Coverage Report

Created: 2026-04-09 07:06

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/base/gsfunc4.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
/* Implementation of FunctionType 4 (PostScript Calculator) Functions */
18
#include "math_.h"
19
#include "memory_.h"
20
#include "gx.h"
21
#include "gserrors.h"
22
#include "gsdsrc.h"
23
#include "gsfunc4.h"
24
#include "gxfarith.h"
25
#include "gxfunc.h"
26
#include "stream.h"
27
#include "strimpl.h"
28
#include "sfilter.h"    /* for SubFileDecode */
29
#include "spprint.h"
30
#include "stream.h"
31
32
typedef struct gs_function_PtCr_s {
33
    gs_function_head_t head;
34
    gs_function_PtCr_params_t params;
35
    /* Define a bogus DataSource for get_function_info. */
36
    gs_data_source_t data_source;
37
} gs_function_PtCr_t;
38
39
/* GC descriptor */
40
private_st_function_PtCr();
41
42
/* Define the maximum stack depth. */
43
82.5M
#define MAX_VSTACK 256    /* Max 100 is enough per PDF spec, but we use this
44
                                 * for DeviceN handling. Must be at least as large
45
                                 * as the number of components
46
                                 */
47
48
/* Define the structure of values on the stack. */
49
typedef enum {
50
    CVT_NONE = 0, /* empty stack slot */
51
    CVT_BOOL,
52
    CVT_INT,
53
    CVT_FLOAT
54
} calc_value_type_t;
55
typedef struct calc_value_s {
56
    calc_value_type_t type;
57
    union {
58
        int i;      /* also used for Boolean */
59
        float f;
60
    } value;
61
} calc_value_t;
62
63
/* Store a float. */
64
static inline void
65
store_float(calc_value_t *vsp, double f)
66
40.5M
{
67
40.5M
    vsp->value.f = f;
68
40.5M
    vsp->type = CVT_FLOAT;
69
40.5M
}
70
71
/*
72
 * Define extended opcodes with typed operands.  We use the original
73
 * opcodes for the floating-point case.
74
 */
75
typedef enum {
76
77
        /* Typed variants */
78
79
    PtCr_abs_int = PtCr_NUM_OPCODES,
80
    PtCr_add_int,
81
    PtCr_mul_int,
82
    PtCr_neg_int,
83
    PtCr_not_bool,    /* default is int */
84
    PtCr_sub_int,
85
    PtCr_eq_int,
86
    PtCr_ge_int,
87
    PtCr_gt_int,
88
    PtCr_le_int,
89
    PtCr_lt_int,
90
    PtCr_ne_int,
91
92
        /* Coerce and re-dispatch */
93
94
    PtCr_int_to_float,
95
    PtCr_2nd_int_to_float,
96
    PtCr_int2_to_float,
97
98
        /* Miscellaneous */
99
100
    PtCr_no_op,
101
    PtCr_typecheck
102
103
} gs_PtCr_typed_opcode_t;
104
105
/* Evaluate a PostScript Calculator function. */
106
static int
107
fn_PtCr_evaluate(const gs_function_t *pfn_common, const float *in, float *out)
108
7.22M
{
109
7.22M
    const gs_function_PtCr_t *pfn = (const gs_function_PtCr_t *)pfn_common;
110
7.22M
    calc_value_t vstack_buf[2 + MAX_VSTACK + 1];
111
7.22M
    calc_value_t *vstack = &vstack_buf[1];
112
7.22M
    calc_value_t *vsp = vstack + pfn->params.m;
113
7.22M
    const byte *p = pfn->params.ops.data;
114
7.22M
    int repeat_count[MAX_PSC_FUNCTION_NESTING];
115
7.22M
    int repeat_proc_size[MAX_PSC_FUNCTION_NESTING];
116
7.22M
    int repeat_nesting_level = -1;
117
7.22M
    int i;
118
119
    /*
120
     * Define the table for mapping explicit opcodes to typed opcodes.
121
     * We index this table with the opcode and the types of the top 2
122
     * values on the stack.
123
     */
124
7.22M
    static const struct op_defn_s {
125
7.22M
        byte opcode[16];  /* 4 * type[-1] + type[0] */
126
7.22M
    } op_defn_table[] = {
127
        /* Keep this consistent with opcodes in gsfunc4.h! */
128
129
527M
#define O4(op) op,op,op,op
130
1.16G
#define E PtCr_typecheck
131
296M
#define E4 O4(E)
132
7.22M
#define N PtCr_no_op
133
        /* 0-operand operators */
134
7.22M
#define OP_NONE(op)\
135
57.8M
  {{O4(op), O4(op), O4(op), O4(op)}}
136
        /* 1-operand operators */
137
7.22M
#define OP1(b, i, f)\
138
144M
  {{E,b,i,f, E,b,i,f, E,b,i,f, E,b,i,f}}
139
7.22M
#define OP_NUM1(i, f)\
140
57.8M
  OP1(E, i, f)
141
7.22M
#define OP_MATH1(f)\
142
36.1M
  OP1(E, PtCr_int_to_float, f)
143
7.22M
#define OP_ANY1(op)\
144
14.4M
  OP1(op, op, op)
145
        /* 2-operand operators */
146
7.22M
#define OP_NUM2(i, f)\
147
50.6M
  {{E4, E4, E,E,i,PtCr_2nd_int_to_float, E,E,PtCr_int_to_float,f}}
148
7.22M
#define OP_INT_BOOL2(i)\
149
21.6M
  {{E4, E,i,i,E, E,i,i,E, E4}}
150
7.22M
#define OP_MATH2(f)\
151
21.6M
  {{E4, E4, E,E,PtCr_int2_to_float,PtCr_2nd_int_to_float,\
152
21.6M
    E,E,PtCr_int_to_float,f}}
153
7.22M
#define OP_INT2(i)\
154
28.9M
  {{E4, E4, E,E,i,E, E4}}
155
7.22M
#define OP_REL2(i, f)\
156
14.4M
  {{E4, E,i,E,E, E,E,i,PtCr_2nd_int_to_float, E,E,PtCr_int_to_float,f}}
157
7.22M
#define OP_ANY2(op)\
158
7.22M
  {{E4, E,op,op,op, E,op,op,op, E,op,op,op}}
159
160
    /* Arithmetic operators */
161
162
7.22M
        OP_NUM1(PtCr_abs_int, PtCr_abs), /* abs */
163
7.22M
        OP_NUM2(PtCr_add_int, PtCr_add), /* add */
164
7.22M
        OP_INT_BOOL2(PtCr_and),  /* and */
165
7.22M
        OP_MATH2(PtCr_atan),  /* atan */
166
7.22M
        OP_INT2(PtCr_bitshift),  /* bitshift */
167
7.22M
        OP_NUM1(N, PtCr_ceiling),  /* ceiling */
168
7.22M
        OP_MATH1(PtCr_cos), /* cos */
169
7.22M
        OP_NUM1(N, PtCr_cvi),  /* cvi */
170
7.22M
        OP_NUM1(PtCr_int_to_float, N), /* cvr */
171
7.22M
        OP_MATH2(PtCr_div), /* div */
172
7.22M
        OP_MATH2(PtCr_exp), /* exp */
173
7.22M
        OP_NUM1(N, PtCr_floor),  /* floor */
174
7.22M
        OP_INT2(PtCr_idiv),  /* idiv */
175
7.22M
        OP_MATH1(PtCr_ln),  /* ln */
176
7.22M
        OP_MATH1(PtCr_log), /* log */
177
7.22M
        OP_INT2(PtCr_mod), /* mod */
178
7.22M
        OP_NUM2(PtCr_mul_int, PtCr_mul), /* mul */
179
7.22M
        OP_NUM1(PtCr_neg_int, PtCr_neg), /* neg */
180
7.22M
        OP1(PtCr_not, PtCr_not, E),  /* not */
181
7.22M
        OP_INT_BOOL2(PtCr_or),  /* or */
182
7.22M
        OP_NUM1(N, PtCr_round),  /* round */
183
7.22M
        OP_MATH1(PtCr_sin), /* sin */
184
7.22M
        OP_MATH1(PtCr_sqrt),  /* sqrt */
185
7.22M
        OP_NUM2(PtCr_sub_int, PtCr_sub), /* sub */
186
7.22M
        OP_NUM1(N, PtCr_truncate), /* truncate */
187
7.22M
        OP_INT_BOOL2(PtCr_xor),  /* xor */
188
189
    /* Comparison operators */
190
191
7.22M
        OP_REL2(PtCr_eq_int, PtCr_eq), /* eq */
192
7.22M
        OP_NUM2(PtCr_ge_int, PtCr_ge), /* ge */
193
7.22M
        OP_NUM2(PtCr_gt_int, PtCr_gt), /* gt */
194
7.22M
        OP_NUM2(PtCr_le_int, PtCr_le), /* le */
195
7.22M
        OP_NUM2(PtCr_lt_int, PtCr_lt), /* lt */
196
7.22M
        OP_REL2(PtCr_ne_int, PtCr_ne), /* ne */
197
198
    /* Stack operators */
199
200
7.22M
        OP1(E, PtCr_copy, E),  /* copy */
201
7.22M
        OP_ANY1(PtCr_dup), /* dup */
202
7.22M
        OP_ANY2(PtCr_exch),  /* exch */
203
7.22M
        OP1(E, PtCr_index, E), /* index */
204
7.22M
        OP_ANY1(PtCr_pop), /* pop */
205
7.22M
        OP_INT2(PtCr_roll),  /* roll */
206
207
    /* Constants */
208
209
7.22M
        OP_NONE(PtCr_byte),    /* byte */
210
7.22M
        OP_NONE(PtCr_int),   /* int */
211
7.22M
        OP_NONE(PtCr_float),   /* float */
212
7.22M
        OP_NONE(PtCr_true),    /* true */
213
7.22M
        OP_NONE(PtCr_false),   /* false */
214
215
    /* Special */
216
217
7.22M
        OP1(PtCr_if, E, E),    /* if */
218
7.22M
        OP_NONE(PtCr_else),    /* else */
219
7.22M
        OP_NONE(PtCr_return),    /* return */
220
7.22M
        OP1(E, PtCr_repeat, E),    /* repeat */
221
7.22M
        OP_NONE(PtCr_repeat_end) /* repeat_end */
222
7.22M
    };
223
224
7.22M
    memset(repeat_count, 0x00, MAX_PSC_FUNCTION_NESTING * sizeof(int));
225
7.22M
    memset(repeat_proc_size, 0x00, MAX_PSC_FUNCTION_NESTING * sizeof(int));
226
227
7.22M
    vstack[-1].type = CVT_NONE;  /* for type dispatch in empty stack case */
228
7.22M
    vstack[0].type = CVT_NONE;  /* catch underflow */
229
31.3M
    for (i = 0; i < pfn->params.m; ++i)
230
24.1M
        store_float(&vstack[i + 1], in[i]);
231
232
152M
    for (; ; ) {
233
152M
        int code, n;
234
235
152M
        switch (op_defn_table[*p++].opcode[(vsp[-1].type << 2) + vsp->type]) {
236
237
            /* Miscellaneous */
238
239
511k
        case PtCr_no_op:
240
511k
            continue;
241
32
        case PtCr_typecheck:
242
32
            return_error(gs_error_typecheck);
243
244
            /* Coerce and re-dispatch */
245
246
12.5M
        case PtCr_int_to_float:
247
12.5M
            store_float(vsp, (double)vsp->value.i);
248
12.5M
            --p; continue;
249
127k
        case PtCr_int2_to_float:
250
127k
            store_float(vsp, (double)vsp->value.i);
251
            /* fall through */
252
3.71M
        case PtCr_2nd_int_to_float:
253
3.71M
            store_float(vsp - 1, (double)vsp[-1].value.i);
254
3.71M
            --p; continue;
255
256
            /* Arithmetic operators */
257
258
3.59M
        case PtCr_abs:
259
3.59M
            vsp->value.f = fabs(vsp->value.f);
260
3.59M
            continue;
261
0
        case PtCr_add_int: {
262
0
            int int1 = vsp[-1].value.i, int2 = vsp->value.i;
263
264
0
            if ((int1 ^ int2) >= 0 && ((int1 + int2) ^ int1) < 0)
265
0
                store_float(vsp - 1, (double)int1 + int2);
266
0
            else
267
0
                vsp[-1].value.i = int1 + int2;
268
0
            --vsp; continue;
269
127k
        }
270
1.68M
        case PtCr_add:
271
1.68M
            vsp[-1].value.f += vsp->value.f;
272
1.68M
            --vsp; continue;
273
0
        case PtCr_and:
274
0
            vsp[-1].value.i &= vsp->value.i;
275
0
            --vsp; continue;
276
2.44M
        case PtCr_atan: {
277
2.44M
            double result;
278
279
2.44M
            code = gs_atan2_degrees(vsp[-1].value.f, vsp->value.f,
280
2.44M
                                    &result);
281
2.44M
            if (code < 0)
282
0
                return code;
283
2.44M
            vsp[-1].value.f = result;
284
2.44M
            --vsp; continue;
285
2.44M
        }
286
0
        case PtCr_bitshift:
287
0
#define MAX_SHIFT (ARCH_SIZEOF_INT * 8 - 1)
288
0
            if (vsp->value.i < -MAX_SHIFT || vsp->value.i > MAX_SHIFT)
289
0
                vsp[-1].value.i = 0;
290
0
#undef MAX_SHIFT
291
0
            else if ((n = vsp->value.i) < 0)
292
0
                vsp[-1].value.i = ((uint)(vsp[-1].value.i)) >> -n;
293
0
            else
294
0
                vsp[-1].value.i <<= n;
295
0
            --vsp; continue;
296
0
        case PtCr_ceiling:
297
0
            vsp->value.f = ceil(vsp->value.f);
298
0
            continue;
299
2.44M
        case PtCr_cos:
300
2.44M
            vsp->value.f = gs_cos_degrees(vsp->value.f);
301
2.44M
            continue;
302
0
        case PtCr_cvi:
303
0
        {
304
           /* Strictly speaking assigning one element of union
305
            * to another, overlapping element of a different size is
306
            * undefined behavior, hence assign to an intermediate variable
307
            */
308
0
            int int1 = (int)(vsp->value.f);
309
0
            vsp->value.i = int1;
310
0
            vsp->type = CVT_INT;
311
0
            continue;
312
2.44M
        }
313
0
        case PtCr_cvr:
314
0
            continue;  /* prepare handled it */
315
2.95M
        case PtCr_div:
316
2.95M
            if (vsp->value.f == 0)
317
0
                return_error(gs_error_undefinedresult);
318
2.95M
            vsp[-1].value.f /= vsp->value.f;
319
2.95M
            --vsp; continue;
320
0
        case PtCr_exp:
321
0
            vsp[-1].value.f = pow(vsp[-1].value.f, vsp->value.f);
322
0
            --vsp; continue;
323
0
        case PtCr_floor:
324
0
            vsp->value.f = floor(vsp->value.f);
325
0
            continue;
326
0
        case PtCr_idiv:
327
0
            if (vsp->value.i == 0)
328
0
                return_error(gs_error_undefinedresult);
329
0
            if (vsp[-1].value.i == min_int &&
330
0
                vsp->value.i == -1)  /* anomalous boundary case, fail */
331
0
                return_error(gs_error_rangecheck);
332
0
            else
333
0
                vsp[-1].value.i /= vsp->value.i;
334
0
            --vsp; continue;
335
0
        case PtCr_ln:
336
0
            vsp->value.f = log(vsp->value.f);
337
0
            continue;
338
0
        case PtCr_log:
339
0
            vsp->value.f = log10(vsp->value.f);
340
0
            continue;
341
0
        case PtCr_mod:
342
0
            if (vsp->value.i == 0)
343
0
                return_error(gs_error_undefinedresult);
344
0
            vsp[-1].value.i %= vsp->value.i;
345
0
            --vsp; continue;
346
2.60M
        case PtCr_mul_int: {
347
            /* We don't bother to optimize this. */
348
2.60M
            double prod = (double)vsp[-1].value.i * vsp->value.i;
349
350
2.60M
            if (prod < min_int || prod > max_int)
351
0
                store_float(vsp - 1, prod);
352
2.60M
            else
353
2.60M
                vsp[-1].value.i = (int)prod;
354
2.60M
            --vsp; continue;
355
0
        }
356
5.11M
        case PtCr_mul:
357
5.11M
            vsp[-1].value.f *= vsp->value.f;
358
5.11M
            --vsp; continue;
359
127k
        case PtCr_abs_int:
360
127k
            if (vsp->value.i >= 0)
361
127k
                continue;
362
            /* fallthrough */
363
0
        case PtCr_neg_int:
364
0
            if (vsp->value.i == min_int)
365
0
                store_float(vsp, (double)vsp->value.i); /* =self negated */
366
0
            else
367
0
                vsp->value.i = -vsp->value.i;
368
0
            continue;
369
0
        case PtCr_neg:
370
0
            vsp->value.f = -vsp->value.f;
371
0
            continue;
372
0
        case PtCr_not_bool:
373
0
            vsp->value.i = !vsp->value.i;
374
0
            continue;
375
0
        case PtCr_not:
376
0
            vsp->value.i = ~vsp->value.i;
377
0
            continue;
378
0
        case PtCr_or:
379
0
            vsp[-1].value.i |= vsp->value.i;
380
0
            --vsp; continue;
381
0
        case PtCr_round:
382
0
            vsp->value.f = floor(vsp->value.f + 0.5);
383
0
            continue;
384
2.95M
        case PtCr_sin:
385
2.95M
            vsp->value.f = gs_sin_degrees(vsp->value.f);
386
2.95M
            continue;
387
2.95M
        case PtCr_sqrt:
388
2.95M
            vsp->value.f = sqrt(vsp->value.f);
389
2.95M
            continue;
390
585k
        case PtCr_sub_int: {
391
585k
            int int1 = vsp[-1].value.i, int2 = vsp->value.i;
392
393
585k
            if ((int1 ^ int2) < 0 && ((int1 - int2) ^ int1) >= 0)
394
0
                store_float(vsp - 1, (double)int1 - int2);
395
585k
            else
396
585k
                vsp[-1].value.i = int1 - int2;
397
585k
            --vsp; continue;
398
127k
        }
399
10.6M
        case PtCr_sub:
400
10.6M
            vsp[-1].value.f -= vsp->value.f;
401
10.6M
            --vsp; continue;
402
5
        case PtCr_truncate:
403
5
            vsp->value.f = (vsp->value.f < 0 ? ceil(vsp->value.f) :
404
5
                            floor(vsp->value.f));
405
5
            continue;
406
0
        case PtCr_xor:
407
0
            vsp[-1].value.i ^= vsp->value.i;
408
0
            --vsp; continue;
409
410
            /* Boolean operators */
411
412
0
#define DO_REL(rel, m)\
413
3.27M
  vsp[-1].value.i = vsp[-1].value.m rel vsp->value.m
414
415
0
        case PtCr_eq_int:
416
0
            DO_REL(==, i);
417
0
            goto rel;
418
16
        case PtCr_ge_int:
419
16
            DO_REL(>=, i);
420
16
            goto rel;
421
42
        case PtCr_ge:
422
42
            DO_REL(>=, f);
423
42
            goto rel;
424
291
        case PtCr_gt_int:
425
291
            DO_REL(>, i);
426
291
            goto rel;
427
97
        case PtCr_gt:
428
97
            DO_REL(>, f);
429
97
            goto rel;
430
0
        case PtCr_le_int:
431
0
            DO_REL(<=, i);
432
0
            goto rel;
433
317k
        case PtCr_le:
434
317k
            DO_REL(<=, f);
435
317k
            goto rel;
436
0
        case PtCr_lt_int:
437
0
            DO_REL(<, i);
438
0
            goto rel;
439
2.95M
        case PtCr_lt:
440
2.95M
            DO_REL(<, f);
441
2.95M
            goto rel;
442
0
        case PtCr_ne_int:
443
0
            DO_REL(!=, i);
444
0
            goto rel;
445
0
        case PtCr_ne:
446
0
            DO_REL(!=, f);
447
0
            goto rel;
448
0
        case PtCr_eq:
449
0
            DO_REL(==, f);
450
3.27M
        rel:
451
3.27M
            vsp[-1].type = CVT_BOOL;
452
3.27M
            --vsp; continue;
453
454
0
#undef DO_REL
455
456
            /* Stack operators */
457
458
317k
        case PtCr_copy:
459
317k
            i = vsp->value.i;
460
317k
            n = vsp - vstack;
461
317k
            if (i < 0 || i >= n)
462
0
                return_error(gs_error_rangecheck);
463
317k
            if (i > MAX_VSTACK - (n - 1))
464
0
                return_error(gs_error_limitcheck);
465
317k
            memcpy(vsp, vsp - i, i * sizeof(*vsp));
466
317k
            vsp += i - 1;
467
317k
            continue;
468
12.4M
        case PtCr_dup:
469
12.4M
            vsp[1] = *vsp;
470
12.4M
            goto push;
471
15.2M
        case PtCr_exch:
472
15.2M
            vstack[MAX_VSTACK] = *vsp;
473
15.2M
            *vsp = vsp[-1];
474
15.2M
            vsp[-1] = vstack[MAX_VSTACK];
475
15.2M
            continue;
476
1.12M
        case PtCr_index:
477
1.12M
            i = vsp->value.i;
478
1.12M
            if (i < 0 || i >= vsp - vstack - 1)
479
0
                return_error(gs_error_rangecheck);
480
1.12M
            *vsp = vsp[-i - 1];
481
1.12M
            continue;
482
9.73M
        case PtCr_pop:
483
9.73M
            --vsp;
484
9.73M
            continue;
485
6.13M
        case PtCr_roll:
486
6.13M
            n = vsp[-1].value.i;
487
6.13M
            i = vsp->value.i;
488
6.13M
            if (n < 0 || n > vsp - vstack - 2)
489
0
                return_error(gs_error_rangecheck);
490
            /* We don't bother to do this efficiently. */
491
18.3M
            for (; i > 0; i--) {
492
12.2M
                memmove(vsp - n, vsp - (n + 1), n * sizeof(*vsp));
493
12.2M
                vsp[-(n + 1)] = vsp[-1];
494
12.2M
            }
495
7.30M
            for (; i < 0; i++) {
496
1.16M
                vsp[-1] = vsp[-(n + 1)];
497
1.16M
                memmove(vsp - (n + 1), vsp - n, n * sizeof(*vsp));
498
1.16M
            }
499
6.13M
            vsp -= 2;
500
6.13M
            continue;
501
502
            /* Constants */
503
504
27.4M
        case PtCr_byte:
505
27.4M
            vsp[1].value.i = *p++, vsp[1].type = CVT_INT;
506
27.4M
            goto push;
507
6.57M
        case PtCr_int /* native */:
508
6.57M
            memcpy(&vsp[1].value.i, p, sizeof(int));
509
6.57M
            vsp[1].type = CVT_INT;
510
6.57M
            p += sizeof(int);
511
6.57M
            goto push;
512
5.00M
        case PtCr_float /* native */:
513
5.00M
            memcpy(&vsp[1].value.f, p, sizeof(float));
514
5.00M
            vsp[1].type = CVT_FLOAT;
515
5.00M
            p += sizeof(float);
516
5.00M
            goto push;
517
0
        case PtCr_true:
518
0
            vsp[1].value.i = true, vsp[1].type = CVT_BOOL;
519
0
            goto push;
520
0
        case PtCr_false:
521
0
            vsp[1].value.i = false, vsp[1].type = CVT_BOOL;
522
51.4M
        push:
523
51.4M
            if (vsp == &vstack[MAX_VSTACK])
524
0
                return_error(gs_error_limitcheck);
525
51.4M
            ++vsp;
526
51.4M
            continue;
527
528
            /* Special */
529
530
3.27M
        case PtCr_if:
531
3.27M
            if ((vsp--)->value.i) { /* value is true, execute body */
532
2.76M
                p += 2;
533
2.76M
                continue;
534
2.76M
            }
535
            /* falls through */
536
673k
        case PtCr_else:
537
673k
            p += 2 + (p[0] << 8) + p[1];  /* skip the past body */
538
673k
            continue;
539
7.22M
        case PtCr_return:
540
7.22M
            goto fin;
541
0
        case PtCr_repeat:
542
0
            repeat_nesting_level++;
543
0
            repeat_count[repeat_nesting_level] = vsp->value.i;
544
0
            repeat_proc_size[repeat_nesting_level] = 1 + (p[0] << 8) + p[1];  /* body size */
545
0
            --vsp;    /* pop the counter */
546
0
            p += 3 + (p[0] <<8) + p[1];       /* advance just past the repeat_end */
547
            /* falls through */
548
0
        case PtCr_repeat_end:
549
0
            if (repeat_nesting_level < 0)
550
0
                return_error(gs_error_rangecheck);
551
552
0
            if ((repeat_count[repeat_nesting_level])-- <= 0)
553
0
                repeat_nesting_level--;
554
0
            else
555
0
                p -= repeat_proc_size[repeat_nesting_level];
556
0
            continue;
557
152M
        }
558
152M
    }
559
7.22M
 fin:
560
7.22M
    {   /* Following Acrobat, take the desired number of parameters */
561
        /* from the top of stack and ignore the rest. Bug 702950. */
562
7.22M
        int extra_ops = vsp - vstack - pfn->params.n;
563
7.22M
        if (extra_ops < 0)
564
70
            return_error(gs_error_rangecheck);
565
28.4M
        for (i = 0; i < pfn->params.n; ++i) {
566
21.1M
            switch (vstack[i + 1 + extra_ops].type) {
567
599k
            case CVT_INT:
568
599k
                out[i] = (float)vstack[i + 1 + extra_ops].value.i;
569
599k
                break;
570
20.5M
            case CVT_FLOAT:
571
20.5M
                out[i] = vstack[i + 1 + extra_ops].value.f;
572
20.5M
                break;
573
0
            default:
574
0
                return_error(gs_error_typecheck);
575
21.1M
            }
576
21.1M
        }
577
7.22M
    }
578
7.22M
    return 0;
579
7.22M
}
580
581
/* Test whether a PostScript Calculator function is monotonic. */
582
static int
583
fn_PtCr_is_monotonic(const gs_function_t * pfn_common,
584
                     const float *lower, const float *upper, uint *mask)
585
0
{
586
    /*
587
     * No reasonable way to tell.  Eventually we should check for
588
     * functions consisting of only stack-manipulating operations,
589
     * since these may be common for DeviceN color spaces and *are*
590
     * monotonic.
591
     */
592
0
    *mask = 0x49249249;
593
0
    return 0;
594
0
}
595
596
/* Write the function definition in symbolic form on a stream. */
597
static int
598
calc_put_ops(stream *s, const byte *ops, uint size)
599
1.51k
{
600
1.51k
    const byte *p;
601
602
1.51k
    spputc(s, '{');
603
10.5k
    for (p = ops; p < ops + size; )
604
9.08k
        switch (*p++) {
605
2.45k
        case PtCr_byte:
606
2.45k
            pprintd1(s, "%d ", *p++);
607
2.45k
            break;
608
463
        case PtCr_int: {
609
463
            int i;
610
611
463
            memcpy(&i, p, sizeof(int));
612
463
            pprintd1(s, "%d ", i);
613
463
            p += sizeof(int);
614
463
            break;
615
0
        }
616
2.88k
        case PtCr_float: {
617
2.88k
            float f;
618
619
2.88k
            memcpy(&f, p, sizeof(float));
620
2.88k
            pprintg1(s, "%g ", f);
621
2.88k
            p += sizeof(float);
622
2.88k
            break;
623
0
        }
624
0
        case PtCr_true:
625
0
            stream_puts(s, "true ");
626
0
            break;
627
0
        case PtCr_false:
628
0
            stream_puts(s, "false ");
629
0
            break;
630
152
        case PtCr_if: {
631
152
            int skip = (p[0] << 8) + p[1];
632
152
            int code;
633
634
152
            code = calc_put_ops(s, p += 2, skip);
635
152
            p += skip;
636
152
            if (code < 0)
637
0
                return code;
638
152
            if (code > 0) { /* else */
639
0
                skip = (p[-2] << 8) + p[-1];
640
0
                code = calc_put_ops(s, p, skip);
641
0
                p += skip;
642
0
                if (code < 0)
643
0
                    return code;
644
0
                stream_puts(s, " ifelse ");
645
0
            } else
646
152
                stream_puts(s, " if ");
647
152
            break;
648
152
        }
649
152
        case PtCr_else:
650
0
            if (p != ops + size - 2)
651
0
                return_error(gs_error_rangecheck);
652
0
            spputc(s, '}');
653
0
            return 1;
654
        /*case PtCr_return:*/ /* not possible */
655
0
        case PtCr_repeat:   /* We shouldn't encounter this, but just in case */
656
0
        case PtCr_repeat_end:
657
0
            return_error(gs_error_rangecheck);
658
3.13k
        default: {    /* must be < PtCr_NUM_OPS */
659
3.13k
                static const char *const op_names[] = {
660
                    /* Keep this consistent with opcodes in gsfunc4.h! */
661
3.13k
                    "abs", "add", "and", "atan", "bitshift",
662
3.13k
                    "ceiling", "cos", "cvi", "cvr", "div", "exp",
663
3.13k
                    "floor", "idiv", "ln", "log", "mod", "mul",
664
3.13k
                    "neg", "not", "or", "round", "sin", "sqrt", "sub",
665
3.13k
                    "truncate", "xor",
666
3.13k
                    "eq", "ge", "gt", "le", "lt", "ne",
667
3.13k
                    "copy", "dup", "exch", "index", "pop", "roll"
668
3.13k
                };
669
670
3.13k
                pprints1(s, "%s ", op_names[p[-1]]);
671
3.13k
            }
672
9.08k
        }
673
1.51k
    spputc(s, '}');
674
1.51k
    return 0;
675
1.51k
}
676
static int
677
calc_put(stream *s, const gs_function_PtCr_t *pfn)
678
1.36k
{
679
1.36k
    calc_put_ops(s, pfn->params.ops.data, pfn->params.ops.size - 1);
680
1.36k
    return 0;
681
1.36k
}
682
683
/* Access the symbolic definition as a DataSource. */
684
static int
685
calc_access(const gs_data_source_t *psrc, ulong start, uint length,
686
            byte *buf, const byte **ptr)
687
696
{
688
696
    const gs_function_PtCr_t *const pfn =
689
696
        (const gs_function_PtCr_t *)
690
696
          ((const char *)psrc - offset_of(gs_function_PtCr_t, data_source));
691
    /*
692
     * The caller wants a specific substring of the symbolic definition.
693
     * Generate the entire definition, using a SubFileDecode filter (in an
694
     * output pipeline!) to extract the substring.  This is very
695
     * inefficient, but this code is rarely used, and almost never actually
696
     * has to break up the definition into pieces to fit in the caller's
697
     * buffer.
698
     */
699
696
    stream_SFD_state st;
700
696
    stream ds, bs;
701
696
    byte dbuf[200];   /* arbitrary */
702
696
    const stream_template *const templat = &s_SFD_template;
703
704
    /* Set up the stream that writes into the buffer. */
705
696
    s_init(&bs, NULL);
706
696
    swrite_string(&bs, buf, length);
707
    /* Set up the SubFileDecode stream. */
708
696
    s_init(&ds, NULL);
709
696
    s_init_state((stream_state *)&st, templat, NULL);
710
696
    templat->set_defaults((stream_state *)&st);
711
696
    st.skip_count = start;
712
696
    s_init_filter(&ds, (stream_state *)&st, dbuf, sizeof(dbuf), &bs);
713
696
    calc_put(&ds, pfn);
714
696
    sclose(&ds);
715
696
    if (ptr)
716
696
        *ptr = buf;
717
696
    return 0;
718
696
}
719
720
/* Return PostScript Calculator function information. */
721
static void
722
fn_PtCr_get_info(const gs_function_t *pfn_common, gs_function_info_t *pfi)
723
670
{
724
670
    const gs_function_PtCr_t *const pfn =
725
670
        (const gs_function_PtCr_t *)pfn_common;
726
727
670
    gs_function_get_info_default(pfn_common, pfi);
728
670
    pfi->DataSource = &pfn->data_source;
729
670
    {
730
670
        stream s;
731
732
670
        s_init(&s, NULL);
733
670
        swrite_position_only(&s);
734
670
        calc_put(&s, pfn);
735
670
        pfi->data_size = stell(&s);
736
670
    }
737
670
}
738
739
/* Make a scaled copy of a PostScript Calculator function. */
740
static int
741
fn_PtCr_make_scaled(const gs_function_PtCr_t *pfn, gs_function_PtCr_t **ppsfn,
742
                    const gs_range_t *pranges, gs_memory_t *mem)
743
0
{
744
0
    gs_function_PtCr_t *psfn =
745
0
        gs_alloc_struct(mem, gs_function_PtCr_t, &st_function_PtCr,
746
0
                        "fn_PtCr_make_scaled");
747
    /* We are adding {<int> 1 roll <float> mul <float> add} for each output. */
748
0
    int n = pfn->params.n;
749
0
    uint opsize = pfn->params.ops.size + (9 + 2 * sizeof(float)) * n;
750
0
    byte *ops = gs_alloc_string(mem, opsize, "fn_PtCr_make_scaled(ops)");
751
0
    byte *p;
752
0
    int code, i;
753
754
0
    if (psfn == 0 || ops == 0) {
755
0
        gs_free_string(mem, ops, opsize, "fn_PtCr_make_scaled(ops)");
756
0
        gs_free_object(mem, psfn, "fn_PtCr_make_scaled");
757
0
        return_error(gs_error_VMerror);
758
0
    }
759
0
    psfn->params = pfn->params;
760
0
    psfn->params.ops.data = ops;
761
0
    psfn->params.ops.size = opsize;
762
0
    psfn->data_source = pfn->data_source;
763
0
    code = fn_common_scale((gs_function_t *)psfn, (const gs_function_t *)pfn,
764
0
                           pranges, mem);
765
0
    if (code < 0) {
766
0
        gs_function_free((gs_function_t *)psfn, true, mem);
767
0
        return code;
768
0
    }
769
0
    memcpy(ops, pfn->params.ops.data, pfn->params.ops.size - 1); /* minus return */
770
0
    p = ops + pfn->params.ops.size - 1;
771
0
    for (i = n; --i >= 0; ) {
772
0
        float base = pranges[i].rmin;
773
0
        float factor = pranges[i].rmax - base;
774
775
0
        if (factor != 1) {
776
0
            p[0] = PtCr_float; memcpy(p + 1, &factor, sizeof(float));
777
0
            p += 1 + sizeof(float);
778
0
            *p++ = PtCr_mul;
779
0
        }
780
0
        if (base != 0) {
781
0
            p[0] = PtCr_float; memcpy(p + 1, &base, sizeof(float));
782
0
            p += 1 + sizeof(float);
783
0
            *p++ = PtCr_add;
784
0
        }
785
0
        if (n != 1) {
786
0
            p[0] = PtCr_byte; p[1] = (byte)n;
787
0
            p[2] = PtCr_byte; p[3] = 1;
788
0
            p[4] = PtCr_roll;
789
0
            p += 5;
790
0
        }
791
0
    }
792
0
    *p++ = PtCr_return;
793
0
    psfn->params.ops.size = p - ops;
794
0
    psfn->params.ops.data =
795
0
        gs_resize_string(mem, ops, opsize, psfn->params.ops.size,
796
0
                         "fn_PtCr_make_scaled");
797
0
    *ppsfn = psfn;
798
0
    return 0;
799
0
}
800
801
/* Free the parameters of a PostScript Calculator function. */
802
void
803
gs_function_PtCr_free_params(gs_function_PtCr_params_t * params, gs_memory_t * mem)
804
52.0k
{
805
52.0k
    gs_free_const_string(mem, params->ops.data, params->ops.size, "ops");
806
52.0k
    params->ops.data = NULL;
807
52.0k
    params->ops.size = 0;
808
52.0k
    fn_common_free_params((gs_function_params_t *) params, mem);
809
52.0k
}
810
811
/* Serialize. */
812
static int
813
gs_function_PtCr_serialize(const gs_function_t * pfn, stream *s)
814
5.29k
{
815
5.29k
    uint n;
816
5.29k
    const gs_function_PtCr_params_t * p = (const gs_function_PtCr_params_t *)&pfn->params;
817
5.29k
    int code = fn_common_serialize(pfn, s);
818
819
5.29k
    if (code < 0)
820
0
        return code;
821
5.29k
    code = sputs(s, (const byte *)&p->ops.size, sizeof(p->ops.size), &n);
822
5.29k
    if (code < 0)
823
0
        return code;
824
5.29k
    return sputs(s, p->ops.data, p->ops.size, &n);
825
5.29k
}
826
827
/* Allocate and initialize a PostScript Calculator function. */
828
int
829
gs_function_PtCr_init(gs_function_t ** ppfn,
830
                  const gs_function_PtCr_params_t * params, gs_memory_t * mem)
831
57.4k
{
832
57.4k
    static const gs_function_head_t function_PtCr_head = {
833
57.4k
        function_type_PostScript_Calculator,
834
57.4k
        {
835
57.4k
            (fn_evaluate_proc_t) fn_PtCr_evaluate,
836
57.4k
            (fn_is_monotonic_proc_t) fn_PtCr_is_monotonic,
837
57.4k
            (fn_get_info_proc_t) fn_PtCr_get_info,
838
57.4k
            fn_common_get_params,
839
57.4k
            (fn_make_scaled_proc_t) fn_PtCr_make_scaled,
840
57.4k
            (fn_free_params_proc_t) gs_function_PtCr_free_params,
841
57.4k
            fn_common_free,
842
57.4k
            (fn_serialize_proc_t) gs_function_PtCr_serialize,
843
57.4k
        }
844
57.4k
    };
845
57.4k
    int code;
846
847
57.4k
    *ppfn = 0;      /* in case of error */
848
57.4k
    code = fn_check_mnDR((const gs_function_params_t *)params,
849
57.4k
                         params->m, params->n);
850
57.4k
    if (code < 0)
851
27
        return code;
852
57.4k
    if (params->m > MAX_VSTACK || params->n > MAX_VSTACK)
853
0
        return_error(gs_error_limitcheck);
854
    /*
855
     * Pre-validate the operation string to reduce evaluation overhead.
856
     */
857
57.4k
    {
858
57.4k
        const byte *p = params->ops.data;
859
860
1.98M
        for (; *p != PtCr_return; ++p)
861
1.93M
            switch ((gs_PtCr_opcode_t)*p) {
862
429k
            case PtCr_byte:
863
429k
                ++p; break;
864
43.3k
            case PtCr_int:
865
43.3k
                p += sizeof(int); break;
866
133k
            case PtCr_float:
867
133k
                p += sizeof(float); break;
868
0
            case PtCr_repeat:
869
40.2k
            case PtCr_if:
870
79.9k
            case PtCr_else:
871
79.9k
                p += 2;
872
79.9k
            case PtCr_repeat_end:
873
79.9k
            case PtCr_true:
874
79.9k
            case PtCr_false:
875
79.9k
                break;
876
1.24M
            default:
877
1.24M
                if (*p >= PtCr_NUM_OPS)
878
0
                    return_error(gs_error_rangecheck);
879
1.93M
            }
880
57.4k
        if (p != params->ops.data + params->ops.size - 1)
881
0
            return_error(gs_error_rangecheck);
882
57.4k
    }
883
57.4k
    {
884
57.4k
        gs_function_PtCr_t *pfn =
885
57.4k
            gs_alloc_struct(mem, gs_function_PtCr_t, &st_function_PtCr,
886
57.4k
                            "gs_function_PtCr_init");
887
888
57.4k
        if (pfn == 0)
889
0
            return_error(gs_error_VMerror);
890
57.4k
        pfn->params = *params;
891
        /*
892
         * We claim to have a DataSource, in order to write the function
893
         * definition in symbolic form for embedding in PDF files.
894
         * ****** THIS IS A HACK. ******
895
         */
896
57.4k
        data_source_init_string2(&pfn->data_source, NULL, 0);
897
57.4k
        pfn->data_source.access = calc_access;
898
57.4k
        pfn->head = function_PtCr_head;
899
57.4k
        *ppfn = (gs_function_t *) pfn;
900
57.4k
    }
901
0
    return 0;
902
57.4k
}