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more zeros work in progress
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5 changed files with 130 additions and 7 deletions
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@ -299,6 +299,8 @@ slong _acb_dirichlet_platt_local_hardy_z_zeros(
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slong Ns_max, const arb_t H, slong sigma_interp, slong prec);
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slong acb_dirichlet_platt_local_hardy_z_zeros(
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arb_ptr res, const fmpz_t n, slong len, slong prec);
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slong acb_dirichlet_platt_hardy_z_zeros(
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arb_ptr res, const fmpz_t n, slong len, slong prec);
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/* Discrete Fourier Transform */
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32
acb_dirichlet/platt_hardy_z_zeros.c
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32
acb_dirichlet/platt_hardy_z_zeros.c
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@ -0,0 +1,32 @@
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/*
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Copyright (C) 2020 D.H.J. Polymath
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This file is part of Arb.
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Arb is free software: you can redistribute it and/or modify it under
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the terms of the GNU Lesser General Public License (LGPL) as published
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by the Free Software Foundation; either version 2.1 of the License, or
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(at your option) any later version. See <http://www.gnu.org/licenses/>.
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*/
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#include "acb_dirichlet.h"
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slong
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acb_dirichlet_platt_hardy_z_zeros(
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arb_ptr res, const fmpz_t n, slong len, slong prec)
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{
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slong r, s=0;
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fmpz_t k;
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fmpz_init(k);
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fmpz_set(k, n);
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while (len - s)
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{
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r = acb_dirichlet_platt_local_hardy_z_zeros(res + s, k, len - s, prec);
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flint_printf("r = %ld\n", r);
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if (!r)
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break;
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s += r;
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fmpz_add_si(k, k, r);
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}
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return s;
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}
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86
acb_dirichlet/test/t-platt_hardy_z_zeros.c
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86
acb_dirichlet/test/t-platt_hardy_z_zeros.c
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@ -0,0 +1,86 @@
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/*
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Copyright (C) 2020 D.H.J. Polymath
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This file is part of Arb.
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Arb is free software: you can redistribute it and/or modify it under
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the terms of the GNU Lesser General Public License (LGPL) as published
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by the Free Software Foundation; either version 2.1 of the License, or
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(at your option) any later version. See <http://www.gnu.org/licenses/>.
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*/
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#include "acb_dirichlet.h"
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int main()
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{
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/* Check a specific combination of parameter values that is relatively fast
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* to evaluate and that has relatively tight bounds. */
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slong A, B, J, K, sigma_grid, Ns_max, sigma_interp;
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arb_t h, H;
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fmpz_t T, n;
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arb_ptr pa, pb;
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slong count, i;
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slong maxcount = 50*5;
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slong prec = 128;
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flint_printf("platt_hardy_z_zeros....");
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fflush(stdout);
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arb_init(h);
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arb_init(H);
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fmpz_init(T);
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fmpz_init(n);
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pa = _arb_vec_init(maxcount);
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pb = _arb_vec_init(maxcount);
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fmpz_set_si(n, 10142);
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/* parameters related to the location/resolution/width of the grid */
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fmpz_set_si(T, 10000);
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A = 8;
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B = 128;
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/* tuning parameters for the evaluation of grid points */
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J = 1000;
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K = 30;
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sigma_grid = 63;
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arb_set_d(h, 4.5);
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/* tuning parameters for interpolation on the grid */
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Ns_max = 200;
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sigma_interp = 21;
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arb_one(H);
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count = acb_dirichlet_platt_hardy_z_zeros(pa, n, maxcount, prec);
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acb_dirichlet_hardy_z_zeros(pb, n, count, prec);
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if (count != maxcount)
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{
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flint_printf("FAIL: not enough zeros were isolated\n\n");
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flint_printf("count = %wd maxcount = %wd\n\n", count, maxcount);
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flint_abort();
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}
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for (i = 0; i < count; i++)
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{
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if (!arb_overlaps(pa+i, pb+i))
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{
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flint_printf("FAIL: overlap\n\n");
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flint_printf("observed[%wd] = ", i);
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arb_printd(pa+i, 20); flint_printf("\n\n");
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flint_printf("expected[%wd] = ", i);
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arb_printd(pb+i, 20); flint_printf("\n\n");
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flint_abort();
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}
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}
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arb_clear(h);
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arb_clear(H);
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fmpz_clear(T);
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fmpz_clear(n);
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_arb_vec_clear(pa, maxcount);
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_arb_vec_clear(pb, maxcount);
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flint_cleanup();
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flint_printf("PASS\n");
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return EXIT_SUCCESS;
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}
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@ -1,5 +1,5 @@
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/*
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Copyright (C) 2019 D.H.J. Polymath
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Copyright (C) 2020 D.H.J. Polymath
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This file is part of Arb.
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@ -785,12 +785,15 @@ and formulas described by David J. Platt in [Pla2017]_.
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.. function:: slong _acb_dirichlet_platt_local_hardy_z_zeros(arb_ptr res, const fmpz_t n, slong len, const fmpz_t T, slong A, slong B, const arb_t h, slong J, slong K, slong sigma_grid, slong Ns_max, const arb_t H, slong sigma_interp, slong prec)
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.. function:: slong acb_dirichlet_platt_local_hardy_z_zeros(arb_ptr res, const fmpz_t n, slong len, slong prec)
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.. function:: slong acb_dirichlet_platt_hardy_z_zeros(arb_ptr res, const fmpz_t n, slong len, slong prec)
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Sets the entries of *res* to at most *len* consecutive zeros of the
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Hardy Z-function, beginning with the *n*-th zero. Requires positive *n*.
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The number of isolated zeros is returned. Internally this function uses
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a single call to Platt's grid evaluation of the scaled Lambda function.
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The final several parameters of the underscored variant have the same
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Sets at most the first *len* entries of *res* to consecutive
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zeros of the Hardy Z-function starting with the *n*-th zero.
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The number of obtained consecutive zeros is returned. The first two
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function variants each make a single call to Platt's grid evaluation
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of the scaled Lambda function, whereas the third variant performs as many
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evluations as necessary to obtain *len* consecutive zeros.
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The final several parameters of the underscored local variant have the same
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meanings as in the functions :func:`acb_dirichlet_platt_multieval`
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and :func:`acb_dirichlet_platt_ws_interpolation`. The non-underscored
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variant currently requires `10^4 \leq n \leq 3 \times 10^{17}`.
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variants currently expect `10^4 \leq n \leq 10^{23}`.
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