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    • Two-byte-opcodes

    X86-bsr

    Signature
    (x86-bsr proc-mode start-rip temp-rip 
             prefixes rex-byte opcode modr/m sib x86) 
     
      → 
    x86
    Returns
    x86 — Type (x86p x86), given (x86p x86).

    Definitions and Theorems

    Function: x86-bsr

    (defun x86-bsr (proc-mode start-rip temp-rip
                              prefixes rex-byte opcode modr/m sib x86)
     (declare (xargs :stobjs (x86)))
     (declare (type (integer 0 4) proc-mode)
              (type (signed-byte 48) start-rip)
              (type (signed-byte 48) temp-rip)
              (type (unsigned-byte 52) prefixes)
              (type (unsigned-byte 8) rex-byte)
              (type (unsigned-byte 8) opcode)
              (type (unsigned-byte 8) modr/m)
              (type (unsigned-byte 8) sib))
     (declare (ignorable proc-mode start-rip temp-rip
                         prefixes rex-byte opcode modr/m sib))
     (declare (xargs :guard (and (prefixes-p prefixes)
                                 (modr/m-p modr/m)
                                 (sib-p sib)
                                 (rip-guard-okp proc-mode temp-rip))))
     (let ((__function__ 'x86-bsr))
      (declare (ignorable __function__))
      (b* ((?ctx 'x86-bsr)
           (?r/m (the (unsigned-byte 3)
                      (modr/m->r/m modr/m)))
           (?mod (the (unsigned-byte 2)
                      (modr/m->mod modr/m)))
           (?reg (the (unsigned-byte 3)
                      (modr/m->reg modr/m))))
       (b*
        (((the (integer 1 8) operand-size)
          (select-operand-size proc-mode nil
                               rex-byte nil prefixes nil nil nil x86))
         (p2 (prefixes->seg prefixes))
         (p4? (equal 103 (prefixes->adr prefixes)))
         (seg-reg
             (select-segment-register proc-mode p2 p4? mod r/m sib x86))
         (inst-ac? t)
         ((mv flg0 source
              (the (unsigned-byte 3) increment-rip-by)
              (the (signed-byte 64) addr)
              x86)
          (x86-operand-from-modr/m-and-sib-bytes
               proc-mode
               0 operand-size inst-ac? nil seg-reg p4?
               temp-rip rex-byte r/m mod sib 0 x86))
         ((when flg0)
          (!!ms-fresh :x86-operand-from-modr/m-and-sib-bytes flg0))
         ((mv flg (the (signed-byte 48) temp-rip))
          (add-to-*ip proc-mode
                      temp-rip increment-rip-by x86))
         ((when flg)
          (!!ms-fresh :rip-increment-error temp-rip))
         (badlength? (check-instruction-length start-rip temp-rip 0))
         ((when badlength?)
          (!!fault-fresh :gp 0
                         :instruction-length badlength?))
         (x86 (if (equal source 0)
                  x86
                (!rgfi-size operand-size
                            (reg-index reg rex-byte *r*)
                            (bsr source)
                            rex-byte x86)))
         (x86 (let* ((x86 (!flgi :zf (if (equal source 0) 1 0)
                                 x86))
                     (x86 (!flgi-undefined :cf x86))
                     (x86 (!flgi-undefined :pf x86))
                     (x86 (!flgi-undefined :af x86))
                     (x86 (!flgi-undefined :sf x86))
                     (x86 (!flgi-undefined :of x86)))
                x86))
         (x86 (write-*ip proc-mode temp-rip x86)))
        x86))))

    Theorem: x86p-of-x86-bsr

    (defthm x86p-of-x86-bsr
      (implies (x86p x86)
               (b* ((x86 (x86-bsr proc-mode start-rip temp-rip prefixes
                                  rex-byte opcode modr/m sib x86)))
                 (x86p x86)))
      :rule-classes :rewrite)