probably some progress on hashtable, still breaks though
This commit is contained in:
parent
fc06ed85e3
commit
b3453d92e0
2 changed files with 163 additions and 167 deletions
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@ -196,42 +196,42 @@ void ARC_Hashtable_Add(ARC_Hashtable *hashtable, void *key, void *value){
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hashtable->currentSize++;
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}
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void ARC_Hashtable_MoveNextBack(ARC_HashtableNode *nodes, uint32_t capacity, uint32_t *index){
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void ARC_Hashtable_UnsetNodeAtIndexFromArray(ARC_HashtableNode *nodes, uint32_t capacity, uint32_t index){
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while(nodes[index].nextIndex != index){
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//get the currently used next index
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uint32_t nextIndex = nodes[*index].nextIndex;
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uint32_t nextIndex = nodes[index].nextIndex;
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//if the next index is an end, but it is in the right place this should break
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uint32_t hashIndex = nodes[nextIndex].hashvalue % capacity;
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printf("%02u -> %2u\t%2u\n", *index, nextIndex, hashIndex);
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printf("%02u -> %2u\t%2u\n", index, nextIndex, hashIndex);
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//move the current node back one
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nodes[index] = nodes[nextIndex];
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//if the end has been reached, set index to the end
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if(*index == nextIndex){
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//if the next index is already in the right place return out
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if(nodes->nextIndex == hashIndex){
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return;
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if(nodes[nextIndex].nextIndex == hashIndex){
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//fix if moved back but next index not updated
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nodes[nextIndex].nextIndex = hashIndex;
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break;
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}
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//set the last index
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*index = nextIndex;
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return;
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}
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//run a next index to be used if the last index is this index
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uint32_t testIndex = nextIndex;
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ARC_Hashtable_MoveNextBack(nodes, capacity, &testIndex);
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if(testIndex != nextIndex){
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//move the current node back one
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nodes[*index] = nodes[nextIndex];
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//move set the current index to the end
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if(nodes[index].nextIndex == nextIndex){
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nodes[index].nextIndex = index;
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index = nextIndex;
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break;
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}
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//moves the next index into the next used slot
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nodes[*index].nextIndex = nextIndex;
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nodes[index].nextIndex = nextIndex;
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//get the next index to move back
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*index = nextIndex;
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index = nextIndex;
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}
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//set the current value to an empty node
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nodes[index] = (ARC_HashtableNode){ NULL, NULL, 0, index };
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}
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void ARC_Hashtable_Remove(ARC_Hashtable *hashtable, void *key){
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@ -251,7 +251,7 @@ void ARC_Hashtable_Remove(ARC_Hashtable *hashtable, void *key){
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}
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//check the last index if the others could not find the node
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if(nodeFound == ARC_False && hashtable->keyCompareFn(hashtable->nodes[index].key, key) == ARC_True){
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if(nodeFound == ARC_False && hashtable->nodes[index].key != NULL && hashtable->keyCompareFn(hashtable->nodes[index].key, key) == ARC_True){
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nodeFound = ARC_True;
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}
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@ -272,10 +272,7 @@ void ARC_Hashtable_Remove(ARC_Hashtable *hashtable, void *key){
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printf("MOVE:\n");
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//move all next items back
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ARC_Hashtable_MoveNextBack(hashtable->nodes, hashtable->currentCapacity, &index);
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//set the current value to an empty node
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hashtable->nodes[index] = (ARC_HashtableNode){ NULL, NULL, 0, index };
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ARC_Hashtable_UnsetNodeAtIndexFromArray(hashtable->nodes, hashtable->currentCapacity, index);
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//we have removed the item so we can decrease the current size
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hashtable->currentSize--;
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@ -350,24 +347,16 @@ void *ARC_Hashtable_Get(ARC_Hashtable *hashtable, void *key){
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ARC_HashtableNode node = hashtable->nodes[index];
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//check each available node for a match
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for(uint32_t nextIndex = index; node.key != NULL; node = hashtable->nodes[nextIndex]){
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while(node.nextIndex != index){
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//if the key is found, return its value
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if(hashtable->keyCompareFn(node.key, key) == ARC_True){
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return node.value;
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}
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//up the current index by one
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nextIndex++;
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//up the current index to the next available index
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index = node.nextIndex;
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//cycle back to the first index if it is above the array's capacity
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if(nextIndex >= hashtable->currentCapacity){
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nextIndex = 0;
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}
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//check if the loop has circled back to the starting index to stop checking
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if(index == nextIndex){
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break;
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}
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node = hashtable->nodes[index];
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}
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//if the key is found, return its value
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@ -20,6 +20,7 @@ void TEST_Hashtable_Print(void *hashtable){
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}
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ARC_Bool TEST_Hashtable_KeyCompareDataFn(void *dataA, void *dataB){
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printf("%s : %s\n", (char *)dataA, (char *)dataB);
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return (ARC_Bool)strcmp((const char *)dataA, (const char *)dataB) == 0;
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}
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@ -38,107 +39,108 @@ ARC_TEST(Hashtable_Init){
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ARC_Hashtable_Destroy(hashtable);
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}
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ARC_TEST(Hashtable_Add_Get_Remove){
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ARC_Hashtable *hashtable;
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ARC_Hashtable_KeyCompareFn keyCompareFn = TEST_Hashtable_KeyCompareDataFn;
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ARC_Hashtable_Create(&hashtable, NULL, &keyCompareFn, NULL);
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char *key0 = (char *)"key0";
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char *key1 = (char *)"key1";
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char *key2 = (char *)"key2";
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char *key3 = (char *)"key3";
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char *key4 = (char *)"key4";
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char *key5 = (char *)"key5";
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char *key6 = (char *)"key6";
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char *key7 = (char *)"key7";
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char *key8 = (char *)"key8";
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int32_t val0 = 2;
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int32_t val1 = 7;
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int32_t val2 = 4;
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int32_t val3 = 9;
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int32_t val4 = 0;
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int32_t val5 = 1;
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int32_t val6 = 3;
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int32_t val7 = 5;
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int32_t val8 = 6;
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ARC_Hashtable_Add(hashtable, key0, &val0);
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ARC_Hashtable_Add(hashtable, key1, &val1);
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ARC_Hashtable_Add(hashtable, key2, &val2);
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ARC_Hashtable_Add(hashtable, key3, &val3);
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ARC_Hashtable_Add(hashtable, key4, &val4);
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ARC_Hashtable_Add(hashtable, key5, &val5);
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ARC_Hashtable_Add(hashtable, key6, &val6);
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ARC_Hashtable_Add(hashtable, key7, &val7);
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ARC_Hashtable_Add(hashtable, key8, &val8);
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ARC_CHECK(2 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key0"));
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ARC_CHECK(7 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key1"));
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ARC_CHECK(4 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key2"));
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ARC_CHECK(9 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key3"));
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ARC_CHECK(0 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key4"));
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ARC_CHECK(1 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key5"));
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ARC_CHECK(3 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key6"));
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ARC_CHECK(5 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key7"));
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ARC_CHECK(6 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key8"));
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ARC_Hashtable_Remove(hashtable, (void *)"key2");
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ARC_CHECK(2 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key0"));
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ARC_CHECK(7 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key1"));
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ARC_CHECK(9 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key3"));
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ARC_CHECK(0 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key4"));
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ARC_CHECK(1 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key5"));
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ARC_CHECK(3 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key6"));
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ARC_CHECK(5 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key7"));
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ARC_CHECK(6 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key8"));
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ARC_Hashtable_Remove(hashtable, (void *)"key0");
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ARC_Hashtable_Remove(hashtable, (void *)"key4");
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ARC_Hashtable_Remove(hashtable, (void *)"key3");
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ARC_Hashtable_Remove(hashtable, (void *)"key8");
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ARC_Hashtable_Remove(hashtable, (void *)"key6");
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ARC_Hashtable_Remove(hashtable, (void *)"key7");
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ARC_CHECK(7 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key1"));
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ARC_CHECK(1 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key5"));
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ARC_Hashtable_Remove(hashtable, (void *)"key1");
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ARC_Hashtable_Remove(hashtable, (void *)"key5");
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ARC_Hashtable_Destroy(hashtable);
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}
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ARC_TEST(Hashtable_Add_Get_100){
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ARC_Hashtable *hashtable;
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ARC_Hashtable_KeyCompareFn keyCompareFn = TEST_Hashtable_KeyCompareDataFn;
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ARC_Hashtable_DestroyKeyValueFn destroyKeyValueFn = TEST_Hashtable_DestroyKeyValueFn;
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ARC_Hashtable_Create(&hashtable, NULL, &keyCompareFn, &destroyKeyValueFn);
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const char *keyCStr = "key%03u";
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for(uint32_t index = 0; index < 100; index++){
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char *key = (char *)malloc(strlen(keyCStr));
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sprintf(key, keyCStr, index);
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int32_t *val = (int32_t *)malloc(sizeof(int32_t));
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*val = index;
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ARC_Hashtable_Add(hashtable, key, val);
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}
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for(uint32_t index = 0; index < 100; index++){
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char *key = (char *)malloc(strlen(keyCStr));
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sprintf(key, keyCStr, index);
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ARC_CHECK(index == *(int32_t *)ARC_Hashtable_Get(hashtable, key));
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free(key);
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}
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ARC_Hashtable_Destroy(hashtable);
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}
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//ARC_TEST(Hashtable_Add_Get_Remove){
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// ARC_Hashtable *hashtable;
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// ARC_Hashtable_KeyCompareFn keyCompareFn = TEST_Hashtable_KeyCompareDataFn;
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// ARC_Hashtable_Create(&hashtable, NULL, &keyCompareFn, NULL);
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//
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// char *key0 = (char *)"key0";
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// char *key1 = (char *)"key1";
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// char *key2 = (char *)"key2";
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// char *key3 = (char *)"key3";
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// char *key4 = (char *)"key4";
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// char *key5 = (char *)"key5";
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// char *key6 = (char *)"key6";
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// char *key7 = (char *)"key7";
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// char *key8 = (char *)"key8";
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//
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// int32_t val0 = 2;
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// int32_t val1 = 7;
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// int32_t val2 = 4;
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// int32_t val3 = 9;
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// int32_t val4 = 0;
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// int32_t val5 = 1;
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// int32_t val6 = 3;
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// int32_t val7 = 5;
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// int32_t val8 = 6;
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//
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// ARC_Hashtable_Add(hashtable, key0, &val0);
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// ARC_Hashtable_Add(hashtable, key1, &val1);
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// ARC_Hashtable_Add(hashtable, key2, &val2);
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// ARC_Hashtable_Add(hashtable, key3, &val3);
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// ARC_Hashtable_Add(hashtable, key4, &val4);
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// ARC_Hashtable_Add(hashtable, key5, &val5);
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// ARC_Hashtable_Add(hashtable, key6, &val6);
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// ARC_Hashtable_Add(hashtable, key7, &val7);
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// ARC_Hashtable_Add(hashtable, key8, &val8);
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//
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// ARC_CHECK(2 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key0"));
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// ARC_CHECK(7 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key1"));
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// ARC_CHECK(4 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key2"));
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// ARC_CHECK(9 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key3"));
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// ARC_CHECK(0 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key4"));
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// ARC_CHECK(1 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key5"));
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// ARC_CHECK(3 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key6"));
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// ARC_CHECK(5 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key7"));
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// ARC_CHECK(6 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key8"));
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//
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// TEST_Hashtable_Print(hashtable);
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// ARC_Hashtable_Remove(hashtable, (void *)"key2");
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//
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// ARC_CHECK(2 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key0"));
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// ARC_CHECK(7 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key1"));
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// ARC_CHECK(9 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key3"));
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// ARC_CHECK(0 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key4"));
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// ARC_CHECK(1 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key5"));
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// ARC_CHECK(3 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key6"));
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// ARC_CHECK(5 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key7"));
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// ARC_CHECK(6 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key8"));
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//
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// ARC_Hashtable_Remove(hashtable, (void *)"key0");
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// ARC_Hashtable_Remove(hashtable, (void *)"key4");
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// ARC_Hashtable_Remove(hashtable, (void *)"key3");
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// ARC_Hashtable_Remove(hashtable, (void *)"key8");
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// ARC_Hashtable_Remove(hashtable, (void *)"key6");
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// ARC_Hashtable_Remove(hashtable, (void *)"key7");
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//
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// ARC_CHECK(7 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key1"));
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// ARC_CHECK(1 == *(int32_t *)ARC_Hashtable_Get(hashtable, (void *)"key5"));
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//
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// ARC_Hashtable_Remove(hashtable, (void *)"key1");
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// ARC_Hashtable_Remove(hashtable, (void *)"key5");
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//
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// ARC_Hashtable_Destroy(hashtable);
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//}
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//
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//ARC_TEST(Hashtable_Add_Get_100){
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// ARC_Hashtable *hashtable;
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// ARC_Hashtable_KeyCompareFn keyCompareFn = TEST_Hashtable_KeyCompareDataFn;
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// ARC_Hashtable_DestroyKeyValueFn destroyKeyValueFn = TEST_Hashtable_DestroyKeyValueFn;
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// ARC_Hashtable_Create(&hashtable, NULL, &keyCompareFn, &destroyKeyValueFn);
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//
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// const char *keyCStr = "key%03u";
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//
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// for(uint32_t index = 0; index < 100; index++){
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// char *key = (char *)malloc(strlen(keyCStr));
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// sprintf(key, keyCStr, index);
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//
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// int32_t *val = (int32_t *)malloc(sizeof(int32_t));
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// *val = index;
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//
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// ARC_Hashtable_Add(hashtable, key, val);
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// }
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//
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// for(uint32_t index = 0; index < 100; index++){
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// char *key = (char *)malloc(strlen(keyCStr));
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// sprintf(key, keyCStr, index);
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//
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// ARC_CHECK(index == *(int32_t *)ARC_Hashtable_Get(hashtable, key));
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//
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// free(key);
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// }
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//
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// ARC_Hashtable_Destroy(hashtable);
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//}
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ARC_TEST(Hashtable_Add_Get_Remove_100){
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ARC_Hashtable *hashtable;
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@ -147,8 +149,9 @@ ARC_TEST(Hashtable_Add_Get_Remove_100){
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ARC_Hashtable_Create(&hashtable, NULL, &keyCompareFn, &destroyKeyValueFn);
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const char *keyCStr = "key%03u";
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uint32_t maxVal = 15;
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uint32_t tempMaxVal = 10000;
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for(uint32_t maxVal = 0; maxVal < tempMaxVal; maxVal++){
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for(uint32_t index = 0; index < maxVal; index++){
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char *key = (char *)malloc(strlen(keyCStr));
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sprintf(key, keyCStr, index);
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@ -173,10 +176,14 @@ ARC_TEST(Hashtable_Add_Get_Remove_100){
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sprintf(key, keyCStr, index);
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TEST_Hashtable_Print(hashtable);
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ARC_CHECK(index == *(int32_t *)ARC_Hashtable_Get(hashtable, key));
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ARC_Hashtable_Remove(hashtable, key);
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free(key);
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}
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printf("%u\n", maxVal);
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}
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ARC_Hashtable_Destroy(hashtable);
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}
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