(module-addr-p x) → *
Function:
(defun module-addr-p (x) (declare (xargs :guard (module-p x))) (let ((__function__ 'module-addr-p)) (declare (ignorable __function__)) (mbe :logic (svarlist-addr-p (module-vars x)) :exec (b* (((module x))) (and (assigns-addr-p x.assigns) (assigns-addr-p x.fixups) (constraintlist-addr-p x.constraints) (lhspairs-addr-p x.aliaspairs))))))
Theorem:
(defthm module-addr-p-of-module-fix-x (equal (module-addr-p (module-fix x)) (module-addr-p x)))
Theorem:
(defthm module-addr-p-module-equiv-congruence-on-x (implies (module-equiv x x-equiv) (equal (module-addr-p x) (module-addr-p x-equiv))) :rule-classes :congruence)