Exemple #1
0
/* some useful control functions */
static int
kmi_ioctl_locked(keyboard_t *kbd, u_long cmd, caddr_t arg)
{
	struct kmi_softc *sc = kbd->kb_data;
	int i;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5) || \
    defined(COMPAT_FREEBSD4) || defined(COMPAT_43)
	int ival;

#endif

	KMI_LOCK_ASSERT();

	switch (cmd) {
	case KDGKBMODE:		/* get keyboard mode */
		*(int *)arg = sc->sc_mode;
		break;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5) || \
    defined(COMPAT_FREEBSD4) || defined(COMPAT_43)
	case _IO('K', 7):
		ival = IOCPARM_IVAL(arg);
		arg = (caddr_t)&ival;
		/* FALLTHROUGH */
#endif
	case KDSKBMODE:		/* set keyboard mode */
		switch (*(int *)arg) {
		case K_XLATE:
			if (sc->sc_mode != K_XLATE) {
				/* make lock key state and LED state match */
				sc->sc_state &= ~LOCK_MASK;
				sc->sc_state |= KBD_LED_VAL(kbd);
			}
			/* FALLTHROUGH */
		case K_RAW:
		case K_CODE:
			if (sc->sc_mode != *(int *)arg) {
				if ((sc->sc_flags & KMI_FLAG_POLLING) == 0)
					kmi_clear_state(kbd);
				sc->sc_mode = *(int *)arg;
			}
			break;
		default:
			return (EINVAL);
		}
		break;

	case KDGETLED:			/* get keyboard LED */
		*(int *)arg = KBD_LED_VAL(kbd);
		break;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5) || \
    defined(COMPAT_FREEBSD4) || defined(COMPAT_43)
	case _IO('K', 66):
		ival = IOCPARM_IVAL(arg);
		arg = (caddr_t)&ival;
		/* FALLTHROUGH */
#endif
	case KDSETLED:			/* set keyboard LED */
		/* NOTE: lock key state in "sc_state" won't be changed */
		if (*(int *)arg & ~LOCK_MASK)
			return (EINVAL);

		i = *(int *)arg;

		/* replace CAPS LED with ALTGR LED for ALTGR keyboards */
		if (sc->sc_mode == K_XLATE &&
		    kbd->kb_keymap->n_keys > ALTGR_OFFSET) {
			if (i & ALKED)
				i |= CLKED;
			else
				i &= ~CLKED;
		}
		if (KBD_HAS_DEVICE(kbd))
			kmi_set_leds(sc, i);

		KBD_LED_VAL(kbd) = *(int *)arg;
		break;
	case KDGKBSTATE:		/* get lock key state */
		*(int *)arg = sc->sc_state & LOCK_MASK;
		break;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5) || \
    defined(COMPAT_FREEBSD4) || defined(COMPAT_43)
	case _IO('K', 20):
		ival = IOCPARM_IVAL(arg);
		arg = (caddr_t)&ival;
		/* FALLTHROUGH */
#endif
	case KDSKBSTATE:		/* set lock key state */
		if (*(int *)arg & ~LOCK_MASK) {
			return (EINVAL);
		}
		sc->sc_state &= ~LOCK_MASK;
		sc->sc_state |= *(int *)arg;

		/* set LEDs and quit */
		return (kmi_ioctl(kbd, KDSETLED, arg));

	case KDSETREPEAT:		/* set keyboard repeat rate (new
					 * interface) */
		if (!KBD_HAS_DEVICE(kbd)) {
			return (0);
		}
		if (((int *)arg)[1] < 0) {
			return (EINVAL);
		}
		if (((int *)arg)[0] < 0) {
			return (EINVAL);
		}
		if (((int *)arg)[0] < 200)	/* fastest possible value */
			kbd->kb_delay1 = 200;
		else
			kbd->kb_delay1 = ((int *)arg)[0];
		kbd->kb_delay2 = ((int *)arg)[1];
		return (0);

#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5) || \
    defined(COMPAT_FREEBSD4) || defined(COMPAT_43)
	case _IO('K', 67):
		ival = IOCPARM_IVAL(arg);
		arg = (caddr_t)&ival;
		/* FALLTHROUGH */
#endif
	case KDSETRAD:			/* set keyboard repeat rate (old
					 * interface) */
		return (kmi_set_typematic(kbd, *(int *)arg));

	case PIO_KEYMAP:		/* set keyboard translation table */
	case OPIO_KEYMAP:		/* set keyboard translation table
					 * (compat) */
	case PIO_KEYMAPENT:		/* set keyboard translation table
					 * entry */
	case PIO_DEADKEYMAP:		/* set accent key translation table */
		sc->sc_accents = 0;
		/* FALLTHROUGH */
	default:
		return (genkbd_commonioctl(kbd, cmd, arg));
	}

	return (0);
}
Exemple #2
0
/* some useful control functions */
static int
ukbd_ioctl(keyboard_t *kbd, u_long cmd, caddr_t arg)
{
	/* trasnlate LED_XXX bits into the device specific bits */
	static u_char ledmap[8] = {
		0, 2, 1, 3, 4, 6, 5, 7,
	};
	ukbd_state_t *state = kbd->kb_data;
	int i;

	crit_enter();
	switch (cmd) {
	case KDGKBMODE:		/* get keyboard mode */
		*(int *)arg = state->ks_mode;
		break;
	case KDSKBMODE:		/* set keyboard mode */
		switch (*(int *)arg) {
		case K_XLATE:
			if (state->ks_mode != K_XLATE) {
				/* make lock key state and LED state match */
				state->ks_state &= ~LOCK_MASK;
				state->ks_state |= KBD_LED_VAL(kbd);
			}
			/* FALLTHROUGH */
		case K_RAW:
		case K_CODE:
			if (state->ks_mode != *(int *)arg) {
				ukbd_clear_state(kbd);
				state->ks_mode = *(int *)arg;
				kbd->kb_savemode = state->ks_mode;
			}
			break;
		default:
			crit_exit();
			return EINVAL;
		}
		break;

	case KDGETLED:		/* get keyboard LED */
		*(int *)arg = KBD_LED_VAL(kbd);
		break;
	case KDSETLED:		/* set keyboard LED */
		/* NOTE: lock key state in ks_state won't be changed */
		if (*(int *)arg & ~LOCK_MASK) {
			crit_exit();
			return EINVAL;
		}
		i = *(int *)arg;
		/* replace CAPS LED with ALTGR LED for ALTGR keyboards */
		if (state->ks_mode == K_XLATE &&
		    kbd->kb_keymap->n_keys > ALTGR_OFFSET) {
			if (i & ALKED)
				i |= CLKED;
			else
				i &= ~CLKED;
		}
		if (KBD_HAS_DEVICE(kbd)) {
			set_leds(state, ledmap[i & LED_MASK]);
			/* XXX: error check? */
		}
		KBD_LED_VAL(kbd) = *(int *)arg;
		break;

	case KDGKBSTATE:	/* get lock key state */
		*(int *)arg = state->ks_state & LOCK_MASK;
		break;
	case KDSKBSTATE:	/* set lock key state */
		if (*(int *)arg & ~LOCK_MASK) {
			crit_exit();
			return EINVAL;
		}
		state->ks_state &= ~LOCK_MASK;
		state->ks_state |= *(int *)arg;
		crit_exit();
		/* set LEDs and quit */
		return ukbd_ioctl(kbd, KDSETLED, arg);

	case KDSETREPEAT:	/* set keyboard repeat rate (new interface) */
		crit_exit();
		if (!KBD_HAS_DEVICE(kbd)) {
			return 0;
		}
		if (((int *)arg)[1] < 0) {
			return EINVAL;
		}
		if (((int *)arg)[0] < 0) {
			return EINVAL;
		}
		else if (((int *)arg)[0] == 0)	/* fastest possible value */
			kbd->kb_delay1 = 200;
		else
			kbd->kb_delay1 = ((int *)arg)[0];
		kbd->kb_delay2 = ((int *)arg)[1];
		return 0;

	case KDSETRAD:		/* set keyboard repeat rate (old interface) */
		crit_exit();
		return set_typematic(kbd, *(int *)arg);

	case PIO_KEYMAP:	/* set keyboard translation table */
	case PIO_KEYMAPENT:	/* set keyboard translation table entry */
	case PIO_DEADKEYMAP:	/* set accent key translation table */
		state->ks_accents = 0;
		/* FALLTHROUGH */
	default:
		crit_exit();
		return genkbd_commonioctl(kbd, cmd, arg);

#ifdef USB_DEBUG
	case USB_SETDEBUG:
		ukbddebug = *(int *)arg;
		break;
#endif
	}

	crit_exit();
	return 0;
}
Exemple #3
0
/* some useful control functions */
static int
pckbd_ioctl(keyboard_t *kbd, u_long cmd, caddr_t arg)
{
	pckbd_state_t *state = kbd->kb_data;
	int s;
	int i;

	s = spltty();
	switch (cmd) {

	case KDGKBMODE:		/* get keyboard mode */
		*(int *)arg = state->ks_mode;
		break;
	case KDSKBMODE:		/* set keyboard mode */
		switch (*(int *)arg) {
		case K_XLATE:
			if (state->ks_mode != K_XLATE) {
				/* make lock key state and LED state match */
				state->ks_state &= ~LOCK_MASK;
				state->ks_state |= KBD_LED_VAL(kbd);
			}
			/* FALL THROUGH */
		case K_RAW:
		case K_CODE:
			if (state->ks_mode != *(int *)arg) {
				pckbd_clear_state(kbd);
				state->ks_mode = *(int *)arg;
			}
			break;
		default:
			splx(s);
			return EINVAL;
		}
		break;

	case KDGETLED:		/* get keyboard LED */
		*(int *)arg = KBD_LED_VAL(kbd);
		break;
	case KDSETLED:		/* set keyboard LED */
		/* NOTE: lock key state in ks_state won't be changed */
		if (*(int *)arg & ~LOCK_MASK) {
			splx(s);
			return EINVAL;
		}
		i = *(int *)arg;
		/* replace CAPS LED with ALTGR LED for ALTGR keyboards */
		if (kbd->kb_keymap->n_keys > ALTGR_OFFSET) {
			if (i & ALKED)
				i |= CLKED;
			else
				i &= ~CLKED;
		}
		KBD_LED_VAL(kbd) = *(int *)arg;
		break;

	case KDGKBSTATE:	/* get lock key state */
		*(int *)arg = state->ks_state & LOCK_MASK;
		break;
	case KDSKBSTATE:	/* set lock key state */
		if (*(int *)arg & ~LOCK_MASK) {
			splx(s);
			return EINVAL;
		}
		state->ks_state &= ~LOCK_MASK;
		state->ks_state |= *(int *)arg;
		splx(s);
		/* set LEDs and quit */
		return pckbd_ioctl(kbd, KDSETLED, arg);

	case KDSETRAD:		/* set keyboard repeat rate (old interface)*/
		break;
	case KDSETREPEAT:	/* set keyboard repeat rate (new interface) */
		break;

	case PIO_KEYMAP:	/* set keyboard translation table */
	case PIO_KEYMAPENT:	/* set keyboard translation table entry */
	case PIO_DEADKEYMAP:	/* set accent key translation table */
		state->ks_accents = 0;
		/* FALL THROUGH */
	default:
		splx(s);
		return genkbd_commonioctl(kbd, cmd, arg);
	}

	splx(s);
	return 0;
}
Exemple #4
0
static u_int
sunkbd_read_char(keyboard_t *kbd, int wait)
{
	struct sunkbd_softc *sc;
	int key, release, repeated, suncode;

	sc = (struct sunkbd_softc *)kbd;

#if defined(SUNKBD_EMULATE_ATKBD)
	if (sc->sc_mode == K_RAW && sc->sc_buffered_char[0]) {
		key = sc->sc_buffered_char[0];
		if (key & SCAN_PREFIX) {
			sc->sc_buffered_char[0] = key & ~SCAN_PREFIX;
			return ((key & SCAN_PREFIX_E0) ? 0xe0 : 0xe1);
		} else {
			sc->sc_buffered_char[0] = sc->sc_buffered_char[1];
			sc->sc_buffered_char[1] = 0;
			return (key);
		}
	}
#endif

	repeated = 0;
	if (sc->sc_repeating) {
		repeated = 1;
		sc->sc_repeating = 0;
		callout_reset(&sc->sc_repeat_callout, hz / 10,
		    sunkbd_repeat, sc);
		suncode = sc->sc_repeat_key;
		goto process_code;
	}

	for (;;) {
 next_code:
		if (!(sc->sc_flags & KPCOMPOSE) && (sc->sc_composed_char > 0)) {
			key = sc->sc_composed_char;
			sc->sc_composed_char = 0;
			if (key > UCHAR_MAX)
				return (ERRKEY);
			return (key);
		}

		if (sc->sc_uart != NULL && !uart_rx_empty(sc->sc_uart)) {
			suncode = uart_rx_get(sc->sc_uart);
		} else if (sc->sc_polling != 0 && sc->sc_sysdev != NULL) {
			if (wait)
				suncode = uart_getc(sc->sc_sysdev);
			else if ((suncode = uart_poll(sc->sc_sysdev)) == -1)
				return (NOKEY);
		} else {
			return (NOKEY);
		}

		switch (suncode) {
		case SKBD_RSP_IDLE:
			break;
		default:
 process_code:
			++kbd->kb_count;
			key = SKBD_KEY_CHAR(suncode);
			release = suncode & SKBD_KEY_RELEASE;
			if (!repeated) {
				if (release == 0) {
					callout_reset(&sc->sc_repeat_callout,
					    hz / 2, sunkbd_repeat, sc);
					sc->sc_repeat_key = suncode;
				} else if (sc->sc_repeat_key == key) {
					callout_stop(&sc->sc_repeat_callout);
					sc->sc_repeat_key = -1;
				}
			}

#if defined(SUNKBD_EMULATE_ATKBD)
			key = sunkbd_trtab[key];
			if (key == NOTR)
				return (NOKEY);

			if (!repeated) {
				switch (key) {
				case 0x1d:	/* ctrl */
					if (release != 0)
						sc->sc_flags &= ~CTLS;
					else
						sc->sc_flags |= CTLS;
					break;
				case 0x2a:	/* left shift */
				case 0x36:	/* right shift */
					if (release != 0)
						sc->sc_flags &= ~SHIFTS;
					else
						sc->sc_flags |= SHIFTS;
					break;
				case 0x38:	/* alt */
				case 0x5d:	/* altgr */
					if (release != 0)
						sc->sc_flags &= ~ALTS;
					else
						sc->sc_flags |= ALTS;
					break;
				}
			}
			if (sc->sc_mode == K_RAW) {
				key = keycode2scancode(key, sc->sc_flags,
				    release);
				if (key & SCAN_PREFIX) {
					if (key & SCAN_PREFIX_CTL) {
						sc->sc_buffered_char[0] =
						    0x1d | (key & SCAN_RELEASE);
						sc->sc_buffered_char[1] =
						    key & ~SCAN_PREFIX;
					} else if (key & SCAN_PREFIX_SHIFT) {
						sc->sc_buffered_char[0] =
						    0x2a | (key & SCAN_RELEASE);
						sc->sc_buffered_char[1] =
						    key & ~SCAN_PREFIX_SHIFT;
					} else {
						sc->sc_buffered_char[0] =
						    key & ~SCAN_PREFIX;
						sc->sc_buffered_char[1] = 0;
					}
					return ((key & SCAN_PREFIX_E0) ?
					    0xe0 : 0xe1);
				}
				return (key);
			}
			switch (key) {
			case 0x5c:	/* print screen */
				if (sc->sc_flags & ALTS)
					key = 0x54;	/* sysrq */
				break;
			case 0x68:	/* pause/break */
				if (sc->sc_flags & CTLS)
					key = 0x6c;	/* break */
				break;
			}

			if (sc->sc_mode == K_CODE)
				return (key | release);
#else
			if (sc->sc_mode == K_RAW || sc->sc_mode == K_CODE)
				return (suncode);
#endif

#if defined(SUNKBD_EMULATE_ATKBD)
			if (key == 0x38) {	/* left alt (KP compose key) */
#else
			if (key == 0x13) {	/* left alt (KP compose key) */
#endif
				if (release != 0) {
					if (sc->sc_flags & KPCOMPOSE) {
						sc->sc_flags &= ~KPCOMPOSE;
						if (sc->sc_composed_char >
						    UCHAR_MAX)
							sc->sc_composed_char =
							    0;
					}
				} else {
					if (!(sc->sc_flags & KPCOMPOSE)) {
						sc->sc_flags |= KPCOMPOSE;
						sc->sc_composed_char = 0;
					}
				}
			}
			if (sc->sc_flags & KPCOMPOSE) {
				switch (suncode) {
				case 0x44:			/* KP 7 */
				case 0x45:			/* KP 8 */
				case 0x46:			/* KP 9 */
					sc->sc_composed_char *= 10;
					sc->sc_composed_char += suncode - 0x3d;
					if (sc->sc_composed_char > UCHAR_MAX)
						return (ERRKEY);
					goto next_code;
				case 0x5b:			/* KP 4 */
				case 0x5c:			/* KP 5 */
				case 0x5d:			/* KP 6 */
					sc->sc_composed_char *= 10;
					sc->sc_composed_char += suncode - 0x58;
					if (sc->sc_composed_char > UCHAR_MAX)
						return (ERRKEY);
					goto next_code;
				case 0x70:			/* KP 1 */
				case 0x71:			/* KP 2 */
				case 0x72:			/* KP 3 */
					sc->sc_composed_char *= 10;
					sc->sc_composed_char += suncode - 0x6f;
					if (sc->sc_composed_char > UCHAR_MAX)
						return (ERRKEY);
					goto next_code;
				case 0x5e:			/* KP 0 */
					sc->sc_composed_char *= 10;
					if (sc->sc_composed_char > UCHAR_MAX)
						return (ERRKEY);
					goto next_code;

				case 0x44 | SKBD_KEY_RELEASE:	/* KP 7 */
				case 0x45 | SKBD_KEY_RELEASE:	/* KP 8 */
				case 0x46 | SKBD_KEY_RELEASE:	/* KP 9 */
				case 0x5b | SKBD_KEY_RELEASE:	/* KP 4 */
				case 0x5c | SKBD_KEY_RELEASE:	/* KP 5 */
				case 0x5d | SKBD_KEY_RELEASE:	/* KP 6 */
				case 0x70 | SKBD_KEY_RELEASE:	/* KP 1 */
				case 0x71 | SKBD_KEY_RELEASE:	/* KP 2 */
				case 0x72 | SKBD_KEY_RELEASE:	/* KP 3 */
				case 0x5e | SKBD_KEY_RELEASE:	/* KP 0 */
					goto next_code;
				default:
					if (sc->sc_composed_char > 0) {
						sc->sc_flags &= ~KPCOMPOSE;
						sc->sc_composed_char = 0;
						return (ERRKEY);
					}
				}
			}

			key = genkbd_keyaction(kbd, key, release,
			    &sc->sc_state, &sc->sc_accents);
			if (key != NOKEY || repeated)
				return (key);
		}
	}
	return (0);
}

static int
sunkbd_check_char(keyboard_t *kbd)
{
	struct sunkbd_softc *sc;

	if (!KBD_IS_ACTIVE(kbd))
		return (FALSE);

	sc = (struct sunkbd_softc *)kbd;
	if (!(sc->sc_flags & KPCOMPOSE) && (sc->sc_composed_char > 0))
		return (TRUE);

	return (sunkbd_check(kbd));
}

static int
sunkbd_ioctl(keyboard_t *kbd, u_long cmd, caddr_t data)
{
	struct sunkbd_softc *sc;
	int c, error;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5)
	int ival;
#endif

	sc = (struct sunkbd_softc *)kbd;
	error = 0;
	switch (cmd) {
	case KDGKBMODE:
		*(int *)data = sc->sc_mode;
		break;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5)
	case _IO('K', 7):
		ival = IOCPARM_IVAL(data);
		data = (caddr_t)&ival;
		/* FALLTHROUGH */
#endif
	case KDSKBMODE:
		switch (*(int *)data) {
		case K_XLATE:
			if (sc->sc_mode != K_XLATE) {
				/* make lock key state and LED state match */
				sc->sc_state &= ~LOCK_MASK;
				sc->sc_state |= KBD_LED_VAL(kbd);
			}
			/* FALLTHROUGH */
		case K_RAW:
		case K_CODE:
			if (sc->sc_mode != *(int *)data) {
				sunkbd_clear_state(kbd);
				sc->sc_mode = *(int *)data;
			}
			break;
		default:
			error = EINVAL;
			break;
		}
		break;
	case KDGETLED:
		*(int *)data = KBD_LED_VAL(kbd);
		break;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5)
	case _IO('K', 66):
		ival = IOCPARM_IVAL(data);
		data = (caddr_t)&ival;
		/* FALLTHROUGH */
#endif
	case KDSETLED:
		if (*(int *)data & ~LOCK_MASK) {
			error = EINVAL;
			break;
		}
		if (sc->sc_sysdev == NULL)
			break;
		c = 0;
		if (*(int *)data & CLKED)
			c |= SKBD_LED_CAPSLOCK;
		if (*(int *)data & NLKED)
			c |= SKBD_LED_NUMLOCK;
		if (*(int *)data & SLKED)
			c |= SKBD_LED_SCROLLLOCK;
		uart_lock(sc->sc_sysdev->hwmtx);
		sc->sc_sysdev->ops->putc(&sc->sc_sysdev->bas, SKBD_CMD_SETLED);
		sc->sc_sysdev->ops->putc(&sc->sc_sysdev->bas, c);
		uart_unlock(sc->sc_sysdev->hwmtx);
		KBD_LED_VAL(kbd) = *(int *)data;
		break;
	case KDGKBSTATE:
		*(int *)data = sc->sc_state & LOCK_MASK;
		break;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5)
	case _IO('K', 20):
		ival = IOCPARM_IVAL(data);
		data = (caddr_t)&ival;
		/* FALLTHROUGH */
#endif
	case KDSKBSTATE:
		if (*(int *)data & ~LOCK_MASK) {
			error = EINVAL;
			break;
		}
		sc->sc_state &= ~LOCK_MASK;
		sc->sc_state |= *(int *)data;
		/* set LEDs and quit */
		return (sunkbd_ioctl(kbd, KDSETLED, data));
	case KDSETREPEAT:
	case KDSETRAD:
		break;
	case PIO_KEYMAP:
	case OPIO_KEYMAP:
	case PIO_KEYMAPENT:
	case PIO_DEADKEYMAP:
	default:
		return (genkbd_commonioctl(kbd, cmd, data));
	}
	return (error);
}

static int
sunkbd_lock(keyboard_t *kbd, int lock)
{

	TODO;
	return (0);
}
Exemple #5
0
static int
sunkbd_ioctl(keyboard_t *kbd, u_long cmd, caddr_t data)
{
	struct sunkbd_softc *sc;
	int error;

	sc = (struct sunkbd_softc *)kbd;
	error = 0;
	switch (cmd) {
	case KDGKBMODE:
		*(int *)data = sc->sc_mode;
		break;
	case KDSKBMODE:
		switch (*(int *)data) {
		case K_XLATE:
			if (sc->sc_mode != K_XLATE) {
				/* make lock key state and LED state match */
				sc->sc_state &= ~LOCK_MASK;
				sc->sc_state |= KBD_LED_VAL(kbd);
			}
			/* FALLTHROUGH */
		case K_RAW:
		case K_CODE:
			if (sc->sc_mode != *(int *)data) {
				sunkbd_clear_state(kbd);
				sc->sc_mode = *(int *)data;
			}
			break;
		default:
			error = EINVAL;
			break;
		}
		break;
	case KDGETLED:
		*(int *)data = KBD_LED_VAL(kbd);
		break;
	case KDSETLED:
		if (*(int *)data & ~LOCK_MASK) {
			error = EINVAL;
			break;
		}
		if (sc->sc_uart == NULL)
			break;
		sc->sc_uart->sc_txdatasz = 2;
		sc->sc_uart->sc_txbuf[0] = SKBD_CMD_SETLED;
		sc->sc_uart->sc_txbuf[1] = 0;
		if (*(int *)data & CLKED)
			sc->sc_uart->sc_txbuf[1] |= SKBD_LED_CAPSLOCK;
		if (*(int *)data & NLKED)
			sc->sc_uart->sc_txbuf[1] |= SKBD_LED_NUMLOCK;
		if (*(int *)data & SLKED)
			sc->sc_uart->sc_txbuf[1] |= SKBD_LED_SCROLLLOCK;
		UART_TRANSMIT(sc->sc_uart);
		KBD_LED_VAL(kbd) = *(int *)data;
		break;
	case KDGKBSTATE:
		*(int *)data = sc->sc_state & LOCK_MASK;
		break;
	case KDSKBSTATE:
		if (*(int *)data & ~LOCK_MASK) {
			error = EINVAL;
			break;
		}
		sc->sc_state &= ~LOCK_MASK;
		sc->sc_state |= *(int *)data;
		break;
	case KDSETREPEAT:
	case KDSETRAD:
		break;
	case PIO_KEYMAP:
	case PIO_KEYMAPENT:
	case PIO_DEADKEYMAP:
	default:
		return (genkbd_commonioctl(kbd, cmd, data));
	}
	return (error);
}
Exemple #6
0
/* some useful control functions */
static int
atkbd_ioctl(keyboard_t *kbd, u_long cmd, caddr_t arg)
{
    /* translate LED_XXX bits into the device specific bits */
    static u_char ledmap[8] = {
        0, 4, 2, 6, 1, 5, 3, 7,
    };
    atkbd_state_t *state = kbd->kb_data;
    int error;
    int s;
    int i;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5) || \
    defined(COMPAT_FREEBSD4) || defined(COMPAT_43)
    int ival;
#endif

    s = spltty();
    switch (cmd) {

    case KDGKBMODE:		/* get keyboard mode */
        *(int *)arg = state->ks_mode;
        break;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5) || \
    defined(COMPAT_FREEBSD4) || defined(COMPAT_43)
    case _IO('K', 7):
        ival = IOCPARM_IVAL(arg);
        arg = (caddr_t)&ival;
        /* FALLTHROUGH */
#endif
    case KDSKBMODE:		/* set keyboard mode */
        switch (*(int *)arg) {
        case K_XLATE:
            if (state->ks_mode != K_XLATE) {
                /* make lock key state and LED state match */
                state->ks_state &= ~LOCK_MASK;
                state->ks_state |= KBD_LED_VAL(kbd);
            }
        /* FALLTHROUGH */
        case K_RAW:
        case K_CODE:
            if (state->ks_mode != *(int *)arg) {
                atkbd_clear_state(kbd);
                state->ks_mode = *(int *)arg;
            }
            break;
        default:
            splx(s);
            return EINVAL;
        }
        break;

    case KDGETLED:		/* get keyboard LED */
        *(int *)arg = KBD_LED_VAL(kbd);
        break;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5) || \
    defined(COMPAT_FREEBSD4) || defined(COMPAT_43)
    case _IO('K', 66):
        ival = IOCPARM_IVAL(arg);
        arg = (caddr_t)&ival;
        /* FALLTHROUGH */
#endif
    case KDSETLED:		/* set keyboard LED */
        /* NOTE: lock key state in ks_state won't be changed */
        if (*(int *)arg & ~LOCK_MASK) {
            splx(s);
            return EINVAL;
        }
        i = *(int *)arg;
        /* replace CAPS LED with ALTGR LED for ALTGR keyboards */
        if (state->ks_mode == K_XLATE &&
                kbd->kb_keymap->n_keys > ALTGR_OFFSET) {
            if (i & ALKED)
                i |= CLKED;
            else
                i &= ~CLKED;
        }
        if (KBD_HAS_DEVICE(kbd)) {
            error = write_kbd(state->kbdc, KBDC_SET_LEDS,
                              ledmap[i & LED_MASK]);
            if (error) {
                splx(s);
                return error;
            }
        }
        KBD_LED_VAL(kbd) = *(int *)arg;
        break;

    case KDGKBSTATE:	/* get lock key state */
        *(int *)arg = state->ks_state & LOCK_MASK;
        break;
#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5) || \
    defined(COMPAT_FREEBSD4) || defined(COMPAT_43)
    case _IO('K', 20):
        ival = IOCPARM_IVAL(arg);
        arg = (caddr_t)&ival;
        /* FALLTHROUGH */
#endif
    case KDSKBSTATE:	/* set lock key state */
        if (*(int *)arg & ~LOCK_MASK) {
            splx(s);
            return EINVAL;
        }
        state->ks_state &= ~LOCK_MASK;
        state->ks_state |= *(int *)arg;
        splx(s);
        /* set LEDs and quit */
        return atkbd_ioctl(kbd, KDSETLED, arg);

    case KDSETREPEAT:	/* set keyboard repeat rate (new interface) */
        splx(s);
        if (!KBD_HAS_DEVICE(kbd))
            return 0;
        i = typematic(((int *)arg)[0], ((int *)arg)[1]);
        error = write_kbd(state->kbdc, KBDC_SET_TYPEMATIC, i);
        if (error == 0) {
            kbd->kb_delay1 = typematic_delay(i);
            kbd->kb_delay2 = typematic_rate(i);
        }
        return error;

#if defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD5) || \
    defined(COMPAT_FREEBSD4) || defined(COMPAT_43)
    case _IO('K', 67):
        ival = IOCPARM_IVAL(arg);
        arg = (caddr_t)&ival;
        /* FALLTHROUGH */
#endif
    case KDSETRAD:		/* set keyboard repeat rate (old interface) */
        splx(s);
        if (!KBD_HAS_DEVICE(kbd))
            return 0;
        error = write_kbd(state->kbdc, KBDC_SET_TYPEMATIC, *(int *)arg);
        if (error == 0) {
            kbd->kb_delay1 = typematic_delay(*(int *)arg);
            kbd->kb_delay2 = typematic_rate(*(int *)arg);
        }
        return error;

    case PIO_KEYMAP:	/* set keyboard translation table */
    case PIO_KEYMAPENT:	/* set keyboard translation table entry */
    case PIO_DEADKEYMAP:	/* set accent key translation table */
        state->ks_accents = 0;
    /* FALLTHROUGH */
    default:
        splx(s);
        return genkbd_commonioctl(kbd, cmd, arg);
    }

    splx(s);
    return 0;
}
Exemple #7
0
static int akbd_ioctl(keyboard_t *kbd, u_long cmd, caddr_t data)
{
	struct adb_kbd_softc *sc;
	uint16_t r2;
	int error;

	sc = (struct adb_kbd_softc *)(kbd);
	error = 0;

	switch (cmd) {
	case KDGKBMODE:
		*(int *)data = sc->sc_mode;
		break;
	case KDSKBMODE:
		switch (*(int *)data) {
		case K_XLATE:
			if (sc->sc_mode != K_XLATE) {
				/* make lock key state and LED state match */
				sc->sc_state &= ~LOCK_MASK;
				sc->sc_state |= KBD_LED_VAL(kbd);
			}
			/* FALLTHROUGH */
		case K_RAW:
		case K_CODE:
			if (sc->sc_mode != *(int *)data) 
				sc->sc_mode = *(int *)data;
			break;
		default:
			error = EINVAL;
			break;
		}

		break;

	case KDGETLED:
		*(int *)data = KBD_LED_VAL(kbd);
		break;

	case KDSKBSTATE:
		if (*(int *)data & ~LOCK_MASK) {
			error = EINVAL;
			break;
		}
		sc->sc_state &= ~LOCK_MASK;
		sc->sc_state |= *(int *)data;

		/* FALLTHROUGH */

	case KDSETLED:
		KBD_LED_VAL(kbd) = *(int *)data;
	
		if (!sc->have_led_control)
			break;

		r2 = (~0 & 0x04) | 3;

		if (*(int *)data & NLKED)
			r2 &= ~1;
		if (*(int *)data & CLKED)
			r2 &= ~2;
		if (*(int *)data & SLKED)
			r2 &= ~4;

		adb_send_packet(sc->sc_dev,ADB_COMMAND_LISTEN,2,
			sizeof(uint16_t),(u_char *)&r2);
		
		break;

	case KDGKBSTATE:
		*(int *)data = sc->sc_state & LOCK_MASK;
		break;

	case KDSETREPEAT:
		if (!KBD_HAS_DEVICE(kbd))
			return 0;
		if (((int *)data)[1] < 0)
			return EINVAL;
		if (((int *)data)[0] < 0)
			return EINVAL;
		else if (((int *)data)[0] == 0)  /* fastest possible value */
			kbd->kb_delay1 = 200;
		else
			kbd->kb_delay1 = ((int *)data)[0];
		kbd->kb_delay2 = ((int *)data)[1];

		break;

	case KDSETRAD:
		error = set_typematic(kbd, *(int *)data);
		break;

	case PIO_KEYMAP:
	case OPIO_KEYMAP:
	case PIO_KEYMAPENT:
	case PIO_DEADKEYMAP:
	default:
		return (genkbd_commonioctl(kbd, cmd, data));
	}

	return (error);
}