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eval: Add taylor series evaluation support.
Signed-off-by: Michael Niedermayer <michaelni@gmx.at>
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@ -106,6 +106,13 @@ the evaluation of @var{y}, return 0 otherwise.
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@item ifnot(x, y)
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@item ifnot(x, y)
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Evaluate @var{x}, and if the result is zero return the result of the
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Evaluate @var{x}, and if the result is zero return the result of the
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evaluation of @var{y}, return 0 otherwise.
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evaluation of @var{y}, return 0 otherwise.
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@item taylor(expr, x)
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Evaluate a taylor series at x.
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expr represents the LD(0)-th derivates of f(x) at 0.
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note, when you have the derivatives at y instead of 0
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taylor(expr, x-y) can be used
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When the series does not converge the results are undefined.
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@end table
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@end table
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The following constants are available:
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The following constants are available:
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@ -134,7 +134,7 @@ struct AVExpr {
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e_squish, e_gauss, e_ld, e_isnan,
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e_squish, e_gauss, e_ld, e_isnan,
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e_mod, e_max, e_min, e_eq, e_gt, e_gte,
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e_mod, e_max, e_min, e_eq, e_gt, e_gte,
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e_pow, e_mul, e_div, e_add,
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e_pow, e_mul, e_div, e_add,
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e_last, e_st, e_while, e_floor, e_ceil, e_trunc,
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e_last, e_st, e_while, e_taylor, e_floor, e_ceil, e_trunc,
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e_sqrt, e_not, e_random, e_hypot, e_gcd,
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e_sqrt, e_not, e_random, e_hypot, e_gcd,
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e_if, e_ifnot,
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e_if, e_ifnot,
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} type;
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} type;
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@ -181,6 +181,23 @@ static double eval_expr(Parser *p, AVExpr *e)
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d=eval_expr(p, e->param[1]);
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d=eval_expr(p, e->param[1]);
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return d;
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return d;
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}
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}
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case e_taylor: {
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double t = 1, d = 0, v;
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double x = eval_expr(p, e->param[1]);
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int i;
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double var0 = p->var[0];
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for(i=0; i<1000; i++) {
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double ld = d;
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p->var[0] = i;
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v = eval_expr(p, e->param[0]);
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d += t*v;
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if(ld==d && v)
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break;
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t *= x / (i+1);
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}
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p->var[0] = var0;
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return d;
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}
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default: {
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default: {
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double d = eval_expr(p, e->param[0]);
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double d = eval_expr(p, e->param[0]);
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double d2 = eval_expr(p, e->param[1]);
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double d2 = eval_expr(p, e->param[1]);
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@ -318,6 +335,7 @@ static int parse_primary(AVExpr **e, Parser *p)
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else if (strmatch(next, "isnan" )) d->type = e_isnan;
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else if (strmatch(next, "isnan" )) d->type = e_isnan;
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else if (strmatch(next, "st" )) d->type = e_st;
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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 if (strmatch(next, "while" )) d->type = e_while;
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else if (strmatch(next, "taylor")) d->type = e_taylor;
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else if (strmatch(next, "floor" )) d->type = e_floor;
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else if (strmatch(next, "floor" )) d->type = e_floor;
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else if (strmatch(next, "ceil" )) d->type = e_ceil;
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else if (strmatch(next, "ceil" )) d->type = e_ceil;
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else if (strmatch(next, "trunc" )) d->type = e_trunc;
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else if (strmatch(next, "trunc" )) d->type = e_trunc;
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@ -698,6 +716,8 @@ int main(int argc, char **argv)
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"if(1, 2)",
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"if(1, 2)",
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"ifnot(0, 23)",
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"ifnot(0, 23)",
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"ifnot(1, NaN) + if(0, 1)",
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"ifnot(1, NaN) + if(0, 1)",
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"taylor(1, 1)",
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"taylor(eq(mod(ld(0),4),1)-eq(mod(ld(0),4),3), PI/2)",
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NULL
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NULL
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};
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};
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@ -169,5 +169,11 @@ Evaluating 'ifnot(0, 23)'
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Evaluating 'ifnot(1, NaN) + if(0, 1)'
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Evaluating 'ifnot(1, NaN) + if(0, 1)'
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'ifnot(1, NaN) + if(0, 1)' -> 0.000000
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'ifnot(1, NaN) + if(0, 1)' -> 0.000000
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Evaluating 'taylor(1, 1)'
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'taylor(1, 1)' -> 2.718282
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Evaluating 'taylor(eq(mod(ld(0),4),1)-eq(mod(ld(0),4),3), PI/2)'
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'taylor(eq(mod(ld(0),4),1)-eq(mod(ld(0),4),3), PI/2)' -> 1.000000
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12.700000 == 12.7
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12.700000 == 12.7
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0.931323 == 0.931322575
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0.931323 == 0.931322575
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