new pattern: define sampler and then sample from it
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			@ -3,33 +3,13 @@
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#include <stdlib.h>
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// Estimate functions
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double sample_0(uint64_t* seed)
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{
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    UNUSED(seed);
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    return 0;
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}
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double sample_1(uint64_t* seed)
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{
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    UNUSED(seed);
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    return 1;
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}
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double sample_model(uint64_t* seed){
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double sample_few(uint64_t* seed)
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{
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    return sample_to(1, 3, seed);
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}
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double sample_many(uint64_t* seed)
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{
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    return sample_to(2, 10, seed);
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}
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int main()
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{
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    // set randomness seed
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    uint64_t* seed = malloc(sizeof(uint64_t));
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    *seed = 1000; // xorshift can't start with 0
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    double sample_0(uint64_t* seed) { UNUSED(seed); return 0; }
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    double sample_1(uint64_t* seed) { UNUSED(seed); return 1; }
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    double sample_few(uint64_t* seed) { return sample_to(1, 3, seed); }
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    double sample_many(uint64_t* seed) { return sample_to(2, 10, seed); }
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    double p_a = 0.8;
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    double p_b = 0.5;
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			@ -38,8 +18,17 @@ int main()
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    int n_dists = 4;
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    double weights[] = { 1 - p_c, p_c / 2, p_c / 4, p_c / 4 };
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    double (*samplers[])(uint64_t*) = { sample_0, sample_1, sample_few, sample_many };
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    double result = sample_mixture(samplers, weights, n_dists, seed);
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    double result_one = sample_mixture(samplers, weights, n_dists, seed);
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    printf("result_one: %f\n", result_one);
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    return result;
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}
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int main()
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{
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    // set randomness seed
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    uint64_t* seed = malloc(sizeof(uint64_t));
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    *seed = 1000; // xorshift can't start with 0
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    printf("result_one: %f\n", sample_model(seed));
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    free(seed);
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}
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