Coverage Report

Created: 2026-03-12 07:14

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ffmpeg/libavutil/eval.c
Line
Count
Source
1
/*
2
 * Copyright (c) 2002-2006 Michael Niedermayer <michaelni@gmx.at>
3
 * Copyright (c) 2006 Oded Shimon <ods15@ods15.dyndns.org>
4
 *
5
 * This file is part of FFmpeg.
6
 *
7
 * FFmpeg is free software; you can redistribute it and/or
8
 * modify it under the terms of the GNU Lesser General Public
9
 * License as published by the Free Software Foundation; either
10
 * version 2.1 of the License, or (at your option) any later version.
11
 *
12
 * FFmpeg is distributed in the hope that it will be useful,
13
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
15
 * Lesser General Public License for more details.
16
 *
17
 * You should have received a copy of the GNU Lesser General Public
18
 * License along with FFmpeg; if not, write to the Free Software
19
 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
20
 */
21
22
/**
23
 * @file
24
 * simple arithmetic expression evaluator.
25
 *
26
 * see http://joe.hotchkiss.com/programming/eval/eval.html
27
 */
28
29
#include <float.h>
30
#include "attributes.h"
31
#include "avassert.h"
32
#include "avutil.h"
33
#include "common.h"
34
#include "eval.h"
35
#include "ffmath.h"
36
#include "log.h"
37
#include "mathematics.h"
38
#include "mem.h"
39
#include "sfc64.h"
40
#include "time.h"
41
#include "avstring.h"
42
#include "reverse.h"
43
44
0
#define MAX_DEPTH 100
45
46
typedef struct Parser {
47
    const AVClass *class;
48
    int stack_index;
49
    char *s;
50
    const double *const_values;
51
    const char * const *const_names;          // NULL terminated
52
    double (* const *funcs1)(void *, double a);           // NULL terminated
53
    const char * const *func1_names;          // NULL terminated
54
    double (* const *funcs2)(void *, double a, double b); // NULL terminated
55
    const char * const *func2_names;          // NULL terminated
56
    void *opaque;
57
    int log_offset;
58
    void *log_ctx;
59
0
#define VARS 10
60
    double *var;
61
    FFSFC64 *prng_state;
62
} Parser;
63
64
static const AVClass eval_class = {
65
    .class_name                = "Eval",
66
    .item_name                 = av_default_item_name,
67
    .option                    = NULL,
68
    .version                   = LIBAVUTIL_VERSION_INT,
69
    .log_level_offset_offset   = offsetof(Parser, log_offset),
70
    .parent_log_context_offset = offsetof(Parser, log_ctx),
71
};
72
73
static const struct {
74
    double bin_val;
75
    double dec_val;
76
    int8_t exp;
77
} si_prefixes['z' - 'E' + 1] = {
78
    ['y'-'E']= { 8.271806125530276749e-25, 1e-24, -24 },
79
    ['z'-'E']= { 8.4703294725430034e-22, 1e-21, -21 },
80
    ['a'-'E']= { 8.6736173798840355e-19, 1e-18, -18 },
81
    ['f'-'E']= { 8.8817841970012523e-16, 1e-15, -15 },
82
    ['p'-'E']= { 9.0949470177292824e-13, 1e-12, -12 },
83
    ['n'-'E']= { 9.3132257461547852e-10, 1e-9,  -9 },
84
    ['u'-'E']= { 9.5367431640625e-7, 1e-6, -6 },
85
    ['m'-'E']= { 9.765625e-4, 1e-3, -3 },
86
    ['c'-'E']= { 9.8431332023036951e-3, 1e-2, -2 },
87
    ['d'-'E']= { 9.921256574801246e-2, 1e-1, -1 },
88
    ['h'-'E']= { 1.0159366732596479e2, 1e2, 2 },
89
    ['k'-'E']= { 1.024e3, 1e3, 3 },
90
    ['K'-'E']= { 1.024e3, 1e3, 3 },
91
    ['M'-'E']= { 1.048576e6, 1e6, 6 },
92
    ['G'-'E']= { 1.073741824e9, 1e9, 9 },
93
    ['T'-'E']= { 1.099511627776e12, 1e12, 12 },
94
    ['P'-'E']= { 1.125899906842624e15, 1e15, 15 },
95
    ['E'-'E']= { 1.152921504606847e18, 1e18, 18 },
96
    ['Z'-'E']= { 1.1805916207174113e21, 1e21, 21 },
97
    ['Y'-'E']= { 1.2089258196146292e24, 1e24, 24 },
98
};
99
100
static const struct {
101
    const char *name;
102
    double value;
103
} constants[] = {
104
    { "E",   M_E   },
105
    { "PI",  M_PI  },
106
    { "PHI", M_PHI },
107
    { "QP2LAMBDA", FF_QP2LAMBDA },
108
};
109
110
double av_strtod(const char *numstr, char **tail)
111
0
{
112
0
    double d;
113
0
    char *next;
114
0
    if(numstr[0]=='0' && (numstr[1]|0x20)=='x') {
115
0
        d = strtoul(numstr, &next, 16);
116
0
    } else
117
0
        d = strtod(numstr, &next);
118
    /* if parsing succeeded, check for and interpret postfixes */
119
0
    if (next!=numstr) {
120
0
        if (next[0] == 'd' && next[1] == 'B') {
121
            /* treat dB as decibels instead of decibytes */
122
0
            d = ff_exp10(d / 20);
123
0
            next += 2;
124
0
        } else if (*next >= 'E' && *next <= 'z') {
125
0
            int e= si_prefixes[*next - 'E'].exp;
126
0
            if (e) {
127
0
                if (next[1] == 'i') {
128
0
                    d*= si_prefixes[*next - 'E'].bin_val;
129
0
                    next+=2;
130
0
                } else {
131
0
                    d*= si_prefixes[*next - 'E'].dec_val;
132
0
                    next++;
133
0
                }
134
0
            }
135
0
        }
136
137
0
        if (*next=='B') {
138
0
            d*=8;
139
0
            next++;
140
0
        }
141
0
    }
142
    /* if requested, fill in tail with the position after the last parsed
143
       character */
144
0
    if (tail)
145
0
        *tail = next;
146
0
    return d;
147
0
}
148
149
0
#define IS_IDENTIFIER_CHAR(c) ((c) - '0' <= 9U || (c) - 'a' <= 25U || (c) - 'A' <= 25U || (c) == '_')
150
151
static int strmatch(const char *s, const char *prefix)
152
0
{
153
0
    int i;
154
0
    for (i=0; prefix[i]; i++) {
155
0
        if (prefix[i] != s[i]) return 0;
156
0
    }
157
    /* return 1 only if the s identifier is terminated */
158
0
    return !IS_IDENTIFIER_CHAR(s[i]);
159
0
}
160
161
enum {
162
    e_value, e_const, e_func0, e_func1, e_func2,
163
    e_squish, e_gauss, e_ld, e_isnan, e_isinf,
164
    e_mod, e_max, e_min, e_eq, e_gt, e_gte, e_lte, e_lt,
165
    e_pow, e_mul, e_div, e_add,
166
    e_last, e_st, e_while, e_taylor, e_root, e_floor, e_ceil, e_trunc, e_round,
167
    e_sqrt, e_not, e_random, e_hypot, e_gcd,
168
    e_if, e_ifnot, e_print, e_bitand, e_bitor, e_between, e_clip, e_atan2, e_lerp,
169
    e_sgn, e_randomi
170
};
171
struct AVExpr {
172
    unsigned char type;
173
    unsigned char root;
174
    short depth;
175
    int const_index;
176
    double value; // is sign in other types
177
    union {
178
        double (*func0)(double);
179
        double (*func1)(void *, double);
180
        double (*func2)(void *, double, double);
181
    } ;
182
    struct AVExpr *param[3];
183
};
184
185
typedef struct {
186
    AVExpr avexpr;
187
    double *var;
188
    FFSFC64 *prng_state;
189
} AVExprRoot;
190
191
static double etime(double v)
192
0
{
193
0
    return av_gettime() * 0.000001;
194
0
}
195
196
static double eval_expr(Parser *p, AVExpr *e)
197
0
{
198
0
    switch (e->type) {
199
0
        case e_value:  return e->value;
200
0
        case e_const:  return e->value * p->const_values[e->const_index];
201
0
        case e_func0:  return e->value * e->func0(eval_expr(p, e->param[0]));
202
0
        case e_func1:  return e->value * e->func1(p->opaque, eval_expr(p, e->param[0]));
203
0
        case e_func2:  return e->value * e->func2(p->opaque, eval_expr(p, e->param[0]), eval_expr(p, e->param[1]));
204
0
        case e_squish: return 1/(1+exp(4*eval_expr(p, e->param[0])));
205
0
        case e_gauss: { double d = eval_expr(p, e->param[0]); return exp(-d*d/2)/sqrt(2*M_PI); }
206
0
        case e_ld:     return e->value * p->var[av_clip(eval_expr(p, e->param[0]), 0, VARS-1)];
207
0
        case e_isnan:  return e->value * !!isnan(eval_expr(p, e->param[0]));
208
0
        case e_isinf:  return e->value * !!isinf(eval_expr(p, e->param[0]));
209
0
        case e_floor:  return e->value * floor(eval_expr(p, e->param[0]));
210
0
        case e_ceil :  return e->value * ceil (eval_expr(p, e->param[0]));
211
0
        case e_trunc:  return e->value * trunc(eval_expr(p, e->param[0]));
212
0
        case e_round:  return e->value * round(eval_expr(p, e->param[0]));
213
0
        case e_sgn:    return e->value * FFDIFFSIGN(eval_expr(p, e->param[0]), 0);
214
0
        case e_sqrt:   return e->value * sqrt (eval_expr(p, e->param[0]));
215
0
        case e_not:    return e->value * (eval_expr(p, e->param[0]) == 0);
216
0
        case e_if:     return e->value * (eval_expr(p, e->param[0]) ? eval_expr(p, e->param[1]) :
217
0
                                          e->param[2] ? eval_expr(p, e->param[2]) : 0);
218
0
        case e_ifnot:  return e->value * (!eval_expr(p, e->param[0]) ? eval_expr(p, e->param[1]) :
219
0
                                          e->param[2] ? eval_expr(p, e->param[2]) : 0);
220
0
        case e_clip: {
221
0
            double x = eval_expr(p, e->param[0]);
222
0
            double min = eval_expr(p, e->param[1]), max = eval_expr(p, e->param[2]);
223
0
            if (isnan(min) || isnan(max) || isnan(x) || min > max)
224
0
                return NAN;
225
0
            return e->value * av_clipd(eval_expr(p, e->param[0]), min, max);
226
0
        }
227
0
        case e_between: {
228
0
            double d = eval_expr(p, e->param[0]);
229
0
            return e->value * (d >= eval_expr(p, e->param[1]) &&
230
0
                               d <= eval_expr(p, e->param[2]));
231
0
        }
232
0
        case e_lerp: {
233
0
            double v0 = eval_expr(p, e->param[0]);
234
0
            double v1 = eval_expr(p, e->param[1]);
235
0
            double f  = eval_expr(p, e->param[2]);
236
0
            return v0 + (v1 - v0) * f;
237
0
        }
238
0
        case e_print: {
239
0
            double x = eval_expr(p, e->param[0]);
240
0
            int level = e->param[1] ? av_clip(eval_expr(p, e->param[1]), INT_MIN, INT_MAX) : AV_LOG_INFO;
241
0
            av_log(p, level, "%f\n", x);
242
0
            return x;
243
0
        }
244
245
0
#define COMPUTE_NEXT_RANDOM()                                        \
246
0
            int idx = av_clip(eval_expr(p, e->param[0]), 0, VARS-1); \
247
0
            FFSFC64 *s = p->prng_state + idx;                        \
248
0
            uint64_t r;                                              \
249
0
                                                                     \
250
0
            if (!s->counter) {                                       \
251
0
                r = isnan(p->var[idx]) ? 0 : p->var[idx];            \
252
0
                ff_sfc64_init(s, r, r, r, 12);                       \
253
0
            }                                                        \
254
0
            r = ff_sfc64_get(s);                                     \
255
0
            p->var[idx] = r;                                         \
256
0
257
0
        case e_random: {
258
0
            COMPUTE_NEXT_RANDOM();
259
0
            return r * (1.0/UINT64_MAX);
260
0
        }
261
0
        case e_randomi: {
262
0
            double min = eval_expr(p, e->param[1]);
263
0
            double max = eval_expr(p, e->param[2]);
264
0
            COMPUTE_NEXT_RANDOM();
265
0
            return min + (max - min) * r / UINT64_MAX;
266
0
        }
267
0
        case e_while: {
268
0
            double d = NAN;
269
0
            while (eval_expr(p, e->param[0]))
270
0
                d=eval_expr(p, e->param[1]);
271
0
            return d;
272
0
        }
273
0
        case e_taylor: {
274
0
            double t = 1, d = 0, v;
275
0
            double x = eval_expr(p, e->param[1]);
276
0
            int id = e->param[2] ? av_clip(eval_expr(p, e->param[2]), 0, VARS-1) : 0;
277
0
            int i;
278
0
            double var0 = p->var[id];
279
0
            for(i=0; i<1000; i++) {
280
0
                double ld = d;
281
0
                p->var[id] = i;
282
0
                v = eval_expr(p, e->param[0]);
283
0
                d += t*v;
284
0
                if(ld==d && v)
285
0
                    break;
286
0
                t *= x / (i+1);
287
0
            }
288
0
            p->var[id] = var0;
289
0
            return d;
290
0
        }
291
0
        case e_root: {
292
0
            int i, j;
293
0
            double low = -1, high = -1, v, low_v = -DBL_MAX, high_v = DBL_MAX;
294
0
            double var0 = p->var[0];
295
0
            double x_max = eval_expr(p, e->param[1]);
296
0
            for(i=-1; i<1024; i++) {
297
0
                if(i<255) {
298
0
                    p->var[0] = ff_reverse[i&255]*x_max/255;
299
0
                } else {
300
0
                    p->var[0] = x_max*pow(0.9, i-255);
301
0
                    if (i&1) p->var[0] *= -1;
302
0
                    if (i&2) p->var[0] += low;
303
0
                    else     p->var[0] += high;
304
0
                }
305
0
                v = eval_expr(p, e->param[0]);
306
0
                if (v<=0 && v>low_v) {
307
0
                    low    = p->var[0];
308
0
                    low_v  = v;
309
0
                }
310
0
                if (v>=0 && v<high_v) {
311
0
                    high   = p->var[0];
312
0
                    high_v = v;
313
0
                }
314
0
                if (low>=0 && high>=0){
315
0
                    for (j=0; j<1000; j++) {
316
0
                        p->var[0] = (low+high)*0.5;
317
0
                        if (low == p->var[0] || high == p->var[0])
318
0
                            break;
319
0
                        v = eval_expr(p, e->param[0]);
320
0
                        if (v<=0) low = p->var[0];
321
0
                        if (v>=0) high= p->var[0];
322
0
                        if (isnan(v)) {
323
0
                            low = high = v;
324
0
                            break;
325
0
                        }
326
0
                    }
327
0
                    break;
328
0
                }
329
0
            }
330
0
            p->var[0] = var0;
331
0
            return -low_v<high_v ? low : high;
332
0
        }
333
0
        default: {
334
0
            double d = eval_expr(p, e->param[0]);
335
0
            double d2 = eval_expr(p, e->param[1]);
336
0
            switch (e->type) {
337
0
                case e_mod: return e->value * (d - floor(d2 ? d / d2 : d * INFINITY) * d2);
338
0
                case e_gcd: return e->value * av_gcd(d,d2);
339
0
                case e_max: return e->value * (d >  d2 ?   d : d2);
340
0
                case e_min: return e->value * (d <  d2 ?   d : d2);
341
0
                case e_eq:  return e->value * (d == d2 ? 1.0 : 0.0);
342
0
                case e_gt:  return e->value * (d >  d2 ? 1.0 : 0.0);
343
0
                case e_gte: return e->value * (d >= d2 ? 1.0 : 0.0);
344
0
                case e_lt:  return e->value * (d <  d2 ? 1.0 : 0.0);
345
0
                case e_lte: return e->value * (d <= d2 ? 1.0 : 0.0);
346
0
                case e_pow: return e->value * pow(d, d2);
347
0
                case e_mul: return e->value * (d * d2);
348
0
                case e_div: return e->value * (d2 ? (d / d2) : d * INFINITY);
349
0
                case e_add: return e->value * (d + d2);
350
0
                case e_last:return e->value * d2;
351
0
                case e_st :  {
352
0
                    int index = av_clip(d, 0, VARS-1);
353
0
                    p->prng_state[index].counter = 0;
354
0
                    return e->value * (p->var[index]= d2);
355
0
                }
356
0
                case e_hypot:return e->value * hypot(d, d2);
357
0
                case e_atan2:return e->value * atan2(d, d2);
358
0
                case e_bitand: return isnan(d) || isnan(d2) ? NAN : e->value * ((long int)d & (long int)d2);
359
0
                case e_bitor:  return isnan(d) || isnan(d2) ? NAN : e->value * ((long int)d | (long int)d2);
360
0
            }
361
0
        }
362
0
    }
363
0
    return NAN;
364
0
}
365
366
static int parse_expr(AVExpr **e, Parser *p);
367
368
void av_expr_free(AVExpr *e)
369
0
{
370
0
    if (!e) return;
371
0
    av_expr_free(e->param[0]);
372
0
    av_expr_free(e->param[1]);
373
0
    av_expr_free(e->param[2]);
374
0
    if (e->root) {
375
0
        AVExprRoot *r = (AVExprRoot*)e;
376
0
        av_freep(&r->var);
377
0
        av_freep(&r->prng_state);
378
0
    }
379
0
    av_freep(&e);
380
0
}
381
382
static int parse_primary(AVExpr **e, Parser *p)
383
0
{
384
0
    AVExpr *d = av_mallocz(sizeof(AVExpr));
385
0
    char *next = p->s, *s0 = p->s;
386
0
    int ret, i;
387
388
0
    if (!d)
389
0
        return AVERROR(ENOMEM);
390
391
    /* number */
392
0
    d->value = av_strtod(p->s, &next);
393
0
    if (next != p->s) {
394
0
        d->type = e_value;
395
0
        p->s= next;
396
0
        *e = d;
397
0
        return 0;
398
0
    }
399
0
    d->value = 1;
400
401
    /* named constants */
402
0
    for (i=0; p->const_names && p->const_names[i]; i++) {
403
0
        if (strmatch(p->s, p->const_names[i])) {
404
0
            p->s+= strlen(p->const_names[i]);
405
0
            d->type = e_const;
406
0
            d->const_index = i;
407
0
            *e = d;
408
0
            return 0;
409
0
        }
410
0
    }
411
0
    for (i = 0; i < FF_ARRAY_ELEMS(constants); i++) {
412
0
        if (strmatch(p->s, constants[i].name)) {
413
0
            p->s += strlen(constants[i].name);
414
0
            d->type = e_value;
415
0
            d->value = constants[i].value;
416
0
            *e = d;
417
0
            return 0;
418
0
        }
419
0
    }
420
421
0
    p->s= strchr(p->s, '(');
422
0
    if (!p->s) {
423
0
        av_log(p, AV_LOG_ERROR, "Undefined constant or missing '(' in '%s'\n", s0);
424
0
        p->s= next;
425
0
        av_expr_free(d);
426
0
        return AVERROR(EINVAL);
427
0
    }
428
0
    p->s++; // "("
429
0
    if (*next == '(') { // special case do-nothing
430
0
        av_freep(&d);
431
0
        if ((ret = parse_expr(&d, p)) < 0)
432
0
            return ret;
433
0
        if (p->s[0] != ')') {
434
0
            av_log(p, AV_LOG_ERROR, "Missing ')' in '%s'\n", s0);
435
0
            av_expr_free(d);
436
0
            return AVERROR(EINVAL);
437
0
        }
438
0
        p->s++; // ")"
439
0
        *e = d;
440
0
        return 0;
441
0
    }
442
0
    if ((ret = parse_expr(&(d->param[0]), p)) < 0) {
443
0
        av_expr_free(d);
444
0
        return ret;
445
0
    }
446
0
    if (p->s[0]== ',') {
447
0
        p->s++; // ","
448
0
        parse_expr(&d->param[1], p);
449
0
    }
450
0
    if (p->s[0]== ',') {
451
0
        p->s++; // ","
452
0
        parse_expr(&d->param[2], p);
453
0
    }
454
0
    if (p->s[0] != ')') {
455
0
        av_log(p, AV_LOG_ERROR, "Missing ')' or too many args in '%s'\n", s0);
456
0
        av_expr_free(d);
457
0
        return AVERROR(EINVAL);
458
0
    }
459
0
    p->s++; // ")"
460
461
0
    for (int i = 0; i<3; i++)
462
0
        if (d->param[i])
463
0
            d->depth = FFMAX(d->depth, d->param[i]->depth+1);
464
0
    if (d->depth > MAX_DEPTH) {
465
0
        av_expr_free(d);
466
0
        return AVERROR(EINVAL);
467
0
    }
468
469
0
    d->type = e_func0;
470
0
         if (strmatch(next, "sinh"  )) d->func0 = sinh;
471
0
    else if (strmatch(next, "cosh"  )) d->func0 = cosh;
472
0
    else if (strmatch(next, "tanh"  )) d->func0 = tanh;
473
0
    else if (strmatch(next, "sin"   )) d->func0 = sin;
474
0
    else if (strmatch(next, "cos"   )) d->func0 = cos;
475
0
    else if (strmatch(next, "tan"   )) d->func0 = tan;
476
0
    else if (strmatch(next, "atan"  )) d->func0 = atan;
477
0
    else if (strmatch(next, "asin"  )) d->func0 = asin;
478
0
    else if (strmatch(next, "acos"  )) d->func0 = acos;
479
0
    else if (strmatch(next, "exp"   )) d->func0 = exp;
480
0
    else if (strmatch(next, "log"   )) d->func0 = log;
481
0
    else if (strmatch(next, "abs"   )) d->func0 = fabs;
482
0
    else if (strmatch(next, "time"  )) d->func0 = etime;
483
0
    else if (strmatch(next, "squish")) d->type = e_squish;
484
0
    else if (strmatch(next, "gauss" )) d->type = e_gauss;
485
0
    else if (strmatch(next, "mod"   )) d->type = e_mod;
486
0
    else if (strmatch(next, "max"   )) d->type = e_max;
487
0
    else if (strmatch(next, "min"   )) d->type = e_min;
488
0
    else if (strmatch(next, "eq"    )) d->type = e_eq;
489
0
    else if (strmatch(next, "gte"   )) d->type = e_gte;
490
0
    else if (strmatch(next, "gt"    )) d->type = e_gt;
491
0
    else if (strmatch(next, "lte"   )) d->type = e_lte;
492
0
    else if (strmatch(next, "lt"    )) d->type = e_lt;
493
0
    else if (strmatch(next, "ld"    )) d->type = e_ld;
494
0
    else if (strmatch(next, "isnan" )) d->type = e_isnan;
495
0
    else if (strmatch(next, "isinf" )) d->type = e_isinf;
496
0
    else if (strmatch(next, "st"    )) d->type = e_st;
497
0
    else if (strmatch(next, "while" )) d->type = e_while;
498
0
    else if (strmatch(next, "taylor")) d->type = e_taylor;
499
0
    else if (strmatch(next, "root"  )) d->type = e_root;
500
0
    else if (strmatch(next, "floor" )) d->type = e_floor;
501
0
    else if (strmatch(next, "ceil"  )) d->type = e_ceil;
502
0
    else if (strmatch(next, "trunc" )) d->type = e_trunc;
503
0
    else if (strmatch(next, "round" )) d->type = e_round;
504
0
    else if (strmatch(next, "sqrt"  )) d->type = e_sqrt;
505
0
    else if (strmatch(next, "not"   )) d->type = e_not;
506
0
    else if (strmatch(next, "pow"   )) d->type = e_pow;
507
0
    else if (strmatch(next, "print" )) d->type = e_print;
508
0
    else if (strmatch(next, "random")) d->type = e_random;
509
0
    else if (strmatch(next, "randomi")) d->type = e_randomi;
510
0
    else if (strmatch(next, "hypot" )) d->type = e_hypot;
511
0
    else if (strmatch(next, "gcd"   )) d->type = e_gcd;
512
0
    else if (strmatch(next, "if"    )) d->type = e_if;
513
0
    else if (strmatch(next, "ifnot" )) d->type = e_ifnot;
514
0
    else if (strmatch(next, "bitand")) d->type = e_bitand;
515
0
    else if (strmatch(next, "bitor" )) d->type = e_bitor;
516
0
    else if (strmatch(next, "between"))d->type = e_between;
517
0
    else if (strmatch(next, "clip"  )) d->type = e_clip;
518
0
    else if (strmatch(next, "atan2" )) d->type = e_atan2;
519
0
    else if (strmatch(next, "lerp"  )) d->type = e_lerp;
520
0
    else if (strmatch(next, "sgn"   )) d->type = e_sgn;
521
0
    else {
522
0
        for (i=0; p->func1_names && p->func1_names[i]; i++) {
523
0
            if (strmatch(next, p->func1_names[i])) {
524
0
                d->func1 = p->funcs1[i];
525
0
                d->type = e_func1;
526
0
                d->const_index = i;
527
0
                *e = d;
528
0
                return 0;
529
0
            }
530
0
        }
531
532
0
        for (i=0; p->func2_names && p->func2_names[i]; i++) {
533
0
            if (strmatch(next, p->func2_names[i])) {
534
0
                d->func2 = p->funcs2[i];
535
0
                d->type = e_func2;
536
0
                d->const_index = i;
537
0
                *e = d;
538
0
                return 0;
539
0
            }
540
0
        }
541
542
0
        av_log(p, AV_LOG_ERROR, "Unknown function in '%s'\n", s0);
543
0
        av_expr_free(d);
544
0
        return AVERROR(EINVAL);
545
0
    }
546
547
0
    *e = d;
548
0
    return 0;
549
0
}
550
551
static AVExpr *make_eval_expr(int type, int value, AVExpr *p0, AVExpr *p1)
552
0
{
553
0
    int depth = FFMAX(p0->depth, p1->depth) + 1;
554
0
    if (depth > MAX_DEPTH)
555
0
        return NULL;
556
0
    AVExpr *e = av_mallocz(sizeof(AVExpr));
557
0
    if (!e)
558
0
        return NULL;
559
0
    e->type     =type   ;
560
0
    e->value    =value  ;
561
0
    e->param[0] =p0     ;
562
0
    e->param[1] =p1     ;
563
0
    e->depth    = depth;
564
0
    return e;
565
0
}
566
567
static int parse_pow(AVExpr **e, Parser *p, int *sign)
568
0
{
569
0
    *sign= (*p->s == '+') - (*p->s == '-');
570
0
    p->s += *sign&1;
571
0
    return parse_primary(e, p);
572
0
}
573
574
static int parse_dB(AVExpr **e, Parser *p, int *sign)
575
0
{
576
    /* do not filter out the negative sign when parsing a dB value.
577
       for example, -3dB is not the same as -(3dB) */
578
0
    if (*p->s == '-') {
579
0
        char *next;
580
0
        av_unused double ignored = strtod(p->s, &next);
581
0
        if (next != p->s && next[0] == 'd' && next[1] == 'B') {
582
0
            *sign = 0;
583
0
            return parse_primary(e, p);
584
0
        }
585
0
    }
586
0
    return parse_pow(e, p, sign);
587
0
}
588
589
static int parse_factor(AVExpr **e, Parser *p)
590
0
{
591
0
    int sign, sign2, ret;
592
0
    AVExpr *e0, *e1, *e2;
593
0
    if ((ret = parse_dB(&e0, p, &sign)) < 0)
594
0
        return ret;
595
0
    while(p->s[0]=='^'){
596
0
        e1 = e0;
597
0
        p->s++;
598
0
        if ((ret = parse_dB(&e2, p, &sign2)) < 0) {
599
0
            av_expr_free(e1);
600
0
            return ret;
601
0
        }
602
0
        e0 = make_eval_expr(e_pow, 1, e1, e2);
603
0
        if (!e0) {
604
0
            av_expr_free(e1);
605
0
            av_expr_free(e2);
606
0
            return AVERROR(ENOMEM);
607
0
        }
608
0
        if (e0->param[1]) e0->param[1]->value *= (sign2|1);
609
0
    }
610
0
    if (e0) e0->value *= (sign|1);
611
612
0
    *e = e0;
613
0
    return 0;
614
0
}
615
616
static int parse_term(AVExpr **e, Parser *p)
617
0
{
618
0
    int ret;
619
0
    AVExpr *e0, *e1, *e2;
620
0
    if ((ret = parse_factor(&e0, p)) < 0)
621
0
        return ret;
622
0
    while (p->s[0]=='*' || p->s[0]=='/') {
623
0
        int c= *p->s++;
624
0
        e1 = e0;
625
0
        if ((ret = parse_factor(&e2, p)) < 0) {
626
0
            av_expr_free(e1);
627
0
            return ret;
628
0
        }
629
0
        e0 = make_eval_expr(c == '*' ? e_mul : e_div, 1, e1, e2);
630
0
        if (!e0) {
631
0
            av_expr_free(e1);
632
0
            av_expr_free(e2);
633
0
            return AVERROR(ENOMEM);
634
0
        }
635
0
    }
636
0
    *e = e0;
637
0
    return 0;
638
0
}
639
640
static int parse_subexpr(AVExpr **e, Parser *p)
641
0
{
642
0
    int ret;
643
0
    AVExpr *e0, *e1, *e2;
644
0
    if ((ret = parse_term(&e0, p)) < 0)
645
0
        return ret;
646
0
    while (*p->s == '+' || *p->s == '-') {
647
0
        e1 = e0;
648
0
        if ((ret = parse_term(&e2, p)) < 0) {
649
0
            av_expr_free(e1);
650
0
            return ret;
651
0
        }
652
0
        e0 = make_eval_expr(e_add, 1, e1, e2);
653
0
        if (!e0) {
654
0
            av_expr_free(e1);
655
0
            av_expr_free(e2);
656
0
            return AVERROR(ENOMEM);
657
0
        }
658
0
    };
659
660
0
    *e = e0;
661
0
    return 0;
662
0
}
663
664
static int parse_expr(AVExpr **e, Parser *p)
665
0
{
666
0
    int ret;
667
0
    AVExpr *e0, *e1, *e2;
668
0
    if (p->stack_index <= 0) //protect against stack overflows
669
0
        return AVERROR(EINVAL);
670
0
    p->stack_index--;
671
672
0
    if ((ret = parse_subexpr(&e0, p)) < 0)
673
0
        return ret;
674
0
    while (*p->s == ';') {
675
0
        p->s++;
676
0
        e1 = e0;
677
0
        if ((ret = parse_subexpr(&e2, p)) < 0) {
678
0
            av_expr_free(e1);
679
0
            return ret;
680
0
        }
681
0
        e0 = make_eval_expr(e_last, 1, e1, e2);
682
0
        if (!e0) {
683
0
            av_expr_free(e1);
684
0
            av_expr_free(e2);
685
0
            return AVERROR(ENOMEM);
686
0
        }
687
0
    };
688
689
0
    p->stack_index++;
690
0
    *e = e0;
691
0
    return 0;
692
0
}
693
694
static int verify_expr(AVExpr *e)
695
0
{
696
0
    if (!e) return 0;
697
0
    switch (e->type) {
698
0
        case e_value:
699
0
        case e_const: return 1;
700
0
        case e_func0:
701
0
        case e_func1:
702
0
        case e_squish:
703
0
        case e_ld:
704
0
        case e_gauss:
705
0
        case e_isnan:
706
0
        case e_isinf:
707
0
        case e_floor:
708
0
        case e_ceil:
709
0
        case e_trunc:
710
0
        case e_round:
711
0
        case e_sqrt:
712
0
        case e_not:
713
0
        case e_random:
714
0
        case e_sgn:
715
0
            return verify_expr(e->param[0]) && !e->param[1];
716
0
        case e_print:
717
0
            return verify_expr(e->param[0])
718
0
                   && (!e->param[1] || verify_expr(e->param[1]));
719
0
        case e_if:
720
0
        case e_ifnot:
721
0
        case e_taylor:
722
0
            return verify_expr(e->param[0]) && verify_expr(e->param[1])
723
0
                   && (!e->param[2] || verify_expr(e->param[2]));
724
0
        case e_between:
725
0
        case e_clip:
726
0
        case e_lerp:
727
0
        case e_randomi:
728
0
            return verify_expr(e->param[0]) &&
729
0
                   verify_expr(e->param[1]) &&
730
0
                   verify_expr(e->param[2]);
731
0
        default: return verify_expr(e->param[0]) && verify_expr(e->param[1]) && !e->param[2];
732
0
    }
733
0
}
734
735
int av_expr_parse(AVExpr **expr, const char *s,
736
                  const char * const *const_names,
737
                  const char * const *func1_names, double (* const *funcs1)(void *, double),
738
                  const char * const *func2_names, double (* const *funcs2)(void *, double, double),
739
                  int log_offset, void *log_ctx)
740
0
{
741
0
    Parser p = { 0 };
742
0
    AVExpr *e = NULL;
743
0
    char *w = av_malloc(strlen(s) + 1);
744
0
    char *wp = w;
745
0
    const char *s0 = s;
746
0
    int ret = 0;
747
748
0
    if (!w)
749
0
        return AVERROR(ENOMEM);
750
751
0
    while (*s)
752
0
        if (!av_isspace(*s++)) *wp++ = s[-1];
753
0
    *wp++ = 0;
754
755
0
    p.class      = &eval_class;
756
0
    p.stack_index=100;
757
0
    p.s= w;
758
0
    p.const_names = const_names;
759
0
    p.funcs1      = funcs1;
760
0
    p.func1_names = func1_names;
761
0
    p.funcs2      = funcs2;
762
0
    p.func2_names = func2_names;
763
0
    p.log_offset = log_offset;
764
0
    p.log_ctx    = log_ctx;
765
766
0
    if ((ret = parse_expr(&e, &p)) < 0)
767
0
        goto end;
768
0
    if (*p.s) {
769
0
        av_log(&p, AV_LOG_ERROR, "Invalid chars '%s' at the end of expression '%s'\n", p.s, s0);
770
0
        ret = AVERROR(EINVAL);
771
0
        goto end;
772
0
    }
773
0
    if (!verify_expr(e)) {
774
0
        ret = AVERROR(EINVAL);
775
0
        goto end;
776
0
    }
777
0
    AVExprRoot *r = av_realloc(e, sizeof(*r));
778
0
    if (!r) {
779
0
        ret = AVERROR(ENOMEM);
780
0
        goto end;
781
0
    }
782
0
    e = (AVExpr*)r;
783
0
    e->root = 1;
784
0
    r->var= av_mallocz(sizeof(double) *VARS);
785
0
    r->prng_state = av_mallocz(sizeof(*r->prng_state) *VARS);
786
0
    if (!r->var || !r->prng_state) {
787
0
        ret = AVERROR(ENOMEM);
788
0
        goto end;
789
0
    }
790
0
    *expr = e;
791
0
    e = NULL;
792
0
end:
793
0
    av_expr_free(e);
794
0
    av_free(w);
795
0
    return ret;
796
0
}
797
798
static int expr_count(AVExpr *e, unsigned *counter, int size, int type)
799
0
{
800
0
    int i;
801
802
0
    if (!e || !counter || !size)
803
0
        return AVERROR(EINVAL);
804
805
0
    for (i = 0; e->type != type && i < 3 && e->param[i]; i++)
806
0
        expr_count(e->param[i], counter, size, type);
807
808
0
    if (e->type == type && e->const_index < size)
809
0
        counter[e->const_index]++;
810
811
0
    return 0;
812
0
}
813
814
int av_expr_count_vars(AVExpr *e, unsigned *counter, int size)
815
0
{
816
0
    return expr_count(e, counter, size, e_const);
817
0
}
818
819
int av_expr_count_func(AVExpr *e, unsigned *counter, int size, int arg)
820
0
{
821
0
    return expr_count(e, counter, size, ((int[]){e_const, e_func1, e_func2})[arg]);
822
0
}
823
824
double av_expr_eval(AVExpr *e, const double *const_values, void *opaque)
825
0
{
826
0
    av_assert1(e->root);
827
0
    AVExprRoot *r = (AVExprRoot *)e;
828
0
    Parser p = {
829
0
        .class        = &eval_class,
830
0
        .const_values = const_values,
831
0
        .opaque       = opaque,
832
0
        .var          = r->var,
833
0
        .prng_state   = r->prng_state,
834
0
    };
835
836
0
    return eval_expr(&p, e);
837
0
}
838
839
int av_expr_parse_and_eval(double *d, const char *s,
840
                           const char * const *const_names, const double *const_values,
841
                           const char * const *func1_names, double (* const *funcs1)(void *, double),
842
                           const char * const *func2_names, double (* const *funcs2)(void *, double, double),
843
                           void *opaque, int log_offset, void *log_ctx)
844
0
{
845
0
    AVExpr *e = NULL;
846
0
    int ret = av_expr_parse(&e, s, const_names, func1_names, funcs1, func2_names, funcs2, log_offset, log_ctx);
847
848
0
    if (ret < 0) {
849
0
        *d = NAN;
850
0
        return ret;
851
0
    }
852
0
    *d = av_expr_eval(e, const_values, opaque);
853
0
    av_expr_free(e);
854
0
    return isnan(*d) ? AVERROR(EINVAL) : 0;
855
0
}