Mercurial > hg > xemacs-beta
view lib-src/make-mswin-unicode.pl @ 5142:f965e31a35f0
reduce lcrecord headers to 2 words, rename printing_unreadable_object
-------------------- ChangeLog entries follow: --------------------
man/ChangeLog addition:
2010-03-13 Ben Wing <ben@xemacs.org>
* internals/internals.texi (Working with Lisp Objects):
* internals/internals.texi (Writing Macros):
* internals/internals.texi (lrecords):
More rewriting to correspond with changes from
*LRECORD* to *LISP_OBJECT*.
modules/ChangeLog addition:
2010-03-13 Ben Wing <ben@xemacs.org>
* postgresql/postgresql.c (print_pgconn):
* postgresql/postgresql.c (print_pgresult):
printing_unreadable_object -> printing_unreadable_object_fmt.
2010-03-13 Ben Wing <ben@xemacs.org>
* ldap/eldap.c (print_ldap):
printing_unreadable_object -> printing_unreadable_object_fmt.
src/ChangeLog addition:
2010-03-13 Ben Wing <ben@xemacs.org>
* alloc.c (alloc_sized_lrecord_1):
* alloc.c (alloc_sized_lrecord_array):
* alloc.c (old_alloc_sized_lcrecord):
* alloc.c (disksave_object_finalization_1):
* alloc.c (mark_lcrecord_list):
* alloc.c (alloc_managed_lcrecord):
* alloc.c (free_managed_lcrecord):
* alloc.c (tick_lcrecord_stats):
* alloc.c (sweep_lcrecords_1):
* buffer.c (print_buffer):
* buffer.c (DEFVAR_BUFFER_LOCAL_1):
* casetab.c:
* casetab.c (print_case_table):
* console.c (print_console):
* console.c (DEFVAR_CONSOLE_LOCAL_1):
* data.c (print_weak_list):
* data.c (print_weak_box):
* data.c (print_ephemeron):
* data.c (ephemeron_equal):
* database.c (print_database):
* database.c (finalize_database):
* device-msw.c (sync_printer_with_devmode):
* device-msw.c (print_devmode):
* device-msw.c (finalize_devmode):
* device.c:
* device.c (print_device):
* elhash.c:
* elhash.c (print_hash_table):
* eval.c (print_subr):
* eval.c (print_multiple_value):
* event-stream.c (event_stream_resignal_wakeup):
* events.c (clear_event_resource):
* events.c (zero_event):
* events.c (print_event):
* extents.c:
* extents.c (print_extent):
* file-coding.c (print_coding_system):
* font-mgr.c:
* font-mgr.c (Ffc_init):
* frame.c:
* frame.c (print_frame):
* gc.c:
* gc.c (GC_CHECK_NOT_FREE):
* glyphs.c:
* glyphs.c (print_image_instance):
* glyphs.c (print_glyph):
* gui.c (print_gui_item):
* gui.c (copy_gui_item):
* keymap.c (print_keymap):
* keymap.c (MARKED_SLOT):
* lisp.h:
* lisp.h (struct Lisp_String):
* lisp.h (DEFUN):
* lisp.h (DEFUN_NORETURN):
* lrecord.h:
* lrecord.h (NORMAL_LISP_OBJECT_UID):
* lrecord.h (struct lrecord_header):
* lrecord.h (set_lheader_implementation):
* lrecord.h (struct old_lcrecord_header):
* lrecord.h (struct free_lcrecord_header):
* marker.c (print_marker):
* mule-charset.c:
* mule-charset.c (print_charset):
* objects.c (print_color_instance):
* objects.c (print_font_instance):
* objects.c (finalize_font_instance):
* print.c (print_cons):
* print.c (printing_unreadable_object_fmt):
* print.c (printing_unreadable_lisp_object):
* print.c (external_object_printer):
* print.c (internal_object_printer):
* print.c (debug_p4):
* print.c (ext_print_begin):
* process.c (print_process):
* rangetab.c (print_range_table):
* rangetab.c (range_table_equal):
* scrollbar.c (free_scrollbar_instance):
* specifier.c (print_specifier):
* specifier.c (finalize_specifier):
* symbols.c (guts_of_unbound_marker):
* symeval.h:
* symeval.h (DEFVAR_SYMVAL_FWD):
* tooltalk.c:
* tooltalk.c (print_tooltalk_message):
* tooltalk.c (print_tooltalk_pattern):
* ui-gtk.c (ffi_object_printer):
* ui-gtk.c (emacs_gtk_object_printer):
* ui-gtk.c (emacs_gtk_boxed_printer):
* window.c (print_window):
* window.c (free_window_mirror):
* window.c (debug_print_window):
* xemacs.def.in.in:
(1) printing_unreadable_object -> printing_unreadable_object_fmt.
(2) printing_unreadable_lcrecord -> printing_unreadable_lisp_object
and fix up so it no longer requires an lcrecord.
These previous changes eliminate most of the remaining places where
the terms `lcrecord' and `lrecord' occurred outside of specialized
code.
(3) Fairly major change: Reduce the number of words in an lcrecord
from 3 to 2. The third word consisted of a uid that duplicated the
lrecord uid, and a single free bit, which was moved into the lrecord
structure. This reduces the size of the `uid' slot from 21 bits to
20 bits. Arguably this isn't enough -- we could easily have more than
1,000,000 or so objects created in a session. The answer is
(a) It doesn't really matter if we overflow the uid field because
it's only used for debugging, to identify an object uniquely
(or pretty much so).
(b) If we cared about it overflowing and wanted to reduce this,
we could make it so that cons, string, float and certain other
frob-block types that never print out the uid simply don't
store a uid in them and don't increment the lrecord_uid_counter.
(4) In conjunction with (3), create new macro NORMAL_LISP_OBJECT_UID()
and use it to abstract out the differences between NEWGC and old-GC
in accessing the `uid' value from a "normal Lisp Object pointer".
(5) In events.c, use zero_nonsized_lisp_object() in place of custom-
written equivalent. In font-mgr.c use external_object_printer()
in place of custom-written equivalents.
author | Ben Wing <ben@xemacs.org> |
---|---|
date | Sat, 13 Mar 2010 05:38:08 -0600 |
parents | 7eec2a1f3412 |
children | 308d34e9f07d |
line wrap: on
line source
: #-*- Perl -*- ### make-mswin-unicode --- generate Unicode-encapsulation code for MS Windows ## Copyright (C) 2001, 2002, 2004, 2010 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.) override indidates a function where the prototype can be overridden due to errors in Cygwin or Visual Studio. 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). review indicates a function that we still need to review to determine whether or how to support it. This has the same effect as `no', with a comment indicating that the function needs review. 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"}); $dir = '/usr/include/w32api' if !$dir && -f '/usr/include/w32api/windows.h'; if (!$dir) { for my $sdkroot (("WindowsSdkDir", "MSSdk", "MSVCDIR")) { if (defined $ENV{$sdkroot}) { $dir = $ENV{$sdkroot}; last; } } unless (defined $dir) { die "Can't find the Windows SDK headers; run vcvars32.bat from your MSVC installation, or setenv.cmd from the Platform SDK installation"; } } $dir.='/include' if ((-f $dir.'/include/WINDOWS.H') || (-f $dir.'/include/windows.h')); die "Can't find MSVC include files in \"$dir\"" unless ((-f $dir.'/WINDOWS.H') || (-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 $current_file; my @current_bracket; my ($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 $typeword_re = # note the negative lookahead assertions: the first # one excludes the words "X" and "Y" from type # words, since they appear as parameter names in # CreateWindowEx; the second prevents "void # *Argument" from being parsed as a type "void *A" # followed by a parameter "rgument". "(?:(?!(?:X\\b|Y\\b))(?:unsigned|int|long|const|short|va_list|[A-Z_0-9]+)(?!${tok_ch}))"; my $typetoken_re = "(?:$typeword_re$ws_re\\**$ws_re)"; # Regexp matching a particular argument my $arg_re = "(?:(?:$typetoken_re+)(?:${tok_ch}+)?(?: OPTIONAL)?)"; # Same, but with groups to match the type and name my $argmatch_re = "(?:($typetoken_re+)(${tok_ch}+)?(?: OPTIONAL)?)"; # regexp matching a parenthesized argument list in a prototype my $args_re = "\\(((?:${ws_re}${arg_re}${ws_re},)*${ws_re}${arg_re}${ws_re})\\)"; # regexp matching a return type in a protype my $rettype_re = "(SHSTDAPI_\\(${tok_ch}+\\)|${tok_ch}" . "[A-Za-z_0-9 \t\n\r\f]*?${tok_ch})"; # regexp matching a function name my $funname_re = "(${tok_ch}+)"; # Regexp matching a function prototype, $1 = rettype, $2 = name, $3 = args my $fun_re = "${rettype_re}${ws_re}${funname_re}${ws_re}${args_re};"; # Regexp matching a particular Unicode function (ending in ...W) my $wfun_re = "${rettype_re}${ws_re}${funname_re}W${ws_re}${args_re};"; # print "regexp: $wfun_re\n"; while (<>) { chomp; # remove trailing CR. #### Should not be necessary! Perl should be # opening these in text mode by default, as the docs claim, and # automatically remove the CR's. tr/\r//d; if (/^begin-unicode-encapsulation-script$/) { $in_script = 1; } elsif (/^end-unicode-encapsulation-script$/) { $in_script = 0; } elsif ($in_script) { next if (m!^//!); next if (/^[ \t]*$/); if (/(file|yes|soon|no|review|skip|split|begin-bracket|end-bracket|override)(?: (.*))?/) { my ($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; } elsif ($command eq "override") { die "Cannot parse prototype $parms" unless $parms =~ /$wfun_re(?: ?(.*))?/; my ($rettype, $fun, $args, $reason) = ($1, $2, $3, $4); $files{$current_file}{$fun} = [$command, $reason, $rettype, $fun, $args]; $bracket{$current_file}{$fun} = $current_bracket[$#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 $alignspaceright) . "*/ /*----------------------------------------------------------------------*/ "; while ($slurp =~ /$wfun_re/g) { my ($rettype, $fun, $args) = ($1, $2, $3); if ($processed{$fun}) { print "Warning: Function $fun already seen\n"; next; } $processed{$fun} = 1; print "Processing: $fun"; #my ($command, $reason) = ($files{$file}{$fun}[0], $files{$file}{$fun}[1]); # Fuck perl! There seems to be no way to write something like # my ($command, $reason) = @$files{$file}{$fun}; # You have to use a temporary var. my $filesarr = $files{$file}{$fun}; my ($command, $reason) = @$filesarr; 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" || $command eq "review") { $reason = "Function needs review to determine how to handle it" if !defined ($reason) && $command eq "review"; if (!defined ($reason)) { print "WARNING: No reason given for `no' with function $fun\n"; $reason = ""; } print HOUT "#undef $fun\n"; (my $munged_reason = $reason) =~ s/[^A-Za-z0-9]/_/g; print HOUT "#define $fun error_$munged_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+/, $reason, 2; } elsif ($command eq "override") { my ($nrettype, $nfun, $nargs) = @$filesarr[2 .. 4]; $reason = "$reason.\n NOTE: " if $reason; $reason = "${reason}Prototype manually overridden. Header file claims: $rettype $fun($args) Overridden with: $nrettype $nfun($nargs) Differences in return-type qualifiers, e.g. WINAPI, are not important. "; ($rettype, $fun, $args) = ($nrettype, $nfun, $nargs); } my $argno = 0; while ($args =~ /$argmatch_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\s*//; $rettype =~ s/\bSHSTDAPI\b/HRESULT/; $rettype =~ s/\bextern\b\s*//; if ($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_${fun}A_and_${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; }