/** * Tests if the first set is greater than the second set. */ bool_t set_greater(const set_t* cpset_first, const set_t* cpset_second) { assert(cpset_first != NULL); assert(cpset_second != NULL); #ifdef CSTL_SET_AVL_TREE return _avl_tree_greater(&cpset_first->_t_tree, &cpset_second->_t_tree); #else return _rb_tree_greater(&cpset_first->_t_tree, &cpset_second->_t_tree); #endif }
/** * Tests if the first map is greater than the second map. */ bool_t map_greater(const map_t* cpmap_first, const map_t* cpmap_second) { assert(cpmap_first != NULL); assert(cpmap_second != NULL); assert(_pair_is_inited(&cpmap_first->_pair_temp)); assert(_pair_is_inited(&cpmap_second->_pair_temp)); assert(_map_same_pair_type_ex(&cpmap_first->_pair_temp, &cpmap_second->_pair_temp)); #ifdef CSTL_MAP_AVL_TREE return _avl_tree_greater(&cpmap_first->_t_tree, &cpmap_second->_t_tree); #else return _rb_tree_greater(&cpmap_first->_t_tree, &cpmap_second->_t_tree); #endif }
/** * Tests if the first avl tree is greater than or equal to the second avl tree. */ bool_t _avl_tree_greater_equal(const _avl_tree_t* cpt_first, const _avl_tree_t* cpt_second) { return (_avl_tree_greater(cpt_first, cpt_second) || _avl_tree_equal(cpt_first, cpt_second)) ? true : false; }