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    • Elabindex

    Vl-elabscopes-pop/update-one

    Pop a scope off the stack, updating its entry in the outer scope.

    Signature
    (vl-elabscopes-pop/update-one scopes) 
      → 
    (mv new-scopes revpath)
    Arguments
    scopes — Guard (vl-elabscopes-p scopes).
    Returns
    new-scopes — Type (vl-elabscopes-p new-scopes).
    revpath — Type (vl-elabtraversal-p revpath).

    Definitions and Theorems

    Function: vl-elabscopes-pop/update-one

    (defun vl-elabscopes-pop/update-one (scopes)
     (declare (xargs :guard (vl-elabscopes-p scopes)))
     (let ((__function__ 'vl-elabscopes-pop/update-one))
       (declare (ignorable __function__))
       (b*
         ((scopes (vl-elabscopes-fix scopes))
          ((when (< (len scopes) 2))
           (raise "Not enough scopes remaining to pop!~%")
           (mv scopes nil))
          ((list* (cons scope1key scope1)
                  (cons scope2key scope2)
                  rest)
           scopes)
          ((unless scope1key)
           (mv (cdr scopes)
               (list (vl-elabinstruction-push-anon scope1))))
          (scope2
               (vl-elabscope-update-subscope? scope1key scope1 scope2)))
         (mv (cons (cons scope2key scope2) rest)
             (list (vl-elabinstruction-push-named scope1key))))))

    Theorem: vl-elabscopes-p-of-vl-elabscopes-pop/update-one.new-scopes

    (defthm vl-elabscopes-p-of-vl-elabscopes-pop/update-one.new-scopes
      (b* (((mv ?new-scopes ?revpath)
            (vl-elabscopes-pop/update-one scopes)))
        (vl-elabscopes-p new-scopes))
      :rule-classes :rewrite)

    Theorem: vl-elabtraversal-p-of-vl-elabscopes-pop/update-one.revpath

    (defthm vl-elabtraversal-p-of-vl-elabscopes-pop/update-one.revpath
      (b* (((mv ?new-scopes ?revpath)
            (vl-elabscopes-pop/update-one scopes)))
        (vl-elabtraversal-p revpath))
      :rule-classes :rewrite)

    Theorem: count-of-vl-elabscopes-pop/update-one-weak

    (defthm count-of-vl-elabscopes-pop/update-one-weak
     (b* (((mv ?new-scopes ?revpath)
           (vl-elabscopes-pop/update-one scopes)))
       (<= (len new-scopes)
           (len (vl-elabscopes-fix scopes))))
     :rule-classes
     ((:linear :trigger-terms
               ((len (mv-nth 0
                             (vl-elabscopes-pop/update-one scopes)))))))

    Theorem: count-of-vl-elabscopes-pop/update-one-strong

    (defthm count-of-vl-elabscopes-pop/update-one-strong
     (b* (((mv ?new-scopes ?revpath)
           (vl-elabscopes-pop/update-one scopes)))
       (implies (and (consp (vl-elabscopes-fix scopes))
                     (consp (cdr (vl-elabscopes-fix scopes))))
                (< (len new-scopes)
                   (len (vl-elabscopes-fix scopes)))))
     :rule-classes
     ((:linear :trigger-terms
               ((len (mv-nth 0
                             (vl-elabscopes-pop/update-one scopes)))))))

    Theorem: vl-elabscopes-pop/update-one-of-vl-elabscopes-fix-scopes

    (defthm vl-elabscopes-pop/update-one-of-vl-elabscopes-fix-scopes
      (equal (vl-elabscopes-pop/update-one (vl-elabscopes-fix scopes))
             (vl-elabscopes-pop/update-one scopes)))

    Theorem: vl-elabscopes-pop/update-one-vl-elabscopes-equiv-congruence-on-scopes

    (defthm
     vl-elabscopes-pop/update-one-vl-elabscopes-equiv-congruence-on-scopes
     (implies (vl-elabscopes-equiv scopes scopes-equiv)
              (equal (vl-elabscopes-pop/update-one scopes)
                     (vl-elabscopes-pop/update-one scopes-equiv)))
     :rule-classes :congruence)