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    • Elabindex

    Vl-elabpaths-append

    Concatenate two reversed elabtraversals to get a reversed traversal that (when followed reversed) to the same place as following y reversed, then x reversed.

    Signature
    (vl-elabpaths-append x y) → xy
    Arguments
    x — Guard (vl-elabtraversal-p x).
    y — Guard (vl-elabtraversal-p y).
    Returns
    xy — Type (vl-elabtraversal-p xy).

    Definitions and Theorems

    Function: vl-elabpaths-append

    (defun vl-elabpaths-append (x y)
      (declare (xargs :guard (and (vl-elabtraversal-p x)
                                  (vl-elabtraversal-p y))))
      (let ((__function__ 'vl-elabpaths-append))
        (declare (ignorable __function__))
        (cond ((atom x) (vl-elabtraversal-fix y))
              ((vl-elabinstruction-case (car x) :root)
               (cons (vl-elabinstruction-fix (car x))
                     (vl-elabtraversal-fix y)))
              (t (cons (vl-elabinstruction-fix (car x))
                       (vl-elabpaths-append (cdr x) y))))))

    Theorem: vl-elabtraversal-p-of-vl-elabpaths-append

    (defthm vl-elabtraversal-p-of-vl-elabpaths-append
      (b* ((xy (vl-elabpaths-append x y)))
        (vl-elabtraversal-p xy))
      :rule-classes :rewrite)

    Theorem: vl-elabpaths-append-of-vl-elabtraversal-fix-x

    (defthm vl-elabpaths-append-of-vl-elabtraversal-fix-x
      (equal (vl-elabpaths-append (vl-elabtraversal-fix x)
                                  y)
             (vl-elabpaths-append x y)))

    Theorem: vl-elabpaths-append-vl-elabtraversal-equiv-congruence-on-x

    (defthm vl-elabpaths-append-vl-elabtraversal-equiv-congruence-on-x
      (implies (vl-elabtraversal-equiv x x-equiv)
               (equal (vl-elabpaths-append x y)
                      (vl-elabpaths-append x-equiv y)))
      :rule-classes :congruence)

    Theorem: vl-elabpaths-append-of-vl-elabtraversal-fix-y

    (defthm vl-elabpaths-append-of-vl-elabtraversal-fix-y
      (equal (vl-elabpaths-append x (vl-elabtraversal-fix y))
             (vl-elabpaths-append x y)))

    Theorem: vl-elabpaths-append-vl-elabtraversal-equiv-congruence-on-y

    (defthm vl-elabpaths-append-vl-elabtraversal-equiv-congruence-on-y
      (implies (vl-elabtraversal-equiv y y-equiv)
               (equal (vl-elabpaths-append x y)
                      (vl-elabpaths-append x y-equiv)))
      :rule-classes :congruence)