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-rw-r--r--src/vppinfra/random.c47
1 files changed, 46 insertions, 1 deletions
diff --git a/src/vppinfra/random.c b/src/vppinfra/random.c
index fa5bcc8c78a..e54a3bc8c7c 100644
--- a/src/vppinfra/random.c
+++ b/src/vppinfra/random.c
@@ -37,11 +37,56 @@
#include <vppinfra/random.h>
-/* Default random seed for standalone version of library.
+/** \file Random number support
+ */
+
+/** \brief Default random seed for standalone version of library.
Value can be overridden by platform code from e.g.
machine's clock count register. */
u32 standalone_random_default_seed = 1;
+/**
+ * \brief Compute the X2 test statistic for a vector of counts.
+ * Each value element corresponds to a histogram bucket.
+ *
+ * Typical use-case: test the hypothesis that a set of octets
+ * are uniformly distributed (aka random).
+ *
+ * In a 1-dimensional use-case, the result should be compared
+ * with the critical value from chi square tables with
+ * vec_len(values) - 1 degrees of freedom.
+ *
+ * @param[in] values vector of histogram bucket values
+ * @return d - Pearson's X2 test statistic
+ */
+
+f64
+clib_chisquare (u64 * values)
+{
+ int i;
+ f64 d, delta_d, actual_frequency, expected_frequency;
+ u64 n_observations = 0;
+
+ ASSERT (vec_len (values));
+
+ for (i = 0; i < vec_len (values); i++)
+ n_observations += values[i];
+
+ expected_frequency = (1.0 / (f64) vec_len (values)) * (f64) n_observations;
+
+ d = 0.0;
+
+ for (i = 0; i < vec_len (values); i++)
+ {
+ actual_frequency = ((f64) values[i]);
+ delta_d = ((actual_frequency - expected_frequency)
+ * (actual_frequency - expected_frequency))
+ / expected_frequency;
+ d += delta_d;
+ }
+ return d;
+}
+
/*
* fd.io coding-style-patch-verification: ON
*