2022 day 13 (C) final version - more cleanup needed
This commit is contained in:
@@ -273,3 +273,17 @@ aoc.bash: res=399
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aoc-c: res=399
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aoc-c: res=399
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time: 0:00.00 real, 0.00 user, 0.00 sys
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time: 0:00.00 real, 0.00 user, 0.00 sys
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context-switch: 0+1, page-faults: 0+171
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context-switch: 0+1, page-faults: 0+171
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=========================================
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================= day13 =================
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=========================================
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+++++++++++++++++ part 1
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aoc-c: res=5843
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time: 0:00.00 real, 0.00 user, 0.00 sys
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context-switch: 0+1, page-faults: 0+192
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+++++++++++++++++ part 2
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aoc-c: res=26289
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time: 0:00.00 real, 0.00 user, 0.00 sys
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context-switch: 1+1, page-faults: 0+190
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@@ -16,7 +16,6 @@
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#include <ctype.h>
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#include <ctype.h>
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#include "br.h"
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#include "br.h"
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#include "debug.h"
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#include "list.h"
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#include "list.h"
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#include "pool.h"
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#include "pool.h"
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@@ -60,35 +59,14 @@ static node_t *getnode()
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node_t *node = pool_get(pool_node);
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node_t *node = pool_get(pool_node);
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node->car_t = NIL;
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node->car_t = NIL;
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INIT_LIST_HEAD(&node->cdr);
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INIT_LIST_HEAD(&node->cdr);
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log_f(4, "\n");
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return node;
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return node;
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}
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}
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static void print_tree(struct list_head *head, int level)
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{
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struct node *cur;
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log_f(4, "head=%p lev=%d\n", head, level);
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printf("( ");
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//if (!list_empty(&node->cdr)) {
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list_for_each_entry(cur, head, cdr) {
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if (cur->car_t == INT)
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printf("%d ", cur->car.value);
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else if (cur->car_t == NIL)
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printf("ERROR ");
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else
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print_tree(&cur->car.sub, level + 2);
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}
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printf(") ");
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if (!level)
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printf("\n");
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}
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static int compare_tree(struct list_head *h1, struct list_head *h2)
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static int compare_tree(struct list_head *h1, struct list_head *h2)
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{
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{
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struct list_head *cur1, *cur2;
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struct list_head *cur1, *cur2;
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node_t *n1, *n2;
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node_t *n1, *n2;
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int res;
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int res;
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log_f(3, "h1=%p h2=%p\n", h1, h2);
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/* get lists first entries */
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/* get lists first entries */
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cur1 = h1->next;
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cur1 = h1->next;
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@@ -101,15 +79,10 @@ static int compare_tree(struct list_head *h1, struct list_head *h2)
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if (n1->car_t == n2->car_t) {
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if (n1->car_t == n2->car_t) {
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if (n1->car_t == INT) {
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if (n1->car_t == INT) {
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if (n1->car.value < n2->car.value) {
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if (n1->car.value < n2->car.value) {
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log(3, "car1=%d < car2=%d, returning 1\n", n1->car.value,
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n2->car.value);
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return 1;
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return 1;
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} else if (n1->car.value > n2->car.value) {
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} else if (n1->car.value > n2->car.value) {
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log(3, "car1=%d > car2=%d, returning -1\n", n1->car.value,
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n2->car.value);
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return -1;
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return -1;
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}
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}
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log(3, "car1 == car2 == %d, skipping\n", n1->car.value);
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} else { /* both sublists */
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} else { /* both sublists */
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res = compare_tree(&n1->car.sub, &n2->car.sub);
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res = compare_tree(&n1->car.sub, &n2->car.sub);
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if (res)
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if (res)
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@@ -117,11 +90,9 @@ static int compare_tree(struct list_head *h1, struct list_head *h2)
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}
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}
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} else { /* one number, one list */
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} else { /* one number, one list */
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if (n1->car_t == INT) {
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if (n1->car_t == INT) {
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log(3, "car1 == INT, using dummy\n");
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dummy.car.value = n1->car.value;
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dummy.car.value = n1->car.value;
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res = compare_tree(&dummy_list, &n2->car.sub);
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res = compare_tree(&dummy_list, &n2->car.sub);
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} else {
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} else {
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log(3, "car2 == INT, using dummy\n");
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dummy.car.value = n2->car.value;
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dummy.car.value = n2->car.value;
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res = compare_tree(&n1->car.sub, &dummy_list);
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res = compare_tree(&n1->car.sub, &dummy_list);
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}
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}
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@@ -133,58 +104,32 @@ static int compare_tree(struct list_head *h1, struct list_head *h2)
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}
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}
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/* at least one list came to end */
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/* at least one list came to end */
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if (cur1 == h1 && cur2 == h2) { /* both are ending */
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if (cur1 == h1 && cur2 == h2) { /* both are ending */
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log(3, "Both sides Left side ran out of items, undecided\n");
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return 0;
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return 0;
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} else if (cur1 == h1) { /* first list did end */
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} else if (cur1 == h1) { /* first list did end */
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log(3, "Left side ran out of items, so inputs are in the right order\n");
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return 1;
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return 1;
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} else {
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} else {
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log(3, "Right side ran out of items, so inputs are not in the right order\n");
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return -1;
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return -1;
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}
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}
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}
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}
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static void print_nodes()
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{
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nodes_t *cur;
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log_f(3, "+++++++++++\n");
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list_for_each_entry(cur, &nodes, list) {
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print_tree(&cur->node, 0);
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}
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}
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static int add_node(nodes_t *h)
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static int add_node(nodes_t *h)
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{
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{
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nodes_t *first, *iter, *prev;
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nodes_t *first, *iter;
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struct list_head *node_next = &nodes;
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struct list_head *node_next = &nodes;
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int num = 1;
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int num = 1;
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log_f(3, "adding ");
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if (list_empty(&nodes))
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print_tree(&h->node, 0);
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if (list_empty(&nodes)) {
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log_f(3, "adding first entry\n");
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goto ins_node;
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goto ins_node;
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}
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first = iter = list_first_entry(&nodes, nodes_t, list);
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first = iter = list_first_entry(&nodes, nodes_t, list);
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do {
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do {
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if (compare_tree(&h->node, &iter->node) > 0) {
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if (compare_tree(&h->node, &iter->node) > 0) {
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node_next = &iter->list;
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node_next = &iter->list;
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break;
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break;
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}
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}
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prev = iter;
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iter = list_entry(iter->list.next, nodes_t, list);
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iter = list_entry(iter->list.next, nodes_t, list);
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num++;
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num++;
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} while (iter != first);
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} while (iter != first);
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ins_node:
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ins_node:
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log_f(3, "adding entry before ");
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if (node_next == &nodes)
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log(3, "head\n");
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else
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print_tree(&list_entry(node_next, nodes_t, list)->node, 0);
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//&n->node, 0);
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// list_add_tail(&h->list, &n->list);
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log_f(3, "position = %d\n", num);
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list_add_tail(&h->list, node_next);
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list_add_tail(&h->list, node_next);
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return num;
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return num;
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}
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}
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@@ -195,17 +140,10 @@ static struct list_head *create_tree(char *s, int *consumed, int level, struct l
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node_t *node = NULL;
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node_t *node = NULL;
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LIST_HEAD(sub);
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LIST_HEAD(sub);
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int num = 0, val, depth = 0, subconsumed;
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int num = 0, val, depth = 0, subconsumed;
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//LIST_HEAD(head);
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*consumed = 1;
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*consumed = 1;
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//if (*s != '[') {
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// printf("error 0\n");
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// exit(0);
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//}
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INIT_LIST_HEAD(head);
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INIT_LIST_HEAD(head);
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//head = getnode();
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log_f(3, "create_tree(%s)\n", s);
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for (; *s; s++, (*consumed)++) {
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for (; *s; s++, (*consumed)++) {
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log(4, "L=%d examining %c num=%d depth=%d\n", level, *s, num, depth);
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val = 0;
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val = 0;
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switch (*s) {
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switch (*s) {
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case '[':
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case '[':
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@@ -219,10 +157,7 @@ static struct list_head *create_tree(char *s, int *consumed, int level, struct l
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create_tree(s, &subconsumed, level + 1, &node->car.sub);
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create_tree(s, &subconsumed, level + 1, &node->car.sub);
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s += subconsumed - 1;
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s += subconsumed - 1;
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*consumed += subconsumed - 1;
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*consumed += subconsumed - 1;
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log(4, "after create_tree: cons=%d s=%s\n", subconsumed, s);
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list_add_tail(&node->cdr, head);
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list_add_tail(&node->cdr, head); /* add node to current level */
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//print_tree(&node->car.sub, 0);
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//print_tree(head, 0);
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depth--;
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depth--;
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num++;
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num++;
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break;
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break;
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@@ -231,7 +166,6 @@ static struct list_head *create_tree(char *s, int *consumed, int level, struct l
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exit(0);
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exit(0);
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break; /* not reached */
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break; /* not reached */
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}
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}
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//num++;
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break;
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break;
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case ',':
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case ',':
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break;
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break;
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@@ -243,7 +177,6 @@ static struct list_head *create_tree(char *s, int *consumed, int level, struct l
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sscanf(s, "%d%n", &val, &subconsumed);
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sscanf(s, "%d%n", &val, &subconsumed);
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*consumed += subconsumed - 1;
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*consumed += subconsumed - 1;
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s += subconsumed - 1;
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s += subconsumed - 1;
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log(4, "got integer=%d num=%d depth=%d chars=%d\n", val, num, depth, subconsumed);
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node = getnode();
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node = getnode();
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node->car_t = INT;
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node->car_t = INT;
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node->car.value = val;
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node->car.value = val;
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@@ -253,7 +186,6 @@ static struct list_head *create_tree(char *s, int *consumed, int level, struct l
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}
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}
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}
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}
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end:
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end:
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log(4, "returning from create_tree, consumed=%d head=%p\n", *consumed, head);
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return head;
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return head;
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}
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}
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@@ -263,9 +195,8 @@ static int parse()
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ssize_t buflen;
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ssize_t buflen;
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char *buf = NULL;
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char *buf = NULL;
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int i = 0;
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int i = 0;
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//struct list_head h[2];
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nodes_t *head[2];
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nodes_t *head[2];
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int dummy, group = 1, res = 0, tmp;
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int dummy, group = 1, res = 0;
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while (1) {
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while (1) {
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buflen = getline(&buf, &alloc, stdin);
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buflen = getline(&buf, &alloc, stdin);
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@@ -273,23 +204,11 @@ static int parse()
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head[ i % 2] = pool_get(pool_nodes);
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head[ i % 2] = pool_get(pool_nodes);
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create_tree(buf, &dummy, 0, &head[i % 2]->node);
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create_tree(buf, &dummy, 0, &head[i % 2]->node);
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add_node(head[i %2]);
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add_node(head[i %2]);
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//create_tree(buf, &dummy, 0, &head[i % 2]);
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printf("setting node %d\n\n", i % 2);
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}
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}
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if (buflen != 0) {
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if (buflen != 0) {
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if (i % 2) {
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if (i % 2) {
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printf("++++ node 0 = %p\n", &head[0]);
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if (compare_tree(&head[0]->node, &head[1]->node) == 1)
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print_tree(&head[0]->node, 0);
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printf("++++ node 1 = %p\n", &head[1]);
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print_tree(&head[1]->node, 0);
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tmp = compare_tree(&head[0]->node, &head[1]->node);
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printf("group = %d compare_tree() = %d\n", group, tmp);
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if (tmp == 1) {
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res += group;
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res += group;
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printf("group = %d: right order res:%d -> %d\n", group, res - group, res);
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printf("\n\n");
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}
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group++;
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group++;
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}
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}
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i++;
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i++;
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@@ -320,29 +239,13 @@ static int part2()
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return res;
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return res;
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}
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}
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/*
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static struct list_head dummy_head;
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static node_t dummy = {
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.car_t = INT, .car.value = 0, .cdr = LIST_HEAD_INIT(dummy_head)
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};
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static struct list_head dummy_head = LIST_HEAD_INIT(dummy.car.sub);
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*/
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int main(int ac, char **av)
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int main(int ac, char **av)
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{
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{
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int part = parseargs(ac, av);
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int part = parseargs(ac, av);
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pool_node = pool_create("node", 512, sizeof(node_t));
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pool_node = pool_create("node", 512, sizeof(node_t));
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pool_nodes = pool_create("nodes", 512, sizeof(nodes_t));
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pool_nodes = pool_create("nodes", 512, sizeof(nodes_t));
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//u32 foo=0x12345678;
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printf("&dummy->cdr=%p next=%p prev=%p\n",
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&dummy.cdr, dummy.cdr.next, dummy.cdr.prev);
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printf("&dummy_head=%p next=%p prev=%p\n",
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&dummy_list, dummy_list.next, dummy_list.prev);
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//parse();
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//printf("&dummy->cdr=%p next=%p prev=%p\n",
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// &dummy.cdr, dummy.cdr.next, dummy.cdr.prev);
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printf("%s: res=%d\n", *av, part == 1? part1(): part2());
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printf("%s: res=%d\n", *av, part == 1? part1(): part2());
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print_nodes();
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pool_destroy(pool_node);
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pool_destroy(pool_node);
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pool_destroy(pool_nodes);
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pool_destroy(pool_nodes);
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exit(0);
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exit(0);
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