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    • Cr4bits

    !cr4bits->uintr

    Update the |X86ISA|::|UINTR| field of a cr4bits bit structure.

    Signature
    (!cr4bits->uintr uintr x) → new-x
    Arguments
    uintr — Guard (bitp uintr).
    x — Guard (cr4bits-p x).
    Returns
    new-x — Type (cr4bits-p new-x).

    Definitions and Theorems

    Function: !cr4bits->uintr$inline

    (defun !cr4bits->uintr$inline (uintr x)
     (declare (xargs :guard (and (bitp uintr) (cr4bits-p x))))
     (mbe
      :logic
      (b* ((uintr (mbe :logic (bfix uintr) :exec uintr))
           (x (cr4bits-fix x)))
        (part-install uintr x :width 1 :low 25))
      :exec (the (unsigned-byte 26)
                 (logior (the (unsigned-byte 26)
                              (logand (the (unsigned-byte 26) x)
                                      (the (signed-byte 27) -33554433)))
                         (the (unsigned-byte 26)
                              (ash (the (unsigned-byte 1) uintr)
                                   25))))))

    Theorem: cr4bits-p-of-!cr4bits->uintr

    (defthm cr4bits-p-of-!cr4bits->uintr
      (b* ((new-x (!cr4bits->uintr$inline uintr x)))
        (cr4bits-p new-x))
      :rule-classes :rewrite)

    Theorem: !cr4bits->uintr$inline-of-bfix-uintr

    (defthm !cr4bits->uintr$inline-of-bfix-uintr
      (equal (!cr4bits->uintr$inline (bfix uintr) x)
             (!cr4bits->uintr$inline uintr x)))

    Theorem: !cr4bits->uintr$inline-bit-equiv-congruence-on-uintr

    (defthm !cr4bits->uintr$inline-bit-equiv-congruence-on-uintr
      (implies (bit-equiv uintr uintr-equiv)
               (equal (!cr4bits->uintr$inline uintr x)
                      (!cr4bits->uintr$inline uintr-equiv x)))
      :rule-classes :congruence)

    Theorem: !cr4bits->uintr$inline-of-cr4bits-fix-x

    (defthm !cr4bits->uintr$inline-of-cr4bits-fix-x
      (equal (!cr4bits->uintr$inline uintr (cr4bits-fix x))
             (!cr4bits->uintr$inline uintr x)))

    Theorem: !cr4bits->uintr$inline-cr4bits-equiv-congruence-on-x

    (defthm !cr4bits->uintr$inline-cr4bits-equiv-congruence-on-x
      (implies (cr4bits-equiv x x-equiv)
               (equal (!cr4bits->uintr$inline uintr x)
                      (!cr4bits->uintr$inline uintr x-equiv)))
      :rule-classes :congruence)

    Theorem: !cr4bits->uintr-is-cr4bits

    (defthm !cr4bits->uintr-is-cr4bits
      (equal (!cr4bits->uintr uintr x)
             (change-cr4bits x :uintr uintr)))

    Theorem: cr4bits->uintr-of-!cr4bits->uintr

    (defthm cr4bits->uintr-of-!cr4bits->uintr
      (b* ((?new-x (!cr4bits->uintr$inline uintr x)))
        (equal (cr4bits->uintr new-x)
               (bfix uintr))))

    Theorem: !cr4bits->uintr-equiv-under-mask

    (defthm !cr4bits->uintr-equiv-under-mask
      (b* ((?new-x (!cr4bits->uintr$inline uintr x)))
        (cr4bits-equiv-under-mask new-x x 33554431)))