(vl-pp-luciddb-aux x &key (ps 'ps)) → ps
Function:
(defun vl-pp-luciddb-aux-fn (x ps) (declare (xargs :stobjs (ps))) (declare (xargs :guard (vl-luciddb-p x))) (let ((__function__ 'vl-pp-luciddb-aux)) (declare (ignorable __function__)) (b* ((x (vl-luciddb-fix x)) ((when (atom x)) ps) ((cons key val) (car x))) (vl-ps-seq (vl-print " ") (vl-pp-lucidkey key) (vl-print ": ") (vl-indent 40) (vl-pp-lucidval val) (vl-println "") (vl-pp-luciddb-aux (cdr x))))))
Theorem:
(defthm vl-pp-luciddb-aux-fn-of-vl-luciddb-fix-x (equal (vl-pp-luciddb-aux-fn (vl-luciddb-fix x) ps) (vl-pp-luciddb-aux-fn x ps)))
Theorem:
(defthm vl-pp-luciddb-aux-fn-vl-luciddb-equiv-congruence-on-x (implies (vl-luciddb-equiv x x-equiv) (equal (vl-pp-luciddb-aux-fn x ps) (vl-pp-luciddb-aux-fn x-equiv ps))) :rule-classes :congruence)