binutils-gdb/gdb/minidebug.c
Andrew Burgess 1d506c26d9 Update copyright year range in header of all files managed by GDB
This commit is the result of the following actions:

  - Running gdb/copyright.py to update all of the copyright headers to
    include 2024,

  - Manually updating a few files the copyright.py script told me to
    update, these files had copyright headers embedded within the
    file,

  - Regenerating gdbsupport/Makefile.in to refresh it's copyright
    date,

  - Using grep to find other files that still mentioned 2023.  If
    these files were updated last year from 2022 to 2023 then I've
    updated them this year to 2024.

I'm sure I've probably missed some dates.  Feel free to fix them up as
you spot them.
2024-01-12 15:49:57 +00:00

270 lines
7.5 KiB
C

/* Read MiniDebugInfo data from an objfile.
Copyright (C) 2012-2024 Free Software Foundation, Inc.
This file is part of GDB.
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>. */
#include "defs.h"
#include "gdb_bfd.h"
#include "symfile.h"
#include "objfiles.h"
#include "gdbcore.h"
#include <algorithm>
#ifdef HAVE_LIBLZMA
/* We stash a reference to the .gnu_debugdata BFD on the enclosing
BFD. */
static const registry<bfd>::key<gdb_bfd_ref_ptr> gnu_debug_key;
#include <lzma.h>
/* Allocator function for LZMA. */
static void *
alloc_lzma (void *opaque, size_t nmemb, size_t size)
{
return xmalloc (nmemb * size);
}
/* Free function for LZMA. */
static void
free_lzma (void *opaque, void *ptr)
{
xfree (ptr);
}
/* The allocator object for LZMA. Note that 'gdb_lzma_allocator'
cannot be const due to the lzma library function prototypes. */
static lzma_allocator gdb_lzma_allocator = { alloc_lzma, free_lzma, NULL };
/* Custom bfd_openr_iovec implementation to read compressed data from
a section. This keeps only the last decompressed block in memory
to allow larger data without using to much memory. */
struct gdb_lzma_stream : public gdb_bfd_iovec_base
{
/* Section of input BFD from which we are decoding data. */
asection *section = nullptr;
/* lzma library decompression state. */
lzma_index *index = nullptr;
/* Currently decoded block. */
bfd_size_type data_start = 0;
bfd_size_type data_end = 0;
gdb::byte_vector data;
~gdb_lzma_stream ()
{
lzma_index_end (index, &gdb_lzma_allocator);
}
file_ptr read (bfd *abfd, void *buffer, file_ptr nbytes,
file_ptr offset) override;
int stat (struct bfd *abfd, struct stat *sb) override;
};
/* bfd_openr_iovec implementation helper for
find_separate_debug_file_in_section. */
static gdb_lzma_stream *
lzma_open (struct bfd *nbfd, asection *section)
{
bfd_size_type size, offset;
lzma_stream_flags options;
gdb_byte footer[LZMA_STREAM_HEADER_SIZE];
lzma_index *index;
uint64_t memlimit = UINT64_MAX;
struct gdb_lzma_stream *lstream;
size_t pos;
size = bfd_section_size (section);
offset = section->filepos + size - LZMA_STREAM_HEADER_SIZE;
if (size < LZMA_STREAM_HEADER_SIZE
|| bfd_seek (section->owner, offset, SEEK_SET) != 0
|| bfd_read (footer, LZMA_STREAM_HEADER_SIZE, section->owner)
!= LZMA_STREAM_HEADER_SIZE
|| lzma_stream_footer_decode (&options, footer) != LZMA_OK
|| offset < options.backward_size)
{
bfd_set_error (bfd_error_wrong_format);
return NULL;
}
offset -= options.backward_size;
gdb::byte_vector indexdata (options.backward_size);
index = NULL;
pos = 0;
if (bfd_seek (section->owner, offset, SEEK_SET) != 0
|| bfd_read (indexdata.data (), options.backward_size, section->owner)
!= options.backward_size
|| lzma_index_buffer_decode (&index, &memlimit, &gdb_lzma_allocator,
indexdata.data (), &pos,
options.backward_size)
!= LZMA_OK
|| lzma_index_size (index) != options.backward_size)
{
bfd_set_error (bfd_error_wrong_format);
return NULL;
}
lstream = new struct gdb_lzma_stream;
lstream->section = section;
lstream->index = index;
return lstream;
}
/* bfd_openr_iovec read implementation for
find_separate_debug_file_in_section. */
file_ptr
gdb_lzma_stream::read (struct bfd *nbfd, void *buf, file_ptr nbytes,
file_ptr offset)
{
bfd_size_type chunk_size;
lzma_index_iter iter;
file_ptr block_offset;
lzma_filter filters[LZMA_FILTERS_MAX + 1];
lzma_block block;
size_t compressed_pos, uncompressed_pos;
file_ptr res;
res = 0;
while (nbytes > 0)
{
if (data.empty () || data_start > offset || offset >= data_end)
{
lzma_index_iter_init (&iter, index);
if (lzma_index_iter_locate (&iter, offset))
break;
gdb::byte_vector compressed (iter.block.total_size);
block_offset = section->filepos + iter.block.compressed_file_offset;
if (bfd_seek (section->owner, block_offset, SEEK_SET) != 0
|| bfd_read (compressed.data (), iter.block.total_size,
section->owner) != iter.block.total_size)
break;
gdb::byte_vector uncompressed (iter.block.uncompressed_size);
memset (&block, 0, sizeof (block));
block.filters = filters;
block.header_size = lzma_block_header_size_decode (compressed[0]);
if (lzma_block_header_decode (&block, &gdb_lzma_allocator,
compressed.data ())
!= LZMA_OK)
break;
compressed_pos = block.header_size;
uncompressed_pos = 0;
if (lzma_block_buffer_decode (&block, &gdb_lzma_allocator,
compressed.data (), &compressed_pos,
iter.block.total_size,
uncompressed.data (),
&uncompressed_pos,
iter.block.uncompressed_size)
!= LZMA_OK)
break;
data = std::move (uncompressed);
data_start = iter.block.uncompressed_file_offset;
data_end = (iter.block.uncompressed_file_offset
+ iter.block.uncompressed_size);
}
chunk_size = std::min (nbytes, (file_ptr) data_end - offset);
memcpy (buf, data.data () + offset - data_start, chunk_size);
buf = (gdb_byte *) buf + chunk_size;
offset += chunk_size;
nbytes -= chunk_size;
res += chunk_size;
}
return res;
}
/* bfd_openr_iovec stat implementation for
find_separate_debug_file_in_section. */
int
gdb_lzma_stream::stat (struct bfd *abfd, struct stat *sb)
{
memset (sb, 0, sizeof (struct stat));
sb->st_size = lzma_index_uncompressed_size (index);
return 0;
}
#endif /* HAVE_LIBLZMA */
/* This looks for a xz compressed separate debug info object file embedded
in a section called .gnu_debugdata. See
http://fedoraproject.org/wiki/Features/MiniDebugInfo
or the "Separate Debug Sections" of the manual for details.
If we find one we create a iovec based bfd that decompresses the
object data on demand. If we don't find one, return NULL. */
gdb_bfd_ref_ptr
find_separate_debug_file_in_section (struct objfile *objfile)
{
asection *section;
gdb_bfd_ref_ptr abfd;
if (objfile->obfd == NULL)
return NULL;
section = bfd_get_section_by_name (objfile->obfd.get (), ".gnu_debugdata");
if (section == NULL)
return NULL;
#ifdef HAVE_LIBLZMA
gdb_bfd_ref_ptr *shared = gnu_debug_key.get (objfile->obfd.get ());
if (shared != nullptr)
return *shared;
std::string filename = string_printf (_(".gnu_debugdata for %s"),
objfile_name (objfile));
auto open = [&] (bfd *nbfd) -> gdb_lzma_stream *
{
return lzma_open (nbfd, section);
};
abfd = gdb_bfd_openr_iovec (filename.c_str (), gnutarget, open);
if (abfd == NULL)
return NULL;
if (!bfd_check_format (abfd.get (), bfd_object))
{
warning (_("Cannot parse .gnu_debugdata section; not a BFD object"));
return NULL;
}
gnu_debug_key.emplace (objfile->obfd.get (), abfd);
#else
warning (_("Cannot parse .gnu_debugdata section; LZMA support was "
"disabled at compile time"));
#endif /* !HAVE_LIBLZMA */
return abfd;
}