Get the exp field from a uinteger-bit-role-value.
(uinteger-bit-role-value->exp x) → exp
This is an ordinary field accessor created by fty::defprod.
Function:
(defun uinteger-bit-role-value->exp$inline (x) (declare (xargs :guard (uinteger-bit-rolep x))) (declare (xargs :guard (equal (uinteger-bit-role-kind x) :value))) (mbe :logic (b* ((x (and (equal (uinteger-bit-role-kind x) :value) x))) (nfix (std::da-nth 0 (cdr x)))) :exec (std::da-nth 0 (cdr x))))
Theorem:
(defthm natp-of-uinteger-bit-role-value->exp (b* ((exp (uinteger-bit-role-value->exp$inline x))) (natp exp)) :rule-classes :rewrite)
Theorem:
(defthm uinteger-bit-role-value->exp$inline-of-uinteger-bit-role-fix-x (equal (uinteger-bit-role-value->exp$inline (uinteger-bit-role-fix x)) (uinteger-bit-role-value->exp$inline x)))
Theorem:
(defthm uinteger-bit-role-value->exp$inline-uinteger-bit-role-equiv-congruence-on-x (implies (uinteger-bit-role-equiv x x-equiv) (equal (uinteger-bit-role-value->exp$inline x) (uinteger-bit-role-value->exp$inline x-equiv))) :rule-classes :congruence)
Theorem:
(defthm uinteger-bit-role-value->exp-when-wrong-kind (implies (not (equal (uinteger-bit-role-kind x) :value)) (equal (uinteger-bit-role-value->exp x) (nfix nil))))