Coverage Report

Created: 2025-06-10 06:49

/src/ghostpdl/psi/igcstr.c
Line
Count
Source (jump to first uncovered line)
1
/* Copyright (C) 2001-2024 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
/* String GC routines for Ghostscript */
18
#include "memory_.h"
19
#include "ghost.h"
20
#include "gsmdebug.h"
21
#include "gsstruct.h"
22
#include "iastate.h"
23
#include "igcstr.h"
24
#include "igc.h"
25
26
/* Forward references */
27
static bool gc_mark_string(const byte *, uint, bool, const clump_t *);
28
29
/* (Un)mark the strings in a clump. */
30
void
31
gc_strings_set_marks(clump_t * cp, bool mark)
32
3.60M
{
33
3.60M
    if (cp->smark != 0) {
34
2.33M
        if_debug3('6', "[6]clearing string marks "PRI_INTPTR"[%u] to %d\n",
35
2.33M
                  (intptr_t)cp->smark, cp->smark_size, (int)mark);
36
2.33M
        memset(cp->smark, 0, cp->smark_size);
37
2.33M
        if (mark)
38
202k
            gc_mark_string(cp->sbase, (cp->climit - cp->sbase), true, cp);
39
2.33M
    }
40
3.60M
}
41
42
/* We mark strings a word at a time. */
43
typedef string_mark_unit bword;
44
45
832M
#define bword_log2_bytes log2_sizeof_string_mark_unit
46
#define bword_bytes (1 << bword_log2_bytes)
47
832M
#define bword_log2_bits (bword_log2_bytes + 3)
48
832M
#define bword_bits (1 << bword_log2_bits)
49
638M
#define bword_1s (~(bword)0)
50
/* Compensate for byte order reversal if necessary. */
51
#if ARCH_IS_BIG_ENDIAN
52
#  if bword_bytes == 2
53
#    define bword_swap_bytes(m) m = (m << 8) | (m >> 8)
54
#  else       /* bword_bytes == 4 */
55
#    define bword_swap_bytes(m)\
56
        m = (m << 24) | ((m & 0xff00) << 8) | ((m >> 8) & 0xff00) | (m >> 24)
57
#  endif
58
#else
59
364M
#  define bword_swap_bytes(m) DO_NOTHING
60
#endif
61
62
/* (Un)mark a string in a known clump.  Return true iff any new marks. */
63
static bool
64
gc_mark_string(const byte * ptr, uint size, bool set, const clump_t * cp)
65
124M
{
66
124M
    uint offset = ptr - cp->sbase;
67
124M
    bword *bp = (bword *) (cp->smark + ((offset & -bword_bits) >> 3));
68
124M
    uint bn = offset & (bword_bits - 1);
69
124M
    bword m = (bword)(((uint64_t)bword_1s << bn) & bword_1s);
70
124M
    uint left = size;
71
124M
    bword marks = 0;
72
73
124M
    bword_swap_bytes(m);
74
124M
    if (set) {
75
124M
        if (left + bn >= bword_bits) {
76
45.8M
            marks |= ~*bp & m;
77
45.8M
            *bp |= m;
78
45.8M
            m = bword_1s, left -= bword_bits - bn, bp++;
79
190M
            while (left >= bword_bits) {
80
144M
                marks |= ~*bp;
81
144M
                *bp = bword_1s;
82
144M
                left -= bword_bits, bp++;
83
144M
            }
84
45.8M
        }
85
124M
        if (left) {
86
119M
            bword_swap_bytes(m);
87
119M
            m = (bword)(((uint64_t)m - ((uint64_t)m << left)) & bword_1s);
88
119M
            bword_swap_bytes(m);
89
119M
            marks |= ~*bp & m;
90
119M
            *bp |= m;
91
119M
        }
92
124M
    } else {
93
0
        if (left + bn >= bword_bits) {
94
0
            *bp &= ~m;
95
0
            m = bword_1s, left -= bword_bits - bn, bp++;
96
0
            if (left >= bword_bits * 5) {
97
0
                memset(bp, 0, (left & -bword_bits) >> 3);
98
0
                bp += left >> bword_log2_bits;
99
0
                left &= bword_bits - 1;
100
0
            } else
101
0
                while (left >= bword_bits) {
102
0
                    *bp = 0;
103
0
                    left -= bword_bits, bp++;
104
0
                }
105
0
        }
106
0
        if (left) {
107
0
            bword_swap_bytes(m);
108
0
            m = (bword)(((uint64_t)m - ((uint64_t)m << left)) & bword_1s);
109
0
            bword_swap_bytes(m);
110
0
            *bp &= ~m;
111
0
        }
112
0
    }
113
124M
    return marks != 0;
114
124M
}
115
116
#ifdef DEBUG
117
/* Print a string for debugging.  We need this because there is no d---
118
 * equivalent of fwrite.
119
 */
120
static void
121
dmfwrite(const gs_memory_t *mem, const byte *ptr, uint count)
122
{
123
    uint i;
124
    for (i = 0; i < count; ++i)
125
        dmputc(mem, ptr[i]);
126
}
127
#endif
128
129
/* Mark a string.  Return true if any new marks. */
130
bool
131
gc_string_mark(const byte * ptr, uint size, bool set, gc_state_t * gcst)
132
126M
{
133
126M
    const clump_t *cp;
134
126M
    bool marks;
135
136
126M
    if (size == 0)
137
1.98M
        return false;
138
124M
#define dmprintstr(mem)\
139
124M
  dmputc(mem, '('); dmfwrite(mem, ptr, min(size, 20));\
140
124M
  dmputs(mem, (size <= 20 ? ")" : "...)"))
141
124M
    if (!(cp = gc_locate(ptr, gcst))) {   /* not in a clump */
142
#ifdef DEBUG
143
        if (gs_debug_c('5')) {
144
            dmlprintf2(gcst->heap, "[5]"PRI_INTPTR"[%u]", (intptr_t)ptr, size);
145
            dmprintstr(gcst->heap);
146
            dmputs(gcst->heap, " not in a clump\n");
147
        }
148
#endif
149
0
        return false;
150
0
    }
151
124M
    if (cp->smark == 0)    /* not marking strings */
152
0
        return false;
153
#ifdef DEBUG
154
    if (ptr < cp->ctop) {
155
        if_debug4('6', "String pointer "PRI_INTPTR"[%u] outside ["PRI_INTPTR".."PRI_INTPTR")\n",
156
                 (intptr_t)ptr, size, (intptr_t)cp->ctop, (intptr_t)cp->climit);
157
        return false;
158
    } else if (ptr + size > cp->climit) { /*
159
                                                 * If this is the bottommost string in a clump that has
160
                                                 * an inner clump, the string's starting address is both
161
                                                 * cp->ctop of the outer clump and cp->climit of the inner;
162
                                                 * gc_locate may incorrectly attribute the string to the
163
                                                 * inner clump because of this.  This doesn't affect
164
                                                 * marking or relocation, since the machinery for these
165
                                                 * is all associated with the outermost clump,
166
                                                 * but it can cause the validity check to fail.
167
                                                 * Check for this case now.
168
                                                 */
169
        const clump_t *scp = cp;
170
171
        while (ptr == scp->climit && scp->outer != 0)
172
            scp = scp->outer;
173
        if (ptr + size > scp->climit) {
174
            if_debug4('6', "String pointer "PRI_INTPTR"[%u] outside ["PRI_INTPTR".."PRI_INTPTR")\n",
175
                     (intptr_t)ptr, size,
176
                     (intptr_t)scp->ctop, (intptr_t)scp->climit);
177
            return false;
178
        }
179
    }
180
#endif
181
124M
    marks = gc_mark_string(ptr, size, set, cp);
182
#ifdef DEBUG
183
    if (gs_debug_c('5')) {
184
        dmlprintf4(gcst->heap, "[5]%s%smarked "PRI_INTPTR"[%u]",
185
                  (marks ? "" : "already "), (set ? "" : "un"),
186
                  (intptr_t)ptr, size);
187
        dmprintstr(gcst->heap);
188
        dmputc(gcst->heap, '\n');
189
    }
190
#endif
191
124M
    return marks;
192
124M
}
193
194
/* Clear the relocation for strings. */
195
/* This requires setting the marks. */
196
void
197
gc_strings_clear_reloc(clump_t * cp)
198
147k
{
199
147k
    if (cp->sreloc != 0) {
200
101k
        gc_strings_set_marks(cp, true);
201
101k
        if_debug1('6', "[6]clearing string reloc "PRI_INTPTR"\n",
202
101k
                  (intptr_t)cp->sreloc);
203
101k
        gc_strings_set_reloc(cp);
204
101k
    }
205
147k
}
206
207
/* Count the 0-bits in a byte. */
208
static const byte count_zero_bits_table[256] =
209
{
210
#define o4(n) n,n-1,n-1,n-2
211
#define o16(n) o4(n),o4(n-1),o4(n-1),o4(n-2)
212
#define o64(n) o16(n),o16(n-1),o16(n-1),o16(n-2)
213
    o64(8), o64(7), o64(7), o64(6)
214
};
215
216
#define byte_count_zero_bits(byt)\
217
247M
  (uint)(count_zero_bits_table[byt])
218
#define byte_count_one_bits(byt)\
219
591M
  (uint)(8 - count_zero_bits_table[byt])
220
221
/* Set the relocation for the strings in a clump. */
222
/* The sreloc table stores the relocated offset from climit for */
223
/* the beginning of each block of string_data_quantum characters. */
224
void
225
gc_strings_set_reloc(clump_t * cp)
226
3.45M
{
227
3.45M
    if (cp->sreloc != 0 && cp->smark != 0) {
228
2.23M
        byte *bot = cp->ctop;
229
2.23M
        byte *top = cp->climit;
230
2.23M
        uint count =
231
2.23M
            (top - bot + (string_data_quantum - 1)) >>
232
2.23M
            log2_string_data_quantum;
233
2.23M
        string_reloc_offset *relp =
234
2.23M
            cp->sreloc +
235
2.23M
            (cp->smark_size >> (log2_string_data_quantum - 3));
236
2.23M
        register const byte *bitp = cp->smark + cp->smark_size;
237
2.23M
        register string_reloc_offset reloc = 0;
238
239
        /* Skip initial unrelocated strings quickly. */
240
2.23M
#if string_data_quantum == bword_bits || string_data_quantum == bword_bits * 2
241
2.23M
        {
242
            /* Work around the alignment aliasing bug. */
243
2.23M
            const bword *wp = (const bword *)bitp;
244
245
#if string_data_quantum == bword_bits
246
#  define RELOC_TEST_1S(wp) (wp[-1])
247
#else /* string_data_quantum == bword_bits * 2 */
248
28.0M
#  define RELOC_TEST_1S(wp) (wp[-1] & wp[-2])
249
2.23M
#endif
250
29.0M
            while (count && RELOC_TEST_1S(wp) == bword_1s) {
251
26.7M
                wp -= string_data_quantum / bword_bits;
252
26.7M
                *--relp = reloc += string_data_quantum;
253
26.7M
                --count;
254
26.7M
            }
255
2.23M
#undef RELOC_TEST_1S
256
2.23M
            bitp = (const byte *)wp;
257
2.23M
        }
258
2.23M
#endif
259
33.1M
        while (count--) {
260
30.9M
            bitp -= string_data_quantum / 8;
261
30.9M
            reloc += string_data_quantum -
262
30.9M
                byte_count_zero_bits(bitp[0]);
263
30.9M
            reloc -= byte_count_zero_bits(bitp[1]);
264
30.9M
            reloc -= byte_count_zero_bits(bitp[2]);
265
30.9M
            reloc -= byte_count_zero_bits(bitp[3]);
266
30.9M
#if log2_string_data_quantum > 5
267
30.9M
            reloc -= byte_count_zero_bits(bitp[4]);
268
30.9M
            reloc -= byte_count_zero_bits(bitp[5]);
269
30.9M
            reloc -= byte_count_zero_bits(bitp[6]);
270
30.9M
            reloc -= byte_count_zero_bits(bitp[7]);
271
30.9M
#endif
272
30.9M
            *--relp = reloc;
273
30.9M
        }
274
2.23M
    }
275
3.45M
    cp->sdest = cp->climit;
276
3.45M
}
277
278
/* Relocate a string pointer. */
279
void
280
igc_reloc_string(gs_string * sptr, gc_state_t * gcst)
281
132M
{
282
132M
    byte *ptr;
283
132M
    const clump_t *cp;
284
132M
    uint offset;
285
132M
    uint reloc;
286
132M
    const byte *bitp;
287
132M
    byte byt;
288
289
132M
    if (sptr->size == 0) {
290
1.98M
        sptr->data = 0;
291
1.98M
        return;
292
1.98M
    }
293
130M
    ptr = sptr->data;
294
295
130M
    if (!(cp = gc_locate(ptr, gcst)))  /* not in a clump */
296
0
        return;
297
130M
    if (cp->sreloc == 0 || cp->smark == 0)  /* not marking strings */
298
0
        return;
299
130M
    offset = ptr - cp->sbase;
300
130M
    reloc = cp->sreloc[offset >> log2_string_data_quantum];
301
130M
    bitp = &cp->smark[offset >> 3];
302
130M
    switch (offset & (string_data_quantum - 8)) {
303
0
#if log2_string_data_quantum > 5
304
16.5M
        case 56:
305
16.5M
            reloc -= byte_count_one_bits(bitp[-7]);
306
32.7M
        case 48:
307
32.7M
            reloc -= byte_count_one_bits(bitp[-6]);
308
49.8M
        case 40:
309
49.8M
            reloc -= byte_count_one_bits(bitp[-5]);
310
66.5M
        case 32:
311
66.5M
            reloc -= byte_count_one_bits(bitp[-4]);
312
66.5M
#endif
313
82.2M
        case 24:
314
82.2M
            reloc -= byte_count_one_bits(bitp[-3]);
315
98.5M
        case 16:
316
98.5M
            reloc -= byte_count_one_bits(bitp[-2]);
317
114M
        case 8:
318
114M
            reloc -= byte_count_one_bits(bitp[-1]);
319
130M
    }
320
130M
    byt = *bitp & (0xff >> (8 - (offset & 7)));
321
130M
    reloc -= byte_count_one_bits(byt);
322
130M
    if_debug2('5', "[5]relocate string "PRI_INTPTR" to 0x%lx\n",
323
130M
              (intptr_t)ptr, (intptr_t)(cp->sdest - reloc));
324
130M
    sptr->data = (cp->sdest - reloc);
325
130M
}
326
void
327
igc_reloc_const_string(gs_const_string * sptr, gc_state_t * gcst)
328
115M
{   /* We assume the representation of byte * and const byte * is */
329
    /* the same.... */
330
115M
    igc_reloc_string((gs_string *) sptr, gcst);
331
115M
}
332
void
333
igc_reloc_param_string(gs_param_string * sptr, gc_state_t * gcst)
334
91.9k
{
335
91.9k
    if (!sptr->persistent) {
336
        /* We assume that gs_param_string is a subclass of gs_string. */
337
91.9k
        igc_reloc_string((gs_string *)sptr, gcst);
338
91.9k
    }
339
91.9k
}
340
341
/* Compact the strings in a clump. */
342
void
343
gc_strings_compact(clump_t * cp, const gs_memory_t *mem)
344
3.35M
{
345
3.35M
    if (cp->smark != 0) {
346
2.13M
        byte *hi = cp->climit;
347
2.13M
        byte *lo = cp->ctop;
348
2.13M
        const byte *from = hi;
349
2.13M
        byte *to = hi;
350
2.13M
        const byte *bp = cp->smark + cp->smark_size;
351
352
#ifdef DEBUG
353
        if (gs_debug_c('4') || gs_debug_c('5')) {
354
            byte *base = cp->sbase;
355
            uint i = (lo - base) & -string_data_quantum;
356
            uint n = ROUND_UP(hi - base, string_data_quantum);
357
358
#define R 16
359
            for (; i < n; i += R) {
360
                uint j;
361
362
                dmlprintf1(mem, "[4]"PRI_INTPTR": ", (intptr_t) (base + i));
363
                for (j = i; j < i + R; j++) {
364
                    byte ch = base[j];
365
366
                    if (ch <= 31) {
367
                        dmputc(mem, '^');
368
                        dmputc(mem, ch + 0100);
369
                    } else
370
                        dmputc(mem, ch);
371
                }
372
                dmputc(mem, ' ');
373
                for (j = i; j < i + R; j++)
374
                    dmputc(mem, (cp->smark[j >> 3] & (1 << (j & 7)) ?
375
                           '+' : '.'));
376
#undef R
377
                if (!(i & (string_data_quantum - 1)))
378
                    dmprintf1(mem, " %u", cp->sreloc[i >> log2_string_data_quantum]);
379
                dmputc(mem, '\n');
380
            }
381
        }
382
#endif
383
        /*
384
         * Skip unmodified strings quickly.  We know that cp->smark is
385
         * aligned to a string_mark_unit.
386
         */
387
2.13M
        {
388
            /* Work around the alignment aliasing bug. */
389
2.13M
            const bword *wp = (const bword *)bp;
390
391
51.5M
            while (to > lo && wp[-1] == bword_1s)
392
49.4M
                to -= bword_bits, --wp;
393
2.13M
            bp = (const byte *)wp;
394
2.98M
            while (to > lo && bp[-1] == 0xff)
395
855k
                to -= 8, --bp;
396
2.13M
        }
397
2.13M
        from = to;
398
399
241M
        while (from > lo) {
400
239M
            byte b = *--bp;
401
402
239M
            from -= 8;
403
239M
            switch (b) {
404
45.6M
                case 0xff:
405
45.6M
                    to -= 8;
406
                    /*
407
                     * Since we've seen a byte other than 0xff, we know
408
                     * to != from at this point.
409
                     */
410
45.6M
                    to[7] = from[7];
411
45.6M
                    to[6] = from[6];
412
45.6M
                    to[5] = from[5];
413
45.6M
                    to[4] = from[4];
414
45.6M
                    to[3] = from[3];
415
45.6M
                    to[2] = from[2];
416
45.6M
                    to[1] = from[1];
417
45.6M
                    to[0] = from[0];
418
45.6M
                    break;
419
3.72M
                default:
420
3.72M
                    if (b & 0x80)
421
2.19M
                        *--to = from[7];
422
3.72M
                    if (b & 0x40)
423
2.12M
                        *--to = from[6];
424
3.72M
                    if (b & 0x20)
425
2.00M
                        *--to = from[5];
426
3.72M
                    if (b & 0x10)
427
1.97M
                        *--to = from[4];
428
3.72M
                    if (b & 8)
429
1.84M
                        *--to = from[3];
430
3.72M
                    if (b & 4)
431
1.74M
                        *--to = from[2];
432
3.72M
                    if (b & 2)
433
1.52M
                        *--to = from[1];
434
3.72M
                    if (b & 1)
435
1.50M
                        *--to = from[0];
436
                    /* falls through */
437
194M
                case 0:
438
194M
                    ;
439
239M
            }
440
239M
        }
441
2.13M
        gs_alloc_fill(cp->ctop, gs_alloc_fill_collected,
442
2.13M
                      to - cp->ctop);
443
2.13M
        cp->ctop = to;
444
2.13M
    }
445
3.35M
}