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    • Abstract-syntax-operations

    Check-expr-mul

    Check if an expression is a multiplication.

    Signature
    (check-expr-mul expr) → (mv yes/no arg1 arg2)
    Arguments
    expr — Guard (exprp expr).
    Returns
    yes/no — Type (booleanp yes/no).
    arg1 — Type (exprp arg1).
    arg2 — Type (exprp arg2).

    If it is, return its two sub-expressions.

    Definitions and Theorems

    Function: check-expr-mul

    (defun check-expr-mul (expr)
      (declare (xargs :guard (exprp expr)))
      (if (and (expr-case expr :binary)
               (binop-case (expr-binary->op expr)
                           :mul))
          (mv t (expr-binary->arg1 expr)
              (expr-binary->arg2 expr))
        (mv nil (irr-expr) (irr-expr))))

    Theorem: booleanp-of-check-expr-mul.yes/no

    (defthm booleanp-of-check-expr-mul.yes/no
      (b* (((mv ?yes/no ?arg1 ?arg2)
            (check-expr-mul expr)))
        (booleanp yes/no))
      :rule-classes :rewrite)

    Theorem: exprp-of-check-expr-mul.arg1

    (defthm exprp-of-check-expr-mul.arg1
      (b* (((mv ?yes/no ?arg1 ?arg2)
            (check-expr-mul expr)))
        (exprp arg1))
      :rule-classes :rewrite)

    Theorem: exprp-of-check-expr-mul.arg2

    (defthm exprp-of-check-expr-mul.arg2
      (b* (((mv ?yes/no ?arg1 ?arg2)
            (check-expr-mul expr)))
        (exprp arg2))
      :rule-classes :rewrite)

    Theorem: expr-count-of-check-expr-mul-arg1

    (defthm expr-count-of-check-expr-mul-arg1
      (b* (((mv ?yes/no ?arg1 ?arg2)
            (check-expr-mul expr)))
        (implies yes/no
                 (< (expr-count arg1)
                    (expr-count expr))))
      :rule-classes :linear)

    Theorem: expr-count-of-check-expr-mul-arg2

    (defthm expr-count-of-check-expr-mul-arg2
      (b* (((mv ?yes/no ?arg1 ?arg2)
            (check-expr-mul expr)))
        (implies yes/no
                 (< (expr-count arg2)
                    (expr-count expr))))
      :rule-classes :linear)

    Theorem: check-expr-mul-of-expr-fix-expr

    (defthm check-expr-mul-of-expr-fix-expr
      (equal (check-expr-mul (expr-fix expr))
             (check-expr-mul expr)))

    Theorem: check-expr-mul-expr-equiv-congruence-on-expr

    (defthm check-expr-mul-expr-equiv-congruence-on-expr
      (implies (expr-equiv expr expr-equiv)
               (equal (check-expr-mul expr)
                      (check-expr-mul expr-equiv)))
      :rule-classes :congruence)