This is unused since 54eb231c4b, where
static arrays of ui_out_levels were replaced with vectors.
gdb/ChangeLog:
* ui-out.c (MAX_UI_OUT_LEVELS): Remove.
elf_x86_64_convert_load is very time consuming since it is called on
each input section and has a loop over input text sections to estimate
the branch distrance. We can store the estimated distrances in the
compressed_size field of the output section, which is only used to
decompress the compressed input section.
Before the patch, linking clang 3.9 takes 52 seconds. After the patch,
it only takes 2.5 seconds.
PR ld/19542
* elf64-x86-64.c (elf_x86_64_convert_load): Store the estimated
distrances in the compressed_size field of the output section.
This tightens the condition under which ld optimizes PIC entry code
to non-PIC.
bfd/
* elf64-ppc.c (ppc64_elf_relocate_section): Further restrict
ELFv2 entry optimization.
gold/
* powerpc.cc (relocate): Further restrict ELFv2 entry optimization.
The HAS_RELOC bit should be cleared when relocations are removed from
relocatable files.
bfd/
PR binutils/19547
* elf.c (assign_section_numbers): Clear HAS_RELOC if there are
no relocations in relocatable files.
binutils/
PR binutils/19547
* testsuite/binutils-all/objcopy.exp
(objcopy_test_without_global_symbol): New proc.
Run objcopy_test_without_global_symbol.
* testsuite/binutils-all/pr19547.c: New file.
The calculation of the shift amount, used to insert fields into the
instruction buffer, is not correct when the following conditions are all
true:
- CGEN_INT_INSN_P is defined, and true.
- CGEN_INSN_LSB0_P is true
- Total instruction length is greater than the length of a single
instruction word (the instruction is made of multiple words)
- The word offset is non-zero (the field is outside the first word)
When the above conditions are all true, the calculated shift fails to
take account of the total instruction length.
After this commit the calculation of the shift amount is split into two
parts, first we calculate the shift required to get to BIT0 of the word
in which the field lives, then we calculate the shift required to place
the field within the instruction word.
The change in this commit only effects the CGEN_INT_INSN_P defined true
case, but changes the code for both CGEN_INSN_LSB0_P true, and false.
In the case of CGEN_INSN_LSB0_P being false, the code used to say:
shift = total_length - (word_offset + start + length);
Now it says:
shift_to_word = total_length - (word_offset + word_length);
shift_within_word = word_length - start - length;
shift = shift_to_word + shift_within_word;
From which we can see that in all cases the computed shift value should
be unchanged.
In the case of CGEN_INSN_LSB0_P being true, the code used to say:
shift = (word_offset + start + 1) - length;
Now it says:
shift_to_word = total_length - (word_offset + word_length);
shift_within_word = start + 1 - length;
shift = shift_to_word + shift_within_word;
In the case where 'total_length == word_length' AND 'word_offset ==
0' (which indicates an instruction of a single word), we see that the
computed shift value will be unchanged. However, when the total_length
and word_length are different, and the word_offset is non-zero then the
computed shift value will be different (and correct).
opcodes/ChangeLog:
* cgen-ibld.in (insert_normal): Rework calculation of shift.
* epiphany-ibld.c: Regenerate.
* fr30-ibld.c: Regenerate.
* frv-ibld.c: Regenerate.
* ip2k-ibld.c: Regenerate.
* iq2000-ibld.c: Regenerate.
* lm32-ibld.c: Regenerate.
* m32c-ibld.c: Regenerate.
* m32r-ibld.c: Regenerate.
* mep-ibld.c: Regenerate.
* mt-ibld.c: Regenerate.
* or1k-ibld.c: Regenerate.
* xc16x-ibld.c: Regenerate.
* xstormy16-ibld.c: Regenerate.
Basic all instructions assembler test, auto-generated by CGEN, then
fixed by hand for some cases where CGEN had generated invalid
instruction operands.
gas/ChangeLog:
* testsuite/gas/ip2k/allinsn.d: New file.
* testsuite/gas/ip2k/allinsn.s: New file.
* testsuite/gas/ip2k/ip2k-allinsn.exp: New file.
In commit 02a79b89fd some of the load
instructions with a zero offset (where the offset is not mentioned) were
marked as NO-DIS, meaning that the disassembler must display the offset,
even though it is zero.
This change seems a little strange to me as it was only applied to some
loads, not all, and the same change was not applied to the stores.
However, I'm reluctant to revert a specific change to the assembler,
when the output is obviously correct. With this commit then I simply
bring the expected assembler test results into line with what is
actually produced.
gas/ChangeLog:
* testsuite/gas/epiphany/addr-syntax.d: Add explicit 0 offset to
some load instructions.
* testsuite/gas/epiphany/allinsn.d: Likewise.
* testsuite/gas/epiphany/regression.d: Likewise.
In commit 02a79b89fd all instruction
aliases that have a '.l' suffix were marked as NO-DIS, so the
disassembler will not display them, in preference to the instruction
without the suffix. However, the gas testsuite was not updated at the
time, this commit fixes that oversight.
gas/ChangeLog:
* testsuite/gas/epiphany/addr-syntax.d: Remove unneeded '.l'
suffixes from instruction mnemonics in expected output.
* testsuite/gas/epiphany/allinsn.d: Likewise.
* testsuite/gas/epiphany/regression.d: Likewise.
* testsuite/gas/epiphany/sample.d: Likewise.
In commit 02a79b89fd the register aliases
sb, sl, and ip were made less preferred than r9, r10, and r12, however,
the expected test results were not updated. This commit fixes this
oversight and updates the test results.
gas/ChangeLog:
* testsuite/gas/epiphany/addr-syntax.d: Update expected register
names.
* testsuite/gas/epiphany/allinsn.d: Likewise.
* testsuite/gas/epiphany/sample.d: Likewise.
Always set the bytes_per_line field (of struct disassemble_info) to the
same constant value, this is inline with the advice contained within
include/dis-asm.h.
Setting this field to a constant value will cause the disassembler
output to be better aligned.
cpu/ChangeLog:
* epiphany.opc (epiphany_print_insn): Set info->bytes_per_line to
a constant to better align disassembler output.
opcodes/ChangeLog:
* epiphany-dis.c: Regenerated from latest cpu files.
gas/ChangeLog:
* testsuite/gas/epiphany/sample.d: Update expected output.
New bnds fields will be always present for x86 architecture.
Fixup for compatibility layer 32bits has to be fixed.
It was added the nat_siginfo to serving as intermediate step
between kernel provided siginfo and the fix up routine.
When executing compat_siginfo_from_siginfo or
compat_x32_siginfo_from_siginfo first the buffer read from the kernel are
converted into the nat_signfo for homogenization, then the fields of
nat_siginfo are use to set the compat and compat_x32 siginfo fields.
In other to make this conversion independent of the system where gdb
is compiled the most complete version of the siginfo, named as native
siginfo, is used internally as an intermediate step.
Conversion using nat_siginfo is exemplified below:
compat_siginfo_from_siginfo or compat_x32_siginfo_from_siginfo:
buffer (from the kernel) -> nat_siginfo -> 32 / X32 siginfo
(memcpy) (field by field)
siginfo_from_compat_x32_siginfo or siginfo_from_compat_siginfo:
32 / X32 siginfo -> nat_siginfo -> buffer (to the kernel)
(field by field) (memcpy)
Caveat: No support for MPX on x32.
2016-02-02 Walfred Tedeschi <walfred.tedeschi@intel.com>
gdb/ChangeLog:
* amd64-linux-siginfo.c (nat_siginfo_t, nat_sigval_t, nat_timeval):
New types.
(compat_siginfo): New bound fields added.
(compat_x32_siginfo): New field added.
(cpt_si_addr_lsb): New define.
(compat_siginfo_from_siginfo): Use nat_siginfo.
(siginfo_from_compat_siginfo): Use nat_siginfo.
(compat_x32_siginfo_from_siginfo): Likewise.
(siginfo_from_compat_x32_siginfo): Likewise.
Both Linux and glibc have introduced bound related fields in the
segmentation fault fields of the siginfo_t type. Add the new fields
to our x86's siginfo_t type too.
Kernel patch:
http://git.kernel.org/cgit/linux/kernel/git/tip/tip.git/commit/?id=ee1b58d36aa1b5a79eaba11f5c3633c88231da83
Glibc patch:
d4358b51c2
2016-02-02 Walfred Tedeschi <walfred.tedeschi@intel.com>
gdb/ChangeLog:
* linux-tdep.c (linux_get_siginfo_type): Add the _addr_bnd
structure to the siginfo if extra_fields contains
LINUX_SIGINFO_FIELD_ADDR_BND.
Use linux_get_siginfo_type_with_fields for adding bound fields on
segmentation fault for i386/amd64 siginfo.
2016-02-02 Walfred Tedeschi <walfred.tedeschi@intel.com>
gdb/ChangeLog:
* linux-tdep.h (linux_get_siginfo_type_with_fields): Make extern.
* linux-tdep.c (linux_get_siginfo_type_with_fields): Make extern.
* i386-linux-tdep.h (x86_linux_get_siginfo_type): New
function.
* amd64-linux-tdep.c (amd64_linux_init_abi_common): Add
x86_linux_get_siginfo_type for the amd64 abi.
* i386-linux-tdep.c (x86_linux_get_siginfo_type): New
function.
(i386_linux_init_abi): Add new function at the i386 ABI
initialization.
First add new structure and function to allow architecture customization
for the siginfo structure.
2016-01-15 Walfred Tedeschi <walfred.tedeschi@intel.com>
gdb/ChangeLog:
* linux-tdep.h (linux_siginfo_extra_field_values): New enum values.
(linux_siginfo_extra_fields): New enum type.
* linux-tdep.c (linux_get_siginfo_type_with_fields): New function.
(linux_get_siginfo_type): Use new function.
Don't add DT_NEEDED if a symbol from a library loaded via DT_NEEDED
doesn't match the symbol referenced by regular object.
bfd/
PR ld/19553
* elflink.c (elf_link_add_object_symbols): Don't add DT_NEEDED
if a symbol from a library loaded via DT_NEEDED doesn't match
the symbol referenced by regular object.
ld/testsuite/
PR ld/19553
* testsuite/ld-elf/indirect.exp: Run tests for PR ld/19553.
* testsuite/ld-elf/pr19553.map: New file.
* testsuite/ld-elf/pr19553.map: Likewise.
* testsuite/ld-elf/pr19553a.c: Likewise.
* testsuite/ld-elf/pr19553b.c: Likewise.
* testsuite/ld-elf/pr19553b.out: Likewise.
* testsuite/ld-elf/pr19553c.c: Likewise.
* testsuite/ld-elf/pr19553c.out: Likewise.
* testsuite/ld-elf/pr19553d.c: Likewise.
* testsuite/ld-elf/pr19553d.out: Likewise.
This exposes the internal error Don mentioned in PR19496:
(1) internal error -- gdb/target.c:2713: internal-error: Can't determine the current address space of thread
More analysis here:
https://sourceware.org/ml/gdb-patches/2016-01/msg00685.html
The (now kfailed) internal error looks like:
continue &
Continuing.
(gdb) PASS: gdb.threads/forking-threads-plus-breakpoint.exp: cond_bp_target=1: detach_on_fork=on: displaced=off: continue &
[New Thread 2846.2847]
(...)
[New Thread 2867.2867]
/home/pedro/gdb/mygit/src/gdb/target.c:2723: internal-error: Can't determine the current address space of thread Thread 2846.2846
A problem internal to GDB has been detected,
further debugging may prove unreliable.
Quit this debugging session? (y or n) KFAIL: gdb.threads/forking-threads-plus-breakpoint.exp: cond_bp_target=1: detach_on_fork=on: displaced=off: inferior 1 exited (GDB internal error) (PRMS: remote/19496)
Resyncing due to internal error.
gdb/testsuite/ChangeLog:
2016-02-01 Pedro Alves <palves@redhat.com>
PR remote/19496
* gdb.threads/forking-threads-plus-breakpoint.exp
(displaced_stepping_supported): New global.
(probe_displaced_stepping_support): New procedure.
(do_test): Add 'displaced' parameter, and use it.
(top level): Check for displaced stepping support. Add displaced
stepping on/off testing axis.
The test gdb.mi/mi-vla-fortran.exp reveals an issue with the DWARF
generated by gfortran.
In the test a pointer variable 'pvla2' is created:
real, pointer :: pvla2 (:, :)
Initially this variable will be unassociated, so something like this:
l = associated(pvla2)
should return false.
In the test gdb stops at a point _before_ pvla2 is associated with
anything, and we then try to print pvla2, the expectation is that gdb
should reply <not associated>.
The problem is that the data the DWARF directs gdb to read (to identify
if the variable is associated or not) is not initialised until the first
time pvla2 is accessed.
As a result gdb ends up reading uninitialised memory, sometimes this
uninitialised memory indicates the variable is associated (when it's
not). This first mistake can lead to a cascade of errors, reading
uninitialised memory, with the result that gdb builds an invalid type to
associate with the variable pvla2.
In some cases, this invalid type can be very large, which when we try to
print pvla2 causes gdb to allocate a large amount of memory.
A recent commit added a new gdb variable 'max-value-size', which
prevents gdb from allocating values of extreme size. As a result
directly trying to print pvla2 will now now error rather than allocate a
large amount of memory.
However, some of the later tests create a varobj for pvla2, and then
ask for the children of that varobj to be displayed. In the case where
an invalid type has been computed for pvla2 then the number of children
can be wrong, and very big, in which case trying to display all of these
children can cause gdb to consume an excessive amount of memory.
This commit first detects if printing pvla2 triggers the max-value-size
error, if it does then we avoid all the follow on tests relating to the
unassociated pvla2, which avoids the second error printing the varobj
children.
gdb/testsuite/ChangeLog:
* gdb.mi/mi-vla-fortran.exp: Add XFAIL for accessing unassociated
pointer. Don't perform further tests on the unassociated pointer
if the first test fails.
For languages with dynamic types, an incorrect program, or uninitialised
variables within a program, could result in an incorrect, overly large
type being associated with a value. Currently, attempting to print such
a variable will result in gdb trying to allocate an overly large buffer.
If this large memory allocation fails then the result can be gdb either
terminating, or (due to memory contention) becoming unresponsive for the
user.
A new user visible variable in gdb helps guard against such problems,
two new commands are available:
set max-value-size
show max-value-size
The 'max-value-size' is the maximum size of memory in bytes that gdb
will allocate for the contents of a value. Any attempt to allocate a
value with a size greater than this will result in an error. The
initial default for this limit is set at 64k, this is based on a similar
limit that exists within the ada specific code.
It is possible for the user to set max-value-size to unlimited, in which
case the old behaviour is restored.
gdb/ChangeLog:
* value.c (max_value_size): New variable.
(MIN_VALUE_FOR_MAX_VALUE_SIZE): New define.
(show_max_value_size): New function.
(check_type_length_before_alloc): New function.
(allocate_value_contents): Call check_type_length_before_alloc.
(set_value_enclosing_type): Likewise.
(_initialize_values): Add set/show handler for max-value-size.
* NEWS: Mention new set/show command.
gdb/doc/ChangeLog:
* gdb.texinfo (Value Sizes): New section.
(Data): Add the 'Value Sizes' node to the menu.
gdb/testsuite/ChangeLog:
* gdb.base/max-value-size.c: New file.
* gdb.base/max-value-size.exp: New file.
* gdb.base/huge.exp: Disable max-value-size for this test.
Changing "pushq $1" in the following to "pushq $too_big" results in an
abort. BFD shouldn't abort on (deliberately) bad user input.
400480: ff 25 9a 0b 20 00 jmpq *0x200b9a(%rip)
400486: 68 01 00 00 00 pushq $0x1
40048b: e9 d0 ff ff ff jmpq 400460 <_init+0x20>
* elf64-x86-64.c (elf_x86_64_get_plt_sym_val): Don't abort on
an out of range reloc_index.
* elf32-i386.c (elf_i386_get_plt_sym_val): Likewise.
A few typos. The comment about varobj_create has been misplaced since
the dawn of time.
gdb/ChangeLog:
* varobj.h (struct varobj): Fix typos in comments.
(struct lang_varobj_ops): Likewise.
* varobj.c (VAROBJ_TABLE_SIZE): Likewise.
(varobj_create): Move misplaced comment.
../../bfd/elf64-s390.c: In function 'elf_s390_reloc_name_lookup':
../../bfd/elf64-s390.c:340:5: error: statement is indented as if it were guarded by... [-Werror=misleading-indentation]
if (strcasecmp (elf64_s390_vtinherit_howto.name, r_name) == 0)
^~
../../bfd/elf64-s390.c:333:3: note: ...this 'for' clause, but it is not
for (i = 0;
^~~
bfd/
* elf64-s390.c (elf_s390_reloc_name_lookup): Fix indentation.
There is no need to check relocation IFUNC symbol if there are no
dynamic symbols.
bfd/
PR ld/19539
* elf32-i386.c (elf_i386_reloc_type_class): Check relocation
against STT_GNU_IFUNC symbol only with dynamic symbols.
* elf64-x86-64.c (elf_x86_64_reloc_type_class): Likewise.
ld/
PR ld/19539
* testsuite/ld-elf/pr19539.d: New file.
* testsuite/ld-elf/pr19539.s: Likewise.
* testsuite/ld-elf/pr19539.t: Likewise.
Two small changes so everything builds with latest GCC and its
-Wmisleading-indentation.
In the aarch64-tdep.c case, the two misindented lines should actually be
part of the for loop. It looks like the indentation is all done using
spaces in that file though... I fixed it (changed for tabs + spaces) for
the lines I touched.
In the xcoffread.c case, we can simply remove the braces and fix the
indentation.
gdb/ChangeLog:
* aarch64-tdep.c (aarch64_record_asimd_load_store): Add braces
to for include additional lines.
* xcoffread.c (scan_xcoff_symtab): Remove unnecessary braces.
We should set BFD_DECOMPRESS to decompress debug sections when reading in
DWARF debug sections.
bfd/
PR binutils/19523
* dwarf2.c (_bfd_dwarf2_slurp_debug_info): Set BFD_DECOMPRESS to
decompress debug sections.
binutils/
PR binutils/19523
* Makefile.am (check-DEJAGNU): Pass CC and CC_FOR_BUILD to
runtest.
* Makefile.in: Regenerated.
* testsuite/binutils-all/compress.exp (test_gnu_debuglink): New
proc.
Run test_gnu_debuglink for native ELF build.