1 | BEGIN {
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2 | push @INC, './lib';
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3 | require 'regen_lib.pl';
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4 | }
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5 | use strict;
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6 | my %alias_to = (
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7 | U32 => [qw(line_t)],
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8 | PADOFFSET => [qw(STRLEN SSize_t)],
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9 | U16 => [qw(OPCODE short)],
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10 | U8 => [qw(char)],
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11 | );
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12 |
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13 | my @optype= qw(OP UNOP BINOP LOGOP LISTOP PMOP SVOP PADOP PVOP LOOP COP);
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14 |
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15 | # Nullsv *must* come first in the following so that the condition
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16 | # ($$sv == 0) can continue to be used to test (sv == Nullsv).
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17 | my @specialsv = qw(Nullsv &PL_sv_undef &PL_sv_yes &PL_sv_no pWARN_ALL pWARN_NONE);
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18 |
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19 | my (%alias_from, $from, $tos);
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20 | while (($from, $tos) = each %alias_to) {
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21 | map { $alias_from{$_} = $from } @$tos;
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22 | }
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23 |
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24 | my $c_header = <<'EOT';
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25 | /* -*- buffer-read-only: t -*-
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26 | *
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27 | * Copyright (c) 1996-1999 Malcolm Beattie
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28 | *
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29 | * You may distribute under the terms of either the GNU General Public
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30 | * License or the Artistic License, as specified in the README file.
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31 | *
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32 | */
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33 | /*
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34 | * This file is autogenerated from bytecode.pl. Changes made here will be lost.
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35 | */
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36 | EOT
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37 |
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38 | my $perl_header;
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39 | ($perl_header = $c_header) =~ s{[/ ]?\*/?}{#}g;
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40 |
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41 | safer_unlink "ext/ByteLoader/byterun.c", "ext/ByteLoader/byterun.h", "ext/B/B/Asmdata.pm";
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42 |
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43 | #
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44 | # Start with boilerplate for Asmdata.pm
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45 | #
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46 | open(ASMDATA_PM, ">ext/B/B/Asmdata.pm") or die "ext/B/B/Asmdata.pm: $!";
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47 | binmode ASMDATA_PM;
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48 | print ASMDATA_PM $perl_header, <<'EOT';
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49 | package B::Asmdata;
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50 |
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51 | our $VERSION = '1.01';
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52 |
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53 | use Exporter;
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54 | @ISA = qw(Exporter);
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55 | @EXPORT_OK = qw(%insn_data @insn_name @optype @specialsv_name);
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56 | our(%insn_data, @insn_name, @optype, @specialsv_name);
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57 |
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58 | EOT
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59 | print ASMDATA_PM <<"EOT";
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60 | \@optype = qw(@optype);
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61 | \@specialsv_name = qw(@specialsv);
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62 |
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63 | # XXX insn_data is initialised this way because with a large
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64 | # %insn_data = (foo => [...], bar => [...], ...) initialiser
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65 | # I get a hard-to-track-down stack underflow and segfault.
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66 | EOT
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67 |
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68 | #
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69 | # Boilerplate for byterun.c
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70 | #
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71 | open(BYTERUN_C, ">ext/ByteLoader/byterun.c") or die "ext/ByteLoader/byterun.c: $!";
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72 | binmode BYTERUN_C;
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73 | print BYTERUN_C $c_header, <<'EOT';
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74 |
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75 | #define PERL_NO_GET_CONTEXT
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76 | #include "EXTERN.h"
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77 | #include "perl.h"
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78 | #define NO_XSLOCKS
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79 | #include "XSUB.h"
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80 |
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81 | #include "byterun.h"
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82 | #include "bytecode.h"
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83 |
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84 |
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85 | static const int optype_size[] = {
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86 | EOT
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87 | my $i = 0;
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88 | for ($i = 0; $i < @optype - 1; $i++) {
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89 | printf BYTERUN_C " sizeof(%s),\n", $optype[$i], $i;
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90 | }
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91 | printf BYTERUN_C " sizeof(%s)\n", $optype[$i], $i;
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92 | print BYTERUN_C <<'EOT';
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93 | };
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94 |
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95 | void *
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96 | bset_obj_store(pTHX_ struct byteloader_state *bstate, void *obj, I32 ix)
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97 | {
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98 | if (ix > bstate->bs_obj_list_fill) {
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99 | Renew(bstate->bs_obj_list, ix + 32, void*);
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100 | bstate->bs_obj_list_fill = ix + 31;
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101 | }
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102 | bstate->bs_obj_list[ix] = obj;
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103 | return obj;
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104 | }
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105 |
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106 | int
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107 | byterun(pTHX_ register struct byteloader_state *bstate)
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108 | {
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109 | register int insn;
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110 | U32 ix;
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111 | SV *specialsv_list[6];
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112 |
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113 | BYTECODE_HEADER_CHECK; /* croak if incorrect platform */
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114 | Newx(bstate->bs_obj_list, 32, void*); /* set op objlist */
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115 | bstate->bs_obj_list_fill = 31;
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116 | bstate->bs_obj_list[0] = NULL; /* first is always Null */
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117 | bstate->bs_ix = 1;
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118 |
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119 | EOT
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120 |
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121 | for my $i ( 0 .. $#specialsv ) {
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122 | print BYTERUN_C " specialsv_list[$i] = $specialsv[$i];\n";
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123 | }
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124 |
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125 | print BYTERUN_C <<'EOT';
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126 |
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127 | while ((insn = BGET_FGETC()) != EOF) {
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128 | switch (insn) {
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129 | EOT
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130 |
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131 |
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132 | my (@insn_name, $insn_num, $insn, $lvalue, $argtype, $flags, $fundtype);
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133 |
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134 | while (<DATA>) {
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135 | if (/^\s*#/) {
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136 | print BYTERUN_C if /^\s*#\s*(?:if|endif|el)/;
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137 | next;
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138 | }
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139 | chop;
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140 | next unless length;
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141 | if (/^%number\s+(.*)/) {
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142 | $insn_num = $1;
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143 | next;
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144 | } elsif (/%enum\s+(.*?)\s+(.*)/) {
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145 | create_enum($1, $2); # must come before instructions
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146 | next;
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147 | }
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148 | ($insn, $lvalue, $argtype, $flags) = split;
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149 | my $rvalcast = '';
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150 | if ($argtype =~ m:(.+)/(.+):) {
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151 | ($rvalcast, $argtype) = ("($1)", $2);
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152 | }
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153 | $insn_name[$insn_num] = $insn;
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154 | $fundtype = $alias_from{$argtype} || $argtype;
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155 |
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156 | #
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157 | # Add the case statement and code for the bytecode interpreter in byterun.c
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158 | #
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159 | printf BYTERUN_C "\t case INSN_%s:\t\t/* %d */\n\t {\n",
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160 | uc($insn), $insn_num;
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161 | my $optarg = $argtype eq "none" ? "" : ", arg";
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162 | if ($optarg) {
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163 | printf BYTERUN_C "\t\t$argtype arg;\n\t\tBGET_%s(arg);\n", $fundtype;
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164 | }
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165 | if ($flags =~ /x/) {
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166 | print BYTERUN_C "\t\tBSET_$insn($lvalue$optarg);\n";
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167 | } elsif ($flags =~ /s/) {
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168 | # Store instructions store to bytecode_obj_list[arg]. "lvalue" field is rvalue.
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169 | print BYTERUN_C "\t\tBSET_OBJ_STORE($lvalue$optarg);\n";
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170 | }
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171 | elsif ($optarg && $lvalue ne "none") {
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172 | print BYTERUN_C "\t\t$lvalue = ${rvalcast}arg;\n";
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173 | }
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174 | print BYTERUN_C "\t\tbreak;\n\t }\n";
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175 |
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176 | #
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177 | # Add the initialiser line for %insn_data in Asmdata.pm
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178 | #
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179 | print ASMDATA_PM <<"EOT";
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180 | \$insn_data{$insn} = [$insn_num, \\&PUT_$fundtype, "GET_$fundtype"];
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181 | EOT
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182 |
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183 | # Find the next unused instruction number
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184 | do { $insn_num++ } while $insn_name[$insn_num];
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185 | }
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186 |
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187 | #
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188 | # Finish off byterun.c
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189 | #
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190 | print BYTERUN_C <<'EOT';
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191 | default:
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192 | Perl_croak(aTHX_ "Illegal bytecode instruction %d\n", insn);
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193 | /* NOTREACHED */
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194 | }
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195 | }
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196 | return 0;
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197 | }
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198 |
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199 | /* ex: set ro: */
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200 | EOT
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201 |
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202 | #
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203 | # Write the instruction and optype enum constants into byterun.h
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204 | #
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205 | open(BYTERUN_H, ">ext/ByteLoader/byterun.h") or die "ext/ByteLoader/byterun.h: $!";
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206 | binmode BYTERUN_H;
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207 | print BYTERUN_H $c_header, <<'EOT';
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208 | struct byteloader_fdata {
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209 | SV *datasv;
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210 | int next_out;
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211 | int idx;
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212 | };
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213 |
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214 | struct byteloader_state {
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215 | struct byteloader_fdata *bs_fdata;
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216 | SV *bs_sv;
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217 | void **bs_obj_list;
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218 | int bs_obj_list_fill;
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219 | int bs_ix;
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220 | XPV bs_pv;
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221 | int bs_iv_overflows;
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222 | };
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223 |
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224 | int bl_getc(struct byteloader_fdata *);
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225 | int bl_read(struct byteloader_fdata *, char *, size_t, size_t);
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226 | extern int byterun(pTHX_ struct byteloader_state *);
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227 |
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228 | enum {
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229 | EOT
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230 |
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231 | my $add_enum_value = 0;
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232 | my $max_insn;
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233 | for $i ( 0 .. $#insn_name ) {
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234 | $insn = uc($insn_name[$i]);
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235 | if (defined($insn)) {
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236 | $max_insn = $i;
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237 | if ($add_enum_value) {
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238 | print BYTERUN_H " INSN_$insn = $i,\t\t\t/* $i */\n";
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239 | $add_enum_value = 0;
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240 | } else {
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241 | print BYTERUN_H " INSN_$insn,\t\t\t/* $i */\n";
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242 | }
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243 | } else {
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244 | $add_enum_value = 1;
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245 | }
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246 | }
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247 |
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248 | print BYTERUN_H " MAX_INSN = $max_insn\n};\n";
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249 |
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250 | print BYTERUN_H "\nenum {\n";
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251 | for ($i = 0; $i < @optype - 1; $i++) {
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252 | printf BYTERUN_H " OPt_%s,\t\t/* %d */\n", $optype[$i], $i;
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253 | }
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254 | printf BYTERUN_H " OPt_%s\t\t/* %d */\n};\n\n", $optype[$i], $i;
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255 |
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256 | print BYTERUN_H "/* ex: set ro: */\n";
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257 |
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258 | #
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259 | # Finish off insn_data and create array initialisers in Asmdata.pm
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260 | #
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261 | print ASMDATA_PM <<'EOT';
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262 |
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263 | my ($insn_name, $insn_data);
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264 | while (($insn_name, $insn_data) = each %insn_data) {
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265 | $insn_name[$insn_data->[0]] = $insn_name;
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266 | }
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267 | # Fill in any gaps
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268 | @insn_name = map($_ || "unused", @insn_name);
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269 |
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270 | 1;
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271 |
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272 | __END__
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273 |
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274 | =head1 NAME
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275 |
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276 | B::Asmdata - Autogenerated data about Perl ops, used to generate bytecode
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277 |
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278 | =head1 SYNOPSIS
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279 |
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280 | use B::Asmdata qw(%insn_data @insn_name @optype @specialsv_name);
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281 |
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282 | =head1 DESCRIPTION
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283 |
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284 | Provides information about Perl ops in order to generate bytecode via
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285 | a bunch of exported variables. Its mostly used by B::Assembler and
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286 | B::Disassembler.
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287 |
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288 | =over 4
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289 |
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290 | =item %insn_data
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291 |
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292 | my($bytecode_num, $put_sub, $get_meth) = @$insn_data{$op_name};
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293 |
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294 | For a given $op_name (for example, 'cop_label', 'sv_flags', etc...)
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295 | you get an array ref containing the bytecode number of the op, a
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296 | reference to the subroutine used to 'PUT', and the name of the method
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297 | used to 'GET'.
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298 |
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299 | =for _private
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300 | Add more detail about what $put_sub and $get_meth are and how to use them.
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301 |
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302 | =item @insn_name
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303 |
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304 | my $op_name = $insn_name[$bytecode_num];
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305 |
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306 | A simple mapping of the bytecode number to the name of the op.
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307 | Suitable for using with %insn_data like so:
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308 |
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309 | my $op_info = $insn_data{$insn_name[$bytecode_num]};
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310 |
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311 | =item @optype
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312 |
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313 | my $op_type = $optype[$op_type_num];
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314 |
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315 | A simple mapping of the op type number to its type (like 'COP' or 'BINOP').
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316 |
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317 | =item @specialsv_name
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318 |
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319 | my $sv_name = $specialsv_name[$sv_index];
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320 |
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321 | Certain SV types are considered 'special'. They're represented by
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322 | B::SPECIAL and are referred to by a number from the specialsv_list.
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323 | This array maps that number back to the name of the SV (like 'Nullsv'
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324 | or '&PL_sv_undef').
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325 |
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326 | =back
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327 |
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328 | =head1 AUTHOR
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329 |
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330 | Malcolm Beattie, C<mbeattie@sable.ox.ac.uk>
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331 |
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332 | =cut
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333 |
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334 | # ex: set ro:
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335 | EOT
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336 |
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337 |
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338 | close ASMDATA_PM or die "Error closing ASMDATA_PM: $!";
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339 | close BYTERUN_H or die "Error closing BYTERUN_H: $!";
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340 | close BYTERUN_C or die "Error closing BYTERUN_C: $!";
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341 |
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342 | __END__
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343 | # First set instruction ord("#") to read comment to end-of-line (sneaky)
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344 | %number 35
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345 | comment arg comment_t
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346 | # Then make ord("\n") into a no-op
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347 | %number 10
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348 | nop none none
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349 |
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350 | # Now for the rest of the ordinary ones, beginning with \0 which is
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351 | # ret so that \0-terminated strings can be read properly as bytecode.
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352 | %number 0
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353 | #
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354 | # The argtype is either a single type or "rightvaluecast/argtype".
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355 | #
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356 | #opcode lvalue argtype flags
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357 | #
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358 | ret none none x
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359 | ldsv bstate->bs_sv svindex
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360 | ldop PL_op opindex
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361 | stsv bstate->bs_sv U32 s
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362 | stop PL_op U32 s
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363 | stpv bstate->bs_pv.xpv_pv U32 x
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364 | ldspecsv bstate->bs_sv U8 x
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365 | ldspecsvx bstate->bs_sv U8 x
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366 | newsv bstate->bs_sv U8 x
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367 | newsvx bstate->bs_sv U32 x
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368 | newop PL_op U8 x
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369 | newopx PL_op U16 x
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370 | newopn PL_op U8 x
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371 | newpv none PV
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372 | pv_cur bstate->bs_pv.xpv_cur STRLEN
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373 | pv_free bstate->bs_pv none x
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374 | sv_upgrade bstate->bs_sv U8 x
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375 | sv_refcnt SvREFCNT(bstate->bs_sv) U32
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376 | sv_refcnt_add SvREFCNT(bstate->bs_sv) I32 x
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377 | sv_flags SvFLAGS(bstate->bs_sv) U32
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378 | xrv bstate->bs_sv svindex x
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379 | xpv bstate->bs_sv none x
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380 | xpv_cur bstate->bs_sv STRLEN x
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381 | xpv_len bstate->bs_sv STRLEN x
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382 | xiv bstate->bs_sv IV x
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383 | xnv bstate->bs_sv NV x
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384 | xlv_targoff LvTARGOFF(bstate->bs_sv) STRLEN
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385 | xlv_targlen LvTARGLEN(bstate->bs_sv) STRLEN
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386 | xlv_targ LvTARG(bstate->bs_sv) svindex
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387 | xlv_type LvTYPE(bstate->bs_sv) char
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388 | xbm_useful BmUSEFUL(bstate->bs_sv) I32
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389 | xbm_previous BmPREVIOUS(bstate->bs_sv) U16
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390 | xbm_rare BmRARE(bstate->bs_sv) U8
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391 | xfm_lines FmLINES(bstate->bs_sv) IV
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392 | xio_lines IoLINES(bstate->bs_sv) IV
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393 | xio_page IoPAGE(bstate->bs_sv) IV
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394 | xio_page_len IoPAGE_LEN(bstate->bs_sv) IV
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395 | xio_lines_left IoLINES_LEFT(bstate->bs_sv) IV
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396 | xio_top_name IoTOP_NAME(bstate->bs_sv) pvindex
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397 | xio_top_gv *(SV**)&IoTOP_GV(bstate->bs_sv) svindex
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398 | xio_fmt_name IoFMT_NAME(bstate->bs_sv) pvindex
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399 | xio_fmt_gv *(SV**)&IoFMT_GV(bstate->bs_sv) svindex
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400 | xio_bottom_name IoBOTTOM_NAME(bstate->bs_sv) pvindex
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401 | xio_bottom_gv *(SV**)&IoBOTTOM_GV(bstate->bs_sv) svindex
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402 | xio_subprocess IoSUBPROCESS(bstate->bs_sv) short
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403 | xio_type IoTYPE(bstate->bs_sv) char
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404 | xio_flags IoFLAGS(bstate->bs_sv) char
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405 | xcv_xsubany *(SV**)&CvXSUBANY(bstate->bs_sv).any_ptr svindex
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406 | xcv_stash *(SV**)&CvSTASH(bstate->bs_sv) svindex
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407 | xcv_start CvSTART(bstate->bs_sv) opindex
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408 | xcv_root CvROOT(bstate->bs_sv) opindex
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409 | xcv_gv *(SV**)&CvGV(bstate->bs_sv) svindex
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410 | xcv_file CvFILE(bstate->bs_sv) pvindex
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411 | xcv_depth CvDEPTH(bstate->bs_sv) long
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412 | xcv_padlist *(SV**)&CvPADLIST(bstate->bs_sv) svindex
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413 | xcv_outside *(SV**)&CvOUTSIDE(bstate->bs_sv) svindex
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414 | xcv_outside_seq CvOUTSIDE_SEQ(bstate->bs_sv) U32
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415 | xcv_flags CvFLAGS(bstate->bs_sv) U16
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416 | av_extend bstate->bs_sv SSize_t x
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417 | av_pushx bstate->bs_sv svindex x
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418 | av_push bstate->bs_sv svindex x
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419 | xav_fill AvFILLp(bstate->bs_sv) SSize_t
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420 | xav_max AvMAX(bstate->bs_sv) SSize_t
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421 | xav_flags AvFLAGS(bstate->bs_sv) U8
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422 | xhv_riter HvRITER(bstate->bs_sv) I32
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423 | xhv_name bstate->bs_sv pvindex x
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424 | xhv_pmroot *(OP**)&HvPMROOT(bstate->bs_sv) opindex
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425 | hv_store bstate->bs_sv svindex x
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426 | sv_magic bstate->bs_sv char x
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427 | mg_obj SvMAGIC(bstate->bs_sv)->mg_obj svindex
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428 | mg_private SvMAGIC(bstate->bs_sv)->mg_private U16
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429 | mg_flags SvMAGIC(bstate->bs_sv)->mg_flags U8
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430 | mg_name SvMAGIC(bstate->bs_sv) pvcontents x
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431 | mg_namex SvMAGIC(bstate->bs_sv) svindex x
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432 | xmg_stash bstate->bs_sv svindex x
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433 | gv_fetchpv bstate->bs_sv strconst x
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434 | gv_fetchpvx bstate->bs_sv strconst x
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435 | gv_stashpv bstate->bs_sv strconst x
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436 | gv_stashpvx bstate->bs_sv strconst x
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437 | gp_sv GvSV(bstate->bs_sv) svindex
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438 | gp_refcnt GvREFCNT(bstate->bs_sv) U32
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439 | gp_refcnt_add GvREFCNT(bstate->bs_sv) I32 x
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440 | gp_av *(SV**)&GvAV(bstate->bs_sv) svindex
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441 | gp_hv *(SV**)&GvHV(bstate->bs_sv) svindex
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442 | gp_cv *(SV**)&GvCV(bstate->bs_sv) svindex
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443 | gp_file GvFILE(bstate->bs_sv) pvindex
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444 | gp_io *(SV**)&GvIOp(bstate->bs_sv) svindex
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445 | gp_form *(SV**)&GvFORM(bstate->bs_sv) svindex
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446 | gp_cvgen GvCVGEN(bstate->bs_sv) U32
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447 | gp_line GvLINE(bstate->bs_sv) line_t
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448 | gp_share bstate->bs_sv svindex x
|
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449 | xgv_flags GvFLAGS(bstate->bs_sv) U8
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450 | op_next PL_op->op_next opindex
|
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451 | op_sibling PL_op->op_sibling opindex
|
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452 | op_ppaddr PL_op->op_ppaddr strconst x
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453 | op_targ PL_op->op_targ PADOFFSET
|
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454 | op_type PL_op OPCODE x
|
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455 | op_seq PL_op->op_seq U16
|
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456 | op_flags PL_op->op_flags U8
|
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457 | op_private PL_op->op_private U8
|
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458 | op_first cUNOP->op_first opindex
|
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459 | op_last cBINOP->op_last opindex
|
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460 | op_other cLOGOP->op_other opindex
|
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461 | op_pmreplroot cPMOP->op_pmreplroot opindex
|
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462 | op_pmreplstart cPMOP->op_pmreplstart opindex
|
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463 | op_pmnext *(OP**)&cPMOP->op_pmnext opindex
|
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464 | #ifdef USE_ITHREADS
|
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465 | op_pmstashpv cPMOP pvindex x
|
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466 | op_pmreplrootpo cPMOP->op_pmreplroot OP*/PADOFFSET
|
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467 | #else
|
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468 | op_pmstash *(SV**)&cPMOP->op_pmstash svindex
|
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469 | op_pmreplrootgv *(SV**)&cPMOP->op_pmreplroot svindex
|
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470 | #endif
|
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471 | pregcomp PL_op pvcontents x
|
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472 | op_pmflags cPMOP->op_pmflags U16
|
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473 | op_pmpermflags cPMOP->op_pmpermflags U16
|
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474 | op_pmdynflags cPMOP->op_pmdynflags U8
|
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475 | op_sv cSVOP->op_sv svindex
|
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476 | op_padix cPADOP->op_padix PADOFFSET
|
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477 | op_pv cPVOP->op_pv pvcontents
|
---|
478 | op_pv_tr cPVOP->op_pv op_tr_array
|
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479 | op_redoop cLOOP->op_redoop opindex
|
---|
480 | op_nextop cLOOP->op_nextop opindex
|
---|
481 | op_lastop cLOOP->op_lastop opindex
|
---|
482 | cop_label cCOP->cop_label pvindex
|
---|
483 | #ifdef USE_ITHREADS
|
---|
484 | cop_stashpv cCOP pvindex x
|
---|
485 | cop_file cCOP pvindex x
|
---|
486 | #else
|
---|
487 | cop_stash cCOP svindex x
|
---|
488 | cop_filegv cCOP svindex x
|
---|
489 | #endif
|
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490 | cop_seq cCOP->cop_seq U32
|
---|
491 | cop_arybase cCOP->cop_arybase I32
|
---|
492 | cop_line cCOP->cop_line line_t
|
---|
493 | cop_io cCOP->cop_io svindex
|
---|
494 | cop_warnings cCOP->cop_warnings svindex
|
---|
495 | main_start PL_main_start opindex
|
---|
496 | main_root PL_main_root opindex
|
---|
497 | main_cv *(SV**)&PL_main_cv svindex
|
---|
498 | curpad PL_curpad svindex x
|
---|
499 | push_begin PL_beginav svindex x
|
---|
500 | push_init PL_initav svindex x
|
---|
501 | push_end PL_endav svindex x
|
---|
502 | curstash *(SV**)&PL_curstash svindex
|
---|
503 | defstash *(SV**)&PL_defstash svindex
|
---|
504 | data none U8 x
|
---|
505 | incav *(SV**)&GvAV(PL_incgv) svindex
|
---|
506 | load_glob none svindex x
|
---|
507 | #ifdef USE_ITHREADS
|
---|
508 | regex_padav *(SV**)&PL_regex_padav svindex
|
---|
509 | #endif
|
---|
510 | dowarn PL_dowarn U8
|
---|
511 | comppad_name *(SV**)&PL_comppad_name svindex
|
---|
512 | xgv_stash *(SV**)&GvSTASH(bstate->bs_sv) svindex
|
---|
513 | signal bstate->bs_sv strconst x
|
---|
514 | # to be removed
|
---|
515 | formfeed PL_formfeed svindex
|
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