(choose_minibuf_frame): Eliminate MSDOS-non-MULTI_FRAME conditional.
[bpt/emacs.git] / src / frame.h
CommitLineData
ff11dfa1 1/* Define frame-object for GNU Emacs.
3a22ee35 2 Copyright (C) 1993, 1994 Free Software Foundation, Inc.
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3
4This file is part of GNU Emacs.
5
6GNU Emacs is free software; you can redistribute it and/or modify
7it under the terms of the GNU General Public License as published by
e5d77022 8the Free Software Foundation; either version 2, or (at your option)
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9any later version.
10
11GNU Emacs is distributed in the hope that it will be useful,
12but WITHOUT ANY WARRANTY; without even the implied warranty of
13MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14GNU General Public License for more details.
15
16You should have received a copy of the GNU General Public License
17along with GNU Emacs; see the file COPYING. If not, write to
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18the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
19Boston, MA 02111-1307, USA. */
efa4ce8b 20
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21\f
22/* Miscellanea. */
23
24/* Nonzero means don't assume anything about current
25 contents of actual terminal frame */
26extern int frame_garbaged;
27
28/* Nonzero means FRAME_MESSAGE_BUF (selected_frame) is being used by
29 print. */
30extern int message_buf_print;
efa4ce8b 31
20a6c8d7 32\f
ff11dfa1 33/* The structure representing a frame.
e5d77022 34
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35 We declare this even if MULTI_FRAME is not defined, because when
36 we lack multi-frame support, we use one instance of this structure
37 to represent the one frame we support. This is cleaner than
e5d77022 38 having miscellaneous random variables scattered about. */
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39
40enum output_method
efa7f0f9 41{ output_termcap, output_x_window, output_msdos_raw, output_win32 };
efa4ce8b 42
ff11dfa1 43struct frame
efa4ce8b 44{
0c38c2f9 45 EMACS_INT size;
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46 struct Lisp_Vector *next;
47
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48 /* All Lisp_Object components must come first.
49 Only EMACS_INT values can be intermixed with them.
50 That ensures they are all aligned normally. */
efa4ce8b 51
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52 /* Name of this frame: a Lisp string. It is used for looking up resources,
53 as well as for the title in some cases. */
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54 Lisp_Object name;
55
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56 /* The name to use for the icon, the last time
57 it was refreshed. nil means not explicitly specified. */
58 Lisp_Object icon_name;
59
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60 /* This is the frame title specified explicitly, if any.
61 Usually it is nil. */
62 Lisp_Object title;
63
eb8c3be9 64 /* The frame which should receive keystrokes that occur in this
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65 frame, or nil if they should go to the frame itself. This is
66 usually nil, but if the frame is minibufferless, we can use this
67 to redirect keystrokes to a surrogate minibuffer frame when
68 needed.
69
70 Note that a value of nil is different than having the field point
71 to the frame itself. Whenever the Fselect_frame function is used
72 to shift from one frame to the other, any redirections to the
73 original frame are shifted to the newly selected frame; if
74 focus_frame is nil, Fselect_frame will leave it alone. */
ff11dfa1 75 Lisp_Object focus_frame;
0f79a4ae 76
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77 /* This frame's root window. Every frame has one.
78 If the frame has only a minibuffer window, this is it.
79 Otherwise, if the frame has a minibuffer window, this is its sibling. */
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80 Lisp_Object root_window;
81
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82 /* This frame's selected window.
83 Each frame has its own window hierarchy
84 and one of the windows in it is selected within the frame.
85 The selected window of the selected frame is Emacs's selected window. */
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86 Lisp_Object selected_window;
87
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88 /* This frame's minibuffer window.
89 Most frames have their own minibuffer windows,
90 but only the selected frame's minibuffer window
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91 can actually appear to exist. */
92 Lisp_Object minibuffer_window;
93
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94 /* Parameter alist of this frame.
95 These are the parameters specified when creating the frame
96 or modified with modify-frame-parameters. */
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97 Lisp_Object param_alist;
98
a3c87d4e 99 /* List of scroll bars on this frame.
20a6c8d7 100 Actually, we don't specify exactly what is stored here at all; the
a3c87d4e 101 scroll bar implementation code can use it to store anything it likes.
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102 This field is marked by the garbage collector. It is here
103 instead of in the `display' structure so that the garbage
104 collector doesn't need to look inside the window-system-dependent
105 structure. */
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106 Lisp_Object scroll_bars;
107 Lisp_Object condemned_scroll_bars;
20a6c8d7 108
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109 /* Vector describing the items to display in the menu bar.
110 Each item has four elements in this vector.
111 They are KEY, STRING, SUBMAP, and HPOS.
112 (HPOS is not used in when the X toolkit is in use.)
113 There are four additional elements of nil at the end, to terminate. */
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114 Lisp_Object menu_bar_items;
115
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116 /* Alist of elements (FACE-NAME . FACE-VECTOR-DATA). */
117 Lisp_Object face_alist;
118
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119 /* A vector that records the entire structure of this frame's menu bar.
120 For the format of the data, see extensive comments in xmenu.c.
121 Only the X toolkit version uses this. */
122 Lisp_Object menu_bar_vector;
123 /* Number of elements in the vector that have meaningful data. */
124 EMACS_INT menu_bar_items_used;
125
126 /* Predicate for selecting buffers for other-buffer. */
127 Lisp_Object buffer_predicate;
128
129 /* Beyond here, there should be no more Lisp_Object components. */
130
131
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132 /* A buffer to hold the frame's name. We can't use the Lisp string's
133 pointer (`name', above) because it might get relocated. */
134 char *namebuf;
135
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136 /* glyphs as they appear on the frame */
137 struct frame_glyphs *current_glyphs;
138
139 /* glyphs we'd like to appear on the frame */
140 struct frame_glyphs *desired_glyphs;
141
142 /* See do_line_insertion_deletion_costs for info on these arrays. */
143 /* Cost of inserting 1 line on this frame */
144 int *insert_line_cost;
145 /* Cost of deleting 1 line on this frame */
146 int *delete_line_cost;
147 /* Cost of inserting n lines on this frame */
148 int *insert_n_lines_cost;
149 /* Cost of deleting n lines on this frame */
150 int *delete_n_lines_cost;
151
152 /* glyphs for the mode line */
153 struct frame_glyphs *temp_glyphs;
154
155 /* Intended cursor position of this frame.
156 Measured in characters, counting from upper left corner
157 within the frame. */
158 int cursor_x;
159 int cursor_y;
160
161 /* Actual cursor position of this frame, and the character under it.
162 (Not used for terminal frames.) */
163 int phys_cursor_x;
164 int phys_cursor_y;
165 /* This is handy for undrawing the cursor, because current_glyphs is
166 not always accurate when in do_scrolling. */
167 GLYPH phys_cursor_glyph;
168
169 /* Size of this frame, in units of characters. */
170 EMACS_INT height;
171 EMACS_INT width;
172
173 /* New height and width for pending size change. 0 if no change pending. */
174 int new_height, new_width;
175
ff11dfa1 176 /* The output method says how the contents of this frame
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177 are displayed. It could be using termcap, or using an X window. */
178 enum output_method output_method;
179
180 /* A structure of auxiliary data used for displaying the contents.
785ee691 181 struct x_output is used for X window frames;
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182 it is defined in xterm.h.
183 struct win32_output is used for Win32 window frames;
184 it is defined in w32term.h. */
185 union output_data { struct x_output *x; struct win32_output *win32; int nothing; } output_data;
efa4ce8b 186
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187#ifdef MULTI_KBOARD
188 /* A pointer to the kboard structure associated with this frame.
189 For termcap frames, this points to initial_kboard. For X frames,
190 it will be the same as display.x->display_info->kboard. */
fadab1e3 191 struct kboard *kboard;
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192#endif
193
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194 /* Number of lines of menu bar. */
195 int menu_bar_lines;
196
efa7f0f9 197#if defined (USE_X_TOOLKIT) || defined (HAVE_NTGUI)
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198 /* Nonzero means using a menu bar that comes from the X toolkit. */
199 int external_menu_bar;
200#endif
201
ff11dfa1 202 /* Nonzero if last attempt at redisplay on this frame was preempted. */
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203 char display_preempted;
204
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205 /* visible is nonzero if the frame is currently displayed; we check
206 it to see if we should bother updating the frame's contents.
46a5c487 207 DON'T SET IT DIRECTLY; instead, use FRAME_SET_VISIBLE.
efa4ce8b 208
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209 Note that, since invisible frames aren't updated, whenever a
210 frame becomes visible again, it must be marked as garbaged. The
211 FRAME_SAMPLE_VISIBILITY macro takes care of this.
212
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213 iconified is nonzero if the frame is currently iconified.
214
215 Asynchronous input handlers should NOT change these directly;
216 instead, they should change async_visible or async_iconified, and
217 let the FRAME_SAMPLE_VISIBILITY macro set visible and iconified
218 at the next redisplay.
219
220 These should probably be considered read-only by everyone except
221 FRAME_SAMPLE_VISIBILITY.
222
74cc2959 223 These two are mutually exclusive. They might both be zero, if the
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224 frame has been made invisible without an icon. */
225 char visible, iconified;
226
227 /* Asynchronous input handlers change these, and
228 FRAME_SAMPLE_VISIBILITY copies them into visible and iconified.
229 See FRAME_SAMPLE_VISIBILITY, below. */
230#ifdef __STDC__
231 volatile
232#endif
233 char async_visible, async_iconified;
efa4ce8b 234
ff11dfa1 235 /* Nonzero if this frame should be redrawn. */
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236#ifdef __STDC__
237 volatile
238#endif
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239 char garbaged;
240
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241 /* True if frame actually has a minibuffer window on it.
242 0 if using a minibuffer window that isn't on this frame. */
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243 char has_minibuffer;
244
ff11dfa1 245 /* 0 means, if this frame has just one window,
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246 show no modeline for that window. */
247 char wants_modeline;
248
46a5c487 249 /* Non-zero if the hardware device this frame is displaying on can
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250 support scroll bars. */
251 char can_have_scroll_bars;
46a5c487 252
a3c87d4e 253 /* If can_have_scroll_bars is non-zero, this is non-zero if we should
46a5c487 254 actually display them on this frame. */
a3c87d4e 255 char has_vertical_scroll_bars;
46a5c487 256
ff11dfa1 257 /* Non-0 means raise this frame to the top of the heap when selected. */
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258 char auto_raise;
259
ff11dfa1 260 /* Non-0 means lower this frame to the bottom of the stack when left. */
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261 char auto_lower;
262
ff11dfa1 263 /* True if frame's root window can't be split. */
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264 char no_split;
265
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266 /* If this is set, then Emacs won't change the frame name to indicate
267 the current buffer, etcetera. If the user explicitly sets the frame
268 name, this gets set. If the user sets the name to Qnil, this is
269 cleared. */
270 char explicit_name;
271
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272 /* Nonzero if size of some window on this frame has changed. */
273 char window_sizes_changed;
274
ff11dfa1 275 /* Storage for messages to this frame. */
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276 char *message_buf;
277
278 /* Nonnegative if current redisplay should not do scroll computation
279 for lines beyond a certain vpos. This is the vpos. */
280 int scroll_bottom_vpos;
8d6de7ce 281
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282 /* Width of the scroll bar, in pixels and in characters.
283 scroll_bar_cols tracks scroll_bar_pixel_width if the latter is positive;
284 a zero value in scroll_bar_pixel_width means to compute the actual width
285 on the fly, using scroll_bar_cols and the current font width. */
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286 int scroll_bar_pixel_width;
287 int scroll_bar_cols;
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288
289 /* The baud rate that was used to calculate costs for this frame. */
290 int cost_calculation_baud_rate;
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291
292 /* Nonzero if the mouse has moved on this display
293 since the last time we checked. */
294 char mouse_moved;
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295};
296
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297#ifdef MULTI_KBOARD /* Note that MULTI_KBOARD implies MULTI_FRAME */
298#define FRAME_KBOARD(f) ((f)->kboard)
299#else
300#define FRAME_KBOARD(f) (&the_only_kboard)
301#endif
302
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303#ifdef MULTI_FRAME
304
305typedef struct frame *FRAME_PTR;
306
307#define XFRAME(p) ((struct frame *) XPNTR (p))
aac03cca 308#define XSETFRAME(a, b) (XSETPSEUDOVECTOR (a, b, PVEC_FRAME))
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309
310#define WINDOW_FRAME(w) (w)->frame
311
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312#define FRAME_X_P(f) ((f)->output_method == output_x_window)
313#define FRAME_WIN32_P(f) ((f)->output_method == output_win32)
314
315/* FRAME_WINDOW_P tests whether the frame is a window, and is
316 defined to be the predicate for the window system being used. */
317#ifdef HAVE_X_WINDOWS
318#define FRAME_WINDOW_P(f) FRAME_X_P (f)
319#endif
320#ifdef HAVE_NTGUI
321#define FRAME_WINDOW_P(f) FRAME_WIN32_P (f)
322#endif
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323#ifndef FRAME_WINDOW_P
324#define FRAME_WINDOW_P(f) (0)
325#endif
efa7f0f9 326
785ee691 327#define FRAME_LIVE_P(f) ((f)->output_data.nothing != 0)
10a4cc63 328#define FRAME_TERMCAP_P(f) ((f)->output_method == output_termcap)
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329#define FRAME_MINIBUF_ONLY_P(f) \
330 EQ (FRAME_ROOT_WINDOW (f), FRAME_MINIBUF_WINDOW (f))
10a4cc63 331#define FRAME_HAS_MINIBUF_P(f) ((f)->has_minibuffer)
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332#define FRAME_CURRENT_GLYPHS(f) (f)->current_glyphs
333#define FRAME_DESIRED_GLYPHS(f) (f)->desired_glyphs
334#define FRAME_TEMP_GLYPHS(f) (f)->temp_glyphs
335#define FRAME_HEIGHT(f) (f)->height
336#define FRAME_WIDTH(f) (f)->width
337#define FRAME_NEW_HEIGHT(f) (f)->new_height
338#define FRAME_NEW_WIDTH(f) (f)->new_width
6d05db81 339#define FRAME_MENU_BAR_LINES(f) (f)->menu_bar_lines
efa7f0f9 340#if defined (USE_X_TOOLKIT) || defined (HAVE_NTGUI)
9c95189b 341#define FRAME_EXTERNAL_MENU_BAR(f) (f)->external_menu_bar
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342#else
343#define FRAME_EXTERNAL_MENU_BAR(f) 0
344#endif
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345#define FRAME_CURSOR_X(f) (f)->cursor_x
346#define FRAME_CURSOR_Y(f) (f)->cursor_y
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347#define FRAME_VISIBLE_P(f) ((f)->visible != 0)
348#define FRAME_SET_VISIBLE(f,p) \
349 ((f)->async_visible = (p), FRAME_SAMPLE_VISIBILITY (f))
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350#define SET_FRAME_GARBAGED(f) (frame_garbaged = 1, f->garbaged = 1)
351#define FRAME_GARBAGED_P(f) (f)->garbaged
352#define FRAME_NO_SPLIT_P(f) (f)->no_split
353#define FRAME_WANTS_MODELINE_P(f) (f)->wants_modeline
354#define FRAME_ICONIFIED_P(f) (f)->iconified
adc12f0f 355#define FRAME_WINDOW_SIZES_CHANGED(f) (f)->window_sizes_changed
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356#define FRAME_MINIBUF_WINDOW(f) (f)->minibuffer_window
357#define FRAME_ROOT_WINDOW(f) (f)->root_window
358#define FRAME_SELECTED_WINDOW(f) (f)->selected_window
359#define SET_GLYPHS_FRAME(glyphs,frame) ((glyphs)->frame = (frame))
360#define FRAME_INSERT_COST(f) (f)->insert_line_cost
361#define FRAME_DELETE_COST(f) (f)->delete_line_cost
362#define FRAME_INSERTN_COST(f) (f)->insert_n_lines_cost
363#define FRAME_DELETEN_COST(f) (f)->delete_n_lines_cost
364#define FRAME_MESSAGE_BUF(f) (f)->message_buf
365#define FRAME_SCROLL_BOTTOM_VPOS(f) (f)->scroll_bottom_vpos
366#define FRAME_FOCUS_FRAME(f) (f)->focus_frame
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367#define FRAME_CAN_HAVE_SCROLL_BARS(f) ((f)->can_have_scroll_bars)
368#define FRAME_HAS_VERTICAL_SCROLL_BARS(f) ((f)->has_vertical_scroll_bars)
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369#define FRAME_SCROLL_BAR_PIXEL_WIDTH(f) ((f)->scroll_bar_pixel_width)
370#define FRAME_SCROLL_BAR_COLS(f) ((f)->scroll_bar_cols)
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371#define FRAME_SCROLL_BARS(f) ((f)->scroll_bars)
372#define FRAME_CONDEMNED_SCROLL_BARS(f) ((f)->condemned_scroll_bars)
6d05db81 373#define FRAME_MENU_BAR_ITEMS(f) ((f)->menu_bar_items)
95b999aa 374#define FRAME_COST_BAUD_RATE(f) ((f)->cost_calculation_baud_rate)
ff11dfa1 375
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376/* Emacs's redisplay code could become confused if a frame's
377 visibility changes at arbitrary times. For example, if a frame is
378 visible while the desired glyphs are being built, but becomes
379 invisible before they are updated, then some rows of the
380 desired_glyphs will be left marked as enabled after redisplay is
381 complete, which should never happen. The next time the frame
382 becomes visible, redisplay will probably barf.
383
384 Currently, there are no similar situations involving iconified, but
385 the principle is the same.
386
387 So instead of having asynchronous input handlers directly set and
388 clear the frame's visibility and iconification flags, they just set
389 the async_visible and async_iconified flags; the redisplay code
390 calls the FRAME_SAMPLE_VISIBILITY macro before doing any redisplay,
391 which sets visible and iconified from their asynchronous
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392 counterparts.
393
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394 Synchronous code must use the FRAME_SET_VISIBLE macro.
395
396 Also, if a frame used to be invisible, but has just become visible,
397 it must be marked as garbaged, since redisplay hasn't been keeping
398 up its contents. */
a4659527 399#define FRAME_SAMPLE_VISIBILITY(f) \
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400 (((f)->async_visible && ! (f)->visible) ? SET_FRAME_GARBAGED (f) : 0, \
401 (f)->visible = (f)->async_visible, \
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402 (f)->iconified = (f)->async_iconified)
403
ff11dfa1 404#define CHECK_FRAME(x, i) \
265a9e55 405 { \
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406 if (! FRAMEP (x)) \
407 x = wrong_type_argument (Qframep, (x)); \
265a9e55
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408 }
409
ff11dfa1 410#define CHECK_LIVE_FRAME(x, i) \
265a9e55 411 { \
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412 if (! FRAMEP (x) \
413 || ! FRAME_LIVE_P (XFRAME (x))) \
dbc4e1c1 414 x = wrong_type_argument (Qframe_live_p, (x)); \
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415 }
416
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417/* FOR_EACH_FRAME (LIST_VAR, FRAME_VAR) followed by a statement is a
418 `for' loop which iterates over the elements of Vframe_list. The
35f56f96 419 loop will set FRAME_VAR, a Lisp_Object, to each frame in
ff11dfa1 420 Vframe_list in succession and execute the statement. LIST_VAR
35f56f96 421 should be a Lisp_Object too; it is used to iterate through the
ff11dfa1 422 Vframe_list.
e5d77022 423
ff11dfa1 424 If MULTI_FRAME isn't defined, then this loop expands to something which
e5d77022 425 executes the statement once. */
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426#define FOR_EACH_FRAME(list_var, frame_var) \
427 for ((list_var) = Vframe_list; \
e5d77022 428 (CONSP (list_var) \
35f56f96 429 && (frame_var = XCONS (list_var)->car, 1)); \
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430 list_var = XCONS (list_var)->cdr)
431
432
870b25a2 433extern Lisp_Object Qframep, Qframe_live_p, Qicon;
efa4ce8b 434
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435extern struct frame *selected_frame;
436extern struct frame *last_nonminibuf_frame;
efa4ce8b 437
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438extern struct frame *make_terminal_frame ();
439extern struct frame *make_frame ();
440extern struct frame *make_minibuffer_frame ();
441extern struct frame *make_frame_without_minibuffer ();
efa4ce8b 442
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443extern Lisp_Object Vframe_list;
444extern Lisp_Object Vdefault_frame_alist;
efa4ce8b 445
ff11dfa1 446extern Lisp_Object Vterminal_frame;
efa4ce8b 447\f
ff11dfa1 448#else /* not MULTI_FRAME */
efa4ce8b 449
ff11dfa1 450/* These definitions are used in a single-frame version of Emacs. */
efa4ce8b 451
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452/* A frame we use to store all the data concerning the screen when we
453 don't have multiple frames. Remember, if you store any data in it
454 which needs to be protected from GC, you should staticpro that
455 element explicitly. */
ff11dfa1 456extern struct frame the_only_frame;
e5d77022 457
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458typedef struct frame *FRAME_PTR;
459#ifdef __GNUC__
460/* A function call for always getting 0 is overkill, so... */
461#define WINDOW_FRAME(w) ({ Lisp_Object tem; XSETFASTINT (tem, 0); tem; })
462#else
463#define WINDOW_FRAME(w) (Fselected_frame ())
464#endif
465#define XSETFRAME(p, v) (p = WINDOW_FRAME (***bogus***))
466#define XFRAME(frame) (&the_only_frame)
e5d77022 467
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468extern FRAME_PTR selected_frame;
469extern FRAME_PTR last_nonminibuf_frame;
ff11dfa1 470
ff11dfa1 471#define FRAME_LIVE_P(f) 1
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472#ifdef MSDOS
473/* The following definitions could also be used in the non-MSDOS case,
474 but the constants below lead to better code. */
475#define FRAME_TERMCAP_P(f) (the_only_frame.output_method == output_termcap)
476#define FRAME_X_P(f) (the_only_frame.output_method != output_termcap)
477#else
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478#define FRAME_TERMCAP_P(f) 1
479#define FRAME_X_P(f) 0
87485d6f 480#endif
efa7f0f9 481#define FRAME_WINDOW_P(f) FRAME_X_P (f)
ff11dfa1 482#define FRAME_MINIBUF_ONLY_P(f) 0
10a4cc63 483#define FRAME_HAS_MINIBUF_P(f) 1
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484#define FRAME_CURRENT_GLYPHS(f) (the_only_frame.current_glyphs)
485#define FRAME_DESIRED_GLYPHS(f) (the_only_frame.desired_glyphs)
486#define FRAME_TEMP_GLYPHS(f) (the_only_frame.temp_glyphs)
487#define FRAME_HEIGHT(f) (the_only_frame.height)
488#define FRAME_WIDTH(f) (the_only_frame.width)
489#define FRAME_NEW_HEIGHT(f) (the_only_frame.new_height)
490#define FRAME_NEW_WIDTH(f) (the_only_frame.new_width)
6d05db81 491#define FRAME_MENU_BAR_LINES(f) (the_only_frame.menu_bar_lines)
ce4e9d43
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492#define FRAME_CURSOR_X(f) (the_only_frame.cursor_x)
493#define FRAME_CURSOR_Y(f) (the_only_frame.cursor_y)
46a5c487 494#define FRAME_SET_VISIBLE(f,p) (p)
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495#define FRAME_VISIBLE_P(f) 1
496#define SET_FRAME_GARBAGED(f) (frame_garbaged = 1)
ce4e9d43 497#define FRAME_GARBAGED_P(f) (frame_garbaged)
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498#define FRAME_NO_SPLIT_P(f) 0
499#define FRAME_WANTS_MODELINE_P(f) 1
500#define FRAME_ICONIFIED_P(f) 0
adc12f0f 501#define FRAME_WINDOW_SIZES_CHANGED(f) the_only_frame.window_sizes_changed
0a94d04e 502#define FRAME_MINIBUF_WINDOW(f) (minibuf_window)
fbfed6f0 503#define FRAME_ROOT_WINDOW(f) (the_only_frame.root_window)
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504#define FRAME_SELECTED_WINDOW(f) (selected_window)
505#define SET_GLYPHS_FRAME(glyphs,frame) do ; while (0)
506#define FRAME_INSERT_COST(frame) (the_only_frame.insert_line_cost)
507#define FRAME_DELETE_COST(frame) (the_only_frame.delete_line_cost)
508#define FRAME_INSERTN_COST(frame) (the_only_frame.insert_n_lines_cost)
509#define FRAME_DELETEN_COST(frame) (the_only_frame.delete_n_lines_cost)
510#define FRAME_MESSAGE_BUF(f) (the_only_frame.message_buf)
511#define FRAME_SCROLL_BOTTOM_VPOS(f) (the_only_frame.scroll_bottom_vpos)
46a5c487 512#define FRAME_FOCUS_FRAME(f) (Qnil)
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513#define FRAME_CAN_HAVE_SCROLL_BARS(f) (the_only_frame.can_have_scroll_bars)
514#define FRAME_HAS_VERTICAL_SCROLL_BARS(f) \
515 (the_only_frame.has_vertical_scroll_bars)
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516#define FRAME_SCROLL_BAR_PIXEL_WIDTH(f) (the_only_frame.scroll_bar_pixel_width)
517#define FRAME_SCROLL_BAR_COLS(f) (the_only_frame.scroll_bar_cols)
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518#define FRAME_SCROLL_BARS(f) (the_only_frame.scroll_bars)
519#define FRAME_CONDEMNED_SCROLL_BARS(f) (the_only_frame.condemned_scroll_bars)
6d05db81 520#define FRAME_MENU_BAR_ITEMS(f) (the_only_frame.menu_bar_items)
95b999aa 521#define FRAME_COST_BAUD_RATE(f) (the_only_frame.cost_calculation_baud_rate)
ff11dfa1 522
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523/* See comments in definition above. */
524#define FRAME_SAMPLE_VISIBILITY(f) (0)
525
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526#define CHECK_FRAME(x, i) do; while (0)
527#define CHECK_LIVE_FRAME(x, y) do; while (0)
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528
529/* FOR_EACH_FRAME (LIST_VAR, FRAME_VAR) followed by a statement is a
530 `for' loop which iterates over the elements of Vframe_list. The
35f56f96 531 loop will set FRAME_VAR, a Lisp_Object, to each frame in
ff11dfa1 532 Vframe_list in succession and execute the statement. LIST_VAR
35f56f96 533 should be a Lisp_Object too; it is used to iterate through the
ff11dfa1 534 Vframe_list.
e5d77022 535
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536 If MULTI_FRAME _is_ defined, then this loop expands to a real
537 `for' loop which traverses Vframe_list using LIST_VAR and
538 FRAME_VAR. */
539#define FOR_EACH_FRAME(list_var, frame_var) \
87485d6f 540 for (list_var = Qt; frame_var = WINDOW_FRAME (***bogus***), ! NILP (list_var); list_var = Qnil)
efa4ce8b 541
ff11dfa1 542#endif /* not MULTI_FRAME */
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543
544\f
a3c87d4e 545/* Device- and MULTI_FRAME-independent scroll bar stuff. */
46a5c487 546
a3c87d4e 547/* Return the starting column (zero-based) of the vertical scroll bar
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548 for window W. The column before this one is the last column we can
549 use for text. If the window touches the right edge of the frame,
a3c87d4e 550 we have extra space allocated for it. Otherwise, the scroll bar
46a5c487 551 takes over the window's rightmost columns. */
a3c87d4e 552#define WINDOW_VERTICAL_SCROLL_BAR_COLUMN(w) \
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553 (((XINT ((w)->left) + XINT ((w)->width)) \
554 < FRAME_WIDTH (XFRAME (WINDOW_FRAME (w)))) \
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555 ? (XINT ((w)->left) + XINT ((w)->width) \
556 - FRAME_SCROLL_BAR_COLS (XFRAME (WINDOW_FRAME (w)))) \
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557 : FRAME_WIDTH (XFRAME (WINDOW_FRAME (w))))
558
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559/* Return the height in lines of the vertical scroll bar in w. If the
560 window has a mode line, don't make the scroll bar extend that far. */
561#define WINDOW_VERTICAL_SCROLL_BAR_HEIGHT(w) (window_internal_height (w))