/*******************************************************************//**
Initialize lock queue iterator so that it starts to iterate from "lock". bit_no specifies the record number within the heap where the
record is stored. It can be undefined (ULINT_UNDEFINED) in two cases: 1. If the lock is a table lock, thus we have a table lock queue; 2. If the lock is a record lock and it is a wait lock. In thiscase
bit_no is calculated in this function by using
lock_rec_find_set_bit(). There is exactly one bit set in the bitmap
of a wait lock. */ void
lock_queue_iterator_reset( /*======================*/
lock_queue_iterator_t* iter, /*!< out: iterator */ const lock_t* lock, /*!< in: lock to start from */
ulint bit_no) /*!< in: record number in the
heap */
{
lock_sys.assert_locked(*lock);
/*******************************************************************//**
Gets the previous lock in the lock queue, returns NULL if there are no
more locks (i.e. the current lock is the first one). The iterator is
receded (ifnot-NULL is returned).
@return previous lock or NULL */ const lock_t*
lock_queue_iterator_get_prev( /*=========================*/
lock_queue_iterator_t* iter) /*!< in/out: iterator */
{
lock_sys.assert_locked(*iter->current_lock);