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path: root/util.c
blob: 3f41b3c9e846c9ed4e51f2d2a115bc12d3521638 (plain) (blame)
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/*
 * (C)opyright MMVI Anselm R. Garbe <garbeam at gmail dot com>
 * See LICENSE file for license details.
 */

#include <stdarg.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/types.h>
#include <sys/wait.h>
#include <unistd.h>

#include "util.h"

void
error(char *errstr, ...) {
	va_list ap;
	va_start(ap, errstr);
	vfprintf(stderr, errstr, ap);
	va_end(ap);
	exit(1);
}

static void
bad_malloc(unsigned int size)
{
	fprintf(stderr, "fatal: could not malloc() %d bytes\n",
			(int) size);
	exit(1);
}

void *
emallocz(unsigned int size)
{
	void *res = calloc(1, size);
	if(!res)
		bad_malloc(size);
	return res;
}

void *
emalloc(unsigned int size)
{
	void *res = malloc(size);
	if(!res)
		bad_malloc(size);
	return res;
}

void *
erealloc(void *ptr, unsigned int size)
{
	void *res = realloc(ptr, size);
	if(!res)
		bad_malloc(size);
	return res;
}

char *
estrdup(const char *str)
{
	void *res = strdup(str);
	if(!res)
		bad_malloc(strlen(str));
	return res;
}

void
failed_assert(char *a, char *file, int line)
{
	fprintf(stderr, "Assertion \"%s\" failed at %s:%d\n", a, file, line);
	abort();
}

void
swap(void **p1, void **p2)
{
	void *tmp = *p1;
	*p1 = *p2;
	*p2 = tmp;
}

void
spawn(Display *dpy, char *argv[])
{
	if(!argv || !argv[0])
		return;
	if(fork() == 0) {
		if(fork() == 0) {
			if(dpy)
				close(ConnectionNumber(dpy));
			setsid();
			execvp(argv[0], argv);
			fprintf(stderr, "gridwm: execvp %s", argv[0]);
			perror(" failed");
		}
		exit (0);
	}
	wait(0);
}

void
pipe_spawn(char *buf, unsigned int len, Display *dpy, char *argv[])
{
	unsigned int l, n;
	int pfd[2];

	if(!argv || !argv[0])
		return;

	if(pipe(pfd) == -1) {
		perror("pipe");
		exit(1);
	}

	if(fork() == 0) {
		if(dpy)
			close(ConnectionNumber(dpy));
		setsid();
		dup2(pfd[1], STDOUT_FILENO);
		close(pfd[0]);
		close(pfd[1]);
		execvp(argv[0], argv);
		fprintf(stderr, "gridwm: execvp %s", argv[0]);
		perror(" failed");
	}
	else {
		l = n = 0;
		close(pfd[1]);
		while(n < len) {
			if((l = read(pfd[0], buf + n, len - n)) < 1)
				break;
			n += l;
		}
		while(l > n);
		close(pfd[0]);
		buf[n < len ? n : len - 1] = 0;
	}
	wait(0);
}
ss="p">{ .i = Twww } }, { ControlMask|ShiftMask,XK_3, heretag, { .i = Twork } }, { Mod1Mask|ShiftMask, XK_0, replacetag, { .i = Tscratch } }, { Mod1Mask|ShiftMask, XK_1, replacetag, { .i = Tdev } }, { Mod1Mask|ShiftMask, XK_2, replacetag, { .i = Twww } }, { Mod1Mask|ShiftMask, XK_3, replacetag, { .i = Twork } }, { Mod1Mask|ShiftMask, XK_c, killclient, { 0 } }, { Mod1Mask|ShiftMask, XK_g, spawn, { .argv = gimp } }, { Mod1Mask|ShiftMask, XK_l, spawn, { .argv = xlock } }, { Mod1Mask|ShiftMask, XK_q, quit, { 0 } }, { Mod1Mask|ShiftMask, XK_space, dofloat, { 0 } }, { Mod1Mask|ShiftMask, XK_w, spawn, { .argv = browse } }, { Mod1Mask|ShiftMask, XK_Return, spawn, { .argv = term } }, }; /* static */ static void movemouse(Client *c) { XEvent ev; int x1, y1, ocx, ocy, di; unsigned int dui; Window dummy; ocx = c->x; ocy = c->y; if(XGrabPointer(dpy, root, False, MouseMask, GrabModeAsync, GrabModeAsync, None, cursor[CurMove], CurrentTime) != GrabSuccess) return; XQueryPointer(dpy, root, &dummy, &dummy, &x1, &y1, &di, &di, &dui); for(;;) { XMaskEvent(dpy, MouseMask | ExposureMask, &ev); switch (ev.type) { default: break; case Expose: handler[Expose](&ev); break; case MotionNotify: XSync(dpy, False); c->x = ocx + (ev.xmotion.x - x1); c->y = ocy + (ev.xmotion.y - y1); resize(c, False); break; case ButtonRelease: XUngrabPointer(dpy, CurrentTime); return; } } } static void resizemouse(Client *c) { XEvent ev; int ocx, ocy; ocx = c->x; ocy = c->y; if(XGrabPointer(dpy, root, False, MouseMask, GrabModeAsync, GrabModeAsync, None, cursor[CurResize], CurrentTime) != GrabSuccess) return; XWarpPointer(dpy, None, c->win, 0, 0, 0, 0, c->w, c->h); for(;;) { XMaskEvent(dpy, MouseMask | ExposureMask, &ev); switch(ev.type) { default: break; case Expose: handler[Expose](&ev); break; case MotionNotify: XSync(dpy, False); c->w = abs(ocx - ev.xmotion.x); c->h = abs(ocy - ev.xmotion.y); c->x = (ocx <= ev.xmotion.x) ? ocx : ocx - c->w; c->y = (ocy <= ev.xmotion.y) ? ocy : ocy - c->h; resize(c, True); break; case ButtonRelease: XUngrabPointer(dpy, CurrentTime); return; } } } static void buttonpress(XEvent *e) { int x; Arg a; XButtonPressedEvent *ev = &e->xbutton; Client *c; if(barwin == ev->window) { switch(ev->button) { default: x = 0; for(a.i = 0; a.i < TLast; a.i++) { x += textw(tags[a.i]); if(ev->x < x) { view(&a); break; } } break; case Button4: a.i = (tsel + 1 < TLast) ? tsel + 1 : 0; view(&a); break; case Button5: a.i = (tsel - 1 >= 0) ? tsel - 1 : TLast - 1; view(&a); break; } } else if((c = getclient(ev->window))) { if(arrange == dotile && !c->isfloat) { if((ev->state & ControlMask) && (ev->button == Button1)) zoom(NULL); return; } /* floating windows */ higher(c); switch(ev->button) { default: break; case Button1: movemouse(c); break; case Button2: lower(c); break; case Button3: resizemouse(c); break; } } } static void configurerequest(XEvent *e) { XConfigureRequestEvent *ev = &e->xconfigurerequest; XWindowChanges wc; Client *c; ev->value_mask &= ~CWSibling; if((c = getclient(ev->window))) { gravitate(c, True); if(ev->value_mask & CWX) c->x = ev->x; if(ev->value_mask & CWY) c->y = ev->y; if(ev->value_mask & CWWidth) c->w = ev->width; if(ev->value_mask & CWHeight) c->h = ev->height; if(ev->value_mask & CWBorderWidth) c->border = 1; gravitate(c, False); resize(c, True); } wc.x = ev->x; wc.y = ev->y; wc.width = ev->width; wc.height = ev->height; wc.border_width = 1; wc.sibling = None; wc.stack_mode = Above; ev->value_mask &= ~CWStackMode; ev->value_mask |= CWBorderWidth; XConfigureWindow(dpy, ev->window, ev->value_mask, &wc); XSync(dpy, False); } static void destroynotify(XEvent *e) { Client *c; XDestroyWindowEvent *ev = &e->xdestroywindow; if((c = getclient(ev->window))) unmanage(c); } static void enternotify(XEvent *e) { XCrossingEvent *ev = &e->xcrossing; Client *c; if(ev->mode != NotifyNormal || ev->detail == NotifyInferior) return; if((c = getclient(ev->window))) focus(c); else if(ev->window == root) issel = True; } static void expose(XEvent *e) { XExposeEvent *ev = &e->xexpose; Client *c; if(ev->count == 0) { if(barwin == ev->window) drawstatus(); else if((c = getctitle(ev->window))) drawtitle(c); } } static void keypress(XEvent *e) { XKeyEvent *ev = &e->xkey; static unsigned int len = key ? sizeof(key) / sizeof(key[0]) : 0; unsigned int i; KeySym keysym; keysym = XKeycodeToKeysym(dpy, (KeyCode)ev->keycode, 0); for(i = 0; i < len; i++) if((keysym == key[i].keysym) && (key[i].mod == ev->state)) { if(key[i].func) key[i].func(&key[i].arg); return; } } static void leavenotify(XEvent *e) { XCrossingEvent *ev = &e->xcrossing; if((ev->window == root) && !ev->same_screen) issel = True; } static void maprequest(XEvent *e) { XMapRequestEvent *ev = &e->xmaprequest; static XWindowAttributes wa; if(!XGetWindowAttributes(dpy, ev->window, &wa)) return; if(wa.override_redirect) { XSelectInput(dpy, ev->window, (StructureNotifyMask | PropertyChangeMask)); return; } if(!getclient(ev->window)) manage(ev->window, &wa); } static void propertynotify(XEvent *e) { XPropertyEvent *ev = &e->xproperty; Window trans; Client *c; if(ev->state == PropertyDelete) return; /* ignore */ if((c = getclient(ev->window))) { if(ev->atom == wmatom[WMProtocols]) { c->proto = getproto(c->win); return; } switch (ev->atom) { default: break; case XA_WM_TRANSIENT_FOR: XGetTransientForHint(dpy, c->win, &trans); if(!c->isfloat && (c->isfloat = (trans != 0))) arrange(NULL); break; case XA_WM_NORMAL_HINTS: setsize(c); break; } if(ev->atom == XA_WM_NAME || ev->atom == netatom[NetWMName]) { settitle(c); drawtitle(c); } } } static void unmapnotify(XEvent *e) { Client *c; XUnmapEvent *ev = &e->xunmap; if((c = getclient(ev->window))) unmanage(c); } /* extern */ void (*handler[LASTEvent]) (XEvent *) = { [ButtonPress] = buttonpress, [ConfigureRequest] = configurerequest, [DestroyNotify] = destroynotify, [EnterNotify] = enternotify, [LeaveNotify] = leavenotify, [Expose] = expose, [KeyPress] = keypress, [MapRequest] = maprequest, [PropertyNotify] = propertynotify, [UnmapNotify] = unmapnotify }; void grabkeys() { static unsigned int len = key ? sizeof(key) / sizeof(key[0]) : 0; unsigned int i; KeyCode code; for(i = 0; i < len; i++) { code = XKeysymToKeycode(dpy, key[i].keysym); XUngrabKey(dpy, code, key[i].mod, root); XGrabKey(dpy, code, key[i].mod, root, True, GrabModeAsync, GrabModeAsync); } }