add actions for key/mouse bindings etc

This commit is contained in:
Dana Jansens 2003-03-18 08:39:28 +00:00
parent a86421d7d8
commit ad44e8a708
7 changed files with 427 additions and 408 deletions

View file

@ -20,11 +20,11 @@ ob3_LDADD=@LIBINTL@ ../render/librender.a
ob3_LDFLAGS=-export-dynamic
ob3_SOURCES=client.c event.c extensions.c focus.c frame.c openbox.c prop.c \
screen.c stacking.c xerror.c themerc.c timer.c dispatch.c \
engine.c plugin.c
engine.c plugin.c action.c
noinst_HEADERS=client.h event.h extensions.h focus.h frame.h geom.h gettext.h \
openbox.h prop.h screen.h stacking.h xerror.h themerc.h dispatch.h \
timer.h engine.h plugin.h
timer.h engine.h plugin.h action.h
MAINTAINERCLEANFILES= Makefile.in

346
openbox/action.c Normal file
View file

@ -0,0 +1,346 @@
#include "client.h"
#include "stacking.h"
#include "screen.h"
#include <glib.h>
void action_execute(char *path)
{
GError *e;
if (!g_spawn_command_line_async(path, &e)) {
g_warning("failed to execute '%s': %s", path, e->message);
}
}
void action_iconify(Client *c)
{
client_iconify(c, TRUE, TRUE);
}
void action_raise(Client *c)
{
stacking_raise(c);
}
void action_lower(Client *c)
{
stacking_lower(c);
}
void action_close(Client *c)
{
client_close(c);
}
void action_shade(Client *c)
{
client_shade(c, TRUE);
}
void action_unshade(Client *c)
{
client_shade(c, FALSE);
}
void action_toggle_shade(Client *c)
{
client_shade(c, !c->shaded);
}
void action_toggle_omnipresent(Client *c)
{
client_set_desktop(c, c->desktop == DESKTOP_ALL ?
screen_desktop : DESKTOP_ALL);
}
void action_move_relative(Client *c, int dx, int dy)
{
client_configure(c, Corner_TopLeft, c->area.x + dx, c->area.y + dy,
c->area.width, c->area.height, TRUE, TRUE);
}
void action_resize_relative(Client *c, int dx, int dy)
{
client_configure(c, Corner_TopLeft, c->area.x, c->area.y,
c->area.width + dx, c->area.height + dy, TRUE, TRUE);
}
void action_maximize_full(Client *c)
{
client_maximize(c, TRUE, 0, TRUE);
}
void action_unmaximize_full(Client *c)
{
client_maximize(c, FALSE, 0, TRUE);
}
void action_toggle_maximize_full(Client *c)
{
client_maximize(c, !(c->max_horz || c->max_vert), 0, TRUE);
}
void action_maximize_horz(Client *c)
{
client_maximize(c, TRUE, 1, TRUE);
}
void action_unmaximize_horz(Client *c)
{
client_maximize(c, FALSE, 1, TRUE);
}
void action_toggle_maximize_horz(Client *c)
{
client_maximize(c, !c->max_horz, 1, TRUE);
}
void action_maximize_vert(Client *c)
{
client_maximize(c, TRUE, 2, TRUE);
}
void action_unmaximize_vert(Client *c)
{
client_maximize(c, FALSE, 2, TRUE);
}
void action_toggle_maximize_vert(Client *c)
{
client_maximize(c, !c->max_vert, 2, TRUE);
}
void action_send_to_desktop(Client *c, guint desktop)
{
if (desktop < screen_num_desktops || desktop == DESKTOP_ALL)
client_set_desktop(c, desktop);
}
void action_send_to_next_desktop(Client *c, gboolean wrap, gboolean follow)
{
guint d;
d = screen_desktop + 1;
if (d >= screen_num_desktops) {
if (!wrap) return;
d = 0;
}
client_set_desktop(c, d);
if (follow) screen_set_desktop(d);
}
void action_send_to_previous_desktop(Client *c, gboolean wrap, gboolean follow)
{
guint d;
d = screen_desktop - 1;
if (d >= screen_num_desktops) {
if (!wrap) return;
d = screen_num_desktops - 1;
}
client_set_desktop(c, d);
if (follow) screen_set_desktop(d);
}
void action_desktop(guint desktop)
{
if (desktop < screen_num_desktops || desktop == DESKTOP_ALL)
screen_set_desktop(desktop);
}
void action_next_desktop(gboolean wrap)
{
guint d;
d = screen_desktop + 1;
if (d >= screen_num_desktops) {
if (!wrap) return;
d = 0;
}
screen_set_desktop(d);
}
void action_previous_desktop(gboolean wrap)
{
guint d;
d = screen_desktop - 1;
if (d >= screen_num_desktops) {
if (!wrap) return;
d = screen_num_desktops - 1;
}
screen_set_desktop(d);
}
static void cur_row_col(guint *r, guint *c)
{
switch (screen_desktop_layout.orientation) {
case Orientation_Horz:
switch (screen_desktop_layout.start_corner) {
case Corner_TopLeft:
*r = screen_desktop / screen_desktop_layout.columns;
*c = screen_desktop % screen_desktop_layout.columns;
break;
case Corner_BottomLeft:
*r = screen_desktop_layout.rows - 1 -
screen_desktop / screen_desktop_layout.columns;
*c = screen_desktop % screen_desktop_layout.columns;
break;
break;
case Corner_TopRight:
*r = screen_desktop / screen_desktop_layout.columns;
*c = screen_desktop_layout.columns - 1 -
screen_desktop % screen_desktop_layout.columns;
break;
case Corner_BottomRight:
*r = screen_desktop_layout.rows - 1 -
screen_desktop / screen_desktop_layout.columns;
*c = screen_desktop_layout.columns - 1 -
screen_desktop % screen_desktop_layout.columns;
break;
break;
}
case Orientation_Vert:
switch (screen_desktop_layout.start_corner) {
case Corner_TopLeft:
*r = screen_desktop % screen_desktop_layout.rows;
*c = screen_desktop / screen_desktop_layout.rows;
break;
case Corner_BottomLeft:
*r = screen_desktop_layout.rows - 1 -
screen_desktop % screen_desktop_layout.rows;
*c = screen_desktop / screen_desktop_layout.rows;
break;
break;
case Corner_TopRight:
*r = screen_desktop % screen_desktop_layout.rows;
*c = screen_desktop_layout.columns - 1 -
screen_desktop / screen_desktop_layout.rows;
break;
case Corner_BottomRight:
*r = screen_desktop_layout.rows - 1 -
screen_desktop % screen_desktop_layout.rows;
*c = screen_desktop_layout.columns - 1 -
screen_desktop / screen_desktop_layout.rows;
break;
break;
}
break;
}
}
static guint translate_row_col(guint r, guint c)
{
switch (screen_desktop_layout.orientation) {
case Orientation_Horz:
switch (screen_desktop_layout.start_corner) {
case Corner_TopLeft:
return r * screen_desktop_layout.columns + c;
case Corner_BottomLeft:
return (screen_desktop_layout.rows - 1 - r) *
screen_desktop_layout.columns + c;
case Corner_TopRight:
return r * screen_desktop_layout.columns +
(screen_desktop_layout.columns - 1 - c);
case Corner_BottomRight:
return (screen_desktop_layout.rows - 1 - r) *
screen_desktop_layout.columns +
(screen_desktop_layout.columns - 1 - c);
}
case Orientation_Vert:
switch (screen_desktop_layout.start_corner) {
case Corner_TopLeft:
return c * screen_desktop_layout.rows + r;
case Corner_BottomLeft:
return c * screen_desktop_layout.rows +
(screen_desktop_layout.rows - 1 - r);
case Corner_TopRight:
return (screen_desktop_layout.columns - 1 - c) *
screen_desktop_layout.rows + r;
case Corner_BottomRight:
return (screen_desktop_layout.columns - 1 - c) *
screen_desktop_layout.rows +
(screen_desktop_layout.rows - 1 - r);
}
}
g_assert_not_reached();
return 0;
}
void action_next_desktop_column(gboolean wrap)
{
guint r, c, d;
cur_row_col(&r, &c);
++c;
d = translate_row_col(r, c);
if (d >= screen_num_desktops) {
if (!wrap) return;
c = 0;
}
if (d >= screen_num_desktops)
++c;
d = translate_row_col(r, c);
if (d < screen_num_desktops)
screen_set_desktop(d);
}
void action_previous_desktop_column(gboolean wrap)
{
guint r, c, d;
cur_row_col(&r, &c);
--c;
d = translate_row_col(r, c);
if (d >= screen_num_desktops) {
if (!wrap) return;
c = screen_desktop_layout.columns - 1;
}
if (d >= screen_num_desktops)
--c;
d = translate_row_col(r, c);
if (d < screen_num_desktops)
screen_set_desktop(d);
}
void action_next_desktop_row(gboolean wrap)
{
guint r, c, d;
cur_row_col(&r, &c);
++r;
d = translate_row_col(r, c);
if (d >= screen_num_desktops) {
if (!wrap) return;
r = 0;
}
if (d >= screen_num_desktops)
++r;
d = translate_row_col(r, c);
if (d < screen_num_desktops)
screen_set_desktop(d);
}
void action_previous_desktop_row(gboolean wrap)
{
guint r, c, d;
cur_row_col(&r, &c);
--r;
d = translate_row_col(r, c);
if (d >= screen_num_desktops) {
if (!wrap) return;
c = screen_desktop_layout.rows - 1;
}
if (d >= screen_num_desktops)
--r;
d = translate_row_col(r, c);
if (d < screen_num_desktops)
screen_set_desktop(d);
}
void action_toggle_decorations(Client *c)
{
c->disabled_decorations = c->disabled_decorations ? 0 : ~0;
client_setup_decor_and_functions(c);
}

72
openbox/action.h Normal file
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@ -0,0 +1,72 @@
#ifndef __action_h
#define __action_h
#include "client.h"
typedef enum {
Action_Execute,
Action_Iconify,
Action_Raise,
Action_Lower,
Action_Close,
Action_Shade,
Action_Unshade,
Action_ToggleShade,
Action_ToggleOmnipresent,
Action_MoveRelative,
Action_ResizeRelative,
Action_MaximizeFull,
Action_UnmaximizeFull,
Action_ToggleMaximizeFull,
Action_MaximizeHorz,
Action_UnmaximizeHorz,
Action_ToggleMaximizeHorz,
Action_MaximizeVert,
Action_UnmaximizeVert,
Action_ToggleMaximizeVert,
Action_SendToDesktop,
Action_SendToNextDesktop,
Action_SendToPreviousDesktop,
Action_Desktop,
Action_NextDesktop,
Action_PreviousDesktop,
Action_NextDesktopColumn,
Action_PreviousDesktopColumn,
Action_NextDesktopRow,
Action_PreviousDesktopRow,
Action_ToggleDecorations
} Action;
void action_execute(char *path);
void action_iconify(Client *c);
void action_raise(Client *c);
void action_lower(Client *c);
void action_close(Client *c);
void action_shade(Client *c);
void action_unshade(Client *c);
void action_toggle_shade(Client *c);
void action_toggle_omnipresent(Client *c);
void action_move_relative(Client *c, int dx, int dy);
void action_resize_relative(Client *c, int dx, int dy);
void action_maximize_full(Client *c);
void action_unmaximize_full(Client *c);
void action_toggle_maximize_full(Client *c);
void action_maximize_horz(Client *c);
void action_unmaximize_horz(Client *c);
void action_toggle_maximize_horz(Client *c);
void action_maximize_vert(Client *c);
void action_unmaximize_vert(Client *c);
void action_toggle_maximize_vert(Client *c);
void action_send_to_desktop(Client *c, guint desktop);
void action_send_to_next_desktop(Client *c, gboolean wrap, gboolean follow);
void action_send_to_previous_desktop(Client *c, gboolean wrap,gboolean follow);
void action_desktop(guint desktop);
void action_next_desktop(gboolean wrap);
void action_previous_desktop(gboolean wrap);
void action_next_desktop_column(gboolean wrap);
void action_previous_desktop_column(gboolean wrap);
void action_next_desktop_row(gboolean wrap);
void action_previous_desktop_row(gboolean wrap);
void action_toggle_decorations(Client *c);
#endif

View file

@ -1632,9 +1632,7 @@ void client_set_desktop(Client *self, guint target)
g_message("Setting desktop %u\n", target);
if (!(target < screen_num_desktops ||
target == DESKTOP_ALL))
return;
g_assert(target < screen_num_desktops || target == DESKTOP_ALL);
old = self->desktop;
self->desktop = target;

View file

@ -103,319 +103,7 @@ static PyTypeObject KeyboardDataType = {
/***************************************************************************/
guint keyboard_translate_modifier(char *str)
{
if (!strcmp("Mod1", str)) return Mod1Mask;
else if (!strcmp("Mod2", str)) return Mod2Mask;
else if (!strcmp("Mod3", str)) return Mod3Mask;
else if (!strcmp("Mod4", str)) return Mod4Mask;
else if (!strcmp("Mod5", str)) return Mod5Mask;
else if (!strcmp("C", str)) return ControlMask;
else if (!strcmp("S", str)) return ShiftMask;
g_warning("Invalid modifier '%s' in binding.", str);
return 0;
}
static gboolean translate(char *str, guint *state, guint *keycode)
{
char **parsed;
char *l;
int i;
gboolean ret = FALSE;
KeySym sym;
parsed = g_strsplit(str, "-", -1);
/* first, find the key (last token) */
l = NULL;
for (i = 0; parsed[i] != NULL; ++i)
l = parsed[i];
if (l == NULL)
goto translation_fail;
/* figure out the mod mask */
*state = 0;
for (i = 0; parsed[i] != l; ++i) {
guint m = keyboard_translate_modifier(parsed[i]);
if (!m) goto translation_fail;
*state |= m;
}
/* figure out the keycode */
sym = XStringToKeysym(l);
if (sym == NoSymbol) {
g_warning("Invalid key name '%s' in key binding.", l);
goto translation_fail;
}
*keycode = XKeysymToKeycode(ob_display, sym);
if (!keycode) {
g_warning("Key '%s' does not exist on the display.", l);
goto translation_fail;
}
ret = TRUE;
translation_fail:
g_strfreev(parsed);
return ret;
}
static void destroytree(KeyBindingTree *tree)
{
KeyBindingTree *c;
while (tree) {
destroytree(tree->next_sibling);
c = tree->first_child;
if (c == NULL) {
GList *it;
for (it = tree->keylist; it != NULL; it = it->next)
g_free(it->data);
g_list_free(tree->keylist);
Py_XDECREF(tree->func);
}
g_free(tree);
tree = c;
}
}
static KeyBindingTree *buildtree(GList *keylist)
{
GList *it;
KeyBindingTree *ret = NULL, *p;
if (g_list_length(keylist) <= 0)
return NULL; /* nothing in the list.. */
for (it = g_list_last(keylist); it != NULL; it = it->prev) {
p = ret;
ret = g_new(KeyBindingTree, 1);
ret->next_sibling = NULL;
ret->func = NULL;
if (p == NULL) {
GList *it;
/* this is the first built node, the bottom node of the tree */
ret->keylist = g_list_copy(keylist); /* shallow copy */
for (it = ret->keylist; it != NULL; it = it->next) /* deep copy */
it->data = g_strdup(it->data);
}
ret->first_child = p;
if (!translate(it->data, &ret->state, &ret->key)) {
destroytree(ret);
return NULL;
}
}
return ret;
}
static void assimilate(KeyBindingTree *node)
{
KeyBindingTree *a, *b, *tmp, *last;
if (firstnode == NULL) {
/* there are no nodes at this level yet */
firstnode = node;
} else {
a = firstnode;
last = a;
b = node;
while (a) {
last = a;
if (!(a->state == b->state && a->key == b->key)) {
a = a->next_sibling;
} else {
tmp = b;
b = b->first_child;
g_free(tmp);
a = a->first_child;
}
}
if (!(last->state == b->state && last->key == b->key))
last->next_sibling = b;
else {
last->first_child = b->first_child;
g_free(b);
}
}
}
static KeyBindingTree *find(KeyBindingTree *search, gboolean *conflict)
{
KeyBindingTree *a, *b;
*conflict = FALSE;
a = firstnode;
b = search;
while (a && b) {
if (!(a->state == b->state && a->key == b->key)) {
a = a->next_sibling;
} else {
if ((a->first_child == NULL) == (b->first_child == NULL)) {
if (a->first_child == NULL) {
/* found it! (return the actual node, not the search's) */
return a;
}
} else {
*conflict = TRUE;
return NULL; /* the chain status' don't match (conflict!) */
}
b = b->first_child;
a = a->first_child;
}
}
return NULL; // it just isn't in here
}
static void grab_keys(gboolean grab)
{
if (!grab) {
XUngrabKey(ob_display, AnyKey, AnyModifier, ob_root);
} else {
KeyBindingTree *p = firstnode;
while (p) {
XGrabKey(ob_display, p->key, p->state, ob_root, FALSE,
GrabModeAsync, GrabModeSync);
p = p->next_sibling;
}
}
}
static void reset_chains()
{
/* XXX kill timer */
curpos = NULL;
if (grabbed) {
grabbed = FALSE;
g_message("reset chains. user_grabbed: %d", user_grabbed);
if (!user_grabbed)
XUngrabKeyboard(ob_display, CurrentTime);
}
}
void keyboard_event(XKeyEvent *e)
{
PyObject *chain, *client, *args, *keybdata, *ret;
gboolean press = e->type == KeyPress;
if (focus_client) client = clientwrap_new(focus_client);
else client = Py_None;
if (user_grabbed) {
GString *str = g_string_sized_new(0);
KeySym sym;
/* build the 'chain' */
if (e->state & ControlMask)
g_string_append(str, "C-");
if (e->state & ShiftMask)
g_string_append(str, "S-");
if (e->state & Mod1Mask)
g_string_append(str, "Mod1-");
if (e->state & Mod2Mask)
g_string_append(str, "Mod2-");
if (e->state & Mod3Mask)
g_string_append(str, "Mod3-");
if (e->state & Mod4Mask)
g_string_append(str, "Mod4-");
if (e->state & Mod5Mask)
g_string_append(str, "Mod5-");
sym = XKeycodeToKeysym(ob_display, e->keycode, 0);
if (sym == NoSymbol)
g_string_append(str, "NoSymbol");
else {
char *name = XKeysymToString(sym);
if (name == NULL)
name = "Undefined";
g_string_append(str, name);
}
chain = PyTuple_New(1);
PyTuple_SET_ITEM(chain, 0, PyString_FromString(str->str));
g_string_free(str, TRUE);
keybdata = keybdata_new(chain, e->state, e->keycode, press);
args = Py_BuildValue("OO", keybdata, client);
ret = PyObject_CallObject(grab_func, args);
if (ret == NULL) PyErr_Print();
Py_XDECREF(ret);
Py_DECREF(args);
Py_DECREF(keybdata);
Py_DECREF(chain);
}
if (press) {
if (e->keycode == reset_key && e->state == reset_state) {
reset_chains();
XAllowEvents(ob_display, AsyncKeyboard, CurrentTime);
} else {
KeyBindingTree *p;
if (curpos == NULL)
p = firstnode;
else
p = curpos->first_child;
while (p) {
if (p->key == e->keycode && p->state == e->state) {
if (p->first_child != NULL) { /* part of a chain */
/* XXX TIMER */
if (!grabbed && !user_grabbed) {
/*grab should never fail because we should have a
sync grab at this point */
XGrabKeyboard(ob_display, ob_root, 0,
GrabModeAsync, GrabModeSync,
CurrentTime);
}
grabbed = TRUE;
curpos = p;
XAllowEvents(ob_display, AsyncKeyboard, CurrentTime);
} else {
GList *it;
int i;
chain = PyTuple_New(g_list_length(p->keylist));
for (i = 0, it = p->keylist; it != NULL;
it = it->next, ++i)
PyTuple_SET_ITEM(chain, i,
PyString_FromString(it->data));
keybdata = keybdata_new(chain, e->state, e->keycode,
press);
args = Py_BuildValue("OO", keybdata, client);
ret = PyObject_CallObject(p->func, args);
if (ret == NULL) PyErr_Print();
Py_XDECREF(ret);
Py_DECREF(args);
Py_DECREF(keybdata);
Py_DECREF(chain);
XAllowEvents(ob_display, AsyncKeyboard, CurrentTime);
reset_chains();
}
break;
}
p = p->next_sibling;
}
}
}
if (client != Py_None) { Py_DECREF(client); }
}
static void clearall()
{
grab_keys(FALSE);
destroytree(firstnode);
firstnode = NULL;
grab_keys(TRUE);
}
static gboolean grab_keyboard(gboolean grab)
{
@ -456,93 +144,6 @@ typedef struct Keyboard {
staticforward PyTypeObject KeyboardType;
static PyObject *keyb_bind(Keyboard *self, PyObject *args)
{
KeyBindingTree *tree = NULL, *t;
gboolean conflict;
PyObject *item, *tuple, *func;
GList *keylist = NULL, *it;
int i, s;
CHECK_KEYBOARD(self, "grab");
if (!PyArg_ParseTuple(args, "OO:grab", &tuple, &func))
return NULL;
if (!PyTuple_Check(tuple)) {
PyErr_SetString(PyExc_ValueError, "expected a tuple of strings");
goto binderror;
}
if (!PyCallable_Check(func)) {
PyErr_SetString(PyExc_ValueError, "expected a callable object");
goto binderror;
}
s = PyTuple_GET_SIZE(tuple);
if (s <= 0) {
PyErr_SetString(PyExc_ValueError, "expected a tuple of strings");
goto binderror;
}
for (i = 0; i < s; ++i) {
item = PyTuple_GET_ITEM(tuple, i);
if (!PyString_Check(item)) {
PyErr_SetString(PyExc_ValueError, "expected a tuple of strings");
goto binderror;
}
keylist = g_list_append(keylist,
g_strdup(PyString_AsString(item)));
}
if (!(tree = buildtree(keylist))) {
PyErr_SetString(PyExc_ValueError, "invalid binding");
goto binderror;
}
t = find(tree, &conflict);
if (conflict) {
PyErr_SetString(PyExc_ValueError, "conflict with binding");
goto binderror;
}
if (t != NULL) {
/* already bound to something */
PyErr_SetString(PyExc_ValueError, "keychain is already bound");
goto binderror;
}
/* grab the server here to make sure no key pressed go missed */
XGrabServer(ob_display);
XSync(ob_display, FALSE);
grab_keys(FALSE);
/* set the function */
t = tree;
while (t->first_child) t = t->first_child;
t->func = func;
Py_INCREF(func);
/* assimilate this built tree into the main tree */
assimilate(tree); // assimilation destroys/uses the tree
grab_keys(TRUE);
XUngrabServer(ob_display);
XFlush(ob_display);
for (it = keylist; it != NULL; it = it->next)
g_free(it->data);
g_list_free(it);
Py_INCREF(Py_None);
return Py_None;
binderror:
if (tree != NULL) destroytree(tree);
for (it = keylist; it != NULL; it = it->next)
g_free(it->data);
g_list_free(it);
return NULL;
}
static PyObject *keyb_clearBinds(Keyboard *self, PyObject *args)
{

View file

@ -141,6 +141,7 @@ int main(int argc, char **argv)
/* XXX load all plugins!! */
plugin_open("focus");
plugin_open("keyboard");
/* get all the existing windows */
client_manage_all();

View file

@ -2,6 +2,7 @@
#define __screen_h
#include "geom.h"
#include "client.h"
struct Client;
@ -18,13 +19,13 @@ extern gboolean screen_showing_desktop;
/*! Orientation of the desktops */
typedef enum {
Orientation_Horz,
Orientation_Vert
Orientation_Horz = 0,
Orientation_Vert = 1
} Orientation;
typedef struct DesktopLayout {
guint orientation;
guint start_corner;
Orientation orientation;
Corner start_corner;
guint rows;
guint columns;
} DesktopLayout;