281 lines
8.7 KiB
C
281 lines
8.7 KiB
C
/* property.c
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*
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* $Id$
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*
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* Copyright 1990, 1991, 1992, 1993, 1994, 1995, Oliver Laumann, Berlin
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* Copyright 2002, 2003 Sam Hocevar <sam@zoy.org>, Paris
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*
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* This software was derived from Elk 1.2, which was Copyright 1987, 1988,
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* 1989, Nixdorf Computer AG and TELES GmbH, Berlin (Elk 1.2 has been written
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* by Oliver Laumann for TELES Telematic Services, Berlin, in a joint project
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* between TELES and Nixdorf Microprocessor Engineering, Berlin).
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*
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* Oliver Laumann, TELES GmbH, Nixdorf Computer AG and Sam Hocevar, as co-
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* owners or individual owners of copyright in this software, grant to any
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* person or company a worldwide, royalty free, license to
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*
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* i) copy this software,
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* ii) prepare derivative works based on this software,
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* iii) distribute copies of this software or derivative works,
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* iv) perform this software, or
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* v) display this software,
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*
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* provided that this notice is not removed and that neither Oliver Laumann
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* nor Teles nor Nixdorf are deemed to have made any representations as to
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* the suitability of this software for any purpose nor are held responsible
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* for any defects of this software.
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*
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* THERE IS ABSOLUTELY NO WARRANTY FOR THIS SOFTWARE.
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*/
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#include "xlib.h"
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#include <string.h>
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Object Sym_Now;
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Generic_Predicate (Atom)
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Generic_Simple_Equal (Atom, ATOM, atom)
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Generic_Print (Atom, "#[atom %lu]", ATOM(x)->atom)
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Object Make_Atom (Atom a) {
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Object atom;
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if (a == None)
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return Sym_None;
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atom = Find_Object (T_Atom, (GENERIC)0, Match_X_Obj, a);
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if (Nullp (atom)) {
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atom = Alloc_Object (sizeof (struct S_Atom), T_Atom, 0);
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ATOM(atom)->tag = Null;
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ATOM(atom)->atom = a;
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Register_Object (atom, (GENERIC)0, (PFO)0, 0);
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}
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return atom;
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}
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/* Should be used with care */
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static Object P_Make_Atom (Object n) {
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return Make_Atom ((Atom)Get_Long (n));
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}
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static Object P_Intern_Atom (Object d, Object name) {
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Check_Type (d, T_Display);
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return Make_Atom (XInternAtom (DISPLAY(d)->dpy, Get_Strsym (name), 0));
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}
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static Object P_Find_Atom (Object d, Object name) {
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Check_Type (d, T_Display);
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return Make_Atom (XInternAtom (DISPLAY(d)->dpy, Get_Strsym (name), 1));
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}
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static Object P_Atom_Name (Object d, Object a) {
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register char *s;
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Check_Type (d, T_Display);
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Check_Type (a, T_Atom);
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Disable_Interrupts;
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s = XGetAtomName (DISPLAY(d)->dpy, ATOM(a)->atom);
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Enable_Interrupts;
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return Make_String (s, strlen (s));
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}
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static Object P_List_Properties (Object w) {
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register int i;
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int n;
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register Atom *ap;
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Object v;
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GC_Node;
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Check_Type (w, T_Window);
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Disable_Interrupts;
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ap = XListProperties (WINDOW(w)->dpy, WINDOW(w)->win, &n);
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Enable_Interrupts;
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v = Make_Vector (n, Null);
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GC_Link (v);
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for (i = 0; i < n; i++) {
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Object x;
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x = Make_Atom (ap[i]);
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VECTOR(v)->data[i] = x;
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}
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GC_Unlink;
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XFree ((char *)ap);
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return v;
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}
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static Object P_Get_Property (Object w, Object prop, Object type, Object start,
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Object len, Object deletep) {
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Atom req_type = AnyPropertyType, actual_type;
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int format;
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unsigned long nitems, bytes_left;
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unsigned char *data;
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Object ret, t, x;
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register unsigned int i;
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GC_Node2;
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Check_Type (w, T_Window);
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Check_Type (prop, T_Atom);
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if (!EQ(type, False)) {
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Check_Type (type, T_Atom);
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req_type = ATOM(type)->atom;
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}
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Check_Type (deletep, T_Boolean);
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Disable_Interrupts;
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if (XGetWindowProperty (WINDOW(w)->dpy, WINDOW(w)->win, ATOM(prop)->atom,
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Get_Long (start), Get_Long (len),
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EQ(deletep, True), req_type, &actual_type, &format,
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&nitems, &bytes_left, &data) != Success)
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Primitive_Error ("cannot get property");
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Enable_Interrupts;
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ret = t = P_Make_List (Make_Integer (4), Null);
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GC_Link2 (ret, t);
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x = Make_Atom (actual_type);
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Car (t) = x; t = Cdr (t);
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x = Make_Integer (format);
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Car (t) = x; t = Cdr (t);
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if (nitems) {
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if (format == 8) {
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Object s;
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x = Make_String ((char *)0, (int)nitems);
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s = Car (t) = x;
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memcpy (STRING(s)->data, (char *)data, (int)nitems);
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} else {
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Object v;
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GC_Node;
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v = Make_Vector ((int)nitems, Null);
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GC_Link (v);
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for (i = 0; i < nitems; i++) {
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x = Make_Unsigned (format == 16 ?
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*((int16_t *)data + i) : *((int32_t *)data + i));
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VECTOR(v)->data[i] = x;
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}
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Car (t) = v;
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GC_Unlink;
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}
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}
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t = Cdr (t);
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x = Make_Unsigned_Long (bytes_left);
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Car (t) = x;
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GC_Unlink;
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return ret;
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}
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static Object P_Change_Property (Object w, Object prop, Object type,
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Object format, Object mode, Object data) {
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register int i, m, x, nitems, f;
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char *buf;
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Alloca_Begin;
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Check_Type (w, T_Window);
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Check_Type (prop, T_Atom);
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Check_Type (type, T_Atom);
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m = Symbols_To_Bits (mode, 0, Propmode_Syms);
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switch (f = Get_Integer (format)) {
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case 8:
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Check_Type (data, T_String);
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buf = STRING(data)->data;
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nitems = STRING(data)->size;
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break;
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case 16: case 32:
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Check_Type (data, T_Vector);
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nitems = VECTOR(data)->size;
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Alloca (buf, char*, nitems * (f / sizeof (char)));
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for (i = 0; i < nitems; i++) {
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x = Get_Integer (VECTOR(data)->data[i]);
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if (f == 16) {
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if (x > 65535)
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Primitive_Error ("format mismatch");
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*((int16_t *)buf + i) = x;
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} else *((int32_t *)buf + i) = x;
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}
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break;
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default:
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Primitive_Error ("invalid format: ~s", format);
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}
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XChangeProperty (WINDOW(w)->dpy, WINDOW(w)->win, ATOM(prop)->atom,
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ATOM(type)->atom, f, m, (unsigned char *)buf, nitems);
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Alloca_End;
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return Void;
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}
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static Object P_Delete_Property (Object w, Object prop) {
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Check_Type (w, T_Window);
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Check_Type (prop, T_Atom);
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XDeleteProperty (WINDOW(w)->dpy, WINDOW(w)->win, ATOM(prop)->atom);
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return Void;
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}
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static Object P_Rotate_Properties (Object w, Object v, Object delta) {
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Atom *p;
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register int i, n;
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Alloca_Begin;
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Check_Type (w, T_Window);
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Check_Type (v, T_Vector);
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n = VECTOR(v)->size;
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Alloca (p, Atom*, n * sizeof (Atom));
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for (i = 0; i < n; i++) {
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Object a;
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a = VECTOR(v)->data[i];
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Check_Type (a, T_Atom);
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p[i] = ATOM(a)->atom;
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}
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XRotateWindowProperties (WINDOW(w)->dpy, WINDOW(w)->win, p, n,
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Get_Integer (delta));
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Alloca_End;
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return Void;
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}
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static Object P_Set_Selection_Owner (Object d, Object s, Object owner,
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Object time) {
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Check_Type (d, T_Display);
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Check_Type (s, T_Atom);
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XSetSelectionOwner (DISPLAY(d)->dpy, ATOM(s)->atom, Get_Window (owner),
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Get_Time (time));
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return Void;
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}
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static Object P_Selection_Owner (Object d, Object s) {
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Check_Type (d, T_Display);
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Check_Type (s, T_Atom);
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return Make_Window (0, DISPLAY(d)->dpy,
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XGetSelectionOwner (DISPLAY(d)->dpy, ATOM(s)->atom));
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}
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static Object P_Convert_Selection (Object s, Object target, Object prop,
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Object w, Object time) {
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Atom p = None;
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Check_Type (s, T_Atom);
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Check_Type (target, T_Atom);
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if (!EQ(prop, Sym_None)) {
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Check_Type (prop, T_Atom);
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p = ATOM(prop)->atom;
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}
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Check_Type (w, T_Window);
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XConvertSelection (WINDOW(w)->dpy, ATOM(s)->atom, ATOM(target)->atom,
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p, WINDOW(w)->win, Get_Time (time));
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return Void;
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}
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void elk_init_xlib_property () {
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Define_Symbol (&Sym_Now, "now");
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Generic_Define (Atom, "atom", "atom?");
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Define_Primitive (P_Make_Atom, "make-atom", 1, 1, EVAL);
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Define_Primitive (P_Intern_Atom, "intern-atom", 2, 2, EVAL);
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Define_Primitive (P_Find_Atom, "find-atom", 2, 2, EVAL);
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Define_Primitive (P_Atom_Name, "atom-name", 2, 2, EVAL);
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Define_Primitive (P_List_Properties, "list-properties", 1, 1, EVAL);
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Define_Primitive (P_Get_Property, "get-property", 6, 6, EVAL);
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Define_Primitive (P_Change_Property, "change-property", 6, 6, EVAL);
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Define_Primitive (P_Delete_Property, "delete-property", 2, 2, EVAL);
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Define_Primitive (P_Rotate_Properties, "rotate-properties", 3, 3, EVAL);
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Define_Primitive (P_Set_Selection_Owner, "set-selection-owner!",
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4, 4, EVAL);
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Define_Primitive (P_Selection_Owner, "selection-owner", 2, 2, EVAL);
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Define_Primitive (P_Convert_Selection, "convert-selection", 5, 5, EVAL);
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}
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