0
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1 /* Events: printing them, converting them to and from characters.
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2 Copyright (C) 1991, 1992, 1993, 1994 Free Software Foundation, Inc.
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3 Copyright (C) 1994, 1995 Board of Trustees, University of Illinois.
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4
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5 This file is part of XEmacs.
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6
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7 XEmacs is free software; you can redistribute it and/or modify it
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8 under the terms of the GNU General Public License as published by the
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9 Free Software Foundation; either version 2, or (at your option) any
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10 later version.
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11
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12 XEmacs is distributed in the hope that it will be useful, but WITHOUT
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13 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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15 for more details.
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16
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17 You should have received a copy of the GNU General Public License
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18 along with XEmacs; see the file COPYING. If not, write to
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19 the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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20 Boston, MA 02111-1307, USA. */
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21
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22 /* Synched up with: Not in FSF. */
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23
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24 /* This file has been Mule-ized. */
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25
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26 #include <config.h>
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27 #include "lisp.h"
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28 #include "buffer.h"
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29 #include "console.h"
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30 #include "console-tty.h" /* for stuff in character_to_event */
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31 #include "device.h"
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32 #include "console-x.h" /* for x_event_name prototype */
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33 #include "extents.h" /* Just for the EXTENTP abort check... */
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34 #include "events.h"
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35 #include "frame.h"
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36 #include "glyphs.h"
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37 #include "keymap.h" /* for key_desc_list_to_event() */
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38 #include "redisplay.h"
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39 #include "window.h"
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40
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100
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41 #ifdef WINDOWSNT
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42 /* Hmm, under unix we want X modifiers, under NT we want X modifiers if
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43 we are running X and Windows modifiers otherwise.
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44 gak. This is a kludge until we support multiple native GUIs!
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45 */
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46 #undef MOD_ALT
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47 #undef MOD_CONTROL
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48 #undef MOD_SHIFT
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49 #endif
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50
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51 #include <events-mod.h>
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52
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0
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53 /* Where old events go when they are explicitly deallocated.
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54 The event chain here is cut loose before GC, so these will be freed
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55 eventually.
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56 */
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57 static Lisp_Object Vevent_resource;
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58
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59 Lisp_Object Qeventp;
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60 Lisp_Object Qevent_live_p;
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61 Lisp_Object Qkey_press_event_p;
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62 Lisp_Object Qbutton_event_p;
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63 Lisp_Object Qmouse_event_p;
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64 Lisp_Object Qprocess_event_p;
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65
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66 Lisp_Object Qkey_press, Qbutton_press, Qbutton_release, Qmisc_user;
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67 Lisp_Object Qascii_character;
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68
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69 /* #### Ad-hoc hack. Should be part of define_lrecord_implementation */
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70 void
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71 clear_event_resource (void)
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72 {
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73 Vevent_resource = Qnil;
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74 }
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75
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76 static Lisp_Object mark_event (Lisp_Object, void (*) (Lisp_Object));
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77 static void print_event (Lisp_Object, Lisp_Object, int);
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78 static int event_equal (Lisp_Object, Lisp_Object, int);
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79 static unsigned long event_hash (Lisp_Object obj, int depth);
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80 DEFINE_BASIC_LRECORD_IMPLEMENTATION ("event", event,
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81 mark_event, print_event, 0, event_equal,
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82 event_hash, struct Lisp_Event);
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83
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84 /* Make sure we lose quickly if we try to use this event */
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85 static void
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86 deinitialize_event (Lisp_Object ev)
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87 {
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88 int i;
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89 struct Lisp_Event *event = XEVENT (ev);
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90
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91 for (i = 0; i < ((sizeof (struct Lisp_Event)) / sizeof (int)); i++)
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92 ((int *) event) [i] = 0xdeadbeef;
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93 event->event_type = dead_event;
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94 event->channel = Qnil;
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95 set_lheader_implementation (&(event->lheader), lrecord_event);
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96 XSET_EVENT_NEXT (ev, Qnil);
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97 }
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98
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99 /* Set everything to zero or nil so that it's predictable. */
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100 void
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101 zero_event (struct Lisp_Event *e)
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102 {
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103 memset (e, 0, sizeof (*e));
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104 set_lheader_implementation (&(e->lheader), lrecord_event);
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105 e->event_type = empty_event;
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106 e->next = Qnil;
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107 e->channel = Qnil;
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108 }
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109
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110 static Lisp_Object
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111 mark_event (Lisp_Object obj, void (*markobj) (Lisp_Object))
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112 {
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113 struct Lisp_Event *event = XEVENT (obj);
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114
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115 switch (event->event_type)
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116 {
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117 case key_press_event:
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118 ((markobj) (event->event.key.keysym));
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119 break;
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120 case process_event:
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121 ((markobj) (event->event.process.process));
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122 break;
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123 case timeout_event:
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124 ((markobj) (event->event.timeout.function));
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125 ((markobj) (event->event.timeout.object));
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126 break;
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127 case eval_event:
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128 case misc_user_event:
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129 ((markobj) (event->event.eval.function));
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130 ((markobj) (event->event.eval.object));
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131 break;
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132 case magic_eval_event:
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133 ((markobj) (event->event.magic_eval.object));
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134 break;
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135 case button_press_event:
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136 case button_release_event:
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137 case pointer_motion_event:
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138 case magic_event:
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139 case empty_event:
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140 case dead_event:
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141 break;
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142 default:
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143 abort ();
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144 }
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145 ((markobj) (event->channel));
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146 return event->next;
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147 }
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148
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149 static void
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150 print_event_1 (CONST char *str, Lisp_Object obj, Lisp_Object printcharfun)
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151 {
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152 char buf[255];
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153 write_c_string (str, printcharfun);
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154 format_event_object (buf, XEVENT (obj), 0);
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155 write_c_string (buf, printcharfun);
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156 }
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157
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158 static void
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159 print_event (Lisp_Object obj, Lisp_Object printcharfun, int escapeflag)
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160 {
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161 if (print_readably)
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162 error ("printing unreadable object #<event>");
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163
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164 switch (XEVENT (obj)->event_type)
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165 {
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166 case key_press_event:
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167 print_event_1 ("#<keypress-event ", obj, printcharfun);
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168 break;
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169 case button_press_event:
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170 print_event_1 ("#<buttondown-event ", obj, printcharfun);
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171 break;
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172 case button_release_event:
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173 print_event_1 ("#<buttonup-event ", obj, printcharfun);
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174 break;
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175 case magic_event:
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176 case magic_eval_event:
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177 print_event_1 ("#<magic-event ", obj, printcharfun);
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178 break;
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179 case pointer_motion_event:
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180 {
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181 char buf[100];
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182 sprintf (buf, "#<motion-event %d, %d",
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183 XEVENT (obj)->event.motion.x, XEVENT (obj)->event.motion.y);
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184 write_c_string (buf, printcharfun);
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185 break;
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186 }
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187 case process_event:
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188 {
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189 write_c_string ("#<process-event ", printcharfun);
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190 print_internal (XEVENT (obj)->event.process.process, printcharfun, 1);
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191 break;
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192 }
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193 case timeout_event:
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194 {
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195 write_c_string ("#<timeout-event ", printcharfun);
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196 print_internal (XEVENT (obj)->event.timeout.object, printcharfun, 1);
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197 break;
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198 }
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199 case empty_event:
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200 {
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201 write_c_string ("#<empty-event", printcharfun);
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202 break;
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203 }
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204 case misc_user_event:
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205 case eval_event:
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206 {
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207 write_c_string ("#<", printcharfun);
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208 if (XEVENT (obj)->event_type == misc_user_event)
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209 write_c_string ("misc-user", printcharfun);
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210 else
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211 write_c_string ("eval", printcharfun);
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212 write_c_string ("-event (", printcharfun);
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213 print_internal (XEVENT (obj)->event.eval.function, printcharfun, 1);
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214 write_c_string (" ", printcharfun);
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215 print_internal (XEVENT (obj)->event.eval.object, printcharfun, 1);
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216 write_c_string (")", printcharfun);
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217 break;
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218 }
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219 case dead_event:
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220 {
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221 write_c_string ("#<DEALLOCATED-EVENT", printcharfun);
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222 break;
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223 }
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224 default:
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225 {
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226 write_c_string ("#<UNKNOWN-EVENT-TYPE", printcharfun);
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227 break;
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228 }
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229 }
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230 write_c_string (">", printcharfun);
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231 }
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232
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233 static int
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234 event_equal (Lisp_Object o1, Lisp_Object o2, int depth)
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235 {
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236 struct Lisp_Event *e1 = XEVENT (o1);
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237 struct Lisp_Event *e2 = XEVENT (o2);
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238
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239 if (e1->event_type != e2->event_type) return 0;
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240 if (!EQ (e1->channel, e2->channel)) return 0;
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241 /* if (e1->timestamp != e2->timestamp) return 0; */
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242 switch (e1->event_type)
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243 {
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244 case process_event:
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245 return (EQ (e1->event.process.process,
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246 e2->event.process.process));
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247
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248 case timeout_event:
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249 if (NILP (Fequal (e1->event.timeout.function,
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250 e2->event.timeout.function)))
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251 return 0;
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252 if (NILP (Fequal (e1->event.timeout.object,
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253 e2->event.timeout.object)))
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254 return 0;
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255 return 1;
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256
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257 case key_press_event:
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258 return ((EQ (e1->event.key.keysym,
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259 e2->event.key.keysym)
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260 && (e1->event.key.modifiers
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261 == e2->event.key.modifiers)));
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262
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263 case button_press_event:
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264 case button_release_event:
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265 return (((e1->event.button.button
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266 == e2->event.button.button)
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267 && (e1->event.button.modifiers
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268 == e2->event.button.modifiers)));
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269
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270 case pointer_motion_event:
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271 return ((e1->event.motion.x == e2->event.motion.x
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272 && e1->event.motion.y == e2->event.motion.y));
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273
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274 case misc_user_event:
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275 case eval_event:
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276 if (NILP (Fequal (e1->event.eval.function,
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277 e2->event.eval.function)))
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278 return 0;
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279 if (NILP (Fequal (e1->event.eval.object,
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280 e2->event.eval.object)))
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281 return 0;
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282 return 1;
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283
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284 case magic_eval_event:
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285 if (e1->event.magic_eval.internal_function !=
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286 e2->event.magic_eval.internal_function)
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287 return 0;
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288 if (NILP (Fequal (e1->event.magic_eval.object,
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289 e2->event.magic_eval.object)))
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290 return 0;
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291 return 1;
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292
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293 case magic_event:
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294 {
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295 Lisp_Object console;
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296
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297 console = CDFW_CONSOLE (e1->channel);
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298
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299 #ifdef HAVE_X_WINDOWS
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300 /* XEvent is actually a union which means that we can't just use == */
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301 if (CONSOLE_X_P (XCONSOLE (console)))
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302 return (!memcmp ((XEvent *) &e1->event.magic.underlying_x_event,
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303 (XEvent *) &e2->event.magic.underlying_x_event,
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304 sizeof (e1->event.magic.underlying_x_event)));
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305 #endif
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306 #ifdef HAVE_NEXTSTEP
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307 if (CONSOLE_NS_P (XCONSOLE (console)))
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308 return (e1->event.magic.underlying_ns_event ==
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309 e2->event.magic.underlying_ns_event);
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310 #endif
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311 return (e1->event.magic.underlying_tty_event ==
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312 e2->event.magic.underlying_tty_event);
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313 }
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314
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315 case empty_event: /* Empty and deallocated events are equal. */
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316 case dead_event:
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317 return 1;
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318
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319 default:
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320 abort ();
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321 return 0; /* not reached; warning suppression */
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322 }
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323 }
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324
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325 static unsigned long
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326 event_hash (Lisp_Object obj, int depth)
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327 {
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328 struct Lisp_Event *e = XEVENT (obj);
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329 unsigned long hash;
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330
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331 hash = HASH2 (e->event_type, LISP_HASH (e->channel));
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332 switch (e->event_type)
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333 {
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334 case process_event:
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335 return HASH2 (hash, LISP_HASH (e->event.process.process));
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336
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337 case timeout_event:
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338 return HASH3 (hash, internal_hash (e->event.timeout.function, depth + 1),
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339 internal_hash (e->event.timeout.object, depth + 1));
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340
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341 case key_press_event:
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342 return HASH3 (hash, LISP_HASH (e->event.key.keysym),
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343 e->event.key.modifiers);
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344
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345 case button_press_event:
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346 case button_release_event:
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347 return HASH3 (hash, e->event.button.button, e->event.button.modifiers);
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348
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349 case pointer_motion_event:
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350 return HASH3 (hash, e->event.motion.x, e->event.motion.y);
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351
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352 case misc_user_event:
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353 case eval_event:
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354 return HASH3 (hash, internal_hash (e->event.eval.function, depth + 1),
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355 internal_hash (e->event.eval.object, depth + 1));
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356
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357 case magic_eval_event:
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358 return HASH3 (hash,
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359 (unsigned long) e->event.magic_eval.internal_function,
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360 internal_hash (e->event.magic_eval.object, depth + 1));
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361
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362 case magic_event:
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363 {
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364 Lisp_Object console = CDFW_CONSOLE (EVENT_CHANNEL (e));
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365 #ifdef HAVE_X_WINDOWS
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366 if (CONSOLE_X_P (XCONSOLE (console)))
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367 return
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368 HASH2 (hash,
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369 memory_hash (&e->event.magic.underlying_x_event,
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370 sizeof (e->event.magic.underlying_x_event)));
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371 #endif
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372 #ifdef HAVE_NEXTSTEP
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373 if (CONSOLE_NS_P (XCONSOLE (console)))
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374 return
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375 HASH2 (hash,
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376 memory_hash (&e->event.magic.underlying_ns_event,
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377 sizeof (e->event.magic.underlying_ns_event)));
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378 #endif
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379 return
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380 HASH2 (hash,
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381 memory_hash (&e->event.magic.underlying_tty_event,
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382 sizeof (e->event.magic.underlying_tty_event)));
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383 }
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384
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385 case empty_event:
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386 case dead_event:
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387 return hash;
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388
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389 default:
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390 abort ();
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391 }
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392
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393 return 0;
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394 }
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395
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396
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397 /* #### This should accept a type and props (as returned by
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398 event-properties) to allow creation of any type of event.
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399 This is useful, for example, in Lisp code that might want
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400 to determine if, for a given button-down event, what the
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401 binding for the corresponding button-up event is. */
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402
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20
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403 DEFUN ("make-event", Fmake_event, 0, 0, 0, /*
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0
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404 Create a new empty event.
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405 WARNING, the event object returned may be a reused one; see the function
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406 `deallocate-event'.
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20
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407 */
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408 ())
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0
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409 {
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410 Lisp_Object event;
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411
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412 if (!NILP (Vevent_resource))
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413 {
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414 event = Vevent_resource;
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415 Vevent_resource = XEVENT_NEXT (event);
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416 }
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417 else
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418 {
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419 event = allocate_event ();
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420 }
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421 zero_event (XEVENT (event));
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422 return event;
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423 }
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424
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20
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425 DEFUN ("deallocate-event", Fdeallocate_event, 1, 1, 0, /*
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0
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426 Allow the given event structure to be reused.
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427 You MUST NOT use this event object after calling this function with it.
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428 You will lose. It is not necessary to call this function, as event
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429 objects are garbage-collected like all other objects; however, it may
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430 be more efficient to explicitly deallocate events when you are sure
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2
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431 that it is safe to do so.
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20
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432 */
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433 (event))
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0
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434 {
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435 CHECK_EVENT (event);
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436
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437 if (XEVENT_TYPE (event) == dead_event)
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438 error ("this event is already deallocated!");
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439
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440 assert (XEVENT_TYPE (event) <= last_event_type);
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441
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442 #if 0
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443 {
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444 int i;
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445 extern Lisp_Object Vlast_command_event;
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446 extern Lisp_Object Vlast_input_event, Vunread_command_event;
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447 extern Lisp_Object Vthis_command_keys, Vrecent_keys_ring;
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448
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449 if (EQ (event, Vlast_command_event))
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450 abort ();
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451 if (EQ (event, Vlast_input_event))
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452 abort ();
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453 if (EQ (event, Vunread_command_event))
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454 abort ();
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455 for (i = 0; i < XVECTOR (Vthis_command_keys)->size; i++)
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456 if (EQ (event, vector_data (XVECTOR (Vthis_command_keys)) [i]))
|
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457 abort ();
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458 for (i = 0; i < XVECTOR (Vrecent_keys_ring)->size; i++)
|
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459 if (EQ (event, vector_data (XVECTOR (Vrecent_keys_ring)) [i]))
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460 abort ();
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461 }
|
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462 #endif /* 0 */
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463
|
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464 assert (!EQ (event, Vevent_resource));
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465 deinitialize_event (event);
|
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466 #ifndef ALLOC_NO_POOLS
|
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467 XSET_EVENT_NEXT (event, Vevent_resource);
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468 Vevent_resource = event;
|
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469 #endif
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470 return Qnil;
|
|
471 }
|
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472
|
20
|
473 DEFUN ("copy-event", Fcopy_event, 1, 2, 0, /*
|
0
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474 Make a copy of the given event object.
|
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475 If a second argument is given, the first event is copied into the second
|
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476 and the second is returned. If the second argument is not supplied (or
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477 is nil) then a new event will be made as with `allocate-event.' See also
|
|
478 the function `deallocate-event'.
|
20
|
479 */
|
|
480 (event1, event2))
|
0
|
481 {
|
|
482 CHECK_LIVE_EVENT (event1);
|
|
483 if (NILP (event2))
|
|
484 event2 = Fmake_event ();
|
|
485 else CHECK_LIVE_EVENT (event2);
|
|
486 if (EQ (event1, event2))
|
|
487 return signal_simple_continuable_error_2
|
|
488 ("copy-event called with `eq' events", event1, event2);
|
|
489
|
|
490 assert (XEVENT_TYPE (event1) <= last_event_type);
|
|
491 assert (XEVENT_TYPE (event2) <= last_event_type);
|
|
492
|
|
493 {
|
|
494 Lisp_Object save_next = XEVENT_NEXT (event2);
|
|
495
|
|
496 *XEVENT (event2) = *XEVENT (event1);
|
|
497 XSET_EVENT_NEXT (event2, save_next);
|
|
498 return (event2);
|
|
499 }
|
|
500 }
|
|
501
|
|
502
|
|
503
|
|
504 /* Given a chain of events (or possibly nil), deallocate them all. */
|
|
505
|
|
506 void
|
|
507 deallocate_event_chain (Lisp_Object event_chain)
|
|
508 {
|
|
509 while (!NILP (event_chain))
|
|
510 {
|
|
511 Lisp_Object next = XEVENT_NEXT (event_chain);
|
|
512 Fdeallocate_event (event_chain);
|
|
513 event_chain = next;
|
|
514 }
|
|
515 }
|
|
516
|
|
517 /* Return the last event in a chain.
|
|
518 NOTE: You cannot pass nil as a value here! The routine will
|
|
519 abort if you do. */
|
|
520
|
|
521 Lisp_Object
|
|
522 event_chain_tail (Lisp_Object event_chain)
|
|
523 {
|
|
524 while (1)
|
|
525 {
|
|
526 Lisp_Object next = XEVENT_NEXT (event_chain);
|
|
527 if (NILP (next))
|
|
528 return event_chain;
|
|
529 event_chain = next;
|
|
530 }
|
|
531 }
|
|
532
|
|
533 /* Enqueue a single event onto the end of a chain of events.
|
|
534 HEAD points to the first event in the chain, TAIL to the last event.
|
|
535 If the chain is empty, both values should be nil. */
|
|
536
|
|
537 void
|
|
538 enqueue_event (Lisp_Object event, Lisp_Object *head, Lisp_Object *tail)
|
|
539 {
|
|
540 assert (NILP (XEVENT_NEXT (event)));
|
|
541 assert (!EQ (*tail, event));
|
|
542
|
|
543 if (!NILP (*tail))
|
|
544 XSET_EVENT_NEXT (*tail, event);
|
|
545 else
|
|
546 *head = event;
|
|
547 *tail = event;
|
|
548
|
|
549 assert (!EQ (event, XEVENT_NEXT (event)));
|
|
550 }
|
|
551
|
|
552 /* Remove an event off the head of a chain of events and return it.
|
|
553 HEAD points to the first event in the chain, TAIL to the last event. */
|
|
554
|
|
555 Lisp_Object
|
|
556 dequeue_event (Lisp_Object *head, Lisp_Object *tail)
|
|
557 {
|
|
558 Lisp_Object event;
|
|
559
|
|
560 event = *head;
|
|
561 *head = XEVENT_NEXT (event);
|
|
562 XSET_EVENT_NEXT (event, Qnil);
|
|
563 if (NILP (*head))
|
|
564 *tail = Qnil;
|
|
565 return event;
|
|
566 }
|
|
567
|
|
568 /* Enqueue a chain of events (or possibly nil) onto the end of another
|
|
569 chain of events. HEAD points to the first event in the chain being
|
|
570 queued onto, TAIL to the last event. If the chain is empty, both values
|
|
571 should be nil. */
|
|
572
|
|
573 void
|
|
574 enqueue_event_chain (Lisp_Object event_chain, Lisp_Object *head,
|
|
575 Lisp_Object *tail)
|
|
576 {
|
|
577 if (NILP (event_chain))
|
|
578 return;
|
|
579
|
|
580 if (NILP (*head))
|
|
581 {
|
|
582 *head = event_chain;
|
|
583 *tail = event_chain;
|
|
584 }
|
|
585 else
|
|
586 {
|
|
587 XSET_EVENT_NEXT (*tail, event_chain);
|
|
588 *tail = event_chain_tail (event_chain);
|
|
589 }
|
|
590 }
|
|
591
|
|
592 /* Return the number of events (possibly 0) on an event chain. */
|
|
593
|
|
594 int
|
|
595 event_chain_count (Lisp_Object event_chain)
|
|
596 {
|
|
597 Lisp_Object event;
|
|
598 int n = 0;
|
|
599
|
|
600 EVENT_CHAIN_LOOP (event, event_chain)
|
|
601 n++;
|
|
602
|
|
603 return n;
|
|
604 }
|
|
605
|
|
606 /* Find the event before EVENT in an event chain. This aborts
|
|
607 if the event is not in the chain. */
|
|
608
|
|
609 Lisp_Object
|
|
610 event_chain_find_previous (Lisp_Object event_chain, Lisp_Object event)
|
|
611 {
|
|
612 Lisp_Object previous = Qnil;
|
|
613
|
|
614 while (!NILP (event_chain))
|
|
615 {
|
|
616 if (EQ (event_chain, event))
|
|
617 return previous;
|
|
618 previous = event_chain;
|
|
619 event_chain = XEVENT_NEXT (event_chain);
|
|
620 }
|
|
621
|
|
622 abort ();
|
|
623 return Qnil;
|
|
624 }
|
|
625
|
|
626 Lisp_Object
|
|
627 event_chain_nth (Lisp_Object event_chain, int n)
|
|
628 {
|
|
629 Lisp_Object event;
|
|
630 EVENT_CHAIN_LOOP (event, event_chain)
|
|
631 {
|
|
632 if (!n)
|
|
633 return event;
|
|
634 n--;
|
|
635 }
|
|
636 return Qnil;
|
|
637 }
|
|
638
|
|
639 Lisp_Object
|
|
640 copy_event_chain (Lisp_Object event_chain)
|
|
641 {
|
|
642 Lisp_Object new_chain = Qnil;
|
|
643 Lisp_Object new_chain_tail = Qnil;
|
|
644 Lisp_Object event;
|
|
645
|
|
646 EVENT_CHAIN_LOOP (event, event_chain)
|
|
647 {
|
|
648 Lisp_Object copy = Fcopy_event (event, Qnil);
|
|
649 enqueue_event (copy, &new_chain, &new_chain_tail);
|
|
650 }
|
|
651
|
|
652 return new_chain;
|
|
653 }
|
|
654
|
|
655
|
|
656
|
|
657 Lisp_Object QKbackspace, QKtab, QKlinefeed, QKreturn, QKescape,
|
|
658 QKspace, QKdelete;
|
|
659
|
|
660 int
|
|
661 command_event_p (Lisp_Object event)
|
|
662 {
|
|
663 switch (XEVENT_TYPE (event))
|
|
664 {
|
|
665 case key_press_event:
|
|
666 case button_press_event:
|
|
667 case button_release_event:
|
|
668 case misc_user_event:
|
|
669 return (1);
|
|
670 default:
|
|
671 return (0);
|
|
672 }
|
|
673 }
|
|
674
|
|
675
|
|
676 void
|
|
677 character_to_event (Emchar c, struct Lisp_Event *event, struct console *con,
|
|
678 int use_console_meta_flag)
|
|
679 {
|
|
680 Lisp_Object k = Qnil;
|
|
681 unsigned int m = 0;
|
|
682 if (event->event_type == dead_event)
|
|
683 error ("character-to-event called with a deallocated event!");
|
|
684
|
70
|
685 #ifndef MULE
|
0
|
686 c &= 255;
|
70
|
687 #endif
|
0
|
688 if (c > 127 && c <= 255)
|
|
689 {
|
|
690 int meta_flag = 1;
|
|
691 if (use_console_meta_flag && CONSOLE_TTY_P (con))
|
|
692 meta_flag = TTY_FLAGS (con).meta_key;
|
|
693 switch (meta_flag)
|
|
694 {
|
|
695 case 0: /* ignore top bit; it's parity */
|
|
696 c -= 128;
|
|
697 break;
|
|
698 case 1: /* top bit is meta */
|
|
699 c -= 128;
|
|
700 m = MOD_META;
|
|
701 break;
|
|
702 default: /* this is a real character */
|
|
703 break;
|
|
704 }
|
|
705 }
|
|
706 if (c < ' ') c += '@', m |= MOD_CONTROL;
|
|
707 if (m & MOD_CONTROL)
|
|
708 {
|
|
709 switch (c)
|
|
710 {
|
|
711 case 'I': k = QKtab; m &= ~MOD_CONTROL; break;
|
|
712 case 'J': k = QKlinefeed; m &= ~MOD_CONTROL; break;
|
|
713 case 'M': k = QKreturn; m &= ~MOD_CONTROL; break;
|
|
714 case '[': k = QKescape; m &= ~MOD_CONTROL; break;
|
|
715 # if 0
|
|
716 /* This is probably too controversial... */
|
|
717 case 'H': k = QKbackspace; m &= ~MOD_CONTROL; break;
|
|
718 # endif
|
|
719 }
|
|
720 if (c >= 'A' && c <= 'Z') c -= 'A'-'a';
|
|
721 }
|
|
722 else if (c == 127)
|
|
723 k = QKdelete;
|
|
724 else if (c == ' ')
|
|
725 k = QKspace;
|
|
726
|
2
|
727 event->event_type = key_press_event;
|
|
728 event->timestamp = 0; /* #### */
|
|
729 event->channel = make_console (con);
|
|
730 event->event.key.keysym = (!NILP (k) ? k : make_char (c));
|
|
731 event->event.key.modifiers = m;
|
0
|
732 }
|
|
733
|
|
734
|
|
735 /* This variable controls what character name -> character code mapping
|
|
736 we are using. Window-system-specific code sets this to some symbol,
|
|
737 and we use that symbol as the plist key to convert keysyms into 8-bit
|
|
738 codes. In this way one can have several character sets predefined and
|
|
739 switch them by changing this.
|
|
740 */
|
|
741 Lisp_Object Vcharacter_set_property;
|
|
742
|
|
743 Emchar
|
|
744 event_to_character (struct Lisp_Event *event,
|
|
745 int allow_extra_modifiers,
|
|
746 int allow_meta,
|
|
747 int allow_non_ascii)
|
|
748 {
|
|
749 Emchar c = 0;
|
|
750 Lisp_Object code;
|
|
751
|
|
752 if (event->event_type != key_press_event)
|
|
753 {
|
|
754 if (event->event_type == dead_event) abort ();
|
|
755 return -1;
|
|
756 }
|
|
757 if (!allow_extra_modifiers &&
|
|
758 event->event.key.modifiers & (MOD_SUPER|MOD_HYPER|MOD_ALT))
|
|
759 return -1;
|
|
760 if (CHAR_OR_CHAR_INTP (event->event.key.keysym))
|
|
761 c = XCHAR_OR_CHAR_INT (event->event.key.keysym);
|
|
762 else if (!SYMBOLP (event->event.key.keysym))
|
|
763 abort ();
|
|
764 else if (allow_non_ascii && !NILP (Vcharacter_set_property)
|
|
765 /* Allow window-system-specific extensibility of
|
|
766 keysym->code mapping */
|
|
767 && CHAR_OR_CHAR_INTP (code = Fget (event->event.key.keysym,
|
|
768 Vcharacter_set_property,
|
|
769 Qnil)))
|
|
770 c = XCHAR_OR_CHAR_INT (code);
|
|
771 else if (CHAR_OR_CHAR_INTP (code = Fget (event->event.key.keysym,
|
|
772 Qascii_character, Qnil)))
|
|
773 c = XCHAR_OR_CHAR_INT (code);
|
|
774 else
|
|
775 return -1;
|
|
776
|
|
777 if (event->event.key.modifiers & MOD_CONTROL)
|
|
778 {
|
|
779 if (c >= 'a' && c <= 'z')
|
|
780 c -= ('a' - 'A');
|
|
781 else
|
|
782 /* reject Control-Shift- keys */
|
|
783 if (c >= 'A' && c <= 'Z' && !allow_extra_modifiers)
|
|
784 return -1;
|
|
785
|
|
786 if (c >= '@' && c <= '_')
|
|
787 c -= '@';
|
|
788 else if (c == ' ') /* C-space and C-@ are the same. */
|
|
789 c = 0;
|
|
790 else
|
|
791 /* reject keys that can't take Control- modifiers */
|
|
792 if (! allow_extra_modifiers) return -1;
|
|
793 }
|
|
794
|
|
795 if (event->event.key.modifiers & MOD_META)
|
|
796 {
|
|
797 if (! allow_meta) return -1;
|
|
798 if (c & 0200) return -1; /* don't allow M-oslash (overlap) */
|
70
|
799 #ifdef MULE
|
|
800 if (c >= 256) return -1;
|
|
801 #endif
|
0
|
802 c |= 0200;
|
|
803 }
|
|
804 return c;
|
|
805 }
|
|
806
|
20
|
807 DEFUN ("event-to-character", Fevent_to_character, 1, 4, 0, /*
|
0
|
808 Return the closest ASCII approximation to the given event object.
|
|
809 If the event isn't a keypress, this returns nil.
|
|
810 If the ALLOW-EXTRA-MODIFIERS argument is non-nil, then this is lenient in
|
|
811 its translation; it will ignore modifier keys other than control and meta,
|
|
812 and will ignore the shift modifier on those characters which have no
|
|
813 shifted ASCII equivalent (Control-Shift-A for example, will be mapped to
|
|
814 the same ASCII code as Control-A).
|
|
815 If the ALLOW-META argument is non-nil, then the Meta modifier will be
|
|
816 represented by turning on the high bit of the byte returned; otherwise, nil
|
|
817 will be returned for events containing the Meta modifier.
|
|
818 If the ALLOW-NON-ASCII argument is non-nil, then characters which are
|
|
819 present in the prevailing character set (see the `character-set-property'
|
|
820 variable) will be returned as their code in that character set, instead of
|
|
821 the return value being restricted to ASCII.
|
|
822 Note that specifying both ALLOW-META and ALLOW-NON-ASCII is ambiguous, as
|
|
823 both use the high bit; `M-x' and `oslash' will be indistinguishable.
|
20
|
824 */
|
70
|
825 (event, allow_extra_modifiers, allow_meta, allow_non_ascii))
|
0
|
826 {
|
|
827 Emchar c;
|
|
828 CHECK_LIVE_EVENT (event);
|
|
829 c = event_to_character (XEVENT (event),
|
|
830 !NILP (allow_extra_modifiers),
|
|
831 !NILP (allow_meta),
|
|
832 !NILP (allow_non_ascii));
|
|
833 return (c < 0 ? Qnil : make_char (c));
|
|
834 }
|
|
835
|
20
|
836 DEFUN ("character-to-event", Fcharacter_to_event, 1, 4, 0, /*
|
2
|
837 Converts a keystroke specifier into an event structure, replete with
|
0
|
838 bucky bits. The keystroke is the first argument, and the event to fill
|
|
839 in is the second. This function contains knowledge about what the codes
|
|
840 ``mean'' -- for example, the number 9 is converted to the character ``Tab'',
|
|
841 not the distinct character ``Control-I''.
|
|
842
|
|
843 Note that CH (the keystroke specifier) can be an integer, a character,
|
2
|
844 a symbol such as 'clear, or a list such as '(control backspace).
|
0
|
845
|
2
|
846 If the optional second argument is an event, it is modified;
|
|
847 otherwise, a new event object is created.
|
0
|
848
|
2
|
849 Optional third arg CONSOLE is the console to store in the event, and
|
|
850 defaults to the selected console.
|
0
|
851
|
|
852 If CH is an integer or character, the high bit may be interpreted as the
|
2
|
853 meta key. (This is done for backward compatibility in lots of places.)
|
|
854 If USE-CONSOLE-META-FLAG is nil, this will always be the case. If
|
|
855 USE-CONSOLE-META-FLAG is non-nil, the `meta' flag for CONSOLE affects
|
|
856 whether the high bit is interpreted as a meta key. (See `set-input-mode'.)
|
|
857 If you don't want this silly meta interpretation done, you should pass
|
|
858 in a list containing the character.
|
0
|
859
|
|
860 Beware that character-to-event and event-to-character are not strictly
|
2
|
861 inverse functions, since events contain much more information than the
|
|
862 ASCII character set can encode.
|
20
|
863 */
|
|
864 (ch, event, console, use_console_meta_flag))
|
0
|
865 {
|
|
866 struct console *con = decode_console (console);
|
|
867 if (NILP (event))
|
|
868 event = Fmake_event ();
|
|
869 else
|
|
870 CHECK_LIVE_EVENT (event);
|
|
871 if (CONSP (ch) || SYMBOLP (ch))
|
|
872 key_desc_list_to_event (ch, event, 1);
|
|
873 else
|
|
874 {
|
|
875 CHECK_CHAR_COERCE_INT (ch);
|
|
876 character_to_event (XCHAR (ch), XEVENT (event), con,
|
|
877 !NILP (use_console_meta_flag));
|
|
878 }
|
|
879 return event;
|
|
880 }
|
|
881
|
|
882 void
|
|
883 nth_of_key_sequence_as_event (Lisp_Object seq, int n, Lisp_Object event)
|
|
884 {
|
|
885 assert (STRINGP (seq) || VECTORP (seq));
|
|
886 assert (n < XINT (Flength (seq)));
|
|
887
|
|
888 if (STRINGP (seq))
|
|
889 {
|
|
890 Emchar ch = string_char (XSTRING (seq), n);
|
|
891 Fcharacter_to_event (make_char (ch), event, Qnil, Qnil);
|
|
892 }
|
|
893 else
|
|
894 {
|
|
895 Lisp_Object keystroke = vector_data (XVECTOR (seq))[n];
|
|
896 if (EVENTP (keystroke))
|
|
897 Fcopy_event (keystroke, event);
|
|
898 else
|
|
899 Fcharacter_to_event (keystroke, event, Qnil, Qnil);
|
|
900 }
|
|
901 }
|
|
902
|
|
903 Lisp_Object
|
|
904 key_sequence_to_event_chain (Lisp_Object seq)
|
|
905 {
|
|
906 int len = XINT (Flength (seq));
|
|
907 int i;
|
|
908 Lisp_Object head = Qnil, tail = Qnil;
|
|
909
|
|
910 for (i = 0; i < len; i++)
|
|
911 {
|
|
912 Lisp_Object event = Fmake_event ();
|
|
913 nth_of_key_sequence_as_event (seq, i, event);
|
|
914 enqueue_event (event, &head, &tail);
|
|
915 }
|
|
916
|
|
917 return head;
|
|
918 }
|
|
919
|
|
920 void
|
|
921 format_event_object (char *buf, struct Lisp_Event *event, int brief)
|
|
922 {
|
|
923 int mouse_p = 0;
|
|
924 int mod = 0;
|
|
925 Lisp_Object key;
|
|
926
|
|
927 switch (event->event_type)
|
|
928 {
|
|
929 case key_press_event:
|
|
930 {
|
|
931 mod = event->event.key.modifiers;
|
|
932 key = event->event.key.keysym;
|
|
933 /* Hack. */
|
|
934 if (! brief && CHARP (key) &&
|
|
935 mod & (MOD_CONTROL | MOD_META | MOD_SUPER | MOD_HYPER))
|
|
936 {
|
|
937 int k = XCHAR (key);
|
|
938 if (k >= 'a' && k <= 'z')
|
|
939 key = make_char (k - ('a' - 'A'));
|
|
940 else if (k >= 'A' && k <= 'Z')
|
|
941 mod |= MOD_SHIFT;
|
|
942 }
|
|
943 break;
|
|
944 }
|
|
945 case button_release_event:
|
|
946 mouse_p++;
|
|
947 /* Fall through */
|
|
948 case button_press_event:
|
|
949 {
|
|
950 mouse_p++;
|
|
951 mod = event->event.button.modifiers;
|
|
952 key = make_char (event->event.button.button + '0');
|
|
953 break;
|
|
954 }
|
|
955 case magic_event:
|
|
956 {
|
|
957 CONST char *name = 0;
|
|
958 Lisp_Object console = CDFW_CONSOLE (EVENT_CHANNEL (event));
|
|
959
|
|
960 #ifdef HAVE_X_WINDOWS
|
|
961 if (CONSOLE_X_P (XCONSOLE (console)))
|
|
962 name =
|
|
963 x_event_name (event->event.magic.underlying_x_event.xany.type);
|
|
964 #endif
|
|
965 #ifdef HAVE_NEXTSTEP
|
|
966 if (CONSOLE_NS_P (XCONSOLE (console)))
|
|
967 name = ns_event_name (event->event.magic.underlying_ns_event);
|
|
968 #endif
|
|
969 if (name) strcpy (buf, name);
|
|
970 else strcpy (buf, "???");
|
|
971 return;
|
|
972 }
|
|
973 case magic_eval_event: strcpy (buf, "magic-eval"); return;
|
|
974 case pointer_motion_event: strcpy (buf, "motion"); return;
|
|
975 case misc_user_event: strcpy (buf, "misc-user"); return;
|
|
976 case eval_event: strcpy (buf, "eval"); return;
|
|
977 case process_event: strcpy (buf, "process");return;
|
|
978 case timeout_event: strcpy (buf, "timeout");return;
|
|
979 case empty_event: strcpy (buf, "EMPTY-EVENT"); return;
|
|
980 case dead_event: strcpy (buf, "DEAD-EVENT"); return;
|
|
981 default:
|
|
982 abort ();
|
|
983 }
|
|
984 #define modprint1(x) { strcpy (buf, (x)); buf += sizeof (x)-1; }
|
|
985 #define modprint(x,y) { if (brief) modprint1 (y) else modprint1 (x) }
|
|
986 if (mod & MOD_CONTROL) modprint ("control-", "C-");
|
|
987 if (mod & MOD_META) modprint ("meta-", "M-");
|
|
988 if (mod & MOD_SUPER) modprint ("super-", "S-");
|
|
989 if (mod & MOD_HYPER) modprint ("hyper-", "H-");
|
|
990 if (mod & MOD_ALT) modprint ("alt-", "A-");
|
|
991 if (mod & MOD_SHIFT) modprint ("shift-", "Sh-");
|
|
992 if (mouse_p)
|
|
993 {
|
|
994 modprint1 ("button");
|
|
995 --mouse_p;
|
|
996 }
|
|
997 #undef modprint
|
|
998 #undef modprint1
|
|
999
|
|
1000 if (CHARP (key))
|
|
1001 {
|
|
1002 buf += set_charptr_emchar ((Bufbyte *) buf, XCHAR (key));
|
|
1003 *buf = 0;
|
|
1004 }
|
|
1005 else if (SYMBOLP (key))
|
|
1006 {
|
|
1007 CONST char *str = 0;
|
|
1008 if (brief)
|
|
1009 {
|
|
1010 if (EQ (key, QKlinefeed)) str = "LFD";
|
|
1011 else if (EQ (key, QKtab)) str = "TAB";
|
|
1012 else if (EQ (key, QKreturn)) str = "RET";
|
|
1013 else if (EQ (key, QKescape)) str = "ESC";
|
|
1014 else if (EQ (key, QKdelete)) str = "DEL";
|
|
1015 else if (EQ (key, QKspace)) str = "SPC";
|
|
1016 else if (EQ (key, QKbackspace)) str = "BS";
|
|
1017 }
|
|
1018 if (str)
|
|
1019 {
|
|
1020 int i = strlen (str);
|
|
1021 memcpy (buf, str, i+1);
|
|
1022 str += i;
|
|
1023 }
|
|
1024 else
|
|
1025 {
|
|
1026 memcpy (buf, string_data (XSYMBOL (key)->name),
|
|
1027 string_length (XSYMBOL (key)->name) + 1);
|
|
1028 str += string_length (XSYMBOL (key)->name);
|
|
1029 }
|
|
1030 }
|
|
1031 else
|
|
1032 abort ();
|
|
1033 if (mouse_p)
|
|
1034 strncpy (buf, "up", 4);
|
|
1035 }
|
|
1036
|
20
|
1037 DEFUN ("eventp", Feventp, 1, 1, 0, /*
|
0
|
1038 True if OBJECT is an event object.
|
20
|
1039 */
|
|
1040 (object))
|
0
|
1041 {
|
|
1042 return ((EVENTP (object)) ? Qt : Qnil);
|
|
1043 }
|
|
1044
|
20
|
1045 DEFUN ("event-live-p", Fevent_live_p, 1, 1, 0, /*
|
0
|
1046 True if OBJECT is an event object that has not been deallocated.
|
20
|
1047 */
|
|
1048 (object))
|
0
|
1049 {
|
|
1050 return ((EVENTP (object) && XEVENT (object)->event_type != dead_event)
|
|
1051 ? Qt : Qnil);
|
|
1052 }
|
|
1053
|
|
1054 #if 0 /* debugging functions */
|
|
1055
|
|
1056 xxDEFUN ("event-next", Fevent_next, Sevent_next, 1, 1, 0 /*
|
|
1057 Return the event object's `next' event, or nil if it has none.
|
|
1058 The `next-event' field is changed by calling `set-next-event'.
|
|
1059 */ )
|
|
1060 (event)
|
|
1061 Lisp_Object event;
|
|
1062 {
|
|
1063 struct Lisp_Event *e;
|
|
1064 CHECK_LIVE_EVENT (event);
|
|
1065
|
|
1066 return XEVENT_NEXT (event);
|
|
1067 }
|
|
1068
|
|
1069 xxDEFUN ("set-event-next", Fset_event_next, Sset_event_next, 2, 2, 0 /*
|
|
1070 Set the `next event' of EVENT to NEXT-EVENT.
|
|
1071 NEXT-EVENT must be an event object or nil.
|
|
1072 */ )
|
|
1073 (event, next_event)
|
|
1074 Lisp_Object event, next_event;
|
|
1075 {
|
|
1076 Lisp_Object ev;
|
|
1077
|
|
1078 CHECK_LIVE_EVENT (event);
|
|
1079 if (NILP (next_event))
|
|
1080 {
|
|
1081 XSET_EVENT_NEXT (event, Qnil);
|
|
1082 return (Qnil);
|
|
1083 }
|
|
1084
|
|
1085 CHECK_LIVE_EVENT (next_event);
|
|
1086
|
|
1087 EVENT_CHAIN_LOOP (ev, XEVENT_NEXT (event))
|
|
1088 {
|
|
1089 QUIT;
|
|
1090 if (EQ (ev, event))
|
|
1091 signal_error (Qerror,
|
|
1092 list3 (build_string ("Cyclic event-next"),
|
|
1093 event,
|
|
1094 next_event));
|
|
1095 }
|
|
1096 XSET_EVENT_NEXT (event, next_event);
|
|
1097 return (next_event);
|
|
1098 }
|
|
1099
|
|
1100 #endif /* 0 */
|
|
1101
|
20
|
1102 DEFUN ("event-type", Fevent_type, 1, 1, 0, /*
|
0
|
1103 Return the type of EVENT.
|
|
1104 This will be a symbol; one of
|
|
1105
|
|
1106 key-press A key was pressed.
|
|
1107 button-press A mouse button was pressed.
|
|
1108 button-release A mouse button was released.
|
|
1109 misc-user Some other user action happened; typically, this is
|
|
1110 a menu selection or scrollbar action.
|
|
1111 motion The mouse moved.
|
|
1112 process Input is available from a subprocess.
|
|
1113 timeout A timeout has expired.
|
|
1114 eval This causes a specified action to occur when dispatched.
|
|
1115 magic Some window-system-specific event has occurred.
|
20
|
1116 */
|
|
1117 (event))
|
0
|
1118 {
|
|
1119 CHECK_LIVE_EVENT (event);
|
|
1120 switch (XEVENT (event)->event_type)
|
|
1121 {
|
|
1122 case key_press_event:
|
|
1123 return Qkey_press;
|
|
1124
|
|
1125 case button_press_event:
|
|
1126 return Qbutton_press;
|
|
1127
|
|
1128 case button_release_event:
|
|
1129 return Qbutton_release;
|
|
1130
|
|
1131 case misc_user_event:
|
|
1132 return Qmisc_user;
|
|
1133
|
|
1134 case pointer_motion_event:
|
|
1135 return Qmotion;
|
|
1136
|
|
1137 case process_event:
|
|
1138 return Qprocess;
|
|
1139
|
|
1140 case timeout_event:
|
|
1141 return Qtimeout;
|
|
1142
|
|
1143 case eval_event:
|
|
1144 return Qeval;
|
|
1145
|
|
1146 case magic_event:
|
|
1147 case magic_eval_event:
|
|
1148 return Qmagic;
|
|
1149
|
|
1150 default:
|
|
1151 abort ();
|
|
1152 return Qnil;
|
|
1153 }
|
|
1154 }
|
|
1155
|
20
|
1156 DEFUN ("event-timestamp", Fevent_timestamp, 1, 1, 0, /*
|
0
|
1157 Return the timestamp of the given event object.
|
20
|
1158 */
|
|
1159 (event))
|
0
|
1160 {
|
|
1161 CHECK_LIVE_EVENT (event);
|
|
1162 /* This junk is so that timestamps don't get to be negative, but contain
|
|
1163 as many bits as this particular emacs will allow.
|
|
1164 */
|
|
1165 return make_int (((1L << (VALBITS - 1)) - 1) &
|
|
1166 XEVENT (event)->timestamp);
|
|
1167 }
|
|
1168
|
|
1169 #define CHECK_EVENT_TYPE(e,t1,sym) \
|
|
1170 { CHECK_LIVE_EVENT (e); \
|
|
1171 if (XEVENT(e)->event_type != (t1)) \
|
|
1172 e = wrong_type_argument ((sym),(e)); \
|
|
1173 }
|
|
1174
|
|
1175 #define CHECK_EVENT_TYPE2(e,t1,t2,sym) \
|
|
1176 { CHECK_LIVE_EVENT (e); \
|
|
1177 if (XEVENT(e)->event_type != (t1) && XEVENT(e)->event_type != (t2)) \
|
|
1178 e = wrong_type_argument ((sym),(e)); \
|
|
1179 }
|
|
1180
|
20
|
1181 DEFUN ("event-key", Fevent_key, 1, 1, 0, /*
|
0
|
1182 Return the Keysym of the given key-press event.
|
|
1183 This will be the ASCII code of a printing character, or a symbol.
|
20
|
1184 */
|
|
1185 (event))
|
0
|
1186 {
|
|
1187 CHECK_EVENT_TYPE (event, key_press_event, Qkey_press_event_p);
|
|
1188 return (XEVENT (event)->event.key.keysym);
|
|
1189 }
|
|
1190
|
20
|
1191 DEFUN ("event-button", Fevent_button, 1, 1, 0, /*
|
0
|
1192 Return the button-number of the given mouse-button-press event.
|
20
|
1193 */
|
|
1194 (event))
|
0
|
1195 {
|
|
1196 CHECK_EVENT_TYPE2 (event, button_press_event, button_release_event,
|
|
1197 Qbutton_event_p);
|
|
1198 #ifdef HAVE_WINDOW_SYSTEM
|
|
1199 return make_int (XEVENT (event)->event.button.button);
|
|
1200 #else /* !HAVE_WINDOW_SYSTEM */
|
|
1201 return Qzero;
|
|
1202 #endif /* !HAVE_WINDOW_SYSTEM */
|
|
1203 }
|
|
1204
|
20
|
1205 DEFUN ("event-modifier-bits", Fevent_modifier_bits, 1, 1, 0, /*
|
0
|
1206 Return a number representing the modifier keys which were down
|
|
1207 when the given mouse or keyboard event was produced. See also the function
|
|
1208 event-modifiers.
|
20
|
1209 */
|
|
1210 (event))
|
0
|
1211 {
|
|
1212 again:
|
|
1213 CHECK_LIVE_EVENT (event);
|
|
1214 if (XEVENT (event)->event_type == key_press_event)
|
|
1215 return make_int (XEVENT (event)->event.key.modifiers);
|
|
1216 else if (XEVENT (event)->event_type == button_press_event ||
|
|
1217 XEVENT (event)->event_type == button_release_event)
|
|
1218 return make_int (XEVENT (event)->event.button.modifiers);
|
|
1219 else if (XEVENT (event)->event_type == pointer_motion_event)
|
|
1220 return make_int (XEVENT (event)->event.motion.modifiers);
|
|
1221 else
|
|
1222 {
|
|
1223 event = wrong_type_argument (intern ("key-or-mouse-event-p"), event);
|
|
1224 goto again;
|
|
1225 }
|
|
1226 }
|
|
1227
|
20
|
1228 DEFUN ("event-modifiers", Fevent_modifiers, 1, 1, 0, /*
|
0
|
1229 Return a list of symbols, the names of the modifier keys
|
|
1230 which were down when the given mouse or keyboard event was produced.
|
|
1231 See also the function event-modifier-bits.
|
20
|
1232 */
|
|
1233 (event))
|
0
|
1234 {
|
|
1235 int mod = XINT (Fevent_modifier_bits (event));
|
|
1236 Lisp_Object result = Qnil;
|
|
1237 if (mod & MOD_SHIFT) result = Fcons (Qshift, result);
|
|
1238 if (mod & MOD_ALT) result = Fcons (Qalt, result);
|
|
1239 if (mod & MOD_HYPER) result = Fcons (Qhyper, result);
|
|
1240 if (mod & MOD_SUPER) result = Fcons (Qsuper, result);
|
|
1241 if (mod & MOD_META) result = Fcons (Qmeta, result);
|
|
1242 if (mod & MOD_CONTROL) result = Fcons (Qcontrol, result);
|
|
1243 return result;
|
|
1244 }
|
|
1245
|
|
1246 static int
|
|
1247 event_x_y_pixel_internal (Lisp_Object event, int *x, int *y, int relative)
|
|
1248 {
|
|
1249 struct window *w;
|
|
1250 struct frame *f;
|
|
1251
|
|
1252 if (XEVENT (event)->event_type == pointer_motion_event)
|
|
1253 {
|
|
1254 *x = XEVENT (event)->event.motion.x;
|
|
1255 *y = XEVENT (event)->event.motion.y;
|
|
1256 }
|
|
1257 else if (XEVENT (event)->event_type == button_press_event ||
|
|
1258 XEVENT (event)->event_type == button_release_event)
|
|
1259 {
|
|
1260 *x = XEVENT (event)->event.button.x;
|
|
1261 *y = XEVENT (event)->event.button.y;
|
|
1262 }
|
|
1263 else
|
|
1264 return 0;
|
|
1265
|
|
1266 f = XFRAME (EVENT_CHANNEL (XEVENT (event)));
|
|
1267
|
|
1268 if (relative)
|
|
1269 {
|
|
1270 w = find_window_by_pixel_pos (*x, *y, f->root_window);
|
|
1271
|
|
1272 if (!w)
|
|
1273 return 1; /* #### What should really happen here. */
|
|
1274
|
|
1275 *x -= w->pixel_left;
|
|
1276 *y -= w->pixel_top;
|
|
1277 }
|
|
1278 else
|
|
1279 {
|
|
1280 *y -= FRAME_REAL_TOP_TOOLBAR_HEIGHT (f);
|
|
1281 *x -= FRAME_REAL_LEFT_TOOLBAR_WIDTH (f);
|
|
1282 }
|
|
1283
|
|
1284 return 1;
|
|
1285 }
|
|
1286
|
20
|
1287 DEFUN ("event-window-x-pixel", Fevent_window_x_pixel, 1, 1, 0, /*
|
0
|
1288 Return the X position in pixels of the given mouse event.
|
|
1289 The value returned is relative to the window the event occurred in.
|
|
1290 This will signal an error if the event is not a mouse-motion, button-press,
|
|
1291 or button-release event. See also `event-x-pixel'.
|
20
|
1292 */
|
|
1293 (event))
|
0
|
1294 {
|
|
1295 int x, y;
|
|
1296
|
|
1297 CHECK_LIVE_EVENT (event);
|
|
1298
|
|
1299 if (!event_x_y_pixel_internal (event, &x, &y, 1))
|
|
1300 return wrong_type_argument (Qmouse_event_p, event);
|
|
1301 else
|
|
1302 return make_int (x);
|
|
1303 }
|
|
1304
|
20
|
1305 DEFUN ("event-window-y-pixel", Fevent_window_y_pixel, 1, 1, 0, /*
|
0
|
1306 Return the Y position in pixels of the given mouse event.
|
|
1307 The value returned is relative to the window the event occurred in.
|
|
1308 This will signal an error if the event is not a mouse-motion, button-press,
|
|
1309 or button-release event. See also `event-y-pixel'.
|
20
|
1310 */
|
|
1311 (event))
|
0
|
1312 {
|
|
1313 int x, y;
|
|
1314
|
|
1315 CHECK_LIVE_EVENT (event);
|
|
1316
|
|
1317 if (!event_x_y_pixel_internal (event, &x, &y, 1))
|
|
1318 return wrong_type_argument (Qmouse_event_p, event);
|
|
1319 else
|
|
1320 return make_int (y);
|
|
1321 }
|
|
1322
|
20
|
1323 DEFUN ("event-x-pixel", Fevent_x_pixel, 1, 1, 0, /*
|
0
|
1324 Return the X position in pixels of the given mouse event.
|
|
1325 The value returned is relative to the frame the event occurred in.
|
|
1326 This will signal an error if the event is not a mouse-motion, button-press,
|
|
1327 or button-release event. See also `event-window-x-pixel'.
|
20
|
1328 */
|
|
1329 (event))
|
0
|
1330 {
|
|
1331 int x, y;
|
|
1332
|
|
1333 CHECK_LIVE_EVENT (event);
|
|
1334
|
|
1335 if (!event_x_y_pixel_internal (event, &x, &y, 0))
|
|
1336 return wrong_type_argument (Qmouse_event_p, event);
|
|
1337 else
|
|
1338 return make_int (x);
|
|
1339 }
|
|
1340
|
20
|
1341 DEFUN ("event-y-pixel", Fevent_y_pixel, 1, 1, 0, /*
|
0
|
1342 Return the Y position in pixels of the given mouse event.
|
|
1343 The value returned is relative to the frame the event occurred in.
|
|
1344 This will signal an error if the event is not a mouse-motion, button-press,
|
|
1345 or button-release event. See also `event-window-y-pixel'.
|
20
|
1346 */
|
|
1347 (event))
|
0
|
1348 {
|
|
1349 int x, y;
|
|
1350
|
|
1351 CHECK_LIVE_EVENT (event);
|
|
1352
|
|
1353 if (!event_x_y_pixel_internal (event, &x, &y, 0))
|
|
1354 return wrong_type_argument (Qmouse_event_p, event);
|
|
1355 else
|
|
1356 return make_int (y);
|
|
1357 }
|
|
1358
|
|
1359 /* Given an event, return a value:
|
|
1360
|
|
1361 OVER_TOOLBAR: over one of the 4 frame toolbars
|
|
1362 OVER_MODELINE: over a modeline
|
|
1363 OVER_BORDER: over an internal border
|
|
1364 OVER_NOTHING: over the text area, but not over text
|
|
1365 OVER_OUTSIDE: outside of the frame border
|
|
1366 OVER_TEXT: over text in the text area
|
|
1367
|
|
1368 and return:
|
|
1369
|
|
1370 The X char position in CHAR_X, if not a null pointer.
|
|
1371 The Y char position in CHAR_Y, if not a null pointer.
|
|
1372 (These last two values are relative to the window the event is over.)
|
|
1373 The window it's over in W, if not a null pointer.
|
|
1374 The buffer position it's over in BUFP, if not a null pointer.
|
|
1375 The closest buffer position in CLOSEST, if not a null pointer.
|
|
1376
|
|
1377 OBJ_X, OBJ_Y, OBJ1, and OBJ2 are as in pixel_to_glyph_translation().
|
|
1378 */
|
|
1379
|
|
1380 static int
|
|
1381 event_pixel_translation (Lisp_Object event, int *char_x, int *char_y,
|
|
1382 int *obj_x, int *obj_y,
|
|
1383 struct window **w, Bufpos *bufp, Bufpos *closest,
|
|
1384 Charcount *modeline_closest,
|
|
1385 Lisp_Object *obj1, Lisp_Object *obj2)
|
|
1386 {
|
|
1387 int pix_x = 0;
|
|
1388 int pix_y = 0;
|
|
1389 int result;
|
|
1390 Lisp_Object frame;
|
|
1391
|
|
1392 int ret_x, ret_y, ret_obj_x, ret_obj_y;
|
|
1393 struct window *ret_w;
|
|
1394 Bufpos ret_bufp, ret_closest;
|
|
1395 Charcount ret_modeline_closest;
|
|
1396 Lisp_Object ret_obj1, ret_obj2;
|
|
1397
|
|
1398 CHECK_LIVE_EVENT (event);
|
|
1399 if (XEVENT (event)->event_type == pointer_motion_event)
|
|
1400 {
|
|
1401 pix_x = XEVENT (event)->event.motion.x;
|
|
1402 pix_y = XEVENT (event)->event.motion.y;
|
|
1403 frame = XEVENT (event)->channel;
|
|
1404 }
|
|
1405 else if (XEVENT (event)->event_type == button_press_event ||
|
|
1406 XEVENT (event)->event_type == button_release_event)
|
|
1407 {
|
|
1408 pix_x = XEVENT (event)->event.button.x;
|
|
1409 pix_y = XEVENT (event)->event.button.y;
|
|
1410 frame = XEVENT (event)->channel;
|
|
1411 }
|
|
1412 else
|
|
1413 wrong_type_argument (Qmouse_event_p, event);
|
|
1414
|
|
1415 result = pixel_to_glyph_translation (XFRAME (frame), pix_x, pix_y,
|
|
1416 &ret_x, &ret_y, &ret_obj_x, &ret_obj_y,
|
|
1417 &ret_w, &ret_bufp, &ret_closest,
|
|
1418 &ret_modeline_closest,
|
|
1419 &ret_obj1, &ret_obj2);
|
|
1420
|
|
1421 if (result == OVER_NOTHING || result == OVER_OUTSIDE)
|
|
1422 ret_bufp = 0;
|
|
1423 else if (ret_w && NILP (ret_w->buffer))
|
|
1424 /* Why does this happen? (Does it still happen?)
|
|
1425 I guess the window has gotten reused as a non-leaf... */
|
|
1426 ret_w = 0;
|
|
1427
|
|
1428 /* #### pixel_to_glyph_translation() sometimes returns garbage...
|
|
1429 The word has type Lisp_Record (presumably meaning `extent') but the
|
|
1430 pointer points to random memory, often filled with 0, sometimes not.
|
|
1431 */
|
|
1432 /* #### Chuck, do we still need this crap? */
|
|
1433 if (!NILP (ret_obj1) && !(GLYPHP (ret_obj1)
|
|
1434 #ifdef HAVE_TOOLBARS
|
|
1435 || TOOLBAR_BUTTONP (ret_obj1)
|
|
1436 #endif
|
|
1437 ))
|
|
1438 abort ();
|
|
1439 if (!NILP (ret_obj2) && !(EXTENTP (ret_obj2)
|
|
1440 || CONSP (ret_obj2)))
|
|
1441 abort ();
|
|
1442
|
|
1443 if (char_x)
|
|
1444 *char_x = ret_x;
|
|
1445 if (char_y)
|
|
1446 *char_y = ret_y;
|
|
1447 if (obj_x)
|
|
1448 *obj_x = ret_obj_x;
|
|
1449 if (obj_y)
|
|
1450 *obj_y = ret_obj_y;
|
|
1451 if (w)
|
|
1452 *w = ret_w;
|
|
1453 if (bufp)
|
|
1454 *bufp = ret_bufp;
|
|
1455 if (closest)
|
|
1456 *closest = ret_closest;
|
|
1457 if (modeline_closest)
|
|
1458 *modeline_closest = ret_modeline_closest;
|
|
1459 if (obj1)
|
|
1460 *obj1 = ret_obj1;
|
|
1461 if (obj2)
|
|
1462 *obj2 = ret_obj2;
|
|
1463
|
|
1464 return result;
|
|
1465 }
|
|
1466
|
20
|
1467 DEFUN ("event-over-text-area-p", Fevent_over_text_area_p, 1, 1, 0, /*
|
0
|
1468 Return whether the given mouse event occurred over the text area of a window.
|
|
1469 The modeline is not considered to be part of the text area.
|
20
|
1470 */
|
|
1471 (event))
|
0
|
1472 {
|
|
1473 int result = event_pixel_translation (event, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0);
|
|
1474
|
|
1475 if (result == OVER_TEXT || result == OVER_NOTHING)
|
|
1476 return Qt;
|
|
1477 else
|
|
1478 return Qnil;
|
|
1479 }
|
|
1480
|
20
|
1481 DEFUN ("event-over-modeline-p", Fevent_over_modeline_p, 1, 1, 0, /*
|
0
|
1482 Return whether the given mouse event occurred over the modeline of a window.
|
20
|
1483 */
|
|
1484 (event))
|
0
|
1485 {
|
|
1486 int result = event_pixel_translation (event, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0);
|
|
1487
|
|
1488 if (result == OVER_MODELINE)
|
|
1489 return Qt;
|
|
1490 else
|
|
1491 return Qnil;
|
|
1492 }
|
|
1493
|
20
|
1494 DEFUN ("event-over-border-p", Fevent_over_border_p, 1, 1, 0, /*
|
0
|
1495 Return whether the given mouse event occurred over an internal border.
|
20
|
1496 */
|
|
1497 (event))
|
0
|
1498 {
|
|
1499 int result = event_pixel_translation (event, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0);
|
|
1500
|
|
1501 if (result == OVER_BORDER)
|
|
1502 return Qt;
|
|
1503 else
|
|
1504 return Qnil;
|
|
1505 }
|
|
1506
|
20
|
1507 DEFUN ("event-over-toolbar-p", Fevent_over_toolbar_p, 1, 1, 0, /*
|
0
|
1508 Return whether the given mouse event occurred over a toolbar.
|
20
|
1509 */
|
|
1510 (event))
|
0
|
1511 {
|
|
1512 int result = event_pixel_translation (event, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0);
|
|
1513
|
|
1514 if (result == OVER_TOOLBAR)
|
|
1515 return Qt;
|
|
1516 else
|
|
1517 return Qnil;
|
|
1518 }
|
|
1519
|
|
1520 struct console *
|
|
1521 event_console_or_selected (Lisp_Object event)
|
|
1522 {
|
|
1523 Lisp_Object channel = EVENT_CHANNEL (XEVENT (event));
|
|
1524 Lisp_Object console = CDFW_CONSOLE (channel);
|
|
1525
|
|
1526 if (NILP (console))
|
|
1527 console = Vselected_console;
|
|
1528
|
|
1529 return XCONSOLE (console);
|
|
1530 }
|
|
1531
|
20
|
1532 DEFUN ("event-channel", Fevent_channel, 1, 1, 0, /*
|
0
|
1533 Return the channel that the given event occurred on.
|
|
1534 This will be a frame, device, console, or nil for some types
|
|
1535 of events (e.g. eval events).
|
20
|
1536 */
|
|
1537 (event))
|
0
|
1538 {
|
|
1539 CHECK_LIVE_EVENT (event);
|
|
1540 return EVENT_CHANNEL (XEVENT (event));
|
|
1541 }
|
|
1542
|
20
|
1543 DEFUN ("event-window", Fevent_window, 1, 1, 0, /*
|
0
|
1544 Return the window of the given mouse event.
|
|
1545 This may be nil if the event occurred in the border or over a toolbar.
|
|
1546 The modeline is considered to be in the window it represents.
|
20
|
1547 */
|
|
1548 (event))
|
0
|
1549 {
|
|
1550 struct window *w;
|
|
1551 Lisp_Object window;
|
|
1552
|
|
1553 event_pixel_translation (event, 0, 0, 0, 0, &w, 0, 0, 0, 0, 0);
|
|
1554
|
|
1555 if (!w)
|
|
1556 return Qnil;
|
|
1557 else
|
|
1558 {
|
|
1559 XSETWINDOW (window, w);
|
|
1560 return window;
|
|
1561 }
|
|
1562 }
|
|
1563
|
20
|
1564 DEFUN ("event-point", Fevent_point, 1, 1, 0, /*
|
0
|
1565 Return the character position of the given mouse event.
|
|
1566 If the event did not occur over a window, or did not occur over text,
|
|
1567 then this returns nil. Otherwise, it returns an index into the buffer
|
|
1568 visible in the event's window.
|
20
|
1569 */
|
|
1570 (event))
|
0
|
1571 {
|
|
1572 Bufpos bufp;
|
|
1573 struct window *w;
|
|
1574
|
|
1575 event_pixel_translation (event, 0, 0, 0, 0, &w, &bufp, 0, 0, 0, 0);
|
|
1576
|
|
1577 if (!w)
|
|
1578 return Qnil;
|
|
1579 else if (!bufp)
|
|
1580 return Qnil;
|
|
1581 else
|
|
1582 return make_int (bufp);
|
|
1583 }
|
|
1584
|
20
|
1585 DEFUN ("event-closest-point", Fevent_closest_point, 1, 1, 0, /*
|
0
|
1586 Return the character position of the given mouse event.
|
|
1587 If the event did not occur over a window or over text, return the
|
|
1588 closest point to the location of the event. If the Y pixel position
|
|
1589 overlaps a window and the X pixel position is to the left of that
|
|
1590 window, the closest point is the beginning of the line containing the
|
|
1591 Y position. If the Y pixel position overlaps a window and the X pixel
|
|
1592 position is to the right of that window, the closest point is the end
|
|
1593 of the line containing the Y position. If the Y pixel position is
|
|
1594 above a window, return 0. If it is below a window, return the value
|
|
1595 of (window-end).
|
20
|
1596 */
|
|
1597 (event))
|
0
|
1598 {
|
|
1599 Bufpos bufp;
|
|
1600
|
|
1601 event_pixel_translation (event, 0, 0, 0, 0, 0, 0, &bufp, 0, 0, 0);
|
|
1602
|
|
1603 if (!bufp)
|
|
1604 return Qnil;
|
|
1605 else
|
|
1606 return make_int (bufp);
|
|
1607 }
|
|
1608
|
20
|
1609 DEFUN ("event-x", Fevent_x, 1, 1, 0, /*
|
0
|
1610 Return the X position of the given mouse event in characters.
|
|
1611 This is relative to the window the event occurred over.
|
20
|
1612 */
|
|
1613 (event))
|
0
|
1614 {
|
|
1615 int char_x;
|
|
1616
|
|
1617 event_pixel_translation (event, &char_x, 0, 0, 0, 0, 0, 0, 0, 0, 0);
|
|
1618
|
|
1619 return make_int (char_x);
|
|
1620 }
|
|
1621
|
20
|
1622 DEFUN ("event-y", Fevent_y, 1, 1, 0, /*
|
0
|
1623 Return the Y position of the given mouse event in characters.
|
|
1624 This is relative to the window the event occurred over.
|
20
|
1625 */
|
|
1626 (event))
|
0
|
1627 {
|
|
1628 int char_y;
|
|
1629
|
|
1630 event_pixel_translation (event, 0, &char_y, 0, 0, 0, 0, 0, 0, 0, 0);
|
|
1631
|
|
1632 return make_int (char_y);
|
|
1633 }
|
|
1634
|
20
|
1635 DEFUN ("event-modeline-position", Fevent_modeline_position, 1, 1, 0, /*
|
0
|
1636 Return the character position in the modeline that EVENT occurred over.
|
|
1637 EVENT should be a mouse event. If EVENT did not occur over a modeline,
|
|
1638 nil is returned. You can determine the actual character that the
|
|
1639 event occurred over by looking in `generated-modeline-string' at the
|
|
1640 returned character position. Note that `generated-modeline-string'
|
|
1641 is buffer-local, and you must use EVENT's buffer when retrieving
|
|
1642 `generated-modeline-string' in order to get accurate results.
|
20
|
1643 */
|
|
1644 (event))
|
0
|
1645 {
|
|
1646 Charcount mbufp;
|
|
1647
|
|
1648 event_pixel_translation (event, 0, 0, 0, 0, 0, 0, 0, &mbufp, 0, 0);
|
|
1649
|
|
1650 if (mbufp < 0)
|
|
1651 return Qnil;
|
|
1652 else
|
|
1653 return make_int (mbufp);
|
|
1654 }
|
|
1655
|
20
|
1656 DEFUN ("event-glyph", Fevent_glyph, 1, 1, 0, /*
|
0
|
1657 Return the glyph that the given mouse event occurred over, or nil.
|
20
|
1658 */
|
|
1659 (event))
|
0
|
1660 {
|
|
1661 Lisp_Object glyph;
|
|
1662 struct window *w;
|
|
1663
|
|
1664 event_pixel_translation (event, 0, 0, 0, 0, &w, 0, 0, 0, &glyph, 0);
|
|
1665
|
|
1666 if (!w)
|
|
1667 return Qnil;
|
|
1668 else if (GLYPHP (glyph))
|
|
1669 return glyph;
|
|
1670 else
|
|
1671 return Qnil;
|
|
1672 }
|
|
1673
|
20
|
1674 DEFUN ("event-glyph-extent", Fevent_glyph_extent, 1, 1, 0, /*
|
0
|
1675 Return the extent of the glyph that the given mouse event occurred over.
|
|
1676 If the event did not occur over a glyph, nil is returned.
|
20
|
1677 */
|
|
1678 (event))
|
0
|
1679 {
|
|
1680 Lisp_Object extent;
|
|
1681 struct window *w;
|
|
1682
|
|
1683 event_pixel_translation (event, 0, 0, 0, 0, &w, 0, 0, 0, 0, &extent);
|
|
1684
|
|
1685 if (!w)
|
|
1686 return Qnil;
|
|
1687 else if (EXTENTP (extent))
|
|
1688 return extent;
|
|
1689 else
|
|
1690 return Qnil;
|
|
1691 }
|
|
1692
|
20
|
1693 DEFUN ("event-glyph-x-pixel", Fevent_glyph_x_pixel, 1, 1, 0, /*
|
0
|
1694 Return the X pixel position of EVENT relative to the glyph it occurred over.
|
|
1695 EVENT should be a mouse event. If the event did not occur over a glyph,
|
|
1696 nil is returned.
|
20
|
1697 */
|
|
1698 (event))
|
0
|
1699 {
|
|
1700 Lisp_Object extent;
|
|
1701 struct window *w;
|
|
1702 int obj_x;
|
|
1703
|
|
1704 event_pixel_translation (event, 0, 0, &obj_x, 0, &w, 0, 0, 0, 0, &extent);
|
|
1705
|
|
1706 if (w && EXTENTP (extent))
|
|
1707 return make_int (obj_x);
|
|
1708 else
|
|
1709 return Qnil;
|
|
1710 }
|
|
1711
|
20
|
1712 DEFUN ("event-glyph-y-pixel", Fevent_glyph_y_pixel, 1, 1, 0, /*
|
0
|
1713 Return the Y pixel position of EVENT relative to the glyph it occurred over.
|
|
1714 EVENT should be a mouse event. If the event did not occur over a glyph,
|
|
1715 nil is returned.
|
20
|
1716 */
|
|
1717 (event))
|
0
|
1718 {
|
|
1719 Lisp_Object extent;
|
|
1720 struct window *w;
|
|
1721 int obj_y;
|
|
1722
|
|
1723 event_pixel_translation (event, 0, 0, 0, &obj_y, &w, 0, 0, 0, 0, &extent);
|
|
1724
|
|
1725 if (w && EXTENTP (extent))
|
|
1726 return make_int (obj_y);
|
|
1727 else
|
|
1728 return Qnil;
|
|
1729 }
|
|
1730
|
20
|
1731 DEFUN ("event-toolbar-button", Fevent_toolbar_button, 1, 1, 0, /*
|
0
|
1732 Return the toolbar button that the given mouse event occurred over.
|
|
1733 If the event did not occur over a toolbar, nil is returned.
|
20
|
1734 */
|
|
1735 (event))
|
0
|
1736 {
|
|
1737 #ifdef HAVE_TOOLBARS
|
|
1738 Lisp_Object button;
|
|
1739 int result;
|
|
1740
|
|
1741 result = event_pixel_translation (event, 0, 0, 0, 0, 0, 0, 0, 0, &button, 0);
|
|
1742
|
|
1743 if (result == OVER_TOOLBAR)
|
|
1744 {
|
|
1745 if (TOOLBAR_BUTTONP (button))
|
|
1746 return button;
|
|
1747 else
|
|
1748 return Qnil;
|
|
1749 }
|
|
1750 else
|
|
1751 #endif
|
|
1752 return Qnil;
|
|
1753 }
|
|
1754
|
20
|
1755 DEFUN ("event-process", Fevent_process, 1, 1, 0, /*
|
0
|
1756 Return the process of the given process-output event.
|
20
|
1757 */
|
|
1758 (event))
|
0
|
1759 {
|
|
1760 CHECK_EVENT_TYPE (event, process_event, Qprocess_event_p);
|
|
1761 return (XEVENT (event)->event.process.process);
|
|
1762 }
|
|
1763
|
20
|
1764 DEFUN ("event-function", Fevent_function, 1, 1, 0, /*
|
0
|
1765 Return the callback function of EVENT.
|
|
1766 EVENT should be a timeout, misc-user, or eval event.
|
20
|
1767 */
|
|
1768 (event))
|
0
|
1769 {
|
|
1770 CHECK_LIVE_EVENT (event);
|
|
1771 switch (XEVENT (event)->event_type)
|
|
1772 {
|
|
1773 case timeout_event:
|
|
1774 return (XEVENT (event)->event.timeout.function);
|
|
1775 case misc_user_event:
|
|
1776 case eval_event:
|
|
1777 return (XEVENT (event)->event.eval.function);
|
|
1778 default:
|
|
1779 return wrong_type_argument (intern ("timeout-or-eval-event-p"), event);
|
|
1780 }
|
|
1781 }
|
|
1782
|
20
|
1783 DEFUN ("event-object", Fevent_object, 1, 1, 0, /*
|
0
|
1784 Return the callback function argument of EVENT.
|
|
1785 EVENT should be a timeout, misc-user, or eval event.
|
20
|
1786 */
|
|
1787 (event))
|
0
|
1788 {
|
|
1789 again:
|
|
1790 CHECK_LIVE_EVENT (event);
|
|
1791 switch (XEVENT (event)->event_type)
|
|
1792 {
|
|
1793 case timeout_event:
|
|
1794 return (XEVENT (event)->event.timeout.object);
|
|
1795 case misc_user_event:
|
|
1796 case eval_event:
|
|
1797 return (XEVENT (event)->event.eval.object);
|
|
1798 default:
|
|
1799 event = wrong_type_argument (intern ("timeout-or-eval-event-p"), event);
|
|
1800 goto again;
|
|
1801 }
|
|
1802 }
|
|
1803
|
20
|
1804 DEFUN ("event-properties", Fevent_properties, 1, 1, 0, /*
|
0
|
1805 Return a list of all of the properties of EVENT.
|
|
1806 This is in the form of a property list (alternating keyword/value pairs).
|
20
|
1807 */
|
|
1808 (event))
|
0
|
1809 {
|
|
1810 Lisp_Object props = Qnil;
|
|
1811 struct Lisp_Event *e;
|
|
1812 struct gcpro gcpro1;
|
|
1813
|
|
1814 CHECK_LIVE_EVENT (event);
|
|
1815 e = XEVENT (event);
|
|
1816 GCPRO1 (props);
|
|
1817
|
|
1818 props = Fcons (Qtimestamp, Fcons (Fevent_timestamp (event), props));
|
|
1819
|
|
1820 switch (e->event_type)
|
|
1821 {
|
|
1822 case process_event:
|
|
1823 props = Fcons (Qprocess, Fcons (e->event.process.process, props));
|
|
1824 break;
|
|
1825
|
|
1826 case timeout_event:
|
|
1827 props = Fcons (Qobject, Fcons (Fevent_object (event), props));
|
|
1828 props = Fcons (Qfunction, Fcons (Fevent_function (event), props));
|
|
1829 props = Fcons (Qid, Fcons (make_int (e->event.timeout.id_number),
|
|
1830 props));
|
|
1831 break;
|
|
1832
|
|
1833 case key_press_event:
|
|
1834 props = Fcons (Qmodifiers, Fcons (Fevent_modifiers (event), props));
|
|
1835 props = Fcons (Qkey, Fcons (Fevent_key (event), props));
|
|
1836 break;
|
|
1837
|
|
1838 case button_press_event:
|
|
1839 case button_release_event:
|
|
1840 props = Fcons (Qy, Fcons (Fevent_y_pixel (event), props));
|
|
1841 props = Fcons (Qx, Fcons (Fevent_x_pixel (event), props));
|
|
1842 props = Fcons (Qmodifiers, Fcons (Fevent_modifiers (event), props));
|
|
1843 props = Fcons (Qbutton, Fcons (Fevent_button (event), props));
|
|
1844 break;
|
|
1845
|
|
1846 case pointer_motion_event:
|
|
1847 props = Fcons (Qmodifiers, Fcons (Fevent_modifiers (event), props));
|
|
1848 props = Fcons (Qy, Fcons (Fevent_y_pixel (event), props));
|
|
1849 props = Fcons (Qx, Fcons (Fevent_x_pixel (event), props));
|
|
1850 break;
|
|
1851
|
|
1852 case misc_user_event:
|
|
1853 case eval_event:
|
|
1854 props = Fcons (Qobject, Fcons (Fevent_object (event), props));
|
|
1855 props = Fcons (Qfunction, Fcons (Fevent_function (event), props));
|
|
1856 break;
|
|
1857
|
|
1858 case magic_eval_event:
|
|
1859 case magic_event:
|
|
1860 break;
|
|
1861
|
|
1862 default:
|
|
1863 abort ();
|
|
1864 break; /* not reached; warning suppression */
|
|
1865 }
|
|
1866
|
|
1867 props = Fcons (Qchannel, Fcons (Fevent_channel (event), props));
|
|
1868 UNGCPRO;
|
|
1869
|
|
1870 return props;
|
|
1871 }
|
|
1872
|
|
1873
|
|
1874 /************************************************************************/
|
|
1875 /* initialization */
|
|
1876 /************************************************************************/
|
|
1877
|
|
1878 void
|
|
1879 syms_of_events (void)
|
|
1880 {
|
20
|
1881 DEFSUBR (Fcharacter_to_event);
|
|
1882 DEFSUBR (Fevent_to_character);
|
0
|
1883
|
20
|
1884 DEFSUBR (Fmake_event);
|
|
1885 DEFSUBR (Fdeallocate_event);
|
|
1886 DEFSUBR (Fcopy_event);
|
|
1887 DEFSUBR (Feventp);
|
|
1888 DEFSUBR (Fevent_live_p);
|
|
1889 DEFSUBR (Fevent_type);
|
|
1890 DEFSUBR (Fevent_properties);
|
0
|
1891
|
20
|
1892 DEFSUBR (Fevent_timestamp);
|
|
1893 DEFSUBR (Fevent_key);
|
|
1894 DEFSUBR (Fevent_button);
|
|
1895 DEFSUBR (Fevent_modifier_bits);
|
|
1896 DEFSUBR (Fevent_modifiers);
|
|
1897 DEFSUBR (Fevent_x_pixel);
|
|
1898 DEFSUBR (Fevent_y_pixel);
|
|
1899 DEFSUBR (Fevent_window_x_pixel);
|
|
1900 DEFSUBR (Fevent_window_y_pixel);
|
|
1901 DEFSUBR (Fevent_over_text_area_p);
|
|
1902 DEFSUBR (Fevent_over_modeline_p);
|
|
1903 DEFSUBR (Fevent_over_border_p);
|
|
1904 DEFSUBR (Fevent_over_toolbar_p);
|
|
1905 DEFSUBR (Fevent_channel);
|
|
1906 DEFSUBR (Fevent_window);
|
|
1907 DEFSUBR (Fevent_point);
|
|
1908 DEFSUBR (Fevent_closest_point);
|
|
1909 DEFSUBR (Fevent_x);
|
|
1910 DEFSUBR (Fevent_y);
|
|
1911 DEFSUBR (Fevent_modeline_position);
|
|
1912 DEFSUBR (Fevent_glyph);
|
|
1913 DEFSUBR (Fevent_glyph_extent);
|
|
1914 DEFSUBR (Fevent_glyph_x_pixel);
|
|
1915 DEFSUBR (Fevent_glyph_y_pixel);
|
|
1916 DEFSUBR (Fevent_toolbar_button);
|
|
1917 DEFSUBR (Fevent_process);
|
|
1918 DEFSUBR (Fevent_function);
|
|
1919 DEFSUBR (Fevent_object);
|
0
|
1920
|
|
1921 defsymbol (&Qeventp, "eventp");
|
|
1922 defsymbol (&Qevent_live_p, "event-live-p");
|
|
1923 defsymbol (&Qkey_press_event_p, "key-press-event-p");
|
|
1924 defsymbol (&Qbutton_event_p, "button-event-p");
|
|
1925 defsymbol (&Qmouse_event_p, "mouse-event-p");
|
|
1926 defsymbol (&Qprocess_event_p, "process-event-p");
|
|
1927 defsymbol (&Qkey_press, "key-press");
|
|
1928 defsymbol (&Qbutton_press, "button-press");
|
|
1929 defsymbol (&Qbutton_release, "button-release");
|
|
1930 defsymbol (&Qmisc_user, "misc-user");
|
|
1931 defsymbol (&Qascii_character, "ascii-character");
|
|
1932 }
|
|
1933
|
|
1934 void
|
|
1935 vars_of_events (void)
|
|
1936 {
|
|
1937 DEFVAR_LISP ("character-set-property", &Vcharacter_set_property /*
|
|
1938 A symbol used to look up the 8-bit character of a keysym.
|
|
1939 To convert a keysym symbol to an 8-bit code, as when that key is
|
|
1940 bound to self-insert-command, we will look up the property that this
|
|
1941 variable names on the property list of the keysym-symbol. The window-
|
|
1942 system-specific code will set up appropriate properties and set this
|
|
1943 variable.
|
|
1944 */ );
|
|
1945 Vcharacter_set_property = Qnil;
|
|
1946
|
|
1947 Vevent_resource = Qnil;
|
|
1948
|
|
1949 QKbackspace = KEYSYM ("backspace");
|
|
1950 QKtab = KEYSYM ("tab");
|
|
1951 QKlinefeed = KEYSYM ("linefeed");
|
|
1952 QKreturn = KEYSYM ("return");
|
|
1953 QKescape = KEYSYM ("escape");
|
|
1954 QKspace = KEYSYM ("space");
|
|
1955 QKdelete = KEYSYM ("delete");
|
|
1956
|
|
1957 staticpro (&QKbackspace);
|
|
1958 staticpro (&QKtab);
|
|
1959 staticpro (&QKlinefeed);
|
|
1960 staticpro (&QKreturn);
|
|
1961 staticpro (&QKescape);
|
|
1962 staticpro (&QKspace);
|
|
1963 staticpro (&QKdelete);
|
|
1964 }
|