refactor(tree): better testing code
parent
3fb027715c
commit
06fca6f5ae
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@ -16,7 +16,7 @@ vieter_tree_error vieter_tree_insert(vieter_tree *tree, uint64_t key,
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tree->root = vieter_tree_node_init();
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tree->root = vieter_tree_node_init();
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tree->root->key = key;
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tree->root->key = key;
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tree->root->data = data;
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tree->root->data = data;
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vieter_tree_node_set(tree->root, vieter_node_black);
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vieter_tree_node_set(tree->root, vieter_tree_node_black);
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tree->size = 1;
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tree->size = 1;
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return vieter_tree_ok;
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return vieter_tree_ok;
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@ -99,9 +99,9 @@ end:
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free(tree);
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free(tree);
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}
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}
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int vieter_tree_validate(vieter_tree *tree) {
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bool vieter_tree_validate(vieter_tree *tree) {
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if (tree->size == 0) {
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if (tree->size == 0) {
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return 0;
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return true;
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}
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}
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// DFS to get expected black nodes
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// DFS to get expected black nodes
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@ -109,12 +109,13 @@ int vieter_tree_validate(vieter_tree *tree) {
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vieter_tree_node *node = tree->root;
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vieter_tree_node *node = tree->root;
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while (node != NULL) {
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while (node != NULL) {
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if (vieter_tree_node_get(node, vieter_node_black)) {
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if (vieter_tree_node_get(node, vieter_tree_node_black)) {
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expected_black_nodes++;
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expected_black_nodes++;
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}
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}
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node = node->left;
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node = node->left;
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}
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}
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return vieter_tree_node_validate(tree->root, 0, expected_black_nodes);
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return vieter_tree_node_get(tree->root, vieter_tree_node_black) &&
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vieter_tree_node_validate(tree->root, 0, expected_black_nodes);
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}
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}
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@ -1,41 +1,31 @@
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#include "vieter_tree_balancing.h"
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#include "vieter_tree_balancing.h"
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int vieter_tree_node_validate(vieter_tree_node *node,
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bool vieter_tree_node_validate(vieter_tree_node *node,
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uint64_t passed_black_nodes,
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uint64_t passed_black_nodes,
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uint64_t expected_black_nodes) {
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uint64_t expected_black_nodes) {
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if (vieter_tree_node_get(node, vieter_node_black)) {
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// Path to NULL children should contain the same amount of black nodes
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if (node == NULL) {
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return passed_black_nodes == expected_black_nodes;
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}
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if (vieter_tree_node_get(node, vieter_tree_node_black)) {
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passed_black_nodes++;
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passed_black_nodes++;
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} else {
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// A red node should have black child nodes
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if ((node->left != NULL &&
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!vieter_tree_node_get(node->left, vieter_node_black)) ||
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(node->right != NULL &&
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!vieter_tree_node_get(node->right, vieter_node_black))) {
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return 1;
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}
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}
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}
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// All paths to a NULL child should have the same amount of black nodes
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// Either the node itself is black, or its children are both either NULL or
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if ((node->left == NULL || node->right == NULL) &&
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// black.
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passed_black_nodes != expected_black_nodes) {
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bool correctly_colored_children =
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return 1;
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vieter_tree_node_get(node, vieter_tree_node_black) ||
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}
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((node->left == NULL ||
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vieter_tree_node_get(node->left, vieter_tree_node_black)) &&
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(node->right == NULL ||
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vieter_tree_node_get(node->right, vieter_tree_node_black)));
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if (node->left != NULL) {
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return correctly_colored_children &&
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if (vieter_tree_node_validate(node->left, passed_black_nodes,
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vieter_tree_node_validate(node->left, passed_black_nodes,
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expected_black_nodes) != 0) {
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expected_black_nodes) &&
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return 1;
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vieter_tree_node_validate(node->right, passed_black_nodes,
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}
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expected_black_nodes);
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}
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if (node->right != NULL) {
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if (vieter_tree_node_validate(node->right, passed_black_nodes,
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expected_black_nodes) != 0) {
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return 1;
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}
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}
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return 0;
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}
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}
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vieter_tree_node *vieter_tree_node_balance(vieter_tree_node *node) {
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vieter_tree_node *vieter_tree_node_balance(vieter_tree_node *node) {
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@ -106,9 +96,9 @@ vieter_tree_node *vieter_tree_node_balance(vieter_tree_node *node) {
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children[3] = node->right;
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children[3] = node->right;
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}
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}
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vieter_tree_node_set(left, vieter_node_black);
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vieter_tree_node_set(left, vieter_tree_node_black);
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vieter_tree_node_set(right, vieter_node_black);
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vieter_tree_node_set(right, vieter_tree_node_black);
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vieter_tree_node_unset(root, vieter_node_black);
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vieter_tree_node_unset(root, vieter_tree_node_black);
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left->left = children[0];
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left->left = children[0];
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left->right = children[1];
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left->right = children[1];
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@ -137,14 +127,16 @@ vieter_tree_node *vieter_tree_node_balance(vieter_tree_node *node) {
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}
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}
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void vieter_tree_node_balance_after_insert(vieter_tree_node *node) {
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void vieter_tree_node_balance_after_insert(vieter_tree_node *node) {
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while (!vieter_tree_node_get(node, vieter_node_black) &&
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while (!vieter_tree_node_get(node, vieter_tree_node_black) &&
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node->parent != NULL &&
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node->parent != NULL &&
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!vieter_tree_node_get(node->parent, vieter_node_black)) {
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!vieter_tree_node_get(node->parent, vieter_tree_node_black)) {
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node = vieter_tree_node_balance(node);
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node = vieter_tree_node_balance(node);
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}
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}
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// The root must always be black
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// The root must always be black
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if (node->parent == NULL) {
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if (node->parent == NULL) {
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vieter_tree_node_set(node, vieter_node_black);
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vieter_tree_node_set(node, vieter_tree_node_black);
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}
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}
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}
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}
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void vieter_tree_node_remove_balanced(vieter_tree_node *node) {}
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@ -3,6 +3,17 @@
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#include "vieter_tree_node.h"
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#include "vieter_tree_node.h"
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/*
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* Ensure the tree remains a valid red-black tree after having inserting the
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* node.
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*/
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void vieter_tree_node_balance_after_insert(vieter_tree_node *node);
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void vieter_tree_node_balance_after_insert(vieter_tree_node *node);
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/*
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* Remove the given node, ensuring the tree remains a valid red-black tree.
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*
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* @param node node to remove. This node should have at least one NULL child.
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*/
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void vieter_tree_node_remove_balanced(vieter_tree_node *node);
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#endif
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#endif
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@ -1,8 +1,10 @@
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#include "vieter_tree.h"
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#include "vieter_tree.h"
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#include <stdbool.h>
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/*
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/*
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* Inspect whether the tree is still a valid red-black-tree.
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* Inspect whether the tree is still a valid red-black-tree.
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*
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*
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* @return 0 if correct, 1 if not.
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* @return true if valid, false otherwise.
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*/
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*/
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int vieter_tree_validate(vieter_tree *tree);
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bool vieter_tree_validate(vieter_tree *tree);
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@ -153,14 +153,15 @@ vieter_tree_error vieter_tree_node_remove(void **out, vieter_tree_node *root,
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return vieter_tree_ok;
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return vieter_tree_ok;
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}
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}
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void vieter_tree_node_set(vieter_tree_node *node, vieter_node_flag flag) {
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void vieter_tree_node_set(vieter_tree_node *node, vieter_tree_node_flag flag) {
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node->flags |= flag;
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node->flags |= flag;
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}
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}
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void vieter_tree_node_unset(vieter_tree_node *node, vieter_node_flag flag) {
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void vieter_tree_node_unset(vieter_tree_node *node,
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vieter_tree_node_flag flag) {
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node->flags &= ~flag;
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node->flags &= ~flag;
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}
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}
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bool vieter_tree_node_get(vieter_tree_node *node, vieter_node_flag flag) {
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bool vieter_tree_node_get(vieter_tree_node *node, vieter_tree_node_flag flag) {
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return (node->flags & flag) != 0;
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return (node->flags & flag) != 0;
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}
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}
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@ -5,11 +5,9 @@
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#include <stdint.h>
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#include <stdint.h>
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#include <stdbool.h>
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#include <stdbool.h>
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#define VIETER_NODE_BLACK ((uint8_t)1)
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typedef enum vieter_tree_node_flag {
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vieter_tree_node_black = ((uint8_t)1) << 0
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typedef enum vieter_node_flag {
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} vieter_tree_node_flag;
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vieter_node_black = ((uint8_t)1) << 0
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} vieter_node_flag;
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typedef struct vieter_tree_node {
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typedef struct vieter_tree_node {
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uint64_t key;
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uint64_t key;
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@ -26,20 +24,24 @@ void vieter_tree_node_free(vieter_tree_node *node);
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vieter_tree_error vieter_tree_node_insert(vieter_tree_node *root, uint64_t key, void *data);
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vieter_tree_error vieter_tree_node_insert(vieter_tree_node *root, uint64_t key, void *data);
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/*
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* Return the node representing the requested value.
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*/
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vieter_tree_error vieter_tree_node_search_node(vieter_tree_node **out, vieter_tree_node *root, uint64_t key);
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vieter_tree_error vieter_tree_node_search_node(vieter_tree_node **out, vieter_tree_node *root, uint64_t key);
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vieter_tree_error vieter_tree_node_search(void **out, vieter_tree_node *root, uint64_t key);
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vieter_tree_error vieter_tree_node_search(void **out, vieter_tree_node *root, uint64_t key);
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vieter_tree_error vieter_tree_node_remove(void **out, vieter_tree_node *root, uint64_t key);
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vieter_tree_error vieter_tree_node_remove(void **out, vieter_tree_node *root, uint64_t key);
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void vieter_tree_node_replace(vieter_tree_node *to_replace, vieter_tree_node *replacement);
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void vieter_tree_node_replace_with_child(vieter_tree_node *to_replace, vieter_tree_node *replacement);
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void vieter_tree_node_set(vieter_tree_node *node, vieter_node_flag flag);
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void vieter_tree_node_set(vieter_tree_node *node, vieter_tree_node_flag flag);
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void vieter_tree_node_unset(vieter_tree_node *node, vieter_node_flag flag);
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void vieter_tree_node_unset(vieter_tree_node *node, vieter_tree_node_flag flag);
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bool vieter_tree_node_get(vieter_tree_node *node, vieter_node_flag flag);
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bool vieter_tree_node_get(vieter_tree_node *node, vieter_tree_node_flag flag);
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void vieter_tree_node_add_child(vieter_tree_node *parent, uint64_t key,
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void vieter_tree_node_add_child(vieter_tree_node *parent, uint64_t key,
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vieter_tree_node *child);
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vieter_tree_node *child);
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int vieter_tree_node_validate(vieter_tree_node *node, uint64_t passed_black_nodes, uint64_t expected_black_nodes);
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bool vieter_tree_node_validate(vieter_tree_node *node, uint64_t passed_black_nodes, uint64_t expected_black_nodes);
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#endif
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#endif
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@ -18,7 +18,7 @@ void test_insert() {
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for (uint64_t i = 0; i < 250; i++) {
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for (uint64_t i = 0; i < 250; i++) {
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TEST_CHECK(vieter_tree_insert(tree, i, NULL) == vieter_tree_ok);
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TEST_CHECK(vieter_tree_insert(tree, i, NULL) == vieter_tree_ok);
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TEST_SIZE(tree, i + 1);
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TEST_SIZE(tree, i + 1);
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TEST_CHECK(vieter_tree_validate(tree) == 0);
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TEST_CHECK(vieter_tree_validate(tree));
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}
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}
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void *out;
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void *out;
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@ -37,7 +37,7 @@ void test_remove() {
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for (uint64_t i = 0; i < 250; i++) {
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for (uint64_t i = 0; i < 250; i++) {
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TEST_CHECK(vieter_tree_insert(tree, i, NULL) == vieter_tree_ok);
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TEST_CHECK(vieter_tree_insert(tree, i, NULL) == vieter_tree_ok);
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TEST_CHECK(vieter_tree_validate(tree) == 0);
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TEST_CHECK(vieter_tree_validate(tree));
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}
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}
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void *out;
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void *out;
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@ -45,7 +45,7 @@ void test_remove() {
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for (uint64_t i = 0; i < 25; i++) {
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for (uint64_t i = 0; i < 25; i++) {
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TEST_CHECK(vieter_tree_search(&out, tree, i) == vieter_tree_ok);
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TEST_CHECK(vieter_tree_search(&out, tree, i) == vieter_tree_ok);
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TEST_CHECK(vieter_tree_remove(&out, tree, i) == vieter_tree_ok);
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TEST_CHECK(vieter_tree_remove(&out, tree, i) == vieter_tree_ok);
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TEST_CHECK(vieter_tree_validate(tree) == 0);
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TEST_CHECK(vieter_tree_validate(tree));
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TEST_CHECK(vieter_tree_search(&out, tree, i) == vieter_tree_not_present);
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TEST_CHECK(vieter_tree_search(&out, tree, i) == vieter_tree_not_present);
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TEST_SIZE(tree, 250 - i - 1);
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TEST_SIZE(tree, 250 - i - 1);
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}
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}
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