mirror of
https://github.com/janet-lang/janet
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9d4effc02e
A consistent style should help with contributors and readability. We use astyle as the formatter as can make a pretty good approximation of the current style and my preferred style. Astyle can be found at http://astyle.sourceforge.net/astyle.html
219 lines
6.4 KiB
C
219 lines
6.4 KiB
C
/*
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* Copyright (c) 2019 Calvin Rose
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to
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* deal in the Software without restriction, including without limitation the
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* rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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* sell copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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* IN THE SOFTWARE.
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*/
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#include <math.h>
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#ifndef JANET_AMALG
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#include <janet.h>
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#include "util.h"
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#endif
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/* Get a random number */
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static Janet janet_rand(int32_t argc, Janet *argv) {
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(void) argv;
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janet_fixarity(argc, 0);
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double r = (rand() % RAND_MAX) / ((double) RAND_MAX);
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return janet_wrap_number(r);
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}
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/* Seed the random number generator */
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static Janet janet_srand(int32_t argc, Janet *argv) {
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janet_fixarity(argc, 1);
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int32_t x = janet_getinteger(argv, 0);
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srand((unsigned) x);
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return janet_wrap_nil();
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}
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static Janet janet_remainder(int32_t argc, Janet *argv) {
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janet_fixarity(argc, 2);
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double x = janet_getnumber(argv, 0);
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double y = janet_getnumber(argv, 1);
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return janet_wrap_number(fmod(x, y));
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}
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#define JANET_DEFINE_MATHOP(name, fop)\
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static Janet janet_##name(int32_t argc, Janet *argv) {\
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janet_fixarity(argc, 1); \
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double x = janet_getnumber(argv, 0); \
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return janet_wrap_number(fop(x)); \
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}
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JANET_DEFINE_MATHOP(acos, acos)
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JANET_DEFINE_MATHOP(asin, asin)
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JANET_DEFINE_MATHOP(atan, atan)
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JANET_DEFINE_MATHOP(cos, cos)
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JANET_DEFINE_MATHOP(cosh, cosh)
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JANET_DEFINE_MATHOP(sin, sin)
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JANET_DEFINE_MATHOP(sinh, sinh)
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JANET_DEFINE_MATHOP(tan, tan)
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JANET_DEFINE_MATHOP(tanh, tanh)
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JANET_DEFINE_MATHOP(exp, exp)
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JANET_DEFINE_MATHOP(log, log)
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JANET_DEFINE_MATHOP(log10, log10)
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JANET_DEFINE_MATHOP(sqrt, sqrt)
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JANET_DEFINE_MATHOP(ceil, ceil)
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JANET_DEFINE_MATHOP(fabs, fabs)
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JANET_DEFINE_MATHOP(floor, floor)
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#define JANET_DEFINE_MATH2OP(name, fop)\
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static Janet janet_##name(int32_t argc, Janet *argv) {\
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janet_fixarity(argc, 2); \
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double lhs = janet_getnumber(argv, 0); \
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double rhs = janet_getnumber(argv, 1); \
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return janet_wrap_number(fop(lhs, rhs)); \
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}\
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JANET_DEFINE_MATH2OP(atan2, atan2)
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JANET_DEFINE_MATH2OP(pow, pow)
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static Janet janet_not(int32_t argc, Janet *argv) {
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janet_fixarity(argc, 1);
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return janet_wrap_boolean(!janet_truthy(argv[0]));
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}
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static const JanetReg math_cfuns[] = {
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{
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"%", janet_remainder,
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JDOC("(% dividend divisor)\n\n"
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"Returns the remainder of dividend / divisor.")
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},
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{
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"not", janet_not,
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JDOC("(not x)\n\nReturns the boolean inverse of x.")
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},
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{
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"math/random", janet_rand,
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JDOC("(math/random)\n\n"
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"Returns a uniformly distributed random number between 0 and 1.")
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},
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{
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"math/seedrandom", janet_srand,
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JDOC("(math/seedrandom seed)\n\n"
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"Set the seed for the random number generator. 'seed' should be an "
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"an integer.")
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},
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{
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"math/cos", janet_cos,
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JDOC("(math/cos x)\n\n"
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"Returns the cosine of x.")
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},
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{
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"math/sin", janet_sin,
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JDOC("(math/sin x)\n\n"
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"Returns the sine of x.")
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},
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{
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"math/tan", janet_tan,
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JDOC("(math/tan x)\n\n"
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"Returns the tangent of x.")
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},
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{
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"math/acos", janet_acos,
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JDOC("(math/acos x)\n\n"
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"Returns the arccosine of x.")
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},
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{
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"math/asin", janet_asin,
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JDOC("(math/asin x)\n\n"
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"Returns the arcsine of x.")
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},
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{
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"math/atan", janet_atan,
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JDOC("(math/atan x)\n\n"
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"Returns the arctangent of x.")
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},
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{
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"math/exp", janet_exp,
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JDOC("(math/exp x)\n\n"
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"Returns e to the power of x.")
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},
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{
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"math/log", janet_log,
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JDOC("(math/log x)\n\n"
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"Returns log base 2 of x.")
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},
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{
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"math/log10", janet_log10,
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JDOC("(math/log10 x)\n\n"
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"Returns log base 10 of x.")
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},
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{
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"math/sqrt", janet_sqrt,
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JDOC("(math/sqrt x)\n\n"
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"Returns the square root of x.")
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},
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{
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"math/floor", janet_floor,
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JDOC("(math/floor x)\n\n"
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"Returns the largest integer value number that is not greater than x.")
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},
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{
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"math/ceil", janet_ceil,
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JDOC("(math/ceil x)\n\n"
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"Returns the smallest integer value number that is not less than x.")
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},
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{
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"math/pow", janet_pow,
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JDOC("(math/pow a x)\n\n"
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"Return a to the power of x.")
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},
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{
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"math/abs", janet_fabs,
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JDOC("(math/abs x)\n\n"
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"Return the absolute value of x.")
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},
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{
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"math/sinh", janet_sinh,
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JDOC("(math/sinh x)\n\n"
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"Return the hyperbolic sine of x.")
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},
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{
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"math/cosh", janet_cosh,
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JDOC("(math/cosh x)\n\n"
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"Return the hyperbolic cosine of x.")
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},
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{
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"math/tanh", janet_tanh,
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JDOC("(math/tanh x)\n\n"
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"Return the hyperbolic tangent of x.")
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},
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{
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"math/atan2", janet_atan2,
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JDOC("(math/atan2 y x)\n\n"
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"Return the arctangent of y/x. Works even when x is 0.")
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},
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{NULL, NULL, NULL}
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};
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/* Module entry point */
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void janet_lib_math(JanetTable *env) {
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janet_core_cfuns(env, NULL, math_cfuns);
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#ifdef JANET_BOOTSTRAP
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janet_def(env, "math/pi", janet_wrap_number(3.1415926535897931),
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JDOC("The value pi."));
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janet_def(env, "math/e", janet_wrap_number(2.7182818284590451),
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JDOC("The base of the natural log."));
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janet_def(env, "math/inf", janet_wrap_number(INFINITY),
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JDOC("The number representing positive infinity"));
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#endif
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}
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