• Top
    • Documentation
    • Books
    • Boolean-reasoning
    • Projects
      • Apt
      • Zfc
      • Acre
      • Milawa
      • Smtlink
      • Abnf
      • Vwsim
      • Isar
      • Wp-gen
      • Dimacs-reader
      • Pfcs
      • Legacy-defrstobj
      • Proof-checker-array
      • Soft
      • C
        • Syntax-for-tools
        • Atc
        • Language
          • Abstract-syntax
          • Integer-ranges
          • Implementation-environments
          • Dynamic-semantics
            • Exec
            • Exec-arrsub
            • Exec-expr-pure
            • Exec-expr-asg
            • Init-value-to-value
            • Exec-memberp
            • Apconvert-expr-value
            • Exec-address
            • Exec-member
            • Init-scope
            • Exec-unary
              • Exec-fun
              • Exec-block-item
              • Eval-iconst
              • Exec-binary-strict-pure
              • Exec-expr-pure-list
              • Eval-binary-strict-pure
              • Exec-block-item-list
              • Exec-indir
              • Exec-expr-call-or-pure
              • Exec-stmt-while
              • Exec-stmt
              • Exec-ident
              • Eval-cast
              • Exec-cast
              • Eval-unary
              • Exec-const
              • Exec-initer
              • Exec-expr-call-or-asg
              • Eval-const
              • Exec-expr-call
            • Static-semantics
            • Grammar
            • Integer-formats
            • Types
            • Portable-ascii-identifiers
            • Values
            • Integer-operations
            • Computation-states
            • Object-designators
            • Operations
            • Errors
            • Tag-environments
            • Function-environments
            • Character-sets
            • Flexible-array-member-removal
            • Arithmetic-operations
            • Pointer-operations
            • Bytes
            • Keywords
            • Real-operations
            • Array-operations
            • Scalar-operations
            • Structure-operations
          • Representation
          • Transformation-tools
          • Insertion-sort
          • Pack
        • Farray
        • Rp-rewriter
        • Instant-runoff-voting
        • Imp-language
        • Sidekick
        • Leftist-trees
        • Java
        • Taspi
        • Bitcoin
        • Riscv
        • Des
        • Ethereum
        • X86isa
        • Sha-2
        • Yul
        • Zcash
        • Proof-checker-itp13
        • Regex
        • ACL2-programming-language
        • Json
        • Jfkr
        • Equational
        • Cryptography
        • Poseidon
        • Where-do-i-place-my-book
        • Axe
        • Bigmems
        • Builtins
        • Execloader
        • Aleo
        • Solidity
        • Paco
        • Concurrent-programs
        • Bls12-377-curves
      • Debugging
      • Std
      • Proof-automation
      • Macro-libraries
      • ACL2
      • Interfacing-tools
      • Hardware-verification
      • Software-verification
      • Math
      • Testing-utilities
    • Dynamic-semantics

    Exec-unary

    Execute a unary operation on an expression value.

    Signature
    (exec-unary op arg compst) → eval
    Arguments
    op — Guard (unopp op).
    arg — Guard (expr-valuep arg).
    compst — Guard (compustatep compst).
    Returns
    eval — Type (expr-value-resultp eval).

    This ACL2 function wraps eval-unary to take and return expression values, and covers the remaining two unary operators & and *. Note that the only unary operator that needs an expression value (as opposed to just a value) is &, and that only unary operator that returns an expression value (as opposed to just a value) is *. The other four unary operators only operate on values, as factored in eval-unary.

    Before calling eval-unary, we perform array-to-pointer conversion [C17:5.3.2.1/3]. The functions handle & and * perform that conversion as needed (specifically, & does not, while * does).

    Definitions and Theorems

    Function: exec-unary

    (defun exec-unary (op arg compst)
      (declare (xargs :guard (and (unopp op)
                                  (expr-valuep arg)
                                  (compustatep compst))))
      (let ((__function__ 'exec-unary))
        (declare (ignorable __function__))
        (case (unop-kind op)
          (:address (exec-address arg))
          (:indir (exec-indir arg compst))
          (t (b* ((arg (apconvert-expr-value arg))
                  ((when (errorp arg)) arg)
                  (val (eval-unary op (expr-value->value arg)))
                  ((when (errorp val)) val))
               (make-expr-value :value val
                                :object nil))))))

    Theorem: expr-value-resultp-of-exec-unary

    (defthm expr-value-resultp-of-exec-unary
      (b* ((eval (exec-unary op arg compst)))
        (expr-value-resultp eval))
      :rule-classes :rewrite)

    Theorem: exec-unary-of-unop-fix-op

    (defthm exec-unary-of-unop-fix-op
      (equal (exec-unary (unop-fix op) arg compst)
             (exec-unary op arg compst)))

    Theorem: exec-unary-unop-equiv-congruence-on-op

    (defthm exec-unary-unop-equiv-congruence-on-op
      (implies (unop-equiv op op-equiv)
               (equal (exec-unary op arg compst)
                      (exec-unary op-equiv arg compst)))
      :rule-classes :congruence)

    Theorem: exec-unary-of-expr-value-fix-arg

    (defthm exec-unary-of-expr-value-fix-arg
      (equal (exec-unary op (expr-value-fix arg)
                         compst)
             (exec-unary op arg compst)))

    Theorem: exec-unary-expr-value-equiv-congruence-on-arg

    (defthm exec-unary-expr-value-equiv-congruence-on-arg
      (implies (expr-value-equiv arg arg-equiv)
               (equal (exec-unary op arg compst)
                      (exec-unary op arg-equiv compst)))
      :rule-classes :congruence)

    Theorem: exec-unary-of-compustate-fix-compst

    (defthm exec-unary-of-compustate-fix-compst
      (equal (exec-unary op arg (compustate-fix compst))
             (exec-unary op arg compst)))

    Theorem: exec-unary-compustate-equiv-congruence-on-compst

    (defthm exec-unary-compustate-equiv-congruence-on-compst
      (implies (compustate-equiv compst compst-equiv)
               (equal (exec-unary op arg compst)
                      (exec-unary op arg compst-equiv)))
      :rule-classes :congruence)