updatetitle(c);
for(t = clients; t && t->win != trans; t = t->next);
settags(c, t);
- if(!c->swimming)
- c->swimming = (t != NULL) || c->isfixed;
+ if(!c->versatile)
+ c->versatile = (t != NULL) || c->isfixed;
attach(c);
attachstack(c);
c->isbanned = True;
Client *
nexttiled(Client *c) {
- for(; c && (c->swimming || !isvisible(c)); c = c->next);
+ for(; c && (c->versatile || !isvisible(c)); c = c->next);
return c;
}
if(!sel)
return;
- if(sel->swimming || (lt->arrange == swim)) {
+ if(sel->versatile || (lt->arrange == versatile)) {
togglemax(sel);
return;
}
static Layout layout[] = { \
/* symbol function */ \
{ "[]=", tile }, /* first entry is default */ \
- { "><>", swim }, \
+ { "><>", versatile }, \
};
#define BORDERPX 1
{ MODKEY|ControlMask|ShiftMask, XK_9, toggletag, { .i = 8 } }, \
{ MODKEY|ShiftMask, XK_c, killclient, { 0 } }, \
{ MODKEY, XK_space, togglelayout, { 0 } }, \
- { MODKEY|ShiftMask, XK_space, toggleswimming, { 0 } }, \
+ { MODKEY|ShiftMask, XK_space, toggleversatile,{ 0 } }, \
{ MODKEY, XK_0, view, { .i = -1 } }, \
{ MODKEY, XK_1, view, { .i = 0 } }, \
{ MODKEY, XK_2, view, { .i = 1 } }, \
#define RULES \
static Rule rule[] = { \
- /* class:instance:title regex tags regex swimming */ \
+ /* class:instance:title regex tags regex versatile */ \
{ "Firefox", "3", False }, \
{ "Gimp", NULL, True }, \
{ "MPlayer", NULL, True }, \
Layout layout[] = { \
/* symbol function */ \
{ "[]=", tile }, /* first entry is default */ \
- { "><>", swim }, \
+ { "><>", versatile }, \
};
#define BORDERPX 1
{ MODKEY|ControlMask|ShiftMask, XK_9, toggletag, { .i = 8 } }, \
{ MODKEY|ShiftMask, XK_c, killclient, { 0 } }, \
{ MODKEY, XK_space, togglelayout, { 0 } }, \
- { MODKEY|ShiftMask, XK_space, toggleswimming, { 0 } }, \
+ { MODKEY|ShiftMask, XK_space, toggleversatile { 0 } }, \
{ MODKEY, XK_0, view, { .i = -1 } }, \
{ MODKEY, XK_1, view, { .i = 0 } }, \
{ MODKEY, XK_2, view, { .i = 1 } }, \
* xprop | awk -F '"' '/^WM_CLASS/ { printf("%s:%s:",$4,$2) }; /^WM_NAME/ { printf("%s\n",$2) }' */
#define RULES \
static Rule rule[] = { \
- /* class:instance:title regex tags regex swimming */ \
+ /* class:instance:title regex tags regex versatile */ \
{ "Gimp", NULL, True }, \
{ "MPlayer", NULL, True }, \
{ "Acroread", NULL, True }, \
.RB [ \-v ]
.SH DESCRIPTION
dwm is a dynamic window manager for X. It manages windows in tiling and
-swimming layouts. Either layout can be applied dynamically, optimizing the
+versatile layouts. Either layout can be applied dynamically, optimizing the
environment for the application in use and the task performed.
.P
In tiling layout windows are managed in a master and stacking area. The master
area contains the windows which currently need most attention, whereas the
-stacking area contains all other windows. In swimming layout windows can be
-resized and moved freely. Dialog windows are always managed swimming,
+stacking area contains all other windows. In versatile layout windows can be
+resized and moved freely. Dialog windows are always managed versatile,
regardless of the layout applied.
.P
Windows are grouped by tags. Each window can be tagged with one or multiple
.TP
.B Button1
click on a tag label to display all windows with that tag, click on the layout
-label toggles between tiling and swimming layout.
+label toggles between tiling and versatile layout.
.TP
.B Button3
click on a tag label adds/removes all windows with that tag to/from the view.
Focus previous window.
.TP
.B Mod1-Return
-Zooms/cycles current window to/from master area (tiling layout), toggles maximization of current window (swimming layout).
+Zooms/cycles current window to/from master area (tiling layout), toggles maximization of current window (versatile layout).
.TP
.B Mod1-g
Grow master area (tiling layout only).
Close focused window.
.TP
.B Mod1-space
-Toggle between tiling and swimming layout (affects all windows).
+Toggle between tiling and versatile layout (affects all windows).
.TP
.B Mod1-Shift-space
-Toggle focused window between swimming and non-swimming state (tiling layout only).
+Toggle focused window between versatile and non-versatile state (tiling layout only).
.TP
.B Mod1-[1..n]
View all windows with
.SS Mouse commands
.TP
.B Mod1-Button1
-Move current window while dragging (swimming layout only).
+Move current window while dragging (versatile layout only).
.TP
.B Mod1-Button2
-Zooms/cycles current window to/from master area (tiling layout), toggles maximization of current window (swimming layout).
+Zooms/cycles current window to/from master area (tiling layout), toggles maximization of current window (versatile layout).
.TP
.B Mod1-Button3
-Resize current window while dragging (swimming layout only).
+Resize current window while dragging (versatile layout only).
.SH CUSTOMIZATION
dwm is customized by creating a custom config.h and (re)compiling the source
code. This keeps it fast, secure and simple.
int minax, minay, maxax, maxay;
long flags;
unsigned int border;
- Bool isbanned, isfixed, ismax, swimming;
+ Bool isbanned, isfixed, ismax, versatile;
Bool *tags;
Client *next;
Client *prev;
extern void resizemaster(Arg *arg); /* resizes the master percent with arg's index value */
extern void restack(void); /* restores z layers of all clients */
extern void settags(Client *c, Client *trans); /* sets tags of c */
-extern void swim(void); /* arranges all windows swimming */
extern void tag(Arg *arg); /* tags c with arg's index */
-extern void toggleswimming(Arg *arg); /* toggles focusesd client between swimming/and non-swimming state */
+extern void toggleversatile(Arg *arg); /* toggles focusesd client between versatile/and non-versatile state */
extern void togglelayout(Arg *arg); /* toggles layout */
extern void toggletag(Arg *arg); /* toggles c tags with arg's index */
extern void toggleview(Arg *arg); /* toggles the tag with arg's index (in)visible */
+extern void versatile(void); /* arranges all windows versatile */
extern void view(Arg *arg); /* views the tag with arg's index */
/* util.c */
focus(c);
if(CLEANMASK(ev->state) != MODKEY)
return;
- if(ev->button == Button1 && (lt->arrange == swim || c->swimming)) {
+ if(ev->button == Button1 && (lt->arrange == versatile || c->versatile)) {
restack();
movemouse(c);
}
else if(ev->button == Button2)
zoom(NULL);
else if(ev->button == Button3
- && (lt->arrange == swim || c->swimming) && !c->isfixed)
+ && (lt->arrange == versatile || c->versatile) && !c->isfixed)
{
restack();
resizemouse(c);
c->ismax = False;
if(ev->value_mask & CWBorderWidth)
c->border = ev->border_width;
- if(c->isfixed || c->swimming || (lt->arrange == swim)) {
+ if(c->isfixed || c->versatile || (lt->arrange == versatile)) {
if(ev->value_mask & CWX)
c->x = ev->x;
if(ev->value_mask & CWY)
default: break;
case XA_WM_TRANSIENT_FOR:
XGetTransientForHint(dpy, c->win, &trans);
- if(!c->swimming && (c->swimming = (getclient(trans) != NULL)))
+ if(!c->versatile && (c->versatile = (getclient(trans) != NULL)))
lt->arrange();
break;
case XA_WM_NORMAL_HINTS:
typedef struct {
const char *prop;
const char *tags;
- Bool swimming;
+ Bool versatile;
} Rule;
typedef struct {
if(c->isbanned)
XMoveWindow(dpy, c->win, c->x, c->y);
c->isbanned = False;
- if(c->swimming)
+ if(c->versatile)
continue;
c->ismax = False;
nx = wax;
drawstatus();
if(!sel)
return;
- if(sel->swimming || lt->arrange == swim)
+ if(sel->versatile || lt->arrange == versatile)
XRaiseWindow(dpy, sel->win);
- if(lt->arrange != swim) {
- if(!sel->swimming)
+ if(lt->arrange != versatile) {
+ if(!sel->versatile)
XLowerWindow(dpy, sel->win);
for(c = nexttiled(clients); c; c = nexttiled(c->next)) {
if(c == sel)
ch.res_name ? ch.res_name : "", c->name);
for(i = 0; i < nrules; i++)
if(regs[i].propregex && !regexec(regs[i].propregex, prop, 1, &tmp, 0)) {
- c->swimming = rule[i].swimming;
+ c->versatile = rule[i].versatile;
for(j = 0; regs[i].tagregex && j < ntags; j++) {
if(!regexec(regs[i].tagregex, tags[j], 1, &tmp, 0)) {
matched = True;
c->tags[i] = seltag[i];
}
-void
-swim(void) {
- Client *c;
-
- for(c = clients; c; c = c->next) {
- if(isvisible(c)) {
- if(c->isbanned)
- XMoveWindow(dpy, c->win, c->x, c->y);
- c->isbanned = False;
- resize(c, c->x, c->y, c->w, c->h, True);
- }
- else {
- c->isbanned = True;
- XMoveWindow(dpy, c->win, c->x + 2 * sw, c->y);
- }
- }
- if(!sel || !isvisible(sel)) {
- for(c = stack; c && !isvisible(c); c = c->snext);
- focus(c);
- }
- restack();
-}
-
void
tag(Arg *arg) {
unsigned int i;
lt->arrange();
}
-void
-toggleswimming(Arg *arg) {
- if(!sel || lt->arrange == swim)
- return;
- sel->swimming = !sel->swimming;
- lt->arrange();
-}
-
void
toggletag(Arg *arg) {
unsigned int i;
drawstatus();
}
+void
+toggleversatile(Arg *arg) {
+ if(!sel || lt->arrange == versatile)
+ return;
+ sel->versatile = !sel->versatile;
+ lt->arrange();
+}
+
void
toggleview(Arg *arg) {
unsigned int i;
lt->arrange();
}
+void
+versatile(void) {
+ Client *c;
+
+ for(c = clients; c; c = c->next) {
+ if(isvisible(c)) {
+ if(c->isbanned)
+ XMoveWindow(dpy, c->win, c->x, c->y);
+ c->isbanned = False;
+ resize(c, c->x, c->y, c->w, c->h, True);
+ }
+ else {
+ c->isbanned = True;
+ XMoveWindow(dpy, c->win, c->x + 2 * sw, c->y);
+ }
+ }
+ if(!sel || !isvisible(sel)) {
+ for(c = stack; c && !isvisible(c); c = c->snext);
+ focus(c);
+ }
+ restack();
+}
+
void
view(Arg *arg) {
unsigned int i;