Rewrite `scm_lfwrite_substr' in terms of `scm_display'.
[bpt/guile.git] / libguile / vm.c
1 /* Copyright (C) 2001, 2009, 2010, 2011 Free Software Foundation, Inc.
2 *
3 * This library is free software; you can redistribute it and/or
4 * modify it under the terms of the GNU Lesser General Public License
5 * as published by the Free Software Foundation; either version 3 of
6 * the License, or (at your option) any later version.
7 *
8 * This library is distributed in the hope that it will be useful, but
9 * WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * Lesser General Public License for more details.
12 *
13 * You should have received a copy of the GNU Lesser General Public
14 * License along with this library; if not, write to the Free Software
15 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
16 * 02110-1301 USA
17 */
18
19 #if HAVE_CONFIG_H
20 # include <config.h>
21 #endif
22
23 #include <stdlib.h>
24 #include <alloca.h>
25 #include <alignof.h>
26 #include <string.h>
27 #include <stdint.h>
28
29 #include "libguile/bdw-gc.h"
30 #include <gc/gc_mark.h>
31
32 #include "_scm.h"
33 #include "control.h"
34 #include "frames.h"
35 #include "instructions.h"
36 #include "objcodes.h"
37 #include "programs.h"
38 #include "vm.h"
39
40 static int vm_default_engine = SCM_VM_REGULAR_ENGINE;
41
42 /* Unfortunately we can't snarf these: snarfed things are only loaded up from
43 (system vm vm), which might not be loaded before an error happens. */
44 static SCM sym_vm_run;
45 static SCM sym_vm_error;
46 static SCM sym_keyword_argument_error;
47 static SCM sym_regular;
48 static SCM sym_debug;
49
50 /* The VM has a number of internal assertions that shouldn't normally be
51 necessary, but might be if you think you found a bug in the VM. */
52 #define VM_ENABLE_ASSERTIONS
53
54 /* We can add a mode that ensures that all stack items above the stack pointer
55 are NULL. This is useful for checking the internal consistency of the VM's
56 assumptions and its operators, but isn't necessary for normal operation. It
57 will ensure that assertions are enabled. Slows down the VM by about 30%. */
58 /* NB! If you enable this, search for NULLING in throw.c */
59 /* #define VM_ENABLE_STACK_NULLING */
60
61 /* #define VM_ENABLE_PARANOID_ASSERTIONS */
62
63 #if defined (VM_ENABLE_STACK_NULLING) && !defined (VM_ENABLE_ASSERTIONS)
64 #define VM_ENABLE_ASSERTIONS
65 #endif
66
67 /* When defined, arrange so that the GC doesn't scan the VM stack beyond its
68 current SP. This should help avoid excess data retention. See
69 http://thread.gmane.org/gmane.comp.programming.garbage-collection.boehmgc/3001
70 for a discussion. */
71 #define VM_ENABLE_PRECISE_STACK_GC_SCAN
72
73 /* Size in SCM objects of the stack reserve. The reserve is used to run
74 exception handling code in case of a VM stack overflow. */
75 #define VM_STACK_RESERVE_SIZE 512
76
77
78 \f
79 /*
80 * VM Continuation
81 */
82
83 void
84 scm_i_vm_cont_print (SCM x, SCM port, scm_print_state *pstate)
85 {
86 scm_puts ("#<vm-continuation ", port);
87 scm_uintprint (SCM_UNPACK (x), 16, port);
88 scm_puts (">", port);
89 }
90
91 /* In theory, a number of vm instances can be active in the call trace, and we
92 only want to reify the continuations of those in the current continuation
93 root. I don't see a nice way to do this -- ideally it would involve dynwinds,
94 and previous values of the *the-vm* fluid within the current continuation
95 root. But we don't have access to continuation roots in the dynwind stack.
96 So, just punt for now, we just capture the continuation for the current VM.
97
98 While I'm on the topic, ideally we could avoid copying the C stack if the
99 continuation root is inside VM code, and call/cc was invoked within that same
100 call to vm_run; but that's currently not implemented.
101 */
102 SCM
103 scm_i_vm_capture_stack (SCM *stack_base, SCM *fp, SCM *sp, scm_t_uint8 *ra,
104 scm_t_uint8 *mvra, scm_t_uint32 flags)
105 {
106 struct scm_vm_cont *p;
107
108 p = scm_gc_malloc (sizeof (*p), "capture_vm_cont");
109 p->stack_size = sp - stack_base + 1;
110 p->stack_base = scm_gc_malloc (p->stack_size * sizeof (SCM),
111 "capture_vm_cont");
112 #if defined(VM_ENABLE_STACK_NULLING) && 0
113 /* Tail continuations leave their frame on the stack for subsequent
114 application, but don't capture the frame -- so there are some elements on
115 the stack then, and this check doesn't work, so disable it for now. */
116 if (sp >= vp->stack_base)
117 if (!vp->sp[0] || vp->sp[1])
118 abort ();
119 memset (p->stack_base, 0, p->stack_size * sizeof (SCM));
120 #endif
121 p->ra = ra;
122 p->mvra = mvra;
123 p->sp = sp;
124 p->fp = fp;
125 memcpy (p->stack_base, stack_base, (sp + 1 - stack_base) * sizeof (SCM));
126 p->reloc = p->stack_base - stack_base;
127 p->flags = flags;
128 return scm_cell (scm_tc7_vm_cont, (scm_t_bits)p);
129 }
130
131 static void
132 vm_return_to_continuation (SCM vm, SCM cont, size_t n, SCM *argv)
133 {
134 struct scm_vm *vp;
135 struct scm_vm_cont *cp;
136 SCM *argv_copy;
137
138 argv_copy = alloca (n * sizeof(SCM));
139 memcpy (argv_copy, argv, n * sizeof(SCM));
140
141 vp = SCM_VM_DATA (vm);
142 cp = SCM_VM_CONT_DATA (cont);
143
144 if (n == 0 && !cp->mvra)
145 scm_misc_error (NULL, "Too few values returned to continuation",
146 SCM_EOL);
147
148 if (vp->stack_size < cp->stack_size + n + 1)
149 scm_misc_error ("vm-engine", "not enough space to reinstate continuation",
150 scm_list_2 (vm, cont));
151
152 #ifdef VM_ENABLE_STACK_NULLING
153 {
154 scm_t_ptrdiff nzero = (vp->sp - cp->sp);
155 if (nzero > 0)
156 memset (vp->stack_base + cp->stack_size, 0, nzero * sizeof (SCM));
157 /* actually nzero should always be negative, because vm_reset_stack will
158 unwind the stack to some point *below* this continuation */
159 }
160 #endif
161 vp->sp = cp->sp;
162 vp->fp = cp->fp;
163 memcpy (vp->stack_base, cp->stack_base, cp->stack_size * sizeof (SCM));
164
165 if (n == 1 || !cp->mvra)
166 {
167 vp->ip = cp->ra;
168 vp->sp++;
169 *vp->sp = argv_copy[0];
170 }
171 else
172 {
173 size_t i;
174 for (i = 0; i < n; i++)
175 {
176 vp->sp++;
177 *vp->sp = argv_copy[i];
178 }
179 vp->sp++;
180 *vp->sp = scm_from_size_t (n);
181 vp->ip = cp->mvra;
182 }
183 }
184
185 SCM
186 scm_i_vm_capture_continuation (SCM vm)
187 {
188 struct scm_vm *vp = SCM_VM_DATA (vm);
189 return scm_i_vm_capture_stack (vp->stack_base, vp->fp, vp->sp, vp->ip, NULL, 0);
190 }
191
192 static void
193 vm_dispatch_hook (SCM vm, int hook_num)
194 {
195 struct scm_vm *vp;
196 SCM hook;
197 struct scm_frame c_frame;
198 scm_t_cell *frame;
199 SCM args[1];
200 int saved_trace_level;
201
202 vp = SCM_VM_DATA (vm);
203 hook = vp->hooks[hook_num];
204
205 if (SCM_LIKELY (scm_is_false (hook))
206 || scm_is_null (SCM_HOOK_PROCEDURES (hook)))
207 return;
208
209 saved_trace_level = vp->trace_level;
210 vp->trace_level = 0;
211
212 /* Allocate a frame object on the stack. This is more efficient than calling
213 `scm_c_make_frame ()' to allocate on the heap, but it forces hooks to not
214 capture frame objects.
215
216 At the same time, procedures such as `frame-procedure' make sense only
217 while the stack frame represented by the frame object is visible, so it
218 seems reasonable to limit the lifetime of frame objects. */
219
220 c_frame.stack_holder = vm;
221 c_frame.fp = vp->fp;
222 c_frame.sp = vp->sp;
223 c_frame.ip = vp->ip;
224 c_frame.offset = 0;
225
226 /* Arrange for FRAME to be 8-byte aligned, like any other cell. */
227 frame = alloca (sizeof (*frame) + 8);
228 frame = (scm_t_cell *) ROUND_UP ((scm_t_uintptr) frame, 8UL);
229
230 frame->word_0 = SCM_PACK (scm_tc7_frame);
231 frame->word_1 = PTR2SCM (&c_frame);
232 args[0] = PTR2SCM (frame);
233
234 scm_c_run_hookn (hook, args, 1);
235
236 vp->trace_level = saved_trace_level;
237 }
238
239 static void vm_abort (SCM vm, size_t n, scm_t_int64 cookie) SCM_NORETURN;
240 static void
241 vm_abort (SCM vm, size_t n, scm_t_int64 vm_cookie)
242 {
243 size_t i;
244 ssize_t tail_len;
245 SCM tag, tail, *argv;
246
247 /* FIXME: VM_ENABLE_STACK_NULLING */
248 tail = *(SCM_VM_DATA (vm)->sp--);
249 /* NULLSTACK (1) */
250 tail_len = scm_ilength (tail);
251 if (tail_len < 0)
252 scm_misc_error ("vm-engine", "tail values to abort should be a list",
253 scm_list_1 (tail));
254
255 tag = SCM_VM_DATA (vm)->sp[-n];
256 argv = alloca ((n + tail_len) * sizeof (SCM));
257 for (i = 0; i < n; i++)
258 argv[i] = SCM_VM_DATA (vm)->sp[-(n-1-i)];
259 for (; i < n + tail_len; i++, tail = scm_cdr (tail))
260 argv[i] = scm_car (tail);
261 /* NULLSTACK (n + 1) */
262 SCM_VM_DATA (vm)->sp -= n + 1;
263
264 scm_c_abort (vm, tag, n + tail_len, argv, vm_cookie);
265 }
266
267 static void
268 vm_reinstate_partial_continuation (SCM vm, SCM cont, SCM intwinds,
269 size_t n, SCM *argv, scm_t_int64 vm_cookie)
270 {
271 struct scm_vm *vp;
272 struct scm_vm_cont *cp;
273 SCM *argv_copy, *base;
274 size_t i;
275
276 argv_copy = alloca (n * sizeof(SCM));
277 memcpy (argv_copy, argv, n * sizeof(SCM));
278
279 vp = SCM_VM_DATA (vm);
280 cp = SCM_VM_CONT_DATA (cont);
281 base = SCM_FRAME_UPPER_ADDRESS (vp->fp) + 1;
282
283 #define RELOC(scm_p) (scm_p + cp->reloc + (base - cp->stack_base))
284
285 if ((base - vp->stack_base) + cp->stack_size + n + 1 > vp->stack_size)
286 scm_misc_error ("vm-engine",
287 "not enough space to instate partial continuation",
288 scm_list_2 (vm, cont));
289
290 memcpy (base, cp->stack_base, cp->stack_size * sizeof (SCM));
291
292 /* now relocate frame pointers */
293 {
294 SCM *fp;
295 for (fp = RELOC (cp->fp);
296 SCM_FRAME_LOWER_ADDRESS (fp) > base;
297 fp = SCM_FRAME_DYNAMIC_LINK (fp))
298 SCM_FRAME_SET_DYNAMIC_LINK (fp, RELOC (SCM_FRAME_DYNAMIC_LINK (fp)));
299 }
300
301 vp->sp = base - 1 + cp->stack_size;
302 vp->fp = RELOC (cp->fp);
303 vp->ip = cp->mvra;
304
305 /* now push args. ip is in a MV context. */
306 for (i = 0; i < n; i++)
307 {
308 vp->sp++;
309 *vp->sp = argv_copy[i];
310 }
311 vp->sp++;
312 *vp->sp = scm_from_size_t (n);
313
314 /* Finally, rewind the dynamic state.
315
316 We have to treat prompts specially, because we could be rewinding the
317 dynamic state from a different thread, or just a different position on the
318 C and/or VM stack -- so we need to reset the jump buffers so that an abort
319 comes back here, with appropriately adjusted sp and fp registers. */
320 {
321 long delta = 0;
322 SCM newwinds = scm_i_dynwinds ();
323 for (; scm_is_pair (intwinds); intwinds = scm_cdr (intwinds), delta--)
324 {
325 SCM x = scm_car (intwinds);
326 if (SCM_PROMPT_P (x))
327 /* the jmpbuf will be reset by our caller */
328 x = scm_c_make_prompt (SCM_PROMPT_TAG (x),
329 RELOC (SCM_PROMPT_REGISTERS (x)->fp),
330 RELOC (SCM_PROMPT_REGISTERS (x)->sp),
331 SCM_PROMPT_REGISTERS (x)->ip,
332 SCM_PROMPT_ESCAPE_P (x),
333 vm_cookie,
334 newwinds);
335 newwinds = scm_cons (x, newwinds);
336 }
337 scm_dowinds (newwinds, delta);
338 }
339 #undef RELOC
340 }
341
342 \f
343 /*
344 * VM Internal functions
345 */
346
347 void
348 scm_i_vm_print (SCM x, SCM port, scm_print_state *pstate)
349 {
350 const struct scm_vm *vm;
351
352 vm = SCM_VM_DATA (x);
353
354 scm_puts ("#<vm ", port);
355 switch (vm->engine)
356 {
357 case SCM_VM_REGULAR_ENGINE:
358 scm_puts ("regular-engine ", port);
359 break;
360
361 case SCM_VM_DEBUG_ENGINE:
362 scm_puts ("debug-engine ", port);
363 break;
364
365 default:
366 scm_puts ("unknown-engine ", port);
367 }
368 scm_uintprint (SCM_UNPACK (x), 16, port);
369 scm_puts (">", port);
370 }
371
372 static SCM
373 really_make_boot_program (long nargs)
374 {
375 SCM u8vec;
376 scm_t_uint8 text[] = { scm_op_mv_call, 0, 0, 0, 1,
377 scm_op_make_int8_1, scm_op_halt };
378 struct scm_objcode *bp;
379 SCM ret;
380
381 if (SCM_UNLIKELY (nargs > 255 || nargs < 0))
382 scm_misc_error ("vm-engine", "too many args when making boot procedure",
383 scm_list_1 (scm_from_long (nargs)));
384
385 text[1] = (scm_t_uint8)nargs;
386
387 bp = scm_malloc (sizeof (struct scm_objcode) + sizeof (text));
388 memcpy (SCM_C_OBJCODE_BASE (bp), text, sizeof (text));
389 bp->len = sizeof(text);
390 bp->metalen = 0;
391
392 u8vec = scm_c_take_bytevector ((scm_t_int8*)bp,
393 sizeof (struct scm_objcode) + sizeof (text));
394 ret = scm_make_program (scm_bytecode_to_objcode (u8vec),
395 SCM_BOOL_F, SCM_BOOL_F);
396 SCM_SET_CELL_WORD_0 (ret, SCM_CELL_WORD_0 (ret) | SCM_F_PROGRAM_IS_BOOT);
397
398 return ret;
399 }
400 #define NUM_BOOT_PROGS 8
401 static SCM
402 vm_make_boot_program (long nargs)
403 {
404 static SCM programs[NUM_BOOT_PROGS] = { 0, };
405
406 if (SCM_UNLIKELY (!programs[0]))
407 {
408 int i;
409 for (i = 0; i < NUM_BOOT_PROGS; i++)
410 programs[i] = really_make_boot_program (i);
411 }
412
413 if (SCM_LIKELY (nargs < NUM_BOOT_PROGS))
414 return programs[nargs];
415 else
416 return really_make_boot_program (nargs);
417 }
418
419 \f
420 /*
421 * VM
422 */
423
424 static SCM
425 resolve_variable (SCM what, SCM program_module)
426 {
427 if (SCM_LIKELY (scm_is_symbol (what)))
428 {
429 if (SCM_LIKELY (scm_module_system_booted_p
430 && scm_is_true (program_module)))
431 /* might longjmp */
432 return scm_module_lookup (program_module, what);
433 else
434 {
435 SCM v = scm_sym2var (what, SCM_BOOL_F, SCM_BOOL_F);
436 if (scm_is_false (v))
437 scm_misc_error (NULL, "unbound variable: ~S", scm_list_1 (what));
438 else
439 return v;
440 }
441 }
442 else
443 {
444 SCM mod;
445 /* compilation of @ or @@
446 `what' is a three-element list: (MODNAME SYM INTERFACE?)
447 INTERFACE? is #t if we compiled @ or #f if we compiled @@
448 */
449 mod = scm_resolve_module (SCM_CAR (what));
450 if (scm_is_true (SCM_CADDR (what)))
451 mod = scm_module_public_interface (mod);
452 if (scm_is_false (mod))
453 scm_misc_error (NULL, "no such module: ~S",
454 scm_list_1 (SCM_CAR (what)));
455 /* might longjmp */
456 return scm_module_lookup (mod, SCM_CADR (what));
457 }
458 }
459
460 #define VM_DEFAULT_STACK_SIZE (64 * 1024)
461
462 #define VM_NAME vm_regular_engine
463 #define FUNC_NAME "vm-regular-engine"
464 #define VM_ENGINE SCM_VM_REGULAR_ENGINE
465 #include "vm-engine.c"
466 #undef VM_NAME
467 #undef FUNC_NAME
468 #undef VM_ENGINE
469
470 #define VM_NAME vm_debug_engine
471 #define FUNC_NAME "vm-debug-engine"
472 #define VM_ENGINE SCM_VM_DEBUG_ENGINE
473 #include "vm-engine.c"
474 #undef VM_NAME
475 #undef FUNC_NAME
476 #undef VM_ENGINE
477
478 static const scm_t_vm_engine vm_engines[] =
479 { vm_regular_engine, vm_debug_engine };
480
481 #ifdef VM_ENABLE_PRECISE_STACK_GC_SCAN
482
483 /* The GC "kind" for the VM stack. */
484 static int vm_stack_gc_kind;
485
486 #endif
487
488 static SCM
489 make_vm (void)
490 #define FUNC_NAME "make_vm"
491 {
492 int i;
493 struct scm_vm *vp;
494
495 vp = scm_gc_malloc (sizeof (struct scm_vm), "vm");
496
497 vp->stack_size = VM_DEFAULT_STACK_SIZE;
498
499 #ifdef VM_ENABLE_PRECISE_STACK_GC_SCAN
500 vp->stack_base = (SCM *)
501 GC_generic_malloc (vp->stack_size * sizeof (SCM), vm_stack_gc_kind);
502
503 /* Keep a pointer to VP so that `vm_stack_mark ()' can know what the stack
504 top is. */
505 *vp->stack_base = PTR2SCM (vp);
506 vp->stack_base++;
507 vp->stack_size--;
508 #else
509 vp->stack_base = scm_gc_malloc (vp->stack_size * sizeof (SCM),
510 "stack-base");
511 #endif
512
513 #ifdef VM_ENABLE_STACK_NULLING
514 memset (vp->stack_base, 0, vp->stack_size * sizeof (SCM));
515 #endif
516 vp->stack_limit = vp->stack_base + vp->stack_size - VM_STACK_RESERVE_SIZE;
517 vp->ip = NULL;
518 vp->sp = vp->stack_base - 1;
519 vp->fp = NULL;
520 vp->engine = vm_default_engine;
521 vp->trace_level = 0;
522 for (i = 0; i < SCM_VM_NUM_HOOKS; i++)
523 vp->hooks[i] = SCM_BOOL_F;
524 vp->cookie = 0;
525 return scm_cell (scm_tc7_vm, (scm_t_bits)vp);
526 }
527 #undef FUNC_NAME
528
529 #ifdef VM_ENABLE_PRECISE_STACK_GC_SCAN
530
531 /* Mark the VM stack region between its base and its current top. */
532 static struct GC_ms_entry *
533 vm_stack_mark (GC_word *addr, struct GC_ms_entry *mark_stack_ptr,
534 struct GC_ms_entry *mark_stack_limit, GC_word env)
535 {
536 GC_word *word;
537 const struct scm_vm *vm;
538
539 /* The first word of the VM stack should contain a pointer to the
540 corresponding VM. */
541 vm = * ((struct scm_vm **) addr);
542
543 if (vm == NULL
544 || (SCM *) addr != vm->stack_base - 1)
545 /* ADDR must be a pointer to a free-list element, which we must ignore
546 (see warning in <gc/gc_mark.h>). */
547 return mark_stack_ptr;
548
549 for (word = (GC_word *) vm->stack_base; word <= (GC_word *) vm->sp; word++)
550 mark_stack_ptr = GC_MARK_AND_PUSH ((* (GC_word **) word),
551 mark_stack_ptr, mark_stack_limit,
552 NULL);
553
554 return mark_stack_ptr;
555 }
556
557 #endif /* VM_ENABLE_PRECISE_STACK_GC_SCAN */
558
559
560 SCM
561 scm_c_vm_run (SCM vm, SCM program, SCM *argv, int nargs)
562 {
563 struct scm_vm *vp = SCM_VM_DATA (vm);
564 SCM_CHECK_STACK;
565 return vm_engines[vp->engine](vm, program, argv, nargs);
566 }
567
568 /* Scheme interface */
569
570 SCM_DEFINE (scm_the_vm, "the-vm", 0, 0, 0,
571 (void),
572 "Return the current thread's VM.")
573 #define FUNC_NAME s_scm_the_vm
574 {
575 scm_i_thread *t = SCM_I_CURRENT_THREAD;
576
577 if (SCM_UNLIKELY (scm_is_false (t->vm)))
578 t->vm = make_vm ();
579
580 return t->vm;
581 }
582 #undef FUNC_NAME
583
584
585 SCM_DEFINE (scm_vm_p, "vm?", 1, 0, 0,
586 (SCM obj),
587 "")
588 #define FUNC_NAME s_scm_vm_p
589 {
590 return scm_from_bool (SCM_VM_P (obj));
591 }
592 #undef FUNC_NAME
593
594 SCM_DEFINE (scm_make_vm, "make-vm", 0, 0, 0,
595 (void),
596 "")
597 #define FUNC_NAME s_scm_make_vm,
598 {
599 return make_vm ();
600 }
601 #undef FUNC_NAME
602
603 SCM_DEFINE (scm_vm_ip, "vm:ip", 1, 0, 0,
604 (SCM vm),
605 "")
606 #define FUNC_NAME s_scm_vm_ip
607 {
608 SCM_VALIDATE_VM (1, vm);
609 return scm_from_unsigned_integer ((scm_t_bits) SCM_VM_DATA (vm)->ip);
610 }
611 #undef FUNC_NAME
612
613 SCM_DEFINE (scm_vm_sp, "vm:sp", 1, 0, 0,
614 (SCM vm),
615 "")
616 #define FUNC_NAME s_scm_vm_sp
617 {
618 SCM_VALIDATE_VM (1, vm);
619 return scm_from_unsigned_integer ((scm_t_bits) SCM_VM_DATA (vm)->sp);
620 }
621 #undef FUNC_NAME
622
623 SCM_DEFINE (scm_vm_fp, "vm:fp", 1, 0, 0,
624 (SCM vm),
625 "")
626 #define FUNC_NAME s_scm_vm_fp
627 {
628 SCM_VALIDATE_VM (1, vm);
629 return scm_from_unsigned_integer ((scm_t_bits) SCM_VM_DATA (vm)->fp);
630 }
631 #undef FUNC_NAME
632
633 #define VM_DEFINE_HOOK(n) \
634 { \
635 struct scm_vm *vp; \
636 SCM_VALIDATE_VM (1, vm); \
637 vp = SCM_VM_DATA (vm); \
638 if (scm_is_false (vp->hooks[n])) \
639 vp->hooks[n] = scm_make_hook (SCM_I_MAKINUM (1)); \
640 return vp->hooks[n]; \
641 }
642
643 SCM_DEFINE (scm_vm_apply_hook, "vm-apply-hook", 1, 0, 0,
644 (SCM vm),
645 "")
646 #define FUNC_NAME s_scm_vm_apply_hook
647 {
648 VM_DEFINE_HOOK (SCM_VM_APPLY_HOOK);
649 }
650 #undef FUNC_NAME
651
652 SCM_DEFINE (scm_vm_push_continuation_hook, "vm-push-continuation-hook", 1, 0, 0,
653 (SCM vm),
654 "")
655 #define FUNC_NAME s_scm_vm_push_continuation_hook
656 {
657 VM_DEFINE_HOOK (SCM_VM_PUSH_CONTINUATION_HOOK);
658 }
659 #undef FUNC_NAME
660
661 SCM_DEFINE (scm_vm_pop_continuation_hook, "vm-pop-continuation-hook", 1, 0, 0,
662 (SCM vm),
663 "")
664 #define FUNC_NAME s_scm_vm_pop_continuation_hook
665 {
666 VM_DEFINE_HOOK (SCM_VM_POP_CONTINUATION_HOOK);
667 }
668 #undef FUNC_NAME
669
670 SCM_DEFINE (scm_vm_next_hook, "vm-next-hook", 1, 0, 0,
671 (SCM vm),
672 "")
673 #define FUNC_NAME s_scm_vm_next_hook
674 {
675 VM_DEFINE_HOOK (SCM_VM_NEXT_HOOK);
676 }
677 #undef FUNC_NAME
678
679 SCM_DEFINE (scm_vm_abort_continuation_hook, "vm-abort-continuation-hook", 1, 0, 0,
680 (SCM vm),
681 "")
682 #define FUNC_NAME s_scm_vm_abort_continuation_hook
683 {
684 VM_DEFINE_HOOK (SCM_VM_ABORT_CONTINUATION_HOOK);
685 }
686 #undef FUNC_NAME
687
688 SCM_DEFINE (scm_vm_restore_continuation_hook, "vm-restore-continuation-hook", 1, 0, 0,
689 (SCM vm),
690 "")
691 #define FUNC_NAME s_scm_vm_restore_continuation_hook
692 {
693 VM_DEFINE_HOOK (SCM_VM_RESTORE_CONTINUATION_HOOK);
694 }
695 #undef FUNC_NAME
696
697 SCM_DEFINE (scm_vm_trace_level, "vm-trace-level", 1, 0, 0,
698 (SCM vm),
699 "")
700 #define FUNC_NAME s_scm_vm_trace_level
701 {
702 SCM_VALIDATE_VM (1, vm);
703 return scm_from_int (SCM_VM_DATA (vm)->trace_level);
704 }
705 #undef FUNC_NAME
706
707 SCM_DEFINE (scm_set_vm_trace_level_x, "set-vm-trace-level!", 2, 0, 0,
708 (SCM vm, SCM level),
709 "")
710 #define FUNC_NAME s_scm_set_vm_trace_level_x
711 {
712 SCM_VALIDATE_VM (1, vm);
713 SCM_VM_DATA (vm)->trace_level = scm_to_int (level);
714 return SCM_UNSPECIFIED;
715 }
716 #undef FUNC_NAME
717
718 \f
719 /*
720 * VM engines
721 */
722
723 static int
724 symbol_to_vm_engine (SCM engine, const char *FUNC_NAME)
725 {
726 if (scm_is_eq (engine, sym_regular))
727 return SCM_VM_REGULAR_ENGINE;
728 else if (scm_is_eq (engine, sym_debug))
729 return SCM_VM_DEBUG_ENGINE;
730 else
731 SCM_MISC_ERROR ("Unknown VM engine: ~a", scm_list_1 (engine));
732 }
733
734 static SCM
735 vm_engine_to_symbol (int engine, const char *FUNC_NAME)
736 {
737 switch (engine)
738 {
739 case SCM_VM_REGULAR_ENGINE:
740 return sym_regular;
741 case SCM_VM_DEBUG_ENGINE:
742 return sym_debug;
743 default:
744 /* ? */
745 SCM_MISC_ERROR ("Unknown VM engine: ~a",
746 scm_list_1 (scm_from_int (engine)));
747 }
748 }
749
750 SCM_DEFINE (scm_vm_engine, "vm-engine", 1, 0, 0,
751 (SCM vm),
752 "")
753 #define FUNC_NAME s_scm_vm_engine
754 {
755 SCM_VALIDATE_VM (1, vm);
756 return vm_engine_to_symbol (SCM_VM_DATA (vm)->engine, FUNC_NAME);
757 }
758 #undef FUNC_NAME
759
760 void
761 scm_c_set_vm_engine_x (SCM vm, int engine)
762 #define FUNC_NAME "set-vm-engine!"
763 {
764 SCM_VALIDATE_VM (1, vm);
765
766 if (engine < 0 || engine >= SCM_VM_NUM_ENGINES)
767 SCM_MISC_ERROR ("Unknown VM engine: ~a",
768 scm_list_1 (scm_from_int (engine)));
769
770 SCM_VM_DATA (vm)->engine = engine;
771 }
772 #undef FUNC_NAME
773
774 SCM_DEFINE (scm_set_vm_engine_x, "set-vm-engine!", 2, 0, 0,
775 (SCM vm, SCM engine),
776 "")
777 #define FUNC_NAME s_scm_set_vm_engine_x
778 {
779 scm_c_set_vm_engine_x (vm, symbol_to_vm_engine (engine, FUNC_NAME));
780 return SCM_UNSPECIFIED;
781 }
782 #undef FUNC_NAME
783
784 void
785 scm_c_set_default_vm_engine_x (int engine)
786 #define FUNC_NAME "set-default-vm-engine!"
787 {
788 if (engine < 0 || engine >= SCM_VM_NUM_ENGINES)
789 SCM_MISC_ERROR ("Unknown VM engine: ~a",
790 scm_list_1 (scm_from_int (engine)));
791
792 vm_default_engine = engine;
793 }
794 #undef FUNC_NAME
795
796 SCM_DEFINE (scm_set_default_vm_engine_x, "set-default-vm-engine!", 1, 0, 0,
797 (SCM engine),
798 "")
799 #define FUNC_NAME s_scm_set_default_vm_engine_x
800 {
801 scm_c_set_default_vm_engine_x (symbol_to_vm_engine (engine, FUNC_NAME));
802 return SCM_UNSPECIFIED;
803 }
804 #undef FUNC_NAME
805
806 static void reinstate_vm (SCM vm)
807 {
808 scm_i_thread *t = SCM_I_CURRENT_THREAD;
809 t->vm = vm;
810 }
811
812 SCM_DEFINE (scm_call_with_vm, "call-with-vm", 2, 0, 1,
813 (SCM vm, SCM proc, SCM args),
814 "Apply @var{proc} to @var{args} in a dynamic extent in which\n"
815 "@var{vm} is the current VM.\n\n"
816 "As an implementation restriction, if @var{vm} is not the same\n"
817 "as the current thread's VM, continuations captured within the\n"
818 "call to @var{proc} may not be reinstated once control leaves\n"
819 "@var{proc}.")
820 #define FUNC_NAME s_scm_call_with_vm
821 {
822 SCM prev_vm, ret;
823 SCM *argv;
824 int i, nargs;
825 scm_t_wind_flags flags;
826 scm_i_thread *t = SCM_I_CURRENT_THREAD;
827
828 SCM_VALIDATE_VM (1, vm);
829 SCM_VALIDATE_PROC (2, proc);
830
831 nargs = scm_ilength (args);
832 if (SCM_UNLIKELY (nargs < 0))
833 scm_wrong_type_arg_msg (FUNC_NAME, 3, args, "list");
834
835 argv = alloca (nargs * sizeof(SCM));
836 for (i = 0; i < nargs; i++)
837 {
838 argv[i] = SCM_CAR (args);
839 args = SCM_CDR (args);
840 }
841
842 prev_vm = t->vm;
843
844 /* Reentry can happen via invokation of a saved continuation, but
845 continuations only save the state of the VM that they are in at
846 capture-time, which might be different from this one. So, in the
847 case that the VMs are different, set up a non-rewindable frame to
848 prevent reinstating an incomplete continuation. */
849 flags = scm_is_eq (prev_vm, vm) ? 0 : SCM_F_WIND_EXPLICITLY;
850 if (flags)
851 {
852 scm_dynwind_begin (0);
853 scm_dynwind_unwind_handler_with_scm (reinstate_vm, prev_vm, flags);
854 t->vm = vm;
855 }
856
857 ret = scm_c_vm_run (vm, proc, argv, nargs);
858
859 if (flags)
860 scm_dynwind_end ();
861
862 return ret;
863 }
864 #undef FUNC_NAME
865
866 \f
867 /*
868 * Initialize
869 */
870
871 SCM scm_load_compiled_with_vm (SCM file)
872 {
873 SCM program = scm_make_program (scm_load_objcode (file),
874 SCM_BOOL_F, SCM_BOOL_F);
875
876 return scm_c_vm_run (scm_the_vm (), program, NULL, 0);
877 }
878
879 void
880 scm_bootstrap_vm (void)
881 {
882 scm_c_register_extension ("libguile-" SCM_EFFECTIVE_VERSION,
883 "scm_init_vm",
884 (scm_t_extension_init_func)scm_init_vm, NULL);
885
886 sym_vm_run = scm_from_latin1_symbol ("vm-run");
887 sym_vm_error = scm_from_latin1_symbol ("vm-error");
888 sym_keyword_argument_error = scm_from_latin1_symbol ("keyword-argument-error");
889 sym_regular = scm_from_latin1_symbol ("regular");
890 sym_debug = scm_from_latin1_symbol ("debug");
891
892 #ifdef VM_ENABLE_PRECISE_STACK_GC_SCAN
893 vm_stack_gc_kind =
894 GC_new_kind (GC_new_free_list (),
895 GC_MAKE_PROC (GC_new_proc (vm_stack_mark), 0),
896 0, 1);
897
898 #endif
899 }
900
901 void
902 scm_init_vm (void)
903 {
904 #ifndef SCM_MAGIC_SNARFER
905 #include "libguile/vm.x"
906 #endif
907 }
908
909 /*
910 Local Variables:
911 c-file-style: "gnu"
912 End:
913 */