forked from FFmpeg/FFmpeg
Cosmetics: rename ff_parse_expr() and ff_parse_and_eval_expr() parameters:
const_name -> const_names const_value -> const_values func[12]_name -> func[12]_names func[12] -> funcs[12] All these parameters contain a list of values, using plural names for them help understanding a little. Originally committed as revision 23403 to svn://svn.ffmpeg.org/ffmpeg/trunk
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9ace13b416
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9711439b44
2 changed files with 52 additions and 52 deletions
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@ -33,12 +33,12 @@ typedef struct Parser{
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const AVClass *class;
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int stack_index;
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char *s;
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const double *const_value;
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const char * const *const_name; // NULL terminated
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double (* const *func1)(void *, double a); // NULL terminated
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const char * const *func1_name; // NULL terminated
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double (* const *func2)(void *, double a, double b); // NULL terminated
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const char * const *func2_name; // NULL terminated
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const double *const_values;
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const char * const *const_names; // NULL terminated
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double (* const *funcs1)(void *, double a); // NULL terminated
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const char * const *func1_names; // NULL terminated
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double (* const *funcs2)(void *, double a, double b); // NULL terminated
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const char * const *func2_names; // NULL terminated
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void *opaque;
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int log_offset;
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void *log_ctx;
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@ -132,7 +132,7 @@ struct AVExpr {
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static double eval_expr(Parser * p, AVExpr * e) {
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switch (e->type) {
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case e_value: return e->value;
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case e_const: return e->value * p->const_value[e->a.const_index];
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case e_const: return e->value * p->const_values[e->a.const_index];
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case e_func0: return e->value * e->a.func0(eval_expr(p, e->param[0]));
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case e_func1: return e->value * e->a.func1(p->opaque, eval_expr(p, e->param[0]));
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case e_func2: return e->value * e->a.func2(p->opaque, eval_expr(p, e->param[0]), eval_expr(p, e->param[1]));
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@ -196,9 +196,9 @@ static int parse_primary(AVExpr **e, Parser *p)
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d->value = 1;
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/* named constants */
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for(i=0; p->const_name && p->const_name[i]; i++){
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if(strmatch(p->s, p->const_name[i])){
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p->s+= strlen(p->const_name[i]);
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for(i=0; p->const_names && p->const_names[i]; i++){
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if(strmatch(p->s, p->const_names[i])){
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p->s+= strlen(p->const_names[i]);
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d->type = e_const;
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d->a.const_index = i;
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*e = d;
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@ -269,18 +269,18 @@ static int parse_primary(AVExpr **e, Parser *p)
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else if( strmatch(next, "st" ) ) d->type = e_st;
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else if( strmatch(next, "while" ) ) d->type = e_while;
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else {
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for(i=0; p->func1_name && p->func1_name[i]; i++){
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if(strmatch(next, p->func1_name[i])){
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d->a.func1 = p->func1[i];
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for(i=0; p->func1_names && p->func1_names[i]; i++){
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if(strmatch(next, p->func1_names[i])){
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d->a.func1 = p->funcs1[i];
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d->type = e_func1;
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*e = d;
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return 0;
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}
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}
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for(i=0; p->func2_name && p->func2_name[i]; i++){
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if(strmatch(next, p->func2_name[i])){
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d->a.func2 = p->func2[i];
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for(i=0; p->func2_names && p->func2_names[i]; i++){
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if(strmatch(next, p->func2_names[i])){
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d->a.func2 = p->funcs2[i];
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d->type = e_func2;
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*e = d;
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return 0;
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@ -434,9 +434,9 @@ static int verify_expr(AVExpr * e) {
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}
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int ff_parse_expr(AVExpr **expr, const char *s,
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const char * const *const_name,
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const char * const *func1_name, double (* const *func1)(void *, double),
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const char * const *func2_name, double (* const *func2)(void *, double, double),
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const char * const *const_names,
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const char * const *func1_names, double (* const *funcs1)(void *, double),
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const char * const *func2_names, double (* const *funcs2)(void *, double, double),
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int log_offset, void *log_ctx)
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{
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Parser p;
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@ -455,11 +455,11 @@ int ff_parse_expr(AVExpr **expr, const char *s,
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p.class = &class;
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p.stack_index=100;
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p.s= w;
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p.const_name = const_name;
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p.func1 = func1;
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p.func1_name = func1_name;
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p.func2 = func2;
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p.func2_name = func2_name;
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p.const_names = const_names;
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p.funcs1 = funcs1;
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p.func1_names = func1_names;
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p.funcs2 = funcs2;
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p.func2_names = func2_names;
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p.log_offset = log_offset;
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p.log_ctx = log_ctx;
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@ -476,28 +476,28 @@ end:
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return ret;
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}
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double ff_eval_expr(AVExpr * e, const double *const_value, void *opaque) {
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double ff_eval_expr(AVExpr *e, const double *const_values, void *opaque) {
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Parser p;
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p.const_value= const_value;
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p.const_values = const_values;
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p.opaque = opaque;
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return eval_expr(&p, e);
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}
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int ff_parse_and_eval_expr(double *d, const char *s,
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const char * const *const_name, const double *const_value,
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const char * const *func1_name, double (* const *func1)(void *, double),
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const char * const *func2_name, double (* const *func2)(void *, double, double),
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const char * const *const_names, const double *const_values,
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const char * const *func1_names, double (* const *funcs1)(void *, double),
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const char * const *func2_names, double (* const *funcs2)(void *, double, double),
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void *opaque, int log_offset, void *log_ctx)
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{
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AVExpr *e = NULL;
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int ret = ff_parse_expr(&e, s, const_name, func1_name, func1, func2_name, func2, log_offset, log_ctx);
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int ret = ff_parse_expr(&e, s, const_names, func1_names, funcs1, func2_names, funcs2, log_offset, log_ctx);
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if (ret < 0) {
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*d = NAN;
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return ret;
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}
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*d = ff_eval_expr(e, const_value, opaque);
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*d = ff_eval_expr(e, const_values, opaque);
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ff_free_expr(e);
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return isnan(*d) ? AVERROR(EINVAL) : 0;
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}
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@ -35,21 +35,21 @@ typedef struct AVExpr AVExpr;
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* @param res a pointer to a double where is put the result value of
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* the expression, or NAN in case of error
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* @param s expression as a zero terminated string for example "1+2^3+5*5+sin(2/3)"
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* @param const_name NULL terminated array of zero terminated strings of constant identifers for example {"PI", "E", 0}
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* @param const_value a zero terminated array of values for the identifers from const_name
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* @param func1_name NULL terminated array of zero terminated strings of func1 identifers
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* @param func1 NULL terminated array of function pointers for functions which take 1 argument
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* @param func2_name NULL terminated array of zero terminated strings of func2 identifers
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* @param func2 NULL terminated array of function pointers for functions which take 2 arguments
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* @param opaque a pointer which will be passed to all functions from func1 and func2
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* @param const_names NULL terminated array of zero terminated strings of constant identifers for example {"PI", "E", 0}
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* @param const_values a zero terminated array of values for the identifers from const_names
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* @param func1_names NULL terminated array of zero terminated strings of funcs1 identifers
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* @param funcs1 NULL terminated array of function pointers for functions which take 1 argument
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* @param func2_names NULL terminated array of zero terminated strings of funcs2 identifers
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* @param funcs2 NULL terminated array of function pointers for functions which take 2 arguments
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* @param opaque a pointer which will be passed to all functions from funcs1 and funcs2
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* @param log_ctx parent logging context
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* @return 0 in case of success, a negative value corresponding to an
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* AVERROR code otherwise
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*/
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int ff_parse_and_eval_expr(double *res, const char *s,
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const char * const *const_name, const double *const_value,
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const char * const *func1_name, double (* const *func1)(void *, double),
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const char * const *func2_name, double (* const *func2)(void *, double, double),
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const char * const *const_names, const double *const_values,
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const char * const *func1_names, double (* const *funcs1)(void *, double),
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const char * const *func2_names, double (* const *funcs2)(void *, double, double),
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void *opaque, int log_offset, void *log_ctx);
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/**
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@ -60,29 +60,29 @@ int ff_parse_and_eval_expr(double *res, const char *s,
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* The pointed to AVExpr must be freed with ff_free_expr() by the user
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* when it is not needed anymore.
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* @param s expression as a zero terminated string for example "1+2^3+5*5+sin(2/3)"
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* @param const_name NULL terminated array of zero terminated strings of constant identifers for example {"PI", "E", 0}
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* @param func1_name NULL terminated array of zero terminated strings of func1 identifers
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* @param func1 NULL terminated array of function pointers for functions which take 1 argument
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* @param func2_name NULL terminated array of zero terminated strings of func2 identifers
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* @param func2 NULL terminated array of function pointers for functions which take 2 arguments
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* @param const_names NULL terminated array of zero terminated strings of constant identifers for example {"PI", "E", 0}
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* @param func1_names NULL terminated array of zero terminated strings of funcs1 identifers
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* @param funcs1 NULL terminated array of function pointers for functions which take 1 argument
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* @param func2_names NULL terminated array of zero terminated strings of funcs2 identifers
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* @param funcs2 NULL terminated array of function pointers for functions which take 2 arguments
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* @param log_ctx parent logging context
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* @return 0 in case of success, a negative value corresponding to an
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* AVERROR code otherwise
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*/
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int ff_parse_expr(AVExpr **expr, const char *s,
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const char * const *const_name,
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const char * const *func1_name, double (* const *func1)(void *, double),
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const char * const *func2_name, double (* const *func2)(void *, double, double),
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const char * const *const_names,
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const char * const *func1_names, double (* const *funcs1)(void *, double),
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const char * const *func2_names, double (* const *funcs2)(void *, double, double),
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int log_offset, void *log_ctx);
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/**
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* Evaluates a previously parsed expression.
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*
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* @param const_value a zero terminated array of values for the identifers from ff_parse const_name
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* @param opaque a pointer which will be passed to all functions from func1 and func2
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* @param const_values a zero terminated array of values for the identifers from ff_parse() const_names
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* @param opaque a pointer which will be passed to all functions from funcs1 and funcs2
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* @return the value of the expression
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*/
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double ff_eval_expr(AVExpr * e, const double *const_value, void *opaque);
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double ff_eval_expr(AVExpr *e, const double *const_values, void *opaque);
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/**
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* Frees a parsed expression previously created with ff_parse_expr().
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