| /src/contrib/arm-optimized-routines/math/tools/ |
| H A D | asinhf.sollya | 15 approx = proc(poly, d) { 21 p = roundcoefficients(approx(poly,i), [|SG ...|]);
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| H A D | log1p.sollya | 15 approx = proc(poly, d) { 21 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | asinh.sollya | 14 approx = proc(poly, d) { 21 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | asinf.sollya | 22 approx = proc(poly, d) { 29 p = roundcoefficients(approx(poly,i), [|dtype ...|]);
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| H A D | cos.sollya | 15 approx = proc(poly,d) { 22 p = roundcoefficients(approx(poly,2*i), [|D ...|]);
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| H A D | v_exp.sollya | 14 approx = proc(poly,d) { 21 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | v_sin.sollya | 21 approx = proc(poly,d) { 28 p = roundcoefficients(approx(poly,2*i), [|D ...|]);
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| H A D | sincosf.sollya | 17 approx = proc(poly,d) { 24 p = roundcoefficients(approx(poly,2*i), [|single ...|]);
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| H A D | sinpi.sollya | 18 approx = proc(poly,d) { 25 p = roundcoefficients(approx(poly,2*i+1), [|D ...|]);
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| H A D | sin.sollya | 21 approx = proc(poly,d) { 28 p = roundcoefficients(approx(poly,2*i), [|D ...|]);
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| H A D | v_log.sollya | 19 approx = proc(poly,d) { 26 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | sincos.sollya | 17 approx = proc(poly,d) { 24 p = roundcoefficients(approx(poly,2*i), [|double ...|]);
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| H A D | log.sollya | 20 approx = proc(poly,d) { 27 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | v_log2f.sollya | 23 approx = proc(poly,d) { 30 p = roundcoefficients(approx(poly,i), [|SG ...|]);
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| H A D | log10f.sollya | 22 approx = proc(poly,d) { 29 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | log_abs.sollya | 15 approx = proc(poly,d) { 22 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | v_log10.sollya | 19 approx = proc(poly,d) { 26 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | exp.sollya | 15 approx = proc(poly,d) { 22 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | log2_abs.sollya | 19 approx = proc(poly,d) { 26 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | log10.sollya | 25 approx = proc(poly,d) { 32 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | log2.sollya | 25 approx = proc(poly,d) { 32 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | v_log10f.sollya | 27 approx = proc(poly,d) { 34 p = roundcoefficients(approx(poly,i), [|SG ...|]);
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| H A D | exp2.sollya | 23 approx = proc(poly,d) { 34 p = roundcoefficients(approx(poly,i), [|D ...|]);
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| H A D | exp10.sollya | 26 approx = proc(poly,d) { 37 p = roundcoefficients(approx(poly,i), [|wp ...|]);
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| /src/contrib/jemalloc/doc_internal/ |
| H A D | PROFILING_INTERNALS.md | 80 …rious values of $Z$. When $Z$ is small relative to $R$, we can use $e^z \approx 1 + x$, and conclu… 82 $$Z^2 \frac{1-Z/R}{Z/R} \approx RZ.$$ 84 …ar $Z^2$ (we have $\frac{e^{-Z/R}}{1 - e^{-Z/R}} = 1$ when $Z/R = \ln 2 \approx 0.693$). When $Z$ …
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