570 lines
22 KiB
Org Mode
570 lines
22 KiB
Org Mode
:PROPERTIES:
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:ID: lisp-utils-skill
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:CREATED: [2026-04-23 Thu]
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:END:
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#+TITLE: SKILL: Lisp Utils (Utilities + Repair + Validation)
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#+STARTUP: content
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#+FILETAGS: :system:lisp:utilities:repair:validation:autonomy:
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* Overview
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The *Lisp Utils* skill provides general-purpose Lisp utilities for the entire system. It combines:
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- Character/string utilities (count-char, etc.)
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- Syntax repair (deterministic + neural)
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- Structural validation (paren balance)
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- Syntactic validation (reader check)
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- Semantic validation (whitelist AST walk)
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This is a general utility skill - not exclusive to self-editing. Used by:
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- The agent to fix syntax errors (self-edit use case)
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- The validation gate before executing Lisp
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- Any skill needing string/character manipulation
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* Phase A: Demand (PRD)
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:PROPERTIES:
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:STATUS: SIGNED
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:END:
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** 1. Purpose
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Provide a unified utility library for Lisp code manipulation and validation.
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** 2. User Needs
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- Character counting utilities (general purpose)
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- Deterministic syntax repair (auto-balance parens)
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- Neural syntax repair (LLM-powered deep fix)
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- Structural validation (balanced parens without reader)
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- Syntactic validation (reader check)
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- Semantic validation (whitelist enforcement)
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** 3. Success Criteria
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- [X] `count-char` works for any character
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- [X] `deterministic-repair` balances parentheses
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- [X] `neural-repair` uses LLM for complex fixes
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- [X] Structural check runs in O(n) without reader
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- [X] Syntactic check catches malformed sexps
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- [X] Semantic check enforces whitelist
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* Phase B: Blueprint (PROTOCOL)
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:PROPERTIES:
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:STATUS: SIGNED
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:END:
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** 1. Architectural Intent
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Single entry point `lisp-utils-validate` runs three sequential checks.
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Separate repair functions that can be called independently.
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** 2. Semantic Interfaces
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- `(count-char char string)` → integer
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- `(deterministic-repair code-string)` → fixed string
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- `(neural-repair code-string error-msg)` → fixed string
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- `(lisp-utils-validate code-string &key strict)` → plist
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* Phase D: Build (Implementation)
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** Package Context
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#+begin_src lisp :tangle ./org-skill-lisp-utils.lisp
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(in-package :opencortex)
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#+end_src
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** Character & String Utilities
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General-purpose utilities for string manipulation.
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#+begin_src lisp :tangle ./org-skill-lisp-utils.lisp
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(defun count-char (char string)
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"Counts occurrences of CHAR in STRING.
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Returns an integer count."
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(let ((count 0))
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(loop for c across string
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when (char= c char)
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do (incf count))
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count))
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#+end_src
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** Syntax Repair (Deterministic)
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Attempts instant fixes on broken Lisp code (e.g., balancing parens).
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This is the fast path - used for simple syntax errors.
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#+begin_src lisp :tangle ./org-skill-lisp-utils.lisp
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(defun deterministic-repair (code)
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"Attempts instant fixes on broken Lisp code (e.g., balancing parens).
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Returns the fixed code string."
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(let* ((open-parens (count-char #\( code))
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(close-parens (count-char #\) code))
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(diff (- open-parens close-parens)))
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(if (> diff 0)
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(concatenate 'string code (make-string diff :initial-element #\)))
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code)))
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#+end_src
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** Syntax Repair (Neural)
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Uses the LLM to deeply repair syntax structure when deterministic fails.
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This is the slow path - used for complex errors.
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#+begin_src lisp :tangle ./org-skill-lisp-utils.lisp
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(defun neural-repair (code error-message)
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"Uses the Probabilistic Engine to deeply repair the syntax structure.
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Returns the fixed code string."
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(let ((prompt (format nil "The following Lisp code failed to parse.
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ERROR: ~a
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CODE: ~a
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MANDATE: Output EXACTLY ONE valid Common Lisp list. Do not explain. Do not use markdown blocks."
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error-message code))
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(system-prompt "You are a Lisp Syntax Repair Actuator. Return only valid, balanced Lisp code."))
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(let ((repaired (ask-probabilistic prompt :system-prompt system-prompt)))
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(string-trim '(#\Space #\Newline #\Tab) repaired))))
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#+end_src
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** Check 1: Structural Validation (Paren Balance)
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Scans the raw string character-by-character, tracking open/close pairs.
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This is O(n) and does not invoke the Lisp reader.
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#+begin_src lisp :tangle ./org-skill-lisp-utils.lisp
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(defun lisp-utils-check-structural (code-string)
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"Checks for balanced parens, brackets, and terminated strings.
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Returns (VALUES t nil) if clean, or (VALUES nil reason-string line col)."
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(let ((stack nil)
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(in-string nil)
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(escaped nil)
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(line 1)
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(col 0)
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(last-open-line 1)
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(last-open-col 0))
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(dotimes (i (length code-string))
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(let ((ch (char code-string i)))
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(cond (escaped (setf escaped nil))
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((char= ch #\\) (setf escaped t))
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(in-string
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(when (char= ch #\") (setf in-string nil)))
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((char= ch #\;)
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(loop while (and (< i (1- (length code-string)))
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(not (char= (char code-string (1+ i)) #\Newline)))
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do (incf i))
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(incf line) (setf col 0))
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((char= ch #\")
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(setf in-string t))
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((member ch '(#\( #\[))
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(push (list (string ch) line col) stack)
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(setf last-open-line line last-open-col col))
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((char= ch #\))
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(cond ((null stack)
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(return-from lisp-utils-check-structural
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(values nil (format nil "Unexpected ')' at line ~a, col ~a" line col) line col)))
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((string= (caar stack) "[")
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(return-from lisp-utils-check-structural
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(values nil (format nil "Mismatched ']' expected at line ~a, col ~a" line col) line col)))
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(t (pop stack))))
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((char= ch #\])
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(cond ((null stack)
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(return-from lisp-utils-check-structural
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(values nil (format nil "Unexpected ']' at line ~a, col ~a" line col) line col)))
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((string= (caar stack) "(")
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(return-from lisp-utils-check-structural
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(values nil (format nil "Mismatched ')' expected at line ~a, col ~a" line col) line col)))
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(t (pop stack))))
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((char= ch #\Newline)
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(incf line) (setf col 0)))
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(unless (char= ch #\Newline) (incf col))))
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(if (null stack)
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(values t nil nil nil)
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(values nil (format nil "Unbalanced '~a' opened at line ~a, col ~a"
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(caar stack) last-open-line last-open-col)
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last-open-line last-open-col))))
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#+end_src
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** Check 2: Syntactic Validation (Reader Check)
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Wraps the code and attempts to read with *read-eval* disabled.
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#+begin_src lisp :tangle ./org-skill-lisp-utils.lisp
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(defun lisp-utils-check-syntactic (code-string)
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"Checks if the code can be read by SBCL with *read-eval* nil.
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Returns (VALUES t nil) if clean, or (VALUES nil error-message nil nil)."
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(handler-case
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(let ((*read-eval* nil))
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(with-input-from-string (stream (format nil "(progn ~a)" code-string))
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(loop for form = (read stream nil :eof) until (eq form :eof)))
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(values t nil nil nil))
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(error (c)
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(let ((msg (format nil "~a" c)))
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(values nil msg nil nil)))))
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#+end_src
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** Check 3: Semantic Validation (Whitelist AST Walk)
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Recursively walks the parsed AST and verifies whitelisted symbols.
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#+begin_src lisp :tangle ./org-skill-lisp-utils.lisp
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(defparameter *lisp-utils-whitelist*
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'(;; Math & Logic
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+ - * / = < > <= >= 1+ 1- min max mod abs floor ceiling round
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and or not null eq eql equal string= string-equal char= char-equal
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;; List Manipulation
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list cons car cdr cadr cddr cdar caar caddr cdddr append mapcar remove-if remove-if-not
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length reverse sort nth nthcdr push pop last butlast subseq
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;; Plists, Alists, and Hash Tables
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getf gethash assoc acons pairlis rassoc
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;; Control Flow
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let let* if cond when unless case typecase prog1 progn
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;; Strings
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format concatenate string-downcase string-upcase search subseq replace
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;; Type predicates
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stringp numberp integerp listp symbolp keywordp null
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;; Kernel safe symbols
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opencortex::harness-log
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opencortex::snapshot-memory opencortex::rollback-memory
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opencortex::lookup-object opencortex::list-objects-by-type
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opencortex::ingest-ast opencortex::find-headline-missing-id
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opencortex::context-query-store opencortex::context-get-active-projects
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opencortex::context-get-recent-completed-tasks opencortex::context-list-all-skills
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opencortex::context-get-system-logs opencortex::context-assemble-global-awareness
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opencortex::org-object-id opencortex::org-object-type opencortex::org-object-attributes
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opencortex::org-object-content opencortex::org-object-parent-id
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opencortex::org-object-children opencortex::org-object-version
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opencortex::org-object-last-sync opencortex::org-object-hash
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opencortex::org-object-vector
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;; Essential macros and special operators
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declare ignore quote function lambda defun defvar defparameter defmacro
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;; Safe I/O
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with-open-file write-string read-line
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;; Package introspection
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find-package make-package in-package do-external-symbols find-symbol
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;; Safe system interaction
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uiop:run-program uiop:getenv uiop:merge-pathnames* uiop:file-exists-p
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uiop:directory-exists-p uiop:read-file-string uiop:split-string
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;; Time
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get-universal-time get-internal-real-time sleep
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;; Equality
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equalp = equal eq eql)
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"Static whitelist of symbols permitted in the Lisp Utils sandbox.")
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(defun lisp-utils-ast-walk (form)
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"Recursively walks the Lisp AST. Returns T if safe, NIL if unsafe."
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(cond
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((or (stringp form) (numberp form) (keywordp form) (characterp form)) t)
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((symbolp form)
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(or (member form *lisp-utils-whitelist* :test #'string-equal)
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(member (format nil "~a" form) *lisp-utils-whitelist* :test #'string-equal)))
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((listp form)
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(let ((head (car form)))
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(cond
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((eq head 'quote) t)
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((not (symbolp head)) nil)
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((member head *lisp-utils-whitelist* :test #'string-equal)
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(every #'lisp-utils-ast-walk (cdr form)))
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(t
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(harness-log "LISP UTILS: Blocked call to non-whitelisted function ~a" head)
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nil))))
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(t nil)))
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(defun lisp-utils-check-semantic (code-string)
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"Checks if all symbols in CODE-STRING are whitelisted.
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Returns (VALUES t nil) if clean, or (VALUES nil reason-string nil nil)."
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(handler-case
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(let ((*read-eval* nil))
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(with-input-from-string (stream (format nil "(progn ~a)" code-string))
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(loop for form = (read stream nil :eof)
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until (eq form :eof)
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do (unless (lisp-utils-ast-walk form)
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(return-from lisp-utils-check-semantic
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(values nil "Code contains non-whitelisted symbols." nil nil)))))
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(values t nil nil nil))
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(error (c)
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(values nil (format nil "Semantic check failed: ~a" c) nil nil))))
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#+end_src
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** Unified Entry Point
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Orchestrates the three validation checks.
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#+begin_src lisp :tangle ./org-skill-lisp-utils.lisp
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(defun lisp-utils-validate (code-string &key strict)
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"Validates Lisp code through structural, syntactic, and optional semantic checks.
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Returns a plist:
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(:status :success :checks (:structural t :syntactic t :semantic t))
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or
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(:status :error :failed <check-key> :reason <string> :line <n> :col <n>)
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When STRICT is non-nil, the semantic whitelist check is enforced."
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(let ((structural-ok nil) (syntactic-ok nil) (semantic-ok nil)
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(reason nil) (line nil) (col nil))
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;; Phase 1: Structural
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(multiple-value-setq (structural-ok reason line col)
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(lisp-utils-check-structural code-string))
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(unless structural-ok
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(return-from lisp-utils-validate
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(list :status :error :failed :structural :reason reason :line line :col col)))
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;; Phase 2: Syntactic
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(multiple-value-setq (syntactic-ok reason line col)
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(lisp-utils-check-syntactic code-string))
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(unless syntactic-ok
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(return-from lisp-utils-validate
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(list :status :error :failed :syntactic :reason reason :line line :col col)))
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;; Phase 3: Semantic (only when strict)
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(when strict
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(multiple-value-setq (semantic-ok reason line col)
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(lisp-utils-check-semantic code-string))
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(unless semantic-ok
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(return-from lisp-utils-validate
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(list :status :error :failed :semantic :reason reason :line line :col col))))
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;; All clear
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(list :status :success
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:checks (list :structural t :syntactic t :semantic (or (not strict) semantic-ok)))))
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#+end_src
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** Cognitive Tools
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Exposes utilities to the Probabilistic Engine.
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#+begin_src lisp :tangle ./org-skill-lisp-utils.lisp
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(def-cognitive-tool :validate-lisp
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"Deterministically validates Lisp code for structural, syntactic, and semantic correctness.
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Use this BEFORE declaring any Lisp code edit complete."
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((:code :type :string :description "The Lisp code string to validate.")
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(:strict :type :boolean :description "If non-nil, enforces the semantic whitelist."))
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:body (lambda (args)
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(let ((code (getf args :code))
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(strict (getf args :strict)))
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(if (and code (stringp code))
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(lisp-utils-validate code :strict strict)
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(list :status :error :reason "Missing :code argument.")))))
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(def-cognitive-tool :repair-lisp
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"Repairs broken Lisp code using deterministic first, then neural escalation."
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((:code :type :string :description "The broken Lisp code string")
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(:error :type :string :description "The error message from parsing failure"))
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:body (lambda (args)
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(let ((code (getf args :code))
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(error-msg (getf args :error)))
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(if (and code error-msg)
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(let ((fast-fix (deterministic-repair code)))
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(handler-case
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(let ((repaired (read-from-string fast-fix)))
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(format nil "~a" repaired))
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(error ()
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(let ((deep-fix (neural-repair code error-msg)))
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(handler-case
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(let ((repaired (read-from-string deep-fix)))
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(format nil "~a" repaired))
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(error ()
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"REPAIR FAILED"))))))
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(list :status :error :reason "Missing :code or :error argument.")))))
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#+end_src
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** Skill Definition: Lisp Repair
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Intercepts :syntax-error events and repairs the code.
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#+begin_src lisp :tangle ./org-skill-lisp-utils.lisp
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(defskill :skill-lisp-repair
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:priority 90
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:trigger (lambda (ctx) (eq (getf (getf ctx :payload) :sensor) :syntax-error))
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:probabilistic nil
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:deterministic (lambda (action context)
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(declare (ignore action))
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(let* ((payload (getf context :payload))
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(code (getf payload :code))
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(error-msg (getf payload :error)))
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(harness-log "LISP REPAIR: Reacting to syntax error...")
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(let ((fast-fix (deterministic-repair code)))
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(handler-case
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(let ((repaired (read-from-string fast-fix)))
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(harness-log "LISP REPAIR: Deterministic repair SUCCESS.")
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repaired)
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(error ()
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(harness-log "LISP REPAIR: Deterministic failed. Escalating to neural...")
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(let ((deep-fix (neural-repair code error-msg)))
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(handler-case
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(let ((repaired (read-from-string deep-fix)))
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(harness-log "LISP REPAIR: Neural repair SUCCESS.")
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repaired)
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(error ()
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(harness-log "LISP REPAIR: Neural repair failed.")
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(list :type :LOG :payload (list :text "Lisp Repair Failed.")))))))))))
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#+end_src
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** Skill Definition: Lisp Validator
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Validates all Lisp code before execution.
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#+begin_src lisp :tangle ./org-skill-lisp-utils.lisp
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(defskill :skill-lisp-validator
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:priority 900
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:trigger (lambda (ctx)
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(let ((candidate (getf ctx :approved-action)))
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(when candidate
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(let ((payload (getf candidate :payload)))
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(member (getf payload :action) '(:eval :shell))))))
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:probabilistic nil
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:deterministic (lambda (action context)
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(declare (ignore context))
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(let ((payload (getf action :payload)))
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(if (eq (getf payload :action) :eval)
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(let* ((code (getf payload :code))
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(result (lisp-utils-validate code :strict t)))
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(if (eq (getf result :status) :error)
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(progn
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(harness-log "LISP VALIDATOR: Blocked unsafe :eval action. ~a"
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(getf result :reason))
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(list :type :LOG
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:payload (list :level :error
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:text (format nil "LISP VALIDATOR: Blocked unsafe eval. ~a"
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(getf result :reason)))))
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action))
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action))))
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#+end_src
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* Phase E: Chaos (Verification)
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#+begin_src lisp :tangle ./tests/lisp-utils-tests.lisp
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(defpackage :opencortex-lisp-utils-tests
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(:use :cl :fiveam :opencortex)
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(:export #:lisp-utils-suite))
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(in-package :opencortex-lisp-utils-tests)
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(def-suite lisp-utils-suite
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:description "Tests for the Lisp Utils skill.")
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(in-suite lisp-utils-suite)
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;; Character utilities
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;; Character utilities
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(test count-char-balanced
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(is (= (opencortex::count-char #\( "(+ 1 2)") 1))
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(is (= (opencortex::count-char #\) "(+ 1 2)") 1)))
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(test count-char-unbalanced
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(is (= (opencortex::count-char #\( "(+ 1 2") 1))
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(is (= (opencortex::count-char #\) "(+ 1 2") 0)))
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(test count-char-empty
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(is (= (opencortex::count-char #\( "") 0)))
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;; Deterministic repair
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(test deterministic-repair-balanced
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(is (string= (opencortex::deterministic-repair "(+ 1 2)") "(+ 1 2)")))
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(test deterministic-repair-unbalanced-open
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(is (string= (opencortex::deterministic-repair "(+ 1 2") "(+ 1 2)")))
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(test deterministic-repair-unbalanced-close
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(is (string= (opencortex::deterministic-repair "(+ 1 2))") "(+ 1 2))")))
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(test deterministic-repair-empty
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(is (string= (opencortex::deterministic-repair "") "")))
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;; Structural check
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(test structural-valid
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(multiple-value-bind (ok reason line col)
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(opencortex::lisp-utils-check-structural "(+ 1 2)")
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(is (eq ok t))))
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|
|
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(test structural-unbalanced
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(multiple-value-bind (ok reason line col)
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(opencortex::lisp-utils-check-structural "(+ 1 2")
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(is (not ok))
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(is (search "Unbalanced" reason))))
|
|
|
|
(test structural-mismatched
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|
(multiple-value-bind (ok reason line col)
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(opencortex::lisp-utils-check-structural "[)")
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(is (not ok))
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(is (search "Mismatched" reason))))
|
|
|
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;; Syntactic check
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|
(test syntactic-valid
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|
(multiple-value-bind (ok reason line col)
|
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(opencortex::lisp-utils-check-syntactic "(+ 1 2)")
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|
(is (eq ok t))))
|
|
|
|
(test syntactic-invalid
|
|
(multiple-value-bind (ok reason line col)
|
|
(opencortex::lisp-utils-check-syntactic "(1+ 2 #\")")
|
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(is (not ok))))
|
|
|
|
;; Semantic check
|
|
(test semantic-whitelist-safe
|
|
(multiple-value-bind (ok reason line col)
|
|
(opencortex::lisp-utils-check-semantic "(+ 1 2)")
|
|
(is (eq ok t))))
|
|
|
|
(test semantic-blocked-eval
|
|
(multiple-value-bind (ok reason line col)
|
|
(opencortex::lisp-utils-check-semantic "(eval '(+ 1 2))")
|
|
(is (not ok))))
|
|
|
|
(test semantic-blocked-delete
|
|
(multiple-value-bind (ok reason line col)
|
|
(opencortex::lisp-utils-check-semantic "(delete-file \"x.txt\")")
|
|
(is (not ok))))
|
|
|
|
;; Unified validation
|
|
(test unified-success
|
|
(let ((result (opencortex::lisp-utils-validate "(+ 1 2)" :strict t)))
|
|
(is (eq (getf result :status) :success))))
|
|
|
|
(test unified-structural-fail
|
|
(let ((result (opencortex::lisp-utils-validate "(+ 1 2" :strict nil)))
|
|
(is (eq (getf result :status) :error))
|
|
(is (eq (getf result :failed) :structural))))
|
|
|
|
(test unified-semantic-fail
|
|
(let ((result (opencortex::lisp-utils-validate "(delete-file \"x.txt\")" :strict t)))
|
|
(is (eq (getf result :status) :error))
|
|
(is (eq (getf result :failed) :semantic))))
|
|
#+end_src
|
|
|
|
* Test Suite: Lisp Validator (Structural/Syntactic/Semantic)
|
|
|
|
These tests verify the Lisp Validator gate. Run with:
|
|
~(fiveam:run! 'lisp-validator-suite)~
|
|
|
|
#+begin_src lisp :tangle ./tests/lisp-validator-tests.lisp
|
|
(defpackage :opencortex-lisp-validator-tests
|
|
(:use :cl :fiveam :opencortex)
|
|
(:export #:lisp-validator-suite))
|
|
|
|
(in-package :opencortex-lisp-validator-tests)
|
|
|
|
(def-suite lisp-validator-suite
|
|
:description "Tests for the Lisp Validator structural, syntactic, and semantic gates")
|
|
|
|
(in-suite lisp-validator-suite)
|
|
|
|
(test structural-balanced
|
|
(let ((result (opencortex::lisp-validator-check-structural "(+ 1 2)")))
|
|
(is (eq result t))))
|
|
|
|
(test structural-unbalanced-open
|
|
(multiple-value-bind (ok reason line col)
|
|
(opencortex::lisp-validator-check-structural "(+ 1 2")
|
|
(is (null ok))
|
|
(is (search "Unbalanced" reason))))
|
|
|
|
(test structural-unbalanced-close
|
|
(multiple-value-bind (ok reason line col)
|
|
(opencortex::lisp-validator-check-structural "+ 1 2)")
|
|
(is (null ok))
|
|
(is (search "Unbalanced" reason))))
|
|
|
|
(test syntactic-valid
|
|
(multiple-value-bind (ok reason line col)
|
|
(opencortex::lisp-validator-check-syntactic "(+ 1 2)")
|
|
(is (eq ok t))))
|
|
|
|
(test syntactic-invalid-reader
|
|
(multiple-value-bind (ok reason line col)
|
|
(opencortex::lisp-validator-check-syntactic "(1+ 2 #\")")
|
|
(is (not ok))))
|
|
|
|
(test semantic-safe
|
|
(multiple-value-bind (ok reason line col)
|
|
(opencortex::lisp-validator-check-semantic "(+ 1 2)")
|
|
(is (eq ok t))))
|
|
|
|
(test semantic-blocked-eval
|
|
(multiple-value-bind (ok reason line col)
|
|
(opencortex::lisp-validator-check-semantic "(eval '(+ 1 2))")
|
|
(is (not ok))))
|
|
|
|
(test unified-success
|
|
(let ((result (opencortex::lisp-validator-validate "(+ 1 2)" :strict t)))
|
|
(is (eq (getf result :status) :success))))
|
|
|
|
(test unified-failure
|
|
(let ((result (opencortex::lisp-validator-validate "(+ 1 2" :strict nil)))
|
|
(is (eq (getf result :status) :error))))
|
|
#+end_src
|
|
- [[file:org-skill-self-fix.org][Self-Fix Skill]] - File modification with memory rollback |