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Prevent memory access violations when attempting to parse an x86_64 PE binary containing corrupt unwind information.
PR 22113 incldue * coff/pe.h (struct pex64_unwind_info): Add a rawUnwindCodesEnd field. bfd * pei-x86_64.c (pex64_get_unwind_info): Change to a boolean function. Add an end address parameter. Check access of the data pointer to make sure that they do not extend beyond the end address. Return FALSE if any check fails. Add the end address pointer to the ui structure. (pex64_xdata_print_uwd_codes): Check accesses of the raw unwind codes to make sure that they do not extend beyond the end address pointer. Print an error message and return immediately if any check fails.
This commit is contained in:
@@ -1,3 +1,16 @@
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2018-03-13 Nick Clifton <nickc@redhat.com>
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PR 22113
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* pei-x86_64.c (pex64_get_unwind_info): Change to a boolean
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function. Add an end address parameter. Check access of the data
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pointer to make sure that they do not extend beyond the end
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address. Return FALSE if any check fails. Add the end address
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pointer to the ui structure.
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(pex64_xdata_print_uwd_codes): Check accesses of the raw unwind
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codes to make sure that they do not extend beyond the end address
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pointer. Print an error message and return immediately if any
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check fails.
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2018-03-09 Nick Clifton <nickc@redhat.com>
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* elf64-s390.c (elf_s390_relocate_section): Move check for
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@@ -98,14 +98,20 @@ pex64_get_runtime_function (bfd *abfd, struct pex64_runtime_function *rf,
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/* Swap in unwind info header. */
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static void
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pex64_get_unwind_info (bfd *abfd, struct pex64_unwind_info *ui, void *data)
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static bfd_boolean
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pex64_get_unwind_info (bfd *abfd, struct pex64_unwind_info *ui,
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void *data, void *data_end)
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{
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struct external_pex64_unwind_info *ex_ui =
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(struct external_pex64_unwind_info *) data;
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bfd_byte *ex_dta = (bfd_byte *) data;
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bfd_byte *ex_dta_end = (bfd_byte *) data_end;
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memset (ui, 0, sizeof (struct pex64_unwind_info));
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if (ex_dta >= ex_dta_end || ex_dta + 4 >= ex_dta_end)
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return FALSE;
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ui->Version = PEX64_UWI_VERSION (ex_ui->Version_Flags);
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ui->Flags = PEX64_UWI_FLAGS (ex_ui->Version_Flags);
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ui->SizeOfPrologue = (bfd_vma) ex_ui->SizeOfPrologue;
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@@ -114,25 +120,33 @@ pex64_get_unwind_info (bfd *abfd, struct pex64_unwind_info *ui, void *data)
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ui->FrameOffset = PEX64_UWI_FRAMEOFF (ex_ui->FrameRegisterOffset);
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ui->sizeofUnwindCodes = PEX64_UWI_SIZEOF_UWCODE_ARRAY (ui->CountOfCodes);
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ui->SizeOfBlock = ui->sizeofUnwindCodes + 4;
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ui->rawUnwindCodes = &ex_dta[4];
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ui->rawUnwindCodes = ex_dta + 4;
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ui->rawUnwindCodesEnd = ex_dta_end;
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ex_dta += ui->SizeOfBlock;
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if (ex_dta >= ex_dta_end)
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return FALSE;
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switch (ui->Flags)
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{
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case UNW_FLAG_CHAININFO:
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if (ex_dta + 12 >= ex_dta_end)
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return FALSE;
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ui->rva_BeginAddress = bfd_get_32 (abfd, ex_dta + 0);
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ui->rva_EndAddress = bfd_get_32 (abfd, ex_dta + 4);
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ui->rva_UnwindData = bfd_get_32 (abfd, ex_dta + 8);
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ui->SizeOfBlock += 12;
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return;
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return TRUE;
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case UNW_FLAG_EHANDLER:
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case UNW_FLAG_UHANDLER:
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case UNW_FLAG_FHANDLER:
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if (ex_dta + 4 >= ex_dta_end)
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return FALSE;
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ui->rva_ExceptionHandler = bfd_get_32 (abfd, ex_dta);
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ui->SizeOfBlock += 4;
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return;
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return TRUE;
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default:
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return;
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return TRUE;
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}
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}
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@@ -158,6 +172,12 @@ pex64_xdata_print_uwd_codes (FILE *file, bfd *abfd,
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i = 0;
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if (ui->rawUnwindCodes + 1 >= ui->rawUnwindCodesEnd)
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{
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fprintf (file, _("warning: corrupt unwind data\n"));
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return;
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}
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if (ui->Version == 2
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&& PEX64_UNWCODE_CODE (ui->rawUnwindCodes[1]) == UWOP_EPILOG)
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{
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@@ -166,10 +186,18 @@ pex64_xdata_print_uwd_codes (FILE *file, bfd *abfd,
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to decode instruction flow if outside an epilog. */
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unsigned int func_size = rf->rva_EndAddress - rf->rva_BeginAddress;
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if (ui->rawUnwindCodes + 1 + (ui->CountOfCodes * 2) >= ui->rawUnwindCodesEnd)
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{
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fprintf (file, _("warning: corrupt unwind data\n"));
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return;
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}
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fprintf (file, "\tv2 epilog (length: %02x) at pc+:",
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ui->rawUnwindCodes[0]);
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if (PEX64_UNWCODE_INFO (ui->rawUnwindCodes[1]))
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fprintf (file, " 0x%x", func_size - ui->rawUnwindCodes[0]);
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i++;
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for (; i < ui->CountOfCodes; i++)
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{
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@@ -187,6 +215,12 @@ pex64_xdata_print_uwd_codes (FILE *file, bfd *abfd,
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fputc ('\n', file);
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}
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if (ui->rawUnwindCodes + 2 + (ui->CountOfCodes * 2) >= ui->rawUnwindCodesEnd)
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{
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fprintf (file, _("warning: corrupt unwind data\n"));
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return;
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}
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for (; i < ui->CountOfCodes; i++)
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{
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const bfd_byte *dta = ui->rawUnwindCodes + 2 * i;
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@@ -338,14 +372,18 @@ pex64_dump_xdata (FILE *file, bfd *abfd,
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/* PR 17512: file: 2245-7442-0.004. */
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if (end_addr > sec_size)
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{
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fprintf (file, _("warning: xdata section corrupt"));
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fprintf (file, _("warning: xdata section corrupt\n"));
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end_addr = sec_size;
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}
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}
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else
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end_addr = sec_size;
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pex64_get_unwind_info (abfd, &ui, &xdata[addr]);
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if (! pex64_get_unwind_info (abfd, &ui, xdata + addr, xdata + end_addr))
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{
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fprintf (file, _("warning: xdata section corrupt\n"));
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return;
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}
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if (ui.Version != 1 && ui.Version != 2)
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{
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@@ -1,3 +1,9 @@
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2018-03-13 Nick Clifton <nickc@redhat.com>
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PR 22113
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* coff/pe.h (struct pex64_unwind_info): Add a rawUnwindCodesEnd
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field.
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2018-03-08 H.J. Lu <hongjiu.lu@intel.com>
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* opcode/i386 (OLDGCC_COMPAT): Removed.
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@@ -497,6 +497,7 @@ struct pex64_unwind_info
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bfd_vma FrameOffset;
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bfd_vma sizeofUnwindCodes;
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bfd_byte *rawUnwindCodes;
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bfd_byte *rawUnwindCodesEnd;
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bfd_vma rva_ExceptionHandler; /* UNW_EHANDLER or UNW_FLAG_UHANDLER. */
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bfd_vma rva_BeginAddress; /* UNW_FLAG_CHAININFO. */
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bfd_vma rva_EndAddress; /* UNW_FLAG_CHAININFO. */
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