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http://github.com/valkey-io/valkey
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Better distribution for set get-random-element operations.
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e6948b8f28
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src/dict.c
24
src/dict.c
@ -739,6 +739,30 @@ unsigned int dictGetSomeKeys(dict *d, dictEntry **des, unsigned int count) {
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return stored;
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return stored;
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}
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}
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/* This is like dictGetRandomKey() from the POV of the API, but will do more
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* work to ensure a better distribution of the returned element.
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*
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* This function improves the distribution because the dictGetRandomKey()
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* problem is that it selects a random bucket, then it selects a random
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* element from the chain in the bucket. However elements being in different
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* chain lengths will have different probabilities of being reported. With
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* this function instead what we do is to consider a "linear" range of the table
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* that may be constituted of N buckets with chains of different lengths
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* appearing one after the other. Then we report a random element in the range.
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* In this way we smooth away the problem of different chain lenghts. */
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#define GETFAIR_NUM_ENTRIES 20
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dictEntry *dictGetFairRandomKey(dict *d) {
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dictEntry *entries[GETFAIR_NUM_ENTRIES];
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unsigned int count = dictGetSomeKeys(d,entries,GETFAIR_NUM_ENTRIES);
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/* Note that dictGetSomeKeys() may return zero elements in an unlucky
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* run() even if there are actually elements inside the hash table. So
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* when we get zero, we call the true dictGetRandomKey() that will always
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* yeld the element if the hash table has at least one. */
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if (count == 0) return dictGetRandomKey(d);
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unsigned int idx = rand() % count;
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return entries[idx];
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}
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/* Function to reverse bits. Algorithm from:
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/* Function to reverse bits. Algorithm from:
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* http://graphics.stanford.edu/~seander/bithacks.html#ReverseParallel */
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* http://graphics.stanford.edu/~seander/bithacks.html#ReverseParallel */
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static unsigned long rev(unsigned long v) {
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static unsigned long rev(unsigned long v) {
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@ -166,6 +166,7 @@ dictIterator *dictGetSafeIterator(dict *d);
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dictEntry *dictNext(dictIterator *iter);
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dictEntry *dictNext(dictIterator *iter);
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void dictReleaseIterator(dictIterator *iter);
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void dictReleaseIterator(dictIterator *iter);
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dictEntry *dictGetRandomKey(dict *d);
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dictEntry *dictGetRandomKey(dict *d);
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dictEntry *dictGetFairRandomKey(dict *d);
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unsigned int dictGetSomeKeys(dict *d, dictEntry **des, unsigned int count);
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unsigned int dictGetSomeKeys(dict *d, dictEntry **des, unsigned int count);
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void dictGetStats(char *buf, size_t bufsize, dict *d);
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void dictGetStats(char *buf, size_t bufsize, dict *d);
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uint64_t dictGenHashFunction(const void *key, int len);
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uint64_t dictGenHashFunction(const void *key, int len);
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@ -207,7 +207,7 @@ sds setTypeNextObject(setTypeIterator *si) {
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* used field with values which are easy to trap if misused. */
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* used field with values which are easy to trap if misused. */
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int setTypeRandomElement(robj *setobj, sds *sdsele, int64_t *llele) {
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int setTypeRandomElement(robj *setobj, sds *sdsele, int64_t *llele) {
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if (setobj->encoding == OBJ_ENCODING_HT) {
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if (setobj->encoding == OBJ_ENCODING_HT) {
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dictEntry *de = dictGetRandomKey(setobj->ptr);
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dictEntry *de = dictGetFairRandomKey(setobj->ptr);
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*sdsele = dictGetKey(de);
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*sdsele = dictGetKey(de);
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*llele = -123456789; /* Not needed. Defensive. */
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*llele = -123456789; /* Not needed. Defensive. */
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} else if (setobj->encoding == OBJ_ENCODING_INTSET) {
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} else if (setobj->encoding == OBJ_ENCODING_INTSET) {
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