nasm/insns.pl

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11 KiB
Perl
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#!/usr/bin/perl
#
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# insns.pl produce insnsa.c, insnsd.c, insnsi.h, insnsn.c from insns.dat
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#
# The Netwide Assembler is copyright (C) 1996 Simon Tatham and
# Julian Hall. All rights reserved. The software is
# redistributable under the license given in the file "LICENSE"
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# distributed in the NASM archive.
# Opcode prefixes which need their own opcode tables
# LONGER PREFIXES FIRST!
@disasm_prefixes = qw(0F24 0F25 0F38 0F3A 0F7A 0FA6 0FA7 0F);
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print STDERR "Reading insns.dat...\n";
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@args = ();
undef $output;
foreach $arg ( @ARGV ) {
if ( $arg =~ /^\-/ ) {
if ( $arg =~ /^\-([abdin])$/ ) {
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$output = $1;
} else {
die "$0: Unknown option: ${arg}\n";
}
} else {
push (@args, $arg);
}
}
$fname = "insns.dat" unless $fname = $args[0];
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open (F, $fname) || die "unable to open $fname";
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%dinstables = ();
@bytecode_list = ();
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$line = 0;
$insns = 0;
while (<F>) {
$line++;
next if /^\s*;/; # comments
chomp;
split;
next if $#_ == -1; # blank lines
(warn "line $line does not contain four fields\n"), next if $#_ != 3;
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($formatted, $nd) = &format(@_);
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if ($formatted) {
$insns++;
$aname = "aa_$_[0]";
push @$aname, $formatted;
}
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if ( $_[0] =~ /cc$/ ) {
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# Conditional instruction
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$k_opcodes_cc{$_[0]}++;
} else {
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# Unconditional instruction
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$k_opcodes{$_[0]}++;
}
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if ($formatted && !$nd) {
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push @big, $formatted;
my @sseq = startseq($_[2]);
foreach $i (@sseq) {
if (!defined($dinstables{$i})) {
$dinstables{$i} = [];
}
push(@{$dinstables{$i}}, $#big);
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}
}
}
close F;
#
# Generate the bytecode array. At this point, @bytecode_list contains
# the full set of bytecodes.
#
# Sort by descending length
@bytecode_list = sort { scalar(@$b) <=> scalar(@$a) } @bytecode_list;
@bytecode_array = ();
%bytecode_pos = ();
$bytecode_next = 0;
foreach $bl (@bytecode_list) {
my $h = hexstr(@$bl);
next if (defined($bytecode_pos{$h}));
push(@bytecode_array, $bl);
while ($h ne '') {
$bytecode_pos{$h} = $bytecode_next;
$h = substr($h, 2);
$bytecode_next++;
}
}
undef @bytecode_list;
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@opcodes = sort keys(%k_opcodes);
@opcodes_cc = sort keys(%k_opcodes_cc);
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if ( !defined($output) || $output eq 'b') {
print STDERR "Writing insnsb.c...\n";
open B, ">insnsb.c";
print B "/* This file auto-generated from insns.dat by insns.pl" .
" - don't edit it */\n\n";
print B "#include \"nasm.h\"\n";
print B "#include \"insns.h\"\n\n";
print B "static const uint8_t nasm_bytecodes[$bytecode_next] = {\n";
$p = 0;
foreach $bl (@bytecode_array) {
printf B " /* %4d */ ", $p;
foreach $d (@$bl) {
printf B "%#o,", $d;
$p++;
}
printf B "\n";
}
print B "};\n";
close B;
}
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if ( !defined($output) || $output eq 'a' ) {
print STDERR "Writing insnsa.c...\n";
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open A, ">insnsa.c";
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print A "/* This file auto-generated from insns.dat by insns.pl" .
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" - don't edit it */\n\n";
print A "#include \"insnsb.c\"\n\n";
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foreach $i (@opcodes, @opcodes_cc) {
print A "static const struct itemplate instrux_${i}[] = {\n";
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$aname = "aa_$i";
foreach $j (@$aname) {
print A " ", codesubst($j), "\n";
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}
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print A " ITEMPLATE_END\n};\n\n";
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}
print A "const struct itemplate * const nasm_instructions[] = {\n";
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foreach $i (@opcodes, @opcodes_cc) {
print A " instrux_${i},\n";
}
print A "};\n";
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close A;
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}
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if ( !defined($output) || $output eq 'd' ) {
print STDERR "Writing insnsd.c...\n";
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open D, ">insnsd.c";
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print D "/* This file auto-generated from insns.dat by insns.pl" .
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" - don't edit it */\n\n";
print D "#include \"insnsb.c\"\n\n";
print D "static const struct itemplate instrux[] = {\n";
$n = 0;
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foreach $j (@big) {
printf D " /* %4d */ %s\n", $n++, codesubst($j);
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}
print D "};\n";
foreach $h (sort(keys(%dinstables))) {
print D "\nstatic const struct itemplate * const itable_${h}[] = {\n";
foreach $j (@{$dinstables{$h}}) {
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print D " instrux + $j,\n";
}
print D "};\n";
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}
foreach $h (@disasm_prefixes, '') {
$is_prefix{$h} = 1;
print D "\n";
print D "static " unless ($h eq '');
print D "const struct disasm_index ";
print D ($h eq '') ? 'itable' : "itable_$h";
print D "[256] = {\n";
for ($c = 0; $c < 256; $c++) {
$nn = sprintf("%s%02X", $h, $c);
if ($is_prefix{$nn}) {
die "$0: ambiguous decoding of $nn\n"
if (defined($dinstables{$nn}));
printf D " { itable_%s, -1 },\n", $nn;
} elsif (defined($dinstables{$nn})) {
printf D " { itable_%s, %u },\n",
$nn, scalar(@{$dinstables{$nn}});
} else {
printf D " { NULL, 0 },\n";
}
}
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print D "};\n";
}
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close D;
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}
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if ( !defined($output) || $output eq 'i' ) {
print STDERR "Writing insnsi.h...\n";
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open I, ">insnsi.h";
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print I "/* This file is auto-generated from insns.dat by insns.pl" .
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" - don't edit it */\n\n";
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print I "/* This file in included by nasm.h */\n\n";
print I "/* Instruction names */\n\n";
print I "#ifndef NASM_INSNSI_H\n";
print I "#define NASM_INSNSI_H 1\n\n";
print I "enum opcode {\n";
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$maxlen = 0;
foreach $i (@opcodes, @opcodes_cc) {
print I "\tI_${i},\n";
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$len = length($i);
$len++ if ( $i =~ /cc$/ ); # Condition codes can be 3 characters long
$maxlen = $len if ( $len > $maxlen );
}
print I "\tI_none = -1\n";
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print I "\n};\n\n";
print I "#define MAX_INSLEN ", $maxlen, "\n\n";
print I "#endif /* NASM_INSNSI_H */\n";
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close I;
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}
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if ( !defined($output) || $output eq 'n' ) {
print STDERR "Writing insnsn.c...\n";
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open N, ">insnsn.c";
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print N "/* This file is auto-generated from insns.dat by insns.pl" .
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" - don't edit it */\n\n";
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print N "/* This file in included by names.c */\n\n";
print N "static const char * const insn_names[] = {";
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$first = 1;
foreach $i (@opcodes) {
print N "," if ( !$first );
$first = 0;
$ilower = $i;
$ilower =~ tr/A-Z/a-z/; # Change to lower case (Perl 4 compatible)
print N "\n\t\"${ilower}\"";
}
print N "\n};\n\n";
print N "/* Conditional instructions */\n";
print N "static const char *icn[] = {";
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$first = 1;
foreach $i (@opcodes_cc) {
print N "," if ( !$first );
$first = 0;
$ilower = $i;
$ilower =~ s/cc$//; # Skip cc suffix
$ilower =~ tr/A-Z/a-z/; # Change to lower case (Perl 4 compatible)
print N "\n\t\"${ilower}\"";
}
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print N "\n};\n\n";
print N "/* and the corresponding opcodes */\n";
print N "static const enum opcode ico[] = {";
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$first = 1;
foreach $i (@opcodes_cc) {
print N "," if ( !$first );
$first = 0;
print N "\n\tI_$i";
}
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print N "\n};\n";
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close N;
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}
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printf STDERR "Done: %d instructions\n", $insns;
sub format {
my ($opcode, $operands, $codes, $flags) = @_;
my $num, $nd = 0;
my @bytecode;
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return (undef, undef) if $operands eq "ignore";
# format the operands
$operands =~ s/:/|colon,/g;
$operands =~ s/mem(\d+)/mem|bits$1/g;
$operands =~ s/mem/memory/g;
$operands =~ s/memory_offs/mem_offs/g;
$operands =~ s/imm(\d+)/imm|bits$1/g;
$operands =~ s/imm/immediate/g;
$operands =~ s/rm(\d+)/rm_gpr|bits$1/g;
$operands =~ s/(mmx|xmm|ymm)rm/rm_$1/g;
$operands =~ s/\=([0-9]+)/same_as|$1/g;
if ($operands eq 'void') {
@ops = ();
} else {
@ops = split(/\,/, $operands);
}
$num = scalar(@ops);
while (scalar(@ops) < 4) {
push(@ops, '0');
}
$operands = join(',', @ops);
$operands =~ tr/a-z/A-Z/;
# format the flags
$flags =~ s/,/|IF_/g;
$flags =~ s/(\|IF_ND|IF_ND\|)//, $nd = 1 if $flags =~ /IF_ND/;
$flags = "IF_" . $flags;
@bytecode = (decodify($codes), 0);
push(@bytecode_list, [@bytecode]);
$codes = hexstr(@bytecode);
("{I_$opcode, $num, {$operands}, \@\@CODES-$codes\@\@, $flags},", $nd);
}
#
# Look for @@CODES-xxx@@ sequences and replace them with the appropriate
# offset into nasm_bytecodes
#
sub codesubst($) {
my($s) = @_;
my $n;
while ($s =~ /\@\@CODES-([0-9A-F]+)\@\@/) {
my $pos = $bytecode_pos{$1};
if (!defined($pos)) {
die "$0: no position assigned to byte code $1\n";
}
$s = $` . "nasm_bytecodes+${pos}" . "$'";
}
return $s;
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}
sub addprefix ($@) {
my ($prefix, @list) = @_;
my $x;
my @l = ();
foreach $x (@list) {
push(@l, sprintf("%s%02X", $prefix, $x));
}
return @l;
}
#
# Turn a code string into a sequence of bytes
#
sub decodify($) {
# Although these are C-syntax strings, by convention they should have
# only octal escapes (for directives) and hexadecimal escapes
# (for verbatim bytes)
my($codestr) = @_;
my $c = $codestr;
my @codes = ();
while ($c ne '') {
if ($c =~ /^\\x([0-9a-f]+)(.*)$/i) {
push(@codes, hex $1);
$c = $2;
next;
} elsif ($c =~ /^\\([0-7]{1,3})(.*)$/) {
push(@codes, oct $1);
$c = $2;
next;
} else {
die "$0: unknown code format in \"$codestr\"\n";
}
}
return @codes;
}
# Turn a numeric list into a hex string
sub hexstr(@) {
my $s = '';
my $c;
foreach $c (@_) {
$s .= sprintf("%02X", $c);
}
return $s;
}
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# Here we determine the range of possible starting bytes for a given
# instruction. We need only consider the codes:
# \1 \2 \3 mean literal bytes, of course
# \4 \5 \6 \7 mean PUSH/POP of segment registers: special case
# \1[0123] mean byte plus register value
# \170 means byte zero
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# \330 means byte plus condition code
# \0 or \340 mean give up and return empty set
sub startseq($) {
my ($codestr) = @_;
my $word, @range;
my @codes = ();
my $c = $codestr;
my $c0, $c1, $i;
my $prefix = '';
@codes = decodify($codestr);
while ($c0 = shift(@codes)) {
$c1 = $codes[0];
if ($c0 == 01 || $c0 == 02 || $c0 == 03 || $c0 == 0170) {
# Fixed byte string
my $fbs = $prefix;
while (1) {
if ($c0 == 01 || $c0 == 02 || $c0 == 03) {
while ($c0--) {
$fbs .= sprintf("%02X", shift(@codes));
}
} elsif ($c0 == 0170) {
$fbs .= '00';
} else {
last;
}
$c0 = shift(@codes);
}
foreach $pfx (@disasm_prefixes) {
if (substr($fbs, 0, length($pfx)) eq $pfx) {
$prefix = $pfx;
$fbs = substr($fbs, length($pfx));
last;
}
}
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if ($fbs ne '') {
return ($prefix.substr($fbs,0,2));
}
unshift(@codes, $c0);
} elsif ($c0 == 04) {
return addprefix($prefix, 0x07, 0x17, 0x1F);
} elsif ($c0 == 05) {
return addprefix($prefix, 0xA1, 0xA9);
} elsif ($c0 == 06) {
return addprefix($prefix, 0x06, 0x0E, 0x16, 0x1E);
} elsif ($c0 == 07) {
return addprefix($prefix, 0xA0, 0xA8);
} elsif ($c0 >= 010 && $c0 <= 013) {
return addprefix($prefix, $c1..($c1+7));
} elsif (($c0 & ~013) == 0144) {
return addprefix($prefix, $c1, $c1|2);
} elsif ($c0 == 0330) {
return addprefix($prefix, $c1..($c1+15));
} elsif ($c0 == 0 || $c0 == 0340) {
return $prefix;
} elsif (($c0 & ~3) == 0260 || $c0 == 270) {
shift(@codes);
shift(@codes);
} elsif ($c0 == 0172) {
shift(@codes);
} else {
# We really need to be able to distinguish "forbidden"
# and "ignorable" codes here
}
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}
return $prefix;
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}