view lib-src/make-mswin-unicode.pl @ 853:2b6fa2618f76

[xemacs-hg @ 2002-05-28 08:44:22 by ben] merge my stderr-proc ws make-docfile.c: Fix places where we forget to check for EOF. code-init.el: Don't use CRLF conversion by default on process output. CMD.EXE and friends work both ways but Cygwin programs don't like the CRs. code-process.el, multicast.el, process.el: Removed. Improvements to call-process-internal: -- allows a buffer to be specified for input and stderr output -- use it on all systems -- implement C-g as documented -- clean up and comment call-process-region uses new call-process facilities; no temp file. remove duplicate funs in process.el. comment exactly how coding systems work and fix various problems. open-multicast-group now does similar coding-system frobbing to open-network-stream. dumped-lisp.el, faces.el, msw-faces.el: Fix some hidden errors due to code not being defined at the right time. xemacs.mak: Add -DSTRICT. ================================================================ ALLOW SEPARATION OF STDOUT AND STDERR IN PROCESSES ================================================================ Standard output and standard error can be processed separately in a process. Each can have its own buffer, its own mark in that buffer, and its filter function. You can specify a separate buffer for stderr in `start-process' to get things started, or use the new primitives: set-process-stderr-buffer process-stderr-buffer process-stderr-mark set-process-stderr-filter process-stderr-filter Also, process-send-region takes a 4th optional arg, a buffer. Currently always uses a pipe() under Unix to read the error output. (#### Would a PTY be better?) sysdep.h, sysproc.h, unexfreebsd.c, unexsunos4.c, nt.c, emacs.c, callproc.c, symsinit.h, sysdep.c, Makefile.in.in, process-unix.c: Delete callproc.c. Move child_setup() to process-unix.c. wait_for_termination() now only needed on a few really old systems. console-msw.h, event-Xt.c, event-msw.c, event-stream.c, event-tty.c, event-unixoid.c, events.h, process-nt.c, process-unix.c, process.c, process.h, procimpl.h: Rewrite the process methods to handle a separate channel for error input. Create Lstreams for reading in the error channel. Many process methods need change. In general the changes are fairly clear as they involve duplicating what's used for reading the normal stdout and changing for stderr -- although tedious, as such changes are required throughout the entire process code. Rewrote the code that reads process output to do two loops, one for stdout and one for stderr. gpmevent.c, tooltalk.c: set_process_filter takes an argument for stderr. ================================================================ NEW ERROR-TRAPPING MECHANISM ================================================================ Totally rewrite error trapping code to be unified and support more features. Basic function is call_trapping_problems(), which lets you specify, by means of flags, what sorts of problems you want trapped. these can include -- quit -- errors -- throws past the function -- creation of "display objects" (e.g. buffers) -- deletion of already-existing "display objects" (e.g. buffers) -- modification of already-existing buffers -- entering the debugger -- gc -- errors->warnings (ala suspended errors) etc. All other error funs rewritten in terms of this one. Various older mechanisms removed or rewritten. window.c, insdel.c, console.c, buffer.c, device.c, frame.c: When creating a display object, added call to note_object_created(), for use with trapping_problems mechanism. When deleting, call check_allowed_operation() and note_object deleted(). The trapping-problems code records the objects created since the call-trapping-problems began. Those objects can be deleted, but none others (i.e. previously existing ones). bytecode.c, cmdloop.c: internal_catch takes another arg. eval.c: Add long comments describing the "five lists" used to maintain state (backtrace, gcpro, specbind, etc.) in the Lisp engine. backtrace.h, eval.c: Implement trapping-problems mechanism, eliminate old mechanisms or redo in terms of new one. frame.c, gutter.c: Flush out the concept of "critical display section", defined by the in_display() var. Use an internal_bind() to get it reset, rather than just doing it at end, because there may be a non-local exit. event-msw.c, event-stream.c, console-msw.h, device.c, dialog-msw.c, frame.c, frame.h, intl.c, toolbar.c, menubar-msw.c, redisplay.c, alloc.c, menubar-x.c: Make use of new trapping-errors stuff and rewrite code based on old mechanisms. glyphs-widget.c, redisplay.h: Protect calling Lisp in redisplay. insdel.c: Protect hooks against deleting existing buffers. frame-msw.c: Use EQ, not EQUAL in hash tables whose keys are just numbers. Otherwise we run into stickiness in redisplay because internal_equal() can QUIT. ================================================================ SIGNAL, C-G CHANGES ================================================================ Here we change the way that C-g interacts with event reading. The idea is that a C-g occurring while we're reading a user event should be read as C-g, but elsewhere should be a QUIT. The former code did all sorts of bizarreness -- requiring that no QUIT occurs anywhere in event-reading code (impossible to enforce given the stuff called or Lisp code invoked), and having some weird system involving enqueue/dequeue of a C-g and interaction with Vquit_flag -- and it didn't work. Now, we simply enclose all code where we want C-g read as an event with {begin/end}_dont_check_for_quit(). This completely turns off the mechanism that checks (and may remove or alter) C-g in the read-ahead queues, so we just get the C-g normal. Signal.c documents this very carefully. cmdloop.c: Correct use of dont_check_for_quit to new scheme, remove old out-of-date comments. event-stream.c: Fix C-g handling to actually work. device-x.c: Disable quit checking when err out. signal.c: Cleanup. Add large descriptive comment. process-unix.c, process-nt.c, sysdep.c: Use QUIT instead of REALLY_QUIT. It's not necessary to use REALLY_QUIT and just confuses the issue. lisp.h: Comment quit handlers. ================================================================ CONS CHANGES ================================================================ free_cons() now takes a Lisp_Object not the result of XCONS(). car and cdr have been renamed so that they don't get used directly; go through XCAR(), XCDR() instead. alloc.c, dired.c, editfns.c, emodules.c, fns.c, glyphs-msw.c, glyphs-x.c, glyphs.c, keymap.c, minibuf.c, search.c, eval.c, lread.c, lisp.h: Correct free_cons calling convention: now takes Lisp_Object, not Lisp_Cons chartab.c: Eliminate direct use of ->car, ->cdr, should be black box. callint.c: Rewrote using EXTERNAL_LIST_LOOP to avoid use of Lisp_Cons. ================================================================ USE INTERNAL-BIND-* ================================================================ eval.c: Cleanups of these funs. alloc.c, fileio.c, undo.c, specifier.c, text.c, profile.c, lread.c, redisplay.c, menubar-x.c, macros.c: Rewrote to use internal_bind_int() and internal_bind_lisp_object() in place of whatever varied and cumbersome mechanisms were formerly there. ================================================================ SPECBIND SANITY ================================================================ backtrace.h: - Improved comments backtrace.h, bytecode.c, eval.c: Add new mechanism check_specbind_stack_sanity() for sanity checking code each time the catchlist or specbind stack change. Removed older prototype of same mechanism. ================================================================ MISC ================================================================ lisp.h, insdel.c, window.c, device.c, console.c, buffer.c: Fleshed out authorship. device-msw.c: Correct bad Unicode-ization. print.c: Be more careful when not initialized or in fatal error handling. search.c: Eliminate running_asynch_code, an FSF holdover. alloc.c: Added comments about gc-cons-threshold. dialog-x.c: Use begin_gc_forbidden() around code to build up a widget value tree, like in menubar-x.c. gui.c: Use Qunbound not Qnil as the default for gethash. lisp-disunion.h, lisp-union.h: Added warnings on use of VOID_TO_LISP(). lisp.h: Use ERROR_CHECK_STRUCTURES to turn on ERROR_CHECK_TRAPPING_PROBLEMS and ERROR_CHECK_TYPECHECK lisp.h: Add assert_with_message. lisp.h: Add macros for gcproing entire arrays. (You could do this before but it required manual twiddling the gcpro structure.) lisp.h: Add prototypes for new functions defined elsewhere.
author ben
date Tue, 28 May 2002 08:45:36 +0000
parents a5954632b187
children ecf1ebac70d8
line wrap: on
line source

: #-*- Perl -*-

### make-mswin-unicode --- generate Unicode-encapsulation code for MS Windows

## Copyright (C) 2001, 2002 Ben Wing.

## Author: Ben Wing <ben@xemacs.org>
## Maintainer: Ben Wing <ben@xemacs.org>
## Current Version: 1.0, August 24, 2001

## This file is part of XEmacs.

## XEmacs 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.

## XEmacs 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 XEmacs; see the file COPYING.  If not, write to the Free
## Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
## 02111-1307, USA.

eval 'exec perl -w -S $0 ${1+"$@"}'
  if 0;

use strict;
use File::Basename;
use Getopt::Long;

my ($myName, $myPath) = fileparse ($0);

my $usage="
Usage: $myName [--c-output FILE] [--h-output FILE] [--help] [FILES ...]

The purpose of this script is to auto-generate Unicode-encapsulation
code for MS Windows library functions that come in two versions (ANSI
and Unicode).  The MS Windows header files provide a way of
automatically calling the right version, but only at compile-time,
which is *NOT* sufficient for any real-world program.  The solution is
run-time Unicode encapsulation, which is not conceptually difficult
but is time-consuming, and is not supported standardly only due to
evil marketing decisions made by Microsoft.  See src/intl-win32.c
for more information.

In XEmacs, this file is normally run using `nmake -f xemacs.mak
unicode-encapsulate'.

This script processes the specified files, looking for commands
indicating library routines to Unicode-encapsulate, as follows:

Portions of the files that should be processed are enclosed in lines
consisting only of the words \"begin-unicode-encapsulation-script\"
and \"end-unicode-encapsulation-script\".  More than one section can
occur in a single file.  Processed lines begin with a command word,
followed by one or more args (no quotes are necessary for spaces):

file specifies a file to start reading from.
yes indicates a function to be automatically Unicode-encapsulated.
   (All parameters either need no special processing or are LPTSTR or
   LPCTSTR.)
soon indicates a function that should be automatically Unicode-encapsulated,
   but we're not ready to process it yet.
no indicates a function we don't support (it will be #defined to cause
   a compile error, with the text after the function included in the
   erroneous definition to indicate why we don't support it).
skip indicates a function we support manually; only a comment about this
   will be generated.
split indicates a function with a split structure (different versions
   for Unicode and ANSI), but where the only difference is in pointer
   types, and the actual size does not differ.  The structure name
   should follow the function name, and it will be automatically
   Unicode-encapsulated with appropriate casts.
begin-bracket indicates a #if statement to be inserted here.
end-bracket indicates the corresponding #endif statement.
blank lines and lines beginning with // are ignored.
";

# ------------------ process command-line options ------------------

my %options;
my @SAVE_ARGV = @ARGV;

$Getopt::Long::ignorecase = 0;
&GetOptions (
	     \%options,
	     'c-output=s',
	     'h-output=s',
             'includedir=s',
	     'help',
	    );

die $usage if $options{"help"};

my $in_script;
my $slurp;

my ($cout, $hout, $dir) = ($options{"c-output"},
                          $options{"h-output"},
                          $options{"includedir"});
if (!$dir)
  {
    $dir=$ENV{"MSVCDIR"} or die "Environment variable MSVCDIR undefined - run vcvars32.bat from your MSVC installation";
    $dir.='/include';
  }
die "Can't find MSVC include files in \"$dir\"" unless (-f $dir.'/WINDOWS.H');

open (COUT, ">$cout") or die "Can't open C output file $cout: $!";
open (HOUT, ">$hout") or die "Can't open C output file $hout: $!";

select (STDOUT); $| = 1;

print COUT "/* Automatically-generated Unicode-encapsulation file,
   using the command

   $myPath$myName @SAVE_ARGV

   Do not edit.  See `$myName'.
*/

#include <config.h>
#include \"lisp.h\"

#include \"syswindows.h\"

";
print HOUT "/* Automatically-generated Unicode-encapsulation header file.
   Do not edit.  See `$myName'.
*/\n\n";

my %files;
my %processed;
my %bracket;

my $current_file;
my @current_bracket;

while (<>)
  {
    chomp;
    # remove trailing CR. #### Should not be necessary!  Perl should be
    # opening these in text mode by default, as the docs claim, and
    # automatically remove the CR's.
    tr/\r//d;

  if (/^begin-unicode-encapsulation-script$/)
    {
      $in_script = 1;
    }
    elsif (/^end-unicode-encapsulation-script$/)
      {
	$in_script = 0;
      }
    elsif ($in_script)
      {
	next if (m!^//!);
	next if (/^[ \t]*$/);
	if (/(file|yes|soon|no|skip|split|begin-bracket|end-bracket)(?: (.*))?/)
	  {
	    my ($command, $parms) = ($1, $2);
	    if ($command eq "file")
	      {
		$current_file = $parms;
	      }
	    elsif ($command eq "begin-bracket")
	      {
		my $current_bracket = $current_bracket[$#current_bracket];
		if (defined ($current_bracket))
		  {
		    $current_bracket .= "&& $parms";
		  }
		else
		  {
		    $current_bracket = "$parms";
		  }
		push @current_bracket, $current_bracket;
	      }
	    elsif ($command eq "end-bracket")
	      {
		pop @current_bracket;
	      }
	    else
	      {
		my ($fun, $reason) = split /\s+/, $parms, 2;
		$files{$current_file}{$fun} = [$command, $reason];
		$bracket{$current_file}{$fun} =
		  $current_bracket[$#current_bracket];
	      }
	  }
	else
	  {
	    print "WARNING: Unknown line $_\n";
	  }
      }
  }


foreach my $file (keys %files)
  {
    $slurp = &FileContents ($file);
    print "Processing file $file\n";
    print HOUT "\n/* Processing file $file */\n\n";
    my $totalspace = 70 - length ("Processing file $file");
    $totalspace = 0 if $totalspace < 0;
    my $alignspaceleft = $totalspace / 2;
    my $alignspaceright = ($totalspace + 1) / 2;
    print COUT "
/*----------------------------------------------------------------------*/
/*" . (" " x $alignspaceleft) . "Processing file $file" .
  (" " x $alignspaceright) . "*/
/*----------------------------------------------------------------------*/

";

    my ($ws_re, $must_ws_re, $tok_ch) =
      ("\\s*", "\\s+", "\\w");
    # unfortunately there is no surefire way short of
    # parsing all include files for typedefs to
    # distinguish types from parameters, and prototypes
    # appear in the include files both with and without
    # parameters -- the latter kinds appear in a very
    # different style and were obviously added later.  so
    # we rely on the fact that defined types are all
    # upper-case, and parameters generally are not, and
    # special-case the exceptions.
    my $typeword_re =
      # note the negative lookahead assertions: the first
      # one excludes the words "X" and "Y" from type
      # words, since they appear as parameter names in
      # CreateWindowEx; the second prevents "void
      # *Argument" from being parsed as a type "void *A"
      # followed by a parameter "rgument".
      "(?:(?!(?:X\\b|Y\\b))(?:unsigned|int|long|short|va_list|[A-Z_0-9]+)(?!${tok_ch}))";
    my $typetoken_re = "(?:$typeword_re$ws_re\\**$ws_re)";
    my $arg_re = "(?:($typetoken_re+)(${tok_ch}+)?(?: OPTIONAL)?)";
    my $fun_re = "(SHSTDAPI_\\(${tok_ch}+\\)|${tok_ch}" . "[A-Za-z_0-9 \t\n\r\f]*?${tok_ch})${ws_re}(${tok_ch}+)W${ws_re}\\(((${ws_re}${arg_re}${ws_re},)*${ws_re}${arg_re}${ws_re})\\);";

    # print "regexp: $fun_re\n";
    while ($slurp =~ /$fun_re/g)
      {
	my ($rettype, $fun, $args) = ($1, $2, $3);
	$processed{$fun} = 1;
	print "Processing: $fun";

	my ($command, $reason) = ($files{$file}{$fun}[0], $files{$file}{$fun}[1]);
	if (!defined ($command))
	  {
	    print " (no command found)\n";
	  }
	else
	  {
	    print "\n";
	    my $bracket = $bracket{$file}{$fun};
	    if (defined ($bracket))
	      {
		print HOUT "#if $bracket\n";
		print COUT "#if $bracket\n\n";
	      }
	    if ($command eq "no")
	      {
		if (!defined ($reason))
		  {
		    print "WARNING: No reason given for `no' with function $fun\n";
		    $reason = "";
		  }

		print HOUT "#undef $fun\n";
		print HOUT "#define $fun error $reason\n";
		print COUT "/* Error if $fun used: $reason */\n\n";
	      }
	    elsif ($command eq "skip")
	      {
		if (!defined ($reason))
		  {
		    print "WARNING: No reason given for `skip' with function $fun\n";
		    $reason = "";
		  }

		print HOUT "/* Skipping $fun because $reason */\n";
		print COUT "/* Skipping $fun because $reason */\n\n";
	      }
	    elsif ($command eq "soon")
	      {
		$reason = "" if !defined ($reason);

		print HOUT "/* Not yet: $fun $reason */\n";
		print COUT "/* Not yet: $fun $reason */\n\n";
	      }
	    else
	      {
		my (@args, %argtype, %ansiarg, %xarg, $split_struct,
		    $split_rettype);
		if ($command eq "split")
		  {
		    ($split_struct, $reason) = split /\s+/, $reason, 2;
		  }
		my $argno = 0;
		while ($args =~ /$arg_re/g)
		  {
		    $argno++;
		    my ($argtype, $argname) = ($1, $2);
		    $argtype =~ s/\s*$//;
		    next if $argtype eq "void" || $argtype eq "VOID";
		    $argname = "arg$argno" if !defined ($argname);
		    $argtype{$argname} = $argtype;
		    $ansiarg{$argname} = $argtype;
		    $ansiarg{$argname} =~ s/\bLPWSTR\b/LPSTR/;
		    $ansiarg{$argname} =~ s/\bLPCWSTR\b/LPCSTR/;
		    $xarg{$argname} = $argtype;
		    $xarg{$argname} =~ s/\bLPWSTR\b/Extbyte */;
		    $xarg{$argname} =~ s/\bLPCWSTR\b/const Extbyte */;
		    if (defined ($split_struct))
		      {
			my $fuck_cperl1 = "\\b${split_struct}W\\b";
			my $fuck_cperl2 = "${split_struct}A";
			$ansiarg{$argname} =~ s/$fuck_cperl1/$fuck_cperl2/;
		      }
		    push @args, $argname;
		}
		$rettype =~ s/\bSHSTDAPI_\((.*)\)/$1/;
		$rettype =~ s/\s*WIN\w*?API\s*//g;
		$rettype =~ s/\bAPIENTRY\b//;
		$rettype =~ s/\bSHSTDAPI\b/HRESULT/;
		if ($rettype =~ /LPC?WSTR/)
		  {
		    $split_rettype = 1;
		    $rettype =~ s/\bLPWSTR\b/Extbyte */;
		    $rettype =~ s/\bLPCWSTR\b/const Extbyte */;
		  }
		print HOUT "#ifdef ERROR_WHEN_NONINTERCEPTED_FUNS_USED\n";
		print HOUT "#undef $fun\n";
		print HOUT "#define $fun error use qxe$fun or ${fun}A/${fun}W\n";
		print HOUT "#endif\n";
		if (defined ($reason))
		  {
		    print COUT "/* NOTE: $reason */\n";
		  }
		print COUT "$rettype\nqxe$fun (";
		print HOUT "$rettype qxe$fun (";
		my $first = 1;
		if (!@args)
		  {
		    print COUT "void";
		    print HOUT "void";
		  }
		else
		  {
		    foreach my $x (@args)
		      {
			print COUT ", " if !$first;
			print HOUT ", " if !$first;
			$first = 0;
			print COUT "$xarg{$x} $x";
			print HOUT "$xarg{$x} $x";
		      }
		  }
		print HOUT ");\n";
		print COUT ")\n{\n  if (XEUNICODE_P)\n    ";
		if ($rettype ne "void" && $rettype ne "VOID")
		  {
		    print COUT "return ";
		    print COUT "($rettype) " if $split_rettype;
		  }
		print COUT "${fun}W (";
		$first = 1;
		foreach my $x (@args)
		  {
		    print COUT ", " if !$first;
		    $first = 0;
		    print COUT ($argtype{$x} eq $xarg{$x} ? $x :
				"($argtype{$x}) $x");
		  }
		print COUT ");\n  else\n    ";
		if ($rettype ne "void" && $rettype ne "VOID")
		  {
		    print COUT "return ";
		    print COUT "($rettype) " if $split_rettype;
		  }
		print COUT "${fun}A (";
		$first = 1;
		foreach my $x (@args)
		  {
		    print COUT ", " if !$first;
		    $first = 0;
		    print COUT ($argtype{$x} eq $ansiarg{$x} ? $x :
				"($ansiarg{$x}) $x");
		  }
		print COUT ");\n}\n\n";
	      }
	    if (defined ($bracket))
	      {
		print HOUT "#endif /* $bracket */\n";
		print COUT "#endif /* $bracket */\n\n";
	      }
	    print HOUT "\n";
	  }
      }
  }

foreach my $file (keys %files)
  {
    foreach my $fun (keys %{$files{$file}})
      {
	if (!$processed{$fun} && $files{$file}{$fun}[0] =~ /^(yes|soon|split)$/)
	  {
	    print "WARNING: Can't locate prototype for $fun\n";
	  }
      }
  }


sub FileContents
{
  local $/ = undef;
  open (FILE, "< $dir/$_[0]") or die "$dir/$_[0]: $!";
  my $retval = scalar <FILE>;
  # must hack away CRLF junk.
  $retval =~ s/\r\n/\n/g;
  return $retval;
}