Mercurial > hg > xemacs-beta
view src/scrollbar-gtk.c @ 5157:1fae11d56ad2
redo memory-usage mechanism, add way of dynamically initializing Lisp objects
-------------------- ChangeLog entries follow: --------------------
lisp/ChangeLog addition:
2010-03-18 Ben Wing <ben@xemacs.org>
* diagnose.el (show-memory-usage):
Rewrite to take into account API changes in memory-usage functions.
src/ChangeLog addition:
2010-03-18 Ben Wing <ben@xemacs.org>
* alloc.c:
* alloc.c (disksave_object_finalization_1):
* alloc.c (lisp_object_storage_size):
* alloc.c (listu):
* alloc.c (listn):
* alloc.c (Fobject_memory_usage_stats):
* alloc.c (compute_memusage_stats_length):
* alloc.c (Fobject_memory_usage):
* alloc.c (Ftotal_object_memory_usage):
* alloc.c (malloced_storage_size):
* alloc.c (common_init_alloc_early):
* alloc.c (reinit_alloc_objects_early):
* alloc.c (reinit_alloc_early):
* alloc.c (init_alloc_once_early):
* alloc.c (syms_of_alloc):
* alloc.c (reinit_vars_of_alloc):
* buffer.c:
* buffer.c (struct buffer_stats):
* buffer.c (compute_buffer_text_usage):
* buffer.c (compute_buffer_usage):
* buffer.c (buffer_memory_usage):
* buffer.c (buffer_objects_create):
* buffer.c (syms_of_buffer):
* buffer.c (vars_of_buffer):
* console-impl.h (struct console_methods):
* dynarr.c (Dynarr_memory_usage):
* emacs.c (main_1):
* events.c (clear_event_resource):
* extents.c:
* extents.c (compute_buffer_extent_usage):
* extents.c (extent_objects_create):
* extents.h:
* faces.c:
* faces.c (compute_face_cachel_usage):
* faces.c (face_objects_create):
* faces.h:
* general-slots.h:
* glyphs.c:
* glyphs.c (compute_glyph_cachel_usage):
* glyphs.c (glyph_objects_create):
* glyphs.h:
* lisp.h:
* lisp.h (struct usage_stats):
* lrecord.h:
* lrecord.h (enum lrecord_type):
* lrecord.h (struct lrecord_implementation):
* lrecord.h (MC_ALLOC_CALL_FINALIZER_FOR_DISKSAVE):
* lrecord.h (DEFINE_DUMPABLE_LISP_OBJECT):
* lrecord.h (DEFINE_DUMPABLE_SIZABLE_LISP_OBJECT):
* lrecord.h (DEFINE_DUMPABLE_FROB_BLOCK_LISP_OBJECT):
* lrecord.h (DEFINE_DUMPABLE_FROB_BLOCK_SIZABLE_LISP_OBJECT):
* lrecord.h (DEFINE_DUMPABLE_INTERNAL_LISP_OBJECT):
* lrecord.h (DEFINE_DUMPABLE_SIZABLE_INTERNAL_LISP_OBJECT):
* lrecord.h (DEFINE_NODUMP_LISP_OBJECT):
* lrecord.h (DEFINE_NODUMP_SIZABLE_LISP_OBJECT):
* lrecord.h (DEFINE_NODUMP_FROB_BLOCK_LISP_OBJECT):
* lrecord.h (DEFINE_NODUMP_FROB_BLOCK_SIZABLE_LISP_OBJECT):
* lrecord.h (DEFINE_NODUMP_INTERNAL_LISP_OBJECT):
* lrecord.h (DEFINE_NODUMP_SIZABLE_INTERNAL_LISP_OBJECT):
* lrecord.h (MAKE_LISP_OBJECT):
* lrecord.h (DEFINE_DUMPABLE_MODULE_LISP_OBJECT):
* lrecord.h (DEFINE_DUMPABLE_MODULE_SIZABLE_LISP_OBJECT):
* lrecord.h (DEFINE_NODUMP_MODULE_LISP_OBJECT):
* lrecord.h (DEFINE_NODUMP_MODULE_SIZABLE_LISP_OBJECT):
* lrecord.h (MAKE_MODULE_LISP_OBJECT):
* lrecord.h (INIT_LISP_OBJECT):
* lrecord.h (INIT_MODULE_LISP_OBJECT):
* lrecord.h (UNDEF_LISP_OBJECT):
* lrecord.h (UNDEF_MODULE_LISP_OBJECT):
* lrecord.h (DECLARE_LISP_OBJECT):
* lrecord.h (DECLARE_MODULE_API_LISP_OBJECT):
* lrecord.h (DECLARE_MODULE_LISP_OBJECT):
* lstream.c:
* lstream.c (syms_of_lstream):
* lstream.c (vars_of_lstream):
* marker.c:
* marker.c (compute_buffer_marker_usage):
* mc-alloc.c (mc_alloced_storage_size):
* mc-alloc.h:
* mule-charset.c:
* mule-charset.c (struct charset_stats):
* mule-charset.c (compute_charset_usage):
* mule-charset.c (charset_memory_usage):
* mule-charset.c (mule_charset_objects_create):
* mule-charset.c (syms_of_mule_charset):
* mule-charset.c (vars_of_mule_charset):
* redisplay.c:
* redisplay.c (compute_rune_dynarr_usage):
* redisplay.c (compute_display_block_dynarr_usage):
* redisplay.c (compute_glyph_block_dynarr_usage):
* redisplay.c (compute_display_line_dynarr_usage):
* redisplay.c (compute_line_start_cache_dynarr_usage):
* redisplay.h:
* scrollbar-gtk.c (gtk_compute_scrollbar_instance_usage):
* scrollbar-msw.c (mswindows_compute_scrollbar_instance_usage):
* scrollbar-x.c (x_compute_scrollbar_instance_usage):
* scrollbar.c (compute_scrollbar_instance_usage):
* scrollbar.h:
* symbols.c:
* symbols.c (reinit_symbol_objects_early):
* symbols.c (init_symbols_once_early):
* symbols.c (reinit_symbols_early):
* symbols.c (defsymbol_massage_name_1):
* symsinit.h:
* ui-gtk.c:
* ui-gtk.c (emacs_gtk_object_getprop):
* ui-gtk.c (emacs_gtk_object_putprop):
* ui-gtk.c (ui_gtk_objects_create):
* unicode.c (compute_from_unicode_table_size_1):
* unicode.c (compute_to_unicode_table_size_1):
* unicode.c (compute_from_unicode_table_size):
* unicode.c (compute_to_unicode_table_size):
* window.c:
* window.c (struct window_stats):
* window.c (compute_window_mirror_usage):
* window.c (compute_window_usage):
* window.c (window_memory_usage):
* window.c (window_objects_create):
* window.c (syms_of_window):
* window.c (vars_of_window):
* window.h:
Redo memory-usage mechanism, make it general; add way of dynamically
initializing Lisp object types -- OBJECT_HAS_METHOD(), similar to
CONSOLE_HAS_METHOD().
(1) Create OBJECT_HAS_METHOD(), OBJECT_HAS_PROPERTY() etc. for
specifying that a Lisp object type has a particular method or
property. Call such methods with OBJECT_METH, MAYBE_OBJECT_METH,
OBJECT_METH_OR_GIVEN; retrieve properties with OBJECT_PROPERTY.
Methods that formerly required a DEFINE_*GENERAL_LISP_OBJECT() to
specify them (getprop, putprop, remprop, plist, disksave) now
instead use the dynamic-method mechanism. The main benefit of
this is that new methods or properties can be added without
requiring that the declaration statements of all existing methods
be modified. We have to make the `struct lrecord_implementation'
non-const, but I don't think this should have any effect on speed --
the only possible method that's really speed-critical is the
mark method, and we already extract those out into a separate
(non-const) array for increased cache locality.
Object methods need to be reinitialized after pdump, so we put
them in separate functions such as face_objects_create(),
extent_objects_create() and call them appropriately from emacs.c
The only current object property (`memusage_stats_list') that
objects can specify is a Lisp object and gets staticpro()ed so it
only needs to be set during dump time, but because it references
symbols that might not exist in a syms_of_() function, we
initialize it in vars_of_(). There is also an object property
(`num_extra_memusage_stats') that is automatically initialized based
on `memusage_stats_list'; we do that in reinit_vars_of_alloc(),
which is called after all vars_of_() functions are called.
`disksaver' method was renamed `disksave' to correspond with the
name normally given to the function (e.g. disksave_lstream()).
(2) Generalize the memory-usage mechanism in `buffer-memory-usage',
`window-memory-usage', `charset-memory-usage' into an object-type-
specific mechanism called by a single function
`object-memory-usage'. (Former function `object-memory-usage'
renamed to `total-object-memory-usage'). Generalize the mechanism
of different "slices" so that we can have different "classes" of
memory described and different "slices" onto each class; `t'
separates classes, `nil' separates slices. Currently we have
three classes defined: the memory of an object itself,
non-Lisp-object memory associated with the object (e.g. arrays or
dynarrs stored as fields in the object), and Lisp-object memory
associated with the object (other internal Lisp objects stored in
the object). This isn't completely finished yet and we might need
to further separate the "other internal Lisp objects" class into
two classes.
The memory-usage mechanism uses a `struct usage_stats' (renamed
from `struct overhead_stats') to describe a malloc-view onto a set
of allocated memory (listing how much was requested and various
types of overhead) and a more general `struct generic_usage_stats'
(with a `struct usage_stats' in it) to hold all statistics about
object memory. `struct generic_usage_stats' contains an array of
32 Bytecounts, which are statistics of unspecified semantics. The
intention is that individual types declare a corresponding struct
(e.g. `struct window_stats') with the same structure but with
specific fields in place of the array, corresponding to specific
statistics. The number of such statistics is an object property
computed from the list of tags (Lisp symbols describing the
statistics) stored in `memusage_stats_list'. The idea here is to
allow particular object types to customize the number and
semantics of the statistics where completely avoiding consing.
This doesn't matter so much yet, but the intention is to have the
memory usage of all objects computed at the end of GC, at the same
time as other statistics are currently computed. The values for
all statistics for a single type would be added up to compute
aggregate values for all objects of a specific type. To make this
efficient, we can't allow any memory allocation at all.
(3) Create some additional functions for creating lists that
specify the elements directly as args rather than indirectly through
an array: listn() (number of args given), listu() (list terminated
by Qunbound).
(4) Delete a bit of remaining unused C window_config stuff, also
unused lrecord_type_popup_data.
author | Ben Wing <ben@xemacs.org> |
---|---|
date | Thu, 18 Mar 2010 10:50:06 -0500 |
parents | 16112448d484 |
children | 6c6d78781d59 |
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/* scrollbar implementation -- GTK interface. Copyright (C) 1994, 1995 Board of Trustees, University of Illinois. Copyright (C) 1994 Amdhal Corporation. Copyright (C) 1995 Sun Microsystems, Inc. Copyright (C) 1995 Darrell Kindred <dkindred+@cmu.edu>. 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: Not in FSF. */ /* Gtk version by William M. Perry */ #include <config.h> #include "lisp.h" #include "frame-impl.h" #include "window.h" #include "console-gtk-impl.h" #include "glyphs-gtk.h" #include "scrollbar-gtk.h" static gboolean scrollbar_cb (GtkAdjustment *adj, gpointer user_data); /* Used to prevent changing the size of the slider while drag scrolling, under Motif. This is necessary because the Motif scrollbar is incredibly stupid about updating the slider and causes lots of flicker if it is done too often. */ static int inhibit_slider_size_change; static int vertical_drag_in_progress; /* A device method. */ static int gtk_inhibit_scrollbar_slider_size_change (void) { return inhibit_slider_size_change; } /* A device method. */ static void gtk_free_scrollbar_instance (struct scrollbar_instance *instance) { if (instance->scrollbar_data) { if (SCROLLBAR_GTK_WIDGET (instance)) { gtk_widget_hide_all (SCROLLBAR_GTK_WIDGET (instance)); gtk_widget_destroy (SCROLLBAR_GTK_WIDGET (instance)); } xfree (instance->scrollbar_data); } } /* A device method. */ static void gtk_release_scrollbar_instance (struct scrollbar_instance *instance) { /* It won't hurt to hide it all the time, will it? */ gtk_widget_hide_all (SCROLLBAR_GTK_WIDGET (instance)); } static gboolean scrollbar_drag_hack_cb (GtkWidget *UNUSED (w), GdkEventButton *UNUSED (ev), gpointer v) { vertical_drag_in_progress = (int) v; inhibit_slider_size_change = (int) v; return (FALSE); } /* A device method. */ static void gtk_create_scrollbar_instance (struct frame *f, int vertical, struct scrollbar_instance *instance) { GtkAdjustment *adj = GTK_ADJUSTMENT (gtk_adjustment_new (0,0,0,0,0,0)); GtkScrollbar *sb = NULL; /* initialize the X specific data section. */ instance->scrollbar_data = xnew_and_zero (struct gtk_scrollbar_data); SCROLLBAR_GTK_ID (instance) = new_gui_id (); SCROLLBAR_GTK_VDRAG_ORIG_VALUE (instance) = -1; SCROLLBAR_GTK_LAST_VALUE (instance) = adj->value; gtk_object_set_data (GTK_OBJECT (adj), GTK_DATA_GUI_IDENTIFIER, (void *) SCROLLBAR_GTK_ID (instance)); gtk_object_set_data (GTK_OBJECT (adj), GTK_DATA_FRAME_IDENTIFIER, f); sb = GTK_SCROLLBAR (vertical ? gtk_vscrollbar_new (adj) : gtk_hscrollbar_new (adj)); SCROLLBAR_GTK_WIDGET (instance) = GTK_WIDGET (sb); gtk_signal_connect (GTK_OBJECT (adj),"value-changed", GTK_SIGNAL_FUNC (scrollbar_cb), (gpointer) vertical); gtk_signal_connect (GTK_OBJECT (sb), "button-press-event", GTK_SIGNAL_FUNC (scrollbar_drag_hack_cb), (gpointer) 1); gtk_signal_connect (GTK_OBJECT (sb), "button-release-event", GTK_SIGNAL_FUNC (scrollbar_drag_hack_cb), (gpointer) 0); gtk_fixed_put (GTK_FIXED (FRAME_GTK_TEXT_WIDGET (f)), SCROLLBAR_GTK_WIDGET (instance), 0, 0); /* ** With gtk version > 1.2.8 the scrollbars in gtk-xemacs and xemacs ** from CVS are invisible. In fact they are not invisible but very ** thin (0 pixels wide). This is so, because the new gtk code does ** not call gtk_widget_request_size() on the newly created ** scrollbars anymore. this change was done to allow the theme ** engines to manipulate the scrollbar width. This patch calls ** gtk_widget_request_size with the newly created scollbars. Maybe ** it is better to postpone this call just before the ** gtk_widget_show() call is done on the scrolbar. */ gtk_widget_size_request(GTK_WIDGET(sb), &(GTK_WIDGET(sb)->requisition)); gtk_widget_hide (SCROLLBAR_GTK_WIDGET (instance)); } #define UPDATE_DATA_FIELD(field) \ if (new_##field >= 0 && \ SCROLLBAR_GTK_POS_DATA (inst).field != new_##field) { \ SCROLLBAR_GTK_POS_DATA (inst).field = new_##field; \ inst->scrollbar_instance_changed = 1; \ } /* A device method. */ /* #### The -1 check is such a hack. */ static void gtk_update_scrollbar_instance_values (struct window *w, struct scrollbar_instance *inst, int new_line_increment, int new_page_increment, int new_minimum, int new_maximum, int new_slider_size, int new_slider_position, int new_scrollbar_width, int new_scrollbar_height, int new_scrollbar_x, int new_scrollbar_y) { UPDATE_DATA_FIELD (line_increment); UPDATE_DATA_FIELD (page_increment); UPDATE_DATA_FIELD (minimum); UPDATE_DATA_FIELD (maximum); UPDATE_DATA_FIELD (slider_size); UPDATE_DATA_FIELD (slider_position); UPDATE_DATA_FIELD (scrollbar_width); UPDATE_DATA_FIELD (scrollbar_height); UPDATE_DATA_FIELD (scrollbar_x); UPDATE_DATA_FIELD (scrollbar_y); if (w && !vertical_drag_in_progress) { int new_vov = SCROLLBAR_GTK_POS_DATA (inst).slider_position; int new_vows = marker_position (w->start[CURRENT_DISP]); if (SCROLLBAR_GTK_VDRAG_ORIG_VALUE (inst) != new_vov) { SCROLLBAR_GTK_VDRAG_ORIG_VALUE (inst) = new_vov; inst->scrollbar_instance_changed = 1; } if (SCROLLBAR_GTK_VDRAG_ORIG_WINDOW_START (inst) != new_vows) { SCROLLBAR_GTK_VDRAG_ORIG_WINDOW_START (inst) = new_vows; inst->scrollbar_instance_changed = 1; } } } /* Used by gtk_update_scrollbar_instance_status. */ static void update_one_widget_scrollbar_pointer (struct window *w, GtkWidget *wid) { if (!wid->window) gtk_widget_realize (wid); if (POINTER_IMAGE_INSTANCEP (w->scrollbar_pointer)) { gdk_window_set_cursor (GET_GTK_WIDGET_WINDOW (wid), XIMAGE_INSTANCE_GTK_CURSOR (w->scrollbar_pointer)); gdk_flush (); } } /* A device method. */ static void gtk_update_scrollbar_instance_status (struct window *w, int active, int size, struct scrollbar_instance *instance) { struct frame *f = XFRAME (w->frame); GtkWidget *wid = SCROLLBAR_GTK_WIDGET (instance); gboolean managed = GTK_WIDGET_MAPPED (wid); if (active && size) { if (instance->scrollbar_instance_changed) { /* Need to set the height, width, and position of the widget */ GtkAdjustment *adj = gtk_range_get_adjustment (GTK_RANGE (wid)); scrollbar_values *pos_data = & SCROLLBAR_GTK_POS_DATA (instance); int modified_p = 0; /* We do not want to update the size all the time if we can help it. This cuts down on annoying flicker. */ if ((wid->allocation.width != pos_data->scrollbar_width) || (wid->allocation.height != pos_data->scrollbar_height)) { gtk_widget_set_usize (wid, pos_data->scrollbar_width, pos_data->scrollbar_height); /* UGLY! UGLY! UGLY! Changes to wid->allocation are queued and not performed until the GTK event loop. However, when the fontlock progress bar is run, the vertical scrollbar's height is change and then changed back before events are again processed. This means that the change back is not seen and the scrollbar is left too short. Fix this by making the change manually so the test above sees the change. This does not seem to cause problems in other cases. */ wid->allocation.width = pos_data->scrollbar_width; wid->allocation.height = pos_data->scrollbar_height; modified_p = 1; } /* Ditto for the x/y position. */ if ((wid->allocation.x != pos_data->scrollbar_x) || (wid->allocation.y != pos_data->scrollbar_y)) { gtk_fixed_move (GTK_FIXED (FRAME_GTK_TEXT_WIDGET (f)), wid, pos_data->scrollbar_x, pos_data->scrollbar_y); /* UGLY! UGLY! UGLY! Changes to wid->allocation are queued and not performed until the GTK event loop. However, when the fontlock progress bar is run, the horizontal scrollbar's position is change and then changed back before events are again processed. This means that the change back is not seen and the scrollbar is left in the wrong position. Fix this by making the change manually so the test above sees the change. This does not seem to cause problems in other cases. */ wid->allocation.x = pos_data->scrollbar_x; wid->allocation.y = pos_data->scrollbar_y; modified_p = 1; } adj->lower = pos_data->minimum; adj->upper = pos_data->maximum; adj->page_increment = pos_data->slider_size + 1; adj->step_increment = w->max_line_len - 1; adj->page_size = pos_data->slider_size + 1; adj->value = pos_data->slider_position; /* But, if we didn't resize or move the scrollbar, the widget will not get redrawn correctly when the user scrolls around in the XEmacs frame manually. So we update the slider manually here. */ if (!modified_p) gtk_range_slider_update (GTK_RANGE (wid)); instance->scrollbar_instance_changed = 0; } if (!managed) { gtk_widget_show (wid); update_one_widget_scrollbar_pointer (w, wid); } } else if (managed) { gtk_widget_hide (wid); } } enum gtk_scrollbar_loop { GTK_FIND_SCROLLBAR_WINDOW_MIRROR, GTK_SET_SCROLLBAR_POINTER, GTK_WINDOW_IS_SCROLLBAR, GTK_UPDATE_FRAME_SCROLLBARS }; static struct window_mirror * gtk_scrollbar_loop (enum gtk_scrollbar_loop type, Lisp_Object window, struct window_mirror *mir, GUI_ID id, GdkWindow *x_win) { struct window_mirror *retval = NULL; while (mir) { struct scrollbar_instance *vinstance = mir->scrollbar_vertical_instance; struct scrollbar_instance *hinstance = mir->scrollbar_horizontal_instance; struct window *w = XWINDOW (window); if (mir->vchild) retval = gtk_scrollbar_loop (type, w->vchild, mir->vchild, id, x_win); else if (mir->hchild) retval = gtk_scrollbar_loop (type, w->hchild, mir->hchild, id, x_win); if (retval) return retval; if (hinstance || vinstance) { switch (type) { case GTK_FIND_SCROLLBAR_WINDOW_MIRROR: if ((vinstance && SCROLLBAR_GTK_ID (vinstance) == id) || (hinstance && SCROLLBAR_GTK_ID (hinstance) == id)) return mir; break; case GTK_UPDATE_FRAME_SCROLLBARS: if (!mir->vchild && !mir->hchild) update_window_scrollbars (w, mir, 1, 0); break; case GTK_SET_SCROLLBAR_POINTER: if (!mir->vchild && !mir->hchild) { GtkWidget *widget; widget = SCROLLBAR_GTK_WIDGET (hinstance); if (widget && GTK_WIDGET_MAPPED (widget)) update_one_widget_scrollbar_pointer (w, widget); widget = SCROLLBAR_GTK_WIDGET (vinstance); if (widget && GTK_WIDGET_MAPPED (widget)) update_one_widget_scrollbar_pointer (w, widget); } break; case GTK_WINDOW_IS_SCROLLBAR: if (!mir->vchild && !mir->hchild) { GtkWidget *widget; widget = SCROLLBAR_GTK_WIDGET (hinstance); if (widget && GTK_WIDGET_MAPPED (widget) && GET_GTK_WIDGET_WINDOW (widget) == x_win) return (struct window_mirror *) 1; widget = SCROLLBAR_GTK_WIDGET (vinstance); if (widget && GTK_WIDGET_MAPPED (widget) && GET_GTK_WIDGET_WINDOW (widget) == x_win) return (struct window_mirror *) 1; } break; default: ABORT (); } } mir = mir->next; window = w->next; } return NULL; } /* Used by callbacks. */ static struct window_mirror * find_scrollbar_window_mirror (struct frame *f, GUI_ID id) { if (f->mirror_dirty) update_frame_window_mirror (f); return gtk_scrollbar_loop (GTK_FIND_SCROLLBAR_WINDOW_MIRROR, f->root_window, XWINDOW_MIRROR (f->root_mirror), id, (GdkWindow *) NULL); } static gboolean scrollbar_cb (GtkAdjustment *adj, gpointer user_data) { /* This function can GC */ int vertical = (int) user_data; struct frame *f = (struct frame*) gtk_object_get_data (GTK_OBJECT (adj), GTK_DATA_FRAME_IDENTIFIER); struct scrollbar_instance *instance; GUI_ID id = (GUI_ID) gtk_object_get_data (GTK_OBJECT (adj), GTK_DATA_GUI_IDENTIFIER); Lisp_Object win, frame; struct window_mirror *mirror; Lisp_Object event_type = Qnil; Lisp_Object event_data = Qnil; if (!f) return(FALSE); mirror = find_scrollbar_window_mirror (f, id); if (!mirror) return(FALSE); win = real_window (mirror, 1); if (NILP (win)) return(FALSE); instance = vertical ? mirror->scrollbar_vertical_instance : mirror->scrollbar_horizontal_instance; frame = WINDOW_FRAME (XWINDOW (win)); inhibit_slider_size_change = 0; switch (GTK_RANGE (SCROLLBAR_GTK_WIDGET (instance))->scroll_type) { case GTK_SCROLL_PAGE_BACKWARD: event_type = vertical ? Qscrollbar_page_up : Qscrollbar_page_left; event_data = Fcons (win, Qnil); break; case GTK_SCROLL_PAGE_FORWARD: event_type = vertical ? Qscrollbar_page_down : Qscrollbar_page_right; event_data = Fcons (win, Qnil); break; case GTK_SCROLL_STEP_FORWARD: event_type = vertical ? Qscrollbar_line_down : Qscrollbar_char_right; event_data = win; break; case GTK_SCROLL_STEP_BACKWARD: event_type = vertical ? Qscrollbar_line_up : Qscrollbar_char_left; event_data = win; break; case GTK_SCROLL_NONE: case GTK_SCROLL_JUMP: inhibit_slider_size_change = 1; event_type = vertical ? Qscrollbar_vertical_drag : Qscrollbar_horizontal_drag; event_data = Fcons (win, make_int ((int)adj->value)); break; default: ABORT(); } signal_special_gtk_user_event (frame, event_type, event_data); return (TRUE); } static void gtk_scrollbar_pointer_changed_in_window (struct window *w) { Lisp_Object window = wrap_window (w); gtk_scrollbar_loop (GTK_SET_SCROLLBAR_POINTER, window, find_window_mirror (w), 0, (GdkWindow *) NULL); } /* #### BILL!!! This comment is not true for Gtk - should it be? */ /* Make sure that all scrollbars on frame are up-to-date. Called directly from gtk_set_frame_properties in frame-gtk.c*/ void gtk_update_frame_scrollbars (struct frame *f) { gtk_scrollbar_loop (GTK_UPDATE_FRAME_SCROLLBARS, f->root_window, XWINDOW_MIRROR (f->root_mirror), 0, (GdkWindow *) NULL); } #ifdef MEMORY_USAGE_STATS static int gtk_compute_scrollbar_instance_usage (struct device *UNUSED (d), struct scrollbar_instance *inst, struct usage_stats *ustats) { int total = 0; while (inst) { struct gtk_scrollbar_data *data = (struct gtk_scrollbar_data *) inst->scrollbar_data; total += malloced_storage_size (data, sizeof (*data), ustats); inst = inst->next; } return total; } #endif /* MEMORY_USAGE_STATS */ /************************************************************************/ /* initialization */ /************************************************************************/ void console_type_create_scrollbar_gtk (void) { CONSOLE_HAS_METHOD (gtk, inhibit_scrollbar_slider_size_change); CONSOLE_HAS_METHOD (gtk, free_scrollbar_instance); CONSOLE_HAS_METHOD (gtk, release_scrollbar_instance); CONSOLE_HAS_METHOD (gtk, create_scrollbar_instance); CONSOLE_HAS_METHOD (gtk, update_scrollbar_instance_values); CONSOLE_HAS_METHOD (gtk, update_scrollbar_instance_status); CONSOLE_HAS_METHOD (gtk, scrollbar_pointer_changed_in_window); #ifdef MEMORY_USAGE_STATS CONSOLE_HAS_METHOD (gtk, compute_scrollbar_instance_usage); #endif /* MEMORY_USAGE_STATS */ } void vars_of_scrollbar_gtk (void) { Fprovide (intern ("gtk-scrollbars")); }