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path: root/libjava/classpath/java/awt/image/DataBufferFloat.java
blob: 9cf8784d78c703668e474fb0634a8e63c8828282 (plain)
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/* Copyright (C) 2004, 2005  Free Software Foundation

This file is part of GNU Classpath.

GNU Classpath 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 2, or (at your option)
any later version.

GNU Classpath 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 GNU Classpath; see the file COPYING.  If not, write to the
Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
02110-1301 USA.

Linking this library statically or dynamically with other modules is
making a combined work based on this library.  Thus, the terms and
conditions of the GNU General Public License cover the whole
combination.

As a special exception, the copyright holders of this library give you
permission to link this library with independent modules to produce an
executable, regardless of the license terms of these independent
modules, and to copy and distribute the resulting executable under
terms of your choice, provided that you also meet, for each linked
independent module, the terms and conditions of the license of that
module.  An independent module is a module which is not derived from
or based on this library.  If you modify this library, you may extend
this exception to your version of the library, but you are not
obligated to do so.  If you do not wish to do so, delete this
exception statement from your version. */

package java.awt.image;

/* This is one of several classes that are nearly identical. Maybe we
   should have a central template and generate all these files. This
   is one of the cases where templates or macros would have been
   useful to have in Java.

   This file has been created using search-replace. My only fear is
   that these classes will grow out-of-sync as of a result of changes
   that are not propagated to the other files. As always, mirroring
   code is a maintenance nightmare.  */

/**
 * A {@link DataBuffer} that uses an array of <code>float</code> primitives
 * to represent each of its banks. 
 * 
 * @author Rolf W. Rasmussen (rolfwr@ii.uib.no)
 * @author Sascha Brawer (brawer@dandelis.ch)
 */
public final class DataBufferFloat
  extends DataBuffer
{
  private float[] data;
  private float[][] bankData;
  
  /**
   * Creates a new data buffer with a single data bank containing the 
   * specified number of <code>float</code> elements.
   * 
   * @param size the number of elements in the data bank.
   */
  public DataBufferFloat(int size)
  {
    super(TYPE_FLOAT, size, 1, 0);
    bankData = new float[1][];
    data = new float[size];
    bankData[0] = data;
  }

  /**
   * Creates a new data buffer with the specified number of data banks, 
   * each containing the specified number of <code>float</code> elements.
   * 
   * @param size the number of elements in the data bank.
   * @param numBanks the number of data banks.
   */
  public DataBufferFloat(int size, int numBanks)
  {
    super(TYPE_FLOAT, size, numBanks);
    bankData = new float[numBanks][size];
    data = bankData[0];
  }

  /**
   * Creates a new data buffer backed by the specified data bank.
   * <p>
   * Note: there is no exception when <code>dataArray</code> is 
   * <code>null</code>, but in that case an exception will be thrown
   * later if you attempt to access the data buffer.
   * 
   * @param dataArray the data bank.
   * @param size the number of elements in the data bank.
   */
  public DataBufferFloat(float[] dataArray, int size)
  {
    super(TYPE_FLOAT, size, 1, 0);
    bankData = new float[1][];
    data = dataArray;
    bankData[0] = data;
  }
    
  /**
   * Creates a new data buffer backed by the specified data bank, with
   * the specified offset to the first element.
   * <p>
   * Note: there is no exception when <code>dataArray</code> is 
   * <code>null</code>, but in that case an exception will be thrown
   * later if you attempt to access the data buffer.
   * 
   * @param dataArray the data bank.
   * @param size the number of elements in the data bank.
   * @param offset the offset to the first element in the array.
   */
  public DataBufferFloat(float[] dataArray, int size, int offset)
  {
    super(TYPE_FLOAT, size, 1, offset);
    bankData = new float[1][];
    data = dataArray;
    bankData[0] = data;
  }

  /**
   * Creates a new data buffer backed by the specified data banks.
   * 
   * @param dataArray the data banks.
   * @param size the number of elements in the data bank.
   * 
   * @throws NullPointerException if <code>dataArray</code> is 
   *         <code>null</code>.
   */
  public DataBufferFloat(float[][] dataArray, int size)
  {
    super(TYPE_FLOAT, size, dataArray.length);
    bankData = dataArray;
    data = bankData[0];
  }

  /**
   * Creates a new data buffer backed by the specified data banks, with
   * the specified offsets to the first element in each bank.
   * 
   * @param dataArray the data banks.
   * @param size the number of elements in the data bank.
   * @param offsets the offsets to the first element in each data bank.
   * 
   * @throws NullPointerException if <code>dataArray</code> is 
   *         <code>null</code>.
   */
  public DataBufferFloat(float[][] dataArray, int size, int[] offsets)
  {
    super(TYPE_FLOAT, size, dataArray.length, offsets);
    bankData = dataArray;
    data = bankData[0];
  }

  /**
   * Returns the first data bank.
   * 
   * @return The first data bank.
   */
  public float[] getData()
  {
    return data;
  }
    
  /**
   * Returns a data bank.
   * 
   * @param bank the bank index.
   * @return A data bank.
   */
  public float[] getData(int bank)
  {
    return bankData[bank];
  }
    
  /**
   * Returns the array underlying this <code>DataBuffer</code>.
   * 
   * @return The data banks.
   */
  public float[][] getBankData()
  {
    return bankData;
  }
  
  /**
   * Returns an element from the first data bank.  The offset (specified in
   * the constructor) is added to <code>i</code> before accessing the 
   * underlying data array.
   * 
   * @param i the element index.
   * @return The element.
   */
  public int getElem(int i)
  {
    return (int) data[i+offset];
  }

  /**
   * Returns an element from a particular data bank.  The offset (specified in
   * the constructor) is added to <code>i</code> before accessing the 
   * underlying data array.
   * 
   * @param bank the bank index.
   * @param i the element index.
   * @return The element.
   */
  public int getElem(int bank, int i)
  {
    return (int) bankData[bank][i+offsets[bank]];
  }

  /**
   * Sets an element in the first data bank.  The offset (specified in the
   * constructor) is added to <code>i</code> before updating the underlying
   * data array.
   * 
   * @param i the element index.
   * @param val the new element value.
   */
  public void setElem(int i, int val)
  {
    data[i+offset] = val;
  }

  /**
   * Sets an element in a particular data bank.  The offset (specified in the
   * constructor) is added to <code>i</code> before updating the underlying
   * data array.
   * 
   * @param bank the data bank index.
   * @param i the element index.
   * @param val the new element value.
   */
  public void setElem(int bank, int i, int val)
  {
    bankData[bank][i+offsets[bank]] = val;
  }

  public float getElemFloat(int i)
  {
    return data[i+offset];
  }
    
  public float getElemFloat(int bank, int i)
  {
    return bankData[bank][i+offsets[bank]];
  }

  public void setElemFloat(int i, float val)
  {
    data[i+offset] = val;
  }

  public void setElemFloat(int bank, int i, float val)
  {
    bankData[bank][i+offsets[bank]] = val;
  }

  public double getElemDouble(int i)
  {
    return getElemFloat(i);
  }
    
  public double getElemDouble(int bank, int i)
  {
    return getElemFloat(bank, i);
  }

  public void setElemDouble(int i, double val)
  {
    setElemFloat(i, (float) val);
  }

  public void setElemDouble(int bank, int i, double val)
  {
    setElemFloat(bank, i, (float) val);
  }
}
/a> 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861
#! /usr/bin/perl

use Getopt::Long;
use POSIX;

$standard = "XOPEN2K8";
$CC = "gcc";
$tmpdir = "/tmp";
GetOptions ('headers=s' => \@headers, 'standard=s' => \$standard,
	    'flags=s' => \$flags, 'cc=s' => \$CC, 'tmpdir=s' => \$tmpdir);
@headers = split(/,/,join(',',@headers));

# List of the headers we are testing.
if (@headers == ()) {
  @headers = ("wordexp.h", "wctype.h", "wchar.h", "varargs.h", "utmpx.h",
	      "utime.h", "unistd.h", "ulimit.h", "ucontext.h", "uchar.h",
	      "time.h", "tgmath.h", "termios.h", "tar.h", "sys/wait.h",
	      "sys/utsname.h", "sys/un.h", "sys/uio.h", "sys/types.h",
	      "sys/times.h", "sys/timeb.h", "sys/time.h", "sys/statvfs.h",
	      "sys/stat.h", "sys/socket.h", "sys/shm.h", "sys/sem.h",
	      "sys/select.h", "sys/resource.h", "sys/msg.h", "sys/mman.h",
	      "sys/ipc.h", "syslog.h", "stropts.h", "strings.h", "string.h",
	      "stdnoreturn.h", "stdlib.h", "stdio.h", "stdint.h", "stddef.h",
	      "stdbool.h", "stdarg.h", "stdalign.h", "spawn.h", "signal.h",
	      "setjmp.h", "semaphore.h", "search.h", "sched.h", "regex.h",
	      "pwd.h", "pthread.h", "poll.h", "nl_types.h", "netinet/tcp.h",
	      "netinet/in.h", "net/if.h", "netdb.h", "ndbm.h", "mqueue.h",
	      "monetary.h", "math.h", "locale.h", "libgen.h", "limits.h",
	      "langinfo.h", "iso646.h", "inttypes.h", "iconv.h", "grp.h",
	      "glob.h", "ftw.h", "fnmatch.h", "fmtmsg.h", "float.h", "fenv.h",
	      "fcntl.h", "errno.h", "dlfcn.h", "dirent.h", "ctype.h", "cpio.h",
	      "complex.h", "assert.h", "arpa/inet.h", "aio.h");
}

$CFLAGS{"ISO"} = "-ansi";
$CFLAGS{"ISO99"} = "-std=c99";
$CFLAGS{"ISO11"} = "-std=c1x -D_ISOC11_SOURCE";
$CFLAGS{"POSIX"} = "-D_POSIX_C_SOURCE=199912 -ansi";
$CFLAGS{"XPG3"} = "-ansi -D_XOPEN_SOURCE";
$CFLAGS{"XPG4"} = "-ansi -D_XOPEN_SOURCE -D_XOPEN_SOURCE_EXTENDED";
$CFLAGS{"UNIX98"} = "-ansi -D_XOPEN_SOURCE=500";
$CFLAGS{"XOPEN2K"} = "-std=c99 -D_XOPEN_SOURCE=600";
$CFLAGS{"XOPEN2K8"} = "-std=c99 -D_XOPEN_SOURCE=700";
$CFLAGS{"POSIX2008"} = "-std=c99 -D_POSIX_C_SOURCE=200809L";

$CFLAGS_namespace = "$flags -fno-builtin $CFLAGS{$standard} -D_ISOMAC";
$CFLAGS = "$CFLAGS_namespace '-D__attribute__(x)='";

# Check standard name for validity.
die "unknown standard \"$standard\"" if ($CFLAGS{$standard} eq "");

# if ($standard ne "XOPEN2K8" && $standard ne "POSIX2008") {
#   # Some headers need a bit more attention.  At least with XPG7
#   # all headers should be self-contained.
#   $mustprepend{'inttypes.h'} = "#include <stddef.h>\n";
#   $mustprepend{'glob.h'} = "#include <sys/types.h>\n";
#   $mustprepend{'grp.h'} = "#include <sys/types.h>\n";
#   $mustprepend{'regex.h'} = "#include <sys/types.h>\n";
#   $mustprepend{'pwd.h'} = "#include <sys/types.h>\n";
#   $mustprepend{'sched.h'} = "#include <sys/types.h>\n";
#   $mustprepend{'signal.h'} = "#include <pthread.h>\n#include <sys/types.h>\n";
#   $mustprepend{'stdio.h'} = "#include <sys/types.h>\n";
#   $mustprepend{'sys/stat.h'} = "#include <sys/types.h>\n";
#   $mustprepend{'wchar.h'} = "#include <stdarg.h>\n";
#   $mustprepend{'wordexp.h'} = "#include <stddef.h>\n";
# }

# These are the ISO C90 keywords.
@keywords = ('auto', 'break', 'case', 'char', 'const', 'continue', 'default',
	     'do', 'double', 'else', 'enum', 'extern', 'float', 'for', 'goto',
	     'if', 'int', 'long', 'register', 'return',
	     'short', 'signed', 'sizeof', 'static', 'struct', 'switch',
	     'typedef', 'union', 'unsigned', 'void', 'volatile', 'while');
if ($CFLAGS{$standard} =~ /-std=(c99|c1x)/) {
  push (@keywords, 'inline', 'restrict');
}

# Make a hash table from this information.
while ($#keywords >= 0) {
  $iskeyword{pop (@keywords)} = 1;
}

$verbose = 1;

$total = 0;
$skipped = 0;
$errors = 0;


sub poorfnmatch {
  my($pattern, $string) = @_;
  my($strlen) = length ($string);
  my($res);

  if (substr ($pattern, 0, 1) eq '*') {
    my($patlen) = length ($pattern) - 1;
    $res = ($strlen >= $patlen
	    && substr ($pattern, -$patlen, $patlen) eq substr ($string, -$patlen, $patlen));
  } elsif (substr ($pattern, -1, 1) eq '*') {
    if (substr ($pattern, -2, 1) eq ']') {
      my($patlen) = index ($pattern, '[');
      my($range) = substr ($pattern, $patlen + 1, -2);
      $res = ($strlen > $patlen
	      && substr ($pattern, 0, $patlen) eq substr ($string, 0, $patlen)
	      && index ($range, substr ($string, $patlen, 1)) != -1);
    } else {
      my($patlen) = length ($pattern) - 1;
      $res = ($strlen >= $patlen
	      && substr ($pattern, 0, $patlen) eq substr ($string, 0, $patlen));
    }
  } else {
    $res = $pattern eq $string;
  }
  return $res;
}


sub compiletest
{
  my($fnamebase, $msg, $errmsg, $skip, $optional) = @_;
  my($result) = $skip;
  my($printlog) = 0;

  ++$total;
  printf ("  $msg...");

  if ($skip != 0) {
    ++$skipped;
    printf (" SKIP\n");
  } else {
    $ret = system "$CC $CFLAGS -c $fnamebase.c -o $fnamebase.o > $fnamebase.out 2>&1";
    if ($ret != 0) {
      if ($optional != 0) {
	printf (" $errmsg\n");
	$result = 1;
      } else {
	printf (" FAIL\n");
	if ($verbose != 0) {
	  printf ("    $errmsg  Compiler message:\n");
	  $printlog = 1;
	}
	++$errors;
	$result = 1;
      }
    } else {
      printf (" OK\n");
      if ($verbose > 1 && -s "$fnamebase.out") {
	# We print all warnings issued.
	$printlog = 1;
      }
    }
    if ($printlog != 0) {
      printf ("    " . "-" x 71 . "\n");
      open (MESSAGE, "< $fnamebase.out");
      while (<MESSAGE>) {
	printf ("    %s", $_);
      }
      close (MESSAGE);
      printf ("    " . "-" x 71 . "\n");
    }
  }
  unlink "$fnamebase.c";
  unlink "$fnamebase.o";
  unlink "$fnamebase.out";

  $result;
}


sub runtest
{
  my($fnamebase, $msg, $errmsg, $skip) = @_;
  my($result) = $skip;
  my($printlog) = 0;

  ++$total;
  printf ("  $msg...");

  if ($skip != 0) {
    ++$skipped;
    printf (" SKIP\n");
  } else {
    $ret = system "$CC $CFLAGS -o $fnamebase $fnamebase.c > $fnamebase.out 2>&1";
    if ($ret != 0) {
      printf (" FAIL\n");
      if ($verbose != 0) {
	printf ("    $errmsg  Compiler message:\n");
	$printlog = 1;
      }
      ++$errors;
      $result = 1;
    } else {
      # Now run the program.  If the exit code is not zero something is wrong.
      $result = system "$fnamebase > $fnamebase.out2 2>&1";
      if ($result == 0) {
	printf (" OK\n");
	if ($verbose > 1 && -s "$fnamebase.out") {
	  # We print all warnings issued.
	  $printlog = 1;
	  system "cat $fnamebase.out2 >> $fnamebase.out";
	}
      } else {
	printf (" FAIL\n");
	++$errors;
	$printlog = 1;
	unlink "$fnamebase.out";
	rename "$fnamebase.out2", "$fnamebase.out";
      }
    }
    if ($printlog != 0) {
      printf ("    " . "-" x 71 . "\n");
      open (MESSAGE, "< $fnamebase.out");
      while (<MESSAGE>) {
	printf ("    %s", $_);
      }
      close (MESSAGE);
      printf ("    " . "-" x 71 . "\n");
    }
  }
  unlink "$fnamebase";
  unlink "$fnamebase.c";
  unlink "$fnamebase.o";
  unlink "$fnamebase.out";
  unlink "$fnamebase.out2";

  $result;
}


sub newtoken {
  my($token, @allow) = @_;
  my($idx);

  return if ($token =~ /^[0-9_]/ || $iskeyword{$token});

  for ($idx = 0; $idx <= $#allow; ++$idx) {
    return if (poorfnmatch ($allow[$idx], $token));
  }
}


sub removetoken {
  my($token) = @_;
  my($idx);

  return if ($token =~ /^[0-9_]/ || $iskeyword{$token});

  if (exists $errors{$token}) {
    undef $errors{$token};
  }
}


sub checknamespace {
  my($h, $fnamebase, @allow) = @_;

  ++$total;

  # Generate a program to get the contents of this header.
  open (TESTFILE, ">$fnamebase.c");
  print TESTFILE "#include <$h>\n";
  close (TESTFILE);

  undef %errors;
  $nknown = 0;
  open (CONTENT, "$CC $CFLAGS_namespace -E $fnamebase.c -P -Wp,-dN | sed -e '/^# [1-9]/d' -e '/^[[:space:]]*\$/d' |");
  loop: while (<CONTENT>) {
    chop;
    if (/^#define (.*)/) {
      newtoken ($1, @allow);
    } elsif (/^#undef (.*)/) {
      removetoken ($1);
    } else {
      # We have to tokenize the line.
      my($str) = $_;
      my($index) = 0;
      my($len) = length ($str);

      foreach $token (split(/[^a-zA-Z0-9_]/, $str)) {
	if ($token ne "") {
	  newtoken ($token, @allow);
	}
      }
    }
  }
  close (CONTENT);
  unlink "$fnamebase.c";
  $realerror = 0;
  if ($#errors != 0) {
    # Sort the output list so it's easier to compare results with diff.
    foreach $f (sort keys(%errors)) {
      if ($errors{$f} == 1) {
	if ($realerror == 0) {
	  printf ("FAIL\n    " . "-" x 72 . "\n");
	  $realerror = 1;
	  ++$errors;
	}
	printf ("    Namespace violation: \"%s\"\n", $f);
      }
    }
    printf ("    " . "-" x 72 . "\n") if ($realerror != 0);
  }

  if ($realerror == 0) {
    printf ("OK\n");
  }
}


while ($#headers >= 0) {
  my($h) = pop (@headers);
  my($hf) = $h;
  $hf =~ s|/|-|;
  my($fnamebase) = "$tmpdir/$hf-test";
  my($missing) = 1;
  my(@allow) = ();
  my(@allowheader) = ();
  my(%seenheader) = ();
  my($prepend) = $mustprepend{$h};
  my($test_exist) = 1;

  printf ("Testing <$h>\n");
  printf ("----------" . "-" x length ($h) . "\n");

  open (CONTROL, "$CC -E -D$standard -x c data/$h-data |");
  control: while (<CONTROL>) {
    chop;
    next control if (/^#/);
    next control if (/^[	]*$/);

    if ($test_exist) {
      $test_exist = 0;
      # Generate a program to test for the availability of this header.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      close (TESTFILE);

      $missing = compiletest ($fnamebase, "Checking whether <$h> is available",
			      "Header <$h> not available", 0, 0);
      printf ("\n");
      last control if ($missing);
    }

    my($optional) = 0;
    if (/^optional-/) {
      s/^optional-//;
      $optional = 1;
    }
    if (/^element *({([^}]*)}|([^{ ]*)) *({([^}]*)}|([^{ ]*)) *([A-Za-z0-9_]*) *(.*)/) {
      my($struct) = "$2$3";
      my($type) = "$5$6";
      my($member) = "$7";
      my($rest) = "$8";
      my($res) = $missing;

      # Remember that this name is allowed.
      push @allow, $member;

      # Generate a program to test for the availability of this member.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      print TESTFILE "$struct a;\n";
      print TESTFILE "$struct b;\n";
      print TESTFILE "extern void xyzzy (__typeof__ (&b.$member), __typeof__ (&a.$member), unsigned);\n";
      print TESTFILE "void foobarbaz (void) {\n";
      print TESTFILE "  xyzzy (&a.$member, &b.$member, sizeof (a.$member));\n";
      print TESTFILE "}\n";
      close (TESTFILE);

      $res = compiletest ($fnamebase, "Testing for member $member",
			  ($optional
			   ? "NOT AVAILABLE."
			   : "Member \"$member\" not available."), $res,
			  $optional);

      if ($res == 0 || $missing != 0 || !$optional) {
	# Test the types of the members.
	open (TESTFILE, ">$fnamebase.c");
	print TESTFILE "$prepend";
	print TESTFILE "#include <$h>\n";
	print TESTFILE "$struct a;\n";
	print TESTFILE "extern $type b$rest;\n";
	print TESTFILE "extern __typeof__ (a.$member) b;\n";
	close (TESTFILE);

	compiletest ($fnamebase, "Testing for type of member $member",
		     "Member \"$member\" does not have the correct type.",
		     $res, 0);
      }
    } elsif (/^(macro|constant|macro-constant|macro-int-constant) +([a-zA-Z0-9_]*) *(?:{([^}]*)} *)?(?:([>=<!]+) ([A-Za-z0-9_-]*))?/) {
      my($symbol_type) = $1;
      my($symbol) = $2;
      my($type) = $3;
      my($op) = $4;
      my($value) = $5;
      my($res) = $missing;
      my($mres) = $missing;
      my($cres) = $missing;

      # Remember that this name is allowed.
      push @allow, $symbol;

      if ($symbol_type =~ /macro/) {
	# Generate a program to test for availability of this macro.
	open (TESTFILE, ">$fnamebase.c");
	print TESTFILE "$prepend";
	print TESTFILE "#include <$h>\n";
	print TESTFILE "#ifndef $symbol\n";
	print TESTFILE "# error \"Macro $symbol not defined\"\n";
	print TESTFILE "#endif\n";
	close (TESTFILE);

	$mres = compiletest ($fnamebase, "Test availability of macro $symbol",
			     ($optional
			      ? "NOT PRESENT"
			      : "Macro \"$symbol\" is not available."), $res,
			     $optional);
      }

      if ($symbol_type =~ /constant/) {
	# Generate a program to test for the availability of this constant.
	open (TESTFILE, ">$fnamebase.c");
	print TESTFILE "$prepend";
	print TESTFILE "#include <$h>\n";
	print TESTFILE "__typeof__ ($symbol) a = $symbol;\n";
	close (TESTFILE);

	$cres = compiletest ($fnamebase, "Testing for constant $symbol",
			     ($optional
			      ? "NOT PRESENT"
			      : "Constant \"$symbol\" not available."), $res,
			     $optional);
      }

      $res = $res || $mres || $cres;

      if ($symbol_type eq "macro-int-constant" && ($res == 0 || !$optional)) {
	# Test that the symbol is usable in #if.
	open (TESTFILE, ">$fnamebase.c");
	print TESTFILE "$prepend";
	print TESTFILE "#include <$h>\n";
	print TESTFILE "#if $symbol < 0\n";
	print TESTFILE "# define conformtest_negative 1\n";
	my($s) = "0";
	for (my $i = 0; $i < 63; $i++) {
	  print TESTFILE "# if $symbol & (1LL << $i)\n";
	  print TESTFILE "#  define conformtest_bit_$i 0LL\n";
	  print TESTFILE "# else\n";
	  print TESTFILE "#  define conformtest_bit_$i (1LL << $i)\n";
	  print TESTFILE "# endif\n";
	  $s .= "|conformtest_bit_$i";
	}
	print TESTFILE "# define conformtest_value ~($s)\n";
	print TESTFILE "#else\n";
	print TESTFILE "# define conformtest_negative 0\n";
	$s = "0";
	for (my $i = 0; $i < 64; $i++) {
	  print TESTFILE "# if $symbol & (1ULL << $i)\n";
	  print TESTFILE "#  define conformtest_bit_$i (1ULL << $i)\n";
	  print TESTFILE "# else\n";
	  print TESTFILE "#  define conformtest_bit_$i 0ULL\n";
	  print TESTFILE "# endif\n";
	  $s .= "|conformtest_bit_$i";
	}
	print TESTFILE "# define conformtest_value ($s)\n";
	print TESTFILE "#endif\n";
	print TESTFILE "int main (void) { return !((($symbol < 0) == conformtest_negative) && ($symbol == conformtest_value)); }\n";
	close (TESTFILE);

	runtest ($fnamebase, "Testing for #if usability of symbol $symbol",
		 "Symbol \"$symbol\" not usable in #if.", $res);
      }

      if (defined ($type) && ($res == 0 || !$optional)) {
	# Test the type of the symbol.
	open (TESTFILE, ">$fnamebase.c");
	print TESTFILE "$prepend";
	print TESTFILE "#include <$h>\n";
	if ($type =~ /^promoted:/) {
	  $type =~ s/^promoted://;
	  print TESTFILE "__typeof__ (($type) 0 + ($type) 0) a;\n";
	} else {
	  print TESTFILE "__typeof__ (($type) 0) a;\n";
	}
	print TESTFILE "extern __typeof__ ($symbol) a;\n";
	close (TESTFILE);

	compiletest ($fnamebase, "Testing for type of symbol $symbol",
		     "Symbol \"$symbol\" does not have the correct type.",
		     $res, 0);
      }

      if (defined ($op) && ($res == 0 || !$optional)) {
	# Generate a program to test for the value of this symbol.
	open (TESTFILE, ">$fnamebase.c");
	print TESTFILE "$prepend";
	print TESTFILE "#include <$h>\n";
	# Negate the value since 0 means ok
	print TESTFILE "int main (void) { return !($symbol $op $value); }\n";
	close (TESTFILE);

	$res = runtest ($fnamebase, "Testing for value of symbol $symbol",
			"Symbol \"$symbol\" has not the right value.", $res);
      }
    } elsif (/^symbol *([a-zA-Z0-9_]*) *([A-Za-z0-9_-]*)?/) {
      my($symbol) = $1;
      my($value) = $2;
      my($res) = $missing;

      # Remember that this name is allowed.
      push @allow, $symbol;

      # Generate a program to test for the availability of this constant.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      print TESTFILE "void foobarbaz (void) {\n";
      print TESTFILE "__typeof__ ($symbol) a = $symbol;\n";
      print TESTFILE "}\n";
      close (TESTFILE);

      $res = compiletest ($fnamebase, "Testing for symbol $symbol",
			  "Symbol \"$symbol\" not available.", $res, 0);

      if ($value ne "") {
	# Generate a program to test for the value of this constant.
	open (TESTFILE, ">$fnamebase.c");
	print TESTFILE "$prepend";
	print TESTFILE "#include <$h>\n";
	print TESTFILE "int main (void) { return $symbol != $value; }\n";
	close (TESTFILE);

	$res = runtest ($fnamebase, "Testing for value of symbol $symbol",
			"Symbol \"$symbol\" has not the right value.", $res);
      }
    } elsif (/^type *({([^}]*)|([a-zA-Z0-9_]*))/) {
      my($type) = "$2$3";
      my($maybe_opaque) = 0;

      # Remember that this name is allowed.
      if ($type =~ /^struct *(.*)/) {
	push @allow, $1;
      } elsif ($type =~ /^union *(.*)/) {
	push @allow, $1;
      } else {
	push @allow, $type;
	$maybe_opaque = 1;
      }

      # Generate a program to test for the availability of this type.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      if ($maybe_opaque == 1) {
	print TESTFILE "$type *a;\n";
      } else {
	print TESTFILE "$type a;\n";
      }
      close (TESTFILE);

      compiletest ($fnamebase, "Testing for type $type",
		   ($optional
		    ? "NOT AVAILABLE"
		    : "Type \"$type\" not available."), $missing, $optional);
    } elsif (/^tag *({([^}]*)|([a-zA-Z0-9_]*))/) {
      my($type) = "$2$3";

      # Remember that this name is allowed.
      if ($type =~ /^struct *(.*)/) {
	push @allow, $1;
      } elsif ($type =~ /^union *(.*)/) {
	push @allow, $1;
      } else {
	push @allow, $type;
      }

      # Generate a program to test for the availability of this type.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      print TESTFILE "$type;\n";
      close (TESTFILE);

      compiletest ($fnamebase, "Testing for type $type",
		   "Type \"$type\" not available.", $missing, 0);
    } elsif (/^function *({([^}]*)}|([a-zA-Z0-9_]*)) [(][*]([a-zA-Z0-9_]*) ([(].*[)])/) {
      my($rettype) = "$2$3";
      my($fname) = "$4";
      my($args) = "$5";
      my($res) = $missing;

      # Remember that this name is allowed.
      push @allow, $fname;

      # Generate a program to test for availability of this function.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      # print TESTFILE "#undef $fname\n";
      print TESTFILE "$rettype (*(*foobarbaz) $args = $fname;\n";
      close (TESTFILE);

      $res = compiletest ($fnamebase, "Test availability of function $fname",
			  ($optional
			   ? "NOT AVAILABLE"
			   : "Function \"$fname\" is not available."), $res,
			  $optional);

      if ($res == 0 || $missing == 1 || !$optional) {
	# Generate a program to test for the type of this function.
	open (TESTFILE, ">$fnamebase.c");
	print TESTFILE "$prepend";
	print TESTFILE "#include <$h>\n";
	# print TESTFILE "#undef $fname\n";
	print TESTFILE "extern $rettype (*(*foobarbaz) $args;\n";
	print TESTFILE "extern __typeof__ (&$fname) foobarbaz;\n";
	close (TESTFILE);

	compiletest ($fnamebase, "Test for type of function $fname",
		     "Function \"$fname\" has incorrect type.", $res, 0);
      }
    } elsif (/^function *({([^}]*)}|([a-zA-Z0-9_]*)) ([a-zA-Z0-9_]*) ([(].*[)])/) {
      my($rettype) = "$2$3";
      my($fname) = "$4";
      my($args) = "$5";
      my($res) = $missing;

      # Remember that this name is allowed.
      push @allow, $fname;

      # Generate a program to test for availability of this function.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      # print TESTFILE "#undef $fname\n";
      print TESTFILE "$rettype (*foobarbaz) $args = $fname;\n";
      close (TESTFILE);

      $res = compiletest ($fnamebase, "Test availability of function $fname",
			  ($optional
			   ? "NOT AVAILABLE"
			   : "Function \"$fname\" is not available."), $res,
			  $optional);

      if ($res == 0 || $missing != 0 || !$optional) {
	# Generate a program to test for the type of this function.
	open (TESTFILE, ">$fnamebase.c");
	print TESTFILE "$prepend";
	print TESTFILE "#include <$h>\n";
	# print TESTFILE "#undef $fname\n";
	print TESTFILE "extern $rettype (*foobarbaz) $args;\n";
	print TESTFILE "extern __typeof__ (&$fname) foobarbaz;\n";
	close (TESTFILE);

	compiletest ($fnamebase, "Test for type of function $fname",
		     "Function \"$fname\" has incorrect type.", $res, 0);
      }
    } elsif (/^variable *({([^}]*)}|([a-zA-Z0-9_]*)) ([a-zA-Z0-9_]*) *(.*)/) {
      my($type) = "$2$3";
      my($vname) = "$4";
      my($rest) = "$5";
      my($res) = $missing;

      # Remember that this name is allowed.
      push @allow, $vname;

      # Generate a program to test for availability of this function.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      # print TESTFILE "#undef $fname\n";
      print TESTFILE "typedef $type xyzzy$rest;\n";
      print TESTFILE "$xyzzy *foobarbaz = &$vname;\n";
      close (TESTFILE);

      $res = compiletest ($fnamebase, "Test availability of variable $vname",
			  "Variable \"$vname\" is not available.", $res, 0);

      # Generate a program to test for the type of this function.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      # print TESTFILE "#undef $fname\n";
      print TESTFILE "extern $type $vname$rest;\n";
      close (TESTFILE);

      compiletest ($fnamebase, "Test for type of variable $fname",
		   "Variable \"$vname\" has incorrect type.", $res, 0);
    } elsif (/^macro-function *({([^}]*)}|([a-zA-Z0-9_]*)) ([a-zA-Z0-9_]*) ([(].*[)])/) {
      my($rettype) = "$2$3";
      my($fname) = "$4";
      my($args) = "$5";
      my($res) = $missing;

      # Remember that this name is allowed.
      push @allow, $fname;

      # Generate a program to test for availability of this function.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      print TESTFILE "#ifndef $fname\n";
      print TESTFILE "$rettype (*foobarbaz) $args = $fname;\n";
      print TESTFILE "#endif\n";
      close (TESTFILE);

      $res = compiletest ($fnamebase, "Test availability of macro $fname",
			  "Function \"$fname\" is not available.", $res, 0);

      # Generate a program to test for the type of this function.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      print TESTFILE "#ifndef $fname\n";
      print TESTFILE "extern $rettype (*foobarbaz) $args;\n";
      print TESTFILE "extern __typeof__ (&$fname) foobarbaz;\n";
      print TESTFILE "#endif\n";
      close (TESTFILE);

      compiletest ($fnamebase, "Test for type of macro $fname",
		   "Function \"$fname\" has incorrect type.", $res, 0);
    } elsif (/^macro-str *([^	 ]*) *(\".*\")/) {
      # The above regex doesn't handle a \" in a string.
      my($macro) = "$1";
      my($string) = "$2";
      my($res) = $missing;

      # Remember that this name is allowed.
      push @allow, $macro;

      # Generate a program to test for availability of this macro.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      print TESTFILE "#ifndef $macro\n";
      print TESTFILE "# error \"Macro $macro not defined\"\n";
      print TESTFILE "#endif\n";
      close (TESTFILE);

      compiletest ($fnamebase, "Test availability of macro $macro",
		   "Macro \"$macro\" is not available.", $missing, 0);

      # Generate a program to test for the value of this macro.
      open (TESTFILE, ">$fnamebase.c");
      print TESTFILE "$prepend";
      print TESTFILE "#include <$h>\n";
      # We can't include <string.h> here.
      print TESTFILE "extern int (strcmp)(const char *, const char *);\n";
      print TESTFILE "int main (void) { return (strcmp) ($macro, $string) != 0;}\n";
      close (TESTFILE);

      $res = runtest ($fnamebase, "Testing for value of macro $macro",
		      "Macro \"$macro\" has not the right value.", $res);
    } elsif (/^allow-header *(.*)/) {
      my($pattern) = $1;
      if ($seenheader{$pattern} != 1) {
	push @allowheader, $pattern;
	$seenheader{$pattern} = 1;
      }
      next control;
    } elsif (/^allow *(.*)/) {
      my($pattern) = $1;
      push @allow, $pattern;
      next control;
    } else {
      # printf ("line is `%s'\n", $_);
      next control;
    }

    printf ("\n");
  }
  close (CONTROL);

  # Read the data files for the header files which are allowed to be included.
  while ($#allowheader >= 0) {
    my($ah) = pop @allowheader;

    open (ALLOW, "$CC -E -D$standard -x c data/$ah-data |");
    acontrol: while (<ALLOW>) {
      chop;
      next acontrol if (/^#/);
      next acontrol if (/^[	]*$/);

      if (/^element *({([^}]*)}|([^ ]*)) *({([^}]*)}|([^ ]*)) *([A-Za-z0-9_]*) *(.*)/) {
	push @allow, $7;
      } elsif (/^(macro|constant|macro-constant|macro-int-constant) +([a-zA-Z0-9_]*) *(?:{([^}]*)} *)?(?:([>=<!]+) ([A-Za-z0-9_-]*))?/) {
	push @allow, $1;
      } elsif (/^(type|tag) *({([^}]*)|([a-zA-Z0-9_]*))/) {
	my($type) = "$3$4";

	# Remember that this name is allowed.
	if ($type =~ /^struct *(.*)/) {
	  push @allow, $1;
	} elsif ($type =~ /^union *(.*)/) {
	  push @allow, $1;
	} else {
	  push @allow, $type;
	}
      } elsif (/^function *({([^}]*)}|([a-zA-Z0-9_]*)) [(][*]([a-zA-Z0-9_]*) ([(].*[)])/) {
	push @allow, $4;
      } elsif (/^function *({([^}]*)}|([a-zA-Z0-9_]*)) ([a-zA-Z0-9_]*) ([(].*[)])/) {
	push @allow, $4;
      } elsif (/^variable *({([^}]*)}|([a-zA-Z0-9_]*)) ([a-zA-Z0-9_]*)/) {
	push @allow, $4;
      } elsif (/^macro-function *({([^}]*)}|([a-zA-Z0-9_]*)) ([a-zA-Z0-9_]*) ([(].*[)])/) {
	push @allow, $4;
      } elsif (/^symbol *([a-zA-Z0-9_]*) *([A-Za-z0-9_-]*)?/) {
	push @allow, $1;
      } elsif (/^allow-header *(.*)/) {
	if ($seenheader{$1} != 1) {
	  push @allowheader, $1;
	  $seenheader{$1} = 1;
	}
      } elsif (/^allow *(.*)/) {
	push @allow, $1;
      }
    }
    close (ALLOW);
  }

  if ($test_exist) {
    printf ("  Not defined\n");
  } else {
    # Now check the namespace.
    printf ("  Checking the namespace of \"%s\"... ", $h);
    if ($missing) {
      ++$skipped;
      printf ("SKIP\n");
    } else {
      checknamespace ($h, $fnamebase, @allow);
    }
  }

  printf ("\n\n");
}

printf "-" x 76 . "\n";
printf ("  Total number of tests   : %4d\n", $total);

printf ("  Number of failed tests  : %4d (", $errors);
$percent = ($errors * 100) / $total;
if ($errors > 0 && $percent < 1.0) {
  printf (" <1%%)\n");
} else {
  printf ("%3d%%)\n", $percent);
}

printf ("  Number of skipped tests : %4d (", $skipped);
$percent = ($skipped * 100) / $total;
if ($skipped > 0 && $percent < 1.0) {
  printf (" <1%%)\n");
} else {
  printf ("%3d%%)\n", $percent);
}

exit $errors != 0;
# Local Variables:
#  perl-indent-level: 2
# End: