add a few stats functions
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@ -189,6 +189,33 @@ ci array_get_90_ci(double xs[], int n)
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return array_get_ci((ci) { .low = 0.05, .high = 0.95 }, xs, n);
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return array_get_ci((ci) { .low = 0.05, .high = 0.95 }, xs, n);
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}
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}
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double array_get_median(double xs[], int n){
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int median_k = (int)floor(0.5 * n);
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return quickselect(median_k, xs, n)
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}
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void array_print_stats(double xs[], int n){
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ci ci_90 = array_get_ci((ci) { .low = 0.05, .high = 0.95 }, xs, n);
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ci ci_80 = array_get_ci((ci) { .low = 0.1, .high = 0.9 }, xs, n);
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ci ci_50 = array_get_ci((ci) { .low = 0.25, .high = 0.75 }, xs, n);
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double median = array_get_median(xs, n);
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double mean = array_mean(xs, n);
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double std = array_std(xs, n);
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printf("Mean: %lf\n"
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" Std: %lf\n"
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" 5%%: %lf\n"
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" 10%%: %lf\n"
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" 25%%: %lf\n"
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" 50%%: %lf\n"
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" 75%%: %lf\n"
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" 90%%: %lf\n"
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" 95%%: %lf\n",
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mean, std, ci_90.low, ci_80.low, ci_50.low, median, ci_50.high, ci_80.high, ci_90.high);
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}
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// Replicate some of the above functions over samplers
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// However, in the future I'll delete this
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// There should be a clear boundary between working with samplers and working with an array of samples
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ci sampler_get_ci(ci interval, double (*sampler)(uint64_t*), int n, uint64_t* seed)
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ci sampler_get_ci(ci interval, double (*sampler)(uint64_t*), int n, uint64_t* seed)
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{
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{
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UNUSED(seed); // don't want to use it right now, but want to preserve ability to do so (e.g., remove parallelism from internals). Also nicer for consistency.
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UNUSED(seed); // don't want to use it right now, but want to preserve ability to do so (e.g., remove parallelism from internals). Also nicer for consistency.
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@ -4,13 +4,17 @@
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/* Parallel sampling */
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/* Parallel sampling */
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void sampler_parallel(double (*sampler)(uint64_t* seed), double* results, int n_threads, int n_samples);
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void sampler_parallel(double (*sampler)(uint64_t* seed), double* results, int n_threads, int n_samples);
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/* Get 90% confidence interval */
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/* Get median and confidence intervals */
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double array_get_median(double xs[], int n);
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typedef struct ci_t {
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typedef struct ci_t {
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double low;
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double low;
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double high;
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double high;
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} ci;
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} ci;
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ci array_get_ci(ci interval, double* xs, int n);
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ci array_get_ci(ci interval, double* xs, int n);
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ci array_get_90_ci(double xs[], int n);
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ci array_get_90_ci(double xs[], int n);
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void array_print_stats(double xs[], int n);
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// Deprecated: get confidence intervals directly from samplers
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ci sampler_get_ci(ci interval, double (*sampler)(uint64_t*), int n, uint64_t* seed);
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ci sampler_get_ci(ci interval, double (*sampler)(uint64_t*), int n, uint64_t* seed);
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ci sampler_get_90_ci(double (*sampler)(uint64_t*), int n, uint64_t* seed);
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ci sampler_get_90_ci(double (*sampler)(uint64_t*), int n, uint64_t* seed);
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