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Remove size_request from GtkRange
[~andy/gtk] / gtk / gtkrange.c
1 /* GTK - The GIMP Toolkit
2  * Copyright (C) 1995-1997 Peter Mattis, Spencer Kimball and Josh MacDonald
3  * Copyright (C) 2001 Red Hat, Inc.
4  *
5  * This library is free software; you can redistribute it and/or
6  * modify it under the terms of the GNU Lesser General Public
7  * License as published by the Free Software Foundation; either
8  * version 2 of the License, or (at your option) any later version.
9  *
10  * This library is distributed in the hope that it will be useful,
11  * but WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
13  * Lesser General Public License for more details.
14  *
15  * You should have received a copy of the GNU Lesser General Public
16  * License along with this library; if not, write to the
17  * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
18  * Boston, MA 02111-1307, USA.
19  */
20
21 /*
22  * Modified by the GTK+ Team and others 1997-2004.  See the AUTHORS
23  * file for a list of people on the GTK+ Team.  See the ChangeLog
24  * files for a list of changes.  These files are distributed with
25  * GTK+ at ftp://ftp.gtk.org/pub/gtk/. 
26  */
27
28 #include "config.h"
29
30 #include <stdio.h>
31 #include <math.h>
32
33 #include <gdk/gdkkeysyms.h>
34 #include "gtkmain.h"
35 #include "gtkmarshalers.h"
36 #include "gtkorientable.h"
37 #include "gtkrange.h"
38 #include "gtkscale.h"
39 #include "gtkscrollbar.h"
40 #include "gtkwindow.h"
41 #include "gtkprivate.h"
42 #include "gtkintl.h"
43
44 /**
45  * SECTION:gtkrange
46  * @Short_description: Base class for widgets which visualize an adjustment
47  * @Title: GtkRange
48  *
49  * #GtkRange is the common base class for widgets which visualize an
50  * adjustment, e.g #GtkScale or #GtkScrollbar.
51  *
52  * Apart from signals for monitoring the parameters of the adjustment,
53  * #GtkRange provides properties and methods for influencing the sensitivity
54  * of the "steppers". It also provides properties and methods for setting a
55  * "fill level" on range widgets. See gtk_range_set_fill_level().
56  */
57
58
59 #define SCROLL_DELAY_FACTOR 5    /* Scroll repeat multiplier */
60 #define UPDATE_DELAY        300  /* Delay for queued update */
61
62 typedef struct _GtkRangeStepTimer GtkRangeStepTimer;
63
64 typedef enum {
65   MOUSE_OUTSIDE,
66   MOUSE_STEPPER_A,
67   MOUSE_STEPPER_B,
68   MOUSE_STEPPER_C,
69   MOUSE_STEPPER_D,
70   MOUSE_TROUGH,
71   MOUSE_SLIDER,
72   MOUSE_WIDGET /* inside widget but not in any of the above GUI elements */
73 } MouseLocation;
74
75 struct _GtkRangePrivate
76 {
77   MouseLocation      mouse_location;
78   /* last mouse coords we got, or -1 if mouse is outside the range */
79   gint  mouse_x;
80   gint  mouse_y;
81   MouseLocation      grab_location;   /* "grabbed" mouse location, OUTSIDE for no grab */
82   guint              grab_button : 8; /* 0 if none */
83
84   GtkRangeStepTimer *timer;
85
86   GtkAdjustment     *adjustment;
87   GtkOrientation     orientation;
88   GtkSensitivityType lower_sensitivity;
89   GtkSensitivityType upper_sensitivity;
90   GtkUpdateType      update_policy;
91
92   GdkDevice         *grab_device;
93   GdkRectangle       range_rect;     /* Area of entire stepper + trough assembly in widget->window coords */
94   /* These are in widget->window coordinates */
95   GdkRectangle       stepper_a;
96   GdkRectangle       stepper_b;
97   GdkRectangle       stepper_c;
98   GdkRectangle       stepper_d;
99   GdkRectangle       trough;         /* The trough rectangle is the area the thumb can slide in, not the entire range_rect */
100   GdkRectangle       slider;
101   GdkWindow         *event_window;
102
103   GQuark             slider_detail_quark;
104   GQuark             stepper_detail_quark[4];
105
106   gboolean recalc_marks;
107
108   gdouble  fill_level;
109   gdouble *marks;
110
111   gint *mark_pos;
112   gint  min_slider_size;
113   gint  n_marks;
114   gint  round_digits;                /* Round off value to this many digits, -1 for no rounding */
115   gint  slide_initial_slider_position;
116   gint  slide_initial_coordinate;
117   gint  slider_start;                /* Slider range along the long dimension, in widget->window coords */
118   gint  slider_end;
119
120   guint repaint_id;
121   guint update_timeout_id;
122
123   /* Steppers are: < > ---- < >
124    *               a b      c d
125    */
126   guint has_stepper_a          : 1;
127   guint has_stepper_b          : 1;
128   guint has_stepper_c          : 1;
129   guint has_stepper_d          : 1;
130
131   guint flippable              : 1;
132   guint inverted               : 1;
133   guint need_recalc            : 1;
134   guint slider_size_fixed      : 1;
135   guint trough_click_forward   : 1;  /* trough click was on the forward side of slider */
136   guint update_pending         : 1;  /* need to emit value_changed */
137
138   /* Stepper sensitivity */
139   guint lower_sensitive        : 1;
140   guint upper_sensitive        : 1;
141
142   /* Fill level */
143   guint show_fill_level        : 1;
144   guint restrict_to_fill_level : 1;
145 };
146
147
148 enum {
149   PROP_0,
150   PROP_ORIENTATION,
151   PROP_UPDATE_POLICY,
152   PROP_ADJUSTMENT,
153   PROP_INVERTED,
154   PROP_LOWER_STEPPER_SENSITIVITY,
155   PROP_UPPER_STEPPER_SENSITIVITY,
156   PROP_SHOW_FILL_LEVEL,
157   PROP_RESTRICT_TO_FILL_LEVEL,
158   PROP_FILL_LEVEL
159 };
160
161 enum {
162   VALUE_CHANGED,
163   ADJUST_BOUNDS,
164   MOVE_SLIDER,
165   CHANGE_VALUE,
166   LAST_SIGNAL
167 };
168
169 typedef enum {
170   STEPPER_A,
171   STEPPER_B,
172   STEPPER_C,
173   STEPPER_D
174 } Stepper;
175
176 static void gtk_range_set_property   (GObject          *object,
177                                       guint             prop_id,
178                                       const GValue     *value,
179                                       GParamSpec       *pspec);
180 static void gtk_range_get_property   (GObject          *object,
181                                       guint             prop_id,
182                                       GValue           *value,
183                                       GParamSpec       *pspec);
184 static void gtk_range_destroy        (GtkWidget        *widget);
185 static void gtk_range_get_preferred_width
186                                      (GtkWidget        *widget,
187                                       gint             *minimum,
188                                       gint             *natural);
189 static void gtk_range_get_preferred_height
190                                      (GtkWidget        *widget,
191                                       gint             *minimum,
192                                       gint             *natural);
193 static void gtk_range_size_allocate  (GtkWidget        *widget,
194                                       GtkAllocation    *allocation);
195 static void gtk_range_hierarchy_changed (GtkWidget     *widget,
196                                          GtkWidget     *previous_toplevel);
197 static void gtk_range_realize        (GtkWidget        *widget);
198 static void gtk_range_unrealize      (GtkWidget        *widget);
199 static void gtk_range_map            (GtkWidget        *widget);
200 static void gtk_range_unmap          (GtkWidget        *widget);
201 static gboolean gtk_range_draw       (GtkWidget        *widget,
202                                       cairo_t          *cr);
203 static gboolean gtk_range_button_press   (GtkWidget        *widget,
204                                       GdkEventButton   *event);
205 static gboolean gtk_range_button_release (GtkWidget        *widget,
206                                       GdkEventButton   *event);
207 static gboolean gtk_range_motion_notify  (GtkWidget        *widget,
208                                       GdkEventMotion   *event);
209 static gboolean gtk_range_enter_notify   (GtkWidget        *widget,
210                                       GdkEventCrossing *event);
211 static gboolean gtk_range_leave_notify   (GtkWidget        *widget,
212                                       GdkEventCrossing *event);
213 static gboolean gtk_range_grab_broken (GtkWidget          *widget,
214                                        GdkEventGrabBroken *event);
215 static void gtk_range_grab_notify    (GtkWidget          *widget,
216                                       gboolean            was_grabbed);
217 static void gtk_range_state_changed  (GtkWidget          *widget,
218                                       GtkStateType        previous_state);
219 static gboolean gtk_range_scroll_event   (GtkWidget        *widget,
220                                       GdkEventScroll   *event);
221 static void gtk_range_style_set      (GtkWidget        *widget,
222                                       GtkStyle         *previous_style);
223 static void update_slider_position   (GtkRange         *range,
224                                       gint              mouse_x,
225                                       gint              mouse_y);
226 static void stop_scrolling           (GtkRange         *range);
227 static gboolean modify_allocation_for_window_grip (GtkWidget     *widget,
228                                                    GtkAllocation *allocation);
229
230 /* Range methods */
231
232 static void gtk_range_move_slider              (GtkRange         *range,
233                                                 GtkScrollType     scroll);
234
235 /* Internals */
236 static gboolean      gtk_range_scroll                   (GtkRange      *range,
237                                                          GtkScrollType  scroll);
238 static gboolean      gtk_range_update_mouse_location    (GtkRange      *range);
239 static void          gtk_range_calc_layout              (GtkRange      *range,
240                                                          gdouble        adjustment_value);
241 static void          gtk_range_calc_marks               (GtkRange      *range);
242 static void          gtk_range_get_props                (GtkRange      *range,
243                                                          gint          *slider_width,
244                                                          gint          *stepper_size,
245                                                          gint          *focus_width,
246                                                          gint          *trough_border,
247                                                          gint          *stepper_spacing,
248                                                          gboolean      *trough_under_steppers,
249                                                          gint          *arrow_displacement_x,
250                                                          gint          *arrow_displacement_y);
251 static void          gtk_range_calc_request             (GtkRange      *range,
252                                                          gint           slider_width,
253                                                          gint           stepper_size,
254                                                          gint           focus_width,
255                                                          gint           trough_border,
256                                                          gint           stepper_spacing,
257                                                          GdkRectangle  *range_rect,
258                                                          GtkBorder     *border,
259                                                          gint          *n_steppers_p,
260                                                          gboolean      *has_steppers_ab,
261                                                          gboolean      *has_steppers_cd,
262                                                          gint          *slider_length_p);
263 static void          gtk_range_adjustment_value_changed (GtkAdjustment *adjustment,
264                                                          gpointer       data);
265 static void          gtk_range_adjustment_changed       (GtkAdjustment *adjustment,
266                                                          gpointer       data);
267 static void          gtk_range_add_step_timer           (GtkRange      *range,
268                                                          GtkScrollType  step);
269 static void          gtk_range_remove_step_timer        (GtkRange      *range);
270 static void          gtk_range_reset_update_timer       (GtkRange      *range);
271 static void          gtk_range_remove_update_timer      (GtkRange      *range);
272 static GdkRectangle* get_area                           (GtkRange      *range,
273                                                          MouseLocation  location);
274 static gboolean      gtk_range_real_change_value        (GtkRange      *range,
275                                                          GtkScrollType  scroll,
276                                                          gdouble        value);
277 static void          gtk_range_update_value             (GtkRange      *range);
278 static gboolean      gtk_range_key_press                (GtkWidget     *range,
279                                                          GdkEventKey   *event);
280
281
282 G_DEFINE_ABSTRACT_TYPE_WITH_CODE (GtkRange, gtk_range, GTK_TYPE_WIDGET,
283                                   G_IMPLEMENT_INTERFACE (GTK_TYPE_ORIENTABLE,
284                                                          NULL))
285
286 static guint signals[LAST_SIGNAL];
287
288
289 static void
290 gtk_range_class_init (GtkRangeClass *class)
291 {
292   GObjectClass   *gobject_class;
293   GtkWidgetClass *widget_class;
294
295   gobject_class = G_OBJECT_CLASS (class);
296   widget_class = (GtkWidgetClass*) class;
297
298   gobject_class->set_property = gtk_range_set_property;
299   gobject_class->get_property = gtk_range_get_property;
300
301   widget_class->destroy = gtk_range_destroy;
302   widget_class->get_preferred_width = gtk_range_get_preferred_width;
303   widget_class->get_preferred_height = gtk_range_get_preferred_height;
304   widget_class->size_allocate = gtk_range_size_allocate;
305   widget_class->hierarchy_changed = gtk_range_hierarchy_changed;
306   widget_class->realize = gtk_range_realize;
307   widget_class->unrealize = gtk_range_unrealize;
308   widget_class->map = gtk_range_map;
309   widget_class->unmap = gtk_range_unmap;
310   widget_class->draw = gtk_range_draw;
311   widget_class->button_press_event = gtk_range_button_press;
312   widget_class->button_release_event = gtk_range_button_release;
313   widget_class->motion_notify_event = gtk_range_motion_notify;
314   widget_class->scroll_event = gtk_range_scroll_event;
315   widget_class->enter_notify_event = gtk_range_enter_notify;
316   widget_class->leave_notify_event = gtk_range_leave_notify;
317   widget_class->grab_broken_event = gtk_range_grab_broken;
318   widget_class->grab_notify = gtk_range_grab_notify;
319   widget_class->state_changed = gtk_range_state_changed;
320   widget_class->style_set = gtk_range_style_set;
321   widget_class->key_press_event = gtk_range_key_press;
322
323   class->move_slider = gtk_range_move_slider;
324   class->change_value = gtk_range_real_change_value;
325
326   class->slider_detail = "slider";
327   class->stepper_detail = "stepper";
328
329   /**
330    * GtkRange::value-changed:
331    * @range: the #GtkRange that received the signal
332    *
333    * Emitted when the range value changes.
334    */
335   signals[VALUE_CHANGED] =
336     g_signal_new (I_("value-changed"),
337                   G_TYPE_FROM_CLASS (gobject_class),
338                   G_SIGNAL_RUN_LAST,
339                   G_STRUCT_OFFSET (GtkRangeClass, value_changed),
340                   NULL, NULL,
341                   _gtk_marshal_VOID__VOID,
342                   G_TYPE_NONE, 0);
343
344   /**
345    * GtkRange::adjust-bounds:
346    * @range: the #GtkRange that received the signal
347    * @value: the value before we clamp
348    *
349    * Emitted before clamping a value, to give the application a
350    * chance to adjust the bounds.
351    */
352   signals[ADJUST_BOUNDS] =
353     g_signal_new (I_("adjust-bounds"),
354                   G_TYPE_FROM_CLASS (gobject_class),
355                   G_SIGNAL_RUN_LAST,
356                   G_STRUCT_OFFSET (GtkRangeClass, adjust_bounds),
357                   NULL, NULL,
358                   _gtk_marshal_VOID__DOUBLE,
359                   G_TYPE_NONE, 1,
360                   G_TYPE_DOUBLE);
361   
362   /**
363    * GtkRange::move-slider:
364    * @range: the #GtkRange that received the signal
365    * @step: how to move the slider
366    *
367    * Virtual function that moves the slider. Used for keybindings.
368    */
369   signals[MOVE_SLIDER] =
370     g_signal_new (I_("move-slider"),
371                   G_TYPE_FROM_CLASS (gobject_class),
372                   G_SIGNAL_RUN_LAST | G_SIGNAL_ACTION,
373                   G_STRUCT_OFFSET (GtkRangeClass, move_slider),
374                   NULL, NULL,
375                   _gtk_marshal_VOID__ENUM,
376                   G_TYPE_NONE, 1,
377                   GTK_TYPE_SCROLL_TYPE);
378
379   /**
380    * GtkRange::change-value:
381    * @range: the #GtkRange that received the signal
382    * @scroll: the type of scroll action that was performed
383    * @value: the new value resulting from the scroll action
384    * @returns: %TRUE to prevent other handlers from being invoked for the
385    * signal, %FALSE to propagate the signal further
386    *
387    * The ::change-value signal is emitted when a scroll action is
388    * performed on a range.  It allows an application to determine the
389    * type of scroll event that occurred and the resultant new value.
390    * The application can handle the event itself and return %TRUE to
391    * prevent further processing.  Or, by returning %FALSE, it can pass
392    * the event to other handlers until the default GTK+ handler is
393    * reached.
394    *
395    * The value parameter is unrounded.  An application that overrides
396    * the ::change-value signal is responsible for clamping the value to
397    * the desired number of decimal digits; the default GTK+ handler 
398    * clamps the value based on @range->round_digits.
399    *
400    * It is not possible to use delayed update policies in an overridden
401    * ::change-value handler.
402    *
403    * Since: 2.6
404    */
405   signals[CHANGE_VALUE] =
406     g_signal_new (I_("change-value"),
407                   G_TYPE_FROM_CLASS (gobject_class),
408                   G_SIGNAL_RUN_LAST,
409                   G_STRUCT_OFFSET (GtkRangeClass, change_value),
410                   _gtk_boolean_handled_accumulator, NULL,
411                   _gtk_marshal_BOOLEAN__ENUM_DOUBLE,
412                   G_TYPE_BOOLEAN, 2,
413                   GTK_TYPE_SCROLL_TYPE,
414                   G_TYPE_DOUBLE);
415
416   g_object_class_override_property (gobject_class,
417                                     PROP_ORIENTATION,
418                                     "orientation");
419
420   g_object_class_install_property (gobject_class,
421                                    PROP_UPDATE_POLICY,
422                                    g_param_spec_enum ("update-policy",
423                                                       P_("Update policy"),
424                                                       P_("How the range should be updated on the screen"),
425                                                       GTK_TYPE_UPDATE_TYPE,
426                                                       GTK_UPDATE_CONTINUOUS,
427                                                       GTK_PARAM_READWRITE));
428   
429   g_object_class_install_property (gobject_class,
430                                    PROP_ADJUSTMENT,
431                                    g_param_spec_object ("adjustment",
432                                                         P_("Adjustment"),
433                                                         P_("The GtkAdjustment that contains the current value of this range object"),
434                                                         GTK_TYPE_ADJUSTMENT,
435                                                         GTK_PARAM_READWRITE | G_PARAM_CONSTRUCT));
436
437   g_object_class_install_property (gobject_class,
438                                    PROP_INVERTED,
439                                    g_param_spec_boolean ("inverted",
440                                                         P_("Inverted"),
441                                                         P_("Invert direction slider moves to increase range value"),
442                                                          FALSE,
443                                                          GTK_PARAM_READWRITE));
444
445   g_object_class_install_property (gobject_class,
446                                    PROP_LOWER_STEPPER_SENSITIVITY,
447                                    g_param_spec_enum ("lower-stepper-sensitivity",
448                                                       P_("Lower stepper sensitivity"),
449                                                       P_("The sensitivity policy for the stepper that points to the adjustment's lower side"),
450                                                       GTK_TYPE_SENSITIVITY_TYPE,
451                                                       GTK_SENSITIVITY_AUTO,
452                                                       GTK_PARAM_READWRITE));
453
454   g_object_class_install_property (gobject_class,
455                                    PROP_UPPER_STEPPER_SENSITIVITY,
456                                    g_param_spec_enum ("upper-stepper-sensitivity",
457                                                       P_("Upper stepper sensitivity"),
458                                                       P_("The sensitivity policy for the stepper that points to the adjustment's upper side"),
459                                                       GTK_TYPE_SENSITIVITY_TYPE,
460                                                       GTK_SENSITIVITY_AUTO,
461                                                       GTK_PARAM_READWRITE));
462
463   /**
464    * GtkRange:show-fill-level:
465    *
466    * The show-fill-level property controls whether fill level indicator
467    * graphics are displayed on the trough. See
468    * gtk_range_set_show_fill_level().
469    *
470    * Since: 2.12
471    **/
472   g_object_class_install_property (gobject_class,
473                                    PROP_SHOW_FILL_LEVEL,
474                                    g_param_spec_boolean ("show-fill-level",
475                                                          P_("Show Fill Level"),
476                                                          P_("Whether to display a fill level indicator graphics on trough."),
477                                                          FALSE,
478                                                          GTK_PARAM_READWRITE));
479
480   /**
481    * GtkRange:restrict-to-fill-level:
482    *
483    * The restrict-to-fill-level property controls whether slider
484    * movement is restricted to an upper boundary set by the
485    * fill level. See gtk_range_set_restrict_to_fill_level().
486    *
487    * Since: 2.12
488    **/
489   g_object_class_install_property (gobject_class,
490                                    PROP_RESTRICT_TO_FILL_LEVEL,
491                                    g_param_spec_boolean ("restrict-to-fill-level",
492                                                          P_("Restrict to Fill Level"),
493                                                          P_("Whether to restrict the upper boundary to the fill level."),
494                                                          TRUE,
495                                                          GTK_PARAM_READWRITE));
496
497   /**
498    * GtkRange:fill-level:
499    *
500    * The fill level (e.g. prebuffering of a network stream).
501    * See gtk_range_set_fill_level().
502    *
503    * Since: 2.12
504    **/
505   g_object_class_install_property (gobject_class,
506                                    PROP_FILL_LEVEL,
507                                    g_param_spec_double ("fill-level",
508                                                         P_("Fill Level"),
509                                                         P_("The fill level."),
510                                                         -G_MAXDOUBLE,
511                                                         G_MAXDOUBLE,
512                                                         G_MAXDOUBLE,
513                                                         GTK_PARAM_READWRITE));
514
515   gtk_widget_class_install_style_property (widget_class,
516                                            g_param_spec_int ("slider-width",
517                                                              P_("Slider Width"),
518                                                              P_("Width of scrollbar or scale thumb"),
519                                                              0,
520                                                              G_MAXINT,
521                                                              14,
522                                                              GTK_PARAM_READABLE));
523   gtk_widget_class_install_style_property (widget_class,
524                                            g_param_spec_int ("trough-border",
525                                                              P_("Trough Border"),
526                                                              P_("Spacing between thumb/steppers and outer trough bevel"),
527                                                              0,
528                                                              G_MAXINT,
529                                                              1,
530                                                              GTK_PARAM_READABLE));
531   gtk_widget_class_install_style_property (widget_class,
532                                            g_param_spec_int ("stepper-size",
533                                                              P_("Stepper Size"),
534                                                              P_("Length of step buttons at ends"),
535                                                              0,
536                                                              G_MAXINT,
537                                                              14,
538                                                              GTK_PARAM_READABLE));
539   /**
540    * GtkRange:stepper-spacing:
541    *
542    * The spacing between the stepper buttons and thumb. Note that
543    * setting this value to anything > 0 will automatically set the
544    * trough-under-steppers style property to %TRUE as well. Also,
545    * stepper-spacing won't have any effect if there are no steppers.
546    */
547   gtk_widget_class_install_style_property (widget_class,
548                                            g_param_spec_int ("stepper-spacing",
549                                                              P_("Stepper Spacing"),
550                                                              P_("Spacing between step buttons and thumb"),
551                                                              0,
552                                                              G_MAXINT,
553                                                              0,
554                                                              GTK_PARAM_READABLE));
555   gtk_widget_class_install_style_property (widget_class,
556                                            g_param_spec_int ("arrow-displacement-x",
557                                                              P_("Arrow X Displacement"),
558                                                              P_("How far in the x direction to move the arrow when the button is depressed"),
559                                                              G_MININT,
560                                                              G_MAXINT,
561                                                              0,
562                                                              GTK_PARAM_READABLE));
563   gtk_widget_class_install_style_property (widget_class,
564                                            g_param_spec_int ("arrow-displacement-y",
565                                                              P_("Arrow Y Displacement"),
566                                                              P_("How far in the y direction to move the arrow when the button is depressed"),
567                                                              G_MININT,
568                                                              G_MAXINT,
569                                                              0,
570                                                              GTK_PARAM_READABLE));
571
572   /**
573    * GtkRange:trough-under-steppers:
574    *
575    * Whether to draw the trough across the full length of the range or
576    * to exclude the steppers and their spacing. Note that setting the
577    * #GtkRange:stepper-spacing style property to any value > 0 will
578    * automatically enable trough-under-steppers too.
579    *
580    * Since: 2.10
581    */
582   gtk_widget_class_install_style_property (widget_class,
583                                            g_param_spec_boolean ("trough-under-steppers",
584                                                                  P_("Trough Under Steppers"),
585                                                                  P_("Whether to draw trough for full length of range or exclude the steppers and spacing"),
586                                                                  TRUE,
587                                                                  GTK_PARAM_READABLE));
588
589   /**
590    * GtkRange:arrow-scaling:
591    *
592    * The arrow size proportion relative to the scroll button size.
593    *
594    * Since: 2.14
595    */
596   gtk_widget_class_install_style_property (widget_class,
597                                            g_param_spec_float ("arrow-scaling",
598                                                                P_("Arrow scaling"),
599                                                                P_("Arrow scaling with regard to scroll button size"),
600                                                                0.0, 1.0, 0.5,
601                                                                GTK_PARAM_READABLE));
602
603   g_type_class_add_private (class, sizeof (GtkRangePrivate));
604 }
605
606 static void
607 gtk_range_set_property (GObject      *object,
608                         guint         prop_id,
609                         const GValue *value,
610                         GParamSpec   *pspec)
611 {
612   GtkRange *range = GTK_RANGE (object);
613   GtkRangePrivate *priv = range->priv;
614
615   switch (prop_id)
616     {
617     case PROP_ORIENTATION:
618       priv->orientation = g_value_get_enum (value);
619
620       priv->slider_detail_quark = 0;
621       priv->stepper_detail_quark[0] = 0;
622       priv->stepper_detail_quark[1] = 0;
623       priv->stepper_detail_quark[2] = 0;
624       priv->stepper_detail_quark[3] = 0;
625
626       gtk_widget_queue_resize (GTK_WIDGET (range));
627       break;
628     case PROP_UPDATE_POLICY:
629       gtk_range_set_update_policy (range, g_value_get_enum (value));
630       break;
631     case PROP_ADJUSTMENT:
632       gtk_range_set_adjustment (range, g_value_get_object (value));
633       break;
634     case PROP_INVERTED:
635       gtk_range_set_inverted (range, g_value_get_boolean (value));
636       break;
637     case PROP_LOWER_STEPPER_SENSITIVITY:
638       gtk_range_set_lower_stepper_sensitivity (range, g_value_get_enum (value));
639       break;
640     case PROP_UPPER_STEPPER_SENSITIVITY:
641       gtk_range_set_upper_stepper_sensitivity (range, g_value_get_enum (value));
642       break;
643     case PROP_SHOW_FILL_LEVEL:
644       gtk_range_set_show_fill_level (range, g_value_get_boolean (value));
645       break;
646     case PROP_RESTRICT_TO_FILL_LEVEL:
647       gtk_range_set_restrict_to_fill_level (range, g_value_get_boolean (value));
648       break;
649     case PROP_FILL_LEVEL:
650       gtk_range_set_fill_level (range, g_value_get_double (value));
651       break;
652     default:
653       G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
654       break;
655     }
656 }
657
658 static void
659 gtk_range_get_property (GObject      *object,
660                         guint         prop_id,
661                         GValue       *value,
662                         GParamSpec   *pspec)
663 {
664   GtkRange *range = GTK_RANGE (object);
665   GtkRangePrivate *priv = range->priv;
666
667   switch (prop_id)
668     {
669     case PROP_ORIENTATION:
670       g_value_set_enum (value, priv->orientation);
671       break;
672     case PROP_UPDATE_POLICY:
673       g_value_set_enum (value, priv->update_policy);
674       break;
675     case PROP_ADJUSTMENT:
676       g_value_set_object (value, priv->adjustment);
677       break;
678     case PROP_INVERTED:
679       g_value_set_boolean (value, priv->inverted);
680       break;
681     case PROP_LOWER_STEPPER_SENSITIVITY:
682       g_value_set_enum (value, gtk_range_get_lower_stepper_sensitivity (range));
683       break;
684     case PROP_UPPER_STEPPER_SENSITIVITY:
685       g_value_set_enum (value, gtk_range_get_upper_stepper_sensitivity (range));
686       break;
687     case PROP_SHOW_FILL_LEVEL:
688       g_value_set_boolean (value, gtk_range_get_show_fill_level (range));
689       break;
690     case PROP_RESTRICT_TO_FILL_LEVEL:
691       g_value_set_boolean (value, gtk_range_get_restrict_to_fill_level (range));
692       break;
693     case PROP_FILL_LEVEL:
694       g_value_set_double (value, gtk_range_get_fill_level (range));
695       break;
696     default:
697       G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
698       break;
699     }
700 }
701
702 static void
703 gtk_range_init (GtkRange *range)
704 {
705   GtkRangePrivate *priv;
706
707   range->priv = G_TYPE_INSTANCE_GET_PRIVATE (range,
708                                              GTK_TYPE_RANGE,
709                                              GtkRangePrivate);
710   priv = range->priv;
711
712   gtk_widget_set_has_window (GTK_WIDGET (range), FALSE);
713
714   priv->orientation = GTK_ORIENTATION_HORIZONTAL;
715   priv->adjustment = NULL;
716   priv->update_policy = GTK_UPDATE_CONTINUOUS;
717   priv->inverted = FALSE;
718   priv->flippable = FALSE;
719   priv->min_slider_size = 1;
720   priv->has_stepper_a = FALSE;
721   priv->has_stepper_b = FALSE;
722   priv->has_stepper_c = FALSE;
723   priv->has_stepper_d = FALSE;
724   priv->need_recalc = TRUE;
725   priv->round_digits = -1;
726   priv->mouse_location = MOUSE_OUTSIDE;
727   priv->mouse_x = -1;
728   priv->mouse_y = -1;
729   priv->grab_location = MOUSE_OUTSIDE;
730   priv->grab_button = 0;
731   priv->lower_sensitivity = GTK_SENSITIVITY_AUTO;
732   priv->upper_sensitivity = GTK_SENSITIVITY_AUTO;
733   priv->lower_sensitive = TRUE;
734   priv->upper_sensitive = TRUE;
735   priv->show_fill_level = FALSE;
736   priv->restrict_to_fill_level = TRUE;
737   priv->fill_level = G_MAXDOUBLE;
738   priv->timer = NULL;
739 }
740
741 /**
742  * gtk_range_get_adjustment:
743  * @range: a #GtkRange
744  * 
745  * Get the #GtkAdjustment which is the "model" object for #GtkRange.
746  * See gtk_range_set_adjustment() for details.
747  * The return value does not have a reference added, so should not
748  * be unreferenced.
749  * 
750  * Return value: (transfer none): a #GtkAdjustment
751  **/
752 GtkAdjustment*
753 gtk_range_get_adjustment (GtkRange *range)
754 {
755   GtkRangePrivate *priv;
756
757   g_return_val_if_fail (GTK_IS_RANGE (range), NULL);
758
759   priv = range->priv;
760
761   if (!priv->adjustment)
762     gtk_range_set_adjustment (range, NULL);
763
764   return priv->adjustment;
765 }
766
767 /**
768  * gtk_range_set_update_policy:
769  * @range: a #GtkRange
770  * @policy: update policy
771  *
772  * Sets the update policy for the range. #GTK_UPDATE_CONTINUOUS means that
773  * anytime the range slider is moved, the range value will change and the
774  * value_changed signal will be emitted. #GTK_UPDATE_DELAYED means that
775  * the value will be updated after a brief timeout where no slider motion
776  * occurs, so updates are spaced by a short time rather than
777  * continuous. #GTK_UPDATE_DISCONTINUOUS means that the value will only
778  * be updated when the user releases the button and ends the slider
779  * drag operation.
780  **/
781 void
782 gtk_range_set_update_policy (GtkRange      *range,
783                              GtkUpdateType  policy)
784 {
785   GtkRangePrivate *priv;
786
787   g_return_if_fail (GTK_IS_RANGE (range));
788
789   priv = range->priv;
790
791   if (priv->update_policy != policy)
792     {
793       priv->update_policy = policy;
794       g_object_notify (G_OBJECT (range), "update-policy");
795     }
796 }
797
798 /**
799  * gtk_range_get_update_policy:
800  * @range: a #GtkRange
801  *
802  * Gets the update policy of @range. See gtk_range_set_update_policy().
803  *
804  * Return value: the current update policy
805  **/
806 GtkUpdateType
807 gtk_range_get_update_policy (GtkRange *range)
808 {
809   g_return_val_if_fail (GTK_IS_RANGE (range), GTK_UPDATE_CONTINUOUS);
810
811   return range->priv->update_policy;
812 }
813
814 /**
815  * gtk_range_set_adjustment:
816  * @range: a #GtkRange
817  * @adjustment: a #GtkAdjustment
818  *
819  * Sets the adjustment to be used as the "model" object for this range
820  * widget. The adjustment indicates the current range value, the
821  * minimum and maximum range values, the step/page increments used
822  * for keybindings and scrolling, and the page size. The page size
823  * is normally 0 for #GtkScale and nonzero for #GtkScrollbar, and
824  * indicates the size of the visible area of the widget being scrolled.
825  * The page size affects the size of the scrollbar slider.
826  **/
827 void
828 gtk_range_set_adjustment (GtkRange      *range,
829                           GtkAdjustment *adjustment)
830 {
831   GtkRangePrivate *priv;
832
833   g_return_if_fail (GTK_IS_RANGE (range));
834
835   priv = range->priv;
836
837   if (!adjustment)
838     adjustment = gtk_adjustment_new (0.0, 0.0, 0.0, 0.0, 0.0, 0.0);
839   else
840     g_return_if_fail (GTK_IS_ADJUSTMENT (adjustment));
841
842   if (priv->adjustment != adjustment)
843     {
844       if (priv->adjustment)
845         {
846           g_signal_handlers_disconnect_by_func (priv->adjustment,
847                                                 gtk_range_adjustment_changed,
848                                                 range);
849           g_signal_handlers_disconnect_by_func (priv->adjustment,
850                                                 gtk_range_adjustment_value_changed,
851                                                 range);
852           g_object_unref (priv->adjustment);
853         }
854
855       priv->adjustment = adjustment;
856       g_object_ref_sink (adjustment);
857       
858       g_signal_connect (adjustment, "changed",
859                         G_CALLBACK (gtk_range_adjustment_changed),
860                         range);
861       g_signal_connect (adjustment, "value-changed",
862                         G_CALLBACK (gtk_range_adjustment_value_changed),
863                         range);
864       
865       gtk_range_adjustment_changed (adjustment, range);
866       g_object_notify (G_OBJECT (range), "adjustment");
867     }
868 }
869
870 /**
871  * gtk_range_set_inverted:
872  * @range: a #GtkRange
873  * @setting: %TRUE to invert the range
874  *
875  * Ranges normally move from lower to higher values as the
876  * slider moves from top to bottom or left to right. Inverted
877  * ranges have higher values at the top or on the right rather than
878  * on the bottom or left.
879  **/
880 void
881 gtk_range_set_inverted (GtkRange *range,
882                         gboolean  setting)
883 {
884   GtkRangePrivate *priv;
885
886   g_return_if_fail (GTK_IS_RANGE (range));
887
888   priv = range->priv;
889
890   setting = setting != FALSE;
891
892   if (setting != priv->inverted)
893     {
894       priv->inverted = setting;
895       g_object_notify (G_OBJECT (range), "inverted");
896       gtk_widget_queue_resize (GTK_WIDGET (range));
897     }
898 }
899
900 /**
901  * gtk_range_get_inverted:
902  * @range: a #GtkRange
903  * 
904  * Gets the value set by gtk_range_set_inverted().
905  * 
906  * Return value: %TRUE if the range is inverted
907  **/
908 gboolean
909 gtk_range_get_inverted (GtkRange *range)
910 {
911   g_return_val_if_fail (GTK_IS_RANGE (range), FALSE);
912
913   return range->priv->inverted;
914 }
915
916 /**
917  * gtk_range_set_flippable:
918  * @range: a #GtkRange
919  * @flippable: %TRUE to make the range flippable
920  *
921  * If a range is flippable, it will switch its direction if it is
922  * horizontal and its direction is %GTK_TEXT_DIR_RTL.
923  *
924  * See gtk_widget_get_direction().
925  *
926  * Since: 2.18
927  **/
928 void
929 gtk_range_set_flippable (GtkRange *range,
930                          gboolean  flippable)
931 {
932   GtkRangePrivate *priv;
933
934   g_return_if_fail (GTK_IS_RANGE (range));
935
936   priv = range->priv;
937
938   flippable = flippable ? TRUE : FALSE;
939
940   if (flippable != priv->flippable)
941     {
942       priv->flippable = flippable;
943
944       gtk_widget_queue_draw (GTK_WIDGET (range));
945     }
946 }
947
948 /**
949  * gtk_range_get_flippable:
950  * @range: a #GtkRange
951  *
952  * Gets the value set by gtk_range_set_flippable().
953  *
954  * Return value: %TRUE if the range is flippable
955  *
956  * Since: 2.18
957  **/
958 gboolean
959 gtk_range_get_flippable (GtkRange *range)
960 {
961   g_return_val_if_fail (GTK_IS_RANGE (range), FALSE);
962
963   return range->priv->flippable;
964 }
965
966 /**
967  * gtk_range_set_slider_size_fixed:
968  * @range: a #GtkRange
969  * @size_fixed: %TRUE to make the slider size constant
970  *
971  * Sets whether the range's slider has a fixed size, or a size that
972  * depends on it's adjustment's page size.
973  *
974  * This function is useful mainly for #GtkRange subclasses.
975  *
976  * Since: 2.20
977  **/
978 void
979 gtk_range_set_slider_size_fixed (GtkRange *range,
980                                  gboolean  size_fixed)
981 {
982   GtkRangePrivate *priv;
983
984   g_return_if_fail (GTK_IS_RANGE (range));
985
986   priv = range->priv;
987
988   if (size_fixed != priv->slider_size_fixed)
989     {
990       priv->slider_size_fixed = size_fixed ? TRUE : FALSE;
991
992       if (priv->adjustment && gtk_widget_get_mapped (GTK_WIDGET (range)))
993         {
994           priv->need_recalc = TRUE;
995           gtk_range_calc_layout (range, gtk_adjustment_get_value (priv->adjustment));
996           gtk_widget_queue_draw (GTK_WIDGET (range));
997         }
998     }
999 }
1000
1001 /**
1002  * gtk_range_get_slider_size_fixed:
1003  * @range: a #GtkRange
1004  *
1005  * This function is useful mainly for #GtkRange subclasses.
1006  *
1007  * See gtk_range_set_slider_size_fixed().
1008  *
1009  * Return value: whether the range's slider has a fixed size.
1010  *
1011  * Since: 2.20
1012  **/
1013 gboolean
1014 gtk_range_get_slider_size_fixed (GtkRange *range)
1015 {
1016   g_return_val_if_fail (GTK_IS_RANGE (range), FALSE);
1017
1018   return range->priv->slider_size_fixed;
1019 }
1020
1021 /**
1022  * gtk_range_set_min_slider_size:
1023  * @range: a #GtkRange
1024  * @min_size: The slider's minimum size
1025  *
1026  * Sets the minimum size of the range's slider.
1027  *
1028  * This function is useful mainly for #GtkRange subclasses.
1029  *
1030  * Since: 2.20
1031  **/
1032 void
1033 gtk_range_set_min_slider_size (GtkRange *range,
1034                                gint      min_size)
1035 {
1036   GtkRangePrivate *priv;
1037
1038   g_return_if_fail (GTK_IS_RANGE (range));
1039   g_return_if_fail (min_size > 0);
1040
1041   priv = range->priv;
1042
1043   if (min_size != priv->min_slider_size)
1044     {
1045       priv->min_slider_size = min_size;
1046
1047       priv->need_recalc = TRUE;
1048       gtk_range_calc_layout (range, priv->adjustment->value);
1049       gtk_widget_queue_draw (GTK_WIDGET (range));
1050     }
1051 }
1052
1053 /**
1054  * gtk_range_get_min_slider_size:
1055  * @range: a #GtkRange
1056  *
1057  * This function is useful mainly for #GtkRange subclasses.
1058  *
1059  * See gtk_range_set_min_slider_size().
1060  *
1061  * Return value: The minimum size of the range's slider.
1062  *
1063  * Since: 2.20
1064  **/
1065 gint
1066 gtk_range_get_min_slider_size (GtkRange *range)
1067 {
1068   g_return_val_if_fail (GTK_IS_RANGE (range), FALSE);
1069
1070   return range->priv->min_slider_size;
1071 }
1072
1073 /**
1074  * gtk_range_get_range_rect:
1075  * @range: a #GtkRange
1076  * @range_rect: return location for the range rectangle
1077  *
1078  * This function returns the area that contains the range's trough
1079  * and its steppers, in widget->window coordinates.
1080  *
1081  * This function is useful mainly for #GtkRange subclasses.
1082  *
1083  * Since: 2.20
1084  **/
1085 void
1086 gtk_range_get_range_rect (GtkRange     *range,
1087                           GdkRectangle *range_rect)
1088 {
1089   GtkRangePrivate *priv;
1090
1091   g_return_if_fail (GTK_IS_RANGE (range));
1092   g_return_if_fail (range_rect != NULL);
1093
1094   priv = range->priv;
1095
1096   gtk_range_calc_layout (range, priv->adjustment->value);
1097
1098   *range_rect = priv->range_rect;
1099 }
1100
1101 /**
1102  * gtk_range_get_slider_range:
1103  * @range: a #GtkRange
1104  * @slider_start: (allow-none): return location for the slider's start, or %NULL
1105  * @slider_end: (allow-none): return location for the slider's end, or %NULL
1106  *
1107  * This function returns sliders range along the long dimension,
1108  * in widget->window coordinates.
1109  *
1110  * This function is useful mainly for #GtkRange subclasses.
1111  *
1112  * Since: 2.20
1113  **/
1114 void
1115 gtk_range_get_slider_range (GtkRange *range,
1116                             gint     *slider_start,
1117                             gint     *slider_end)
1118 {
1119   GtkRangePrivate *priv;
1120
1121   g_return_if_fail (GTK_IS_RANGE (range));
1122
1123   priv = range->priv;
1124
1125   gtk_range_calc_layout (range, priv->adjustment->value);
1126
1127   if (slider_start)
1128     *slider_start = priv->slider_start;
1129
1130   if (slider_end)
1131     *slider_end = priv->slider_end;
1132 }
1133
1134 /**
1135  * gtk_range_set_lower_stepper_sensitivity:
1136  * @range:       a #GtkRange
1137  * @sensitivity: the lower stepper's sensitivity policy.
1138  *
1139  * Sets the sensitivity policy for the stepper that points to the
1140  * 'lower' end of the GtkRange's adjustment.
1141  *
1142  * Since: 2.10
1143  **/
1144 void
1145 gtk_range_set_lower_stepper_sensitivity (GtkRange           *range,
1146                                          GtkSensitivityType  sensitivity)
1147 {
1148   GtkRangePrivate *priv;
1149
1150   g_return_if_fail (GTK_IS_RANGE (range));
1151
1152   priv = range->priv;
1153
1154   if (priv->lower_sensitivity != sensitivity)
1155     {
1156       priv->lower_sensitivity = sensitivity;
1157
1158       priv->need_recalc = TRUE;
1159       gtk_range_calc_layout (range, priv->adjustment->value);
1160       gtk_widget_queue_draw (GTK_WIDGET (range));
1161
1162       g_object_notify (G_OBJECT (range), "lower-stepper-sensitivity");
1163     }
1164 }
1165
1166 /**
1167  * gtk_range_get_lower_stepper_sensitivity:
1168  * @range: a #GtkRange
1169  *
1170  * Gets the sensitivity policy for the stepper that points to the
1171  * 'lower' end of the GtkRange's adjustment.
1172  *
1173  * Return value: The lower stepper's sensitivity policy.
1174  *
1175  * Since: 2.10
1176  **/
1177 GtkSensitivityType
1178 gtk_range_get_lower_stepper_sensitivity (GtkRange *range)
1179 {
1180   g_return_val_if_fail (GTK_IS_RANGE (range), GTK_SENSITIVITY_AUTO);
1181
1182   return range->priv->lower_sensitivity;
1183 }
1184
1185 /**
1186  * gtk_range_set_upper_stepper_sensitivity:
1187  * @range:       a #GtkRange
1188  * @sensitivity: the upper stepper's sensitivity policy.
1189  *
1190  * Sets the sensitivity policy for the stepper that points to the
1191  * 'upper' end of the GtkRange's adjustment.
1192  *
1193  * Since: 2.10
1194  **/
1195 void
1196 gtk_range_set_upper_stepper_sensitivity (GtkRange           *range,
1197                                          GtkSensitivityType  sensitivity)
1198 {
1199   GtkRangePrivate *priv;
1200
1201   g_return_if_fail (GTK_IS_RANGE (range));
1202
1203   priv = range->priv;
1204
1205   if (priv->upper_sensitivity != sensitivity)
1206     {
1207       priv->upper_sensitivity = sensitivity;
1208
1209       priv->need_recalc = TRUE;
1210       gtk_range_calc_layout (range, priv->adjustment->value);
1211       gtk_widget_queue_draw (GTK_WIDGET (range));
1212
1213       g_object_notify (G_OBJECT (range), "upper-stepper-sensitivity");
1214     }
1215 }
1216
1217 /**
1218  * gtk_range_get_upper_stepper_sensitivity:
1219  * @range: a #GtkRange
1220  *
1221  * Gets the sensitivity policy for the stepper that points to the
1222  * 'upper' end of the GtkRange's adjustment.
1223  *
1224  * Return value: The upper stepper's sensitivity policy.
1225  *
1226  * Since: 2.10
1227  **/
1228 GtkSensitivityType
1229 gtk_range_get_upper_stepper_sensitivity (GtkRange *range)
1230 {
1231   g_return_val_if_fail (GTK_IS_RANGE (range), GTK_SENSITIVITY_AUTO);
1232
1233   return range->priv->upper_sensitivity;
1234 }
1235
1236 /**
1237  * gtk_range_set_increments:
1238  * @range: a #GtkRange
1239  * @step: step size
1240  * @page: page size
1241  *
1242  * Sets the step and page sizes for the range.
1243  * The step size is used when the user clicks the #GtkScrollbar
1244  * arrows or moves #GtkScale via arrow keys. The page size
1245  * is used for example when moving via Page Up or Page Down keys.
1246  **/
1247 void
1248 gtk_range_set_increments (GtkRange *range,
1249                           gdouble   step,
1250                           gdouble   page)
1251 {
1252   GtkRangePrivate *priv;
1253
1254   g_return_if_fail (GTK_IS_RANGE (range));
1255
1256   priv = range->priv;
1257
1258   priv->adjustment->step_increment = step;
1259   priv->adjustment->page_increment = page;
1260
1261   gtk_adjustment_changed (priv->adjustment);
1262 }
1263
1264 /**
1265  * gtk_range_set_range:
1266  * @range: a #GtkRange
1267  * @min: minimum range value
1268  * @max: maximum range value
1269  * 
1270  * Sets the allowable values in the #GtkRange, and clamps the range
1271  * value to be between @min and @max. (If the range has a non-zero
1272  * page size, it is clamped between @min and @max - page-size.)
1273  **/
1274 void
1275 gtk_range_set_range (GtkRange *range,
1276                      gdouble   min,
1277                      gdouble   max)
1278 {
1279   GtkRangePrivate *priv;
1280   gdouble value;
1281   
1282   g_return_if_fail (GTK_IS_RANGE (range));
1283   g_return_if_fail (min < max);
1284
1285   priv = range->priv;
1286
1287   priv->adjustment->lower = min;
1288   priv->adjustment->upper = max;
1289
1290   value = priv->adjustment->value;
1291
1292   if (priv->restrict_to_fill_level)
1293     value = MIN (value, MAX (priv->adjustment->lower,
1294                              priv->fill_level));
1295
1296   gtk_adjustment_set_value (priv->adjustment, value);
1297   gtk_adjustment_changed (priv->adjustment);
1298 }
1299
1300 /**
1301  * gtk_range_set_value:
1302  * @range: a #GtkRange
1303  * @value: new value of the range
1304  *
1305  * Sets the current value of the range; if the value is outside the
1306  * minimum or maximum range values, it will be clamped to fit inside
1307  * them. The range emits the #GtkRange::value-changed signal if the 
1308  * value changes.
1309  **/
1310 void
1311 gtk_range_set_value (GtkRange *range,
1312                      gdouble   value)
1313 {
1314   GtkRangePrivate *priv;
1315
1316   g_return_if_fail (GTK_IS_RANGE (range));
1317
1318   priv = range->priv;
1319
1320   if (priv->restrict_to_fill_level)
1321     value = MIN (value, MAX (priv->adjustment->lower,
1322                              priv->fill_level));
1323
1324   gtk_adjustment_set_value (priv->adjustment, value);
1325 }
1326
1327 /**
1328  * gtk_range_get_value:
1329  * @range: a #GtkRange
1330  * 
1331  * Gets the current value of the range.
1332  * 
1333  * Return value: current value of the range.
1334  **/
1335 gdouble
1336 gtk_range_get_value (GtkRange *range)
1337 {
1338   g_return_val_if_fail (GTK_IS_RANGE (range), 0.0);
1339
1340   return range->priv->adjustment->value;
1341 }
1342
1343 /**
1344  * gtk_range_set_show_fill_level:
1345  * @range:           A #GtkRange
1346  * @show_fill_level: Whether a fill level indicator graphics is shown.
1347  *
1348  * Sets whether a graphical fill level is show on the trough. See
1349  * gtk_range_set_fill_level() for a general description of the fill
1350  * level concept.
1351  *
1352  * Since: 2.12
1353  **/
1354 void
1355 gtk_range_set_show_fill_level (GtkRange *range,
1356                                gboolean  show_fill_level)
1357 {
1358   GtkRangePrivate *priv;
1359
1360   g_return_if_fail (GTK_IS_RANGE (range));
1361
1362   priv = range->priv;
1363
1364   show_fill_level = show_fill_level ? TRUE : FALSE;
1365
1366   if (show_fill_level != priv->show_fill_level)
1367     {
1368       priv->show_fill_level = show_fill_level;
1369       g_object_notify (G_OBJECT (range), "show-fill-level");
1370       gtk_widget_queue_draw (GTK_WIDGET (range));
1371     }
1372 }
1373
1374 /**
1375  * gtk_range_get_show_fill_level:
1376  * @range: A #GtkRange
1377  *
1378  * Gets whether the range displays the fill level graphically.
1379  *
1380  * Return value: %TRUE if @range shows the fill level.
1381  *
1382  * Since: 2.12
1383  **/
1384 gboolean
1385 gtk_range_get_show_fill_level (GtkRange *range)
1386 {
1387   g_return_val_if_fail (GTK_IS_RANGE (range), FALSE);
1388
1389   return range->priv->show_fill_level;
1390 }
1391
1392 /**
1393  * gtk_range_set_restrict_to_fill_level:
1394  * @range:                  A #GtkRange
1395  * @restrict_to_fill_level: Whether the fill level restricts slider movement.
1396  *
1397  * Sets whether the slider is restricted to the fill level. See
1398  * gtk_range_set_fill_level() for a general description of the fill
1399  * level concept.
1400  *
1401  * Since: 2.12
1402  **/
1403 void
1404 gtk_range_set_restrict_to_fill_level (GtkRange *range,
1405                                       gboolean  restrict_to_fill_level)
1406 {
1407   GtkRangePrivate *priv;
1408
1409   g_return_if_fail (GTK_IS_RANGE (range));
1410
1411   priv = range->priv;
1412
1413   restrict_to_fill_level = restrict_to_fill_level ? TRUE : FALSE;
1414
1415   if (restrict_to_fill_level != priv->restrict_to_fill_level)
1416     {
1417       priv->restrict_to_fill_level = restrict_to_fill_level;
1418       g_object_notify (G_OBJECT (range), "restrict-to-fill-level");
1419
1420       gtk_range_set_value (range, gtk_range_get_value (range));
1421     }
1422 }
1423
1424 /**
1425  * gtk_range_get_restrict_to_fill_level:
1426  * @range: A #GtkRange
1427  *
1428  * Gets whether the range is restricted to the fill level.
1429  *
1430  * Return value: %TRUE if @range is restricted to the fill level.
1431  *
1432  * Since: 2.12
1433  **/
1434 gboolean
1435 gtk_range_get_restrict_to_fill_level (GtkRange *range)
1436 {
1437   g_return_val_if_fail (GTK_IS_RANGE (range), FALSE);
1438
1439   return range->priv->restrict_to_fill_level;
1440 }
1441
1442 /**
1443  * gtk_range_set_fill_level:
1444  * @range: a #GtkRange
1445  * @fill_level: the new position of the fill level indicator
1446  *
1447  * Set the new position of the fill level indicator.
1448  *
1449  * The "fill level" is probably best described by its most prominent
1450  * use case, which is an indicator for the amount of pre-buffering in
1451  * a streaming media player. In that use case, the value of the range
1452  * would indicate the current play position, and the fill level would
1453  * be the position up to which the file/stream has been downloaded.
1454  *
1455  * This amount of prebuffering can be displayed on the range's trough
1456  * and is themeable separately from the trough. To enable fill level
1457  * display, use gtk_range_set_show_fill_level(). The range defaults
1458  * to not showing the fill level.
1459  *
1460  * Additionally, it's possible to restrict the range's slider position
1461  * to values which are smaller than the fill level. This is controller
1462  * by gtk_range_set_restrict_to_fill_level() and is by default
1463  * enabled.
1464  *
1465  * Since: 2.12
1466  **/
1467 void
1468 gtk_range_set_fill_level (GtkRange *range,
1469                           gdouble   fill_level)
1470 {
1471   GtkRangePrivate *priv;
1472
1473   g_return_if_fail (GTK_IS_RANGE (range));
1474
1475   priv = range->priv;
1476
1477   if (fill_level != priv->fill_level)
1478     {
1479       priv->fill_level = fill_level;
1480       g_object_notify (G_OBJECT (range), "fill-level");
1481
1482       if (priv->show_fill_level)
1483         gtk_widget_queue_draw (GTK_WIDGET (range));
1484
1485       if (priv->restrict_to_fill_level)
1486         gtk_range_set_value (range, gtk_range_get_value (range));
1487     }
1488 }
1489
1490 /**
1491  * gtk_range_get_fill_level:
1492  * @range: A #GtkRange
1493  *
1494  * Gets the current position of the fill level indicator.
1495  *
1496  * Return value: The current fill level
1497  *
1498  * Since: 2.12
1499  **/
1500 gdouble
1501 gtk_range_get_fill_level (GtkRange *range)
1502 {
1503   g_return_val_if_fail (GTK_IS_RANGE (range), 0.0);
1504
1505   return range->priv->fill_level;
1506 }
1507
1508 static gboolean
1509 should_invert (GtkRange *range)
1510 {
1511   GtkRangePrivate *priv = range->priv;
1512
1513   if (priv->orientation == GTK_ORIENTATION_HORIZONTAL)
1514     return
1515       (priv->inverted && !priv->flippable) ||
1516       (priv->inverted && priv->flippable && gtk_widget_get_direction (GTK_WIDGET (range)) == GTK_TEXT_DIR_LTR) ||
1517       (!priv->inverted && priv->flippable && gtk_widget_get_direction (GTK_WIDGET (range)) == GTK_TEXT_DIR_RTL);
1518   else
1519     return priv->inverted;
1520 }
1521
1522 static void
1523 gtk_range_destroy (GtkWidget *widget)
1524 {
1525   GtkRange *range = GTK_RANGE (widget);
1526   GtkRangePrivate *priv = range->priv;
1527
1528   gtk_range_remove_step_timer (range);
1529   gtk_range_remove_update_timer (range);
1530
1531   if (priv->repaint_id)
1532     g_source_remove (priv->repaint_id);
1533   priv->repaint_id = 0;
1534
1535   if (priv->adjustment)
1536     {
1537       g_signal_handlers_disconnect_by_func (priv->adjustment,
1538                                             gtk_range_adjustment_changed,
1539                                             range);
1540       g_signal_handlers_disconnect_by_func (priv->adjustment,
1541                                             gtk_range_adjustment_value_changed,
1542                                             range);
1543       g_object_unref (priv->adjustment);
1544       priv->adjustment = NULL;
1545     }
1546
1547   if (priv->n_marks)
1548     {
1549       g_free (priv->marks);
1550       priv->marks = NULL;
1551       g_free (priv->mark_pos);
1552       priv->mark_pos = NULL;
1553       priv->n_marks = 0;
1554     }
1555
1556   GTK_WIDGET_CLASS (gtk_range_parent_class)->destroy (widget);
1557 }
1558
1559 static void
1560 gtk_range_get_preferred_width (GtkWidget *widget,
1561                                gint      *minimum,
1562                                gint      *natural)
1563 {
1564   GtkRange *range;
1565   gint slider_width, stepper_size, focus_width, trough_border, stepper_spacing;
1566   GdkRectangle range_rect;
1567   GtkBorder border;
1568
1569   range = GTK_RANGE (widget);
1570
1571   gtk_range_get_props (range,
1572                        &slider_width, &stepper_size,
1573                        &focus_width, &trough_border,
1574                        &stepper_spacing, NULL,
1575                        NULL, NULL);
1576
1577   gtk_range_calc_request (range,
1578                           slider_width, stepper_size,
1579                           focus_width, trough_border, stepper_spacing,
1580                           &range_rect, &border, NULL, NULL, NULL, NULL);
1581
1582   *minimum = *natural = range_rect.width + border.left + border.right;
1583 }
1584
1585 static void
1586 gtk_range_get_preferred_height (GtkWidget *widget,
1587                                 gint      *minimum,
1588                                 gint      *natural)
1589 {
1590   GtkRange *range;
1591   gint slider_width, stepper_size, focus_width, trough_border, stepper_spacing;
1592   GdkRectangle range_rect;
1593   GtkBorder border;
1594
1595   range = GTK_RANGE (widget);
1596
1597   gtk_range_get_props (range,
1598                        &slider_width, &stepper_size,
1599                        &focus_width, &trough_border,
1600                        &stepper_spacing, NULL,
1601                        NULL, NULL);
1602
1603   gtk_range_calc_request (range,
1604                           slider_width, stepper_size,
1605                           focus_width, trough_border, stepper_spacing,
1606                           &range_rect, &border, NULL, NULL, NULL, NULL);
1607
1608   *minimum = *natural = range_rect.height + border.top + border.bottom;
1609 }
1610
1611 static gboolean
1612 modify_allocation_for_window_grip (GtkWidget     *widget,
1613                                    GtkAllocation *allocation)
1614 {
1615   GtkRange *range = GTK_RANGE (widget);
1616   GtkRangePrivate *priv = range->priv;
1617   GtkWidget *window, *parent;
1618   GdkRectangle grip_rect;
1619   GdkRectangle translated_rect;
1620   gint x;
1621   gint y;
1622
1623   window = gtk_widget_get_toplevel (widget);
1624   if (!GTK_IS_WINDOW (window))
1625     return FALSE;
1626
1627   if (!gtk_window_resize_grip_is_visible (GTK_WINDOW (window)))
1628     return FALSE;
1629
1630   /* Get the area of the window's corner grip */
1631   gtk_window_get_resize_grip_area (GTK_WINDOW (window), &grip_rect);
1632
1633   x = 0;
1634   y = 0;
1635
1636   /* Translate the stepper's area into window coords.
1637    * This is slightly tricky. We can't just use
1638    * gtk_widget_translate_coordinates (widget, window, 0, 0, &x, &y)
1639    * since that translates wrt to the _current_ allocation
1640    * and will lead to alternating between overlap and nonoverlap
1641    * for successive allocations.
1642    * Therefore, we find the window-widget to whose window allocation
1643    * is relative, and translate from there upwards.
1644    */
1645   parent = widget;
1646   while (gtk_widget_get_window (parent) == gtk_widget_get_window (widget) &&
1647          parent != window)
1648     {
1649       parent = gtk_widget_get_parent (parent);
1650     }
1651
1652   if (parent == window)
1653     translated_rect = *allocation;
1654   else
1655     {
1656       gtk_widget_translate_coordinates (gtk_widget_get_parent (widget),
1657                                         window,
1658                                         allocation->x, allocation->y,
1659                                         &x, &y);
1660       translated_rect.x = x;
1661       translated_rect.y = y;
1662       translated_rect.width = allocation->width;
1663       translated_rect.height = allocation->height;
1664     }
1665
1666   /* If the stepper button intersects the window resize grip.. */
1667   if (gdk_rectangle_intersect (&grip_rect, &translated_rect, NULL))
1668     {
1669       if (priv->orientation == GTK_ORIENTATION_HORIZONTAL)
1670         {
1671           allocation->width -= grip_rect.width;
1672           if (gtk_widget_get_direction (window) == GTK_TEXT_DIR_RTL)
1673             allocation->x += grip_rect.width;
1674         }
1675       else
1676         {
1677           allocation->height -= grip_rect.height;
1678         }
1679
1680       return TRUE;
1681     }
1682
1683   return FALSE;
1684 }
1685
1686 static void
1687 gtk_range_size_allocate (GtkWidget     *widget,
1688                          GtkAllocation *allocation)
1689 {
1690   GtkRange *range = GTK_RANGE (widget);
1691   GtkRangePrivate *priv = range->priv;
1692
1693   modify_allocation_for_window_grip (widget, allocation);
1694   gtk_widget_set_allocation (widget, allocation);
1695
1696   priv->recalc_marks = TRUE;
1697
1698   priv->need_recalc = TRUE;
1699   gtk_range_calc_layout (range, priv->adjustment->value);
1700
1701   if (gtk_widget_get_realized (widget))
1702     gdk_window_move_resize (priv->event_window,
1703                             allocation->x, allocation->y,
1704                             allocation->width, allocation->height);
1705 }
1706
1707 static void
1708 resize_grip_visible_changed (GObject    *object,
1709                              GParamSpec *pspec,
1710                              gpointer    user_data)
1711 {
1712   gtk_widget_queue_resize (GTK_WIDGET (user_data));
1713 }
1714
1715 static void
1716 gtk_range_hierarchy_changed (GtkWidget *widget,
1717                              GtkWidget *previous_toplevel)
1718 {
1719   GtkWidget *window;
1720
1721   if (previous_toplevel)
1722     g_signal_handlers_disconnect_by_func (previous_toplevel,
1723                                           G_CALLBACK (resize_grip_visible_changed),
1724                                           widget);
1725   window = gtk_widget_get_toplevel (widget);
1726   if (GTK_IS_WINDOW (window))
1727     g_signal_connect (window, "notify::resize-grip-visible",
1728                       G_CALLBACK (resize_grip_visible_changed), widget);
1729 }
1730
1731 static void
1732 gtk_range_realize (GtkWidget *widget)
1733 {
1734   GtkAllocation allocation;
1735   GtkRange *range = GTK_RANGE (widget);
1736   GtkRangePrivate *priv = range->priv;
1737   GdkWindow *window;
1738   GdkWindowAttr attributes;
1739   gint attributes_mask;
1740
1741   gtk_range_calc_layout (range, priv->adjustment->value);
1742
1743   gtk_widget_set_realized (widget, TRUE);
1744
1745   window = gtk_widget_get_parent_window (widget);
1746   gtk_widget_set_window (widget, window);
1747   g_object_ref (window);
1748
1749   gtk_widget_get_allocation (widget, &allocation);
1750   if (modify_allocation_for_window_grip (widget, &allocation))
1751     gtk_widget_set_allocation (widget, &allocation);
1752
1753   attributes.window_type = GDK_WINDOW_CHILD;
1754   attributes.x = allocation.x;
1755   attributes.y = allocation.y;
1756   attributes.width = allocation.width;
1757   attributes.height = allocation.height;
1758   attributes.wclass = GDK_INPUT_ONLY;
1759   attributes.event_mask = gtk_widget_get_events (widget);
1760   attributes.event_mask |= (GDK_BUTTON_PRESS_MASK |
1761                             GDK_BUTTON_RELEASE_MASK |
1762                             GDK_ENTER_NOTIFY_MASK |
1763                             GDK_LEAVE_NOTIFY_MASK |
1764                             GDK_POINTER_MOTION_MASK |
1765                             GDK_POINTER_MOTION_HINT_MASK);
1766
1767   attributes_mask = GDK_WA_X | GDK_WA_Y;
1768
1769   priv->event_window = gdk_window_new (gtk_widget_get_parent_window (widget),
1770                                         &attributes, attributes_mask);
1771   gdk_window_set_user_data (priv->event_window, range);
1772
1773   gtk_widget_style_attach (widget);
1774 }
1775
1776 static void
1777 gtk_range_unrealize (GtkWidget *widget)
1778 {
1779   GtkRange *range = GTK_RANGE (widget);
1780   GtkRangePrivate *priv = range->priv;
1781
1782   gtk_range_remove_step_timer (range);
1783   gtk_range_remove_update_timer (range);
1784
1785   gdk_window_set_user_data (priv->event_window, NULL);
1786   gdk_window_destroy (priv->event_window);
1787   priv->event_window = NULL;
1788
1789   GTK_WIDGET_CLASS (gtk_range_parent_class)->unrealize (widget);
1790 }
1791
1792 static void
1793 gtk_range_map (GtkWidget *widget)
1794 {
1795   GtkRange *range = GTK_RANGE (widget);
1796   GtkRangePrivate *priv = range->priv;
1797
1798   gdk_window_show (priv->event_window);
1799
1800   GTK_WIDGET_CLASS (gtk_range_parent_class)->map (widget);
1801 }
1802
1803 static void
1804 gtk_range_unmap (GtkWidget *widget)
1805 {
1806   GtkRange *range = GTK_RANGE (widget);
1807   GtkRangePrivate *priv = range->priv;
1808
1809   stop_scrolling (range);
1810
1811   gdk_window_hide (priv->event_window);
1812
1813   GTK_WIDGET_CLASS (gtk_range_parent_class)->unmap (widget);
1814 }
1815
1816 static const gchar *
1817 gtk_range_get_slider_detail (GtkRange *range)
1818 {
1819   GtkRangePrivate *priv = range->priv;
1820   const gchar *slider_detail;
1821
1822   if (priv->slider_detail_quark)
1823     return g_quark_to_string (priv->slider_detail_quark);
1824
1825   slider_detail = GTK_RANGE_GET_CLASS (range)->slider_detail;
1826
1827   if (slider_detail && slider_detail[0] == 'X')
1828     {
1829       gchar *detail = g_strdup (slider_detail);
1830
1831       detail[0] = priv->orientation == GTK_ORIENTATION_HORIZONTAL ? 'h' : 'v';
1832
1833       priv->slider_detail_quark = g_quark_from_string (detail);
1834
1835       g_free (detail);
1836
1837       return g_quark_to_string (priv->slider_detail_quark);
1838     }
1839
1840   return slider_detail;
1841 }
1842
1843 static const gchar *
1844 gtk_range_get_stepper_detail (GtkRange *range,
1845                               Stepper   stepper)
1846 {
1847   GtkRangePrivate *priv = range->priv;
1848   const gchar *stepper_detail;
1849   gchar *detail;
1850   const gchar *position = NULL;
1851
1852   if (priv->stepper_detail_quark[stepper])
1853     return g_quark_to_string (priv->stepper_detail_quark[stepper]);
1854
1855   stepper_detail = GTK_RANGE_GET_CLASS (range)->stepper_detail;
1856
1857   switch (stepper)
1858     {
1859     case STEPPER_A:
1860       position = "_start";
1861       break;
1862     case STEPPER_B:
1863       if (priv->has_stepper_a)
1864         position = "_start_inner";
1865       else
1866         position = "_start";
1867       break;
1868     case STEPPER_C:
1869       if (priv->has_stepper_d)
1870         position = "_end_inner";
1871       else
1872         position = "_end";
1873       break;
1874     case STEPPER_D:
1875       position = "_end";
1876       break;
1877     default:
1878       g_assert_not_reached ();
1879     }
1880
1881   detail = g_strconcat (stepper_detail, position, NULL);
1882
1883   if (detail[0] == 'X')
1884     detail[0] = priv->orientation == GTK_ORIENTATION_HORIZONTAL ? 'h' : 'v';
1885
1886   priv->stepper_detail_quark[stepper] = g_quark_from_string (detail);
1887
1888   g_free (detail);
1889
1890   return g_quark_to_string (priv->stepper_detail_quark[stepper]);
1891 }
1892
1893 static void
1894 draw_stepper (GtkRange     *range,
1895               Stepper       stepper,
1896               cairo_t      *cr,
1897               GtkArrowType  arrow_type,
1898               gboolean      clicked,
1899               gboolean      prelighted)
1900 {
1901   GtkRangePrivate *priv = range->priv;
1902   GtkAllocation allocation;
1903   GtkStateType state_type;
1904   GtkShadowType shadow_type;
1905   GtkStyle *style;
1906   GtkWidget *widget = GTK_WIDGET (range);
1907   GdkWindow *window;
1908   gfloat arrow_scaling;
1909   GdkRectangle *rect;
1910   gint arrow_x;
1911   gint arrow_y;
1912   gint arrow_width;
1913   gint arrow_height;
1914
1915   switch (stepper)
1916     {
1917     case STEPPER_A:
1918       rect = &priv->stepper_a;
1919       break;
1920     case STEPPER_B:
1921       rect = &priv->stepper_b;
1922       break;
1923     case STEPPER_C:
1924       rect = &priv->stepper_c;
1925       break;
1926     case STEPPER_D:
1927       rect = &priv->stepper_d;
1928       break;
1929     default:
1930       g_assert_not_reached ();
1931     };
1932
1933   gboolean arrow_sensitive = TRUE;
1934
1935   gtk_widget_get_allocation (widget, &allocation);
1936
1937   if ((!priv->inverted && (arrow_type == GTK_ARROW_DOWN ||
1938                             arrow_type == GTK_ARROW_RIGHT)) ||
1939       (priv->inverted  && (arrow_type == GTK_ARROW_UP ||
1940                             arrow_type == GTK_ARROW_LEFT)))
1941     {
1942       arrow_sensitive = priv->upper_sensitive;
1943     }
1944   else
1945     {
1946       arrow_sensitive = priv->lower_sensitive;
1947     }
1948
1949   if (!gtk_widget_is_sensitive (GTK_WIDGET (range)) || !arrow_sensitive)
1950     state_type = GTK_STATE_INSENSITIVE;
1951   else if (clicked)
1952     state_type = GTK_STATE_ACTIVE;
1953   else if (prelighted)
1954     state_type = GTK_STATE_PRELIGHT;
1955   else 
1956     state_type = GTK_STATE_NORMAL;
1957
1958   if (clicked && arrow_sensitive)
1959     shadow_type = GTK_SHADOW_IN;
1960   else
1961     shadow_type = GTK_SHADOW_OUT;
1962
1963   style = gtk_widget_get_style (widget);
1964   window = gtk_widget_get_window (widget);
1965
1966   gtk_paint_box (style, cr,
1967                  state_type, shadow_type,
1968                  widget,
1969                  gtk_range_get_stepper_detail (range, stepper),
1970                  rect->x,
1971                  rect->y,
1972                  rect->width,
1973                  rect->height);
1974
1975   gtk_widget_style_get (widget, "arrow-scaling", &arrow_scaling, NULL);
1976
1977   arrow_width = rect->width * arrow_scaling;
1978   arrow_height = rect->height * arrow_scaling;
1979   arrow_x = rect->x + (rect->width - arrow_width) / 2;
1980   arrow_y = rect->y + (rect->height - arrow_height) / 2;
1981
1982   if (clicked && arrow_sensitive)
1983     {
1984       gint arrow_displacement_x;
1985       gint arrow_displacement_y;
1986
1987       gtk_range_get_props (GTK_RANGE (widget),
1988                            NULL, NULL, NULL, NULL, NULL, NULL,
1989                            &arrow_displacement_x, &arrow_displacement_y);
1990       
1991       arrow_x += arrow_displacement_x;
1992       arrow_y += arrow_displacement_y;
1993     }
1994
1995   gtk_paint_arrow (style, cr,
1996                    state_type, shadow_type,
1997                    widget,
1998                    gtk_range_get_stepper_detail (range, stepper),
1999                    arrow_type,
2000                    TRUE,
2001                    arrow_x, arrow_y, arrow_width, arrow_height);
2002 }
2003
2004 static gboolean
2005 gtk_range_draw (GtkWidget      *widget,
2006                 cairo_t        *cr)
2007 {
2008   GtkRange *range = GTK_RANGE (widget);
2009   GtkRangePrivate *priv = range->priv;
2010   gboolean sensitive;
2011   GtkStateType state;
2012   GtkShadowType shadow_type;
2013   GtkStyle *style;
2014   GdkWindow *window;
2015   gint focus_line_width = 0;
2016   gint focus_padding = 0;
2017   gboolean touchscreen;
2018
2019   g_object_get (gtk_widget_get_settings (widget),
2020                 "gtk-touchscreen-mode", &touchscreen,
2021                 NULL);
2022
2023   style = gtk_widget_get_style (widget);
2024   if (gtk_widget_get_can_focus (GTK_WIDGET (range)))
2025     gtk_widget_style_get (GTK_WIDGET (range),
2026                           "focus-line-width", &focus_line_width,
2027                           "focus-padding", &focus_padding,
2028                           NULL);
2029
2030   window = gtk_widget_get_window (widget);
2031
2032   /* we're now exposing, so there's no need to force early repaints */
2033   if (priv->repaint_id)
2034     g_source_remove (priv->repaint_id);
2035   priv->repaint_id = 0;
2036
2037   gtk_range_calc_marks (range);
2038   gtk_range_calc_layout (range, priv->adjustment->value);
2039
2040   sensitive = gtk_widget_is_sensitive (widget);
2041
2042   /* Just to be confusing, we draw the trough for the whole
2043    * range rectangle, not the trough rectangle (the trough
2044    * rectangle is just for hit detection)
2045    */
2046   cairo_save (cr);
2047   gdk_cairo_rectangle (cr, &priv->range_rect);
2048   cairo_clip (cr);
2049
2050     {
2051       gint     x      = (priv->range_rect.x +
2052                          focus_line_width + focus_padding);
2053       gint     y      = (priv->range_rect.y +
2054                          focus_line_width + focus_padding);
2055       gint     width  = (priv->range_rect.width -
2056                          2 * (focus_line_width + focus_padding));
2057       gint     height = (priv->range_rect.height -
2058                          2 * (focus_line_width + focus_padding));
2059       gboolean trough_under_steppers;
2060       gint     stepper_size;
2061       gint     stepper_spacing;
2062
2063       gtk_widget_style_get (GTK_WIDGET (range),
2064                             "trough-under-steppers", &trough_under_steppers,
2065                             "stepper-size",          &stepper_size,
2066                             "stepper-spacing",       &stepper_spacing,
2067                             NULL);
2068
2069       if (stepper_spacing > 0)
2070         trough_under_steppers = FALSE;
2071
2072       if (!trough_under_steppers)
2073         {
2074           gint offset  = 0;
2075           gint shorter = 0;
2076
2077           if (priv->has_stepper_a)
2078             offset += stepper_size;
2079
2080           if (priv->has_stepper_b)
2081             offset += stepper_size;
2082
2083           shorter += offset;
2084
2085           if (priv->has_stepper_c)
2086             shorter += stepper_size;
2087
2088           if (priv->has_stepper_d)
2089             shorter += stepper_size;
2090
2091           if (priv->has_stepper_a || priv->has_stepper_b)
2092             {
2093               offset  += stepper_spacing;
2094               shorter += stepper_spacing;
2095             }
2096
2097           if (priv->has_stepper_c || priv->has_stepper_d)
2098             {
2099               shorter += stepper_spacing;
2100             }
2101
2102           if (priv->orientation == GTK_ORIENTATION_HORIZONTAL)
2103             {
2104               x     += offset;
2105               width -= shorter;
2106             }
2107           else
2108             {
2109               y      += offset;
2110               height -= shorter;
2111             }
2112         }
2113
2114         {
2115           gint trough_change_pos_x = width;
2116           gint trough_change_pos_y = height;
2117
2118           if (priv->orientation == GTK_ORIENTATION_HORIZONTAL)
2119             trough_change_pos_x = (priv->slider.x +
2120                                    priv->slider.width / 2 -
2121                                    x);
2122           else
2123             trough_change_pos_y = (priv->slider.y +
2124                                    priv->slider.height / 2 -
2125                                    y);
2126
2127           gtk_paint_box (style, cr,
2128                          sensitive ? GTK_STATE_ACTIVE : GTK_STATE_INSENSITIVE,
2129                          GTK_SHADOW_IN,
2130                          GTK_WIDGET (range),
2131                          should_invert (range) ? "trough-upper" : "trough-lower",
2132                          x, y,
2133                          trough_change_pos_x, trough_change_pos_y);
2134
2135           if (priv->orientation == GTK_ORIENTATION_HORIZONTAL)
2136             trough_change_pos_y = 0;
2137           else
2138             trough_change_pos_x = 0;
2139
2140           gtk_paint_box (style, cr,
2141                          sensitive ? GTK_STATE_ACTIVE : GTK_STATE_INSENSITIVE,
2142                          GTK_SHADOW_IN,
2143                          GTK_WIDGET (range),
2144                          should_invert (range) ? "trough-lower" : "trough-upper",
2145                          x + trough_change_pos_x, y + trough_change_pos_y,
2146                          width - trough_change_pos_x,
2147                          height - trough_change_pos_y);
2148         }
2149
2150       if (priv->show_fill_level &&
2151           priv->adjustment->upper - priv->adjustment->page_size -
2152           priv->adjustment->lower != 0)
2153         {
2154           gdouble  fill_level  = priv->fill_level;
2155           gint     fill_x      = x;
2156           gint     fill_y      = y;
2157           gint     fill_width  = width;
2158           gint     fill_height = height;
2159           gchar   *fill_detail;
2160
2161           fill_level = CLAMP (fill_level, priv->adjustment->lower,
2162                               priv->adjustment->upper -
2163                               priv->adjustment->page_size);
2164
2165           if (priv->orientation == GTK_ORIENTATION_HORIZONTAL)
2166             {
2167               fill_x     = priv->trough.x;
2168               fill_width = (priv->slider.width +
2169                             (fill_level - priv->adjustment->lower) /
2170                             (priv->adjustment->upper -
2171                              priv->adjustment->lower -
2172                              priv->adjustment->page_size) *
2173                             (priv->trough.width -
2174                              priv->slider.width));
2175
2176               if (should_invert (range))
2177                 fill_x += priv->trough.width - fill_width;
2178             }
2179           else
2180             {
2181               fill_y      = priv->trough.y;
2182               fill_height = (priv->slider.height +
2183                              (fill_level - priv->adjustment->lower) /
2184                              (priv->adjustment->upper -
2185                               priv->adjustment->lower -
2186                               priv->adjustment->page_size) *
2187                              (priv->trough.height -
2188                               priv->slider.height));
2189
2190               if (should_invert (range))
2191                 fill_y += priv->trough.height - fill_height;
2192             }
2193
2194           if (fill_level < priv->adjustment->upper - priv->adjustment->page_size)
2195             fill_detail = "trough-fill-level-full";
2196           else
2197             fill_detail = "trough-fill-level";
2198
2199           gtk_paint_box (style, cr,
2200                          sensitive ? GTK_STATE_ACTIVE : GTK_STATE_INSENSITIVE,
2201                          GTK_SHADOW_OUT,
2202                          GTK_WIDGET (range), fill_detail,
2203                          fill_x, fill_y,
2204                          fill_width, fill_height);
2205         }
2206
2207       if (sensitive && gtk_widget_has_focus (widget))
2208         gtk_paint_focus (style, cr,
2209                          gtk_widget_get_state (widget),
2210                          widget, "trough",
2211                          priv->range_rect.x,
2212                          priv->range_rect.y,
2213                          priv->range_rect.width,
2214                          priv->range_rect.height);
2215     }
2216
2217   cairo_restore (cr);
2218
2219   shadow_type = GTK_SHADOW_OUT;
2220
2221   if (!sensitive)
2222     state = GTK_STATE_INSENSITIVE;
2223   else if (!touchscreen && priv->mouse_location == MOUSE_SLIDER)
2224     state = GTK_STATE_PRELIGHT;
2225   else
2226     state = GTK_STATE_NORMAL;
2227
2228   if (priv->grab_location == MOUSE_SLIDER)
2229     {
2230       state = GTK_STATE_ACTIVE;
2231       shadow_type = GTK_SHADOW_IN;
2232     }
2233
2234   cairo_save (cr);
2235   gdk_cairo_rectangle (cr, &priv->slider);
2236   cairo_clip (cr);
2237
2238     {
2239       gtk_paint_slider (style,
2240                         cr,
2241                         state,
2242                         shadow_type,
2243                         widget,
2244                         gtk_range_get_slider_detail (range),
2245                         priv->slider.x,
2246                         priv->slider.y,
2247                         priv->slider.width,
2248                         priv->slider.height,
2249                         priv->orientation);
2250     }
2251
2252   cairo_restore (cr);
2253
2254   if (priv->has_stepper_a)
2255     draw_stepper (range, STEPPER_A, cr,
2256                   priv->orientation == GTK_ORIENTATION_VERTICAL ? GTK_ARROW_UP : GTK_ARROW_LEFT,
2257                   priv->grab_location == MOUSE_STEPPER_A,
2258                   !touchscreen && priv->mouse_location == MOUSE_STEPPER_A);
2259
2260   if (priv->has_stepper_b)
2261     draw_stepper (range, STEPPER_B, cr,
2262                   priv->orientation == GTK_ORIENTATION_VERTICAL ? GTK_ARROW_DOWN : GTK_ARROW_RIGHT,
2263                   priv->grab_location == MOUSE_STEPPER_B,
2264                   !touchscreen && priv->mouse_location == MOUSE_STEPPER_B);
2265
2266   if (priv->has_stepper_c)
2267     draw_stepper (range, STEPPER_C, cr,
2268                   priv->orientation == GTK_ORIENTATION_VERTICAL ? GTK_ARROW_UP : GTK_ARROW_LEFT,
2269                   priv->grab_location == MOUSE_STEPPER_C,
2270                   !touchscreen && priv->mouse_location == MOUSE_STEPPER_C);
2271
2272   if (priv->has_stepper_d)
2273     draw_stepper (range, STEPPER_D, cr,
2274                   priv->orientation == GTK_ORIENTATION_VERTICAL ? GTK_ARROW_DOWN : GTK_ARROW_RIGHT,
2275                   priv->grab_location == MOUSE_STEPPER_D,
2276                   !touchscreen && priv->mouse_location == MOUSE_STEPPER_D);
2277   
2278   return FALSE;
2279 }
2280
2281 static void
2282 range_grab_add (GtkRange      *range,
2283                 GdkDevice     *device,
2284                 MouseLocation  location,
2285                 gint           button)
2286 {
2287   GtkRangePrivate *priv = range->priv;
2288
2289   if (device == priv->grab_device)
2290     return;
2291
2292   if (priv->grab_device != NULL)
2293     {
2294       g_warning ("GtkRange already had a grab device, releasing device grab");
2295       gtk_device_grab_remove (GTK_WIDGET (range), priv->grab_device);
2296     }
2297
2298   /* we don't actually gdk_grab, since a button is down */
2299   gtk_device_grab_add (GTK_WIDGET (range), device, TRUE);
2300
2301   priv->grab_location = location;
2302   priv->grab_button = button;
2303   priv->grab_device = device;
2304
2305   if (gtk_range_update_mouse_location (range))
2306     gtk_widget_queue_draw (GTK_WIDGET (range));
2307 }
2308
2309 static void
2310 range_grab_remove (GtkRange *range)
2311 {
2312   GtkRangePrivate *priv = range->priv;
2313   MouseLocation location;
2314
2315   if (priv->grab_device)
2316     {
2317       gtk_device_grab_remove (GTK_WIDGET (range),
2318                               priv->grab_device);
2319       priv->grab_device = NULL;
2320     }
2321
2322   location = priv->grab_location;
2323   priv->grab_location = MOUSE_OUTSIDE;
2324   priv->grab_button = 0;
2325
2326   if (gtk_range_update_mouse_location (range) ||
2327       location != MOUSE_OUTSIDE)
2328     gtk_widget_queue_draw (GTK_WIDGET (range));
2329 }
2330
2331 static GtkScrollType
2332 range_get_scroll_for_grab (GtkRange      *range)
2333 {
2334   GtkRangePrivate *priv = range->priv;
2335   gboolean invert;
2336
2337   invert = should_invert (range);
2338   switch (priv->grab_location)
2339     {
2340       /* Backward stepper */
2341     case MOUSE_STEPPER_A:
2342     case MOUSE_STEPPER_C:
2343       switch (priv->grab_button)
2344         {
2345         case 1:
2346           return invert ? GTK_SCROLL_STEP_FORWARD : GTK_SCROLL_STEP_BACKWARD;
2347           break;
2348         case 2:
2349           return invert ? GTK_SCROLL_PAGE_FORWARD : GTK_SCROLL_PAGE_BACKWARD;
2350           break;
2351         case 3:
2352           return invert ? GTK_SCROLL_END : GTK_SCROLL_START;
2353           break;
2354         }
2355       break;
2356
2357       /* Forward stepper */
2358     case MOUSE_STEPPER_B:
2359     case MOUSE_STEPPER_D:
2360       switch (priv->grab_button)
2361         {
2362         case 1:
2363           return invert ? GTK_SCROLL_STEP_BACKWARD : GTK_SCROLL_STEP_FORWARD;
2364           break;
2365         case 2:
2366           return invert ? GTK_SCROLL_PAGE_BACKWARD : GTK_SCROLL_PAGE_FORWARD;
2367           break;
2368         case 3:
2369           return invert ? GTK_SCROLL_START : GTK_SCROLL_END;
2370           break;
2371        }
2372       break;
2373
2374       /* In the trough */
2375     case MOUSE_TROUGH:
2376       {
2377         if (priv->trough_click_forward)
2378           return GTK_SCROLL_PAGE_FORWARD;
2379         else
2380           return GTK_SCROLL_PAGE_BACKWARD;
2381       }
2382       break;
2383
2384     case MOUSE_OUTSIDE:
2385     case MOUSE_SLIDER:
2386     case MOUSE_WIDGET:
2387       break;
2388     }
2389
2390   return GTK_SCROLL_NONE;
2391 }
2392
2393 static gdouble
2394 coord_to_value (GtkRange *range,
2395                 gint      coord)
2396 {
2397   GtkRangePrivate *priv = range->priv;
2398   gdouble frac;
2399   gdouble value;
2400   gint    trough_length;
2401   gint    trough_start;
2402   gint    slider_length;
2403   gint    trough_border;
2404   gint    trough_under_steppers;
2405
2406   if (priv->orientation == GTK_ORIENTATION_VERTICAL)
2407     {
2408       trough_length = priv->trough.height;
2409       trough_start  = priv->trough.y;
2410       slider_length = priv->slider.height;
2411     }
2412   else
2413     {
2414       trough_length = priv->trough.width;
2415       trough_start  = priv->trough.x;
2416       slider_length = priv->slider.width;
2417     }
2418
2419   gtk_range_get_props (range, NULL, NULL, NULL, &trough_border, NULL,
2420                        &trough_under_steppers, NULL, NULL);
2421
2422   if (! trough_under_steppers)
2423     {
2424       trough_start += trough_border;
2425       trough_length -= 2 * trough_border;
2426     }
2427
2428   if (trough_length == slider_length)
2429     frac = 1.0;
2430   else
2431     frac = (MAX (0, coord - trough_start) /
2432             (gdouble) (trough_length - slider_length));
2433
2434   if (should_invert (range))
2435     frac = 1.0 - frac;
2436
2437   value = priv->adjustment->lower + frac * (priv->adjustment->upper -
2438                                             priv->adjustment->lower -
2439                                             priv->adjustment->page_size);
2440
2441   return value;
2442 }
2443
2444 static gboolean
2445 gtk_range_key_press (GtkWidget   *widget,
2446                      GdkEventKey *event)
2447 {
2448   GdkDevice *device;
2449   GtkRange *range = GTK_RANGE (widget);
2450   GtkRangePrivate *priv = range->priv;
2451
2452   device = gdk_event_get_device ((GdkEvent *) event);
2453   device = gdk_device_get_associated_device (device);
2454
2455   if (device == priv->grab_device &&
2456       event->keyval == GDK_KEY_Escape &&
2457       priv->grab_location != MOUSE_OUTSIDE)
2458     {
2459       stop_scrolling (range);
2460
2461       update_slider_position (range,
2462                               priv->slide_initial_coordinate,
2463                               priv->slide_initial_coordinate);
2464
2465       return TRUE;
2466     }
2467
2468   return GTK_WIDGET_CLASS (gtk_range_parent_class)->key_press_event (widget, event);
2469 }
2470
2471 static gint
2472 gtk_range_button_press (GtkWidget      *widget,
2473                         GdkEventButton *event)
2474 {
2475   GtkRange *range = GTK_RANGE (widget);
2476   GtkRangePrivate *priv = range->priv;
2477   GdkDevice *device;
2478
2479   if (!gtk_widget_has_focus (widget))
2480     gtk_widget_grab_focus (widget);
2481
2482   /* ignore presses when we're already doing something else. */
2483   if (priv->grab_location != MOUSE_OUTSIDE)
2484     return FALSE;
2485
2486   device = gdk_event_get_device ((GdkEvent *) event);
2487   priv->mouse_x = event->x;
2488   priv->mouse_y = event->y;
2489
2490   if (gtk_range_update_mouse_location (range))
2491     gtk_widget_queue_draw (widget);
2492
2493   if (priv->mouse_location == MOUSE_TROUGH  &&
2494       event->button == 1)
2495     {
2496       /* button 1 steps by page increment, as with button 2 on a stepper
2497        */
2498       GtkScrollType scroll;
2499       gdouble click_value;
2500       
2501       click_value = coord_to_value (range,
2502                                     priv->orientation == GTK_ORIENTATION_VERTICAL ?
2503                                     event->y : event->x);
2504
2505       priv->trough_click_forward = click_value > priv->adjustment->value;
2506       range_grab_add (range, device, MOUSE_TROUGH, event->button);
2507       
2508       scroll = range_get_scroll_for_grab (range);
2509       
2510       gtk_range_add_step_timer (range, scroll);
2511
2512       return TRUE;
2513     }
2514   else if ((priv->mouse_location == MOUSE_STEPPER_A ||
2515             priv->mouse_location == MOUSE_STEPPER_B ||
2516             priv->mouse_location == MOUSE_STEPPER_C ||
2517             priv->mouse_location == MOUSE_STEPPER_D) &&
2518            (event->button == 1 || event->button == 2 || event->button == 3))
2519     {
2520       GtkAllocation allocation;
2521       GdkRectangle *stepper_area;
2522       GtkScrollType scroll;
2523
2524       range_grab_add (range, device, priv->mouse_location, event->button);
2525
2526       gtk_widget_get_allocation (widget, &allocation);
2527       stepper_area = get_area (range, priv->mouse_location);
2528
2529       gtk_widget_queue_draw_area (widget,
2530                                   allocation.x + stepper_area->x,
2531                                   allocation.y + stepper_area->y,
2532                                   stepper_area->width,
2533                                   stepper_area->height);
2534
2535       scroll = range_get_scroll_for_grab (range);
2536       if (scroll != GTK_SCROLL_NONE)
2537         gtk_range_add_step_timer (range, scroll);
2538       
2539       return TRUE;
2540     }
2541   else if ((priv->mouse_location == MOUSE_TROUGH &&
2542             event->button == 2) ||
2543            priv->mouse_location == MOUSE_SLIDER)
2544     {
2545       gboolean need_value_update = FALSE;
2546
2547       /* Any button can be used to drag the slider, but you can start
2548        * dragging the slider with a trough click using button 2;
2549        * On button 2 press, we warp the slider to mouse position,
2550        * then begin the slider drag.
2551        */
2552       if (event->button == 2)
2553         {
2554           gdouble slider_low_value, slider_high_value, new_value;
2555           
2556           slider_high_value =
2557             coord_to_value (range,
2558                             priv->orientation == GTK_ORIENTATION_VERTICAL ?
2559                             event->y : event->x);
2560           slider_low_value =
2561             coord_to_value (range,
2562                             priv->orientation == GTK_ORIENTATION_VERTICAL ?
2563                             event->y - priv->slider.height :
2564                             event->x - priv->slider.width);
2565
2566           /* compute new value for warped slider */
2567           new_value = slider_low_value + (slider_high_value - slider_low_value) / 2;
2568
2569           /* recalc slider, so we can set slide_initial_slider_position
2570            * properly
2571            */
2572           priv->need_recalc = TRUE;
2573           gtk_range_calc_layout (range, new_value);
2574
2575           /* defer adjustment updates to update_slider_position() in order
2576            * to keep pixel quantisation
2577            */
2578           need_value_update = TRUE;
2579         }
2580
2581       if (priv->orientation == GTK_ORIENTATION_VERTICAL)
2582         {
2583           priv->slide_initial_slider_position = priv->slider.y;
2584           priv->slide_initial_coordinate = event->y;
2585         }
2586       else
2587         {
2588           priv->slide_initial_slider_position = priv->slider.x;
2589           priv->slide_initial_coordinate = event->x;
2590         }
2591
2592       range_grab_add (range, device, MOUSE_SLIDER, event->button);
2593
2594       gtk_widget_queue_draw (widget);
2595
2596       if (need_value_update)
2597         update_slider_position (range, event->x, event->y);
2598
2599       return TRUE;
2600     }
2601   
2602   return FALSE;
2603 }
2604
2605 /* During a slide, move the slider as required given new mouse position */
2606 static void
2607 update_slider_position (GtkRange *range,
2608                         gint      mouse_x,
2609                         gint      mouse_y)
2610 {
2611   GtkRangePrivate *priv = range->priv;
2612   gint delta;
2613   gint c;
2614   gdouble new_value;
2615   gboolean handled;
2616   gdouble next_value;
2617   gdouble mark_value;
2618   gdouble mark_delta;
2619   gint i;
2620
2621   if (priv->orientation == GTK_ORIENTATION_VERTICAL)
2622     delta = mouse_y - priv->slide_initial_coordinate;
2623   else
2624     delta = mouse_x - priv->slide_initial_coordinate;
2625
2626   c = priv->slide_initial_slider_position + delta;
2627
2628   new_value = coord_to_value (range, c);
2629   next_value = coord_to_value (range, c + 1);
2630   mark_delta = fabs (next_value - new_value); 
2631
2632   for (i = 0; i < priv->n_marks; i++)
2633     {
2634       mark_value = priv->marks[i];
2635
2636       if (fabs (priv->adjustment->value - mark_value) < 3 * mark_delta)
2637         {
2638           if (fabs (new_value - mark_value) < (priv->slider_end - priv->slider_start) * 0.5 * mark_delta)
2639             {
2640               new_value = mark_value;
2641               break;
2642             }
2643         }
2644     }  
2645
2646   g_signal_emit (range, signals[CHANGE_VALUE], 0, GTK_SCROLL_JUMP, new_value,
2647                  &handled);
2648 }
2649
2650 static void 
2651 stop_scrolling (GtkRange *range)
2652 {
2653   range_grab_remove (range);
2654   gtk_range_remove_step_timer (range);
2655   /* Flush any pending discontinuous/delayed updates */
2656   gtk_range_update_value (range);
2657 }
2658
2659 static gboolean
2660 gtk_range_grab_broken (GtkWidget          *widget,
2661                        GdkEventGrabBroken *event)
2662 {
2663   GtkRange *range = GTK_RANGE (widget);
2664   GtkRangePrivate *priv = range->priv;
2665   GdkDevice *device;
2666
2667   device = gdk_event_get_device ((GdkEvent *) event);
2668
2669   if (device == priv->grab_device &&
2670       priv->grab_location != MOUSE_OUTSIDE)
2671     {
2672       if (priv->grab_location == MOUSE_SLIDER)
2673         update_slider_position (range, priv->mouse_x, priv->mouse_y);
2674
2675       stop_scrolling (range);
2676       
2677       return TRUE;
2678     }
2679   
2680   return FALSE;
2681 }
2682
2683 static gint
2684 gtk_range_button_release (GtkWidget      *widget,
2685                           GdkEventButton *event)
2686 {
2687   GtkRange *range = GTK_RANGE (widget);
2688   GtkRangePrivate *priv = range->priv;
2689   GdkDevice *device;
2690
2691   if (event->window == priv->event_window)
2692     {
2693       priv->mouse_x = event->x;
2694       priv->mouse_y = event->y;
2695     }
2696   else
2697     {
2698       gdk_window_get_device_position (priv->event_window,
2699                                       event->device,
2700                                       &priv->mouse_x,
2701                                       &priv->mouse_y,
2702                                       NULL);
2703     }
2704
2705   device = gdk_event_get_device ((GdkEvent *) event);
2706
2707   if (priv->grab_device == device &&
2708       priv->grab_button == event->button)
2709     {
2710       if (priv->grab_location == MOUSE_SLIDER)
2711         update_slider_position (range, priv->mouse_x, priv->mouse_y);
2712
2713       stop_scrolling (range);
2714       
2715       return TRUE;
2716     }
2717
2718   return FALSE;
2719 }
2720
2721 /**
2722  * _gtk_range_get_wheel_delta:
2723  * @range: a #GtkRange
2724  * @direction: A #GdkScrollDirection
2725  * 
2726  * Returns a good step value for the mouse wheel.
2727  * 
2728  * Return value: A good step value for the mouse wheel. 
2729  * 
2730  * Since: 2.4
2731  **/
2732 gdouble
2733 _gtk_range_get_wheel_delta (GtkRange           *range,
2734                             GdkScrollDirection  direction)
2735 {
2736   GtkRangePrivate *priv = range->priv;
2737   GtkAdjustment *adj = priv->adjustment;
2738   gdouble delta;
2739
2740   if (GTK_IS_SCROLLBAR (range))
2741     delta = pow (adj->page_size, 2.0 / 3.0);
2742   else
2743     delta = adj->step_increment * 2;
2744   
2745   if (direction == GDK_SCROLL_UP ||
2746       direction == GDK_SCROLL_LEFT)
2747     delta = - delta;
2748   
2749   if (priv->inverted)
2750     delta = - delta;
2751
2752   return delta;
2753 }
2754       
2755 static gboolean
2756 gtk_range_scroll_event (GtkWidget      *widget,
2757                         GdkEventScroll *event)
2758 {
2759   GtkRange *range = GTK_RANGE (widget);
2760   GtkRangePrivate *priv = range->priv;
2761
2762   if (gtk_widget_get_realized (widget))
2763     {
2764       GtkAdjustment *adj = priv->adjustment;
2765       gdouble delta;
2766       gboolean handled;
2767
2768       delta = _gtk_range_get_wheel_delta (range, event->direction);
2769
2770       g_signal_emit (range, signals[CHANGE_VALUE], 0,
2771                      GTK_SCROLL_JUMP, adj->value + delta,
2772                      &handled);
2773       
2774       /* Policy DELAYED makes sense with scroll events,
2775        * but DISCONTINUOUS doesn't, so we update immediately
2776        * for DISCONTINUOUS
2777        */
2778       if (priv->update_policy == GTK_UPDATE_DISCONTINUOUS)
2779         gtk_range_update_value (range);
2780     }
2781
2782   return TRUE;
2783 }
2784
2785 static gboolean
2786 gtk_range_motion_notify (GtkWidget      *widget,
2787                          GdkEventMotion *event)
2788 {
2789   GtkRange *range = GTK_RANGE (widget);
2790   GtkRangePrivate *priv = range->priv;
2791
2792   gdk_event_request_motions (event);
2793
2794   priv->mouse_x = event->x;
2795   priv->mouse_y = event->y;
2796
2797   if (gtk_range_update_mouse_location (range))
2798     gtk_widget_queue_draw (widget);
2799
2800   if (priv->grab_location == MOUSE_SLIDER)
2801     update_slider_position (range, event->x, event->y);
2802
2803   /* We handled the event if the mouse was in the range_rect */
2804   return priv->mouse_location != MOUSE_OUTSIDE;
2805 }
2806
2807 static gboolean
2808 gtk_range_enter_notify (GtkWidget        *widget,
2809                         GdkEventCrossing *event)
2810 {
2811   GtkRange *range = GTK_RANGE (widget);
2812   GtkRangePrivate *priv = range->priv;
2813
2814   priv->mouse_x = event->x;
2815   priv->mouse_y = event->y;
2816
2817   if (gtk_range_update_mouse_location (range))
2818     gtk_widget_queue_draw (widget);
2819   
2820   return TRUE;
2821 }
2822
2823 static gboolean
2824 gtk_range_leave_notify (GtkWidget        *widget,
2825                         GdkEventCrossing *event)
2826 {
2827   GtkRange *range = GTK_RANGE (widget);
2828   GtkRangePrivate *priv = range->priv;
2829
2830   priv->mouse_x = -1;
2831   priv->mouse_y = -1;
2832
2833   if (gtk_range_update_mouse_location (range))
2834     gtk_widget_queue_draw (widget);
2835   
2836   return TRUE;
2837 }
2838
2839 static void
2840 gtk_range_grab_notify (GtkWidget *widget,
2841                        gboolean   was_grabbed)
2842 {
2843   GtkRangePrivate *priv = GTK_RANGE (widget)->priv;
2844
2845   if (priv->grab_device &&
2846       gtk_widget_device_is_shadowed (widget, priv->grab_device))
2847     stop_scrolling (GTK_RANGE (widget));
2848 }
2849
2850 static void
2851 gtk_range_state_changed (GtkWidget    *widget,
2852                          GtkStateType  previous_state)
2853 {
2854   if (!gtk_widget_is_sensitive (widget))
2855     stop_scrolling (GTK_RANGE (widget));
2856 }
2857
2858 #define check_rectangle(rectangle1, rectangle2)              \
2859   {                                                          \
2860     if (rectangle1.x != rectangle2.x) return TRUE;           \
2861     if (rectangle1.y != rectangle2.y) return TRUE;           \
2862     if (rectangle1.width  != rectangle2.width)  return TRUE; \
2863     if (rectangle1.height != rectangle2.height) return TRUE; \
2864   }
2865
2866 static gboolean
2867 layout_changed (GtkRangePrivate *priv1,
2868                 GtkRangePrivate *priv2)
2869 {
2870   check_rectangle (priv1->slider, priv2->slider);
2871   check_rectangle (priv1->trough, priv2->trough);
2872   check_rectangle (priv1->stepper_a, priv2->stepper_a);
2873   check_rectangle (priv1->stepper_d, priv2->stepper_d);
2874   check_rectangle (priv1->stepper_b, priv2->stepper_b);
2875   check_rectangle (priv1->stepper_c, priv2->stepper_c);
2876
2877   if (priv1->upper_sensitive != priv2->upper_sensitive) return TRUE;
2878   if (priv1->lower_sensitive != priv2->lower_sensitive) return TRUE;
2879
2880   return FALSE;
2881 }
2882
2883 static void
2884 gtk_range_adjustment_changed (GtkAdjustment *adjustment,
2885                               gpointer       data)
2886 {
2887   GtkRange *range = GTK_RANGE (data);
2888   GtkRangePrivate *priv = range->priv;
2889   GtkRangePrivate priv_aux = *priv;
2890
2891   priv->recalc_marks = TRUE;
2892   priv->need_recalc = TRUE;
2893   gtk_range_calc_layout (range, priv->adjustment->value);
2894
2895   /* now check whether the layout changed  */
2896   if (layout_changed (priv, &priv_aux))
2897     gtk_widget_queue_draw (GTK_WIDGET (range));
2898
2899   /* Note that we don't round off to priv->round_digits here.
2900    * that's because it's really broken to change a value
2901    * in response to a change signal on that value; round_digits
2902    * is therefore defined to be a filter on what the GtkRange
2903    * can input into the adjustment, not a filter that the GtkRange
2904    * will enforce on the adjustment.
2905    */
2906 }
2907
2908 static gboolean
2909 force_repaint (gpointer data)
2910 {
2911   GtkRange *range = GTK_RANGE (data);
2912   GtkRangePrivate *priv = range->priv;
2913   GtkWidget *widget = GTK_WIDGET (range);
2914
2915   priv->repaint_id = 0;
2916   if (gtk_widget_is_drawable (widget))
2917     gdk_window_process_updates (gtk_widget_get_window (widget), FALSE);
2918
2919   return FALSE;
2920 }
2921
2922 static void
2923 gtk_range_adjustment_value_changed (GtkAdjustment *adjustment,
2924                                     gpointer       data)
2925 {
2926   GtkRange *range = GTK_RANGE (data);
2927   GtkRangePrivate *priv = range->priv;
2928   GtkRangePrivate priv_aux = *priv;
2929
2930   priv->need_recalc = TRUE;
2931   gtk_range_calc_layout (range, priv->adjustment->value);
2932   
2933   /* now check whether the layout changed  */
2934   if (layout_changed (priv, &priv_aux) ||
2935       (GTK_IS_SCALE (range) && gtk_scale_get_draw_value (GTK_SCALE (range))))
2936     {
2937       gtk_widget_queue_draw (GTK_WIDGET (range));
2938       /* setup a timer to ensure the range isn't lagging too much behind the scroll position */
2939       if (!priv->repaint_id)
2940         priv->repaint_id = gdk_threads_add_timeout_full (GDK_PRIORITY_EVENTS, 181, force_repaint, range, NULL);
2941     }
2942   
2943   /* Note that we don't round off to priv->round_digits here.
2944    * that's because it's really broken to change a value
2945    * in response to a change signal on that value; round_digits
2946    * is therefore defined to be a filter on what the GtkRange
2947    * can input into the adjustment, not a filter that the GtkRange
2948    * will enforce on the adjustment.
2949    */
2950
2951   g_signal_emit (range, signals[VALUE_CHANGED], 0);
2952 }
2953
2954 static void
2955 gtk_range_style_set (GtkWidget *widget,
2956                      GtkStyle  *previous_style)
2957 {
2958   GtkRange *range = GTK_RANGE (widget);
2959   GtkRangePrivate *priv = range->priv;
2960
2961   priv->need_recalc = TRUE;
2962
2963   GTK_WIDGET_CLASS (gtk_range_parent_class)->style_set (widget, previous_style);
2964 }
2965
2966 static void
2967 apply_marks (GtkRange *range, 
2968              gdouble   oldval,
2969              gdouble  *newval)
2970 {
2971   GtkRangePrivate *priv = range->priv;
2972   gint i;
2973   gdouble mark;
2974
2975   for (i = 0; i < priv->n_marks; i++)
2976     {
2977       mark = priv->marks[i];
2978       if ((oldval < mark && mark < *newval) ||
2979           (oldval > mark && mark > *newval))
2980         {
2981           *newval = mark;
2982           return;
2983         }
2984     }
2985 }
2986
2987 static void
2988 step_back (GtkRange *range)
2989 {
2990   GtkRangePrivate *priv = range->priv;
2991   gdouble newval;
2992   gboolean handled;
2993
2994   newval = priv->adjustment->value - priv->adjustment->step_increment;
2995   apply_marks (range, priv->adjustment->value, &newval);
2996   g_signal_emit (range, signals[CHANGE_VALUE], 0,
2997                  GTK_SCROLL_STEP_BACKWARD, newval, &handled);
2998 }
2999
3000 static void
3001 step_forward (GtkRange *range)
3002 {
3003   GtkRangePrivate *priv = range->priv;
3004   gdouble newval;
3005   gboolean handled;
3006
3007   newval = priv->adjustment->value + priv->adjustment->step_increment;
3008   apply_marks (range, priv->adjustment->value, &newval);
3009   g_signal_emit (range, signals[CHANGE_VALUE], 0,
3010                  GTK_SCROLL_STEP_FORWARD, newval, &handled);
3011 }
3012
3013
3014 static void
3015 page_back (GtkRange *range)
3016 {
3017   GtkRangePrivate *priv = range->priv;
3018   gdouble newval;
3019   gboolean handled;
3020
3021   newval = priv->adjustment->value - priv->adjustment->page_increment;
3022   apply_marks (range, priv->adjustment->value, &newval);
3023   g_signal_emit (range, signals[CHANGE_VALUE], 0,
3024                  GTK_SCROLL_PAGE_BACKWARD, newval, &handled);
3025 }
3026
3027 static void
3028 page_forward (GtkRange *range)
3029 {
3030   GtkRangePrivate *priv = range->priv;
3031   gdouble newval;
3032   gboolean handled;
3033
3034   newval = priv->adjustment->value + priv->adjustment->page_increment;
3035   apply_marks (range, priv->adjustment->value, &newval);
3036   g_signal_emit (range, signals[CHANGE_VALUE], 0,
3037                  GTK_SCROLL_PAGE_FORWARD, newval, &handled);
3038 }
3039
3040 static void
3041 scroll_begin (GtkRange *range)
3042 {
3043   GtkRangePrivate *priv = range->priv;
3044   gboolean handled;
3045
3046   g_signal_emit (range, signals[CHANGE_VALUE], 0,
3047                  GTK_SCROLL_START, priv->adjustment->lower,
3048                  &handled);
3049 }
3050
3051 static void
3052 scroll_end (GtkRange *range)
3053 {
3054   GtkRangePrivate *priv = range->priv;
3055   gdouble newval;
3056   gboolean handled;
3057
3058   newval = priv->adjustment->upper - priv->adjustment->page_size;
3059   g_signal_emit (range, signals[CHANGE_VALUE], 0, GTK_SCROLL_END, newval,
3060                  &handled);
3061 }
3062
3063 static gboolean
3064 gtk_range_scroll (GtkRange     *range,
3065                   GtkScrollType scroll)
3066 {
3067   GtkRangePrivate *priv = range->priv;
3068   gdouble old_value = priv->adjustment->value;
3069
3070   switch (scroll)
3071     {
3072     case GTK_SCROLL_STEP_LEFT:
3073       if (should_invert (range))
3074         step_forward (range);
3075       else
3076         step_back (range);
3077       break;
3078                     
3079     case GTK_SCROLL_STEP_UP:
3080       if (should_invert (range))
3081         step_forward (range);
3082       else
3083         step_back (range);
3084       break;
3085
3086     case GTK_SCROLL_STEP_RIGHT:
3087       if (should_invert (range))
3088         step_back (range);
3089       else
3090         step_forward (range);
3091       break;
3092                     
3093     case GTK_SCROLL_STEP_DOWN:
3094       if (should_invert (range))
3095         step_back (range);
3096       else
3097         step_forward (range);
3098       break;
3099                   
3100     case GTK_SCROLL_STEP_BACKWARD:
3101       step_back (range);
3102       break;
3103                   
3104     case GTK_SCROLL_STEP_FORWARD:
3105       step_forward (range);
3106       break;
3107
3108     case GTK_SCROLL_PAGE_LEFT:
3109       if (should_invert (range))
3110         page_forward (range);
3111       else
3112         page_back (range);
3113       break;
3114                     
3115     case GTK_SCROLL_PAGE_UP:
3116       if (should_invert (range))
3117         page_forward (range);
3118       else
3119         page_back (range);
3120       break;
3121
3122     case GTK_SCROLL_PAGE_RIGHT:
3123       if (should_invert (range))
3124         page_back (range);
3125       else
3126         page_forward (range);
3127       break;
3128                     
3129     case GTK_SCROLL_PAGE_DOWN:
3130       if (should_invert (range))
3131         page_back (range);
3132       else
3133         page_forward (range);
3134       break;
3135                   
3136     case GTK_SCROLL_PAGE_BACKWARD:
3137       page_back (range);
3138       break;
3139                   
3140     case GTK_SCROLL_PAGE_FORWARD:
3141       page_forward (range);
3142       break;
3143
3144     case GTK_SCROLL_START:
3145       scroll_begin (range);
3146       break;
3147
3148     case GTK_SCROLL_END:
3149       scroll_end (range);
3150       break;
3151
3152     case GTK_SCROLL_JUMP:
3153       /* Used by CList, range doesn't use it. */
3154       break;
3155
3156     case GTK_SCROLL_NONE:
3157       break;
3158     }
3159
3160   return priv->adjustment->value != old_value;
3161 }
3162
3163 static void
3164 gtk_range_move_slider (GtkRange     *range,
3165                        GtkScrollType scroll)
3166 {
3167   GtkRangePrivate *priv = range->priv;
3168   gboolean cursor_only;
3169
3170   g_object_get (gtk_widget_get_settings (GTK_WIDGET (range)),
3171                 "gtk-keynav-cursor-only", &cursor_only,
3172                 NULL);
3173
3174   if (cursor_only)
3175     {
3176       GtkWidget *toplevel = gtk_widget_get_toplevel (GTK_WIDGET (range));
3177
3178       if (priv->orientation == GTK_ORIENTATION_HORIZONTAL)
3179         {
3180           if (scroll == GTK_SCROLL_STEP_UP ||
3181               scroll == GTK_SCROLL_STEP_DOWN)
3182             {
3183               if (toplevel)
3184                 gtk_widget_child_focus (toplevel,
3185                                         scroll == GTK_SCROLL_STEP_UP ?
3186                                         GTK_DIR_UP : GTK_DIR_DOWN);
3187               return;
3188             }
3189         }
3190       else
3191         {
3192           if (scroll == GTK_SCROLL_STEP_LEFT ||
3193               scroll == GTK_SCROLL_STEP_RIGHT)
3194             {
3195               if (toplevel)
3196                 gtk_widget_child_focus (toplevel,
3197                                         scroll == GTK_SCROLL_STEP_LEFT ?
3198                                         GTK_DIR_LEFT : GTK_DIR_RIGHT);
3199               return;
3200             }
3201         }
3202     }
3203
3204   if (! gtk_range_scroll (range, scroll))
3205     gtk_widget_error_bell (GTK_WIDGET (range));
3206
3207   /* Policy DELAYED makes sense with key events,
3208    * but DISCONTINUOUS doesn't, so we update immediately
3209    * for DISCONTINUOUS
3210    */
3211   if (priv->update_policy == GTK_UPDATE_DISCONTINUOUS)
3212     gtk_range_update_value (range);
3213 }
3214
3215 static void
3216 gtk_range_get_props (GtkRange  *range,
3217                      gint      *slider_width,
3218                      gint      *stepper_size,
3219                      gint      *focus_width,
3220                      gint      *trough_border,
3221                      gint      *stepper_spacing,
3222                      gboolean  *trough_under_steppers,
3223                      gint      *arrow_displacement_x,
3224                      gint      *arrow_displacement_y)
3225 {
3226   GtkWidget *widget =  GTK_WIDGET (range);
3227   gint tmp_slider_width, tmp_stepper_size, tmp_focus_width, tmp_trough_border;
3228   gint tmp_stepper_spacing, tmp_trough_under_steppers;
3229   gint tmp_arrow_displacement_x, tmp_arrow_displacement_y;
3230   
3231   gtk_widget_style_get (widget,
3232                         "slider-width", &tmp_slider_width,
3233                         "trough-border", &tmp_trough_border,
3234                         "stepper-size", &tmp_stepper_size,
3235                         "stepper-spacing", &tmp_stepper_spacing,
3236                         "trough-under-steppers", &tmp_trough_under_steppers,
3237                         "arrow-displacement-x", &tmp_arrow_displacement_x,
3238                         "arrow-displacement-y", &tmp_arrow_displacement_y,
3239                         NULL);
3240
3241   if (tmp_stepper_spacing > 0)
3242     tmp_trough_under_steppers = FALSE;
3243
3244   if (gtk_widget_get_can_focus (GTK_WIDGET (range)))
3245     {
3246       gint focus_line_width;
3247       gint focus_padding;
3248       
3249       gtk_widget_style_get (GTK_WIDGET (range),
3250                             "focus-line-width", &focus_line_width,
3251                             "focus-padding", &focus_padding,
3252                             NULL);
3253
3254       tmp_focus_width = focus_line_width + focus_padding;
3255     }
3256   else
3257     {
3258       tmp_focus_width = 0;
3259     }
3260   
3261   if (slider_width)
3262     *slider_width = tmp_slider_width;
3263
3264   if (focus_width)
3265     *focus_width = tmp_focus_width;
3266
3267   if (trough_border)
3268     *trough_border = tmp_trough_border;
3269
3270   if (stepper_size)
3271     *stepper_size = tmp_stepper_size;
3272
3273   if (stepper_spacing)
3274     *stepper_spacing = tmp_stepper_spacing;
3275
3276   if (trough_under_steppers)
3277     *trough_under_steppers = tmp_trough_under_steppers;
3278
3279   if (arrow_displacement_x)
3280     *arrow_displacement_x = tmp_arrow_displacement_x;
3281
3282   if (arrow_displacement_y)
3283     *arrow_displacement_y = tmp_arrow_displacement_y;
3284 }
3285
3286 #define POINT_IN_RECT(xcoord, ycoord, rect) \
3287  ((xcoord) >= (rect).x &&                   \
3288   (xcoord) <  ((rect).x + (rect).width) &&  \
3289   (ycoord) >= (rect).y &&                   \
3290   (ycoord) <  ((rect).y + (rect).height))
3291
3292 /* Update mouse location, return TRUE if it changes */
3293 static gboolean
3294 gtk_range_update_mouse_location (GtkRange *range)
3295 {
3296   GtkRangePrivate *priv = range->priv;
3297   GtkAllocation allocation;
3298   gint x, y;
3299   MouseLocation old;
3300   GtkWidget *widget = GTK_WIDGET (range);
3301
3302   old = priv->mouse_location;
3303
3304   x = priv->mouse_x;
3305   y = priv->mouse_y;
3306
3307   gtk_widget_get_allocation (widget, &allocation);
3308
3309   if (priv->grab_location != MOUSE_OUTSIDE)
3310     priv->mouse_location = priv->grab_location;
3311   else if (POINT_IN_RECT (x, y, priv->stepper_a))
3312     priv->mouse_location = MOUSE_STEPPER_A;
3313   else if (POINT_IN_RECT (x, y, priv->stepper_b))
3314     priv->mouse_location = MOUSE_STEPPER_B;
3315   else if (POINT_IN_RECT (x, y, priv->stepper_c))
3316     priv->mouse_location = MOUSE_STEPPER_C;
3317   else if (POINT_IN_RECT (x, y, priv->stepper_d))
3318     priv->mouse_location = MOUSE_STEPPER_D;
3319   else if (POINT_IN_RECT (x, y, priv->slider))
3320     priv->mouse_location = MOUSE_SLIDER;
3321   else if (POINT_IN_RECT (x, y, priv->trough))
3322     priv->mouse_location = MOUSE_TROUGH;
3323   else if (POINT_IN_RECT (x, y, allocation))
3324     priv->mouse_location = MOUSE_WIDGET;
3325   else
3326     priv->mouse_location = MOUSE_OUTSIDE;
3327
3328   return old != priv->mouse_location;
3329 }
3330
3331 /* Clamp rect, border inside widget->allocation, such that we prefer
3332  * to take space from border not rect in all directions, and prefer to
3333  * give space to border over rect in one direction.
3334  */
3335 static void
3336 clamp_dimensions (GtkWidget    *widget,
3337                   GdkRectangle *rect,
3338                   GtkBorder    *border,
3339                   gboolean      border_expands_horizontally)
3340 {
3341   GtkAllocation allocation;
3342   gint extra, shortage;
3343   
3344   g_return_if_fail (rect->x == 0);
3345   g_return_if_fail (rect->y == 0);  
3346   g_return_if_fail (rect->width >= 0);
3347   g_return_if_fail (rect->height >= 0);
3348
3349   gtk_widget_get_allocation (widget, &allocation);
3350
3351   /* Width */
3352
3353   extra = allocation.width - border->left - border->right - rect->width;
3354   if (extra > 0)
3355     {
3356       if (border_expands_horizontally)
3357         {
3358           border->left += extra / 2;
3359           border->right += extra / 2 + extra % 2;
3360         }
3361       else
3362         {
3363           rect->width += extra;
3364         }
3365     }
3366   
3367   /* See if we can fit rect, if not kill the border */
3368   shortage = rect->width - allocation.width;
3369   if (shortage > 0)
3370     {
3371       rect->width = allocation.width;
3372       /* lose the border */
3373       border->left = 0;
3374       border->right = 0;
3375     }
3376   else
3377     {
3378       /* See if we can fit rect with borders */
3379       shortage = rect->width + border->left + border->right - allocation.width;
3380       if (shortage > 0)
3381         {
3382           /* Shrink borders */
3383           border->left -= shortage / 2;
3384           border->right -= shortage / 2 + shortage % 2;
3385         }
3386     }
3387
3388   /* Height */
3389
3390   extra = allocation.height - border->top - border->bottom - rect->height;
3391   if (extra > 0)
3392     {
3393       if (border_expands_horizontally)
3394         {
3395           /* don't expand border vertically */
3396           rect->height += extra;
3397         }
3398       else
3399         {
3400           border->top += extra / 2;
3401           border->bottom += extra / 2 + extra % 2;
3402         }
3403     }
3404   
3405   /* See if we can fit rect, if not kill the border */
3406   shortage = rect->height - allocation.height;
3407   if (shortage > 0)
3408     {
3409       rect->height = allocation.height;
3410       /* lose the border */
3411       border->top = 0;
3412       border->bottom = 0;
3413     }
3414   else
3415     {
3416       /* See if we can fit rect with borders */
3417       shortage = rect->height + border->top + border->bottom - allocation.height;
3418       if (shortage > 0)
3419         {
3420           /* Shrink borders */
3421           border->top -= shortage / 2;
3422           border->bottom -= shortage / 2 + shortage % 2;
3423         }
3424     }
3425 }
3426
3427 static void
3428 gtk_range_calc_request (GtkRange      *range,
3429                         gint           slider_width,
3430                         gint           stepper_size,
3431                         gint           focus_width,
3432                         gint           trough_border,
3433                         gint           stepper_spacing,
3434                         GdkRectangle  *range_rect,
3435                         GtkBorder     *border,
3436                         gint          *n_steppers_p,
3437                         gboolean      *has_steppers_ab,
3438                         gboolean      *has_steppers_cd,
3439                         gint          *slider_length_p)
3440 {
3441   GtkRangePrivate *priv = range->priv;
3442   gint slider_length;
3443   gint n_steppers;
3444   gint n_steppers_ab;
3445   gint n_steppers_cd;
3446
3447   border->left = 0;
3448   border->right = 0;
3449   border->top = 0;
3450   border->bottom = 0;
3451
3452   if (GTK_RANGE_GET_CLASS (range)->get_range_border)
3453     GTK_RANGE_GET_CLASS (range)->get_range_border (range, border);
3454
3455   n_steppers_ab = 0;
3456   n_steppers_cd = 0;
3457
3458   if (priv->has_stepper_a)
3459     n_steppers_ab += 1;
3460   if (priv->has_stepper_b)
3461     n_steppers_ab += 1;
3462   if (priv->has_stepper_c)
3463     n_steppers_cd += 1;
3464   if (priv->has_stepper_d)
3465     n_steppers_cd += 1;
3466
3467   n_steppers = n_steppers_ab + n_steppers_cd;
3468
3469   slider_length = priv->min_slider_size;
3470
3471   range_rect->x = 0;
3472   range_rect->y = 0;
3473   
3474   /* We never expand to fill available space in the small dimension
3475    * (i.e. vertical scrollbars are always a fixed width)
3476    */
3477   if (priv->orientation == GTK_ORIENTATION_VERTICAL)
3478     {
3479       range_rect->width = (focus_width + trough_border) * 2 + slider_width;
3480       range_rect->height = stepper_size * n_steppers + (focus_width + trough_border) * 2 + slider_length;
3481
3482       if (n_steppers_ab > 0)
3483         range_rect->height += stepper_spacing;
3484
3485       if (n_steppers_cd > 0)
3486         range_rect->height += stepper_spacing;
3487     }
3488   else
3489     {
3490       range_rect->width = stepper_size * n_steppers + (focus_width + trough_border) * 2 + slider_length;
3491       range_rect->height = (focus_width + trough_border) * 2 + slider_width;
3492
3493       if (n_steppers_ab > 0)
3494         range_rect->width += stepper_spacing;
3495
3496       if (n_steppers_cd > 0)
3497         range_rect->width += stepper_spacing;
3498     }
3499
3500   if (n_steppers_p)
3501     *n_steppers_p = n_steppers;
3502
3503   if (has_steppers_ab)
3504     *has_steppers_ab = (n_steppers_ab > 0);
3505
3506   if (has_steppers_cd)
3507     *has_steppers_cd = (n_steppers_cd > 0);
3508
3509   if (slider_length_p)
3510     *slider_length_p = slider_length;
3511 }
3512
3513 static void
3514 gtk_range_calc_layout (GtkRange *range,
3515                        gdouble   adjustment_value)
3516 {
3517   GtkRangePrivate *priv = range->priv;
3518   gint slider_width, stepper_size, focus_width, trough_border, stepper_spacing;
3519   gint slider_length;
3520   GtkBorder border;
3521   gint n_steppers;
3522   gboolean has_steppers_ab;
3523   gboolean has_steppers_cd;
3524   gboolean trough_under_steppers;
3525   GdkRectangle range_rect;
3526   GtkWidget *widget;
3527
3528   if (!priv->need_recalc)
3529     return;
3530
3531   /* If we have a too-small allocation, we prefer the steppers over
3532    * the trough/slider, probably the steppers are a more useful
3533    * feature in small spaces.
3534    *
3535    * Also, we prefer to draw the range itself rather than the border
3536    * areas if there's a conflict, since the borders will be decoration
3537    * not controls. Though this depends on subclasses cooperating by
3538    * not drawing on priv->range_rect.
3539    */
3540
3541   widget = GTK_WIDGET (range);
3542
3543   gtk_range_get_props (range,
3544                        &slider_width, &stepper_size,
3545                        &focus_width, &trough_border,
3546                        &stepper_spacing, &trough_under_steppers,
3547                        NULL, NULL);
3548
3549   gtk_range_calc_request (range, 
3550                           slider_width, stepper_size,
3551                           focus_width, trough_border, stepper_spacing,
3552                           &range_rect, &border, &n_steppers,
3553                           &has_steppers_ab, &has_steppers_cd, &slider_length);
3554   
3555   /* We never expand to fill available space in the small dimension
3556    * (i.e. vertical scrollbars are always a fixed width)
3557    */
3558   if (priv->orientation == GTK_ORIENTATION_VERTICAL)
3559     {
3560       clamp_dimensions (widget, &range_rect, &border, TRUE);
3561     }
3562   else
3563     {
3564       clamp_dimensions (widget, &range_rect, &border, FALSE);
3565     }
3566   
3567   range_rect.x = border.left;
3568   range_rect.y = border.top;
3569
3570   priv->range_rect = range_rect;
3571
3572   if (priv->orientation == GTK_ORIENTATION_VERTICAL)
3573     {
3574       gint stepper_width, stepper_height;
3575
3576       /* Steppers are the width of the range, and stepper_size in
3577        * height, or if we don't have enough height, divided equally
3578        * among available space.
3579        */
3580       stepper_width = range_rect.width - focus_width * 2;
3581
3582       if (trough_under_steppers)
3583         stepper_width -= trough_border * 2;
3584
3585       if (stepper_width < 1)
3586         stepper_width = range_rect.width; /* screw the trough border */
3587
3588       if (n_steppers == 0)
3589         stepper_height = 0; /* avoid divide by n_steppers */
3590       else
3591         stepper_height = MIN (stepper_size, (range_rect.height / n_steppers));
3592
3593       /* Stepper A */
3594       
3595       priv->stepper_a.x = range_rect.x + focus_width + trough_border * trough_under_steppers;
3596       priv->stepper_a.y = range_rect.y + focus_width + trough_border * trough_under_steppers;
3597
3598       if (priv->has_stepper_a)
3599         {
3600           priv->stepper_a.width = stepper_width;
3601           priv->stepper_a.height = stepper_height;
3602         }
3603       else
3604         {
3605           priv->stepper_a.width = 0;
3606           priv->stepper_a.height = 0;
3607         }
3608
3609       /* Stepper B */
3610       
3611       priv->stepper_b.x = priv->stepper_a.x;
3612       priv->stepper_b.y = priv->stepper_a.y + priv->stepper_a.height;
3613
3614       if (priv->has_stepper_b)
3615         {
3616           priv->stepper_b.width = stepper_width;
3617           priv->stepper_b.height = stepper_height;
3618         }
3619       else
3620         {
3621           priv->stepper_b.width = 0;
3622           priv->stepper_b.height = 0;
3623         }
3624
3625       /* Stepper D */
3626
3627       if (priv->has_stepper_d)
3628         {
3629           priv->stepper_d.width = stepper_width;
3630           priv->stepper_d.height = stepper_height;
3631         }
3632       else
3633         {
3634           priv->stepper_d.width = 0;
3635           priv->stepper_d.height = 0;
3636         }
3637       
3638       priv->stepper_d.x = priv->stepper_a.x;
3639       priv->stepper_d.y = range_rect.y + range_rect.height - priv->stepper_d.height - focus_width - trough_border * trough_under_steppers;
3640
3641       /* Stepper C */
3642
3643       if (priv->has_stepper_c)
3644         {
3645           priv->stepper_c.width = stepper_width;
3646           priv->stepper_c.height = stepper_height;
3647         }
3648       else
3649         {
3650           priv->stepper_c.width = 0;
3651           priv->stepper_c.height = 0;
3652         }
3653       
3654       priv->stepper_c.x = priv->stepper_a.x;
3655       priv->stepper_c.y = priv->stepper_d.y - priv->stepper_c.height;
3656
3657       /* Now the trough is the remaining space between steppers B and C,
3658        * if any, minus spacing
3659        */
3660       priv->trough.x = range_rect.x;
3661       priv->trough.y = priv->stepper_b.y + priv->stepper_b.height + stepper_spacing * has_steppers_ab;
3662       priv->trough.width = range_rect.width;
3663       priv->trough.height = priv->stepper_c.y - priv->trough.y - stepper_spacing * has_steppers_cd;
3664
3665       /* Slider fits into the trough, with stepper_spacing on either side,
3666        * and the size/position based on the adjustment or fixed, depending.
3667        */
3668       priv->slider.x = priv->trough.x + focus_width + trough_border;
3669       priv->slider.width = priv->trough.width - (focus_width + trough_border) * 2;
3670
3671       /* Compute slider position/length */
3672       {
3673         gint y, bottom, top, height;
3674         
3675         top = priv->trough.y;
3676         bottom = priv->trough.y + priv->trough.height;
3677
3678         if (! trough_under_steppers)
3679           {
3680             top += trough_border;
3681             bottom -= trough_border;
3682           }
3683
3684         /* slider height is the fraction (page_size /
3685          * total_adjustment_range) times the trough height in pixels
3686          */
3687
3688         if (priv->adjustment->upper - priv->adjustment->lower != 0)
3689           height = ((bottom - top) * (priv->adjustment->page_size /
3690                                        (priv->adjustment->upper - priv->adjustment->lower)));
3691         else
3692           height = priv->min_slider_size;
3693
3694         if (height < priv->min_slider_size ||
3695             priv->slider_size_fixed)
3696           height = priv->min_slider_size;
3697
3698         height = MIN (height, priv->trough.height);
3699         
3700         y = top;
3701
3702         if (priv->adjustment->upper - priv->adjustment->lower - priv->adjustment->page_size != 0)
3703           y += (bottom - top - height) * ((adjustment_value - priv->adjustment->lower) /
3704                                           (priv->adjustment->upper - priv->adjustment->lower - priv->adjustment->page_size));
3705
3706         y = CLAMP (y, top, bottom);
3707         
3708         if (should_invert (range))
3709           y = bottom - (y - top + height);
3710         
3711         priv->slider.y = y;
3712         priv->slider.height = height;
3713
3714         /* These are publically exported */
3715         priv->slider_start = priv->slider.y;
3716         priv->slider_end = priv->slider.y + priv->slider.height;
3717       }
3718     }
3719   else
3720     {
3721       gint stepper_width, stepper_height;
3722
3723       /* Steppers are the height of the range, and stepper_size in
3724        * width, or if we don't have enough width, divided equally
3725        * among available space.
3726        */
3727       stepper_height = range_rect.height + focus_width * 2;
3728
3729       if (trough_under_steppers)
3730         stepper_height -= trough_border * 2;
3731
3732       if (stepper_height < 1)
3733         stepper_height = range_rect.height; /* screw the trough border */
3734
3735       if (n_steppers == 0)
3736         stepper_width = 0; /* avoid divide by n_steppers */
3737       else
3738         stepper_width = MIN (stepper_size, (range_rect.width / n_steppers));
3739
3740       /* Stepper A */
3741       
3742       priv->stepper_a.x = range_rect.x + focus_width + trough_border * trough_under_steppers;
3743       priv->stepper_a.y = range_rect.y + focus_width + trough_border * trough_under_steppers;
3744
3745       if (priv->has_stepper_a)
3746         {
3747           priv->stepper_a.width = stepper_width;
3748           priv->stepper_a.height = stepper_height;
3749         }
3750       else
3751         {
3752           priv->stepper_a.width = 0;
3753           priv->stepper_a.height = 0;
3754         }
3755
3756       /* Stepper B */
3757       
3758       priv->stepper_b.x = priv->stepper_a.x + priv->stepper_a.width;
3759       priv->stepper_b.y = priv->stepper_a.y;
3760
3761       if (priv->has_stepper_b)
3762         {
3763           priv->stepper_b.width = stepper_width;
3764           priv->stepper_b.height = stepper_height;
3765         }
3766       else
3767         {
3768           priv->stepper_b.width = 0;
3769           priv->stepper_b.height = 0;
3770         }
3771
3772       /* Stepper D */
3773
3774       if (priv->has_stepper_d)
3775         {
3776           priv->stepper_d.width = stepper_width;
3777           priv->stepper_d.height = stepper_height;
3778         }
3779       else
3780         {
3781           priv->stepper_d.width = 0;
3782           priv->stepper_d.height = 0;
3783         }
3784
3785       priv->stepper_d.x = range_rect.x + range_rect.width - priv->stepper_d.width - focus_width - trough_border * trough_under_steppers;
3786       priv->stepper_d.y = priv->stepper_a.y;
3787
3788
3789       /* Stepper C */
3790
3791       if (priv->has_stepper_c)
3792         {
3793           priv->stepper_c.width = stepper_width;
3794           priv->stepper_c.height = stepper_height;
3795         }
3796       else
3797         {
3798           priv->stepper_c.width = 0;
3799           priv->stepper_c.height = 0;
3800         }
3801       
3802       priv->stepper_c.x = priv->stepper_d.x - priv->stepper_c.width;
3803       priv->stepper_c.y = priv->stepper_a.y;
3804
3805       /* Now the trough is the remaining space between steppers B and C,
3806        * if any
3807        */
3808       priv->trough.x = priv->stepper_b.x + priv->stepper_b.width + stepper_spacing * has_steppers_ab;
3809       priv->trough.y = range_rect.y;
3810
3811       priv->trough.width = priv->stepper_c.x - priv->trough.x - stepper_spacing * has_steppers_cd;
3812       priv->trough.height = range_rect.height;
3813
3814       /* Slider fits into the trough, with stepper_spacing on either side,
3815        * and the size/position based on the adjustment or fixed, depending.
3816        */
3817       priv->slider.y = priv->trough.y + focus_width + trough_border;
3818       priv->slider.height = priv->trough.height - (focus_width + trough_border) * 2;
3819
3820       /* Compute slider position/length */
3821       {
3822         gint x, left, right, width;
3823         
3824         left = priv->trough.x;
3825         right = priv->trough.x + priv->trough.width;
3826
3827         if (! trough_under_steppers)
3828           {
3829             left += trough_border;
3830             right -= trough_border;
3831           }
3832
3833         /* slider width is the fraction (page_size /
3834          * total_adjustment_range) times the trough width in pixels
3835          */
3836
3837         if (priv->adjustment->upper - priv->adjustment->lower != 0)
3838           width = ((right - left) * (priv->adjustment->page_size /
3839                                    (priv->adjustment->upper - priv->adjustment->lower)));
3840         else
3841           width = priv->min_slider_size;
3842
3843         if (width < priv->min_slider_size ||
3844             priv->slider_size_fixed)
3845           width = priv->min_slider_size;
3846
3847         width = MIN (width, priv->trough.width);
3848         
3849         x = left;
3850
3851         if (priv->adjustment->upper - priv->adjustment->lower - priv->adjustment->page_size != 0)
3852           x += (right - left - width) * ((adjustment_value - priv->adjustment->lower) /
3853                                          (priv->adjustment->upper - priv->adjustment->lower - priv->adjustment->page_size));
3854         
3855         x = CLAMP (x, left, right);
3856         
3857         if (should_invert (range))
3858           x = right - (x - left + width);
3859         
3860         priv->slider.x = x;
3861         priv->slider.width = width;
3862
3863         /* These are publically exported */
3864         priv->slider_start = priv->slider.x;
3865         priv->slider_end = priv->slider.x + priv->slider.width;
3866       }
3867     }
3868   
3869   gtk_range_update_mouse_location (range);
3870
3871   switch (priv->upper_sensitivity)
3872     {
3873     case GTK_SENSITIVITY_AUTO:
3874       priv->upper_sensitive =
3875         (priv->adjustment->value <
3876          (priv->adjustment->upper - priv->adjustment->page_size));
3877       break;
3878
3879     case GTK_SENSITIVITY_ON:
3880       priv->upper_sensitive = TRUE;
3881       break;
3882
3883     case GTK_SENSITIVITY_OFF:
3884       priv->upper_sensitive = FALSE;
3885       break;
3886     }
3887
3888   switch (priv->lower_sensitivity)
3889     {
3890     case GTK_SENSITIVITY_AUTO:
3891       priv->lower_sensitive =
3892         (priv->adjustment->value > priv->adjustment->lower);
3893       break;
3894
3895     case GTK_SENSITIVITY_ON:
3896       priv->lower_sensitive = TRUE;
3897       break;
3898
3899     case GTK_SENSITIVITY_OFF:
3900       priv->lower_sensitive = FALSE;
3901       break;
3902     }
3903 }
3904
3905 static GdkRectangle*
3906 get_area (GtkRange     *range,
3907           MouseLocation location)
3908 {
3909   GtkRangePrivate *priv = range->priv;
3910
3911   switch (location)
3912     {
3913     case MOUSE_STEPPER_A:
3914       return &priv->stepper_a;
3915     case MOUSE_STEPPER_B:
3916       return &priv->stepper_b;
3917     case MOUSE_STEPPER_C:
3918       return &priv->stepper_c;
3919     case MOUSE_STEPPER_D:
3920       return &priv->stepper_d;
3921     case MOUSE_TROUGH:
3922       return &priv->trough;
3923     case MOUSE_SLIDER:
3924       return &priv->slider;
3925     case MOUSE_WIDGET:
3926     case MOUSE_OUTSIDE:
3927       break;
3928     }
3929
3930   g_warning (G_STRLOC": bug");
3931   return NULL;
3932 }
3933
3934 static void
3935 gtk_range_calc_marks (GtkRange *range)
3936 {
3937   GtkRangePrivate *priv = range->priv;
3938   gint i;
3939
3940   if (!priv->recalc_marks)
3941     return;
3942
3943   priv->recalc_marks = FALSE;
3944
3945   for (i = 0; i < priv->n_marks; i++)
3946     {
3947       priv->need_recalc = TRUE;
3948       gtk_range_calc_layout (range, priv->marks[i]);
3949       if (priv->orientation == GTK_ORIENTATION_HORIZONTAL)
3950         priv->mark_pos[i] = priv->slider.x + priv->slider.width / 2;
3951       else
3952         priv->mark_pos[i] = priv->slider.y + priv->slider.height / 2;
3953     }
3954
3955   priv->need_recalc = TRUE;
3956 }
3957
3958 static gboolean
3959 gtk_range_real_change_value (GtkRange     *range,
3960                              GtkScrollType scroll,
3961                              gdouble       value)
3962 {
3963   GtkRangePrivate *priv = range->priv;
3964
3965   /* potentially adjust the bounds _before_ we clamp */
3966   g_signal_emit (range, signals[ADJUST_BOUNDS], 0, value);
3967
3968   if (priv->restrict_to_fill_level)
3969     value = MIN (value, MAX (priv->adjustment->lower,
3970                              priv->fill_level));
3971
3972   value = CLAMP (value, priv->adjustment->lower,
3973                  (priv->adjustment->upper - priv->adjustment->page_size));
3974
3975   if (priv->round_digits >= 0)
3976     {
3977       gdouble power;
3978       gint i;
3979
3980       i = priv->round_digits;
3981       power = 1;
3982       while (i--)
3983         power *= 10;
3984       
3985       value = floor ((value * power) + 0.5) / power;
3986     }
3987
3988   if (priv->adjustment->value != value)
3989     {
3990       priv->need_recalc = TRUE;
3991
3992       gtk_widget_queue_draw (GTK_WIDGET (range));
3993
3994       switch (priv->update_policy)
3995         {
3996         case GTK_UPDATE_CONTINUOUS:
3997           gtk_adjustment_set_value (priv->adjustment, value);
3998           break;
3999
4000           /* Delayed means we update after a period of inactivity */
4001         case GTK_UPDATE_DELAYED:
4002           gtk_range_reset_update_timer (range);
4003           /* FALL THRU */
4004
4005           /* Discontinuous means we update on button release */
4006         case GTK_UPDATE_DISCONTINUOUS:
4007           /* don't emit value_changed signal */
4008           priv->adjustment->value = value;
4009           priv->update_pending = TRUE;
4010           break;
4011         }
4012     }
4013   return FALSE;
4014 }
4015
4016 static void
4017 gtk_range_update_value (GtkRange *range)
4018 {
4019   GtkRangePrivate *priv = range->priv;
4020
4021   gtk_range_remove_update_timer (range);
4022
4023   if (priv->update_pending)
4024     {
4025       gtk_adjustment_value_changed (priv->adjustment);
4026
4027       priv->update_pending = FALSE;
4028     }
4029 }
4030
4031 struct _GtkRangeStepTimer
4032 {
4033   guint timeout_id;
4034   GtkScrollType step;
4035 };
4036
4037 static gboolean
4038 second_timeout (gpointer data)
4039 {
4040   GtkRange *range = GTK_RANGE (data);
4041   GtkRangePrivate *priv = range->priv;
4042
4043   gtk_range_scroll (range, priv->timer->step);
4044
4045   return TRUE;
4046 }
4047
4048 static gboolean
4049 initial_timeout (gpointer data)
4050 {
4051   GtkRange *range = GTK_RANGE (data);
4052   GtkRangePrivate *priv = range->priv;
4053   GtkSettings *settings;
4054   guint        timeout;
4055
4056   settings = gtk_widget_get_settings (GTK_WIDGET (data));
4057   g_object_get (settings, "gtk-timeout-repeat", &timeout, NULL);
4058
4059   priv->timer->timeout_id = gdk_threads_add_timeout (timeout * SCROLL_DELAY_FACTOR,
4060                                             second_timeout,
4061                                             range);
4062   /* remove self */
4063   return FALSE;
4064 }
4065
4066 static void
4067 gtk_range_add_step_timer (GtkRange      *range,
4068                           GtkScrollType  step)
4069 {
4070   GtkRangePrivate *priv = range->priv;
4071   GtkSettings *settings;
4072   guint        timeout;
4073
4074   g_return_if_fail (priv->timer == NULL);
4075   g_return_if_fail (step != GTK_SCROLL_NONE);
4076
4077   settings = gtk_widget_get_settings (GTK_WIDGET (range));
4078   g_object_get (settings, "gtk-timeout-initial", &timeout, NULL);
4079
4080   priv->timer = g_new (GtkRangeStepTimer, 1);
4081
4082   priv->timer->timeout_id = gdk_threads_add_timeout (timeout,
4083                                             initial_timeout,
4084                                             range);
4085   priv->timer->step = step;
4086
4087   gtk_range_scroll (range, priv->timer->step);
4088 }
4089
4090 static void
4091 gtk_range_remove_step_timer (GtkRange *range)
4092 {
4093   GtkRangePrivate *priv = range->priv;
4094
4095   if (priv->timer)
4096     {
4097       if (priv->timer->timeout_id != 0)
4098         g_source_remove (priv->timer->timeout_id);
4099
4100       g_free (priv->timer);
4101
4102       priv->timer = NULL;
4103     }
4104 }
4105
4106 static gboolean
4107 update_timeout (gpointer data)
4108 {
4109   GtkRange *range = GTK_RANGE (data);
4110   GtkRangePrivate *priv = range->priv;
4111
4112   gtk_range_update_value (range);
4113   priv->update_timeout_id = 0;
4114
4115   /* self-remove */
4116   return FALSE;
4117 }
4118
4119 static void
4120 gtk_range_reset_update_timer (GtkRange *range)
4121 {
4122   GtkRangePrivate *priv = range->priv;
4123
4124   gtk_range_remove_update_timer (range);
4125
4126   priv->update_timeout_id = gdk_threads_add_timeout (UPDATE_DELAY,
4127                                             update_timeout,
4128                                             range);
4129 }
4130
4131 static void
4132 gtk_range_remove_update_timer (GtkRange *range)
4133 {
4134   GtkRangePrivate *priv = range->priv;
4135
4136   if (priv->update_timeout_id != 0)
4137     {
4138       g_source_remove (priv->update_timeout_id);
4139       priv->update_timeout_id = 0;
4140     }
4141 }
4142
4143 void
4144 _gtk_range_set_stop_values (GtkRange *range,
4145                             gdouble  *values,
4146                             gint      n_values)
4147 {
4148   GtkRangePrivate *priv = range->priv;
4149   gint i;
4150
4151   g_free (priv->marks);
4152   priv->marks = g_new (gdouble, n_values);
4153
4154   g_free (priv->mark_pos);
4155   priv->mark_pos = g_new (gint, n_values);
4156
4157   priv->n_marks = n_values;
4158
4159   for (i = 0; i < n_values; i++) 
4160     priv->marks[i] = values[i];
4161
4162   priv->recalc_marks = TRUE;
4163 }
4164
4165 gint
4166 _gtk_range_get_stop_positions (GtkRange  *range,
4167                                gint     **values)
4168 {
4169   GtkRangePrivate *priv = range->priv;
4170
4171   gtk_range_calc_marks (range);
4172
4173   if (values)
4174     *values = g_memdup (priv->mark_pos, priv->n_marks * sizeof (gint));
4175
4176   return priv->n_marks;
4177 }
4178
4179 void
4180 _gtk_range_set_round_digits (GtkRange *range,
4181                              gint     round_digits)
4182 {
4183   range->priv->round_digits = round_digits;
4184 }
4185
4186 void
4187 _gtk_range_set_steppers (GtkRange      *range,
4188                          gboolean       has_a,
4189                          gboolean       has_b,
4190                          gboolean       has_c,
4191                          gboolean       has_d)
4192 {
4193   range->priv->has_stepper_a = has_a;
4194   range->priv->has_stepper_b = has_b;
4195   range->priv->has_stepper_c = has_c;
4196   range->priv->has_stepper_d = has_d;
4197 }