mirror of
https://github.com/pocketpy/pocketpy
synced 2025-10-19 19:10:17 +00:00
225 lines
8.8 KiB
C++
225 lines
8.8 KiB
C++
#include "pocketpy/modules/random.hpp"
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#include "pocketpy/interpreter/bindings.hpp"
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#include <chrono>
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/* https://github.com/clibs/mt19937ar
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Copyright (c) 2011 Mutsuo Saito, Makoto Matsumoto, Hiroshima
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University and The University of Tokyo. All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions are
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met:
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* Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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* Redistributions in binary form must reproduce the above
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copyright notice, this list of conditions and the following
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disclaimer in the documentation and/or other materials provided
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with the distribution.
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* Neither the name of the Hiroshima University nor the names of
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its contributors may be used to endorse or promote products
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derived from this software without specific prior written
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permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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struct mt19937 {
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const static int N = 624;
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const static int M = 397;
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const uint32_t MATRIX_A = 0x9908b0dfUL; /* constant vector a */
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const uint32_t UPPER_MASK = 0x80000000UL; /* most significant w-r bits */
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const uint32_t LOWER_MASK = 0x7fffffffUL; /* least significant r bits */
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uint32_t mt[N]; /* the array for the state vector */
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int mti = N + 1; /* mti==N+1 means mt[N] is not initialized */
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/* initializes mt[N] with a seed */
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void seed(uint32_t s) {
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mt[0] = s & 0xffffffffUL;
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for(mti = 1; mti < N; mti++) {
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mt[mti] = (1812433253UL * (mt[mti - 1] ^ (mt[mti - 1] >> 30)) + mti);
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/* See Knuth TAOCP Vol2. 3rd Ed. P.106 for multiplier. */
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/* In the previous versions, MSBs of the seed affect */
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/* only MSBs of the array mt[]. */
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/* 2002/01/09 modified by Makoto Matsumoto */
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mt[mti] &= 0xffffffffUL;
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/* for >32 bit machines */
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}
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}
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/* generates a random number on [0,0xffffffff]-interval */
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uint32_t next_uint32(void) {
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uint32_t y;
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static uint32_t mag01[2] = {0x0UL, MATRIX_A};
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/* mag01[x] = x * MATRIX_A for x=0,1 */
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if(mti >= N) { /* generate N words at one time */
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int kk;
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if(mti == N + 1) /* if init_genrand() has not been called, */
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seed(5489UL); /* a default initial seed is used */
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for(kk = 0; kk < N - M; kk++) {
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y = (mt[kk] & UPPER_MASK) | (mt[kk + 1] & LOWER_MASK);
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mt[kk] = mt[kk + M] ^ (y >> 1) ^ mag01[y & 0x1UL];
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}
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for(; kk < N - 1; kk++) {
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y = (mt[kk] & UPPER_MASK) | (mt[kk + 1] & LOWER_MASK);
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mt[kk] = mt[kk + (M - N)] ^ (y >> 1) ^ mag01[y & 0x1UL];
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}
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y = (mt[N - 1] & UPPER_MASK) | (mt[0] & LOWER_MASK);
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mt[N - 1] = mt[M - 1] ^ (y >> 1) ^ mag01[y & 0x1UL];
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mti = 0;
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}
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y = mt[mti++];
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/* Tempering */
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y ^= (y >> 11);
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y ^= (y << 7) & 0x9d2c5680UL;
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y ^= (y << 15) & 0xefc60000UL;
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y ^= (y >> 18);
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return y;
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}
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uint64_t next_uint64(void) { return (uint64_t(next_uint32()) << 32) | next_uint32(); }
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/* generates a random number on [0,1)-real-interval */
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float random(void) { return next_uint32() * (1.0 / 4294967296.0); /* divided by 2^32 */ }
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/* generates a random number on [a, b]-interval */
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int64_t randint(int64_t a, int64_t b) {
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uint64_t delta = b - a + 1;
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if(delta < 0x80000000UL) {
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return a + next_uint32() % (uint32_t)delta;
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} else {
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return a + next_uint64() % delta;
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}
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}
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float uniform(float a, float b) { return a + random() * (b - a); }
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};
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namespace pkpy {
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struct Random {
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mt19937 gen;
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Random() {
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auto count = std::chrono::high_resolution_clock::now().time_since_epoch().count();
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gen.seed((uint32_t)count);
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}
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static void _register(VM* vm, PyObject* mod, PyObject* type) {
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vm->bind_func(type, __new__, 1, [](VM* vm, ArgsView args) {
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Type cls = PK_OBJ_GET(Type, args[0]);
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return vm->new_object<Random>(cls);
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});
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vm->bind_func(type, "seed", 2, [](VM* vm, ArgsView args) {
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Random& self = PK_OBJ_GET(Random, args[0]);
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self.gen.seed(CAST(i64, args[1]));
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return vm->None;
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});
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vm->bind_func(type, "randint", 3, [](VM* vm, ArgsView args) {
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Random& self = PK_OBJ_GET(Random, args[0]);
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i64 a = CAST(i64, args[1]);
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i64 b = CAST(i64, args[2]);
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if(a > b) vm->ValueError("randint(a, b): a must be less than or equal to b");
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return VAR(self.gen.randint(a, b));
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});
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vm->bind_func(type, "random", 1, [](VM* vm, ArgsView args) {
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Random& self = PK_OBJ_GET(Random, args[0]);
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return VAR(self.gen.random());
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});
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vm->bind_func(type, "uniform", 3, [](VM* vm, ArgsView args) {
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Random& self = PK_OBJ_GET(Random, args[0]);
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f64 a = CAST(f64, args[1]);
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f64 b = CAST(f64, args[2]);
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if(a > b) std::swap(a, b);
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return VAR(self.gen.uniform(a, b));
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});
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vm->bind_func(type, "shuffle", 2, [](VM* vm, ArgsView args) {
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Random& self = PK_OBJ_GET(Random, args[0]);
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List& L = CAST(List&, args[1]);
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for(int i = L.size() - 1; i > 0; i--) {
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int j = self.gen.randint(0, i);
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std::swap(L[i], L[j]);
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}
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return vm->None;
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});
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vm->bind_func(type, "choice", 2, [](VM* vm, ArgsView args) {
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Random& self = PK_OBJ_GET(Random, args[0]);
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ArgsView view = vm->cast_array_view(args[1]);
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if(view.empty()) vm->IndexError("cannot choose from an empty sequence");
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int index = self.gen.randint(0, view.size() - 1);
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return view[index];
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});
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vm->bind(type, "choices(self, population, weights=None, k=1)", [](VM* vm, ArgsView args) {
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Random& self = PK_OBJ_GET(Random, args[0]);
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ArgsView view = vm->cast_array_view(args[1]);
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PyVar* data = view.begin();
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int size = view.size();
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if(size == 0) vm->IndexError("cannot choose from an empty sequence");
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array<f64> cum_weights(size);
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if(is_none(args[2])) {
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for(int i = 0; i < size; i++)
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cum_weights[i] = i + 1;
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} else {
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ArgsView weights = vm->cast_array_view(args[2]);
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if(weights.size() != size) vm->ValueError(_S("len(weights) != ", size));
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cum_weights[0] = CAST(f64, weights[0]);
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for(int i = 1; i < size; i++) {
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cum_weights[i] = cum_weights[i - 1] + CAST(f64, weights[i]);
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}
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}
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if(cum_weights[size - 1] <= 0) vm->ValueError("total of weights must be greater than zero");
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int k = CAST(int, args[3]);
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List result(k);
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for(int i = 0; i < k; i++) {
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f64 key = self.gen.uniform(0.0, cum_weights[size - 1]);
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f64* p;
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c11__lower_bound(f64, cum_weights.begin(), cum_weights.size(), key, c11__less, &p);
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result[i] = data[p - cum_weights.begin()];
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}
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return VAR(std::move(result));
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});
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}
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};
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void add_module_random(VM* vm) {
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PyObject* mod = vm->new_module("random");
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vm->register_user_class<Random>(mod, "Random");
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PyVar instance = vm->new_user_object<Random>();
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mod->attr().set("seed", vm->getattr(instance, "seed"));
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mod->attr().set("random", vm->getattr(instance, "random"));
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mod->attr().set("uniform", vm->getattr(instance, "uniform"));
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mod->attr().set("randint", vm->getattr(instance, "randint"));
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mod->attr().set("shuffle", vm->getattr(instance, "shuffle"));
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mod->attr().set("choice", vm->getattr(instance, "choice"));
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mod->attr().set("choices", vm->getattr(instance, "choices"));
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}
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} // namespace pkpy
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