| /* |
| ************************************************************** |
| * C++ Mathematical Expression Toolkit Library * |
| * * |
| * Simple Example 02 * |
| * Author: Arash Partow (1999-2024) * |
| * URL: https://www.partow.net/programming/exprtk/index.html * |
| * * |
| * Copyright notice: * |
| * Free use of the Mathematical Expression Toolkit Library is * |
| * permitted under the guidelines and in accordance with the * |
| * most current version of the MIT License. * |
| * https://www.opensource.org/licenses/MIT * |
| * SPDX-License-Identifier: MIT * |
| * * |
| ************************************************************** |
| */ |
| |
| |
| #include <cstdio> |
| #include <string> |
| |
| #include "exprtk.hpp" |
| |
| |
| template <typename T> |
| void square_wave() |
| { |
| typedef exprtk::symbol_table<T> symbol_table_t; |
| typedef exprtk::expression<T> expression_t; |
| typedef exprtk::parser<T> parser_t; |
| |
| const std::string expression_string = |
| "a *(4 / pi) * " |
| "((1 / 1) * sin( 2 * pi * f * t) + (1 / 3) * sin( 6 * pi * f * t) + " |
| " (1 / 5) * sin(10 * pi * f * t) + (1 / 7) * sin(14 * pi * f * t) + " |
| " (1 / 9) * sin(18 * pi * f * t) + (1 / 11) * sin(22 * pi * f * t) + " |
| " (1 / 13) * sin(26 * pi * f * t) + (1 / 15) * sin(30 * pi * f * t) + " |
| " (1 / 17) * sin(34 * pi * f * t) + (1 / 19) * sin(38 * pi * f * t) + " |
| " (1 / 21) * sin(42 * pi * f * t) + (1 / 23) * sin(46 * pi * f * t) + " |
| " (1 / 25) * sin(50 * pi * f * t) + (1 / 27) * sin(54 * pi * f * t)) "; |
| |
| static const T pi = T(3.141592653589793238462643383279502); |
| |
| const T f = pi / T(10); |
| const T a = T(10); |
| T t = T(0); |
| |
| symbol_table_t symbol_table; |
| symbol_table.add_variable("t",t); |
| symbol_table.add_constant("f",f); |
| symbol_table.add_constant("a",a); |
| symbol_table.add_constants(); |
| |
| expression_t expression; |
| expression.register_symbol_table(symbol_table); |
| |
| parser_t parser; |
| parser.compile(expression_string,expression); |
| |
| const T delta = (T(4) * pi) / T(1000); |
| |
| for (t = (T(-2) * pi); t <= (T(+2) * pi); t += delta) |
| { |
| const T result = expression.value(); |
| printf("%19.15f\t%19.15f\n", t, result); |
| } |
| } |
| |
| int main() |
| { |
| square_wave<double>(); |
| return 0; |
| } |