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[p5sagit/p5-mst-13.2.git] / ext / B / B / Bytecode.pm
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a798dbf2 1# Bytecode.pm
2#
3# Copyright (c) 1996-1998 Malcolm Beattie
4#
5# You may distribute under the terms of either the GNU General Public
6# License or the Artistic License, as specified in the README file.
7#
8package B::Bytecode;
9use strict;
10use Carp;
11use IO::File;
12
13use B qw(minus_c main_cv main_root main_start comppadlist
4c1f658f 14 class peekop walkoptree svref_2object cstring walksymtable
15 SVf_POK SVp_POK SVf_IOK SVp_IOK
16 );
a798dbf2 17use B::Asmdata qw(@optype @specialsv_name);
18use B::Assembler qw(assemble_fh);
19
20my %optype_enum;
21my $i;
22for ($i = 0; $i < @optype; $i++) {
23 $optype_enum{$optype[$i]} = $i;
24}
25
26# Following is SVf_POK|SVp_POK
27# XXX Shouldn't be hardwired
4c1f658f 28sub POK () { SVf_POK|SVp_POK }
a798dbf2 29
4c1f658f 30# Following is SVf_IOK|SVp_IOK
a798dbf2 31# XXX Shouldn't be hardwired
4c1f658f 32sub IOK () { SVf_IOK|SVp_IOK }
a798dbf2 33
34my ($verbose, $module_only, $no_assemble, $debug_bc, $debug_cv);
35my $assembler_pid;
36
37# Optimisation options. On the command line, use hyphens instead of
38# underscores for compatibility with gcc-style options. We use
39# underscores here because they are OK in (strict) barewords.
40my ($strip_syntree, $compress_nullops, $omit_seq, $bypass_nullops);
41my %optimise = (strip_syntax_tree => \$strip_syntree,
42 compress_nullops => \$compress_nullops,
43 omit_sequence_numbers => \$omit_seq,
44 bypass_nullops => \$bypass_nullops);
45
46my $nextix = 0;
47my %symtable; # maps object addresses to object indices.
48 # Filled in at allocation (newsv/newop) time.
49my %saved; # maps object addresses (for SVish classes) to "saved yet?"
50 # flag. Set at FOO::bytecode time usually by SV::bytecode.
51 # Manipulated via saved(), mark_saved(), unmark_saved().
52
53my $svix = -1; # we keep track of when the sv register contains an element
54 # of the object table to avoid unnecessary repeated
55 # consecutive ldsv instructions.
56my $opix = -1; # Ditto for the op register.
57
58sub ldsv {
59 my $ix = shift;
60 if ($ix != $svix) {
61 print "ldsv $ix\n";
62 $svix = $ix;
63 }
64}
65
66sub stsv {
67 my $ix = shift;
68 print "stsv $ix\n";
69 $svix = $ix;
70}
71
72sub set_svix {
73 $svix = shift;
74}
75
76sub ldop {
77 my $ix = shift;
78 if ($ix != $opix) {
79 print "ldop $ix\n";
80 $opix = $ix;
81 }
82}
83
84sub stop {
85 my $ix = shift;
86 print "stop $ix\n";
87 $opix = $ix;
88}
89
90sub set_opix {
91 $opix = shift;
92}
93
94sub pvstring {
95 my $str = shift;
96 if (defined($str)) {
97 return cstring($str . "\0");
98 } else {
99 return '""';
100 }
101}
102
103sub saved { $saved{${$_[0]}} }
104sub mark_saved { $saved{${$_[0]}} = 1 }
105sub unmark_saved { $saved{${$_[0]}} = 0 }
106
107sub debug { $debug_bc = shift }
108
109sub B::OBJECT::nyi {
110 my $obj = shift;
111 warn sprintf("bytecode save method for %s (0x%x) not yet implemented\n",
112 class($obj), $$obj);
113}
114
115#
116# objix may stomp on the op register (for op objects)
117# or the sv register (for SV objects)
118#
119sub B::OBJECT::objix {
120 my $obj = shift;
121 my $ix = $symtable{$$obj};
122 if (defined($ix)) {
123 return $ix;
124 } else {
125 $obj->newix($nextix);
126 return $symtable{$$obj} = $nextix++;
127 }
128}
129
130sub B::SV::newix {
131 my ($sv, $ix) = @_;
132 printf "newsv %d\t# %s\n", $sv->FLAGS & 0xf, class($sv);
133 stsv($ix);
134}
135
136sub B::GV::newix {
137 my ($gv, $ix) = @_;
138 my $gvname = $gv->NAME;
139 my $name = cstring($gv->STASH->NAME . "::" . $gvname);
140 print "gv_fetchpv $name\n";
141 stsv($ix);
142}
143
144sub B::HV::newix {
145 my ($hv, $ix) = @_;
146 my $name = $hv->NAME;
147 if ($name) {
148 # It's a stash
149 printf "gv_stashpv %s\n", cstring($name);
150 stsv($ix);
151 } else {
152 # It's an ordinary HV. Fall back to ordinary newix method
153 $hv->B::SV::newix($ix);
154 }
155}
156
157sub B::SPECIAL::newix {
158 my ($sv, $ix) = @_;
159 # Special case. $$sv is not the address of the SV but an
160 # index into svspecialsv_list.
161 printf "ldspecsv $$sv\t# %s\n", $specialsv_name[$$sv];
162 stsv($ix);
163}
164
165sub B::OP::newix {
166 my ($op, $ix) = @_;
167 my $class = class($op);
168 my $typenum = $optype_enum{$class};
169 croak "OP::newix: can't understand class $class" unless defined($typenum);
170 print "newop $typenum\t# $class\n";
171 stop($ix);
172}
173
174sub B::OP::walkoptree_debug {
175 my $op = shift;
176 warn(sprintf("walkoptree: %s\n", peekop($op)));
177}
178
179sub B::OP::bytecode {
180 my $op = shift;
181 my $next = $op->next;
182 my $nextix;
183 my $sibix = $op->sibling->objix;
184 my $ix = $op->objix;
185 my $type = $op->type;
186
187 if ($bypass_nullops) {
188 $next = $next->next while $$next && $next->type == 0;
189 }
190 $nextix = $next->objix;
191
192 printf "# %s\n", peekop($op) if $debug_bc;
193 ldop($ix);
194 print "op_next $nextix\n";
195 print "op_sibling $sibix\n" unless $strip_syntree;
3f872cb9 196 printf "op_type %s\t# %d\n", "pp_" . $op->name, $type;
a798dbf2 197 printf("op_seq %d\n", $op->seq) unless $omit_seq;
198 if ($type || !$compress_nullops) {
199 printf "op_targ %d\nop_flags 0x%x\nop_private 0x%x\n",
200 $op->targ, $op->flags, $op->private;
201 }
202}
203
204sub B::UNOP::bytecode {
205 my $op = shift;
206 my $firstix = $op->first->objix;
207 $op->B::OP::bytecode;
208 if (($op->type || !$compress_nullops) && !$strip_syntree) {
209 print "op_first $firstix\n";
210 }
211}
212
213sub B::LOGOP::bytecode {
214 my $op = shift;
215 my $otherix = $op->other->objix;
216 $op->B::UNOP::bytecode;
217 print "op_other $otherix\n";
218}
219
220sub B::SVOP::bytecode {
221 my $op = shift;
222 my $sv = $op->sv;
223 my $svix = $sv->objix;
224 $op->B::OP::bytecode;
225 print "op_sv $svix\n";
226 $sv->bytecode;
227}
228
229sub B::GVOP::bytecode {
230 my $op = shift;
231 my $gv = $op->gv;
232 my $gvix = $gv->objix;
233 $op->B::OP::bytecode;
234 print "op_gv $gvix\n";
235 $gv->bytecode;
236}
237
238sub B::PVOP::bytecode {
239 my $op = shift;
240 my $pv = $op->pv;
241 $op->B::OP::bytecode;
242 #
243 # This would be easy except that OP_TRANS uses a PVOP to store an
244 # endian-dependent array of 256 shorts instead of a plain string.
245 #
3f872cb9 246 if ($op->name eq "trans") {
a798dbf2 247 my @shorts = unpack("s256", $pv); # assembler handles endianness
248 print "op_pv_tr ", join(",", @shorts), "\n";
249 } else {
250 printf "newpv %s\nop_pv\n", pvstring($pv);
251 }
252}
253
254sub B::BINOP::bytecode {
255 my $op = shift;
256 my $lastix = $op->last->objix;
257 $op->B::UNOP::bytecode;
258 if (($op->type || !$compress_nullops) && !$strip_syntree) {
259 print "op_last $lastix\n";
260 }
261}
262
a798dbf2 263sub B::LISTOP::bytecode {
264 my $op = shift;
265 my $children = $op->children;
266 $op->B::BINOP::bytecode;
267 if (($op->type || !$compress_nullops) && !$strip_syntree) {
268 print "op_children $children\n";
269 }
270}
271
272sub B::LOOP::bytecode {
273 my $op = shift;
274 my $redoopix = $op->redoop->objix;
275 my $nextopix = $op->nextop->objix;
276 my $lastopix = $op->lastop->objix;
277 $op->B::LISTOP::bytecode;
278 print "op_redoop $redoopix\nop_nextop $nextopix\nop_lastop $lastopix\n";
279}
280
281sub B::COP::bytecode {
282 my $op = shift;
283 my $stash = $op->stash;
284 my $stashix = $stash->objix;
285 my $filegv = $op->filegv;
286 my $filegvix = $filegv->objix;
287 my $line = $op->line;
b295d113 288 my $warnings = $op->warnings;
289 my $warningsix = $warnings->objix;
a798dbf2 290 if ($debug_bc) {
291 printf "# line %s:%d\n", $filegv->SV->PV, $line;
292 }
293 $op->B::OP::bytecode;
294 printf <<"EOT", pvstring($op->label), $op->cop_seq, $op->arybase;
295newpv %s
296cop_label
297cop_stash $stashix
298cop_seq %d
299cop_filegv $filegvix
300cop_arybase %d
301cop_line $line
b295d113 302cop_warnings $warningsix
a798dbf2 303EOT
304 $filegv->bytecode;
305 $stash->bytecode;
306}
307
308sub B::PMOP::bytecode {
309 my $op = shift;
310 my $replroot = $op->pmreplroot;
311 my $replrootix = $replroot->objix;
312 my $replstartix = $op->pmreplstart->objix;
3f872cb9 313 my $opname = $op->name;
a798dbf2 314 # pmnext is corrupt in some PMOPs (see misc.t for example)
315 #my $pmnextix = $op->pmnext->objix;
316
317 if ($$replroot) {
318 # OP_PUSHRE (a mutated version of OP_MATCH for the regexp
319 # argument to a split) stores a GV in op_pmreplroot instead
320 # of a substitution syntax tree. We don't want to walk that...
3f872cb9 321 if ($opname eq "pushre") {
a798dbf2 322 $replroot->bytecode;
323 } else {
324 walkoptree($replroot, "bytecode");
325 }
326 }
327 $op->B::LISTOP::bytecode;
3f872cb9 328 if ($opname eq "pushre") {
a798dbf2 329 printf "op_pmreplrootgv $replrootix\n";
330 } else {
331 print "op_pmreplroot $replrootix\nop_pmreplstart $replstartix\n";
332 }
333 my $re = pvstring($op->precomp);
334 # op_pmnext omitted since a perl bug means it's sometime corrupt
335 printf <<"EOT", $op->pmflags, $op->pmpermflags;
336op_pmflags 0x%x
337op_pmpermflags 0x%x
338newpv $re
339pregcomp
340EOT
341}
342
343sub B::SV::bytecode {
344 my $sv = shift;
345 return if saved($sv);
346 my $ix = $sv->objix;
347 my $refcnt = $sv->REFCNT;
348 my $flags = sprintf("0x%x", $sv->FLAGS);
349 ldsv($ix);
350 print "sv_refcnt $refcnt\nsv_flags $flags\n";
351 mark_saved($sv);
352}
353
354sub B::PV::bytecode {
355 my $sv = shift;
356 return if saved($sv);
357 $sv->B::SV::bytecode;
358 printf("newpv %s\nxpv\n", pvstring($sv->PV)) if $sv->FLAGS & POK;
359}
360
361sub B::IV::bytecode {
362 my $sv = shift;
363 return if saved($sv);
364 my $iv = $sv->IVX;
365 $sv->B::SV::bytecode;
366 printf "%s $iv\n", $sv->needs64bits ? "xiv64" : "xiv32";
367}
368
369sub B::NV::bytecode {
370 my $sv = shift;
371 return if saved($sv);
372 $sv->B::SV::bytecode;
373 printf "xnv %s\n", $sv->NVX;
374}
375
376sub B::RV::bytecode {
377 my $sv = shift;
378 return if saved($sv);
379 my $rv = $sv->RV;
380 my $rvix = $rv->objix;
381 $rv->bytecode;
382 $sv->B::SV::bytecode;
383 print "xrv $rvix\n";
384}
385
386sub B::PVIV::bytecode {
387 my $sv = shift;
388 return if saved($sv);
389 my $iv = $sv->IVX;
390 $sv->B::PV::bytecode;
391 printf "%s $iv\n", $sv->needs64bits ? "xiv64" : "xiv32";
392}
393
394sub B::PVNV::bytecode {
c529f79d 395 my $sv = shift;
396 my $flag = shift || 0;
a798dbf2 397 # The $flag argument is passed through PVMG::bytecode by BM::bytecode
398 # and AV::bytecode and indicates special handling. $flag = 1 is used by
399 # BM::bytecode and means that we should ensure we save the whole B-M
400 # table. It consists of 257 bytes (256 char array plus a final \0)
401 # which follow the ordinary PV+\0 and the 257 bytes are *not* reflected
402 # in SvCUR. $flag = 2 is used by AV::bytecode and means that we only
403 # call SV::bytecode instead of saving PV and calling NV::bytecode since
404 # PV/NV/IV stuff is different for AVs.
405 return if saved($sv);
406 if ($flag == 2) {
407 $sv->B::SV::bytecode;
408 } else {
409 my $pv = $sv->PV;
410 $sv->B::IV::bytecode;
411 printf "xnv %s\n", $sv->NVX;
412 if ($flag == 1) {
413 $pv .= "\0" . $sv->TABLE;
414 printf "newpv %s\npv_cur %d\nxpv\n", pvstring($pv),length($pv)-257;
415 } else {
416 printf("newpv %s\nxpv\n", pvstring($pv)) if $sv->FLAGS & POK;
417 }
418 }
419}
420
421sub B::PVMG::bytecode {
422 my ($sv, $flag) = @_;
423 # See B::PVNV::bytecode for an explanation of $flag.
424 return if saved($sv);
425 # XXX We assume SvSTASH is already saved and don't save it later ourselves
426 my $stashix = $sv->SvSTASH->objix;
427 my @mgchain = $sv->MAGIC;
428 my (@mgobjix, $mg);
429 #
430 # We need to traverse the magic chain and get objix for each OBJ
431 # field *before* we do B::PVNV::bytecode since objix overwrites
432 # the sv register. However, we need to write the magic-saving
433 # bytecode *after* B::PVNV::bytecode since sv isn't initialised
434 # to refer to $sv until then.
435 #
436 @mgobjix = map($_->OBJ->objix, @mgchain);
437 $sv->B::PVNV::bytecode($flag);
438 print "xmg_stash $stashix\n";
439 foreach $mg (@mgchain) {
440 printf "sv_magic %s\nmg_obj %d\nnewpv %s\nmg_pv\n",
441 cstring($mg->TYPE), shift(@mgobjix), pvstring($mg->PTR);
442 }
443}
444
445sub B::PVLV::bytecode {
446 my $sv = shift;
447 return if saved($sv);
448 $sv->B::PVMG::bytecode;
449 printf <<'EOT', $sv->TARGOFF, $sv->TARGLEN, cstring($sv->TYPE);
450xlv_targoff %d
451xlv_targlen %d
452xlv_type %s
453EOT
454}
455
456sub B::BM::bytecode {
457 my $sv = shift;
458 return if saved($sv);
459 # See PVNV::bytecode for an explanation of what the argument does
460 $sv->B::PVMG::bytecode(1);
461 printf "xbm_useful %d\nxbm_previous %d\nxbm_rare %d\n",
462 $sv->USEFUL, $sv->PREVIOUS, $sv->RARE;
463}
464
465sub B::GV::bytecode {
466 my $gv = shift;
467 return if saved($gv);
468 my $ix = $gv->objix;
469 mark_saved($gv);
470 my $gvname = $gv->NAME;
471 my $name = cstring($gv->STASH->NAME . "::" . $gvname);
472 my $egv = $gv->EGV;
473 my $egvix = $egv->objix;
474 ldsv($ix);
475 printf <<"EOT", $gv->FLAGS, $gv->GvFLAGS, $gv->LINE;
476sv_flags 0x%x
477xgv_flags 0x%x
478gp_line %d
479EOT
480 my $refcnt = $gv->REFCNT;
481 printf("sv_refcnt_add %d\n", $refcnt - 1) if $refcnt > 1;
482 my $gvrefcnt = $gv->GvREFCNT;
483 printf("gp_refcnt_add %d\n", $gvrefcnt - 1) if $gvrefcnt > 1;
484 if ($gvrefcnt > 1 && $ix != $egvix) {
485 print "gp_share $egvix\n";
486 } else {
487 if ($gvname !~ /^([^A-Za-z]|STDIN|STDOUT|STDERR|ARGV|SIG|ENV)$/) {
488 my $i;
489 my @subfield_names = qw(SV AV HV CV FILEGV FORM IO);
490 my @subfields = map($gv->$_(), @subfield_names);
491 my @ixes = map($_->objix, @subfields);
492 # Reset sv register for $gv
493 ldsv($ix);
494 for ($i = 0; $i < @ixes; $i++) {
495 printf "gp_%s %d\n", lc($subfield_names[$i]), $ixes[$i];
496 }
497 # Now save all the subfields
498 my $sv;
499 foreach $sv (@subfields) {
500 $sv->bytecode;
501 }
502 }
503 }
504}
505
506sub B::HV::bytecode {
507 my $hv = shift;
508 return if saved($hv);
509 mark_saved($hv);
510 my $name = $hv->NAME;
511 my $ix = $hv->objix;
512 if (!$name) {
513 # It's an ordinary HV. Stashes have NAME set and need no further
514 # saving beyond the gv_stashpv that $hv->objix already ensures.
515 my @contents = $hv->ARRAY;
516 my ($i, @ixes);
517 for ($i = 1; $i < @contents; $i += 2) {
518 push(@ixes, $contents[$i]->objix);
519 }
520 for ($i = 1; $i < @contents; $i += 2) {
521 $contents[$i]->bytecode;
522 }
523 ldsv($ix);
524 for ($i = 0; $i < @contents; $i += 2) {
525 printf("newpv %s\nhv_store %d\n",
526 pvstring($contents[$i]), $ixes[$i / 2]);
527 }
528 printf "sv_refcnt %d\nsv_flags 0x%x\n", $hv->REFCNT, $hv->FLAGS;
529 }
530}
531
532sub B::AV::bytecode {
533 my $av = shift;
534 return if saved($av);
535 my $ix = $av->objix;
536 my $fill = $av->FILL;
537 my $max = $av->MAX;
538 my (@array, @ixes);
539 if ($fill > -1) {
540 @array = $av->ARRAY;
541 @ixes = map($_->objix, @array);
542 my $sv;
543 foreach $sv (@array) {
544 $sv->bytecode;
545 }
546 }
547 # See PVNV::bytecode for the meaning of the flag argument of 2.
548 $av->B::PVMG::bytecode(2);
549 # Recover sv register and set AvMAX and AvFILL to -1 (since we
550 # create an AV with NEWSV and SvUPGRADE rather than doing newAV
551 # which is what sets AvMAX and AvFILL.
552 ldsv($ix);
553 printf "xav_flags 0x%x\nxav_max -1\nxav_fill -1\n", $av->AvFLAGS;
554 if ($fill > -1) {
555 my $elix;
556 foreach $elix (@ixes) {
557 print "av_push $elix\n";
558 }
559 } else {
560 if ($max > -1) {
561 print "av_extend $max\n";
562 }
563 }
564}
565
566sub B::CV::bytecode {
567 my $cv = shift;
568 return if saved($cv);
569 my $ix = $cv->objix;
570 $cv->B::PVMG::bytecode;
571 my $i;
572 my @subfield_names = qw(ROOT START STASH GV FILEGV PADLIST OUTSIDE);
573 my @subfields = map($cv->$_(), @subfield_names);
574 my @ixes = map($_->objix, @subfields);
575 # Save OP tree from CvROOT (first element of @subfields)
576 my $root = shift @subfields;
577 if ($$root) {
578 walkoptree($root, "bytecode");
579 }
580 # Reset sv register for $cv (since above ->objix calls stomped on it)
581 ldsv($ix);
582 for ($i = 0; $i < @ixes; $i++) {
583 printf "xcv_%s %d\n", lc($subfield_names[$i]), $ixes[$i];
584 }
585 printf "xcv_depth %d\nxcv_flags 0x%x\n", $cv->DEPTH, $cv->FLAGS;
586 # Now save all the subfields (except for CvROOT which was handled
587 # above) and CvSTART (now the initial element of @subfields).
588 shift @subfields; # bye-bye CvSTART
589 my $sv;
590 foreach $sv (@subfields) {
591 $sv->bytecode;
592 }
593}
594
595sub B::IO::bytecode {
596 my $io = shift;
597 return if saved($io);
598 my $ix = $io->objix;
599 my $top_gv = $io->TOP_GV;
600 my $top_gvix = $top_gv->objix;
601 my $fmt_gv = $io->FMT_GV;
602 my $fmt_gvix = $fmt_gv->objix;
603 my $bottom_gv = $io->BOTTOM_GV;
604 my $bottom_gvix = $bottom_gv->objix;
605
606 $io->B::PVMG::bytecode;
607 ldsv($ix);
608 print "xio_top_gv $top_gvix\n";
609 print "xio_fmt_gv $fmt_gvix\n";
610 print "xio_bottom_gv $bottom_gvix\n";
611 my $field;
612 foreach $field (qw(TOP_NAME FMT_NAME BOTTOM_NAME)) {
613 printf "newpv %s\nxio_%s\n", pvstring($io->$field()), lc($field);
614 }
615 foreach $field (qw(LINES PAGE PAGE_LEN LINES_LEFT SUBPROCESS)) {
616 printf "xio_%s %d\n", lc($field), $io->$field();
617 }
618 printf "xio_type %s\nxio_flags 0x%x\n", cstring($io->IoTYPE), $io->IoFLAGS;
619 $top_gv->bytecode;
620 $fmt_gv->bytecode;
621 $bottom_gv->bytecode;
622}
623
624sub B::SPECIAL::bytecode {
625 # nothing extra needs doing
626}
627
628sub bytecompile_object {
629 my $sv;
630 foreach $sv (@_) {
631 svref_2object($sv)->bytecode;
632 }
633}
634
635sub B::GV::bytecodecv {
636 my $gv = shift;
637 my $cv = $gv->CV;
638 if ($$cv && !saved($cv)) {
639 if ($debug_cv) {
640 warn sprintf("saving extra CV &%s::%s (0x%x) from GV 0x%x\n",
641 $gv->STASH->NAME, $gv->NAME, $$cv, $$gv);
642 }
643 $gv->bytecode;
644 }
645}
646
647sub bytecompile_main {
648 my $curpad = (comppadlist->ARRAY)[1];
649 my $curpadix = $curpad->objix;
650 $curpad->bytecode;
651 walkoptree(main_root, "bytecode");
652 warn "done main program, now walking symbol table\n" if $debug_bc;
653 my ($pack, %exclude);
654 foreach $pack (qw(B O AutoLoader DynaLoader Config DB VMS strict vars
655 FileHandle Exporter Carp UNIVERSAL IO Fcntl Symbol
656 SelectSaver blib Cwd))
657 {
658 $exclude{$pack."::"} = 1;
659 }
660 no strict qw(vars refs);
661 walksymtable(\%{"main::"}, "bytecodecv", sub {
662 warn "considering $_[0]\n" if $debug_bc;
663 return !defined($exclude{$_[0]});
664 });
665 if (!$module_only) {
666 printf "main_root %d\n", main_root->objix;
667 printf "main_start %d\n", main_start->objix;
668 printf "curpad $curpadix\n";
669 # XXX Do min_intro_pending and max_intro_pending matter?
670 }
671}
672
673sub prepare_assemble {
674 my $newfh = IO::File->new_tmpfile;
675 select($newfh);
676 binmode $newfh;
677 return $newfh;
678}
679
680sub do_assemble {
681 my $fh = shift;
682 seek($fh, 0, 0); # rewind the temporary file
683 assemble_fh($fh, sub { print OUT @_ });
684}
685
686sub compile {
687 my @options = @_;
688 my ($option, $opt, $arg);
689 open(OUT, ">&STDOUT");
690 binmode OUT;
691 select(OUT);
692 OPTION:
693 while ($option = shift @options) {
694 if ($option =~ /^-(.)(.*)/) {
695 $opt = $1;
696 $arg = $2;
697 } else {
698 unshift @options, $option;
699 last OPTION;
700 }
701 if ($opt eq "-" && $arg eq "-") {
702 shift @options;
703 last OPTION;
704 } elsif ($opt eq "o") {
705 $arg ||= shift @options;
706 open(OUT, ">$arg") or return "$arg: $!\n";
707 binmode OUT;
708 } elsif ($opt eq "D") {
709 $arg ||= shift @options;
710 foreach $arg (split(//, $arg)) {
711 if ($arg eq "b") {
712 $| = 1;
713 debug(1);
714 } elsif ($arg eq "o") {
715 B->debug(1);
716 } elsif ($arg eq "a") {
717 B::Assembler::debug(1);
718 } elsif ($arg eq "C") {
719 $debug_cv = 1;
720 }
721 }
722 } elsif ($opt eq "v") {
723 $verbose = 1;
724 } elsif ($opt eq "m") {
725 $module_only = 1;
726 } elsif ($opt eq "S") {
727 $no_assemble = 1;
728 } elsif ($opt eq "f") {
729 $arg ||= shift @options;
730 my $value = $arg !~ s/^no-//;
731 $arg =~ s/-/_/g;
732 my $ref = $optimise{$arg};
733 if (defined($ref)) {
734 $$ref = $value;
735 } else {
736 warn qq(ignoring unknown optimisation option "$arg"\n);
737 }
738 } elsif ($opt eq "O") {
739 $arg = 1 if $arg eq "";
740 my $ref;
741 foreach $ref (values %optimise) {
742 $$ref = 0;
743 }
744 if ($arg >= 6) {
745 $strip_syntree = 1;
746 }
747 if ($arg >= 2) {
748 $bypass_nullops = 1;
749 }
750 if ($arg >= 1) {
751 $compress_nullops = 1;
752 $omit_seq = 1;
753 }
754 }
755 }
756 if (@options) {
757 return sub {
758 my $objname;
759 my $newfh;
760 $newfh = prepare_assemble() unless $no_assemble;
761 foreach $objname (@options) {
762 eval "bytecompile_object(\\$objname)";
763 }
764 do_assemble($newfh) unless $no_assemble;
765 }
766 } else {
767 return sub {
768 my $newfh;
769 $newfh = prepare_assemble() unless $no_assemble;
770 bytecompile_main();
771 do_assemble($newfh) unless $no_assemble;
772 }
773 }
774}
775
7761;
7f20e9dd 777
778__END__
779
780=head1 NAME
781
782B::Bytecode - Perl compiler's bytecode backend
783
784=head1 SYNOPSIS
785
1a52ab62 786 perl -MO=Bytecode[,OPTIONS] foo.pl
7f20e9dd 787
788=head1 DESCRIPTION
789
1a52ab62 790This compiler backend takes Perl source and generates a
791platform-independent bytecode encapsulating code to load the
792internal structures perl uses to run your program. When the
793generated bytecode is loaded in, your program is ready to run,
794reducing the time which perl would have taken to load and parse
795your program into its internal semi-compiled form. That means that
796compiling with this backend will not help improve the runtime
797execution speed of your program but may improve the start-up time.
798Depending on the environment in which your program runs this may
799or may not be a help.
800
801The resulting bytecode can be run with a special byteperl executable
802or (for non-main programs) be loaded via the C<byteload_fh> function
803in the F<B> module.
804
805=head1 OPTIONS
806
807If there are any non-option arguments, they are taken to be names of
808objects to be saved (probably doesn't work properly yet). Without
809extra arguments, it saves the main program.
810
811=over 4
812
813=item B<-ofilename>
814
815Output to filename instead of STDOUT.
816
817=item B<-->
818
819Force end of options.
820
821=item B<-f>
822
823Force optimisations on or off one at a time. Each can be preceded
824by B<no-> to turn the option off (e.g. B<-fno-compress-nullops>).
825
826=item B<-fcompress-nullops>
827
828Only fills in the necessary fields of ops which have
829been optimised away by perl's internal compiler.
830
831=item B<-fomit-sequence-numbers>
832
833Leaves out code to fill in the op_seq field of all ops
834which is only used by perl's internal compiler.
835
836=item B<-fbypass-nullops>
837
838If op->op_next ever points to a NULLOP, replaces the op_next field
839with the first non-NULLOP in the path of execution.
840
841=item B<-fstrip-syntax-tree>
842
843Leaves out code to fill in the pointers which link the internal syntax
844tree together. They're not needed at run-time but leaving them out
845will make it impossible to recompile or disassemble the resulting
846program. It will also stop C<goto label> statements from working.
847
848=item B<-On>
849
850Optimisation level (n = 0, 1, 2, ...). B<-O> means B<-O1>.
851B<-O1> sets B<-fcompress-nullops> B<-fomit-sequence numbers>.
852B<-O6> adds B<-fstrip-syntax-tree>.
853
854=item B<-D>
855
856Debug options (concatenated or separate flags like C<perl -D>).
857
858=item B<-Do>
859
860Prints each OP as it's processed.
861
862=item B<-Db>
863
864Print debugging information about bytecompiler progress.
865
866=item B<-Da>
867
868Tells the (bytecode) assembler to include source assembler lines
869in its output as bytecode comments.
870
871=item B<-DC>
872
873Prints each CV taken from the final symbol tree walk.
874
875=item B<-S>
876
877Output (bytecode) assembler source rather than piping it
878through the assembler and outputting bytecode.
879
880=item B<-m>
881
882Compile as a module rather than a standalone program. Currently this
883just means that the bytecodes for initialising C<main_start>,
884C<main_root> and C<curpad> are omitted.
885
886=back
887
707102d0 888=head1 EXAMPLES
1a52ab62 889
e8edd1e6 890 perl -MO=Bytecode,-O6,-o,foo.plc foo.pl
1a52ab62 891
e8edd1e6 892 perl -MO=Bytecode,-S foo.pl > foo.S
893 assemble foo.S > foo.plc
1a52ab62 894
e8edd1e6 895Note that C<assemble> lives in the C<B> subdirectory of your perl
896library directory. The utility called perlcc may also be used to
897help make use of this compiler.
898
899 perl -MO=Bytecode,-m,-oFoo.pmc Foo.pm
1a52ab62 900
901=head1 BUGS
902
903Plenty. Current status: experimental.
7f20e9dd 904
905=head1 AUTHOR
906
907Malcolm Beattie, C<mbeattie@sable.ox.ac.uk>
908
909=cut