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    • Expression-result

    Expression-result-fix

    Fixing function for expression-result structures.

    Signature
    (expression-result-fix acl2::x) → new-x
    Arguments
    acl2::x — Guard (expression-resultp acl2::x).
    Returns
    new-x — Type (expression-resultp new-x).

    Definitions and Theorems

    Function: expression-result-fix$inline

    (defun expression-result-fix$inline (acl2::x)
      (declare (xargs :guard (expression-resultp acl2::x)))
      (let ((__function__ 'expression-result-fix))
        (declare (ignorable __function__))
        (mbe :logic
             (case (expression-result-kind acl2::x)
               (:ok (b* ((get (expression-fix acl2::x)))
                      get))
               (:err (b* ((get (fty::reserr-fix acl2::x)))
                       get)))
             :exec acl2::x)))

    Theorem: expression-resultp-of-expression-result-fix

    (defthm expression-resultp-of-expression-result-fix
      (b* ((new-x (expression-result-fix$inline acl2::x)))
        (expression-resultp new-x))
      :rule-classes :rewrite)

    Theorem: expression-result-fix-when-expression-resultp

    (defthm expression-result-fix-when-expression-resultp
      (implies (expression-resultp acl2::x)
               (equal (expression-result-fix acl2::x)
                      acl2::x)))

    Function: expression-result-equiv$inline

    (defun expression-result-equiv$inline (acl2::x acl2::y)
      (declare (xargs :guard (and (expression-resultp acl2::x)
                                  (expression-resultp acl2::y))))
      (equal (expression-result-fix acl2::x)
             (expression-result-fix acl2::y)))

    Theorem: expression-result-equiv-is-an-equivalence

    (defthm expression-result-equiv-is-an-equivalence
      (and (booleanp (expression-result-equiv x y))
           (expression-result-equiv x x)
           (implies (expression-result-equiv x y)
                    (expression-result-equiv y x))
           (implies (and (expression-result-equiv x y)
                         (expression-result-equiv y z))
                    (expression-result-equiv x z)))
      :rule-classes (:equivalence))

    Theorem: expression-result-equiv-implies-equal-expression-result-fix-1

    (defthm
          expression-result-equiv-implies-equal-expression-result-fix-1
      (implies (expression-result-equiv acl2::x x-equiv)
               (equal (expression-result-fix acl2::x)
                      (expression-result-fix x-equiv)))
      :rule-classes (:congruence))

    Theorem: expression-result-fix-under-expression-result-equiv

    (defthm expression-result-fix-under-expression-result-equiv
      (expression-result-equiv (expression-result-fix acl2::x)
                               acl2::x)
      :rule-classes (:rewrite :rewrite-quoted-constant))

    Theorem: equal-of-expression-result-fix-1-forward-to-expression-result-equiv

    (defthm
     equal-of-expression-result-fix-1-forward-to-expression-result-equiv
     (implies (equal (expression-result-fix acl2::x)
                     acl2::y)
              (expression-result-equiv acl2::x acl2::y))
     :rule-classes :forward-chaining)

    Theorem: equal-of-expression-result-fix-2-forward-to-expression-result-equiv

    (defthm
     equal-of-expression-result-fix-2-forward-to-expression-result-equiv
     (implies (equal acl2::x (expression-result-fix acl2::y))
              (expression-result-equiv acl2::x acl2::y))
     :rule-classes :forward-chaining)

    Theorem: expression-result-equiv-of-expression-result-fix-1-forward

    (defthm expression-result-equiv-of-expression-result-fix-1-forward
      (implies (expression-result-equiv (expression-result-fix acl2::x)
                                        acl2::y)
               (expression-result-equiv acl2::x acl2::y))
      :rule-classes :forward-chaining)

    Theorem: expression-result-equiv-of-expression-result-fix-2-forward

    (defthm expression-result-equiv-of-expression-result-fix-2-forward
     (implies
       (expression-result-equiv acl2::x (expression-result-fix acl2::y))
       (expression-result-equiv acl2::x acl2::y))
     :rule-classes :forward-chaining)

    Theorem: expression-result-kind$inline-of-expression-result-fix-x

    (defthm expression-result-kind$inline-of-expression-result-fix-x
     (equal
         (expression-result-kind$inline (expression-result-fix acl2::x))
         (expression-result-kind$inline acl2::x)))

    Theorem: expression-result-kind$inline-expression-result-equiv-congruence-on-x

    (defthm
     expression-result-kind$inline-expression-result-equiv-congruence-on-x
     (implies (expression-result-equiv acl2::x x-equiv)
              (equal (expression-result-kind$inline acl2::x)
                     (expression-result-kind$inline x-equiv)))
     :rule-classes :congruence)

    Theorem: consp-of-expression-result-fix

    (defthm consp-of-expression-result-fix
      (consp (expression-result-fix acl2::x))
      :rule-classes :type-prescription)