Coverage Report

Created: 2026-07-24 07:44

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/psi/igcref.c
Line
Count
Source
1
/* Copyright (C) 2001-2023 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* ref garbage collector for Ghostscript */
18
#include "memory_.h"
19
#include "ghost.h"
20
#include "gsexit.h"
21
#include "gsstruct.h"   /* for gxalloc.h included by iastate.h */
22
#include "iname.h"
23
#include "iastate.h"
24
#include "idebug.h"
25
#include "igc.h"
26
#include "ipacked.h"
27
#include "store.h"    /* for ref_assign_inline */
28
29
/* Define whether to trace every step of relocating ref pointers. */
30
#if 0
31
#  define rputc(m,c) dmputc(m,c)
32
#else
33
119G
#  define rputc(m,c) DO_NOTHING
34
#endif
35
36
/* Forward references */
37
ptr_proc_reloc(igc_reloc_ref_ptr, ref_packed);
38
ptr_proc_reloc(igc_reloc_ref_ptr_nocheck, ref_packed);
39
refs_proc_reloc(igc_reloc_refs);
40
41
/*
42
 * Define the 'structure' type descriptor for refs.
43
 * This is special because it has different shared procs.
44
 */
45
static gc_proc_clear_reloc(refs_clear_reloc);
46
static gc_proc_set_reloc(refs_set_reloc);
47
static gc_proc_compact(refs_compact);
48
static const struct_shared_procs_t refs_shared_procs =
49
{refs_clear_reloc, refs_set_reloc, refs_compact};
50
static struct_proc_clear_marks(refs_clear_marks);
51
static struct_proc_reloc_ptrs(refs_do_reloc);
52
const gs_memory_struct_type_t st_refs =
53
{sizeof(ref), "refs", &refs_shared_procs, refs_clear_marks, 0, refs_do_reloc};
54
55
/*
56
 * Define the GC procedures for structs that actually contain refs.
57
 * These are special because the shared refs_* procedures
58
 * are never called.  Instead, we unmark the individual refs in clear_marks,
59
 * disregard refs_*_reloc (because we will never relocate a ptr_ref_type
60
 * pointer pointing into the structure), disregard refs_compact (because
61
 * compaction is never required), and remove the marks in reloc_ptrs.
62
 * See also the comment about ptr_ref_type in imemory.h.
63
 */
64
CLEAR_MARKS_PROC(ref_struct_clear_marks)
65
102M
{
66
102M
    ref *pref = (ref *) vptr;
67
102M
    ref *end = (ref *) ((char *)vptr + size);
68
69
3.82G
    for (; pref < end; pref++)
70
3.72G
        r_clear_attrs(pref, l_mark);
71
102M
}
72
ENUM_PTRS_BEGIN_PROC(ref_struct_enum_ptrs)
73
1.91G
{
74
1.91G
    if (index >= size / sizeof(ref))
75
51.0M
        return 0;
76
1.86G
    pep->ptr = (const ref *)vptr + index;
77
1.86G
    return ptr_ref_type;
78
1.91G
    ENUM_PTRS_END_PROC
79
1.91G
}
80
51.0M
RELOC_PTRS_BEGIN(ref_struct_reloc_ptrs)
81
51.0M
{
82
51.0M
    vm_spaces spaces = gcst->spaces;
83
51.0M
    const gs_memory_t *cmem = space_system->stable_memory;
84
85
51.0M
    ref *beg = vptr;
86
51.0M
    ref *end = (ref *) ((char *)vptr + size);
87
88
51.0M
    igc_reloc_refs((ref_packed *) beg, (ref_packed *) end, gcst);
89
51.0M
    ref_struct_clear_marks(cmem, vptr, size, pstype);
90
51.0M
} RELOC_PTRS_END
91
92
/* ------ Unmarking phase ------ */
93
94
/* Unmark a single ref. */
95
void
96
ptr_ref_unmark(enum_ptr_t *pep, gc_state_t * ignored)
97
184k
{
98
184k
    ref_packed *rpp = (ref_packed *)pep->ptr;
99
100
184k
    if (r_is_packed(rpp))
101
0
        r_clear_pmark(rpp);
102
184k
    else
103
184k
        r_clear_attrs((ref *)rpp, l_mark);
104
184k
}
105
106
/* Unmarking routine for ref objects. */
107
static void
108
refs_clear_marks(const gs_memory_t *cmem,
109
                 void /*obj_header_t */ *vptr, uint size,
110
                 const gs_memory_struct_type_t * pstype)
111
397M
{
112
397M
    ref_packed *rp = (ref_packed *) vptr;
113
397M
    ref_packed *end = (ref_packed *) ((byte *) vptr + size);
114
115
    /* Since the last ref is full-size, we only need to check for */
116
    /* the end of the block when we see one of those. */
117
72.8G
    for (;;) {
118
72.8G
        if (r_is_packed(rp)) {
119
#ifdef DEBUG
120
            if (gs_debug_c('8')) {
121
                dmlprintf1(cmem, "  [8]unmark packed "PRI_INTPTR" ", (intptr_t) rp);
122
                debug_print_ref(cmem, (const ref *)rp);
123
                dmputs(cmem, "\n");
124
            }
125
#endif
126
16.4G
            r_clear_pmark(rp);
127
16.4G
            rp++;
128
56.3G
        } else {   /* full-size ref */
129
56.3G
            ref *const pref = (ref *)rp;
130
131
#ifdef DEBUG
132
            if (gs_debug_c('8')) {
133
                dmlprintf1(cmem, "  [8]unmark ref "PRI_INTPTR" ", (intptr_t)rp);
134
                debug_print_ref(cmem, pref);
135
                dmputs(cmem, "\n");
136
            }
137
#endif
138
56.3G
            r_clear_attrs(pref, l_mark);
139
56.3G
            rp += packed_per_ref;
140
56.3G
            if (rp >= (ref_packed *) end)
141
397M
                break;
142
56.3G
        }
143
72.8G
    }
144
397M
}
145
146
/* ------ Marking phase ------ */
147
148
/* Mark a ref.  Return true if new mark. */
149
bool
150
ptr_ref_mark(enum_ptr_t *pep, gc_state_t * ignored)
151
0
{
152
0
    ref_packed *rpp = (void *)pep->ptr;
153
154
0
    if (r_is_packed(rpp)) {
155
0
        if (r_has_pmark(rpp))
156
0
            return false;
157
0
        r_set_pmark(rpp);
158
0
    } else {
159
0
        ref *const pref = (ref *)rpp;
160
161
0
        if (r_has_attr(pref, l_mark))
162
0
            return false;
163
0
        r_set_attrs(pref, l_mark);
164
0
    }
165
0
    return true;
166
0
}
167
168
/* ------ Relocation planning phase ------ */
169
170
/*
171
 * We store relocation in the size field of refs that don't use it,
172
 * so that we don't have to scan all the way to an unmarked object.
173
 * We must avoid nulls, which sometimes have useful information
174
 * in their size fields, and the types above t_next_index, which are
175
 * actually operators in disguise and also use the size field.
176
 */
177
178
/* Clear the relocation for a ref object. */
179
static void
180
refs_clear_reloc(obj_header_t *hdr, uint size)
181
10.0M
{
182
10.0M
    ref_packed *rp = (ref_packed *) (hdr + 1);
183
10.0M
    ref_packed *end = (ref_packed *) ((byte *) rp + size);
184
185
1.11G
    while (rp < end) {
186
1.10G
        if (r_is_packed(rp))
187
372M
            rp++;
188
733M
        else {
189
            /* Full-size ref.  Store the relocation here if possible. */
190
733M
            ref *const pref = (ref *)rp;
191
192
733M
            if (!ref_type_uses_size_or_null(r_type(pref))) {
193
168M
                if_debug1('8', "  [8]clearing reloc at "PRI_INTPTR"\n", (intptr_t)rp);
194
168M
                r_set_size(pref, 0);
195
168M
            }
196
733M
            rp += packed_per_ref;
197
733M
        }
198
1.10G
    }
199
10.0M
}
200
201
/* Set the relocation for a ref object. */
202
static bool
203
refs_set_reloc(obj_header_t * hdr, uint reloc, uint size)
204
387M
{
205
387M
    ref_packed *rp = (ref_packed *) (hdr + 1);
206
387M
    ref_packed *end = (ref_packed *) ((byte *) rp + size);
207
387M
    uint freed = 0;
208
209
    /*
210
     * We have to be careful to keep refs aligned properly.
211
     * For the moment, we do this by either keeping or discarding
212
     * an entire (aligned) block of align_packed_per_ref packed elements
213
     * as a unit.  We know that align_packed_per_ref <= packed_per_ref,
214
     * and we also know that packed refs are always allocated in blocks
215
     * of align_packed_per_ref, so this makes things relatively easy.
216
     */
217
60.0G
    while (rp < end) {
218
59.6G
        if (r_is_packed(rp)) {
219
#if align_packed_per_ref == 1
220
            if (r_has_pmark(rp)) {
221
                if_debug1('8',
222
                          "  [8]packed ref "PRI_INTPTR" is marked\n",
223
                          (intptr_t)rp);
224
                rp++;
225
            } else {
226
#else
227
4.02G
            int i;
228
229
            /*
230
             * Note: align_packed_per_ref is typically
231
             * 2 or 4 for 32-bit processors.
232
             */
233
4.02G
#define all_marked (align_packed_per_ref * lp_mark)
234
# if align_packed_per_ref == 2
235
#  if ARCH_SIZEOF_INT == ARCH_SIZEOF_SHORT * 2
236
#    undef all_marked
237
#    define all_marked ( (lp_mark << (sizeof(short) * 8)) + lp_mark )
238
#    define marked (*(int *)rp & all_marked)
239
#  else
240
#    define marked ((*rp & lp_mark) + (rp[1] & lp_mark))
241
#  endif
242
# else
243
4.02G
#  if align_packed_per_ref == 4
244
4.02G
#    define marked ((*rp & lp_mark) + (rp[1] & lp_mark) +\
245
4.02G
                    (rp[2] & lp_mark) + (rp[3] & lp_mark))
246
#  else
247
            /*
248
             * The value of marked is logically a uint, not an int:
249
             * we declare it as int only to avoid a compiler warning
250
             * message about using a non-int value in a switch statement.
251
             */
252
            int marked = *rp & lp_mark;
253
254
            for (i = 1; i < align_packed_per_ref; i++)
255
                marked += rp[i] & lp_mark;
256
#  endif
257
4.02G
# endif
258
            /*
259
             * Now marked is lp_mark * the number of marked
260
             * packed refs in the aligned block, except for
261
             * a couple of special cases above.
262
             */
263
4.02G
            switch (marked) {
264
1.43G
                case all_marked:
265
1.43G
                    if_debug2('8',
266
1.43G
                              "  [8]packed refs "PRI_INTPTR".."PRI_INTPTR" are marked\n",
267
1.43G
                              (intptr_t)rp,
268
1.43G
                              (intptr_t)(rp + (align_packed_per_ref - 1)));
269
1.43G
                    rp += align_packed_per_ref;
270
1.43G
                    break;
271
1.63G
                default:
272
                    /* At least one packed ref in the block */
273
                    /* is marked: Keep the whole block. */
274
8.17G
                    for (i = align_packed_per_ref; i--; rp++) {
275
6.54G
                        r_set_pmark(rp);
276
6.54G
                        if_debug1('8',
277
6.54G
                                  "  [8]packed ref "PRI_INTPTR" is marked\n",
278
6.54G
                                  (intptr_t)rp);
279
6.54G
                    }
280
1.63G
                    break;
281
952M
                case 0:
282
952M
#endif
283
952M
                    if_debug2('8', "  [8]%d packed ref(s) at "PRI_INTPTR" are unmarked\n",
284
952M
                              align_packed_per_ref, (intptr_t)rp);
285
952M
                    {
286
952M
                        uint rel = reloc + freed;
287
288
                        /* Change this to an integer so we can */
289
                        /* store the relocation here. */
290
952M
                        *rp = pt_tag(pt_integer) +
291
952M
                            min(rel, packed_max_value);
292
952M
                    }
293
952M
                    rp += align_packed_per_ref;
294
952M
                    freed += sizeof(ref_packed) * align_packed_per_ref;
295
4.02G
            }
296
55.6G
        } else {   /* full-size ref */
297
55.6G
            uint rel = reloc + freed;
298
299
            /* The following assignment is logically */
300
            /* unnecessary; we do it only for convenience */
301
            /* in debugging. */
302
55.6G
            ref *pref = (ref *) rp;
303
304
55.6G
            if (!r_has_attr(pref, l_mark)) {
305
29.4G
                if_debug1('8', "  [8]ref "PRI_INTPTR" is unmarked\n",
306
29.4G
                          (intptr_t)pref);
307
                /* Change this to a mark so we can */
308
                /* store the relocation. */
309
29.4G
                r_set_type(pref, t_mark);
310
29.4G
                r_set_size(pref, rel);
311
29.4G
                freed += sizeof(ref);
312
29.4G
            } else {
313
26.2G
                if_debug1('8', "  [8]ref "PRI_INTPTR" is marked\n",
314
26.2G
                          (intptr_t)pref);
315
                /* Store the relocation here if possible. */
316
26.2G
                if (!ref_type_uses_size_or_null(r_type(pref))) {
317
5.22G
                    if_debug2('8', "  [8]storing reloc %u at "PRI_INTPTR"\n",
318
5.22G
                              rel, (intptr_t)pref);
319
5.22G
                    r_set_size(pref, rel);
320
5.22G
                }
321
26.2G
            }
322
55.6G
            rp += packed_per_ref;
323
55.6G
        }
324
59.6G
    }
325
387M
    if_debug3('7', " [7]at end of refs "PRI_INTPTR", size = %u, freed = %u\n",
326
387M
              (intptr_t)(hdr + 1), size, freed);
327
387M
    if (freed == size)
328
58.1M
        return false;
329
329M
#if ARCH_SIZEOF_INT > ARCH_SIZEOF_SHORT
330
    /*
331
     * If the final relocation can't fit in the r_size field
332
     * (which can't happen if the object shares a clump with
333
     * any other objects, so we know reloc = 0 in this case),
334
     * we have to keep the entire object unless there are no
335
     * references to any ref in it.
336
     */
337
329M
    if (freed <= max_ushort)
338
329M
        return true;
339
    /*
340
     * We have to mark all surviving refs, but we also must
341
     * overwrite any non-surviving refs with something that
342
     * doesn't contain any pointers.
343
     */
344
6
    rp = (ref_packed *) (hdr + 1);
345
48.7k
    while (rp < end) {
346
48.7k
        if (r_is_packed(rp)) {
347
0
            if (!r_has_pmark(rp))
348
0
                *rp = pt_tag(pt_integer) | lp_mark;
349
0
            ++rp;
350
48.7k
        } else {   /* The following assignment is logically */
351
            /* unnecessary; we do it only for convenience */
352
            /* in debugging. */
353
48.7k
            ref *pref = (ref *) rp;
354
355
48.7k
            if (!r_has_attr(pref, l_mark)) {
356
48.7k
                r_set_type_attrs(pref, t_mark, l_mark);
357
48.7k
                r_set_size(pref, reloc);
358
48.7k
            } else {
359
6
                if (!ref_type_uses_size_or_null(r_type(pref)))
360
0
                    r_set_size(pref, reloc);
361
6
            }
362
48.7k
            rp += packed_per_ref;
363
48.7k
        }
364
48.7k
    }
365
    /* The last ref has to remain unmarked. */
366
6
    r_clear_attrs((ref *) rp - 1, l_mark);
367
6
#endif
368
6
    return true;
369
329M
}
370
371
/* ------ Relocation phase ------ */
372
373
/* Relocate all the pointers in a block of refs. */
374
static void
375
refs_do_reloc(void /*obj_header_t */ *vptr, uint size,
376
              const gs_memory_struct_type_t * pstype, gc_state_t * gcst)
377
339M
{
378
339M
    igc_reloc_refs((ref_packed *) vptr,
379
339M
                   (ref_packed *) ((char *)vptr + size),
380
339M
                   gcst);
381
339M
}
382
/* Relocate the contents of a block of refs. */
383
/* If gcst->relocating_untraced is true, we are relocating pointers from an */
384
/* untraced space, so relocate all refs, not just marked ones. */
385
void
386
igc_reloc_refs(ref_packed * from, ref_packed * to, gc_state_t * gcst)
387
416M
{
388
416M
    int min_trace = gcst->min_collect;
389
416M
    ref_packed *rp = from;
390
416M
    bool do_all = gcst->relocating_untraced;
391
392
416M
    vm_spaces spaces = gcst->spaces;
393
416M
    const gs_memory_t *cmem = space_system->stable_memory;
394
395
45.5G
    while (rp < to) {
396
45.1G
        ref *pref;
397
#ifdef DEBUG
398
        const void *before = 0;
399
        const void *after = 0;
400
# define DO_RELOC(var, stat)\
401
    BEGIN before = (var); stat; after = (var); END
402
# define SET_RELOC(var, expr)\
403
    BEGIN before = (var); after = (var) = (expr); END
404
#else
405
45.1G
# define DO_RELOC(var, stat) stat
406
45.1G
# define SET_RELOC(var, expr) var = expr
407
45.1G
#endif
408
409
45.1G
        if (r_is_packed(rp)) {
410
15.4G
            rp++;
411
15.4G
            continue;
412
15.4G
        }
413
        /* The following assignment is logically unnecessary; */
414
        /* we do it only for convenience in debugging. */
415
29.7G
        pref = (ref *) rp;
416
29.7G
        if_debug3m('8', gcst->heap, "  [8]relocating %s %d ref at "PRI_INTPTR"\n",
417
29.7G
                   (r_has_attr(pref, l_mark) ? "marked" : "unmarked"),
418
29.7G
                   r_btype(pref), (intptr_t)pref);
419
29.7G
        if ((r_has_attr(pref, l_mark) || do_all) &&
420
28.8G
            r_space(pref) >= min_trace
421
29.7G
            ) {
422
10.1G
            switch (r_type(pref)) {
423
                    /* Struct cases */
424
2.02M
                case t_file:
425
2.02M
                    DO_RELOC(pref->value.pfile, RELOC_VAR(pref->value.pfile));
426
2.02M
                    break;
427
7.62M
                case t_device:
428
7.62M
                    DO_RELOC(pref->value.pdevice,
429
7.62M
                             RELOC_VAR(pref->value.pdevice));
430
7.62M
                    break;
431
448k
                case t_fontID:
432
3.83M
                case t_struct:
433
4.18M
                case t_astruct:
434
4.18M
                case t_pdfctx:
435
4.18M
                    DO_RELOC(pref->value.pstruct,
436
4.18M
                             RELOC_VAR(pref->value.pstruct));
437
4.18M
                    break;
438
                    /* Non-trivial non-struct cases */
439
244M
                case t_dictionary:
440
244M
                    rputc(gcst->heap, 'd');
441
244M
                    SET_RELOC(pref->value.pdict,
442
244M
                              (dict *)igc_reloc_ref_ptr((ref_packed *)pref->value.pdict, gcst));
443
244M
                    break;
444
1.78G
                case t_array:
445
1.78G
                    {
446
1.78G
                        uint size = r_size(pref);
447
448
1.78G
                        if (size != 0) { /* value.refs might be NULL */
449
450
                            /*
451
                             * If the array is large, we allocated it in its
452
                             * own object (at least originally -- this might
453
                             * be a pointer to a subarray.)  In this case,
454
                             * we know it is the only object in its
455
                             * containing st_refs object, so we know that
456
                             * the mark containing the relocation appears
457
                             * just after it.
458
                             */
459
1.76G
                            if (size < max_size_st_refs / sizeof(ref)) {
460
1.73G
                                rputc(gcst->heap, 'a');
461
1.73G
                                SET_RELOC(pref->value.refs,
462
1.73G
                                    (ref *) igc_reloc_ref_ptr(
463
1.73G
                                     (ref_packed *) pref->value.refs, gcst));
464
1.73G
                            } else {
465
30.0M
                                rputc(gcst->heap, 'A');
466
                                /*
467
                                 * See the t_shortarray case below for why we
468
                                 * decrement size.
469
                                 */
470
30.0M
                                --size;
471
30.0M
                                SET_RELOC(pref->value.refs,
472
30.0M
                                    (ref *) igc_reloc_ref_ptr(
473
30.0M
                                   (ref_packed *) (pref->value.refs + size),
474
30.0M
                                                               gcst) - size);
475
30.0M
                            }
476
1.76G
                        }
477
1.78G
                    }
478
1.78G
                    break;
479
1.26G
                case t_mixedarray:
480
1.26G
                    if (r_size(pref) != 0) { /* value.refs might be NULL */
481
1.26G
                        rputc(gcst->heap, 'm');
482
1.26G
                        SET_RELOC(pref->value.packed,
483
1.26G
                                  igc_reloc_ref_ptr(pref->value.packed, gcst));
484
1.26G
                    }
485
1.26G
                    break;
486
569M
                case t_shortarray:
487
569M
                    {
488
569M
                        uint size = r_size(pref);
489
490
                        /*
491
                         * Since we know that igc_reloc_ref_ptr works by
492
                         * scanning forward, and we know that all the
493
                         * elements of this array itself are marked, we can
494
                         * save some scanning time by relocating the pointer
495
                         * to the end of the array rather than the
496
                         * beginning.
497
                         */
498
569M
                        if (size != 0) { /* value.refs might be NULL */
499
529M
                            rputc(gcst->heap, 's');
500
                            /*
501
                             * igc_reloc_ref_ptr has to be able to determine
502
                             * whether the pointer points into a space that
503
                             * isn't being collected.  It does this by
504
                             * checking whether the referent of the pointer
505
                             * is marked.  For this reason, we have to pass
506
                             * a pointer to the last real element of the
507
                             * array, rather than just beyond it.
508
                             */
509
529M
                            --size;
510
529M
                            SET_RELOC(pref->value.packed,
511
529M
                                igc_reloc_ref_ptr(pref->value.packed + size,
512
529M
                                                  gcst) - size);
513
529M
                        }
514
569M
                    }
515
569M
                    break;
516
5.83G
                case t_name:
517
5.83G
                    {
518
5.83G
                        void *psub = name_ref_sub_table(cmem, pref);
519
5.83G
                        void *rsub = RELOC_OBJ(psub); /* gcst implicit */
520
521
5.83G
                        SET_RELOC(pref->value.pname,
522
5.83G
                                  (name *)
523
5.83G
                                  ((char *)rsub + ((char *)pref->value.pname -
524
5.83G
                                                   (char *)psub)));
525
5.83G
                    } break;
526
334M
                case t_string:
527
334M
                    {
528
334M
                        gs_string str;
529
530
334M
                        str.data = pref->value.bytes;
531
334M
                        str.size = r_size(pref);
532
533
334M
                        DO_RELOC(str.data, RELOC_STRING_VAR(str));
534
334M
                        pref->value.bytes = str.data;
535
334M
                    }
536
334M
                    break;
537
137M
                case t_oparray:
538
137M
                    rputc(gcst->heap, 'o');
539
137M
                    SET_RELOC(pref->value.const_refs,
540
137M
                        (const ref *)igc_reloc_ref_ptr((const ref_packed *)pref->value.const_refs, gcst));
541
137M
                    break;
542
0
                default:
543
0
                    goto no_reloc; /* don't print trace message */
544
10.1G
            }
545
10.1G
            if_debug2m('8', gcst->heap, "  [8]relocated "PRI_INTPTR" => "PRI_INTPTR"\n",
546
10.1G
                       (intptr_t)before, (intptr_t)after);
547
10.1G
        }
548
29.7G
no_reloc:
549
29.7G
        rp += packed_per_ref;
550
29.7G
    }
551
416M
}
552
553
/* Relocate a pointer to a ref. */
554
/* See gsmemory.h for why the argument is const and the result is not. */
555
ref_packed *
556
igc_reloc_ref_ptr_nocheck(const ref_packed * prp, gc_state_t *gcst)
557
3.96G
{
558
    /*
559
     * Search forward for relocation.  This algorithm is intrinsically very
560
     * inefficient; we hope eventually to replace it with a better one.
561
     */
562
3.96G
    const ref_packed *rp = prp;
563
3.96G
    uint dec = 0;
564
#ifdef ALIGNMENT_ALIASING_BUG
565
    const ref *rpref;
566
# define RP_REF(rp) (rpref = (const ref *)rp, rpref)
567
#else
568
3.96G
# define RP_REF(rp) ((const ref *)rp)
569
3.96G
#endif
570
111G
    for (;;) {
571
572
111G
        if (r_is_packed(rp)) {
573
            /*
574
             * Normally, an unmarked packed ref will be an
575
             * integer whose value is the amount of relocation.
576
             * However, the relocation value might have been
577
             * too large to fit.  If this is the case, for
578
             * each such unmarked packed ref we pass over,
579
             * we have to decrement the final relocation.
580
             */
581
32.6G
            rputc(gcst->heap, (*rp & lp_mark ? '1' : '0'));
582
32.6G
            if (!(*rp & lp_mark)) {
583
811M
                if (*rp != pt_tag(pt_integer) + packed_max_value) {
584
                    /* This is a stored relocation value. */
585
722M
                    rputc(gcst->heap, '\n');
586
722M
                    rp = print_reloc(prp, "ref",
587
722M
                                     (const ref_packed *)
588
722M
                                     ((const char *)prp -
589
722M
                                      (*rp & packed_value_mask) + dec));
590
722M
                    break;
591
722M
                }
592
                /*
593
                 * We know this is the first of an aligned block
594
                 * of packed refs.  Skip over the entire block,
595
                 * decrementing the final relocation.
596
                 */
597
88.8M
                dec += sizeof(ref_packed) * align_packed_per_ref;
598
88.8M
                rp += align_packed_per_ref;
599
88.8M
            } else
600
31.8G
                rp++;
601
31.9G
            continue;
602
32.6G
        }
603
78.5G
        if (!ref_type_uses_size_or_null(r_type(RP_REF(rp)))) {
604
            /* reloc is in r_size */
605
3.24G
            rputc(gcst->heap, '\n');
606
3.24G
            rp = print_reloc(prp, "ref",
607
3.24G
                             (const ref_packed *)
608
3.24G
                             (r_size(RP_REF(rp)) == 0 ? prp :
609
3.24G
                              (const ref_packed *)((const char *)prp -
610
3.24G
                                                   r_size(RP_REF(rp)) + dec)));
611
3.24G
            break;
612
3.24G
        }
613
78.5G
        rputc(gcst->heap, 'u');
614
75.3G
        rp += packed_per_ref;
615
75.3G
    }
616
    /* Use a severely deprecated pun to remove the const property. */
617
3.96G
    {
618
3.96G
        union { const ref_packed *r; ref_packed *w; } u;
619
620
3.96G
        u.r = rp;
621
3.96G
        return u.w;
622
3.96G
    }
623
3.96G
#undef RP_REF
624
3.96G
}
625
ref_packed *
626
igc_reloc_ref_ptr(const ref_packed * prp, gc_state_t *gcst)
627
3.96G
{
628
    /*
629
     * Search forward for relocation.  This algorithm is intrinsically very
630
     * inefficient; we hope eventually to replace it with a better one.
631
     */
632
3.96G
    const ref_packed *rp = prp;
633
#ifdef ALIGNMENT_ALIASING_BUG
634
    const ref *rpref;
635
# define RP_REF(rp) (rpref = (const ref *)rp, rpref)
636
#else
637
3.96G
# define RP_REF(rp) ((const ref *)rp)
638
3.96G
#endif
639
    /*
640
     * Iff this pointer points into a space that wasn't traced,
641
     * the referent won't be marked.  In this case, we shouldn't
642
     * do any relocation.  Check for this first.
643
     */
644
3.96G
    if (r_is_packed(rp)) {
645
1.32G
        if (!r_has_pmark(rp))
646
171
            goto ret_rp;
647
2.64G
    } else {
648
2.64G
        if (!r_has_attr(RP_REF(rp), l_mark))
649
44.2k
            goto ret_rp;
650
2.64G
    }
651
3.96G
    return igc_reloc_ref_ptr_nocheck(prp, gcst);
652
44.4k
ret_rp:
653
    /* Use a severely deprecated pun to remove the const property. */
654
44.4k
    {
655
44.4k
        union { const ref_packed *r; ref_packed *w; } u;
656
657
44.4k
        u.r = rp;
658
44.4k
        return u.w;
659
3.96G
    }
660
3.96G
}
661
662
/* ------ Compaction phase ------ */
663
664
/* Compact a ref object. */
665
/* Remove the marks at the same time. */
666
static void
667
refs_compact(const gs_memory_t *mem, obj_header_t * pre, obj_header_t * dpre, uint size)
668
329M
{
669
329M
    ref_packed *dest;
670
329M
    ref_packed *src;
671
329M
    ref_packed *end;
672
329M
    uint new_size;
673
674
   /* The next switch controls an optimization
675
      for the loop termination condition.
676
      It was useful during the development,
677
      when some assumptions were temporary wrong.
678
      We keep it for records. */
679
680
329M
    src = (ref_packed *) (pre + 1);
681
329M
    end = (ref_packed *) ((byte *) src + size);
682
    /*
683
     * We know that a block of refs always ends with a
684
     * full-size ref, so we only need to check for reaching the end
685
     * of the block when we see one of those.
686
     */
687
329M
    if (dpre == pre)    /* Loop while we don't need to copy. */
688
20.7G
        for (;;) {
689
20.7G
            if (r_is_packed(src)) {
690
2.03G
                if (!r_has_pmark(src))
691
50.5M
                    break;
692
2.03G
                if_debug1m('8', mem, "  [8]packed ref "PRI_INTPTR" \"copied\"\n",
693
1.98G
                          (intptr_t)src);
694
1.98G
                *src &= ~lp_mark;
695
1.98G
                src++;
696
18.7G
            } else {   /* full-size ref */
697
18.7G
                ref *const pref = (ref *)src;
698
699
18.7G
                if (!r_has_attr(pref, l_mark))
700
72.1M
                    break;
701
18.7G
                if_debug1m('8', mem, "  [8]ref "PRI_INTPTR" \"copied\"\n", (intptr_t)src);
702
18.6G
                r_clear_attrs(pref, l_mark);
703
18.6G
                src += packed_per_ref;
704
18.6G
            }
705
20.7G
    } else
706
206M
        *dpre = *pre;
707
329M
    dest = (ref_packed *) ((char *)dpre + ((char *)src - (char *)pre));
708
21.5G
    for (;;) {
709
21.5G
        if (r_is_packed(src)) {
710
13.0G
            if (r_has_pmark(src)) {
711
10.3G
                if_debug2m('8', mem, "  [8]packed ref "PRI_INTPTR" copied to "PRI_INTPTR"\n",
712
10.3G
                          (intptr_t)src, (intptr_t)dest);
713
10.3G
                *dest++ = *src & ~lp_mark;
714
10.3G
            }
715
13.0G
            src++;
716
13.0G
        } else {   /* full-size ref */
717
8.46G
            if (r_has_attr((ref *) src, l_mark)) {
718
7.57G
                ref rtemp;
719
720
7.57G
                if_debug2m('8', mem, "  [8]ref "PRI_INTPTR" copied to "PRI_INTPTR"\n",
721
7.57G
                           (intptr_t)src, (intptr_t)dest);
722
                /* We can't just use ref_assign_inline, */
723
                /* because the source and destination */
724
                /* might overlap! */
725
7.57G
                ref_assign_inline(&rtemp, (ref *) src);
726
7.57G
                r_clear_attrs(&rtemp, l_mark);
727
7.57G
                ref_assign_inline((ref *) dest, &rtemp);
728
7.57G
                src += packed_per_ref;
729
7.57G
                dest += packed_per_ref;
730
7.57G
            } else {   /* check for end of block */
731
884M
                src += packed_per_ref;
732
884M
                if (src >= end)
733
329M
                    break;
734
884M
            }
735
8.46G
        }
736
21.5G
    }
737
329M
    new_size = (byte *) dest - (byte *) (dpre + 1) + sizeof(ref);
738
#ifdef DEBUG
739
    /* Check that the relocation came out OK. */
740
    /* NOTE: this check only works within a single clump. */
741
    if ((byte *) src - (byte *) dest != r_size((ref *) src - 1) + sizeof(ref)) {
742
        mlprintf3(mem, "Reloc error for refs "PRI_INTPTR": reloc = %lu, stored = %u\n",
743
                 (intptr_t) dpre, (ulong) ((byte *) src - (byte *) dest),
744
                 (uint) r_size((ref *) src - 1));
745
        gs_abort(mem);
746
    }
747
#endif
748
    /* Pad to a multiple of sizeof(ref). */
749
730M
    while (new_size % sizeof(ref))
750
401M
        *dest++ = pt_tag(pt_integer),
751
401M
            new_size += sizeof(ref_packed);
752
    /* We want to make the newly freed space into a free block, */
753
    /* but we can only do this if we have enough room. */
754
329M
    if (size - new_size < sizeof(obj_header_t)) { /* Not enough room.  Pad to original size. */
755
225M
        while (new_size < size)
756
0
            *dest++ = pt_tag(pt_integer),
757
0
                new_size += sizeof(ref_packed);
758
225M
    } else {
759
104M
        obj_header_t *pfree = (obj_header_t *) ((ref *) dest + 1);
760
761
104M
        pfree->o_pad = 0;
762
104M
        pfree->o_alone = 0;
763
104M
        pfree->o_size = size - new_size - sizeof(obj_header_t);
764
104M
        pfree->o_type = &st_bytes;
765
104M
    }
766
    /* Re-create the final ref. */
767
329M
    r_set_type((ref *) dest, t_integer);
768
329M
    dpre->o_size = new_size;
769
329M
}