
to allow it.
2. There was a TCL syntax confusion in "$exception_name(..."
that caused TCL to evaluate "exception_name as an array,
rather than as a variable. This patch fixes this by escaping
the '(' (and the corresponding closing parenthesis, for
consistency).
gdb/testsuite/ChangeLog:
* gdb.ada/mi_catch_ex.exp (continue_to_exception): Adjust
expected output in gdb_expect call to allow the exception
message to be present as well. Fix syntax confusion to avoid
TCL thinking that exception_name is an array.
Tested on x86_64-linux, with:
DejaGnu version 1.6
Expect version 5.45
Tcl version 8.6
No dynamic relocs are needed for TLS defined in an executable, the
TP relative offset is known at link time.
Fixes
FAIL: Build pr22263-1
bfd/
PR ld/22263
* elfnn-aarch64.c (elfNN_aarch64_relocate_section): Use
bfd_link_executable instead of bfd_link_pic for TLS.
(elfNN_aarch64_allocate_dynrelocs): Likewise.
(aarch64_can_relax_tls): Likewise.
With static pie linking undefined weak symbols are forced to resolve locally
to 0, so no GOT setup is needed in elfNN_aarch64_finish_dynamic_symbol,
which previously failed for these symbols.
The failure caused the unhelpful error message:
"ld: final link failed: Nonrepresentable section on output"
bfd/
PR ld/22269
* elfnn-aarch64.c (elfNN_aarch64_finish_dynamic_symbol): Use
UNDEFWEAK_NO_DYNAMIC_RELOC to avoid dynamic GOT relocs.
(elfNN_aarch64_allocate_dynrelocs): Likewise.
PR 22490
* readelf.c (dump_section_as_bytes): Check for a NULL string
section pointer.
(process_notes_at): Compute the alignment to use if displaying
notes from a segment.
This patch updates the `find` command help and docs description to show
how to search for not null terminated strings when current language's
strings includes it.
gdb/ChangeLog:
PR gdb/21945
* findcmd.c (_initialize_mem_search): Update find command help
text.
gdb/doc/ChangeLog:
PR gdb/21945
* gdb.texinfo (Search Memory): Update description and example
about how to search a string without NULL terminator.
While playing with valgrind, I noticed that with Python 3, the progname
variable in do_start_initialization is not being freed (concat returns a
malloc'ed string). This patch uses unique_xmalloc_ptr to manage it.
With Python 2, we pass progname it directly to Py_SetProgramName, so it
should not be freed. We therefore release it before passing it.
gdb/ChangeLog:
* python/python.c (do_start_initialization): Change progname
type to gdb::unique_xmalloc_ptr. Release the pointer when using
Python 2.
This fixed the build with GCC 4.2:
cc1: warnings being treated as errors
binutils-gdb/binutils/dwarf.c: In function ‘load_separate_debug_info’:
binutils-gdb/binutils/dwarf.c:9650: warning: declaration of ‘link’ shadows a global declaration
/usr/include/unistd.h:757: warning: shadowed declaration is here
* dwarf.c (load_separate_debug_info): Rename argument name from
link to xlink.
This changes maybe_disable_address_space_randomization to be an RAII
class, rather than having it return a cleanup.
Regression tested by the buildbot.
ChangeLog
2017-11-26 Tom Tromey <tom@tromey.com>
* nat/linux-personality.h (class
maybe_disable_address_space_randomization): New class.
(maybe_disable_address_space_randomization): Don't declare
function.
* nat/linux-personality.c (restore_personality)
(make_disable_asr_cleanup): Remove.
(maybe_disable_address_space_randomization): Now a constructor.
(~maybe_disable_address_space_randomization): New destructor.
* linux-nat.c (linux_nat_create_inferior): Update.
gdbserver/ChangeLog
2017-11-26 Tom Tromey <tom@tromey.com>
* linux-low.c (linux_create_inferior): Update.
This removes a cleanup from gcore.c, replacing it with
unique_xmalloc_ptr.
Regression tested by the buildbot.
ChangeLog
2017-11-26 Tom Tromey <tom@tromey.com>
* gcore.c (write_gcore_file_1): Use gdb::unique_xmalloc_ptr.
The SPU-specific test cases were not modified to use standard_output_file
and therefore all were no longer being executed. Fixing this exposed a
few other bugs in spu-info noticed by using a more recent compiler, which
are also fixed here.
gdb/testsuite/ChangeLog:
2017-11-26 Ulrich Weigand <uweigand@de.ibm.com>
* gdb.arch/spu-info.c: Include <unistd.h>.
(do_signal_test): Fix broken calls to write.
* gdb.arch/spu-info.exp: Use prepare_for_testing.
Fix checks for empty mailboxes. Update signal tests for corrected
do_signal_test routine. Allow nonzero event status.
Switching spu_software_single_step to use a regcache instead of a frame:
https://sourceware.org/ml/gdb-patches/2016-11/msg00355.html
cause a serious regression to SPU single-stepping.
There were two separate problems:
- SPU_LSLR_REGNUM is a pseudo register, so we must use the "cooked"
regcache methods instead of the "raw" ones to access it.
- When accessing a branch target register, we must only use the first
four bytes of the 16-byte vector register. This was done automatically
by the frame routines, but not by the regcache routines.
gdb/ChangeLog:
2017-11-26 Ulrich Weigand <uweigand@de.ibm.com>
* spu-tdep.c (spu_software_single_step): Access SPU_LSLR_REGNUM as
"cooked" register. Access only first four bytes of branch target
registers.
Pedro has kindly pointed out that
gdb.arch/amd64-stap-optional-prefix.exp was failing after my
C++-ification patches touching the probe interface. The failure is
kind of cryptic:
77 break -pstap bar
78 Breakpoint 3 at 0x40048d
79 (gdb) PASS: gdb.arch/amd64-stap-optional-prefix.exp: bar: break -pstap bar
80 continue
81 Continuing.
82
83 Program received signal SIGILL, Illegal instruction.
84 main () at amd64-stap-optional-prefix.S:26
85 26 STAP_PROBE1(probe, foo, (%rsp))
It took me a while to figure out where this SIGILL is coming from.
Initially I thought it was something related to writing registers to
the inferior when dealing with probe arguments, but I discarded this
since the arguments were not touching any registers.
In the end, this was a mistake that was introduced during the review
process of the patch. When setting/clearing a SystemTap probe's
semaphore, the code was using 'm_address' (which refers the probe's
address) instead of 'm_sem_addr' (which refers to the semaphore's
address). This caused GDB to write a bogus value in the wrong memory
position, which in turn caused the SIGILL.
I am pushing this patch to correct the mistake.
On a side note: I told Pedro that the BuildBot hadn't caught the
failure during my try build, and for a moment there was a suspicion
that the BuildBot might be at fault here. However, I investigate this
and noticed that I only did one try build, with a patch that was
correctly using 'm_sem_addr' where applicable, and therefore no
failure should have happened indeed. I probably should have requested
another try build after addressing the review's comments, but they
were mostly basic and I didn't think it was needed. Oh, well.
2017-11-25 Sergio Durigan Junior <sergiodj@redhat.com>
PR gdb/22491
* stap-probe.c (relocate_address): New function.
(stap_probe::get_relocated_address): Use 'relocate_address'.
(stap_probe::set_semaphore): Use 'relocate_address' and pass
'm_sem_addr'.
(stap_probe::clear_semaphore): Likewise.
The support for setting breakpoint in functions with ABI tags patch
will add a use of SYMBOL_HASH_NEXT in cp-support.c, which fails to
compile with:
src/gdb/cp-support.c:38:0:
src/gdb/cp-support.c: In function ‘unsigned int cp_search_name_hash(const char*)’:
src/gdb/../include/safe-ctype.h:148:20: error: ‘do_not_use_tolower_with_safe_ctype’ was not declared in this scope
#define tolower(c) do_not_use_tolower_with_safe_ctype
^
src/gdb/minsyms.h:174:18: note: in expansion of macro ‘tolower’
((hash) * 67 + tolower ((unsigned char) (c)) - 113)
^
src/gdb/cp-support.c:1677:14: note: in expansion of macro ‘SYMBOL_HASH_NEXT’
hash = SYMBOL_HASH_NEXT (hash, *string);
^
This fixes the problem before it happens.
I was somewhat worried about whether this might have an impact with
languages that are case insensitive, but I convinced myself that it
doesn't. As bonus, this improves GDB's minsym interning performance a
bit (3%-10%). See
<https://sourceware.org/ml/gdb/2017-11/msg00021.html>.
gdb/ChangeLog:
2017-11-25 Pedro Alves <palves@redhat.com>
* dictionary.c: Include "safe-ctype.h".
* minsyms.c: Include "safe-ctype.h".
* minsyms.c (SYMBOL_HASH_NEXT): Use TOLOWER instead of tolower.
Earlier while working on the big completer rework series, I managed to
break
(gdb) [TAB]
locally, and make GDB crash, but only notice a few weeks down the
road, because we have no test for that...
I also noticed that:
(gdb) [TAB]
didn't work (didn't show all commands as matches), even though
entering a command with leading whitespace works:
(gdb) help
This commit fixes the latter and adds a testcase that covers both
issues.
The gdb.base/completion.exp change is necessary because the new test
has a file name that also starts with "gdb.base/complet", making that
particular test ambiguous. Adding another letter disambiguates.
gdb/ChangeLog:
2017-11-25 Pedro Alves <palves@redhat.com>
* completer.c (complete_line_internal_1): Skip spaces until the
start of the command.
gdb/testsuite/ChangeLog:
2017-11-25 Pedro Alves <palves@redhat.com>
* gdb.base/complete-empty.exp: New file.
* gdb.base/completion.exp: Adjust.
This exercises the special handling C++ operators require in several
places in the linespec parser, both the linespec and explicit location
completers, symbol lookup, etc. Particularly, makes sure all that
works without quoting.
Note that despite the apparent smallish size, this adds thousands of
tests to the testsuite, due to combination explosion (linespecs,
explicit locations, tab completion, complete command, completion at
different points in each function, etc.)
Grows the gdb.linespec/ tests like this:
-# of expected passes 3464
+# of expected passes 7823
gdb/testsuite/ChangeLog:
2017-11-25 Pedro Alves <palves@redhat.com>
* gdb.linespec/cpls-ops.cc: New file.
* gdb.linespec/cpls-ops.exp: New file.
* lib/completion-support.exp (test_complete_prefix_range_re): New,
factored out from ...
(test_complete_prefix_range): ... this.
Exercises all sorts of aspects fixed by previous patches, going back a
few months.
- Exercises label completion, linespecs and explicit locations.
- Exercises both quoting vs non-quoting, source filenames, function
names, labels, with both linespecs and explicit locations.
- Tests corner cases around not-quoting function names, and
whitespace and/and completing inside a parameter or template
argument list, anonymous namespace awareness, etc.
E.g.,
"break foo<[TAB]" -> "break foo<int>()"
"break bar ( int[TAB]" -> "break bar ( int)
"break ( anon" -> "break ( anonymous namespace)::func()"
"b cfunc() [tab]" -> "b cfunc() const"
"b rettype templfunc[tab]" -> "b rettype templfunc<bar>()"
... and others.
- Tests the "b source.c[TAB] -> b source.cc:" feature. I.e., colon
auto-appending.
- Exercises corner cases around C++ "operator<" / "operator<<".
(Much more extensive C++ operator completion/linespec handling in a
separate patch.)
- Exercises both tab completion and "complete" command completion,
using routines that handle it automatically, to ensure no test
forgets either mode.
- Many of the completion tests test completion at at prefix of a
given tricky name, to make sure all corner cases are covered.
E.g., completing before, at and after ":", "(", "<".
- Exercises "keyword" completion. I.e., "b function() [TAB]"
displaying "if task thread" as completion match list. Likewise for
display explicit location options matches at the appropriate
points.
- Ensures that the completer finds the same breakpoint locations that
setting a breakpoint finds.
- Tests that linespec/location completion doesn't find data symbols.
- Tests that expression completion still kicks in after a
linespec/location keyword. I.e., this:
"b function () if global1 + global[TAB]"
knows that after "if", you're completing on an expression, and thus
breaks words after "if" as an expression and matches on "global" as
a data symbol.
- Adds common routines to help with all the above, to be used by
multiple completion and linespec/location test cases.
- More...
Grows the gdb.linespec/ tests like this:
-# of expected passes 573
+# of expected passes 3464
gdb/testsuite/ChangeLog:
2017-11-24 Pedro Alves <palves@redhat.com>
* gdb.linespec/cpcompletion.exp: New file.
* gdb.linespec/cpls-hyphen.cc: New file.
* gdb.linespec/cpls.cc: New file.
* gdb.linespec/cpls2.cc: New file.
* gdb.linespec/explicit.exp: Load completion-support.exp. Adjust
test to use test_gdb_complete_unique. Add label completion,
keyword completion and explicit location completion tests.
* lib/completion-support.exp: New file.
currently "b func tion" manages to set a breakpoint at "function" !
All these years I had never noticed this, but now that the linespec
completer actually works, this easily happens by accident, with:
"b func t<tab>"
expecting to get "thread", but getting instead:
"b func tion"
...
Also, this:
"b rettypefunc<int>"
manages to set a breakpoint on "rettype func<int>()".
These things happen due to strcmp_iw "magic".
Fix it by teaching strcmp_iw about when can it skip whitespace. This
required handling user-defined operators, and scope operators,
complicating the code a bit, unfortunately. I added unit tests for
all the corner cases I stumbled on, as I was developing this, and then
in the end wrote a testsuite testcase covering many of the same things
and more (to be added later).
gdb/ChangeLog:
2017-11-24 Pedro Alves <palves@redhat.com>
* cp-support.c (cp_symbol_name_matches_1): New, factored out from
cp_fq_symbol_name_matches. Pass language_cplus to
strncmp_with_mode.
(cp_fq_symbol_name_matches): Call cp_symbol_name_matches_1.
(selftests::test_cp_symbol_name_cmp): New.
(_initialize_cp_support): Register "cp_symbol_name_matches"
selftests.
* language.c (default_symbol_name_matcher): Pass language_minimal
to strncmp_iw_with_mode.
* utils.c: Include "cp-support.h" and <algorithm>.
(valid_identifier_name_char, cp_skip_operator_token, skip_ws)
(cp_is_operator): New functions.
(strncmp_iw_with_mode): Use them. Add language parameter. Don't
skip whitespace in the symbol name when the lookup name doesn't
have spaces, and vice versa.
(strncmp_iw, strcmp_iw): Pass language to strncmp_iw_with_mode.
* utils.h (strncmp_iw_with_mode): Add language parameter.
CORE PT_NOTE segments may have p_align values of 0 or 1. gABI specifies
that PT_NOTE alignment should be aligned to 4 bytes for 32-bit objects
and to 8 bytes for 64-bit objects. If segment alignment is less than 4,
we use 4 byte alignment.
This patch enhances the debugger to print the exception message, when
available, as part of an exception catchpoint hit notification (both
GDB/CLI and GDB/MI). For instance, with the following code...
procedure A is
begin
raise Constraint_Error with "hello world";
end A;
... instead of printing...
Catchpoint 1, CONSTRAINT_ERROR at 0x000000000040245c in a () at a.adb:3
... it now prints:
Catchpoint 1, CONSTRAINT_ERROR (hello world) at 0x000000000040245c in a ()
^^^^^^^^^^^^^
This enhancement requires runtime support. If not present, the debugger
just behaves as before.
In GDB/MI mode, if the exception message is available, it is provided
as an extra field named "exception-message" in the catchpoint notification:
*stopped,bkptno="1",[...],exception-name="CONSTRAINT_ERROR",
exception-message="hello world",[...]
gdb/ChangeLog:
* ada-lang.c (ada_exception_message_1, ada_exception_message):
New functions.
(print_it_exception): If available, display the exception
message as well.
* NEWS: Document new feature.
gdb/doc/ChangeLog:
* gdb.texinfo (GDB/MI Ada Exception Information): Document
new "exception-message" field.
gdb/testsuite/ChangeLog:
* gdb.ada/catch_ex.exp, gdb.ada/mi_catch_ex.exp,
gdb.ada/mi_ex_cond.exp: Accept optional exception message in
when hitting an exception catchpoint.
While writing a unit test for parse_memory_map, I tried to validate my
test input against gdb-memory-map.dtd, and found a few problems with it.
This doesn't influence how gdb parses it (AFAIK it doesn't use the
linked dtd), but if you edit the xml file in an editor that supports
dtds, you'll get plenty of errors.
- The <memory-map> element accepts exactly one <memory> OR <property>
as a child. This is a problem because you can't have multiple
<memory> elements and you shouldn't be able to have <property> elements
as direct children of <memory-map>.
- The <memory> element wants exactly one <property> child. This is
wrong, since you could have zero or more (even though we only
support one kind of property currently).
- I have no idea wht the device attribute of <memory> is, GDB doesn't
read that. I searched back in time a bit but couldn't find a trace
of it.
I took the opportunity to tighten what is accepted as a value of the
memory type and property name attributes. We currently accept any
string, but we can restrict them to the values GDB really accepts (and
which are documented).
AFAIK, this "file" only exists in the documentation, in gdb.texinfo, so
this is what I modified. However, it's also available at
http://sourceware.org/gdb/gdb-memory-map.dtd. This one should be
updated too, but I don't know how that should be done.
gdb/doc/ChangeLog:
* gdb.texinfo (Memory Map Format): Update gdb-memory-map.dtd.
This reverts commit 650444eb54.
With this patch, running the GDB test case gdb.base/auxv.exp is stuck in
an infinite loop, consuming memory to the point that it renders the
machine unusable. I am reverting it so we can take our time to
investigate while not killing all the developers' machines.
We also need to provide __start_scnfoo and __stop_scnfoo with the extra
leading underscore for underscore targets.
This patch fixed:
FAIL: ld-elf/pr21562k
FAIL: ld-elf/pr21562l
FAIL: ld-elf/pr21562m
FAIL: ld-elf/pr21562n
for metag-linux,
* testsuite/ld-elf/pr21562c.t: Also provide ___start_scnfoo and
___stop_scnfoo.
* testsuite/ld-elf/pr21562d.t: Likewise.
Building GDB with GCC 6.2.1 gives multiple errors like
gdb/dtrace-probe.c: In member function ‘void dtrace_probe::build_arg_exprs(gdbarch*)’:
gdb/dtrace-probe.c:627:8: error: types may not be defined in a for-range-declaration [-Werror]
for (struct dtrace_probe_arg &arg : m_args
Fix it by removing the 'struct' keyword.
A similar Bug was already fixed for GCC 6.3.1
https://sourceware.org/ml/gdb-patches/2017-10/msg00442.html
gdb/ChangeLog:
* dtrace-probe.c (dtrace_probe::build_arg_exprs)
(dtrace_probe::is_enabled, dtrace_probe::enable)
(dtrace_probe::disable): Remove keyword 'struct' at for-range
variable
* probe.c (gen_ui_out_table_header_info)
(print_ui_out_not_applicables): Remove keyword 'struct' at
for-range variable
This patch (finally!) makes it so that trying to use XNEW with a type
that requires "new" will cause a compilation error. The criterion I
initially used to allow a type to use XNEW (which calls malloc in the
end) was std::is_trivially_constructible, but then realized that gcc 4.8
did not have it. Instead, I went with:
using IsMallocatable = std::is_pod<T>;
which is just a bit more strict, which doesn't hurt. A similar thing is
done for macros that free instead of allocated, the criterion is:
using IsFreeable = gdb::Or<std::is_trivially_destructible<T>, std::is_void<T>>;
Trying to use XNEW on a type that requires new will result in an error
like this:
In file included from /home/simark/src/binutils-gdb/gdb/common/common-utils.h:26:0,
from /home/simark/src/binutils-gdb/gdb/common/common-defs.h:78,
from /home/simark/src/binutils-gdb/gdb/defs.h:28,
from /home/simark/src/binutils-gdb/gdb/lala.c:1:
/home/simark/src/binutils-gdb/gdb/common/poison.h: In instantiation of ‘T* xnew() [with T = bar]’:
/home/simark/src/binutils-gdb/gdb/lala.c:13:3: required from here
/home/simark/src/binutils-gdb/gdb/common/poison.h:103:3: error: static assertion failed: Trying to use XNEW with a non-POD data type. Use operator new instead.
static_assert (IsMallocatable<T>::value, "Trying to use XNEW with a non-POD\
^~~~~~~~~~~~~
Generated-code-wise, it adds one more function call (xnew<T>) when using
XNEW and building with -O0, but it all goes away with optimizations
enabled.
gdb/ChangeLog:
* common/common-utils.h: Include poison.h.
(xfree): Remove declaration, add definition with static_assert.
* common/common-utils.c (xfree): Remove.
* common/poison.h (IsMallocatable): Define.
(IsFreeable): Define.
(free): Delete for non-freeable types.
(xnew): New.
(XNEW): Undef and redefine.
(xcnew): New.
(XCNEW): Undef and redefine.
(xdelete): New.
(XDELETE): Undef and redefine.
(xnewvec): New.
(XNEWVEC): Undef and redefine.
(xcnewvec): New.
(XCNEWVEC): Undef and redefine.
(xresizevec): New.
(XRESIZEVEC): Undef and redefine.
(xdeletevec): New.
(XDELETEVEC): Undef and redefine.
(xnewvar): New.
(XNEWVAR): Undef and redefine.
(xcnewvar): New.
(XCNEWVAR): Undef and redefine.
(xresizevar): New.
(XRESIZEVAR): Undef and redefine.
There are multiple definitions of the private_thread_info structure
compiled in the same GDB build. Because of the one definition rule, we
need to change this if we want to be able to make them non-POD (e.g. use
std::vector fields). This patch creates a class hierarchy, with
private_thread_info being an abstract base class, and all the specific
implementations inheriting from it.
In order to poison XNEW/xfree for non-POD types, it is also needed to
get rid of the xfree in thread_info::~thread_info, which operates on an
opaque type. This is replaced by thread_info::priv now being a
unique_ptr, which calls the destructor of the private_thread_info
subclass when the thread is being destroyed.
Including gdbthread.h from darwin-nat.h gave these errors:
/Users/simark/src/binutils-gdb/gdb/gdbthread.h:609:3: error: must use 'class' tag to refer to type 'thread_info' in this scope
thread_info *m_thread;
^
class
/usr/include/mach/thread_act.h:240:15: note: class 'thread_info' is hidden by a non-type declaration of 'thread_info' here
kern_return_t thread_info
^
It turns out that there is a thread_info function in the Darwin/XNU/mach API:
http://web.mit.edu/darwin/src/modules/xnu/osfmk/man/thread_info.html
Therefore, I had to add the class keyword at a couple of places in gdbthread.h,
I don't really see a way around it.
gdb/ChangeLog:
* gdbthread.h (private_thread_info): Define structure type, add
virtual pure destructor.
(thread_info) <priv>: Change type to unique_ptr.
<private_dtor>: Remove.
* thread.c (add_thread_with_info): Adjust to use of unique_ptr.
(private_thread_info::~private_thread_info): Provide default
implementation.
(thread_info::~thread_info): Don't call private_dtor nor
manually free priv.
* aix-thread.c (private_thread_info): Rename to ...
(aix_thread_info): ... this.
(get_aix_thread_info): New.
(sync_threadlists): Adjust.
(iter_tid): Adjust.
(aix_thread_resume): Adjust.
(aix_thread_fetch_registers): Adjust.
(aix_thread_store_registers): Adjust.
(aix_thread_extra_thread_info): Adjust.
* darwin-nat.h (private_thread_info): Rename to ...
(darwin_thread_info): ... this.
(get_darwin_thread_info): New.
* darwin-nat.c (darwin_init_thread_list): Adjust.
(darwin_check_new_threads): Adjust.
(thread_info_from_private_thread_info): Adjust.
* linux-thread-db.c (private_thread_info): Rename to ...
(thread_db_thread_info): ... this, initialize fields.
(get_thread_db_thread_info): New.
<dying>: Change type to bool.
(update_thread_state): Adjust to type rename.
(record_thread): Adjust to type rename an use of unique_ptr.
(thread_db_pid_to_str): Likewise.
(thread_db_extra_thread_info): Likewise.
(thread_db_thread_handle_to_thread_info): Likewise.
(thread_db_get_thread_local_address): Likewise.
* nto-tdep.h (private_thread_info): Rename to ...
(nto_thread_info): ... this, initialize fields.
(get_nto_thread_info): New.
<name>: Change type to std::string.
* nto-tdep.c (nto_extra_thread_info): Adjust to type rename and
use of unique_ptr.
* nto-procfs.c (update_thread_private_data_name): Adjust to
std::string change, allocate nto_private_thread_info with new.
(update_thread_private_data): Adjust to unique_ptr.
* remote.c (private_thread_info): Rename to ...
(remote_thread_info): ... this, initialize data members with
default values.
<extra, name>: Change type to std::string.
<thread_handle>: Change type to non-pointer.
(free_private_thread_info): Remove.
(get_private_info_thread): Rename to...
(get_remote_thread_info): ... this, change return type, adjust to
use of unique_ptr, use remote_thread_info constructor.
(remote_add_thread): Adjust.
(get_private_info_ptid): Rename to...
(get_remote_thread_info): ...this, change return type.
(remote_thread_name): Use get_remote_thread_info, adjust to
change to std::string.
(struct thread_item) <~thread_item>: Remove.
<thread_handle>: Make non pointer.
(start_thread): Adjust to thread_item::thread_handle type
change.
(remote_update_thread_list): Adjust to type name change, move
strings from temporary to long-lived object instead of
duplicating.
(remote_threads_extra_info): Use get_remote_thread_info.
(process_initial_stop_replies): Likewise.
(resume_clear_thread_private_info): Likewise.
(remote_resume): Adjust to type name change.
(remote_commit_resume): Use get_remote_thread_info.
(process_stop_reply): Adjust to type name change.
(remote_stopped_by_sw_breakpoint): Use get_remote_thread_info.
(remote_stopped_by_hw_breakpoint): Likewise.
(remote_stopped_by_watchpoint): Likewise.
(remote_stopped_data_address): Likewise.
(remote_core_of_thread): Likewise.
(remote_thread_handle_to_thread_info): Use
get_private_info_thread, adjust to thread_handle field type
change.
This patch C++ifies the thread_item and threads_listing_context
structures in remote.c. thread_item::{extra,name} are changed to
std::string. As a result, there's a bit of awkwardness in
remote_update_thread_list, where we have to xstrdup those strings when
filling the private_thread_info structure. This is removed in the
following patch, where private_thread_info is also C++ified and its
corresponding fields made std::string too. The xstrdup then becomes an
std::move.
Other than that there's nothing really special, it's a usual day-to-day
VEC -> vector and char* -> std::string change. It allows removing a
cleanup in remote_update_thread_list.
Note that an overload of hex2bin that returns a gdb::byte_vector is
added, with corresponding selftests.
gdb/ChangeLog:
* remote.c (struct thread_item): Add constructor, disable copy
construction and copy assignment, define default move
construction and move assignment.
<extra, name>: Change type to std::string.
<core>: Initialize.
<thread_handle>: Make non-pointer.
(thread_item_t): Remove typedef.
(DEF_VEC_O(thread_item_t)): Remove.
(threads_listing_context) <contains_thread>: New method.
<remove_thread>: New method.
<items>: Change type to std::vector.
(clear_threads_listing_context): Remove.
(threads_listing_context_remove): Remove.
(remote_newthread_step): Use thread_item constructor, adjust to
change to std::vector.
(start_thread): Use thread_item constructor, adjust to change to
std::vector.
(end_thread): Adjust to change to std::vector and std::string.
(remote_get_threads_with_qthreadinfo): Use thread_item
constructor, adjust to std::vector.
(remote_update_thread_list): Adjust to change to std::vector and
std::string, use threads_listing_context methods.
(remove_child_of_pending_fork): Adjust.
(remove_new_fork_children): Adjust.
* Makefile.in (SUBDIR_UNITTESTS_SRCS): Add rsp-low-selftests.c.
(SUBDIR_UNITTESTS_OBS): Add rsp-low-selftests.o.
* unittests/rsp-low-selftests.c: New file.
* common/rsp-low.h: Include common/byte-vector.h.
(hex2bin): New overload.
* common/rsp-low.c (hex2bin): New overload.
There are currently multiple definitions of private_inferior, defined in
remote.c and darwin-nat.h. The patch that poisons XNEW and friends for
non-POD types trips on that, because private_inferior is freed in
~inferior(), where it is an opaque type. Since the compiler can't tell
whether the type is POD, it gives an error. Also, we can't start using
C++ features in these structures (make them non-POD) as long as there
are multiple definitions with the same name. For these reasons, this
patch makes a class hierarchy, with private_inferior being the abstract
base class, and darwin_inferior & remote_inferior inheriting from it.
Destruction is done through the virtual destructor.
I stumbled on some suspicious code in the darwin implementation though.
darwin_check_new_threads does an XCNEW(darwin_thread_t) when it finds a
new thread, allocating a new structure for it (darwin_thread_t is a
typedef for private_thread_info). It then VEC_safe_pushes it in a
vector defined as DEF_VEC_O (a vector of objects). This means that the
structure content gets copied in the vector. The thread_info object is
created with the XCNEW'ed structure as the private thread info, while
the rest of the code works with the instance in the vector. We have
therefore two distinct instances of darwin_thread_t/private_thread_info
for each thread. This is not really a problem in practice, because
thread_info::priv is not used in the darwin code. I still find it weird
and far from ideal, so I tried to fix it by changing the vector to be a
vector of pointers. There should now be a single instance of the
structure for each thread. The deallocation of the
darwin_thread_t/private_thread_info structure is done by the thread_info
destructor.
I am able to build on macOS, but not really test, since the port seems a
bit broken. I am not able to debug reliably on the machine I have
access to, which runs macOS 10.12.6.
gdb/ChangeLog:
* inferior.h (private_inferior): Define structure type, add
virtual pure destructor.
(inferior) <priv>: Change type to unique_ptr.
* inferior.c (private_inferior::~private_inferior): Provide
default implementation.
(inferior::~inferior): Don't free priv field.
(exit_inferior_1): Likewise.
* darwin-nat.h (struct darwin_exception_info): Initialize fields.
(darwin_exception_info): Remove typedef.
(DEF_VEC_O (darwin_thread_t)); Remove.
(private_inferior): Rename to ...
(darwin_private_inferior): ... this, extend private_inferior.
(get_darwin_inferior): New.
<threads>: Change type to std::vector of darwin_thread_t pointers.
* darwin-nat.c (darwin_check_new_threads): Adjust.
(find_inferior_task_it): Adjust.
(darwin_find_thread); Adjust.
(darwin_suspend_inferior): Adjust.
(darwin_resume_inferior): Adjust.
(darwin_find_new_inferior): Adjust.
(darwin_decode_notify_message): Adjust.
(darwin_send_reply): Adjust.
(darwin_resume_inferior_threads): Adjust.
(darwin_suspend_inferior_threads): Adjust.
(darwin_decode_message): Adjust.
(darwin_wait): Adjust.
(darwin_interrupt): Adjust.
(darwin_deallocate_threads): Adjust.
(darwin_mourn_inferior): Adjust, don't free private data.
(darwin_reply_to_all_pending_messages): Adjust.
(darwin_stop_inferior): Adjust.
(darwin_setup_exceptions): Adjust.
(darwin_kill_inferior): Adjust.
(darwin_setup_request_notification): Adjust.
(darwin_attach_pid): Adjust.
(darwin_init_thread_list): Adjust.
(darwin_setup_fake_stop_event): Adjust.
(darwin_attach): Adjust.
(darwin_detach): Adjust.
(darwin_xfer_partial): Adjust.
(set_enable_mach_exceptions): Adjust.
(darwin_pid_to_exec_file): Adjust.
(darwin_get_ada_task_ptid): Adjust.
* darwin-nat-info.c (get_task_from_args): Adjust.
(info_mach_ports_command): Adjust.
(info_mach_region_command): Adjust.
(info_mach_exceptions_command): Adjust.
* remote.c (private_inferior): Rename to ...
(remote_private_inferior): ... this, initialize fields.
(get_remote_inferior); New.
(remote_commit_resume): Use get_remote_inferior.
(check_pending_event_prevents_wildcard_vcont_callback): Likewise.
footnote_register_size in regcache::dump is a constant zero, so the
condition check against footnote_register_size is dead code. The code
writing to footnote_register_size was removed by 01e1877.
This patche removes footnote_register_size and the dead code.
gdb:
2017-11-24 Yao Qi <yao.qi@linaro.org>
* regcache.c (regcache::dump): Remove footnote_register_size.
According to gABI, in a note entry, the note name field, not note name
size, is padded for the note descriptor. And the note descriptor field,
not note descriptor size, is padded for the next note entry. Also notes
are aligned to 4 bytes in 32-bit objects and 8 bytes in 64-bit objects.
Since on Linux, .note.ABI-tag and .note.gnu.build-id notes are always
aligned to 4 bytes, we need to use alignment of note section or note
segment, instead of assuming alignment based on ELF file class.
Tested on i686 and x86-64.
bfd/
PR binutils/22444
* elf.c (elf_read_notes): Add an argument for note aligment.
(elf_parse_notes): Likewise.
(_bfd_elf_make_section_from_shdr): Pass section aligment to
elf_parse_notes.
(bfd_section_from_phdr): Pass segment aligment to elf_read_notes.
(elf_parse_notes): Add an argument for note aligment. Use
ELF_NOTE_DESC_OFFSET to get the offset of the note descriptor.
Use ELF_NOTE_NEXT_OFFSET to get the offset of the next note
entry.
(elf_read_notes): Add an argument for note aligment and pass it
to elf_parse_notes.
binutils/
PR binutils/22444
* readelf.c (process_notes_at): Use ELF_NOTE_DESC_OFFSET to get
the offset of the note descriptor. Use ELF_NOTE_NEXT_OFFSET to
get the offset of the next note entry.
include/
PR binutils/22444
* elf/external.h (ELF_ALIGN_UP): New.
(ELF_NOTE_DESC_OFFSET): Likewise.
(ELF_NOTE_NEXT_OFFSET): Likewise.
This patch adds a test to check cooked_read for readonly regcache. For
raw registers, cooked_read get either REG_VALID or REG_UNKNOWN, depends on
the raw register is in save_reggroup or not. For pseudo register,
cooked_read get different result in different ports.
gdb:
2017-11-24 Yao Qi <yao.qi@linaro.org>
* regcache.c (cooked_read_test): Add more test for readonly
regcache.
This patch adds a unit test to regcache::cooked_read. This unit test is a
little different from normal unit test, it is more about conformance test
or interaction test. This test pass both raw register number and pseudo
register number to regcache::cooked_read, in order to inspect 1) return
value of cooked_read, 2) how are target_ops to_xfer_partial,
to_{fetch,store}_registers called (because regcache is updated by means of
these three target_ops methods). With this test here, we have a clear
picture about how each port of GDB get cooked registers.
This patch also shares some code on mock target.
gdb:
2017-11-24 Yao Qi <yao.qi@linaro.org>
* gdbarch-selftests.c (test_target_has_registers): Move it to
target.c.
(test_target_has_stack): Likewise.
(test_target_has_memory): Likewise.
(test_target_prepare_to_store): Likewise.
(test_target_store_registers): Likewise.
(test_target_ops): Likewise.
* regcache.c: Include selftest-arch.h and gdbthread.h.
(target_ops_no_register): New class.
(test_target_fetch_registers): New.
(test_target_store_registers): New.
(test_target_xfer_partial): New.
(readwrite_regcache): New.
(cooked_read_test): New.
(_initialize_regcache): Register the test.
* target.c: (test_target_has_registers): Moved from
gdbarch-selftests.c.
(test_target_has_stack): Likewise.
(test_target_has_memory): Likewise.
(test_target_prepare_to_store): Likewise.
(test_target_store_registers): Likewise.
* target.h (test_target_ops): New class.