lto-wrapper.c 48.9 KB
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/* Wrapper to call lto.  Used by collect2 and the linker plugin.
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   Copyright (C) 2009-2019 Free Software Foundation, Inc.
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   Factored out of collect2 by Rafael Espindola <espindola@google.com>

This file is part of GCC.

GCC 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, or (at your option) any later
version.

GCC 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 GCC; see the file COPYING3.  If not see
<http://www.gnu.org/licenses/>.  */


/* This program is passed a gcc, a list of gcc arguments and a list of
   object files containing IL. It scans the argument list to check if
   we are in whopr mode or not modifies the arguments and needed and
   prints a list of output files on stdout.

   Example:

   $ lto-wrapper gcc/xgcc -B gcc a.o b.o -o test -flto

   The above will print something like
   /tmp/ccwbQ8B2.lto.o

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   If WHOPR is used instead, more than one file might be produced
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   ./ccXj2DTk.lto.ltrans.o
   ./ccCJuXGv.lto.ltrans.o
*/

#include "config.h"
#include "system.h"
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#include "coretypes.h"
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#include "intl.h"
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#include "diagnostic.h"
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#include "obstack.h"
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#include "opts.h"
#include "options.h"
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#include "simple-object.h"
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#include "lto-section-names.h"
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#include "collect-utils.h"
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/* Environment variable, used for passing the names of offload targets from GCC
   driver to lto-wrapper.  */
#define OFFLOAD_TARGET_NAMES_ENV	"OFFLOAD_TARGET_NAMES"

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enum lto_mode_d {
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  LTO_MODE_NONE,			/* Not doing LTO.  */
  LTO_MODE_LTO,				/* Normal LTO.  */
  LTO_MODE_WHOPR			/* WHOPR.  */
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};

/* Current LTO mode.  */
static enum lto_mode_d lto_mode = LTO_MODE_NONE;

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static char *ltrans_output_file;
static char *flto_out;
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static unsigned int nr;
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static int *ltrans_priorities;
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static char **input_names;
static char **output_names;
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static char **offload_names;
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static char *offload_objects_file_name;
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static char *makefile;
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static unsigned int num_deb_objs;
static const char **early_debug_object_names;
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const char tool_name[] = "lto-wrapper";
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/* Delete tempfiles.  Called from utils_cleanup.  */
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void
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tool_cleanup (bool)
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{
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  unsigned int i;

  if (ltrans_output_file)
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    maybe_unlink (ltrans_output_file);
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  if (flto_out)
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    maybe_unlink (flto_out);
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  if (offload_objects_file_name)
    maybe_unlink (offload_objects_file_name);
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  if (makefile)
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    maybe_unlink (makefile);
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  if (early_debug_object_names)
    for (i = 0; i < num_deb_objs; ++i)
      if (early_debug_object_names[i])
	maybe_unlink (early_debug_object_names[i]);
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  for (i = 0; i < nr; ++i)
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    {
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      maybe_unlink (input_names[i]);
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      if (output_names[i])
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	maybe_unlink (output_names[i]);
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    }
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}

static void
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lto_wrapper_cleanup (void)
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{
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  utils_cleanup (false);
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}

/* Unlink a temporary LTRANS file unless requested otherwise.  */

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void
maybe_unlink (const char *file)
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{
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  if (!save_temps)
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    {
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      if (unlink_if_ordinary (file)
	  && errno != ENOENT)
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	fatal_error (input_location, "deleting LTRANS file %s: %m", file);
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    }
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  else if (verbose)
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    fprintf (stderr, "[Leaving LTRANS %s]\n", file);
}

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/* Template of LTRANS dumpbase suffix.  */
#define DUMPBASE_SUFFIX ".ltrans18446744073709551615"
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/* Create decoded options from the COLLECT_GCC and COLLECT_GCC_OPTIONS
   environment according to LANG_MASK.  */

static void
get_options_from_collect_gcc_options (const char *collect_gcc,
				      const char *collect_gcc_options,
				      unsigned int lang_mask,
				      struct cl_decoded_option **decoded_options,
				      unsigned int *decoded_options_count)
{
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  struct obstack argv_obstack;
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  char *argv_storage;
  const char **argv;
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  int j, k, argc;

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  argv_storage = xstrdup (collect_gcc_options);
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  obstack_init (&argv_obstack);
  obstack_ptr_grow (&argv_obstack, collect_gcc);

  for (j = 0, k = 0; argv_storage[j] != '\0'; ++j)
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    {
      if (argv_storage[j] == '\'')
	{
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	  obstack_ptr_grow (&argv_obstack, &argv_storage[k]);
	  ++j;
	  do
	    {
	      if (argv_storage[j] == '\0')
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		fatal_error (input_location,
			     "malformed %<COLLECT_GCC_OPTIONS%>");
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	      else if (strncmp (&argv_storage[j], "'\\''", 4) == 0)
		{
		  argv_storage[k++] = '\'';
		  j += 4;
		}
	      else if (argv_storage[j] == '\'')
		break;
	      else
		argv_storage[k++] = argv_storage[j++];
	    }
	  while (1);
	  argv_storage[k++] = '\0';
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	}
    }
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  obstack_ptr_grow (&argv_obstack, NULL);
  argc = obstack_object_size (&argv_obstack) / sizeof (void *) - 1;
  argv = XOBFINISH (&argv_obstack, const char **);
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  decode_cmdline_options_to_array (argc, (const char **)argv,
				   lang_mask,
				   decoded_options, decoded_options_count);
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  obstack_free (&argv_obstack, NULL);
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}

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/* Append OPTION to the options array DECODED_OPTIONS with size
   DECODED_OPTIONS_COUNT.  */

static void
append_option (struct cl_decoded_option **decoded_options,
	       unsigned int *decoded_options_count,
	       struct cl_decoded_option *option)
{
  ++*decoded_options_count;
  *decoded_options
    = (struct cl_decoded_option *)
	xrealloc (*decoded_options,
		  (*decoded_options_count
		   * sizeof (struct cl_decoded_option)));
  memcpy (&(*decoded_options)[*decoded_options_count - 1], option,
	  sizeof (struct cl_decoded_option));
}

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/* Remove option number INDEX from DECODED_OPTIONS, update
   DECODED_OPTIONS_COUNT.  */

static void
remove_option (struct cl_decoded_option **decoded_options,
	       int index, unsigned int *decoded_options_count)
{
  --*decoded_options_count;
  memmove (&(*decoded_options)[index + 1],
	   &(*decoded_options)[index],
	   sizeof (struct cl_decoded_option)
	   * (*decoded_options_count - index));
}

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/* Try to merge and complain about options FDECODED_OPTIONS when applied
   ontop of DECODED_OPTIONS.  */

static void
merge_and_complain (struct cl_decoded_option **decoded_options,
		    unsigned int *decoded_options_count,
		    struct cl_decoded_option *fdecoded_options,
		    unsigned int fdecoded_options_count)
{
  unsigned int i, j;
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  struct cl_decoded_option *pic_option = NULL;
  struct cl_decoded_option *pie_option = NULL;
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  /* ???  Merge options from files.  Most cases can be
     handled by either unioning or intersecting
     (for example -fwrapv is a case for unioning,
     -ffast-math is for intersection).  Most complaints
     about real conflicts between different options can
     be deferred to the compiler proper.  Options that
     we can neither safely handle by intersection nor
     unioning would need to be complained about here.
     Ideally we'd have a flag in the opt files that
     tells whether to union or intersect or reject.
     In absence of that it's unclear what a good default is.
     It's also difficult to get positional handling correct.  */

  /* The following does what the old LTO option code did,
     union all target and a selected set of common options.  */
  for (i = 0; i < fdecoded_options_count; ++i)
    {
      struct cl_decoded_option *foption = &fdecoded_options[i];
      switch (foption->opt_index)
	{
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	case OPT_SPECIAL_unknown:
	case OPT_SPECIAL_ignore:
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	case OPT_SPECIAL_deprecated:
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	case OPT_SPECIAL_program_name:
	case OPT_SPECIAL_input_file:
	  break;

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	default:
	  if (!(cl_options[foption->opt_index].flags & CL_TARGET))
	    break;

	  /* Fallthru.  */
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	case OPT_fdiagnostics_show_caret:
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	case OPT_fdiagnostics_show_labels:
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	case OPT_fdiagnostics_show_line_numbers:
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	case OPT_fdiagnostics_show_option:
	case OPT_fdiagnostics_show_location_:
	case OPT_fshow_column:
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	case OPT_fcommon:
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	case OPT_fgnu_tm:
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	  /* Do what the old LTO code did - collect exactly one option
	     setting per OPT code, we pick the first we encounter.
	     ???  This doesn't make too much sense, but when it doesn't
	     then we should complain.  */
	  for (j = 0; j < *decoded_options_count; ++j)
	    if ((*decoded_options)[j].opt_index == foption->opt_index)
	      break;
	  if (j == *decoded_options_count)
	    append_option (decoded_options, decoded_options_count, foption);
	  break;
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	/* Figure out what PIC/PIE level wins and merge the results.  */
	case OPT_fPIC:
	case OPT_fpic:
	  pic_option = foption;
	  break;
	case OPT_fPIE:
	case OPT_fpie:
	  pie_option = foption;
	  break;

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	case OPT_fopenmp:
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	case OPT_fopenacc:
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	  /* For selected options we can merge conservatively.  */
	  for (j = 0; j < *decoded_options_count; ++j)
	    if ((*decoded_options)[j].opt_index == foption->opt_index)
	      break;
	  if (j == *decoded_options_count)
	    append_option (decoded_options, decoded_options_count, foption);
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	  /* -fopenmp > -fno-openmp,
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	     -fopenacc > -fno-openacc  */
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	  else if (foption->value > (*decoded_options)[j].value)
	    (*decoded_options)[j] = *foption;
	  break;

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	case OPT_fopenacc_dim_:
	  /* Append or check identical.  */
	  for (j = 0; j < *decoded_options_count; ++j)
	    if ((*decoded_options)[j].opt_index == foption->opt_index)
	      break;
	  if (j == *decoded_options_count)
	    append_option (decoded_options, decoded_options_count, foption);
	  else if (strcmp ((*decoded_options)[j].arg, foption->arg))
	    fatal_error (input_location,
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			 "option %s with different values",
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			 foption->orig_option_with_args_text);
	  break;

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	case OPT_O:
	case OPT_Ofast:
	case OPT_Og:
	case OPT_Os:
	  for (j = 0; j < *decoded_options_count; ++j)
	    if ((*decoded_options)[j].opt_index == OPT_O
		|| (*decoded_options)[j].opt_index == OPT_Ofast
		|| (*decoded_options)[j].opt_index == OPT_Og
		|| (*decoded_options)[j].opt_index == OPT_Os)
	      break;
	  if (j == *decoded_options_count)
	    append_option (decoded_options, decoded_options_count, foption);
	  else if ((*decoded_options)[j].opt_index == foption->opt_index
		   && foption->opt_index != OPT_O)
	    /* Exact same options get merged.  */
	    ;
	  else
	    {
	      /* For mismatched option kinds preserve the optimization
	         level only, thus merge it as -On.  This also handles
		 merging of same optimization level -On.  */
	      int level = 0;
	      switch (foption->opt_index)
		{
		case OPT_O:
		  if (foption->arg[0] == '\0')
		    level = MAX (level, 1);
		  else
		    level = MAX (level, atoi (foption->arg));
		  break;
		case OPT_Ofast:
		  level = MAX (level, 3);
		  break;
		case OPT_Og:
		  level = MAX (level, 1);
		  break;
		case OPT_Os:
		  level = MAX (level, 2);
		  break;
		default:
		  gcc_unreachable ();
		}
	      switch ((*decoded_options)[j].opt_index)
		{
		case OPT_O:
		  if ((*decoded_options)[j].arg[0] == '\0')
		    level = MAX (level, 1);
		  else
		    level = MAX (level, atoi ((*decoded_options)[j].arg));
		  break;
		case OPT_Ofast:
		  level = MAX (level, 3);
		  break;
		case OPT_Og:
		  level = MAX (level, 1);
		  break;
		case OPT_Os:
		  level = MAX (level, 2);
		  break;
		default:
		  gcc_unreachable ();
		}
	      (*decoded_options)[j].opt_index = OPT_O;
	      char *tem;
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	      tem = xasprintf ("-O%d", level);
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	      (*decoded_options)[j].arg = &tem[2];
	      (*decoded_options)[j].canonical_option[0] = tem;
	      (*decoded_options)[j].value = 1;
	    }
	  break;
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	case OPT_foffload_abi_:
	  for (j = 0; j < *decoded_options_count; ++j)
	    if ((*decoded_options)[j].opt_index == foption->opt_index)
	      break;
	  if (j == *decoded_options_count)
	    append_option (decoded_options, decoded_options_count, foption);
	  else if (foption->value != (*decoded_options)[j].value)
	    fatal_error (input_location,
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			 "option %s not used consistently in all LTO input"
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			 " files", foption->orig_option_with_args_text);
	  break;

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	case OPT_foffload_:
	  append_option (decoded_options, decoded_options_count, foption);
	  break;
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	}
    }
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  /* Merge PIC options:
      -fPIC + -fpic = -fpic
      -fPIC + -fno-pic = -fno-pic
      -fpic/-fPIC + nothin = nothing.  
     It is a common mistake to mix few -fPIC compiled objects into otherwise
     non-PIC code.  We do not want to build everything with PIC then.

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     Similarly we merge PIE options, however in addition we keep
      -fPIC + -fPIE = -fPIE
      -fpic + -fPIE = -fpie
      -fPIC/-fpic + -fpie = -fpie

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     It would be good to warn on mismatches, but it is bit hard to do as
     we do not know what nothing translates to.  */
    
  for (unsigned int j = 0; j < *decoded_options_count;)
    if ((*decoded_options)[j].opt_index == OPT_fPIC
        || (*decoded_options)[j].opt_index == OPT_fpic)
      {
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	/* -fno-pic in one unit implies -fno-pic everywhere.  */
	if ((*decoded_options)[j].value == 0)
	  j++;
	/* If we have no pic option or merge in -fno-pic, we still may turn
	   existing pic/PIC mode into pie/PIE if -fpie/-fPIE is present.  */
	else if ((pic_option && pic_option->value == 0)
		 || !pic_option)
	  {
	    if (pie_option)
	      {
		bool big = (*decoded_options)[j].opt_index == OPT_fPIC
			   && pie_option->opt_index == OPT_fPIE;
	        (*decoded_options)[j].opt_index = big ? OPT_fPIE : OPT_fpie;
		if (pie_option->value)
	          (*decoded_options)[j].canonical_option[0] = big ? "-fPIE" : "-fpie";
		else
	          (*decoded_options)[j].canonical_option[0] = big ? "-fno-pie" : "-fno-pie";
		(*decoded_options)[j].value = pie_option->value;
	        j++;
	      }
	    else if (pic_option)
	      {
	        (*decoded_options)[j] = *pic_option;
	        j++;
	      }
	    /* We do not know if target defaults to pic or not, so just remove
	       option if it is missing in one unit but enabled in other.  */
	    else
	      remove_option (decoded_options, j, decoded_options_count);
	  }
	else if (pic_option->opt_index == OPT_fpic
		 && (*decoded_options)[j].opt_index == OPT_fPIC)
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	  {
	    (*decoded_options)[j] = *pic_option;
	    j++;
	  }
	else
	  j++;
      }
   else if ((*decoded_options)[j].opt_index == OPT_fPIE
            || (*decoded_options)[j].opt_index == OPT_fpie)
      {
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	/* -fno-pie in one unit implies -fno-pie everywhere.  */
	if ((*decoded_options)[j].value == 0)
	  j++;
	/* If we have no pie option or merge in -fno-pie, we still preserve
	   PIE/pie if pic/PIC is present.  */
	else if ((pie_option && pie_option->value == 0)
		 || !pie_option)
	  {
	    /* If -fPIC/-fpic is given, merge it with -fPIE/-fpie.  */
	    if (pic_option)
	      {
		if (pic_option->opt_index == OPT_fpic
		    && (*decoded_options)[j].opt_index == OPT_fPIE)
		  {
	            (*decoded_options)[j].opt_index = OPT_fpie;
	            (*decoded_options)[j].canonical_option[0]
			 = pic_option->value ? "-fpie" : "-fno-pie";
		  }
		else if (!pic_option->value)
		  (*decoded_options)[j].canonical_option[0] = "-fno-pie";
		(*decoded_options)[j].value = pic_option->value;
		j++;
	      }
	    else if (pie_option)
	      {
	        (*decoded_options)[j] = *pie_option;
		j++;
	      }
	    /* Because we always append pic/PIE options this code path should
	       not happen unless the LTO object was built by old lto1 which
	       did not contain that logic yet.  */
	    else
	      remove_option (decoded_options, j, decoded_options_count);
	  }
	else if (pie_option->opt_index == OPT_fpie
		 && (*decoded_options)[j].opt_index == OPT_fPIE)
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	  {
	    (*decoded_options)[j] = *pie_option;
	    j++;
	  }
	else
	  j++;
      }
   else
     j++;
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}
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/* Auxiliary function that frees elements of PTR and PTR itself.
   N is number of elements to be freed.  If PTR is NULL, nothing is freed.
   If an element is NULL, subsequent elements are not freed.  */

static void **
free_array_of_ptrs (void **ptr, unsigned n)
{
  if (!ptr)
    return NULL;
  for (unsigned i = 0; i < n; i++)
    {
      if (!ptr[i])
	break;
      free (ptr[i]);
    }
  free (ptr);
  return NULL;
}

/* Parse STR, saving found tokens into PVALUES and return their number.
   Tokens are assumed to be delimited by ':'.  If APPEND is non-null,
   append it to every token we find.  */

static unsigned
parse_env_var (const char *str, char ***pvalues, const char *append)
{
  const char *curval, *nextval;
  char **values;
  unsigned num = 1, i;

  curval = strchr (str, ':');
  while (curval)
    {
      num++;
      curval = strchr (curval + 1, ':');
    }

  values = (char**) xmalloc (num * sizeof (char*));
  curval = str;
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  nextval = strchr (curval, ':');
  if (nextval == NULL)
    nextval = strchr (curval, '\0');
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  int append_len = append ? strlen (append) : 0;
  for (i = 0; i < num; i++)
    {
      int l = nextval - curval;
      values[i] = (char*) xmalloc (l + 1 + append_len);
      memcpy (values[i], curval, l);
      values[i][l] = 0;
      if (append)
	strcat (values[i], append);
      curval = nextval + 1;
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      nextval = strchr (curval, ':');
      if (nextval == NULL)
	nextval = strchr (curval, '\0');
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    }
  *pvalues = values;
  return num;
}

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/* Append options OPTS from lto or offload_lto sections to ARGV_OBSTACK.  */

static void
append_compiler_options (obstack *argv_obstack, struct cl_decoded_option *opts,
			 unsigned int count)
{
  /* Append compiler driver arguments as far as they were merged.  */
  for (unsigned int j = 1; j < count; ++j)
    {
      struct cl_decoded_option *option = &opts[j];

      /* File options have been properly filtered by lto-opts.c.  */
      switch (option->opt_index)
	{
	/* Drop arguments that we want to take from the link line.  */
	case OPT_flto_:
	case OPT_flto:
	case OPT_flto_partition_:
	  continue;

	default:
	  break;
	}

      /* For now do what the original LTO option code was doing - pass
	 on any CL_TARGET flag and a few selected others.  */
      switch (option->opt_index)
	{
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	case OPT_fdiagnostics_show_caret:
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	case OPT_fdiagnostics_show_labels:
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	case OPT_fdiagnostics_show_line_numbers:
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	case OPT_fdiagnostics_show_option:
	case OPT_fdiagnostics_show_location_:
	case OPT_fshow_column:
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	case OPT_fPIC:
	case OPT_fpic:
	case OPT_fPIE:
	case OPT_fpie:
	case OPT_fcommon:
	case OPT_fgnu_tm:
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	case OPT_fopenmp:
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	case OPT_fopenacc:
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	case OPT_fopenacc_dim_:
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	case OPT_foffload_abi_:
	case OPT_O:
	case OPT_Ofast:
	case OPT_Og:
	case OPT_Os:
	  break;

	default:
	  if (!(cl_options[option->opt_index].flags & CL_TARGET))
	    continue;
	}

      /* Pass the option on.  */
      for (unsigned int i = 0; i < option->canonical_option_num_elements; ++i)
	obstack_ptr_grow (argv_obstack, option->canonical_option[i]);
    }
}

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/* Append diag options in OPTS with length COUNT to ARGV_OBSTACK.  */

static void
append_diag_options (obstack *argv_obstack, struct cl_decoded_option *opts,
		     unsigned int count)
{
  /* Append compiler driver arguments as far as they were merged.  */
  for (unsigned int j = 1; j < count; ++j)
    {
      struct cl_decoded_option *option = &opts[j];

      switch (option->opt_index)
	{
	case OPT_fdiagnostics_color_:
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	case OPT_fdiagnostics_format_:
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	case OPT_fdiagnostics_show_caret:
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	case OPT_fdiagnostics_show_labels:
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	case OPT_fdiagnostics_show_line_numbers:
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	case OPT_fdiagnostics_show_option:
	case OPT_fdiagnostics_show_location_:
	case OPT_fshow_column:
	  break;
	default:
	  continue;
	}

      /* Pass the option on.  */
      for (unsigned int i = 0; i < option->canonical_option_num_elements; ++i)
	obstack_ptr_grow (argv_obstack, option->canonical_option[i]);
    }
}


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/* Append linker options OPTS to ARGV_OBSTACK.  */

static void
append_linker_options (obstack *argv_obstack, struct cl_decoded_option *opts,
		       unsigned int count)
{
  /* Append linker driver arguments.  Compiler options from the linker
     driver arguments will override / merge with those from the compiler.  */
  for (unsigned int j = 1; j < count; ++j)
    {
      struct cl_decoded_option *option = &opts[j];

      /* Do not pass on frontend specific flags not suitable for lto.  */
      if (!(cl_options[option->opt_index].flags
	    & (CL_COMMON|CL_TARGET|CL_DRIVER|CL_LTO)))
	continue;

      switch (option->opt_index)
	{
	case OPT_o:
	case OPT_flto_:
	case OPT_flto:
	  /* We've handled these LTO options, do not pass them on.  */
	  continue;

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	case OPT_fopenmp:
	case OPT_fopenacc:
	  /* Ignore -fno-XXX form of these options, as otherwise
	     corresponding builtins will not be enabled.  */
	  if (option->value == 0)
	    continue;
	  break;

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	default:
	  break;
	}

      /* Pass the option on.  */
      for (unsigned int i = 0; i < option->canonical_option_num_elements; ++i)
	obstack_ptr_grow (argv_obstack, option->canonical_option[i]);
    }
}

/* Extract options for TARGET offload compiler from OPTIONS and append
   them to ARGV_OBSTACK.  */

static void
append_offload_options (obstack *argv_obstack, const char *target,
			struct cl_decoded_option *options,
			unsigned int options_count)
{
  for (unsigned i = 0; i < options_count; i++)
    {
      const char *cur, *next, *opts;
      char **argv;
      unsigned argc;
      struct cl_decoded_option *option = &options[i];

      if (option->opt_index != OPT_foffload_)
	continue;

      /* If option argument starts with '-' then no target is specified.  That
	 means offload options are specified for all targets, so we need to
	 append them.  */
      if (option->arg[0] == '-')
	opts = option->arg;
      else
	{
	  opts = strchr (option->arg, '=');
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	  /* If there are offload targets specified, but no actual options,
	     there is nothing to do here.  */
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	  if (!opts)
	    continue;

	  cur = option->arg;

	  while (cur < opts)
	    {
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	      next = strchr (cur, ',');
	      if (next == NULL)
752
		next = opts;
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	      next = (next > opts) ? opts : next;

755
	      /* Are we looking for this offload target?  */
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	      if (strlen (target) == (size_t) (next - cur)
		  && strncmp (target, cur, next - cur) == 0)
		break;

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	      /* Skip the comma or equal sign.  */
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	      cur = next + 1;
	    }

	  if (cur >= opts)
	    continue;

	  opts++;
	}

      argv = buildargv (opts);
      for (argc = 0; argv[argc]; argc++)
	obstack_ptr_grow (argv_obstack, argv[argc]);
    }
}

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/* Check whether NAME can be accessed in MODE.  This is like access,
   except that it never considers directories to be executable.  */

static int
access_check (const char *name, int mode)
{
  if (mode == X_OK)
    {
      struct stat st;

      if (stat (name, &st) < 0
	  || S_ISDIR (st.st_mode))
	return -1;
    }

  return access (name, mode);
}

/* Prepare a target image for offload TARGET, using mkoffload tool from
   COMPILER_PATH.  Return the name of the resultant object file.  */

static char *
compile_offload_image (const char *target, const char *compiler_path,
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		       unsigned in_argc, char *in_argv[],
		       struct cl_decoded_option *compiler_opts,
		       unsigned int compiler_opt_count,
		       struct cl_decoded_option *linker_opts,
		       unsigned int linker_opt_count)
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{
  char *filename = NULL;
  char **argv;
  char *suffix
    = XALLOCAVEC (char, sizeof ("/accel//mkoffload") + strlen (target));
  strcpy (suffix, "/accel/");
  strcat (suffix, target);
  strcat (suffix, "/mkoffload");

  char **paths = NULL;
  unsigned n_paths = parse_env_var (compiler_path, &paths, suffix);

  const char *compiler = NULL;
  for (unsigned i = 0; i < n_paths; i++)
    if (access_check (paths[i], X_OK) == 0)
      {
	compiler = paths[i];
	break;
      }

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  if (!compiler)
    fatal_error (input_location,
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		 "could not find %s in %s (consider using %<-B%>)",
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		 suffix + 1, compiler_path);
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  /* Generate temporary output file name.  */
  filename = make_temp_file (".target.o");

  struct obstack argv_obstack;
  obstack_init (&argv_obstack);
  obstack_ptr_grow (&argv_obstack, compiler);
  if (save_temps)
    obstack_ptr_grow (&argv_obstack, "-save-temps");
  if (verbose)
    obstack_ptr_grow (&argv_obstack, "-v");
  obstack_ptr_grow (&argv_obstack, "-o");
  obstack_ptr_grow (&argv_obstack, filename);

  /* Append names of input object files.  */
  for (unsigned i = 0; i < in_argc; i++)
    obstack_ptr_grow (&argv_obstack, in_argv[i]);

  /* Append options from offload_lto sections.  */
  append_compiler_options (&argv_obstack, compiler_opts,
			   compiler_opt_count);
  append_diag_options (&argv_obstack, linker_opts, linker_opt_count);

  /* Append options specified by -foffload last.  In case of conflicting
     options we expect offload compiler to choose the latest.  */
  append_offload_options (&argv_obstack, target, compiler_opts,
			  compiler_opt_count);
  append_offload_options (&argv_obstack, target, linker_opts,
			  linker_opt_count);

  obstack_ptr_grow (&argv_obstack, NULL);
  argv = XOBFINISH (&argv_obstack, char **);
  fork_execute (argv[0], argv, true);
  obstack_free (&argv_obstack, NULL);
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  free_array_of_ptrs ((void **) paths, n_paths);
  return filename;
}


/* The main routine dealing with offloading.
   The routine builds a target image for each offload target.  IN_ARGC and
   IN_ARGV specify options and input object files.  As all of them could contain
   target sections, we pass them all to target compilers.  */

static void
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compile_images_for_offload_targets (unsigned in_argc, char *in_argv[],
				    struct cl_decoded_option *compiler_opts,
				    unsigned int compiler_opt_count,
				    struct cl_decoded_option *linker_opts,
				    unsigned int linker_opt_count)
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{
  char **names = NULL;
  const char *target_names = getenv (OFFLOAD_TARGET_NAMES_ENV);
  if (!target_names)
    return;
  unsigned num_targets = parse_env_var (target_names, &names, NULL);

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  int next_name_entry = 0;
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  const char *compiler_path = getenv ("COMPILER_PATH");
  if (!compiler_path)
    goto out;

  /* Prepare an image for each target and save the name of the resultant object
     file to the OFFLOAD_NAMES array.  It is terminated by a NULL entry.  */
  offload_names = XCNEWVEC (char *, num_targets + 1);
  for (unsigned i = 0; i < num_targets; i++)
    {
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      /* HSA does not use LTO-like streaming and a different compiler, skip
	 it. */
      if (strcmp (names[i], "hsa") == 0)
	continue;

      offload_names[next_name_entry]
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	= compile_offload_image (names[i], compiler_path, in_argc, in_argv,
				 compiler_opts, compiler_opt_count,
				 linker_opts, linker_opt_count);
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      if (!offload_names[next_name_entry])
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	fatal_error (input_location,
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		     "problem with building target image for %s", names[i]);
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      next_name_entry++;
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    }

 out:
  free_array_of_ptrs ((void **) names, num_targets);
}

/* Copy a file from SRC to DEST.  */

static void
copy_file (const char *dest, const char *src)
{
  FILE *d = fopen (dest, "wb");
  FILE *s = fopen (src, "rb");
  char buffer[512];
  while (!feof (s))
    {
      size_t len = fread (buffer, 1, 512, s);
      if (ferror (s) != 0)
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	fatal_error (input_location, "reading input file");
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      if (len > 0)
	{
	  fwrite (buffer, 1, len, d);
	  if (ferror (d) != 0)
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	    fatal_error (input_location, "writing output file");
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	}
    }
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  fclose (d);
  fclose (s);
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}

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/* Find the crtoffloadtable.o file in LIBRARY_PATH, make copy and pass name of
   the copy to the linker.  */
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static void
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find_crtoffloadtable (void)
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{
  char **paths = NULL;
  const char *library_path = getenv ("LIBRARY_PATH");
  if (!library_path)
    return;
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  unsigned n_paths = parse_env_var (library_path, &paths, "/crtoffloadtable.o");
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  unsigned i;
  for (i = 0; i < n_paths; i++)
    if (access_check (paths[i], R_OK) == 0)
      {
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	/* The linker will delete the filename we give it, so make a copy.  */
	char *crtoffloadtable = make_temp_file (".crtoffloadtable.o");
	copy_file (crtoffloadtable, paths[i]);
	printf ("%s\n", crtoffloadtable);
	XDELETEVEC (crtoffloadtable);
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	break;
      }
  if (i == n_paths)
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    fatal_error (input_location,
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		 "installation error, cannot find %<crtoffloadtable.o%>");
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  free_array_of_ptrs ((void **) paths, n_paths);
}

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/* A subroutine of run_gcc.  Examine the open file FD for lto sections with
   name prefix PREFIX, at FILE_OFFSET, and store any options we find in OPTS
   and OPT_COUNT.  Return true if we found a matchingn section, false
   otherwise.  COLLECT_GCC holds the value of the environment variable with
   the same name.  */

static bool
find_and_merge_options (int fd, off_t file_offset, const char *prefix,
			struct cl_decoded_option **opts,
			unsigned int *opt_count, const char *collect_gcc)
{
  off_t offset, length;
  char *data;
  char *fopts;
  const char *errmsg;
  int err;
  struct cl_decoded_option *fdecoded_options = *opts;
  unsigned int fdecoded_options_count = *opt_count;

  simple_object_read *sobj;
  sobj = simple_object_start_read (fd, file_offset, "__GNU_LTO",
				   &errmsg, &err);
  if (!sobj)
    return false;

  char *secname = XALLOCAVEC (char, strlen (prefix) + sizeof (".opts"));
  strcpy (secname, prefix);
  strcat (secname, ".opts");
  if (!simple_object_find_section (sobj, secname, &offset, &length,
				   &errmsg, &err))
    {
      simple_object_release_read (sobj);
      return false;
    }

  lseek (fd, file_offset + offset, SEEK_SET);
  data = (char *)xmalloc (length);
  read (fd, data, length);
  fopts = data;
  do
    {
      struct cl_decoded_option *f2decoded_options;
      unsigned int f2decoded_options_count;
      get_options_from_collect_gcc_options (collect_gcc,
					    fopts, CL_LANG_ALL,
					    &f2decoded_options,
					    &f2decoded_options_count);
      if (!fdecoded_options)
       {
	 fdecoded_options = f2decoded_options;
	 fdecoded_options_count = f2decoded_options_count;
       }
      else
	merge_and_complain (&fdecoded_options,
			    &fdecoded_options_count,
			    f2decoded_options, f2decoded_options_count);

      fopts += strlen (fopts) + 1;
    }
  while (fopts - data < length);

  free (data);
  simple_object_release_read (sobj);
  *opts = fdecoded_options;
  *opt_count = fdecoded_options_count;
  return true;
}

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/* Copy early debug info sections from INFILE to a new file whose name
   is returned.  Return NULL on error.  */

const char *
1041
debug_objcopy (const char *infile, bool rename)
1042
{
1043
  char *outfile;
1044 1045 1046 1047
  const char *errmsg;
  int err;

  const char *p;
1048
  const char *orig_infile = infile;
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  off_t inoff = 0;
  long loffset;
  int consumed;
  if ((p = strrchr (infile, '@'))
      && p != infile
      && sscanf (p, "@%li%n", &loffset, &consumed) >= 1
      && strlen (p) == (unsigned int) consumed)
    {
      char *fname = xstrdup (infile);
      fname[p - infile] = '\0';
      infile = fname;
      inoff = (off_t) loffset;
    }
1062
  int infd = open (infile, O_RDONLY | O_BINARY);
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  if (infd == -1)
    return NULL;
  simple_object_read *inobj = simple_object_start_read (infd, inoff,
							"__GNU_LTO",
							&errmsg, &err);
  if (!inobj)
    return NULL;

  off_t off, len;
  if (simple_object_find_section (inobj, ".gnu.debuglto_.debug_info",
				  &off, &len, &errmsg, &err) != 1)
    {
      if (errmsg)
1076
	fatal_error (0, "%s: %s", errmsg, xstrerror (err));
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      simple_object_release_read (inobj);
      close (infd);
      return NULL;
    }

1083 1084
  if (save_temps)
    {
1085
      outfile = (char *) xmalloc (strlen (orig_infile)
1086
				  + sizeof (".debug.temp.o") + 1);
1087
      strcpy (outfile, orig_infile);
1088 1089 1090 1091
      strcat (outfile, ".debug.temp.o");
    }
  else
    outfile = make_temp_file (".debug.temp.o");
1092
  errmsg = simple_object_copy_lto_debug_sections (inobj, outfile, &err, rename);
1093 1094 1095
  if (errmsg)
    {
      unlink_if_ordinary (outfile);
1096
      fatal_error (0, "%s: %s", errmsg, xstrerror (err));
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    }

  simple_object_release_read (inobj);
  close (infd);

  return outfile;
}

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/* Helper for qsort: compare priorities for parallel compilation.  */

int
cmp_priority (const void *a, const void *b)
{
  return *((const int *)b)-*((const int *)a);
}
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1114 1115 1116 1117 1118
/* Execute gcc. ARGC is the number of arguments. ARGV contains the arguments. */

static void
run_gcc (unsigned argc, char *argv[])
{
1119
  unsigned i, j;
1120 1121 1122
  const char **new_argv;
  const char **argv_ptr;
  char *list_option_full = NULL;
1123
  const char *linker_output = NULL;
1124
  const char *collect_gcc, *collect_gcc_options;
1125
  int parallel = 0;
1126
  int jobserver = 0;
1127
  bool no_partition = false;
1128
  struct cl_decoded_option *fdecoded_options = NULL;
1129
  struct cl_decoded_option *offload_fdecoded_options = NULL;
1130
  unsigned int fdecoded_options_count = 0;
1131
  unsigned int offload_fdecoded_options_count = 0;
1132 1133
  struct cl_decoded_option *decoded_options;
  unsigned int decoded_options_count;
1134 1135
  struct obstack argv_obstack;
  int new_head_argc;
1136 1137
  bool have_lto = false;
  bool have_offload = false;
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  unsigned lto_argc = 0, ltoobj_argc = 0;
  char **lto_argv, **ltoobj_argv;
1140
  bool linker_output_rel = false;
1141 1142
  bool skip_debug = false;
  unsigned n_debugobj;
1143 1144 1145 1146

  /* Get the driver and options.  */
  collect_gcc = getenv ("COLLECT_GCC");
  if (!collect_gcc)
1147
    fatal_error (input_location,
1148
		 "environment variable %<COLLECT_GCC%> must be set");
1149 1150
  collect_gcc_options = getenv ("COLLECT_GCC_OPTIONS");
  if (!collect_gcc_options)
1151
    fatal_error (input_location,
1152
		 "environment variable %<COLLECT_GCC_OPTIONS%> must be set");
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  get_options_from_collect_gcc_options (collect_gcc, collect_gcc_options,
					CL_LANG_ALL,
					&decoded_options,
					&decoded_options_count);
1157

1158
  /* Allocate array for input object files with LTO IL,
1159 1160
     and for possible preceding arguments.  */
  lto_argv = XNEWVEC (char *, argc);
1161
  ltoobj_argv = XNEWVEC (char *, argc);
1162

1163 1164 1165
  /* Look at saved options in the IL files.  */
  for (i = 1; i < argc; ++i)
    {
1166
      char *p;
1167
      int fd;
1168
      off_t file_offset = 0;
1169 1170 1171
      long loffset;
      int consumed;
      char *filename = argv[i];
1172

1173 1174 1175 1176 1177 1178 1179 1180 1181
      if (strncmp (argv[i], "-foffload-objects=",
		   sizeof ("-foffload-objects=") - 1) == 0)
	{
	  have_offload = true;
	  offload_objects_file_name
	    = argv[i] + sizeof ("-foffload-objects=") - 1;
	  continue;
	}

1182 1183 1184 1185 1186 1187 1188 1189 1190 1191
      if ((p = strrchr (argv[i], '@'))
	  && p != argv[i] 
	  && sscanf (p, "@%li%n", &loffset, &consumed) >= 1
	  && strlen (p) == (unsigned int) consumed)
	{
	  filename = XNEWVEC (char, p - argv[i] + 1);
	  memcpy (filename, argv[i], p - argv[i]);
	  filename[p - argv[i]] = '\0';
	  file_offset = (off_t) loffset;
	}
1192
      fd = open (filename, O_RDONLY | O_BINARY);
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      /* Linker plugin passes -fresolution and -flinker-output options.
	 -flinker-output is passed only when user did not specify one and thus
	 we do not need to worry about duplicities with the option handling
	 below. */
1197
      if (fd == -1)
1198 1199
	{
	  lto_argv[lto_argc++] = argv[i];
1200 1201
	  if (strcmp (argv[i], "-flinker-output=rel") == 0)
	    linker_output_rel = true;
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	  continue;
	}

      if (find_and_merge_options (fd, file_offset, LTO_SECTION_NAME_PREFIX,
				  &fdecoded_options, &fdecoded_options_count,
				  collect_gcc))
	{
	  have_lto = true;
1210
	  ltoobj_argv[ltoobj_argc++] = argv[i];
1211
	}
1212 1213 1214
      close (fd);
    }

1215
  /* Initalize the common arguments for the driver.  */
1216 1217 1218 1219
  obstack_init (&argv_obstack);
  obstack_ptr_grow (&argv_obstack, collect_gcc);
  obstack_ptr_grow (&argv_obstack, "-xlto");
  obstack_ptr_grow (&argv_obstack, "-c");
1220

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  append_compiler_options (&argv_obstack, fdecoded_options,
			   fdecoded_options_count);
  append_linker_options (&argv_obstack, decoded_options, decoded_options_count);
1224

1225
  /* Scan linker driver arguments for things that are of relevance to us.  */
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  for (j = 1; j < decoded_options_count; ++j)
    {
      struct cl_decoded_option *option = &decoded_options[j];
      switch (option->opt_index)
	{
	case OPT_o:
	  linker_output = option->arg;
1233
	  break;
1234 1235

	case OPT_save_temps:
1236
	  save_temps = 1;
1237 1238 1239
	  break;

	case OPT_v:
1240
	  verbose = 1;
1241
	  break;
1242

1243 1244 1245
	case OPT_flto_partition_:
	  if (strcmp (option->arg, "none") == 0)
	    no_partition = true;
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	  break;

	case OPT_flto_:
	  if (strcmp (option->arg, "jobserver") == 0)
	    {
	      jobserver = 1;
	      parallel = 1;
	    }
	  else
	    {
	      parallel = atoi (option->arg);
	      if (parallel <= 1)
		parallel = 0;
	    }
	  /* Fallthru.  */

	case OPT_flto:
	  lto_mode = LTO_MODE_WHOPR;
1264
	  break;
1265

1266 1267 1268 1269 1270
	case OPT_flinker_output_:
	  linker_output_rel = !strcmp (option->arg, "rel");
	  break;


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	default:
	  break;
	}
    }

1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286
  /* Output lto-wrapper invocation command.  */
  if (verbose)
    {
      for (i = 0; i < argc; ++i)
	{
	  fputs (argv[i], stderr);
	  fputc (' ', stderr);
	}
      fputc ('\n', stderr);
    }

1287 1288 1289
  if (linker_output_rel)
    no_partition = true;

1290 1291 1292 1293 1294 1295
  if (no_partition)
    {
      lto_mode = LTO_MODE_LTO;
      jobserver = 0;
      parallel = 0;
    }
1296 1297 1298 1299

  if (linker_output)
    {
      char *output_dir, *base, *name;
1300
      bool bit_bucket = strcmp (linker_output, HOST_BIT_BUCKET) == 0;
1301

1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314
      output_dir = xstrdup (linker_output);
      base = output_dir;
      for (name = base; *name; name++)
	if (IS_DIR_SEPARATOR (*name))
	  base = name + 1;
      *base = '\0';

      linker_output = &linker_output[base - output_dir];
      if (*output_dir == '\0')
	{
	  static char current_dir[] = { '.', DIR_SEPARATOR, '\0' };
	  output_dir = current_dir;
	}
1315 1316
      if (!bit_bucket)
	{
1317 1318
	  obstack_ptr_grow (&argv_obstack, "-dumpdir");
	  obstack_ptr_grow (&argv_obstack, output_dir);
1319
	}
1320

1321
      obstack_ptr_grow (&argv_obstack, "-dumpbase");
1322
    }
1323 1324 1325

  /* Remember at which point we can scrub args to re-use the commons.  */
  new_head_argc = obstack_object_size (&argv_obstack) / sizeof (void *);
1326

1327 1328
  if (have_offload)
    {
1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403
      unsigned i, num_offload_files;
      char **offload_argv;
      FILE *f;

      f = fopen (offload_objects_file_name, "r");
      if (f == NULL)
	fatal_error (input_location, "cannot open %s: %m",
		     offload_objects_file_name);
      if (fscanf (f, "%u ", &num_offload_files) != 1)
	fatal_error (input_location, "cannot read %s: %m",
		     offload_objects_file_name);
      offload_argv = XCNEWVEC (char *, num_offload_files);

      /* Read names of object files with offload.  */
      for (i = 0; i < num_offload_files; i++)
	{
	  const unsigned piece = 32;
	  char *buf, *filename = XNEWVEC (char, piece);
	  size_t len;

	  buf = filename;
cont1:
	  if (!fgets (buf, piece, f))
	    break;
	  len = strlen (filename);
	  if (filename[len - 1] != '\n')
	    {
	      filename = XRESIZEVEC (char, filename, len + piece);
	      buf = filename + len;
	      goto cont1;
	    }
	  filename[len - 1] = '\0';
	  offload_argv[i] = filename;
	}
      fclose (f);
      if (offload_argv[num_offload_files - 1] == NULL)
	fatal_error (input_location, "invalid format of %s",
		     offload_objects_file_name);
      maybe_unlink (offload_objects_file_name);
      offload_objects_file_name = NULL;

      /* Look at saved offload options in files.  */
      for (i = 0; i < num_offload_files; i++)
	{
	  char *p;
	  long loffset;
	  int fd, consumed;
	  off_t file_offset = 0;
	  char *filename = offload_argv[i];

	  if ((p = strrchr (offload_argv[i], '@'))
	      && p != offload_argv[i]
	      && sscanf (p, "@%li%n", &loffset, &consumed) >= 1
	      && strlen (p) == (unsigned int) consumed)
	    {
	      filename = XNEWVEC (char, p - offload_argv[i] + 1);
	      memcpy (filename, offload_argv[i], p - offload_argv[i]);
	      filename[p - offload_argv[i]] = '\0';
	      file_offset = (off_t) loffset;
	    }
	  fd = open (filename, O_RDONLY | O_BINARY);
	  if (fd == -1)
	    fatal_error (input_location, "cannot open %s: %m", filename);
	  if (!find_and_merge_options (fd, file_offset,
				       OFFLOAD_SECTION_NAME_PREFIX,
				       &offload_fdecoded_options,
				       &offload_fdecoded_options_count,
				       collect_gcc))
	    fatal_error (input_location, "cannot read %s: %m", filename);
	  close (fd);
	  if (filename != offload_argv[i])
	    XDELETEVEC (filename);
	}

      compile_images_for_offload_targets (num_offload_files, offload_argv,
1404
					  offload_fdecoded_options,
1405 1406 1407
					  offload_fdecoded_options_count,
					  decoded_options,
					  decoded_options_count);
1408 1409 1410

      free_array_of_ptrs ((void **) offload_argv, num_offload_files);

1411 1412
      if (offload_names)
	{
1413
	  find_crtoffloadtable ();
1414 1415 1416 1417 1418 1419 1420 1421 1422 1423
	  for (i = 0; offload_names[i]; i++)
	    printf ("%s\n", offload_names[i]);
	  free_array_of_ptrs ((void **) offload_names, i);
	}
    }

  /* If object files contain offload sections, but do not contain LTO sections,
     then there is no need to perform a link-time recompilation, i.e.
     lto-wrapper is used only for a compilation of offload images.  */
  if (have_offload && !have_lto)
1424
    goto finish;
1425

1426 1427
  if (lto_mode == LTO_MODE_LTO)
    {
1428
      if (linker_output)
1429 1430 1431 1432 1433 1434 1435 1436 1437
	{
	  obstack_ptr_grow (&argv_obstack, linker_output);
	  flto_out = (char *) xmalloc (strlen (linker_output)
				       + sizeof (".lto.o") + 1);
	  strcpy (flto_out, linker_output);
	  strcat (flto_out, ".lto.o");
	}
      else
	flto_out = make_temp_file (".lto.o");
1438 1439
      obstack_ptr_grow (&argv_obstack, "-o");
      obstack_ptr_grow (&argv_obstack, flto_out);
1440
    }
1441
  else 
1442 1443 1444 1445 1446
    {
      const char *list_option = "-fltrans-output-list=";
      size_t list_option_len = strlen (list_option);
      char *tmp;

1447 1448 1449
      if (linker_output)
	{
	  char *dumpbase = (char *) xmalloc (strlen (linker_output)
1450
					     + sizeof (".wpa") + 1);
1451 1452
	  strcpy (dumpbase, linker_output);
	  strcat (dumpbase, ".wpa");
1453
	  obstack_ptr_grow (&argv_obstack, dumpbase);
1454 1455
	}

1456
      if (linker_output && save_temps)
1457 1458 1459 1460 1461 1462 1463
	{
	  ltrans_output_file = (char *) xmalloc (strlen (linker_output)
						 + sizeof (".ltrans.out") + 1);
	  strcpy (ltrans_output_file, linker_output);
	  strcat (ltrans_output_file, ".ltrans.out");
	}
      else
1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476
	{
	  char *prefix = NULL;
	  if (linker_output)
	    {
	      prefix = (char *) xmalloc (strlen (linker_output) + 2);
	      strcpy (prefix, linker_output);
	      strcat (prefix, ".");
	    }

	  ltrans_output_file = make_temp_file_with_prefix (prefix,
							   ".ltrans.out");
	  free (prefix);
	}
1477 1478 1479 1480
      list_option_full = (char *) xmalloc (sizeof (char) *
		         (strlen (ltrans_output_file) + list_option_len + 1));
      tmp = list_option_full;

1481
      obstack_ptr_grow (&argv_obstack, tmp);
1482 1483 1484 1485
      strcpy (tmp, list_option);
      tmp += list_option_len;
      strcpy (tmp, ltrans_output_file);

1486 1487 1488 1489 1490 1491 1492 1493 1494 1495
      if (jobserver)
	obstack_ptr_grow (&argv_obstack, xstrdup ("-fwpa=jobserver"));
      else if (parallel > 1)
	{
	  char buf[256];
	  sprintf (buf, "-fwpa=%i", parallel);
	  obstack_ptr_grow (&argv_obstack, xstrdup (buf));
	}
      else
        obstack_ptr_grow (&argv_obstack, "-fwpa");
1496 1497
    }

1498
  /* Append input arguments.  */
1499 1500
  for (i = 0; i < lto_argc; ++i)
    obstack_ptr_grow (&argv_obstack, lto_argv[i]);
1501 1502 1503
  /* Append the input objects.  */
  for (i = 0; i < ltoobj_argc; ++i)
    obstack_ptr_grow (&argv_obstack, ltoobj_argv[i]);
1504
  obstack_ptr_grow (&argv_obstack, NULL);
1505

1506 1507
  new_argv = XOBFINISH (&argv_obstack, const char **);
  argv_ptr = &new_argv[new_head_argc];
1508
  fork_execute (new_argv[0], CONST_CAST (char **, new_argv), true);
1509

1510 1511 1512
  /* Copy the early generated debug info from the objects to temporary
     files and append those to the partial link commandline.  */
  n_debugobj = 0;
1513
  early_debug_object_names = NULL;
1514 1515
  if (! skip_debug)
    {
1516 1517 1518
      early_debug_object_names = XCNEWVEC (const char *, ltoobj_argc+ 1);
      num_deb_objs = ltoobj_argc;
      for (i = 0; i < ltoobj_argc; ++i)
1519
	{
1520 1521 1522 1523 1524 1525
	  const char *tem;
	  if ((tem = debug_objcopy (ltoobj_argv[i], !linker_output_rel)))
	    {
	      early_debug_object_names[i] = tem;
	      n_debugobj++;
	    }
1526 1527 1528
	}
    }

1529 1530
  if (lto_mode == LTO_MODE_LTO)
    {
1531
      printf ("%s\n", flto_out);
1532 1533
      if (!skip_debug)
	{
1534 1535 1536
	  for (i = 0; i < ltoobj_argc; ++i)
	    if (early_debug_object_names[i] != NULL)
	      printf ("%s\n", early_debug_object_names[i]);	      
1537
	}
1538
      /* These now belong to collect2.  */
1539 1540
      free (flto_out);
      flto_out = NULL;
1541 1542
      free (early_debug_object_names);
      early_debug_object_names = NULL;
1543
    }
1544
  else
1545 1546
    {
      FILE *stream = fopen (ltrans_output_file, "r");
1547
      FILE *mstream = NULL;
1548
      struct obstack env_obstack;
1549
      int priority;
1550 1551

      if (!stream)
1552
	fatal_error (input_location, "%<fopen%>: %s: %m", ltrans_output_file);
1553

1554
      /* Parse the list of LTRANS inputs from the WPA stage.  */
1555
      obstack_init (&env_obstack);
1556
      nr = 0;
1557 1558 1559
      for (;;)
	{
	  const unsigned piece = 32;
1560
	  char *output_name = NULL;
1561 1562 1563 1564
	  char *buf, *input_name = (char *)xmalloc (piece);
	  size_t len;

	  buf = input_name;
1565 1566 1567 1568
          if (fscanf (stream, "%i\n", &priority) != 1)
	    {
	      if (!feof (stream))
	        fatal_error (input_location,
1569
		             "corrupted ltrans output file %s",
1570 1571 1572
			     ltrans_output_file);
	      break;
	    }
1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585
cont:
	  if (!fgets (buf, piece, stream))
	    break;
	  len = strlen (input_name);
	  if (input_name[len - 1] != '\n')
	    {
	      input_name = (char *)xrealloc (input_name, len + piece);
	      buf = input_name + len;
	      goto cont;
	    }
	  input_name[len - 1] = '\0';

	  if (input_name[0] == '*')
1586
	    output_name = &input_name[1];
1587

1588
	  nr++;
1589 1590
	  ltrans_priorities
	     = (int *)xrealloc (ltrans_priorities, nr * sizeof (int) * 2);
1591 1592
	  input_names = (char **)xrealloc (input_names, nr * sizeof (char *));
	  output_names = (char **)xrealloc (output_names, nr * sizeof (char *));
1593 1594
	  ltrans_priorities[(nr-1)*2] = priority;
	  ltrans_priorities[(nr-1)*2+1] = nr-1;
1595 1596 1597
	  input_names[nr-1] = input_name;
	  output_names[nr-1] = output_name;
	}
1598
      fclose (stream);
1599
      maybe_unlink (ltrans_output_file);
1600 1601 1602 1603 1604 1605
      ltrans_output_file = NULL;

      if (parallel)
	{
	  makefile = make_temp_file (".mk");
	  mstream = fopen (makefile, "w");
1606
	  qsort (ltrans_priorities, nr, sizeof (int) * 2, cmp_priority);
1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629
	}

      /* Execute the LTRANS stage for each input file (or prepare a
	 makefile to invoke this in parallel).  */
      for (i = 0; i < nr; ++i)
	{
	  char *output_name;
	  char *input_name = input_names[i];
	  /* If it's a pass-through file do nothing.  */
	  if (output_names[i])
	    continue;

	  /* Replace the .o suffix with a .ltrans.o suffix and write
	     the resulting name to the LTRANS output list.  */
	  obstack_grow (&env_obstack, input_name, strlen (input_name) - 2);
	  obstack_grow (&env_obstack, ".ltrans.o", sizeof (".ltrans.o"));
	  output_name = XOBFINISH (&env_obstack, char *);

	  /* Adjust the dumpbase if the linker output file was seen.  */
	  if (linker_output)
	    {
	      char *dumpbase
		  = (char *) xmalloc (strlen (linker_output)
1630
				      + sizeof (DUMPBASE_SUFFIX) + 1);
1631
	      snprintf (dumpbase,
1632
			strlen (linker_output) + sizeof (DUMPBASE_SUFFIX),
1633
			"%s.ltrans%u", linker_output, i);
1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647
	      argv_ptr[0] = dumpbase;
	    }

	  argv_ptr[1] = "-fltrans";
	  argv_ptr[2] = "-o";
	  argv_ptr[3] = output_name;
	  argv_ptr[4] = input_name;
	  argv_ptr[5] = NULL;
	  if (parallel)
	    {
	      fprintf (mstream, "%s:\n\t@%s ", output_name, new_argv[0]);
	      for (j = 1; new_argv[j] != NULL; ++j)
		fprintf (mstream, " '%s'", new_argv[j]);
	      fprintf (mstream, "\n");
1648 1649 1650
	      /* If we are not preserving the ltrans input files then
	         truncate them as soon as we have processed it.  This
		 reduces temporary disk-space usage.  */
1651
	      if (! save_temps)
1652 1653 1654
		fprintf (mstream, "\t@-touch -r %s %s.tem > /dev/null 2>&1 "
			 "&& mv %s.tem %s\n",
			 input_name, input_name, input_name, input_name); 
1655 1656
	    }
	  else
1657
	    {
1658 1659
	      fork_execute (new_argv[0], CONST_CAST (char **, new_argv),
			    true);
1660
	      maybe_unlink (input_name);
1661
	    }
1662 1663 1664

	  output_names[i] = output_name;
	}
1665 1666 1667 1668
      if (parallel)
	{
	  struct pex_obj *pex;
	  char jobs[32];
1669

1670 1671 1672
	  fprintf (mstream,
		   ".PHONY: all\n"
		   "all:");
1673
	  for (i = 0; i < nr; ++i)
1674 1675 1676 1677
	    {
	      int j = ltrans_priorities[i*2 + 1];
	      fprintf (mstream, " \\\n\t%s", output_names[j]);
	    }
1678 1679
	  fprintf (mstream, "\n");
	  fclose (mstream);
1680 1681 1682 1683 1684 1685 1686
	  if (!jobserver)
	    {
	      /* Avoid passing --jobserver-fd= and similar flags 
		 unless jobserver mode is explicitly enabled.  */
	      putenv (xstrdup ("MAKEFLAGS="));
	      putenv (xstrdup ("MFLAGS="));
	    }
1687 1688 1689
	  new_argv[0] = getenv ("MAKE");
	  if (!new_argv[0])
	    new_argv[0] = "make";
1690 1691
	  new_argv[1] = "-f";
	  new_argv[2] = makefile;
1692 1693 1694 1695 1696 1697 1698 1699
	  i = 3;
	  if (!jobserver)
	    {
	      snprintf (jobs, 31, "-j%d", parallel);
	      new_argv[i++] = jobs;
	    }
	  new_argv[i++] = "all";
	  new_argv[i++] = NULL;
1700 1701 1702
	  pex = collect_execute (new_argv[0], CONST_CAST (char **, new_argv),
				 NULL, NULL, PEX_SEARCH, false);
	  do_wait (new_argv[0], pex);
1703
	  maybe_unlink (makefile);
1704
	  makefile = NULL;
1705
	  for (i = 0; i < nr; ++i)
1706
	    maybe_unlink (input_names[i]);
1707 1708 1709 1710
	}
      for (i = 0; i < nr; ++i)
	{
	  fputs (output_names[i], stdout);
1711
	  putc ('\n', stdout);
1712
	  free (input_names[i]);
1713
	}
1714 1715 1716 1717 1718 1719
      if (!skip_debug)
	{
	  for (i = 0; i < ltoobj_argc; ++i)
	    if (early_debug_object_names[i] != NULL)
	      printf ("%s\n", early_debug_object_names[i]);	      
	}
1720
      nr = 0;
1721
      free (ltrans_priorities);
1722
      free (output_names);
1723 1724 1725
      output_names = NULL;
      free (early_debug_object_names);
      early_debug_object_names = NULL;
1726
      free (input_names);
1727
      free (list_option_full);
1728
      obstack_free (&env_obstack, NULL);
1729
    }
1730

1731
 finish:
1732
  XDELETE (lto_argv);
1733
  obstack_free (&argv_obstack, NULL);
1734 1735 1736 1737 1738 1739 1740 1741
}


/* Entry point.  */

int
main (int argc, char *argv[])
{
1742 1743
  const char *p;

1744
  init_opts_obstack ();
1745

1746 1747 1748 1749 1750 1751 1752
  p = argv[0] + strlen (argv[0]);
  while (p != argv[0] && !IS_DIR_SEPARATOR (p[-1]))
    --p;
  progname = p;

  xmalloc_set_program_name (progname);

1753 1754
  gcc_init_libintl ();

1755 1756
  diagnostic_initialize (global_dc, 0);

1757
  if (atexit (lto_wrapper_cleanup) != 0)
1758
    fatal_error (input_location, "%<atexit%> failed");
1759

1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777
  if (signal (SIGINT, SIG_IGN) != SIG_IGN)
    signal (SIGINT, fatal_signal);
#ifdef SIGHUP
  if (signal (SIGHUP, SIG_IGN) != SIG_IGN)
    signal (SIGHUP, fatal_signal);
#endif
  if (signal (SIGTERM, SIG_IGN) != SIG_IGN)
    signal (SIGTERM, fatal_signal);
#ifdef SIGPIPE
  if (signal (SIGPIPE, SIG_IGN) != SIG_IGN)
    signal (SIGPIPE, fatal_signal);
#endif
#ifdef SIGCHLD
  /* We *MUST* set SIGCHLD to SIG_DFL so that the wait4() call will
     receive the signal.  A different setting is inheritable */
  signal (SIGCHLD, SIG_DFL);
#endif

1778 1779 1780
  /* We may be called with all the arguments stored in some file and
     passed with @file.  Expand them into argv before processing.  */
  expandargv (&argc, &argv);
1781

1782
  run_gcc (argc, argv);
1783 1784 1785

  return 0;
}