Coverage Report

Created: 2025-12-31 07:31

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/base/gsutil.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
/* Utilities for Ghostscript library */
18
19
#include "string_.h"
20
#include "memory_.h"
21
#include "gstypes.h"
22
#include "gserrors.h"
23
#include "gsmemory.h"   /* for init procedure */
24
#include "gsrect.h"   /* for prototypes */
25
#include "gsuid.h"
26
#include "gsutil.h"   /* for prototypes */
27
#include "gxsync.h"   /* for gx_monitor_t */
28
29
/* ------ Unique IDs ------ */
30
31
/* This is used by multiple threads, so lock around updates */
32
ulong
33
gs_next_ids(const gs_memory_t *mem, uint count)
34
477M
{
35
477M
    gs_lib_ctx_core_t *core = mem->gs_lib_ctx->core;
36
477M
    ulong id;
37
38
477M
    gx_monitor_enter((gx_monitor_t *)(core->monitor));
39
477M
    id = core->gs_next_id;
40
477M
    core->gs_next_id += count;
41
477M
    gx_monitor_leave((gx_monitor_t *)(core->monitor));
42
43
477M
    return id;
44
477M
}
45
46
/* ------ Memory utilities ------ */
47
48
/* Transpose an 8 x 8 block of bits.  line_size is the raster of */
49
/* the input data.  dist is the distance between output bytes. */
50
51
void
52
memflip8x8(const byte * inp, int line_size, byte * outp, int dist)
53
1.91M
{
54
1.91M
    uint aceg, bdfh;
55
56
1.91M
    {
57
1.91M
        const byte *ptr4 = inp + (line_size << 2);
58
1.91M
        const int ls2 = line_size << 1;
59
60
1.91M
        aceg = ((uint)*inp) | ((uint)inp[ls2] << 8) |
61
1.91M
            ((uint)*ptr4 << 16) | ((uint)ptr4[ls2] << 24);
62
1.91M
        inp += line_size, ptr4 += line_size;
63
1.91M
        bdfh = ((uint)*inp) | ((uint)inp[ls2] << 8) |
64
1.91M
            ((uint)*ptr4 << 16) | ((uint)ptr4[ls2] << 24);
65
1.91M
    }
66
67
    /* Check for all 8 bytes being the same. */
68
    /* This is especially worth doing for the case where all are zero. */
69
1.91M
    if (aceg == bdfh && (aceg >> 8) == (aceg & 0xffffff)) {
70
1.42M
        if (aceg == 0 || aceg == 0xffffffff)
71
1.40M
            goto store;
72
14.6k
        *outp = (byte)-(int)((aceg >> 7) & 1);
73
14.6k
        outp[dist] = (byte)-(int)((aceg >> 6) & 1);
74
14.6k
        outp += dist << 1;
75
14.6k
        *outp = (byte)-(int)((aceg >> 5) & 1);
76
14.6k
        outp[dist] = (byte)-(int)((aceg >> 4) & 1);
77
14.6k
        outp += dist << 1;
78
14.6k
        *outp = (byte)-(int)((aceg >> 3) & 1);
79
14.6k
        outp[dist] = (byte)-(int)((aceg >> 2) & 1);
80
14.6k
        outp += dist << 1;
81
14.6k
        *outp = (byte)-(int)((aceg >> 1) & 1);
82
14.6k
        outp[dist] = (byte)-(int)(aceg & 1);
83
14.6k
        return;
84
1.42M
    } {
85
495k
        register uint temp;
86
87
/* Transpose a block of bits between registers. */
88
495k
#define TRANSPOSE(r,s,mask,shift)\
89
2.47M
  (r ^= (temp = ((s >> shift) ^ r) & mask),\
90
2.47M
   s ^= temp << shift)
91
92
/* Transpose blocks of 4 x 4 */
93
495k
        TRANSPOSE(aceg, aceg, 0x00000f0f, 20);
94
495k
        TRANSPOSE(bdfh, bdfh, 0x00000f0f, 20);
95
96
/* Transpose blocks of 2 x 2 */
97
495k
        TRANSPOSE(aceg, aceg, 0x00330033, 10);
98
495k
        TRANSPOSE(bdfh, bdfh, 0x00330033, 10);
99
100
/* Transpose blocks of 1 x 1 */
101
495k
        TRANSPOSE(aceg, bdfh, 0x55555555, 1);
102
103
495k
#undef TRANSPOSE
104
495k
    }
105
106
1.90M
  store:
107
1.90M
    *outp = (byte)aceg;
108
1.90M
    outp[dist] = (byte)bdfh;
109
1.90M
    outp += dist << 1;
110
1.90M
    *outp = (byte)(aceg >>= 8);
111
1.90M
    outp[dist] = (byte)(bdfh >>= 8);
112
1.90M
    outp += dist << 1;
113
1.90M
    *outp = (byte)(aceg >>= 8);
114
1.90M
    outp[dist] = (byte)(bdfh >>= 8);
115
1.90M
    outp += dist << 1;
116
1.90M
    *outp = (byte)(aceg >> 8);
117
1.90M
    outp[dist] = (byte)(bdfh >> 8);
118
1.90M
}
119
120
#ifdef PACIFY_VALGRIND
121
void
122
memflip8x8_eol(const byte * inp, int line_size, byte * outp, int dist, int bits)
123
515k
{
124
515k
    uint aceg, bdfh;
125
515k
    uint mask;
126
127
515k
    {
128
515k
        const byte *ptr4 = inp + (line_size << 2);
129
515k
        const int ls2 = line_size << 1;
130
131
515k
        aceg = ((uint)*inp) | ((uint)inp[ls2] << 8) |
132
515k
            ((uint)*ptr4 << 16) | ((uint)ptr4[ls2] << 24);
133
515k
        inp += line_size, ptr4 += line_size;
134
515k
        bdfh = ((uint)*inp) | ((uint)inp[ls2] << 8) |
135
515k
            ((uint)*ptr4 << 16) | ((uint)ptr4[ls2] << 24);
136
515k
    }
137
138
    /* Keep just the defined bits */
139
515k
    mask = (0xff00>>(bits&7)) & 0xff;
140
515k
    mask |= mask<<8;
141
515k
    mask |= mask<<16;
142
515k
    aceg &= mask;
143
515k
    bdfh &= mask;
144
145
    /* Check for all 8 bytes being the same. */
146
    /* This is especially worth doing for the case where all are zero. */
147
515k
    if (aceg == bdfh && (aceg >> 8) == (aceg & 0xffffff)) {
148
190k
        if (aceg == 0 || aceg == 0xffffffff)
149
165k
            goto store;
150
25.6k
        *outp = (byte)-(int)((aceg >> 7) & 1);
151
25.6k
        outp[dist] = (byte)-(int)((aceg >> 6) & 1);
152
25.6k
        outp += dist << 1;
153
25.6k
        *outp = (byte)-(int)((aceg >> 5) & 1);
154
25.6k
        outp[dist] = (byte)-(int)((aceg >> 4) & 1);
155
25.6k
        outp += dist << 1;
156
25.6k
        *outp = (byte)-(int)((aceg >> 3) & 1);
157
25.6k
        outp[dist] = (byte)-(int)((aceg >> 2) & 1);
158
25.6k
        outp += dist << 1;
159
25.6k
        *outp = (byte)-(int)((aceg >> 1) & 1);
160
25.6k
        outp[dist] = (byte)-(int)(aceg & 1);
161
25.6k
        return;
162
324k
    } {
163
324k
        register uint temp;
164
165
/* Transpose a block of bits between registers. */
166
324k
#define TRANSPOSE(r,s,mask,shift)\
167
1.62M
  (r ^= (temp = ((s >> shift) ^ r) & mask),\
168
1.62M
   s ^= temp << shift)
169
170
/* Transpose blocks of 4 x 4 */
171
324k
        TRANSPOSE(aceg, aceg, 0x00000f0f, 20);
172
324k
        TRANSPOSE(bdfh, bdfh, 0x00000f0f, 20);
173
174
/* Transpose blocks of 2 x 2 */
175
324k
        TRANSPOSE(aceg, aceg, 0x00330033, 10);
176
324k
        TRANSPOSE(bdfh, bdfh, 0x00330033, 10);
177
178
/* Transpose blocks of 1 x 1 */
179
324k
        TRANSPOSE(aceg, bdfh, 0x55555555, 1);
180
181
324k
#undef TRANSPOSE
182
324k
    }
183
184
489k
  store:
185
489k
    *outp = (byte)aceg;
186
489k
    outp[dist] = (byte)bdfh;
187
489k
    outp += dist << 1;
188
489k
    *outp = (byte)(aceg >>= 8);
189
489k
    outp[dist] = (byte)(bdfh >>= 8);
190
489k
    outp += dist << 1;
191
489k
    *outp = (byte)(aceg >>= 8);
192
489k
    outp[dist] = (byte)(bdfh >>= 8);
193
489k
    outp += dist << 1;
194
489k
    *outp = (byte)(aceg >> 8);
195
489k
    outp[dist] = (byte)(bdfh >> 8);
196
489k
}
197
#endif
198
199
/* Get an unsigned, big-endian 32-bit value. */
200
ulong
201
get_u32_msb(const byte *p)
202
598M
{
203
598M
    return ((uint)p[0] << 24) + ((uint)p[1] << 16) + ((uint)p[2] << 8) + p[3];
204
598M
}
205
206
/* Put an unsigned, big-endian 32-bit value. */
207
void
208
put_u32_msb(byte *p, const ulong n, const int offs)
209
0
{
210
0
    (p + offs)[0] = n >> 24 & 255;
211
0
    (p + offs)[1] = n >> 16 & 255;
212
0
    (p + offs)[2] = n >> 8  & 255;
213
0
    (p + offs)[3] = n & 255;
214
0
}
215
216
/* ------ String utilities ------ */
217
218
/* Compare two strings, returning -1 if the first is less, */
219
/* 0 if they are equal, and 1 if first is greater. */
220
/* We can't use memcmp, because we always use unsigned characters. */
221
int
222
bytes_compare(const byte * s1, uint len1, const byte * s2, uint len2)
223
357M
{
224
357M
    register uint len = len1;
225
226
357M
    if (len2 < len)
227
100M
        len = len2;
228
357M
    {
229
357M
        register const byte *p1 = s1;
230
357M
        register const byte *p2 = s2;
231
232
1.63G
        while (len--)
233
1.51G
            if (*p1++ != *p2++)
234
237M
                return (p1[-1] < p2[-1] ? -1 : 1);
235
357M
    }
236
    /* Now check for differing lengths */
237
119M
    return (len1 == len2 ? 0 : len1 < len2 ? -1 : 1);
238
357M
}
239
240
/* Test whether a string matches a pattern with wildcards. */
241
/* '*' = any substring, '?' = any character, '\' quotes next character. */
242
const string_match_params string_match_params_default = {
243
    '*', '?', '\\', false, false
244
};
245
246
bool
247
string_match(const byte * str, uint len, const byte * pstr, uint plen,
248
             register const string_match_params * psmp)
249
147M
{
250
147M
    const byte *pback = 0;
251
147M
    const byte *spback = 0; /* initialized only to pacify gcc */
252
147M
    const byte *p = pstr, *pend = pstr + plen;
253
147M
    const byte *sp = str, *spend = str + len;
254
255
147M
    if (psmp == 0)
256
147M
        psmp = &string_match_params_default;
257
1.00G
  again:while (p < pend) {
258
1.00G
        register byte ch = *p;
259
260
1.00G
        if (ch == psmp->any_substring) {
261
365k
            pback = ++p, spback = sp;
262
365k
            continue;
263
1.00G
        } else if (ch == psmp->any_char) {
264
0
            if (sp == spend)
265
0
                return false; /* str too short */
266
0
            p++, sp++;
267
0
            continue;
268
1.00G
        } else if (ch == psmp->quote_next) {
269
0
            if (++p == pend)
270
0
                return true; /* bad pattern */
271
0
            ch = *p;
272
0
        }
273
1.00G
        if (sp == spend)
274
0
            return false; /* str too short */
275
1.00G
        if (*sp == ch ||
276
147M
            (psmp->ignore_case && (*sp ^ ch) == 0x20 &&
277
0
             (ch &= ~0x20) >= 0x41 && ch <= 0x5a) ||
278
147M
             (psmp->slash_equiv && ((ch == '\\' && *sp == '/') ||
279
0
             (ch == '/' && *sp == '\\')))
280
1.00G
            )
281
857M
            p++, sp++;
282
147M
        else if (pback == 0)
283
147M
            return false;  /* no * to back up to */
284
0
        else {
285
0
            sp = ++spback;
286
0
            p = pback;
287
0
        }
288
1.00G
    }
289
731k
    if (sp < spend) {   /* We got a match, but there are chars left over. */
290
        /* If we can back up, back up to the only place that */
291
        /* could produce a complete match, otherwise fail. */
292
365k
        if (pback == 0)
293
0
            return false;
294
365k
        p = pback;
295
365k
        pback = 0;
296
365k
        sp = spend - (pend - p);
297
365k
        goto again;
298
365k
    }
299
365k
    return true;
300
731k
}
301
302
/* ------ UID utilities ------ */
303
304
/* Compare two UIDs for equality. */
305
/* We know that at least one of them is valid. */
306
bool
307
uid_equal(register const gs_uid * puid1, register const gs_uid * puid2)
308
17.1M
{
309
17.1M
    if (puid1->id != puid2->id)
310
990k
        return false;
311
16.1M
    if (puid1->id >= 0)
312
2.73k
        return true;    /* UniqueID */
313
16.1M
    return
314
16.1M
        !memcmp((const char *)puid1->xvalues,
315
16.1M
                (const char *)puid2->xvalues,
316
16.1M
                (uint) - (puid1->id) * sizeof(long));
317
16.1M
}
318
319
/* Copy the XUID data for a uid, if needed, updating the uid in place. */
320
int
321
uid_copy(gs_uid *puid, gs_memory_t *mem, client_name_t cname)
322
3.03M
{
323
3.03M
    if (uid_is_XUID(puid)) {
324
194k
        uint xsize = uid_XUID_size(puid);
325
194k
        long *xvalues = (long *)
326
194k
            gs_alloc_byte_array(mem, xsize, sizeof(long), cname);
327
328
194k
        if (xvalues == 0)
329
0
            return_error(gs_error_VMerror);
330
194k
        memcpy(xvalues, uid_XUID_values(puid), xsize * sizeof(long));
331
194k
        puid->xvalues = xvalues;
332
194k
    }
333
3.03M
    return 0;
334
3.03M
}
335
336
/* ------ Rectangle utilities ------ */
337
338
/*
339
 * Calculate the difference of two rectangles, a list of up to 4 rectangles.
340
 * Return the number of rectangles in the list, and set the first rectangle
341
 * to the intersection.
342
 */
343
int
344
int_rect_difference(gs_int_rect * outer, const gs_int_rect * inner,
345
                    gs_int_rect * diffs /*[4] */ )
346
0
{
347
0
    int x0 = outer->p.x, y0 = outer->p.y;
348
0
    int x1 = outer->q.x, y1 = outer->q.y;
349
0
    int count = 0;
350
351
0
    if (y0 < inner->p.y) {
352
0
        diffs[0].p.x = x0, diffs[0].p.y = y0;
353
0
        diffs[0].q.x = x1, diffs[0].q.y = min(y1, inner->p.y);
354
0
        outer->p.y = y0 = diffs[0].q.y;
355
0
        ++count;
356
0
    }
357
0
    if (y1 > inner->q.y) {
358
0
        diffs[count].p.x = x0, diffs[count].p.y = max(y0, inner->q.y);
359
0
        diffs[count].q.x = x1, diffs[count].q.y = y1;
360
0
        outer->q.y = y1 = diffs[count].p.y;
361
0
        ++count;
362
0
    }
363
0
    if (x0 < inner->p.x) {
364
0
        diffs[0].p.x = x0, diffs[0].p.y = y0;
365
0
        diffs[0].q.x = min(x1, inner->p.x), diffs[0].q.y = y1;
366
0
        outer->p.x = x0 = diffs[count].q.x;
367
0
        ++count;
368
0
    }
369
0
    if (x1 > inner->q.x) {
370
0
        diffs[count].p.x = max(x0, inner->q.x), diffs[count].p.y = y0;
371
0
        diffs[count].q.x = x1, diffs[count].q.y = y1;
372
0
        outer->q.x = x1 = diffs[count].p.x;
373
0
        ++count;
374
0
    }
375
0
    return count;
376
0
}