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Common.pm
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Common.pm
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package Common;
use utf8;
use strict;
use warnings;
BEGIN {
use Exporter ();
our $VERSION = 1.00;
our @ISA = qw(Exporter);
our @EXPORT = qw(
$main_namespace $export_prefix
%types %type_files %globals %global_files *typename *filename
&parse_address &check_bad_attrs &check_name
&is_attr_true &type_header_def &add_type_to_hash &add_global_to_hash
*lines *indentation &with_emit &emit &indent &outdent &emit_block
&is_primitive_type &primitive_type_name &get_primitive_base
*weak_refs *strong_refs *header_refs &header_ref ®ister_ref &decode_type_name_ref
&with_capture_traits &with_emit_traits
*cur_header_name %header_data &with_header_file
%static_lines %static_includes &static_include_type &with_emit_static
&ensure_name &with_anon
&fully_qualified_name &type_identity_reference
&get_comment &emit_comment
*field_defs &generate_field_table
);
our %EXPORT_TAGS = ( ); # eg: TAG => [ qw!name1 name2! ],
our @EXPORT_OK = qw( );
}
END { }
use XML::LibXML;
our $main_namespace = '';
our $export_prefix = '';
our %types;
our %type_files;
our %globals;
our %global_files;
# Misc XML analysis
our $typename;
our $filename;
sub parse_address($;$) {
my ($str,$in_bits) = @_;
return undef unless defined $str;
# Parse the format used by offset attributes in xml
$str =~ /^0x([0-9a-f]+)(?:\.([0-7]))?$/
or die "Invalid address syntax: $str\n";
my ($full, $bv) = ($1, $2);
die "Bits not allowed: $str\n" unless $in_bits;
return $in_bits ? (hex($full)*8 + ($bv||0)) : hex($full);
}
sub check_bad_attrs($;$$) {
my ($tag, $allow_size, $allow_align) = @_;
die "Cannot use size, alignment or offset for ".$tag->nodeName."\n"
if ((!$allow_size && defined $tag->getAttribute('size')) ||
defined $tag->getAttribute('offset') ||
(!$allow_align && defined $tag->getAttribute('alignment')));
}
sub check_name($) {
my ($name) = @_;
$name =~ /^[_a-zA-Z][_a-zA-Z0-9]*$/
or die "Invalid identifier: $name\n";
return $name;
}
sub is_attr_true($$) {
my ($tag, $name) = @_;
return ($tag->getAttribute($name)||'') eq 'true';
}
sub type_header_def($) {
my ($name) = @_;
return uc($main_namespace).'_'.uc($name).'_H';
}
sub add_type_to_hash($) {
my ($type) = @_;
my $name = $type->getAttribute('type-name')
or die "Type without a name in $filename\n";
die "Duplicate definition of $name in $filename\n" if $types{$name};
local $typename = $name;
check_bad_attrs $type;
$types{$name} = $type;
$type_files{$name} = $filename;
}
sub add_global_to_hash($) {
my ($type) = @_;
my $name = $type->getAttribute('name')
or die "Global without a name in $filename\n";
die "Duplicate definition of global $name in $filename\n" if $globals{$name};
local $typename = $name;
check_bad_attrs $type;
$globals{$name} = $type;
$global_files{$name} = $filename;
}
# Text generation with indentation
our @lines;
our $indentation = 0;
sub with_emit(&;$) {
# Executes the code block, and returns emitted lines
my ($blk, $start_indent) = @_;
local @lines;
local $indentation = ($start_indent||0);
$blk->();
return @lines;
}
sub emit(@) {
# Emit an indented line to be returned from with_emit
my $line = join('',map { defined($_) ? $_ : '' } @_);
$line = (' 'x$indentation).$line unless length($line) == 0;
push @lines, $line;
}
sub indent(&) {
# Indent lines emitted from the block by one step
my ($blk) = @_;
local $indentation = $indentation+2;
$blk->();
}
sub outdent(&) {
# Unindent lines emitted from the block by one step
my ($blk) = @_;
local $indentation = ($indentation >= 2 ? $indentation-2 : 0);
$blk->();
}
sub emit_block(&;$$%) {
# Emit a full {...} block with indentation
my ($blk, $prefix, $suffix, %flags) = @_;
my @inner = &with_emit($blk,$indentation+2);
return if $flags{-auto} && !@inner;
$prefix ||= '';
$suffix ||= '';
emit $prefix,'{';
push @lines, @inner;
emit '}',$suffix;
}
# Primitive types
my @primitive_type_list =
qw(int8_t uint8_t int16_t uint16_t
int32_t uint32_t int64_t uint64_t
long
s-float d-float
bool flag-bit
padding static-string);
my %primitive_aliases = (
's-float' => 'float',
'd-float' => 'double',
'static-string' => 'char',
'flag-bit' => 'void',
'padding' => 'void',
);
my %primitive_types;
$primitive_types{$_}++ for @primitive_type_list;
sub is_primitive_type($) {
return $primitive_types{$_[0]};
}
sub primitive_type_name($) {
my ($tag_name) = @_;
$primitive_types{$tag_name}
or die "Not primitive: $tag_name\n";
return $primitive_aliases{$tag_name} || $tag_name;
}
sub get_primitive_base($;$) {
my ($tag, $default) = @_;
my $base = $tag->getAttribute('base-type') || $default || 'uint32_t';
if ($base =~ /u?int[136]?[2468]_t/) {
header_ref("cstdint");
}
$primitive_types{$base} or die "Must be primitive: $base\n";
return $base;
}
# Type references
our %weak_refs;
our %strong_refs;
our %header_refs;
sub register_ref($;$) {
# Register a reference to another type.
# Strong ones require the type to be included.
my ($ref, $is_strong) = @_;
if ($ref) {
my $type = $types{$ref}
or die "Unknown type $ref referenced.\n";
if ($is_strong) {
$strong_refs{$ref}++;
} else {
$weak_refs{$ref}++;
}
return $type;
} else {
return undef;
}
}
sub header_ref($;$) {
my ($header) = @_;
$header_refs{$header}++;
}
sub decode_type_name_ref($;%) {
# Interpret the type-name field of a tag
my ($tag,%flags) = @_;
my $force_type = $flags{-force_type};
my $attr = $flags{-attr_name} || 'type-name';
my $tname = $tag->getAttribute($attr) or return undef;
if ($primitive_types{$tname}) {
die "Cannot use type $tname as $attr here: $tag\n"
if ($force_type && $force_type ne 'primitive');
return primitive_type_name($tname);
} else {
register_ref $tname, !$flags{-weak};
die "Cannot use type $tname as $attr here: $tag\n"
if ($force_type && $force_type ne $types{$tname}->getAttribute('ld:meta'));
my $rtype = $main_namespace.'::'.$tname;
return wantarray ? ($rtype, $types{$tname}) : $rtype;
}
}
# Trait generation
our @trait_lines;
our $trait_indent = 2;
sub with_capture_traits(&) {
my ($blk) = @_;
local $trait_indent = $indentation;
local @trait_lines = ();
$blk->();
push @lines, @trait_lines;
}
sub with_emit_traits(&) {
my ($blk) = @_;
push @trait_lines, &with_emit($blk,$trait_indent);
}
# Include file generation
our $cur_header_name;
our %header_data;
sub with_header_file(&$) {
my ($handler, $header_name) = @_;
local $cur_header_name = $header_name;
local %weak_refs;
local %strong_refs;
local %header_refs;
# Emit the actual type definition
my @code = with_emit {
with_capture_traits {
&with_anon($handler);
};
} 2;
delete $weak_refs{$header_name};
delete $strong_refs{$header_name};
# Add wrapping
my @all = with_emit {
my $def = type_header_def($header_name);
emit "#pragma once";
emit "#ifdef __GNUC__";
emit "#pragma GCC system_header";
emit "#endif";
for my $strong (sort { $a cmp $b } keys %header_refs) {
emit "#include \"$strong\"";
}
for my $strong (sort { $a cmp $b } keys %strong_refs) {
emit "#include \"$strong.h\"";
}
emit_block {
for my $weak (sort { $a cmp $b } keys %weak_refs) {
next if $strong_refs{$weak};
my $ttype = $types{$weak};
my $meta = $ttype->getAttribute('ld:meta');
my $tstr = 'struct';
$tstr = 'enum' if $meta eq 'enum-type';
$tstr = 'union' if $meta eq 'bitfield-type';
$tstr = 'union' if ($meta eq 'struct-type' && is_attr_true($ttype,'is-union'));
emit $tstr, ' ', $weak, ';';
}
push @lines, @code;
} "namespace $main_namespace ";
};
$header_data{$header_name} = \@all;
}
# Static file output
our $cur_static;
our %static_lines;
our %static_includes;
sub static_include_type($) {
$static_includes{$cur_static}{$_[0]}++;
}
sub with_emit_static(&;$) {
my ($blk, $tag) = @_;
$tag ||= '';
local $cur_static = $tag;
my @inner = &with_emit($blk,2) or return;
$static_includes{$tag}{$cur_header_name}++ if $cur_header_name;
push @{$static_lines{$tag}}, @inner;
}
# Anonymous variable names
our $anon_id = 0;
our $anon_prefix;
sub ensure_name($) {
# If the name is empty, assign an auto-generated one
my ($name) = @_;
unless ($name) {
$name = $anon_prefix.(($anon_id == 0) ? '' : '_'.$anon_id);
$anon_id++;
}
return check_name($name);
}
sub with_anon(&;$) {
# Establish a new anonymous namespace
my ($blk,$stem) = @_;
local $anon_id = $stem ? 0 : 1;
local $anon_prefix = ($stem||'anon');
$blk->();
}
# Global type names
sub fully_qualified_name($$;$) {
my ($tag, $name, $no_ns) = @_;
my @names;
push @names, $main_namespace unless $no_ns;
for my $parent ($tag->findnodes('ancestor::*')) {
if ($parent->nodeName eq 'ld:global-type') {
push @names, $parent->getAttribute('type-name');
} elsif ($parent->nodeName eq 'ld:global-object') {
push @names, 'global';
} elsif (my $n = $parent->getAttribute('ld:typedef-name')) {
push @names, $n;
}
}
push @names, $name if defined $name;
return join('::',@names);
}
sub type_identity_reference($%) {
my ($tag, %flags) = @_;
return 'NULL' unless $tag;
my $name = $tag->nodeName;
if ($flags{-parent}) {
while (defined $tag) {
$tag = $tag->parentNode;
last unless $tag;
$name = $tag->nodeName;
if ($name eq 'ld:data-definition') {
$tag = undef;
last;
}
last if $name eq 'ld:global-type';
last if $name eq 'ld:global-object';
last if $tag->getAttribute('ld:typedef-name');
}
return 'NULL' unless $tag;
}
return '&global::_identity' if $name eq 'ld:global-object';
my $meta = $tag->getAttribute('ld:meta');
my $subtype = $tag->getAttribute('ld:subtype')||'';
my $tname;
if ($name eq 'ld:global-type') {
$tname = $tag->getAttribute('type-name');
} elsif ($meta eq 'compound') {
$tname = $tag->getAttribute('ld:typedef-name')
} else {
return undef if $flags{-allow_complex};
}
$tname or die "No type name: ".$tag->toString();
my $fqn = fully_qualified_name($tag, $tname, 1);
if ($meta eq 'enum-type' || $subtype eq 'enum' ||
$meta eq 'bitfield-type' || $subtype eq 'bitfield' ||
is_attr_true($tag, 'ld:in-union'))
{
return 'TID('.$fqn.')';
} else {
return '&'.$fqn.'::_identity';
}
}
# Comments
sub get_comment($) {
my ($tag) = @_;
return '' unless $tag;
my $since = $tag->getAttribute('since');
my $comment = $tag->getAttribute('comment');
my $val = '';
if ($since) {
$val = $val . 'since ' . $since;
if ($comment) {
$val = $val . '; ';
}
}
if ($comment) {
$val = $val . $comment;
}
if ($val) {
return ' /*!< '.$val.' */';
} else {
return '';
}
}
sub emit_comment($;%) {
my ($tag,%flags) = @_;
return unless $tag;
my $val = $tag->findvalue('child::comment');
if ($flags{-attr}) {
my $attr = $tag->getAttribute('comment');
if ($attr && $val) {
$val = $attr."\n".$val;
} else {
$val ||= $attr;
}
my $since = $tag->getAttribute('since');
if ($since) {
$val .= "\nSince " . $since;
}
}
if ($val) {
emit '/**';
for my $line (split(/\n/, $val)) {
$line =~ s/^\s*//;
$line =~ s/\s*$//;
next if $line eq '';
emit ' * ', $line;
}
emit ' */';
}
}
# Field tables
our @field_defs;
sub generate_field_table(&$) {
my ($blk, $full_name) = @_;
local @field_defs;
my $ftable_name = $full_name.'_fields';
$ftable_name =~ s/::/_doT_Dot_/g;
$ftable_name =~ s/</_lT_/g;
$ftable_name =~ s/>/_Gt_/g;
&with_anon($blk, 'T_'.$ftable_name);
return 'NULL' unless @field_defs;
emit "#define CUR_STRUCT $full_name";
emit_block {
emit '{ ', join(', ', @$_), ' },' for @field_defs;
emit "{ FLD_END }";
} "static const struct_field_info ${ftable_name}[] = ", ";";
emit "#undef CUR_STRUCT";
return $ftable_name;
}
1;