mirror of
https://github.com/DreamMaoMao/maomaowm.git
synced 2026-05-11 23:51:30 -04:00
433 lines
11 KiB
C
433 lines
11 KiB
C
typedef struct DwindleNode DwindleNode;
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struct DwindleNode {
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bool is_split;
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bool split_h;
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bool split_locked;
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float ratio;
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float drag_init_ratio;
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int32_t container_x;
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int32_t container_y;
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int32_t container_w;
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int32_t container_h;
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DwindleNode *parent;
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DwindleNode *first;
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DwindleNode *second;
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Client *client;
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};
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static DwindleNode *dwindle_locked_h_node = NULL;
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static DwindleNode *dwindle_locked_v_node = NULL;
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static DwindleNode *dwindle_new_leaf(Client *c) {
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DwindleNode *n = calloc(1, sizeof(DwindleNode));
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n->client = c;
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return n;
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}
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static DwindleNode *dwindle_find_leaf(DwindleNode *node, Client *c) {
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if (!node)
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return NULL;
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if (!node->is_split)
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return node->client == c ? node : NULL;
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DwindleNode *r = dwindle_find_leaf(node->first, c);
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return r ? r : dwindle_find_leaf(node->second, c);
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}
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static DwindleNode *dwindle_first_leaf(DwindleNode *node) {
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if (!node)
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return NULL;
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while (node->is_split)
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node = node->first;
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return node;
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}
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static void dwindle_free_tree(DwindleNode *node) {
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if (!node)
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return;
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dwindle_free_tree(node->first);
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dwindle_free_tree(node->second);
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free(node);
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}
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static void dwindle_insert(DwindleNode **root, Client *new_c, Client *focused,
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float ratio, bool as_first, bool split_h,
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bool lock) {
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DwindleNode *new_leaf = dwindle_new_leaf(new_c);
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if (!*root) {
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*root = new_leaf;
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return;
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}
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DwindleNode *target = focused ? dwindle_find_leaf(*root, focused) : NULL;
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if (!target)
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target = dwindle_first_leaf(*root);
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DwindleNode *split = calloc(1, sizeof(DwindleNode));
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split->is_split = true;
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split->ratio = ratio;
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split->split_h = split_h;
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split->split_locked = lock;
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if (as_first) {
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split->first = new_leaf;
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split->second = target;
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} else {
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split->first = target;
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split->second = new_leaf;
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}
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split->parent = target->parent;
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target->parent = split;
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new_leaf->parent = split;
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if (!split->parent) {
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*root = split;
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} else {
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if (split->parent->first == target)
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split->parent->first = split;
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else
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split->parent->second = split;
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}
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}
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static void dwindle_remove(DwindleNode **root, Client *c) {
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DwindleNode *leaf = dwindle_find_leaf(*root, c);
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if (!leaf)
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return;
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DwindleNode *parent = leaf->parent;
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if (!parent) {
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free(leaf);
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*root = NULL;
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return;
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}
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DwindleNode *sibling =
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(parent->first == leaf) ? parent->second : parent->first;
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DwindleNode *grandparent = parent->parent;
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sibling->parent = grandparent;
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/* Preserve split direction on sibling split-nodes when requested. */
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if (!sibling->is_split ||
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(!config.dwindle_preserve_split && !config.dwindle_smart_split)) {
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sibling->container_w = 0;
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sibling->container_h = 0;
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}
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if (!grandparent) {
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*root = sibling;
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} else {
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if (grandparent->first == parent)
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grandparent->first = sibling;
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else
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grandparent->second = sibling;
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}
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free(leaf);
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free(parent);
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}
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static void dwindle_assign(DwindleNode *node, int32_t ax, int32_t ay,
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int32_t aw, int32_t ah, int32_t gap_h,
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int32_t gap_v) {
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if (!node)
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return;
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if (!node->is_split) {
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if (node->client) {
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struct wlr_box box = {ax, ay, MAX(1, aw), MAX(1, ah)};
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resize(node->client, box, 0);
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}
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return;
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}
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if (!node->split_locked && node->container_w == 0 && node->container_h == 0)
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node->split_h = (aw >= ah);
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node->container_x = ax;
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node->container_y = ay;
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node->container_w = aw;
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node->container_h = ah;
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if (node->split_h) {
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int32_t w1 = MAX(1, (int32_t)(aw * node->ratio) - gap_h / 2);
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dwindle_assign(node->first, ax, ay, w1, ah, gap_h, gap_v);
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dwindle_assign(node->second, ax + w1 + gap_h, ay, aw - w1 - gap_h, ah,
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gap_h, gap_v);
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} else {
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int32_t h1 = MAX(1, (int32_t)(ah * node->ratio) - gap_v / 2);
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dwindle_assign(node->first, ax, ay, aw, h1, gap_h, gap_v);
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dwindle_assign(node->second, ax, ay + h1 + gap_v, aw, ah - h1 - gap_v,
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gap_h, gap_v);
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}
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}
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static void dwindle_move_client(DwindleNode **root, Client *c, Client *target,
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float ratio, int32_t dir) {
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if (!c || !target || c == target)
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return;
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if (!dwindle_find_leaf(*root, c) || !dwindle_find_leaf(*root, target))
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return;
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dwindle_remove(root, c);
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bool as_first = (dir == UP || dir == LEFT);
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bool split_h = (dir == LEFT || dir == RIGHT);
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dwindle_insert(root, c, target, ratio, as_first, split_h, true);
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}
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static void dwindle_swap_clients(DwindleNode **root, Client *a, Client *b) {
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DwindleNode *la = dwindle_find_leaf(*root, a);
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DwindleNode *lb = dwindle_find_leaf(*root, b);
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if (!la || !lb || la == lb)
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return;
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la->client = b;
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lb->client = a;
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}
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static void dwindle_resize_client(Monitor *m, Client *c) {
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uint32_t tag = m->pertag->curtag;
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DwindleNode *leaf = dwindle_find_leaf(m->pertag->dwindle_root[tag], c);
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if (!leaf)
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return;
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if (!start_drag_window) {
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start_drag_window = true;
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dwindle_locked_h_node = NULL;
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dwindle_locked_v_node = NULL;
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drag_begin_cursorx = cursor->x;
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drag_begin_cursory = cursor->y;
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DwindleNode *node = leaf->parent;
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while (node) {
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if (node->split_h && !dwindle_locked_h_node) {
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dwindle_locked_h_node = node;
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node->drag_init_ratio = node->ratio;
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}
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if (!node->split_h && !dwindle_locked_v_node) {
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dwindle_locked_v_node = node;
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node->drag_init_ratio = node->ratio;
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}
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if (dwindle_locked_h_node && dwindle_locked_v_node)
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break;
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node = node->parent;
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}
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}
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if (!dwindle_locked_h_node && !dwindle_locked_v_node)
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return;
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if (dwindle_locked_h_node) {
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float cw = (float)MAX(1, dwindle_locked_h_node->container_w);
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float ox = (float)(cursor->x - drag_begin_cursorx);
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if (config.dwindle_smart_resize) {
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/* Move the boundary toward the cursor: invert direction when
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* the drag started on the right side of the split line. */
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float split_x = dwindle_locked_h_node->container_x +
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cw * dwindle_locked_h_node->drag_init_ratio;
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if (drag_begin_cursorx >= split_x)
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ox = -ox;
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}
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dwindle_locked_h_node->ratio =
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dwindle_locked_h_node->drag_init_ratio + ox / cw;
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dwindle_locked_h_node->ratio =
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CLAMP_FLOAT(dwindle_locked_h_node->ratio, 0.05f, 0.95f);
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}
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if (dwindle_locked_v_node) {
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float ch = (float)MAX(1, dwindle_locked_v_node->container_h);
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float oy = (float)(cursor->y - drag_begin_cursory);
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if (config.dwindle_smart_resize) {
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/* Same logic for the vertical split line. */
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float split_y = dwindle_locked_v_node->container_y +
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ch * dwindle_locked_v_node->drag_init_ratio;
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if (drag_begin_cursory >= split_y)
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oy = -oy;
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}
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dwindle_locked_v_node->ratio =
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dwindle_locked_v_node->drag_init_ratio + oy / ch;
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dwindle_locked_v_node->ratio =
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CLAMP_FLOAT(dwindle_locked_v_node->ratio, 0.05f, 0.95f);
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}
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int32_t n = m->visible_tiling_clients;
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int32_t gap_ih = enablegaps ? m->gappih : 0;
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int32_t gap_iv = enablegaps ? m->gappiv : 0;
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int32_t gap_oh = enablegaps ? m->gappoh : 0;
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int32_t gap_ov = enablegaps ? m->gappov : 0;
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if (config.smartgaps && n == 1)
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gap_ih = gap_iv = gap_oh = gap_ov = 0;
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dwindle_assign(m->pertag->dwindle_root[tag], m->w.x + gap_oh,
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m->w.y + gap_ov, m->w.width - 2 * gap_oh,
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m->w.height - 2 * gap_ov, gap_ih, gap_iv);
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}
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static void dwindle_resize_client_step(Monitor *m, Client *c, int32_t dx,
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int32_t dy) {
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uint32_t tag = m->pertag->curtag;
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DwindleNode *leaf = dwindle_find_leaf(m->pertag->dwindle_root[tag], c);
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if (!leaf)
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return;
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DwindleNode *h_node = NULL;
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DwindleNode *v_node = NULL;
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DwindleNode *node = leaf->parent;
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while (node) {
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if (node->split_h && !h_node)
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h_node = node;
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if (!node->split_h && !v_node)
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v_node = node;
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if (h_node && v_node)
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break;
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node = node->parent;
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}
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if (!h_node && !v_node)
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return;
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if (h_node && dx) {
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float cw = (float)MAX(1, h_node->container_w);
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float delta = (float)dx / cw;
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h_node->ratio = CLAMP_FLOAT(h_node->ratio + delta, 0.05f, 0.95f);
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}
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if (v_node && dy) {
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float ch = (float)MAX(1, v_node->container_h);
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float delta = (float)dy / ch;
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v_node->ratio = CLAMP_FLOAT(v_node->ratio + delta, 0.05f, 0.95f);
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}
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int32_t n_clients = m->visible_tiling_clients;
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int32_t gap_ih = enablegaps ? m->gappih : 0;
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int32_t gap_iv = enablegaps ? m->gappiv : 0;
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int32_t gap_oh = enablegaps ? m->gappoh : 0;
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int32_t gap_ov = enablegaps ? m->gappov : 0;
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if (config.smartgaps && n_clients == 1)
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gap_ih = gap_iv = gap_oh = gap_ov = 0;
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dwindle_assign(m->pertag->dwindle_root[tag], m->w.x + gap_oh,
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m->w.y + gap_ov, m->w.width - 2 * gap_oh,
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m->w.height - 2 * gap_ov, gap_ih, gap_iv);
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}
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static void dwindle_remove_client(Client *c) {
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Monitor *m;
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wl_list_for_each(m, &mons, link) {
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for (uint32_t t = 0; t < LENGTH(tags) + 1; t++)
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dwindle_remove(&m->pertag->dwindle_root[t], c);
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}
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}
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/* Insert a new client respecting dwindle_vsplit, dwindle_hsplit, and
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* dwindle_smart_split config options. */
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static void dwindle_insert_with_config(DwindleNode **root, Client *new_c,
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Client *focused, float ratio) {
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bool as_first = false;
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bool split_h = false;
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bool lock = false;
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if (focused) {
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struct wlr_box *fg = &focused->geom;
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double fcx = fg->x + fg->width * 0.5;
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double fcy = fg->y + fg->height * 0.5;
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if (config.dwindle_smart_split) {
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double nx = (cursor->x - fcx) / (fg->width * 0.5);
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double ny = (cursor->y - fcy) / (fg->height * 0.5);
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if (fabs(ny) > fabs(nx)) {
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split_h = false; // vertical split
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as_first = (ny < 0); // top → new window on top
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} else {
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split_h = true; // horizontal split
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as_first = (nx < 0); // left → new window on left
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}
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lock = true; // lock split direction
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} else {
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// normal mode, auto split
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bool likely_h = (fg->width >= fg->height);
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if (likely_h) {
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if (config.dwindle_hsplit == 0)
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as_first = (cursor->x < fcx);
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else
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as_first = (config.dwindle_hsplit == 2);
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} else {
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if (config.dwindle_vsplit == 0)
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as_first = (cursor->y < fcy);
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else
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as_first = (config.dwindle_vsplit == 2);
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}
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// split_h and lock are false, decided by width/height ratio
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}
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}
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dwindle_insert(root, new_c, focused, ratio, as_first, split_h, lock);
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}
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void dwindle(Monitor *m) {
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int32_t n = m->visible_tiling_clients;
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if (n == 0)
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return;
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uint32_t tag = m->pertag->curtag;
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DwindleNode **root = &m->pertag->dwindle_root[tag];
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float ratio = config.dwindle_split_ratio;
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Client *vis[512];
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int32_t count = 0;
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Client *c;
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wl_list_for_each(c, &clients, link) {
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if (VISIBLEON(c, m) && ISTILED(c))
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vis[count++] = c;
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if (count >= 512)
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break;
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}
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{
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DwindleNode *leaves[512];
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int32_t lc = 0;
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DwindleNode *stack[1024];
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int32_t sp = 0;
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if (*root)
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stack[sp++] = *root;
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while (sp > 0) {
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DwindleNode *nd = stack[--sp];
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if (!nd->is_split) {
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leaves[lc++] = nd;
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} else {
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if (nd->second)
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stack[sp++] = nd->second;
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if (nd->first)
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stack[sp++] = nd->first;
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}
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}
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for (int32_t i = 0; i < lc; i++) {
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bool found = false;
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for (int32_t j = 0; j < count; j++)
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if (vis[j] == leaves[i]->client) {
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found = true;
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break;
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}
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if (!found)
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dwindle_remove(root, leaves[i]->client);
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}
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}
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Client *focused = focustop(m);
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if (focused && !dwindle_find_leaf(*root, focused))
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focused = m->sel;
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for (int32_t i = 0; i < count; i++) {
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if (!dwindle_find_leaf(*root, vis[i]))
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dwindle_insert_with_config(root, vis[i], focused, ratio);
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}
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int32_t gap_ih = enablegaps ? m->gappih : 0;
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int32_t gap_iv = enablegaps ? m->gappiv : 0;
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int32_t gap_oh = enablegaps ? m->gappoh : 0;
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int32_t gap_ov = enablegaps ? m->gappov : 0;
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if (config.smartgaps && n == 1)
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gap_ih = gap_iv = gap_oh = gap_ov = 0;
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dwindle_assign(*root, m->w.x + gap_oh, m->w.y + gap_ov,
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m->w.width - 2 * gap_oh, m->w.height - 2 * gap_ov, gap_ih,
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gap_iv);
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}
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