sandbox: btree_test() now checks that constructed tree is a valid AVL tree
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@@ -9,7 +9,7 @@
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#include <socks/memblock.h>
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#include <socks/vm.h>
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#define NR_BTREE_NODES 4096
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#define NR_BTREE_NODES 16383
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/* we're working with 512MiB of simulated system RAM */
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#define MEMORY_SIZE_MB 512
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@@ -142,6 +142,14 @@ void btree_print(btree_node_t *node, int depth)
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}
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if (node) {
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if (node->b_parent) {
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if (node == node->b_parent->b_left) {
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printf("\\ ");
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} else {
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printf("/ ");
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}
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}
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printf("%llu (h:%d)\n", node->b_key, node->b_height);
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} else {
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printf("\x1b[1;31mNULL\x1b[0m\n");
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@@ -152,6 +160,50 @@ void btree_print(btree_node_t *node, int depth)
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}
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}
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/* returns the height of the subtree rooted at node x, or -1 if one of these conditions is true:
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* - the calculated height of subtree x does not match the stored height value.
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* - the subtree is not a valid AVL tree.
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*/
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static int btree_avl_validate(btree_node_t *x)
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{
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if (!x->b_left && !x->b_right) {
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return 1;
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}
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int left = 0, right = 0;
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if (x->b_left) {
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left = btree_avl_validate(x->b_left);
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}
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if (x->b_right) {
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right = btree_avl_validate(x->b_right);
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}
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if (left == -1 || right == -1) {
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return -1;
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}
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int diff = right - left;
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if (diff > 1 || diff < -1) {
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return -1;
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}
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int height = 0;
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if (left > right) {
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height = left + 1;
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} else {
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height = right + 1;
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}
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if (height != x->b_height) {
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return -1;
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}
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return height;
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}
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static int btree_test(void)
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{
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btree_t tree = {};
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@@ -168,10 +220,13 @@ static int btree_test(void)
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btree_insert(&tree, &nodes[i]);
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printf("#######################\n");
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btree_print(tree.b_root, 0);
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}
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btree_print(tree.b_root, 0);
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int result = btree_avl_validate(tree.b_root);
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printf("AVL validation result: %d (%s)\n", result, result != -1 ? "pass" : "fail");
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#if 0
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int to_delete[] = { 3, 1, 0 };
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int nr_to_delete = sizeof to_delete / sizeof to_delete[0];
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@@ -177,6 +177,7 @@ static void rotate_double_right(btree_t *tree, btree_node_t *z)
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static void fix_tree(btree_t *tree, btree_node_t *w)
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{
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int nr_rotations = 0;
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btree_node_t *z = NULL, *y = NULL, *x = NULL;
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z = w;
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@@ -201,13 +202,15 @@ static void fix_tree(btree_t *tree, btree_node_t *w)
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update_height_to_root(z);
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}
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}
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nr_rotations++;
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next_ancestor:
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x = y;
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y = z;
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z = z->b_parent;
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}
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assert(nr_rotations <= 1);
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}
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void btree_insert(btree_t *tree, btree_node_t *node)
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