view lisp/loadhist.el @ 5146:88bd4f3ef8e4

make lrecord UID's have a separate UID space for each object, resurrect debug SOE code in extents.c -------------------- ChangeLog entries follow: -------------------- src/ChangeLog addition: 2010-03-15 Ben Wing <ben@xemacs.org> * alloc.c: * alloc.c (c_readonly): * alloc.c (deadbeef_memory): * alloc.c (make_compiled_function): * alloc.c (make_button_data): * alloc.c (make_motion_data): * alloc.c (make_process_data): * alloc.c (make_timeout_data): * alloc.c (make_magic_data): * alloc.c (make_magic_eval_data): * alloc.c (make_eval_data): * alloc.c (make_misc_user_data): * alloc.c (noseeum_make_marker): * alloc.c (ADDITIONAL_FREE_string): * alloc.c (common_init_alloc_early): * alloc.c (init_alloc_once_early): * bytecode.c (print_compiled_function): * bytecode.c (mark_compiled_function): * casetab.c: * casetab.c (print_case_table): * console.c: * console.c (print_console): * database.c (print_database): * database.c (finalize_database): * device-msw.c (sync_printer_with_devmode): * device-msw.c (print_devmode): * device-msw.c (finalize_devmode): * device.c: * device.c (print_device): * elhash.c: * elhash.c (print_hash_table): * eval.c (print_multiple_value): * eval.c (mark_multiple_value): * events.c (deinitialize_event): * events.c (print_event): * events.c (event_equal): * extents.c: * extents.c (soe_dump): * extents.c (soe_insert): * extents.c (soe_delete): * extents.c (soe_move): * extents.c (extent_fragment_update): * extents.c (print_extent_1): * extents.c (print_extent): * extents.c (vars_of_extents): * frame.c: * frame.c (print_frame): * free-hook.c: * free-hook.c (check_free): * glyphs.c: * glyphs.c (print_image_instance): * glyphs.c (print_glyph): * gui.c: * gui.c (copy_gui_item): * hash.c: * hash.c (NULL_ENTRY): * hash.c (KEYS_DIFFER_P): * keymap.c (print_keymap): * keymap.c (MARKED_SLOT): * lisp.h: * lrecord.h: * lrecord.h (LISP_OBJECT_UID): * lrecord.h (set_lheader_implementation): * lrecord.h (struct old_lcrecord_header): * lstream.c (print_lstream): * lstream.c (finalize_lstream): * marker.c (print_marker): * marker.c (marker_equal): * mc-alloc.c (visit_all_used_page_headers): * mule-charset.c: * mule-charset.c (print_charset): * objects.c (print_color_instance): * objects.c (print_font_instance): * objects.c (finalize_font_instance): * opaque.c (print_opaque): * opaque.c (print_opaque_ptr): * opaque.c (equal_opaque_ptr): * print.c (internal_object_printer): * print.c (enum printing_badness): * rangetab.c (print_range_table): * rangetab.c (range_table_equal): * specifier.c (print_specifier): * specifier.c (finalize_specifier): * symbols.c: * symbols.c (print_symbol_value_magic): * tooltalk.c: * tooltalk.c (print_tooltalk_message): * tooltalk.c (print_tooltalk_pattern): * window.c (print_window): * window.c (debug_print_window): (1) Make lrecord UID's have a separate UID space for each object. Otherwise, with 20-bit UID's, we rapidly wrap around, especially when common objects like conses and strings increment the UID value for every object created. (Originally I tried making two UID spaces, one for objects that always print readably and hence don't display the UID, and one for other objects. But certain objects like markers for which a UID is displayed are still generated rapidly enough that UID overflow is a serious issue.) This also has the advantage of making UID values smaller, hence easier to remember -- their main purpose is to make it easier to keep track of different objects of the same type when debugging code. Make sure we dump lrecord UID's so that we don't have problems with pdumped and non-dumped objects having the same UID. (2) Display UID's consistently whenever an object (a) doesn't consistently print readably (objects like cons and string, which always print readably, can't display a UID), and (b) doesn't otherwise have a unique property that makes objects of a particular type distinguishable. (E.g. buffers didn't and still don't print an ID, but the buffer name uniquely identifies the buffer.) Some types, such as event, extent, compiled-function, didn't always (or didn't ever) display an ID; others (such as marker, extent, lstream, opaque, opaque-ptr, any object using internal_object_printer()) used to display the actual machine pointer instead. (3) Rename NORMAL_LISP_OBJECT_UID to LISP_OBJECT_UID; make it work over all Lisp objects and take a Lisp object, not a struct pointer. (4) Some misc cleanups in alloc.c, elhash.c. (5) Change code in events.c that "deinitializes" an event so that it doesn't increment the event UID counter in the process. Also use deadbeef_memory() to overwrite memory instead of doing the same with custom code. In the process, make deadbeef_memory() in alloc.c always available, and delete extraneous copy in mc-alloc.c. Also capitalize all uses of 0xDEADBEEF. Similarly in elhash.c call deadbeef_memory(). (6) Resurrect "debug SOE" code in extents.c. Make it conditional on DEBUG_XEMACS and on a `debug-soe' variable, rather than on SOE_DEBUG. Make it output to stderr, not stdout. (7) Delete some custom print methods that were identical to external_object_printer().
author Ben Wing <ben@xemacs.org>
date Mon, 15 Mar 2010 16:35:38 -0500
parents bedf3747a6d7
children 39d74978fd32
line wrap: on
line source

;;; loadhist.el --- lisp functions for working with feature groups

;; Copyright (C) 1995 Free Software Foundation, Inc.

;; Author: Eric S. Raymond <esr@snark.thyrsus.com>
;; Version: 1.0
;; Keywords: internal, dumped

;; This file is part of XEmacs.

;; XEmacs is free software; you can redistribute it and/or modify it
;; under the terms of the GNU General Public License as published by
;; the Free Software Foundation; either version 2, or (at your option)
;; any later version.

;; XEmacs is distributed in the hope that it will be useful, but
;; WITHOUT ANY WARRANTY; without even the implied warranty of
;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
;; General Public License for more details.

;; You should have received a copy of the GNU General Public License
;; along with XEmacs; see the file COPYING.  If not, write to the Free
;; Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
;; 02111-1307, USA.

;;; Synched up with: FSF 20.2.

;; #### Sync this file! 

;;; Commentary:

;; This file is dumped with XEmacs.

;; These functions exploit the load-history system variable.
;; Entry points include `unload-feature', `symbol-file', and `feature-file'.

;;; Code:

;; load-history is a list of entries that look like this:
;; ("outline" outline-regexp ... (require . wid-edit) ... (provide . outline) ...)

;; XEmacs; this function is in subr.el in GNU, and does not deal with
;; built-in symbols.
(defun* symbol-file (sym &optional type)
  "Return the input source from which SYM was loaded.
This is a file name, or nil if the source was a buffer with no associated file.

If TYPE is nil or omitted, any kind of definition is acceptable.
If TYPE is `defun', then function, subr, special operator or macro definitions
are acceptable.
If TYPE is `defvar', then variable definitions are acceptable.

`defface' specifies a face definition only, and for the moment, it won't
return faces created with `make-face' or `copy-face', just those created
with `defface' and `custom-declare-face'."
  (interactive "SFind source file for symbol: ") ; XEmacs
  (let (built-in-file autoload-cons symbol-details)
    (cond ((and (eq 'autoload
                    (car-safe
                     (setq autoload-cons
                           (and (fboundp sym) (symbol-function sym)))))
                (or (and (or (null type) (eq 'defvar type))
                         (eq (fifth autoload-cons) 'keymap))
                    (and (or (null type) (eq 'defun type))
                         (memq (fifth autoload-cons) '(nil macro)))))
           (return-from symbol-file (locate-library (second autoload-cons))))
          ((eq 'defvar type)
           ;; Load history entries corresponding to variables are just
           ;; symbols.
           (dolist (entry load-history)
             (when (memq sym (cdr entry))
               (return-from symbol-file (car entry)))))
           ((not (null type))
            ;; Non-variables have the type stored as the car of the entry. 
            (dolist (entry load-history)
              (when (and (setq symbol-details (rassq sym (cdr entry)))
                         (eq type (car symbol-details)))
                (return-from symbol-file (car entry)))))
          (t
           ;; If TYPE hasn't been specified, we need to check both for
           ;; variables and other symbols.
           (dolist (entry load-history)
             (when (or (memq sym (cdr entry))
                       (rassq sym (cdr entry)))
               (return-from symbol-file (car entry))))))
    (when (setq built-in-file (built-in-symbol-file sym type))
      (if (equal built-in-file (file-truename built-in-file))
          ;; Probably a full path name:
          built-in-file
        ;; This is a bit heuristic, but shouldn't realistically be a
        ;; problem:
        (if (string-match "\.elc?$" built-in-file)
            (concat (if (file-readable-p source-lisp)
			source-lisp
		      lisp-directory)
		    built-in-file)
          (concat source-directory "/src/" built-in-file))))))

(defun feature-symbols (feature)
  "Return the file and list of symbols associated with a given FEATURE."
  (let ((pair `(provide . ,feature)))
    (dolist (entry load-history)
      (when (member pair (cdr entry))
	(return entry)))))

(defun feature-file (feature)
  "Return the file name from which a given FEATURE was loaded.
Actually, return the load argument, if any; this is sometimes the name of a
Lisp file without an extension.  If the feature came from an eval-buffer on
a buffer with no associated file, or an eval-region, return nil."
  (unless (featurep feature)
    (error "%s is not a currently loaded feature" (symbol-name feature)))
  (car (feature-symbols feature)))

(defun file-symbols (file)
  "Return the file and list of symbols associated with FILE.
The file name in the returned list is the string used to load the file,
and may not be the same string as FILE, but it will be equivalent."
  (or (assoc file load-history)
      (assoc (file-name-sans-extension file) load-history)
      (assoc (concat file ".el") load-history)
      (assoc (concat file ".elc") load-history)))

(defun file-provides (file)
  "Return the list of features provided by FILE."
  (let ((provides nil))
    (dolist (x (cdr (file-symbols file)))
      (when (eq (car-safe x) 'provide)
	(push (cdr x) provides)))
    provides))

(defun file-requires (file)
  "Return the list of features required by FILE."
  (let ((requires nil))
    (dolist (x (cdr (file-symbols file)))
      (when (eq (car-safe x) 'require)
	(push (cdr x) requires)))
    requires))

(defun file-dependents (file)
  "Return the list of loaded libraries that depend on FILE.
This can include FILE itself."
  (let ((provides (file-provides file))
	(dependents nil))
    (dolist (entry load-history)
      (dolist (x (cdr entry))
	(when (and (eq (car-safe x) 'require)
		   (memq (cdr-safe x) provides))
	  (push (car entry) dependents))))
    dependents))

;; FSFmacs
;(defun read-feature (prompt)
;  "Read a feature name \(string\) from the minibuffer,
;prompting with PROMPT and completing from `features', and
;return the feature \(symbol\)."
;  (intern (completing-read prompt
;			   (mapcar #'(lambda (feature)
;			             (list (symbol-name feature)))
;				   features)
;			   nil t)))

;; ;;;###autoload
(defun unload-feature (feature &optional force)
  "Unload the library that provided FEATURE, restoring all its autoloads.
If the feature is required by any other loaded code, and optional FORCE
is nil, raise an error."
  (interactive "SFeature: ")
  (unless (featurep feature)
    (error "%s is not a currently loaded feature" (symbol-name feature)))
  (when (not force)
    (let* ((file (feature-file feature))
	   (dependents (delete file (copy-sequence (file-dependents file)))))
      (when dependents
	(error "Loaded libraries %s depend on %s"
	       (prin1-to-string dependents) file))))
  (let* ((flist (feature-symbols feature))
	 (file (car flist))
	 (unloading-module nil))
    (flet ((reset-aload (x)
	     (let ((aload (get x 'autoload)))
	       (if aload (fset x (cons 'autoload aload))))))
    (mapc
     #'(lambda (x)
	 (cond ((stringp x) nil)
	       ((consp x)
		;; Remove any feature names that this file provided.
		(if (eq (car x) 'provide)
		    (setq features (delq (cdr x) features))
		  (if (eq (car x) 'module)
		      (setq unloading-module t))))
	       ((and (boundp x)
		     (fboundp x))
		(makunbound x)
		(fmakunbound x)
		(reset-aload x))
	       ((boundp x)
		(makunbound x))
	       ((fboundp x)
		(fmakunbound x)
		(reset-aload x))))
     (cdr flist)))
    ;; Delete the load-history element for this file.
    (let ((elt (assoc file load-history)))
      (setq load-history (delq elt load-history)))
    ;; If it is a module, really unload it.
    (if unloading-module
	(declare-fboundp (unload-module (symbol-name feature))))))

(provide 'loadhist)

;;; loadhist.el ends here