49     double (* 
const *
funcs1)(
void *, 
double a);           
 
   51     double (* 
const *
funcs2)(
void *, 
double a, 
double b); 
 
   65     .log_level_offset_offset   = offsetof(
Parser, log_offset),
 
   66     .parent_log_context_offset = offsetof(
Parser, log_ctx),
 
   74     [
'y'-
'E']= { 8.271806125530276749e-25, 1e-24, -24 },
 
   75     [
'z'-
'E']= { 8.4703294725430034e-22, 1e-21, -21 },
 
   76     [
'a'-
'E']= { 8.6736173798840355e-19, 1e-18, -18 },
 
   77     [
'f'-
'E']= { 8.8817841970012523e-16, 1e-15, -15 },
 
   78     [
'p'-
'E']= { 9.0949470177292824e-13, 1e-12, -12 },
 
   79     [
'n'-
'E']= { 9.3132257461547852e-10, 1e-9,  -9 },
 
   80     [
'u'-
'E']= { 9.5367431640625e-7, 1e-6, -6 },
 
   81     [
'm'-
'E']= { 9.765625e-4, 1e-3, -3 },
 
   82     [
'c'-
'E']= { 9.8431332023036951e-3, 1e-2, -2 },
 
   83     [
'd'-
'E']= { 9.921256574801246e-2, 1e-1, -1 },
 
   84     [
'h'-
'E']= { 1.0159366732596479e2, 1e2, 2 },
 
   85     [
'k'-
'E']= { 1.024e3, 1e3, 3 },
 
   86     [
'K'-
'E']= { 1.024e3, 1e3, 3 },
 
   87     [
'M'-
'E']= { 1.048576e6, 1e6, 6 },
 
   88     [
'G'-
'E']= { 1.073741824e9, 1e9, 9 },
 
   89     [
'T'-
'E']= { 1.099511627776e12, 1e12, 12 },
 
   90     [
'P'-
'E']= { 1.125899906842624e15, 1e15, 15 },
 
   91     [
'E'-
'E']= { 1.152921504606847e18, 1e18, 18 },
 
   92     [
'Z'-
'E']= { 1.1805916207174113e21, 1e21, 21 },
 
   93     [
'Y'-
'E']= { 1.2089258196146292e24, 1e24, 24 },
 
  110     if(numstr[0]==
'0' && (numstr[1]|0x20)==
'x') {
 
  111         d = strtoul(numstr, &next, 16);
 
  113         d = 
strtod(numstr, &next);
 
  116         if (next[0] == 
'd' && next[1] == 
'B') {
 
  120         } 
else if (*next >= 
'E' && *next <= 
'z') {
 
  123                 if (next[1] == 
'i') {
 
  145 #define IS_IDENTIFIER_CHAR(c) ((c) - '0' <= 9U || (c) - 'a' <= 25U || (c) - 'A' <= 25U || (c) == '_') 
  150     for (i=0; prefix[i]; i++) {
 
  151         if (prefix[i] != s[i]) 
return 0;
 
  172         double (*
func2)(
void *, double, double);
 
  222             return v0 + (v1 - 
v0) * f;
 
  227             av_log(p, level, 
"%f\n", x);
 
  233             r= r*1664525+1013904223;
 
  235             return e->
value * (r * (1.0/UINT64_MAX));
 
  244             double t = 1, d = 0, v;
 
  248             double var0 = p->
var[
id];
 
  249             for(i=0; i<1000; i++) {
 
  263             double low = -1, high = -1, v, low_v = -DBL_MAX, high_v = DBL_MAX;
 
  264             double var0 = p->
var[0];
 
  266             for(i=-1; i<1024; i++) {
 
  270                     p->
var[0] = x_max*pow(0.9, i-255);
 
  271                     if (i&1) p->
var[0] *= -1;
 
  272                     if (i&2) p->
var[0] += low;
 
  273                     else     p->
var[0] += high;
 
  276                 if (v<=0 && v>low_v) {
 
  280                 if (v>=0 && v<high_v) {
 
  284                 if (low>=0 && high>=0){
 
  285                     for (j=0; j<1000; j++) {
 
  286                         p->
var[0] = (low+high)*0.5;
 
  287                         if (low == p->
var[0] || high == p->
var[0])
 
  290                         if (v<=0) low = p->
var[0];
 
  291                         if (v>=0) high= p->
var[0];
 
  301             return -low_v<high_v ? low : high;
 
  307                 case e_mod: 
return e->
value * (d - floor((!CONFIG_FTRAPV || d2) ? d / d2 : d * 
INFINITY) * d2);
 
  309                 case e_max: 
return e->
value * (d >  d2 ?   d : d2);
 
  310                 case e_min: 
return e->
value * (d <  d2 ?   d : d2);
 
  311                 case e_eq:  
return e->
value * (d == d2 ? 1.0 : 0.0);
 
  312                 case e_gt:  
return e->
value * (d >  d2 ? 1.0 : 0.0);
 
  313                 case e_gte: 
return e->
value * (d >= d2 ? 1.0 : 0.0);
 
  314                 case e_lt:  
return e->
value * (d <  d2 ? 1.0 : 0.0);
 
  315                 case e_lte: 
return e->
value * (d <= d2 ? 1.0 : 0.0);
 
  347     char *next = p->
s, *
s0 = p->
s;
 
  383     p->
s= strchr(p->
s, 
'(');
 
  395         if (p->
s[0] != 
')') {
 
  416     if (p->
s[0] != 
')') {
 
  515     *sign= (*p->
s == 
'+') - (*p->
s == 
'-');
 
  527         if (next != p->
s && next[0] == 
'd' && next[1] == 
'B') {
 
  537     int sign, sign2, ret;
 
  539     if ((ret = 
parse_dB(&e0, p, &sign)) < 0)
 
  544         if ((ret = 
parse_dB(&e2, p, &sign2)) < 0) {
 
  556     if (e0) e0->
value *= (sign|1);
 
  568     while (p->
s[0]==
'*' || p->
s[0]==
'/') {
 
  592     while (*p->
s == 
'+' || *p->
s == 
'-') {
 
  620     while (*p->
s == 
';') {
 
  682                   const char * 
const *func2_names, 
double (* 
const *funcs2)(
void *, 
double, 
double),
 
  683                   int log_offset, 
void *log_ctx)
 
  745                            const char * 
const *const_names, 
const double *
const_values,
 
  746                            const char * 
const *func1_names, 
double (* 
const *
funcs1)(
void *, 
double),
 
  747                            const char * 
const *func2_names, 
double (* 
const *funcs2)(
void *, 
double, 
double),
 
  748                            void *opaque, 
int log_offset, 
void *log_ctx)
 
  751     int ret = 
av_expr_parse(&e, s, const_names, func1_names, 
funcs1, func2_names, funcs2, log_offset, log_ctx);
 
static int verify_expr(AVExpr *e)
const char *const * func1_names
static const char *const func1_names[]
#define LIBAVUTIL_VERSION_INT
const uint8_t ff_reverse[256]
const char * av_default_item_name(void *ptr)
Return the context name. 
static av_const int av_isspace(int c)
Locale-independent conversion of ASCII isspace. 
Convenience header that includes libavutil's core. 
void * av_mallocz(size_t size)
Allocate a memory block with alignment suitable for all memory accesses (including vectors if availab...
int av_expr_parse(AVExpr **expr, const char *s, const char *const *const_names, const char *const *func1_names, double(*const *funcs1)(void *, double), const char *const *func2_names, double(*const *funcs2)(void *, double, double), int log_offset, void *log_ctx)
Parse an expression. 
Macro definitions for various function/variable attributes. 
const char * class_name
The name of the class; usually it is the same name as the context structure type to which the AVClass...
static int parse_dB(AVExpr **e, Parser *p, int *sign)
static av_cold int end(AVCodecContext *avctx)
static int parse_expr(AVExpr **e, Parser *p)
static double(*const funcs1[])(void *, double)
static const struct @275 si_prefixes['z'- 'E'+1]
double strtod(const char *, char **)
const char *const * const_names
double(* func1)(void *, double)
static int parse_pow(AVExpr **e, Parser *p, int *sign)
static int parse_factor(AVExpr **e, Parser *p)
high precision timer, useful to profile code 
static const double const_values[]
static int parse_subexpr(AVExpr **e, Parser *p)
double(* func2)(void *, double, double)
int av_expr_parse_and_eval(double *d, const char *s, const char *const *const_names, const double *const_values, const char *const *func1_names, double(*const *funcs1)(void *, double), const char *const *func2_names, double(*const *funcs2)(void *, double, double), void *opaque, int log_offset, void *log_ctx)
Parse and evaluate an expression. 
const double * const_values
static av_always_inline double ff_exp10(double x)
Compute 10^x for floating point values. 
#define AV_LOG_ERROR
Something went wrong and cannot losslessly be recovered. 
#define IS_IDENTIFIER_CHAR(c)
static int parse_term(AVExpr **e, Parser *p)
int64_t av_gcd(int64_t a, int64_t b)
Compute the greatest common divisor of two integer operands. 
static av_always_inline av_const double round(double x)
common internal API header 
static av_const double hypot(double x, double y)
static double etime(double v)
GLsizei GLboolean const GLfloat * value
static av_always_inline av_const double trunc(double x)
static int strmatch(const char *s, const char *prefix)
static int parse_primary(AVExpr **e, Parser *p)
#define FF_ARRAY_ELEMS(a)
int64_t av_gettime(void)
Get the current time in microseconds. 
double av_strtod(const char *numstr, char **tail)
Parse the string in numstr and return its value as a double. 
#define AV_LOG_INFO
Standard information. 
static double eval_expr(Parser *p, AVExpr *e)
void av_expr_free(AVExpr *e)
Free a parsed expression previously created with av_expr_parse(). 
Describe the class of an AVClass context structure. 
static const AVClass eval_class
double(*const funcs1)(void *, double a)
const char *const * func2_names
internal math functions header 
common internal and external API header 
static const struct @276 constants[]
double(*const funcs2)(void *, double a, double b)
double av_expr_eval(AVExpr *e, const double *const_values, void *opaque)
Evaluate a previously parsed expression. 
#define FF_QP2LAMBDA
factor to convert from H.263 QP to lambda 
static AVExpr * make_eval_expr(int type, int value, AVExpr *p0, AVExpr *p1)
static const char *const const_names[]
simple arithmetic expression evaluator