* objects.h (SCM_SET_ENTITY_SETTER): new macro. SCM_ENTITY_SETTER
[bpt/guile.git] / libguile / gc.h
1 /* classes: h_files */
2
3 #ifndef GCH
4 #define GCH
5 /* Copyright (C) 1995, 96, 98, 99, 2000 Free Software Foundation, Inc.
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2, or (at your option)
10 * any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with this software; see the file COPYING. If not, write to
19 * the Free Software Foundation, Inc., 59 Temple Place, Suite 330,
20 * Boston, MA 02111-1307 USA
21 *
22 * As a special exception, the Free Software Foundation gives permission
23 * for additional uses of the text contained in its release of GUILE.
24 *
25 * The exception is that, if you link the GUILE library with other files
26 * to produce an executable, this does not by itself cause the
27 * resulting executable to be covered by the GNU General Public License.
28 * Your use of that executable is in no way restricted on account of
29 * linking the GUILE library code into it.
30 *
31 * This exception does not however invalidate any other reasons why
32 * the executable file might be covered by the GNU General Public License.
33 *
34 * This exception applies only to the code released by the
35 * Free Software Foundation under the name GUILE. If you copy
36 * code from other Free Software Foundation releases into a copy of
37 * GUILE, as the General Public License permits, the exception does
38 * not apply to the code that you add in this way. To avoid misleading
39 * anyone as to the status of such modified files, you must delete
40 * this exception notice from them.
41 *
42 * If you write modifications of your own for GUILE, it is your choice
43 * whether to permit this exception to apply to your modifications.
44 * If you do not wish that, delete this exception notice. */
45
46 /* Software engineering face-lift by Greg J. Badros, 11-Dec-1999,
47 gjb@cs.washington.edu, http://www.cs.washington.edu/homes/gjb */
48 \f
49
50 #include "libguile/__scm.h"
51
52 #include "libguile/hooks.h"
53
54 \f
55
56 typedef struct scm_cell
57 {
58 scm_bits_t word_0;
59 scm_bits_t word_1;
60 } scm_cell;
61
62
63 /* SCM_CELLPTR is a pointer to a cons cell which may be compared or
64 * differenced.
65 */
66 typedef scm_cell * SCM_CELLPTR;
67
68
69 /* Cray machines have pointers that are incremented once for each word,
70 * rather than each byte, the 3 most significant bits encode the byte
71 * within the word. The following macros deal with this by storing the
72 * native Cray pointers like the ones that looks like scm expects. This
73 * is done for any pointers that might appear in the car of a scm_cell,
74 * pointers to scm_vector elts, functions, &c are not munged.
75 */
76 #ifdef _UNICOS
77 # define SCM2PTR(x) ((SCM_CELLPTR) (SCM_UNPACK (x) >> 3))
78 # define PTR2SCM(x) (SCM_PACK (((scm_bits_t) (x)) << 3))
79 #else
80 # define SCM2PTR(x) ((SCM_CELLPTR) (SCM_UNPACK (x)))
81 # define PTR2SCM(x) (SCM_PACK ((scm_bits_t) (x)))
82 #endif /* def _UNICOS */
83
84 #define SCM_GC_CARD_N_HEADER_CELLS 1
85 #define SCM_GC_CARD_N_CELLS 256
86
87 #define SCM_GC_CARD_SIZE (SCM_GC_CARD_N_CELLS * sizeof (scm_cell))
88 #define SCM_GC_CARD_N_DATA_CELLS (SCM_GC_CARD_N_CELLS - SCM_GC_CARD_N_HEADER_CELLS)
89
90 #define SCM_GC_CARD_BVEC_SIZE_IN_LIMBS \
91 ((SCM_GC_CARD_N_CELLS + SCM_C_BVEC_LIMB_BITS - 1) / SCM_C_BVEC_LIMB_BITS)
92
93 #define SCM_GC_IN_CARD_HEADERP(x) \
94 SCM_PTR_LT ((scm_cell *) (x), SCM_GC_CELL_CARD (x) + SCM_GC_CARD_N_HEADER_CELLS)
95
96 #define SCM_GC_CARD_BVEC(card) ((scm_c_bvec_limb_t *) ((card)->word_0))
97 #define SCM_GC_SET_CARD_BVEC(card, bvec) \
98 ((card)->word_0 = (scm_bits_t) (bvec))
99
100 #define SCM_GC_GET_CARD_FLAGS(card) ((long) ((card)->word_1))
101 #define SCM_GC_SET_CARD_FLAGS(card, flags) \
102 ((card)->word_1 = (scm_bits_t) (flags))
103 #define SCM_GC_CLR_CARD_FLAGS(card) (SCM_GC_SET_CARD_FLAGS (card, 0L))
104
105 #define SCM_GC_GET_CARD_FLAG(card, shift) (SCM_GC_GET_CARD_FLAGS (card) & (1L << (shift)))
106 #define SCM_GC_SET_CARD_FLAG(card, shift) \
107 (SCM_GC_SET_CARD_FLAGS (card, SCM_GC_GET_CARD_FLAGS(card) | (1L << (shift))))
108 #define SCM_GC_CLR_CARD_FLAG(card, shift) \
109 (SCM_GC_SET_CARD_FLAGS (card, SCM_GC_GET_CARD_FLAGS(card) & ~(1L << (shift))))
110
111 #define SCM_GC_CARDF_DOUBLECELL 0
112
113 #define SCM_GC_CARD_DOUBLECELLP(card) SCM_GC_GET_CARD_FLAG (card, SCM_GC_CARDF_DOUBLECELL)
114 #define SCM_GC_SET_CARD_DOUBLECELL(card) SCM_GC_SET_CARD_FLAG (card, SCM_GC_CARDF_DOUBLECELL)
115
116 /* card addressing. for efficiency, cards are *always* aligned to
117 SCM_GC_CARD_SIZE. */
118
119 #define SCM_GC_CARD_SIZE_MASK (SCM_GC_CARD_SIZE - 1)
120 #define SCM_GC_CARD_ADDR_MASK (~SCM_GC_CARD_SIZE_MASK)
121
122 #define SCM_GC_CELL_CARD(x) ((SCM_CELLPTR) ((long) (x) & SCM_GC_CARD_ADDR_MASK))
123 #define SCM_GC_CELL_SPAN(x) ((SCM_GC_CARD_DOUBLECELLP (SCM_GC_CELL_CARD (x))) ? 2 : 1)
124 #define SCM_GC_CELL_OFFSET(x) (((long) (x) & SCM_GC_CARD_SIZE_MASK) >> SCM_CELL_SIZE_SHIFT)
125 #define SCM_GC_CELL_BVEC(x) SCM_GC_CARD_BVEC (SCM_GC_CELL_CARD (x))
126 #define SCM_GC_CELL_GET_BIT(x) SCM_C_BVEC_GET (SCM_GC_CELL_BVEC (x), SCM_GC_CELL_OFFSET (x))
127 #define SCM_GC_CELL_SET_BIT(x) SCM_C_BVEC_SET (SCM_GC_CELL_BVEC (x), SCM_GC_CELL_OFFSET (x))
128 #define SCM_GC_CELL_CLR_BIT(x) SCM_C_BVEC_CLR (SCM_GC_CELL_BVEC (x), SCM_GC_CELL_OFFSET (x))
129
130 #define SCM_GC_CARD_UP(x) SCM_GC_CELL_CARD ((char *) (x) + SCM_GC_CARD_SIZE - 1)
131 #define SCM_GC_CARD_DOWN SCM_GC_CELL_CARD
132
133 /* low level bit banging aids */
134
135 typedef unsigned long scm_c_bvec_limb_t;
136
137 #if (SIZEOF_LONG == 8)
138 # define SCM_C_BVEC_LIMB_BITS 64
139 # define SCM_C_BVEC_OFFSET_SHIFT 6
140 # define SCM_C_BVEC_POS_MASK 63
141 # define SCM_CELL_SIZE_SHIFT 4
142 #else
143 # define SCM_C_BVEC_LIMB_BITS 32
144 # define SCM_C_BVEC_OFFSET_SHIFT 5
145 # define SCM_C_BVEC_POS_MASK 31
146 # define SCM_CELL_SIZE_SHIFT 3
147 #endif
148
149 #define SCM_C_BVEC_OFFSET(pos) (pos >> SCM_C_BVEC_OFFSET_SHIFT)
150
151 #define SCM_C_BVEC_GET(bvec, pos) (bvec[SCM_C_BVEC_OFFSET (pos)] & (1L << (pos & SCM_C_BVEC_POS_MASK)))
152 #define SCM_C_BVEC_SET(bvec, pos) (bvec[SCM_C_BVEC_OFFSET (pos)] |= (1L << (pos & SCM_C_BVEC_POS_MASK)))
153 #define SCM_C_BVEC_CLR(bvec, pos) (bvec[SCM_C_BVEC_OFFSET (pos)] &= ~(1L << (pos & SCM_C_BVEC_POS_MASK)))
154
155 #define SCM_C_BVEC_BITS2BYTES(bits) \
156 (sizeof (scm_c_bvec_limb_t) * ((((bits) & SCM_C_BVEC_POS_MASK) ? 1L : 0L) + SCM_C_BVEC_OFFSET (bits)))
157
158 #define SCM_C_BVEC_SET_BYTES(bvec, bytes) (memset (bvec, 0xff, bytes))
159 #define SCM_C_BVEC_SET_ALL_BITS(bvec, bits) SCM_C_BVEC_SET_BYTES (bvec, SCM_C_BVEC_BITS2BYTES (bits))
160
161 #define SCM_C_BVEC_CLR_BYTES(bvec, bytes) (memset (bvec, 0, bytes))
162 #define SCM_C_BVEC_CLR_ALL_BITS(bvec, bits) SCM_C_BVEC_CLR_BYTES (bvec, SCM_C_BVEC_BITS2BYTES (bits))
163
164 /* testing and changing GC marks */
165
166 #define SCM_GCMARKP(x) SCM_GC_CELL_GET_BIT (x)
167 #define SCM_SETGCMARK(x) SCM_GC_CELL_SET_BIT (x)
168 #define SCM_CLRGCMARK(x) SCM_GC_CELL_CLR_BIT (x)
169
170 /* Low level cell data accessing macros:
171 */
172
173 #if (SCM_DEBUG_CELL_ACCESSES == 1)
174 # define SCM_VALIDATE_CELL(cell, expr) (scm_assert_cell_valid (cell), (expr))
175 #else
176 # define SCM_VALIDATE_CELL(cell, expr) expr
177 #endif
178
179 #define SCM_CELL_WORD(x, n) \
180 SCM_VALIDATE_CELL ((x), ((const scm_bits_t *) SCM2PTR (x)) [n])
181 #define SCM_CELL_WORD_0(x) SCM_CELL_WORD (x, 0)
182 #define SCM_CELL_WORD_1(x) SCM_CELL_WORD (x, 1)
183 #define SCM_CELL_WORD_2(x) SCM_CELL_WORD (x, 2)
184 #define SCM_CELL_WORD_3(x) SCM_CELL_WORD (x, 3)
185
186 #define SCM_CELL_OBJECT(x, n) \
187 SCM_VALIDATE_CELL ((x), SCM_PACK (((const scm_bits_t *) SCM2PTR (x)) [n]))
188 #define SCM_CELL_OBJECT_0(x) SCM_CELL_OBJECT (x, 0)
189 #define SCM_CELL_OBJECT_1(x) SCM_CELL_OBJECT (x, 1)
190 #define SCM_CELL_OBJECT_2(x) SCM_CELL_OBJECT (x, 2)
191 #define SCM_CELL_OBJECT_3(x) SCM_CELL_OBJECT (x, 3)
192
193 #define SCM_SET_CELL_WORD(x, n, v) \
194 SCM_VALIDATE_CELL ((x), ((scm_bits_t *) SCM2PTR (x)) [n] = (scm_bits_t) (v))
195 #define SCM_SET_CELL_WORD_0(x, v) SCM_SET_CELL_WORD (x, 0, v)
196 #define SCM_SET_CELL_WORD_1(x, v) SCM_SET_CELL_WORD (x, 1, v)
197 #define SCM_SET_CELL_WORD_2(x, v) SCM_SET_CELL_WORD (x, 2, v)
198 #define SCM_SET_CELL_WORD_3(x, v) SCM_SET_CELL_WORD (x, 3, v)
199
200 #define SCM_SET_CELL_OBJECT(x, n, v) \
201 SCM_VALIDATE_CELL ((x), ((scm_bits_t *) SCM2PTR (x)) [n] = SCM_UNPACK (v))
202 #define SCM_SET_CELL_OBJECT_0(x, v) SCM_SET_CELL_OBJECT (x, 0, v)
203 #define SCM_SET_CELL_OBJECT_1(x, v) SCM_SET_CELL_OBJECT (x, 1, v)
204 #define SCM_SET_CELL_OBJECT_2(x, v) SCM_SET_CELL_OBJECT (x, 2, v)
205 #define SCM_SET_CELL_OBJECT_3(x, v) SCM_SET_CELL_OBJECT (x, 3, v)
206
207 #define SCM_CELL_TYPE(x) SCM_CELL_WORD_0 (x)
208 #define SCM_SET_CELL_TYPE(x, t) SCM_SET_CELL_WORD_0 (x, t)
209
210 #define SCM_SETAND_CAR(x, y) \
211 (SCM_SETCAR ((x), SCM_PACK (SCM_UNPACK (SCM_CAR (x)) & (y))))
212 #define SCM_SETAND_CDR(x, y)\
213 (SCM_SETCDR ((x), SCM_PACK (SCM_UNPACK (SCM_CDR (x)) & (y))))
214 #define SCM_SETOR_CAR(x, y)\
215 (SCM_SETCAR ((x), SCM_PACK (SCM_UNPACK (SCM_CAR (x)) | (y))))
216 #define SCM_SETOR_CDR(x, y)\
217 (SCM_SETCDR ((x), SCM_PACK (SCM_UNPACK (SCM_CDR (x)) | (y))))
218
219 #define SCM_CELL_WORD_LOC(x, n) ((scm_bits_t *) & SCM_CELL_WORD (x, n))
220 #define SCM_CARLOC(x) ((SCM *) SCM_CELL_WORD_LOC ((x), 0))
221 #define SCM_CDRLOC(x) ((SCM *) SCM_CELL_WORD_LOC ((x), 1))
222
223
224 /* SCM_PTR_LT and friends define how to compare two SCM_CELLPTRs (which may
225 * point to cells in different heap segments).
226 */
227 #define SCM_PTR_LT(x, y) ((x) < (y))
228 #define SCM_PTR_GT(x, y) (SCM_PTR_LT (y, x))
229 #define SCM_PTR_LE(x, y) (!SCM_PTR_GT (x, y))
230 #define SCM_PTR_GE(x, y) (!SCM_PTR_LT (x, y))
231
232
233 /* Freelists consist of linked cells where the type entry holds the value
234 * scm_tc_free_cell and the second entry holds a pointer to the next cell of
235 * the freelist. Due to this structure, freelist cells are not cons cells
236 * and thus may not be accessed using SCM_CAR and SCM_CDR.
237 */
238
239 #define SCM_FREE_CELL_P(x) \
240 (!SCM_IMP (x) && (* (const scm_bits_t *) SCM2PTR (x) == scm_tc_free_cell))
241 #define SCM_FREE_CELL_CDR(x) \
242 (SCM_PACK (((const scm_bits_t *) SCM2PTR (x)) [1]))
243 #define SCM_SET_FREE_CELL_TYPE(x, v) \
244 (((scm_bits_t *) SCM2PTR (x)) [0] = (v))
245 #define SCM_SET_FREE_CELL_CDR(x, v) \
246 (((scm_bits_t *) SCM2PTR (x)) [1] = SCM_UNPACK (v))
247
248 #ifdef GUILE_DEBUG_FREELIST
249 #define SCM_NEWCELL(_into) do { _into = scm_debug_newcell (); } while (0)
250 #define SCM_NEWCELL2(_into) do { _into = scm_debug_newcell2 (); } while (0)
251 #else
252 /* When we introduce POSIX threads support, every thread will have
253 a freelist of its own. */
254 #define SCM_NEWCELL(_into) \
255 do { \
256 if (SCM_IMP (scm_freelist)) \
257 _into = scm_gc_for_newcell (&scm_master_freelist, \
258 &scm_freelist); \
259 else \
260 { \
261 _into = scm_freelist; \
262 scm_freelist = SCM_FREE_CELL_CDR (scm_freelist); \
263 } \
264 } while(0)
265 #define SCM_NEWCELL2(_into) \
266 do { \
267 if (SCM_IMP (scm_freelist2)) \
268 _into = scm_gc_for_newcell (&scm_master_freelist2, \
269 &scm_freelist2); \
270 else \
271 { \
272 _into = scm_freelist2; \
273 scm_freelist2 = SCM_FREE_CELL_CDR (scm_freelist2); \
274 } \
275 } while(0)
276 #endif
277
278
279 #define SCM_MARKEDP SCM_GCMARKP
280 #define SCM_NMARKEDP(x) (!SCM_MARKEDP (x))
281
282 extern struct scm_heap_seg_data_t *scm_heap_table;
283 extern int scm_n_heap_segs;
284 extern int scm_block_gc;
285 extern int scm_gc_heap_lock;
286 extern unsigned int scm_gc_running_p;
287 \f
288
289 extern int scm_default_init_heap_size_1;
290 extern int scm_default_min_yield_1;
291 extern int scm_default_init_heap_size_2;
292 extern int scm_default_min_yield_2;
293 extern int scm_default_max_segment_size;
294
295 extern scm_sizet scm_max_segment_size;
296 extern SCM_CELLPTR scm_heap_org;
297 extern SCM scm_freelist;
298 extern struct scm_freelist_t scm_master_freelist;
299 extern SCM scm_freelist2;
300 extern struct scm_freelist_t scm_master_freelist2;
301 extern unsigned long scm_gc_cells_collected;
302 extern unsigned long scm_gc_yield;
303 extern unsigned long scm_gc_malloc_collected;
304 extern unsigned long scm_gc_ports_collected;
305 extern unsigned long scm_cells_allocated;
306 extern long scm_mallocated;
307 extern unsigned long scm_mtrigger;
308
309 extern SCM scm_after_gc_hook;
310
311 extern scm_c_hook_t scm_before_gc_c_hook;
312 extern scm_c_hook_t scm_before_mark_c_hook;
313 extern scm_c_hook_t scm_before_sweep_c_hook;
314 extern scm_c_hook_t scm_after_sweep_c_hook;
315 extern scm_c_hook_t scm_after_gc_c_hook;
316
317 #if (SCM_DEBUG_CELL_ACCESSES == 1)
318 extern void scm_assert_cell_valid (SCM);
319 extern unsigned int scm_debug_cell_accesses_p;
320 extern SCM scm_set_debug_cell_accesses_x (SCM flag);
321 #endif
322
323 #if defined (GUILE_DEBUG) || defined (GUILE_DEBUG_FREELIST)
324 extern SCM scm_map_free_list (void);
325 extern SCM scm_free_list_length (void);
326 #endif
327 #ifdef GUILE_DEBUG_FREELIST
328 extern SCM scm_debug_newcell (void);
329 extern SCM scm_debug_newcell2 (void);
330 extern SCM scm_gc_set_debug_check_freelist_x (SCM flag);
331 #endif
332
333 \f
334
335 extern SCM scm_object_address (SCM obj);
336 extern SCM scm_unhash_name (SCM name);
337 extern SCM scm_gc_stats (void);
338 extern SCM scm_gc (void);
339 extern void scm_gc_for_alloc (struct scm_freelist_t *freelist);
340 extern SCM scm_gc_for_newcell (struct scm_freelist_t *master, SCM *freelist);
341 #if 0
342 extern void scm_alloc_cluster (struct scm_freelist_t *master);
343 #endif
344 extern void scm_igc (const char *what);
345 extern void scm_gc_mark (SCM p);
346 extern void scm_gc_mark_dependencies (SCM p);
347 extern void scm_mark_locations (SCM_STACKITEM x[], scm_sizet n);
348 extern int scm_cellp (SCM value);
349 extern void scm_gc_sweep (void);
350 extern void * scm_must_malloc (scm_sizet len, const char *what);
351 extern void * scm_must_realloc (void *where,
352 scm_sizet olen, scm_sizet len,
353 const char *what);
354 extern void scm_done_malloc (long size);
355 extern void scm_done_free (long size);
356 extern void scm_must_free (void *obj);
357 extern void scm_remember_upto_here_1 (SCM obj);
358 extern void scm_remember_upto_here_2 (SCM obj1, SCM obj2);
359 extern void scm_remember_upto_here (SCM obj1, ...);
360 extern SCM scm_return_first (SCM elt, ...);
361 extern int scm_return_first_int (int x, ...);
362 extern SCM scm_permanent_object (SCM obj);
363 extern SCM scm_protect_object (SCM obj);
364 extern SCM scm_unprotect_object (SCM obj);
365 extern int scm_init_storage (void);
366 extern void *scm_get_stack_base (void);
367 extern void scm_init_gc (void);
368
369 \f
370
371 #if (SCM_DEBUG_DEPRECATED == 0)
372
373 #define SCM_FREEP(x) (SCM_FREE_CELL_P (x))
374 #define SCM_NFREEP(x) (!SCM_FREE_CELL_P (x))
375 #define SCM_GC8MARKP(x) SCM_GCMARKP (x)
376 #define SCM_SETGC8MARK(x) SCM_SETGCMARK (x)
377 #define SCM_CLRGC8MARK(x) SCM_CLRGCMARK (x)
378 #define SCM_GCTYP16(x) SCM_TYP16 (x)
379 #define SCM_GCCDR(x) SCM_CDR (x)
380 extern void scm_remember (SCM * ptr);
381
382 #endif /* SCM_DEBUG_DEPRECATED == 0 */
383
384 #endif /* GCH */
385
386 /*
387 Local Variables:
388 c-file-style: "gnu"
389 End:
390 */