mirror of
https://github.com/LuaJIT/LuaJIT.git
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202 lines
5.1 KiB
C
202 lines
5.1 KiB
C
/*
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** Math library.
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** Copyright (C) 2005-2022 Mike Pall. See Copyright Notice in luajit.h
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*/
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#include <math.h>
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#define lib_math_c
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#define LUA_LIB
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#include "lua.h"
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#include "lauxlib.h"
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#include "lualib.h"
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#include "lj_obj.h"
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#include "lj_lib.h"
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#include "lj_vm.h"
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#include "lj_prng.h"
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/* ------------------------------------------------------------------------ */
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#define LJLIB_MODULE_math
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LJLIB_ASM(math_abs) LJLIB_REC(.)
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{
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lj_lib_checknumber(L, 1);
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return FFH_RETRY;
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}
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LJLIB_ASM_(math_floor) LJLIB_REC(math_round IRFPM_FLOOR)
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LJLIB_ASM_(math_ceil) LJLIB_REC(math_round IRFPM_CEIL)
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LJLIB_ASM(math_sqrt) LJLIB_REC(math_unary IRFPM_SQRT)
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{
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lj_lib_checknum(L, 1);
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return FFH_RETRY;
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}
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LJLIB_ASM_(math_log10) LJLIB_REC(math_call IRCALL_log10)
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LJLIB_ASM_(math_exp) LJLIB_REC(math_call IRCALL_exp)
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LJLIB_ASM_(math_sin) LJLIB_REC(math_call IRCALL_sin)
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LJLIB_ASM_(math_cos) LJLIB_REC(math_call IRCALL_cos)
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LJLIB_ASM_(math_tan) LJLIB_REC(math_call IRCALL_tan)
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LJLIB_ASM_(math_asin) LJLIB_REC(math_call IRCALL_asin)
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LJLIB_ASM_(math_acos) LJLIB_REC(math_call IRCALL_acos)
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LJLIB_ASM_(math_atan) LJLIB_REC(math_call IRCALL_atan)
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LJLIB_ASM_(math_sinh) LJLIB_REC(math_call IRCALL_sinh)
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LJLIB_ASM_(math_cosh) LJLIB_REC(math_call IRCALL_cosh)
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LJLIB_ASM_(math_tanh) LJLIB_REC(math_call IRCALL_tanh)
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LJLIB_ASM_(math_frexp)
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LJLIB_ASM_(math_modf)
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LJLIB_ASM(math_log) LJLIB_REC(math_log)
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{
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double x = lj_lib_checknum(L, 1);
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if (L->base+1 < L->top) {
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double y = lj_lib_checknum(L, 2);
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#ifdef LUAJIT_NO_LOG2
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x = log(x); y = 1.0 / log(y);
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#else
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x = lj_vm_log2(x); y = 1.0 / lj_vm_log2(y);
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#endif
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setnumV(L->base-1-LJ_FR2, x*y); /* Do NOT join the expression to x / y. */
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return FFH_RES(1);
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}
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return FFH_RETRY;
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}
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LJLIB_LUA(math_deg) /* function(x) return x * 57.29577951308232 end */
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LJLIB_LUA(math_rad) /* function(x) return x * 0.017453292519943295 end */
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LJLIB_ASM(math_atan2) LJLIB_REC(.)
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{
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lj_lib_checknum(L, 1);
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lj_lib_checknum(L, 2);
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return FFH_RETRY;
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}
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LJLIB_ASM_(math_pow) LJLIB_REC(.)
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LJLIB_ASM_(math_fmod)
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LJLIB_ASM(math_ldexp) LJLIB_REC(.)
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{
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lj_lib_checknum(L, 1);
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#if LJ_DUALNUM && !LJ_TARGET_X86ORX64
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lj_lib_checkint(L, 2);
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#else
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lj_lib_checknum(L, 2);
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#endif
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return FFH_RETRY;
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}
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LJLIB_ASM(math_min) LJLIB_REC(math_minmax IR_MIN)
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{
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int i = 0;
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do { lj_lib_checknumber(L, ++i); } while (L->base+i < L->top);
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return FFH_RETRY;
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}
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LJLIB_ASM_(math_max) LJLIB_REC(math_minmax IR_MAX)
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LJLIB_PUSH(3.14159265358979323846) LJLIB_SET(pi)
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LJLIB_PUSH(1e310) LJLIB_SET(huge)
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/* ------------------------------------------------------------------------ */
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/* This implements a Tausworthe PRNG with period 2^223. Based on:
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** Tables of maximally-equidistributed combined LFSR generators,
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** Pierre L'Ecuyer, 1991, table 3, 1st entry.
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** Full-period ME-CF generator with L=64, J=4, k=223, N1=49.
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*/
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/* Union needed for bit-pattern conversion between uint64_t and double. */
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typedef union { uint64_t u64; double d; } U64double;
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/* PRNG seeding function. */
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static void random_seed(PRNGState *rs, double d)
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{
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uint32_t r = 0x11090601; /* 64-k[i] as four 8 bit constants. */
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int i;
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for (i = 0; i < 4; i++) {
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U64double u;
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uint32_t m = 1u << (r&255);
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r >>= 8;
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u.d = d = d * 3.14159265358979323846 + 2.7182818284590452354;
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if (u.u64 < m) u.u64 += m; /* Ensure k[i] MSB of u[i] are non-zero. */
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rs->u[i] = u.u64;
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}
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for (i = 0; i < 10; i++)
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(void)lj_prng_u64(rs);
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}
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/* PRNG extract function. */
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LJLIB_PUSH(top-2) /* Upvalue holds userdata with PRNGState. */
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LJLIB_CF(math_random) LJLIB_REC(.)
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{
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int n = (int)(L->top - L->base);
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PRNGState *rs = (PRNGState *)(uddata(udataV(lj_lib_upvalue(L, 1))));
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U64double u;
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double d;
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u.u64 = lj_prng_u64d(rs);
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d = u.d - 1.0;
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if (n > 0) {
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#if LJ_DUALNUM
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int isint = 1;
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double r1;
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lj_lib_checknumber(L, 1);
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if (tvisint(L->base)) {
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r1 = (lua_Number)intV(L->base);
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} else {
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isint = 0;
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r1 = numV(L->base);
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}
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#else
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double r1 = lj_lib_checknum(L, 1);
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#endif
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if (n == 1) {
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d = lj_vm_floor(d*r1) + 1.0; /* d is an int in range [1, r1] */
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} else {
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#if LJ_DUALNUM
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double r2;
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lj_lib_checknumber(L, 2);
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if (tvisint(L->base+1)) {
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r2 = (lua_Number)intV(L->base+1);
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} else {
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isint = 0;
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r2 = numV(L->base+1);
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}
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#else
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double r2 = lj_lib_checknum(L, 2);
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#endif
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d = lj_vm_floor(d*(r2-r1+1.0)) + r1; /* d is an int in range [r1, r2] */
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}
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#if LJ_DUALNUM
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if (isint) {
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setintV(L->top-1, lj_num2int(d));
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return 1;
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}
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#endif
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} /* else: d is a double in range [0, 1] */
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setnumV(L->top++, d);
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return 1;
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}
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/* PRNG seed function. */
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LJLIB_PUSH(top-2) /* Upvalue holds userdata with PRNGState. */
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LJLIB_CF(math_randomseed)
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{
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PRNGState *rs = (PRNGState *)(uddata(udataV(lj_lib_upvalue(L, 1))));
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random_seed(rs, lj_lib_checknum(L, 1));
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return 0;
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}
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/* ------------------------------------------------------------------------ */
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#include "lj_libdef.h"
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LUALIB_API int luaopen_math(lua_State *L)
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{
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PRNGState *rs = (PRNGState *)lua_newuserdata(L, sizeof(PRNGState));
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lj_prng_seed_fixed(rs);
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LJ_LIB_REG(L, LUA_MATHLIBNAME, math);
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return 1;
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}
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