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tctrl.c revision 1.12.4.1
      1  1.12.4.1  thorpej /*	$NetBSD: tctrl.c,v 1.12.4.1 2001/08/25 06:15:52 thorpej Exp $	*/
      2       1.1     matt 
      3       1.1     matt /*-
      4       1.1     matt  * Copyright (c) 1998 The NetBSD Foundation, Inc.
      5       1.1     matt  * All rights reserved.
      6       1.1     matt  *
      7       1.1     matt  * This code is derived from software contributed to The NetBSD Foundation
      8       1.1     matt  * by Matt Thomas.
      9       1.1     matt  *
     10       1.1     matt  * Redistribution and use in source and binary forms, with or without
     11       1.1     matt  * modification, are permitted provided that the following conditions
     12       1.1     matt  * are met:
     13       1.1     matt  * 1. Redistributions of source code must retain the above copyright
     14       1.1     matt  *    notice, this list of conditions and the following disclaimer.
     15       1.1     matt  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.1     matt  *    notice, this list of conditions and the following disclaimer in the
     17       1.1     matt  *    documentation and/or other materials provided with the distribution.
     18       1.1     matt  * 3. All advertising materials mentioning features or use of this software
     19       1.1     matt  *    must display the following acknowledgement:
     20       1.1     matt  *        This product includes software developed by the NetBSD
     21       1.1     matt  *        Foundation, Inc. and its contributors.
     22       1.1     matt  * 4. Neither the name of The NetBSD Foundation nor the names of its
     23       1.1     matt  *    contributors may be used to endorse or promote products derived
     24       1.1     matt  *    from this software without specific prior written permission.
     25       1.1     matt  *
     26       1.1     matt  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     27       1.1     matt  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     28       1.1     matt  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     29       1.1     matt  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     30       1.1     matt  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     31       1.1     matt  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     32       1.1     matt  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     33       1.1     matt  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     34       1.1     matt  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     35       1.1     matt  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     36       1.1     matt  * POSSIBILITY OF SUCH DAMAGE.
     37       1.1     matt  */
     38       1.1     matt 
     39       1.1     matt #include <sys/param.h>
     40       1.1     matt #include <sys/systm.h>
     41       1.8  thorpej #include <sys/callout.h>
     42       1.1     matt #include <sys/ioctl.h>
     43       1.1     matt #include <sys/select.h>
     44       1.1     matt #include <sys/tty.h>
     45       1.1     matt #include <sys/proc.h>
     46       1.1     matt #include <sys/user.h>
     47       1.1     matt #include <sys/conf.h>
     48       1.1     matt #include <sys/file.h>
     49       1.1     matt #include <sys/uio.h>
     50       1.1     matt #include <sys/kernel.h>
     51       1.1     matt #include <sys/syslog.h>
     52       1.1     matt #include <sys/types.h>
     53       1.1     matt #include <sys/device.h>
     54       1.4  garbled #include <sys/envsys.h>
     55       1.4  garbled #include <sys/poll.h>
     56       1.1     matt 
     57       1.4  garbled #include <machine/apmvar.h>
     58       1.1     matt #include <machine/autoconf.h>
     59       1.1     matt #include <machine/bus.h>
     60      1.11       pk #include <machine/intr.h>
     61       1.4  garbled #include <machine/tctrl.h>
     62       1.1     matt 
     63       1.1     matt #include <sparc/dev/ts102reg.h>
     64       1.1     matt #include <sparc/dev/tctrlvar.h>
     65       1.7      jdc #include <sparc/sparc/auxiotwo.h>
     66       1.1     matt 
     67       1.4  garbled cdev_decl(tctrl);
     68       1.4  garbled 
     69       1.4  garbled extern struct cfdriver tctrl_cd;
     70       1.4  garbled 
     71       1.1     matt static const char *tctrl_ext_statuses[16] = {
     72       1.1     matt 	"main power available",
     73       1.1     matt 	"internal battery attached",
     74       1.1     matt 	"external battery attached",
     75       1.1     matt 	"external VGA attached",
     76       1.1     matt 	"external keyboard attached",
     77       1.1     matt 	"external mouse attached",
     78       1.1     matt 	"lid down",
     79       1.1     matt 	"internal battery charging",
     80       1.1     matt 	"external battery charging",
     81       1.1     matt 	"internal battery discharging",
     82       1.1     matt 	"external battery discharging",
     83       1.1     matt };
     84       1.1     matt 
     85       1.1     matt struct tctrl_softc {
     86       1.4  garbled 	struct	device sc_dev;
     87       1.4  garbled 	bus_space_tag_t	sc_memt;
     88       1.4  garbled 	bus_space_handle_t	sc_memh;
     89       1.4  garbled 	unsigned int	sc_junk;
     90       1.4  garbled 	unsigned int	sc_ext_status;
     91       1.4  garbled 	unsigned int	sc_flags;
     92       1.4  garbled #define TCTRL_SEND_REQUEST		0x0001
     93       1.4  garbled #define TCTRL_APM_CTLOPEN		0x0002
     94       1.4  garbled 	unsigned int	sc_wantdata;
     95       1.6  garbled 	volatile unsigned short	sc_lcdstate;
     96       1.1     matt 	enum { TCTRL_IDLE, TCTRL_ARGS,
     97       1.1     matt 		TCTRL_ACK, TCTRL_DATA } sc_state;
     98       1.4  garbled 	u_int8_t	sc_cmdbuf[16];
     99       1.4  garbled 	u_int8_t	sc_rspbuf[16];
    100       1.4  garbled 	u_int8_t	sc_bitport;
    101       1.4  garbled 	u_int8_t	sc_tft_on;
    102       1.4  garbled 	u_int8_t	sc_op;
    103       1.4  garbled 	u_int8_t	sc_cmdoff;
    104       1.4  garbled 	u_int8_t	sc_cmdlen;
    105       1.4  garbled 	u_int8_t	sc_rspoff;
    106       1.4  garbled 	u_int8_t	sc_rsplen;
    107       1.4  garbled 	/* APM stuff */
    108       1.4  garbled #define APM_NEVENTS 16
    109       1.4  garbled 	struct	apm_event_info sc_event_list[APM_NEVENTS];
    110       1.4  garbled 	int	sc_event_count;
    111       1.4  garbled 	int	sc_event_ptr;
    112       1.4  garbled 	struct	selinfo sc_rsel;
    113       1.4  garbled 	/* ENVSYS stuff */
    114       1.4  garbled #define ENVSYS_NUMSENSORS 3
    115       1.4  garbled 	struct	envsys_sensor sc_esensors[ENVSYS_NUMSENSORS];
    116       1.1     matt 
    117       1.4  garbled 	struct	evcnt sc_intrcnt;	/* interrupt counting */
    118       1.1     matt };
    119       1.1     matt 
    120       1.4  garbled #define TCTRL_STD_DEV		0
    121       1.4  garbled #define TCTRL_APMCTL_DEV	8
    122       1.1     matt 
    123       1.9  thorpej static struct callout tctrl_event_ch = CALLOUT_INITIALIZER;
    124       1.8  thorpej 
    125       1.4  garbled static int tctrl_match __P((struct device *parent, struct cfdata *cf,
    126       1.4  garbled 	void *aux));
    127       1.4  garbled static void tctrl_attach __P((struct device *parent, struct device *self,
    128       1.4  garbled 	void *aux));
    129       1.4  garbled static void tctrl_write __P((struct tctrl_softc *sc, bus_size_t off,
    130       1.4  garbled 	u_int8_t v));
    131       1.4  garbled static u_int8_t tctrl_read __P((struct tctrl_softc *sc, bus_size_t off));
    132       1.4  garbled static void tctrl_write_data __P((struct tctrl_softc *sc, u_int8_t v));
    133       1.4  garbled static u_int8_t tctrl_read_data __P((struct tctrl_softc *sc));
    134       1.4  garbled static int tctrl_intr __P((void *arg));
    135       1.4  garbled static void tctrl_setup_bitport __P((void));
    136       1.4  garbled static void tctrl_setup_bitport_nop __P((void));
    137       1.4  garbled static void tctrl_read_ext_status __P((void));
    138       1.4  garbled static void tctrl_read_event_status __P((void *arg));
    139       1.4  garbled static int tctrl_apm_record_event __P((struct tctrl_softc *sc,
    140       1.4  garbled 	u_int event_type));
    141       1.6  garbled static void tctrl_init_lcd __P((void));
    142       1.1     matt 
    143       1.1     matt struct cfattach tctrl_ca = {
    144       1.1     matt 	sizeof(struct tctrl_softc), tctrl_match, tctrl_attach
    145       1.1     matt };
    146       1.1     matt 
    147       1.1     matt extern struct cfdriver tctrl_cd;
    148       1.4  garbled /* XXX wtf is this? see i386/apm.c */
    149       1.4  garbled int tctrl_apm_evindex;
    150       1.1     matt 
    151       1.1     matt static int
    152       1.4  garbled tctrl_match(parent, cf, aux)
    153       1.4  garbled 	struct device *parent;
    154       1.4  garbled 	struct cfdata *cf;
    155       1.4  garbled 	void *aux;
    156       1.1     matt {
    157       1.1     matt 	union obio_attach_args *uoba = aux;
    158       1.1     matt 	struct sbus_attach_args *sa = &uoba->uoba_sbus;
    159       1.1     matt 
    160       1.1     matt 	if (uoba->uoba_isobio4 != 0) {
    161       1.1     matt 		return (0);
    162       1.1     matt 	}
    163       1.1     matt 
    164       1.1     matt 	/* Tadpole 3GX/3GS uses "uctrl" for the Tadpole Microcontroller
    165       1.1     matt 	 * (who's interface is off the TS102 PCMCIA controller but there
    166       1.1     matt 	 * exists a OpenProm for microcontroller interface).
    167       1.1     matt 	 */
    168       1.1     matt 	return strcmp("uctrl", sa->sa_name) == 0;
    169       1.1     matt }
    170       1.1     matt 
    171       1.1     matt static void
    172       1.4  garbled tctrl_attach(parent, self, aux)
    173       1.4  garbled 	struct device *parent;
    174       1.4  garbled 	struct device *self;
    175       1.4  garbled 	void *aux;
    176       1.1     matt {
    177       1.1     matt 	struct tctrl_softc *sc = (void *)self;
    178       1.1     matt 	union obio_attach_args *uoba = aux;
    179       1.1     matt 	struct sbus_attach_args *sa = &uoba->uoba_sbus;
    180       1.2     matt 	unsigned int i, v;
    181       1.2     matt #if 0
    182       1.1     matt 	unsigned int ack, msb, lsb;
    183       1.2     matt #endif
    184       1.1     matt 
    185       1.1     matt 	/* We're living on a sbus slot that looks like an obio that
    186       1.1     matt 	 * looks like an sbus slot.
    187       1.1     matt 	 */
    188       1.1     matt 	sc->sc_memt = sa->sa_bustag;
    189       1.1     matt 	if (sbus_bus_map(sc->sc_memt, sa->sa_slot,
    190       1.1     matt 			 sa->sa_offset - TS102_REG_UCTRL_INT, sa->sa_size,
    191       1.1     matt 			 BUS_SPACE_MAP_LINEAR, 0,
    192       1.1     matt 			 &sc->sc_memh) != 0) {
    193       1.1     matt 		printf(": can't map registers\n");
    194       1.1     matt 		return;
    195       1.1     matt 	}
    196       1.1     matt 
    197       1.2     matt 	printf("\n");
    198       1.2     matt 
    199       1.1     matt 	sc->sc_tft_on = 1;
    200       1.2     matt 
    201       1.1     matt 	/* clear any pending data.
    202       1.1     matt 	 */
    203       1.1     matt 	for (i = 0; i < 10000; i++) {
    204       1.4  garbled 		if ((TS102_UCTRL_STS_RXNE_STA &
    205       1.4  garbled 		    tctrl_read(sc, TS102_REG_UCTRL_STS)) == 0) {
    206       1.1     matt 			break;
    207       1.1     matt 		}
    208       1.1     matt 		v = tctrl_read(sc, TS102_REG_UCTRL_DATA);
    209       1.2     matt 		tctrl_write(sc, TS102_REG_UCTRL_STS, TS102_UCTRL_STS_RXNE_STA);
    210       1.1     matt 	}
    211       1.1     matt 
    212       1.3       pk 	if (sa->sa_nintr != 0) {
    213      1.11       pk 		(void)bus_intr_establish(sc->sc_memt, sa->sa_pri, IPL_NONE,
    214       1.4  garbled 		    0, tctrl_intr, sc);
    215      1.10      cgd 		evcnt_attach_dynamic(&sc->sc_intrcnt, EVCNT_TYPE_INTR, NULL,
    216      1.10      cgd 		    sc->sc_dev.dv_xname, "intr");
    217       1.3       pk 	}
    218       1.2     matt 
    219       1.2     matt 	/* See what the external status is
    220       1.2     matt 	 */
    221       1.1     matt 
    222       1.4  garbled 	tctrl_read_ext_status();
    223       1.2     matt 	if (sc->sc_ext_status != 0) {
    224       1.2     matt 		const char *sep;
    225       1.1     matt 
    226       1.1     matt 		printf("%s: ", sc->sc_dev.dv_xname);
    227       1.2     matt 		v = sc->sc_ext_status;
    228       1.1     matt 		for (i = 0, sep = ""; v != 0; i++, v >>= 1) {
    229       1.1     matt 			if (v & 1) {
    230       1.1     matt 				printf("%s%s", sep, tctrl_ext_statuses[i]);
    231       1.1     matt 				sep = ", ";
    232       1.1     matt 			}
    233       1.1     matt 		}
    234       1.1     matt 		printf("\n");
    235       1.1     matt 	}
    236       1.1     matt 
    237       1.2     matt 	/* Get a current of the control bitport;
    238       1.2     matt 	 */
    239       1.4  garbled 	tctrl_setup_bitport_nop();
    240       1.2     matt 	tctrl_write(sc, TS102_REG_UCTRL_INT,
    241       1.2     matt 		    TS102_UCTRL_INT_RXNE_REQ|TS102_UCTRL_INT_RXNE_MSK);
    242       1.1     matt 
    243       1.4  garbled 	sc->sc_wantdata = 0;
    244       1.4  garbled 	sc->sc_event_count = 0;
    245       1.4  garbled 
    246       1.4  garbled 	/* prime the sensor data */
    247       1.4  garbled 	sprintf(sc->sc_esensors[0].desc, "%s", "Internal Unit Temperature");
    248       1.4  garbled 	sc->sc_esensors[0].units = ENVSYS_STEMP;
    249       1.4  garbled 	sprintf(sc->sc_esensors[1].desc, "%s", "Internal Battery Voltage");
    250       1.4  garbled 	sc->sc_esensors[1].units = ENVSYS_SVOLTS_DC;
    251       1.4  garbled 	sprintf(sc->sc_esensors[2].desc, "%s", "DC-In Voltage");
    252       1.4  garbled 	sc->sc_esensors[2].units = ENVSYS_SVOLTS_DC;
    253       1.6  garbled 
    254       1.6  garbled 	/* initialize the LCD */
    255       1.6  garbled 	tctrl_init_lcd();
    256       1.6  garbled 
    257       1.6  garbled 	/* initialize sc_lcdstate */
    258       1.6  garbled 	sc->sc_lcdstate = 0;
    259       1.6  garbled 	tctrl_set_lcd(2, 0);
    260       1.1     matt }
    261       1.1     matt 
    262       1.1     matt static int
    263       1.4  garbled tctrl_intr(arg)
    264       1.4  garbled 	void *arg;
    265       1.1     matt {
    266       1.1     matt 	struct tctrl_softc *sc = arg;
    267       1.1     matt 	unsigned int v, d;
    268       1.1     matt 	int progress = 0;
    269       1.1     matt 
    270       1.1     matt     again:
    271       1.1     matt 	/* find out the cause(s) of the interrupt */
    272      1.12   toddpw 	v = tctrl_read(sc, TS102_REG_UCTRL_STS) & TS102_UCTRL_STS_MASK;
    273       1.1     matt 
    274       1.1     matt 	/* clear the cause(s) of the interrupt */
    275       1.1     matt 	tctrl_write(sc, TS102_REG_UCTRL_STS, v);
    276       1.1     matt 
    277       1.2     matt 	v &= ~(TS102_UCTRL_STS_RXO_STA|TS102_UCTRL_STS_TXE_STA);
    278       1.1     matt 	if (sc->sc_cmdoff >= sc->sc_cmdlen) {
    279       1.2     matt 		v &= ~TS102_UCTRL_STS_TXNF_STA;
    280       1.4  garbled 		if (tctrl_read(sc, TS102_REG_UCTRL_INT) & TS102_UCTRL_INT_TXNF_REQ) {
    281       1.4  garbled 			tctrl_write(sc, TS102_REG_UCTRL_INT, 0);
    282       1.4  garbled 			progress = 1;
    283       1.4  garbled 		}
    284       1.1     matt 	}
    285       1.4  garbled 	if ((v == 0) && ((sc->sc_flags & TCTRL_SEND_REQUEST) == 0 ||
    286       1.4  garbled 	    sc->sc_state != TCTRL_IDLE)) {
    287       1.4  garbled 		wakeup(sc);
    288       1.1     matt 		return progress;
    289       1.1     matt 	}
    290       1.1     matt 
    291       1.1     matt 	progress = 1;
    292       1.2     matt 	if (v & TS102_UCTRL_STS_RXNE_STA) {
    293       1.1     matt 		d = tctrl_read_data(sc);
    294       1.1     matt 		switch (sc->sc_state) {
    295       1.1     matt 		case TCTRL_IDLE:
    296       1.2     matt 			if (d == 0xfa) {
    297       1.4  garbled 				/* external event */
    298       1.8  thorpej 				callout_reset(&tctrl_event_ch, 1,
    299       1.8  thorpej 				    tctrl_read_event_status, NULL);
    300       1.2     matt 			} else {
    301       1.2     matt 				printf("%s: (op=0x%02x): unexpected data (0x%02x)\n",
    302       1.2     matt 					sc->sc_dev.dv_xname, sc->sc_op, d);
    303       1.1     matt 			}
    304       1.2     matt 			goto again;
    305       1.1     matt 		case TCTRL_ACK:
    306       1.1     matt 			if (d != 0xfe) {
    307       1.2     matt 				printf("%s: (op=0x%02x): unexpected ack value (0x%02x)\n",
    308       1.1     matt 					sc->sc_dev.dv_xname, sc->sc_op, d);
    309       1.1     matt 			}
    310       1.4  garbled #ifdef TCTRLDEBUG
    311       1.2     matt 			printf(" ack=0x%02x", d);
    312       1.2     matt #endif
    313       1.2     matt 			sc->sc_rsplen--;
    314       1.2     matt 			sc->sc_rspoff = 0;
    315       1.1     matt 			sc->sc_state = sc->sc_rsplen ? TCTRL_DATA : TCTRL_IDLE;
    316       1.4  garbled 			sc->sc_wantdata = sc->sc_rsplen ? 1 : 0;
    317       1.4  garbled #ifdef TCTRLDEBUG
    318       1.2     matt 			if (sc->sc_rsplen > 0) {
    319       1.2     matt 				printf(" [data(%u)]", sc->sc_rsplen);
    320       1.2     matt 			} else {
    321       1.2     matt 				printf(" [idle]\n");
    322       1.2     matt 			}
    323       1.2     matt #endif
    324       1.2     matt 			goto again;
    325       1.1     matt 		case TCTRL_DATA:
    326       1.1     matt 			sc->sc_rspbuf[sc->sc_rspoff++] = d;
    327       1.4  garbled #ifdef TCTRLDEBUG
    328       1.2     matt 			printf(" [%d]=0x%02x", sc->sc_rspoff-1, d);
    329       1.2     matt #endif
    330       1.1     matt 			if (sc->sc_rspoff == sc->sc_rsplen) {
    331       1.4  garbled #ifdef TCTRLDEBUG
    332       1.2     matt 				printf(" [idle]\n");
    333       1.2     matt #endif
    334       1.1     matt 				sc->sc_state = TCTRL_IDLE;
    335       1.4  garbled 				sc->sc_wantdata = 0;
    336       1.1     matt 			}
    337       1.2     matt 			goto again;
    338       1.1     matt 		default:
    339       1.1     matt 			printf("%s: (op=0x%02x): unexpected data (0x%02x) in state %d\n",
    340       1.1     matt 			       sc->sc_dev.dv_xname, sc->sc_op, d, sc->sc_state);
    341       1.2     matt 			goto again;
    342       1.1     matt 		}
    343       1.1     matt 	}
    344       1.4  garbled 	if ((sc->sc_state == TCTRL_IDLE && sc->sc_wantdata == 0) ||
    345       1.4  garbled 	    sc->sc_flags & TCTRL_SEND_REQUEST) {
    346       1.4  garbled 		if (sc->sc_flags & TCTRL_SEND_REQUEST) {
    347       1.4  garbled 			sc->sc_flags &= ~TCTRL_SEND_REQUEST;
    348       1.4  garbled 			sc->sc_wantdata = 1;
    349       1.4  garbled 		}
    350       1.1     matt 		if (sc->sc_cmdlen > 0) {
    351       1.1     matt 			tctrl_write(sc, TS102_REG_UCTRL_INT,
    352       1.1     matt 				tctrl_read(sc, TS102_REG_UCTRL_INT)
    353       1.1     matt 				|TS102_UCTRL_INT_TXNF_MSK
    354       1.1     matt 				|TS102_UCTRL_INT_TXNF_REQ);
    355       1.1     matt 			v = tctrl_read(sc, TS102_REG_UCTRL_STS);
    356       1.1     matt 		}
    357       1.1     matt 	}
    358       1.2     matt 	if ((sc->sc_cmdoff < sc->sc_cmdlen) && (v & TS102_UCTRL_STS_TXNF_STA)) {
    359       1.1     matt 		tctrl_write_data(sc, sc->sc_cmdbuf[sc->sc_cmdoff++]);
    360       1.4  garbled #ifdef TCTRLDEBUG
    361       1.2     matt 		if (sc->sc_cmdoff == 1) {
    362       1.2     matt 			printf("%s: op=0x%02x(l=%u)", sc->sc_dev.dv_xname,
    363       1.2     matt 				sc->sc_cmdbuf[0], sc->sc_rsplen);
    364       1.2     matt 		} else {
    365       1.2     matt 			printf(" [%d]=0x%02x", sc->sc_cmdoff-1,
    366       1.2     matt 				sc->sc_cmdbuf[sc->sc_cmdoff-1]);
    367       1.2     matt 		}
    368       1.2     matt #endif
    369       1.1     matt 		if (sc->sc_cmdoff == sc->sc_cmdlen) {
    370       1.1     matt 			sc->sc_state = sc->sc_rsplen ? TCTRL_ACK : TCTRL_IDLE;
    371       1.4  garbled #ifdef TCTRLDEBUG
    372       1.2     matt 			printf(" %s", sc->sc_rsplen ? "[ack]" : "[idle]\n");
    373       1.2     matt #endif
    374       1.2     matt 			if (sc->sc_cmdoff == 1) {
    375       1.2     matt 				sc->sc_op = sc->sc_cmdbuf[0];
    376       1.2     matt 			}
    377       1.1     matt 			tctrl_write(sc, TS102_REG_UCTRL_INT,
    378       1.1     matt 				tctrl_read(sc, TS102_REG_UCTRL_INT)
    379       1.1     matt 				& (~TS102_UCTRL_INT_TXNF_MSK
    380       1.1     matt 				   |TS102_UCTRL_INT_TXNF_REQ));
    381       1.1     matt 		} else if (sc->sc_state == TCTRL_IDLE) {
    382       1.1     matt 			sc->sc_op = sc->sc_cmdbuf[0];
    383       1.1     matt 			sc->sc_state = TCTRL_ARGS;
    384       1.4  garbled #ifdef TCTRLDEBUG
    385       1.2     matt 			printf(" [args]");
    386       1.2     matt #endif
    387       1.1     matt 		}
    388       1.1     matt 	}
    389       1.1     matt 	goto again;
    390       1.1     matt }
    391       1.1     matt 
    392       1.1     matt static void
    393       1.4  garbled tctrl_setup_bitport_nop(void)
    394       1.4  garbled {
    395       1.4  garbled 	struct tctrl_softc *sc;
    396       1.4  garbled 	struct tctrl_req req;
    397       1.4  garbled 	int s;
    398       1.4  garbled 
    399       1.4  garbled 	sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
    400       1.4  garbled 	req.cmdbuf[0] = TS102_OP_CTL_BITPORT;
    401       1.4  garbled 	req.cmdbuf[1] = 0xff;
    402       1.4  garbled 	req.cmdbuf[2] = 0;
    403       1.4  garbled 	req.cmdlen = 3;
    404       1.4  garbled 	req.rsplen = 2;
    405       1.4  garbled 	req.p = NULL;
    406       1.4  garbled 	tadpole_request(&req, 1);
    407       1.4  garbled 	s = splts102();
    408       1.4  garbled 	sc->sc_bitport = (req.rspbuf[0] & req.cmdbuf[1]) ^ req.cmdbuf[2];
    409       1.4  garbled 	splx(s);
    410       1.4  garbled }
    411       1.4  garbled 
    412       1.4  garbled static void
    413       1.4  garbled tctrl_setup_bitport(void)
    414       1.1     matt {
    415       1.4  garbled 	struct tctrl_softc *sc;
    416       1.4  garbled 	struct tctrl_req req;
    417       1.4  garbled 	int s;
    418       1.4  garbled 
    419       1.4  garbled 	sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
    420       1.4  garbled 	s = splts102();
    421       1.4  garbled 	if ((sc->sc_ext_status & TS102_EXT_STATUS_LID_DOWN)
    422       1.4  garbled 	    || (!sc->sc_tft_on)) {
    423       1.4  garbled 		req.cmdbuf[2] = TS102_BITPORT_TFTPWR;
    424       1.1     matt 	} else {
    425       1.4  garbled 		req.cmdbuf[2] = 0;
    426       1.4  garbled 	}
    427       1.4  garbled 	req.cmdbuf[0] = TS102_OP_CTL_BITPORT;
    428       1.4  garbled 	req.cmdbuf[1] = ~TS102_BITPORT_TFTPWR;
    429       1.4  garbled 	req.cmdlen = 3;
    430       1.4  garbled 	req.rsplen = 2;
    431       1.4  garbled 	req.p = NULL;
    432       1.4  garbled 	tadpole_request(&req, 1);
    433       1.4  garbled 	s = splts102();
    434       1.4  garbled 	sc->sc_bitport = (req.rspbuf[0] & req.cmdbuf[1]) ^ req.cmdbuf[2];
    435       1.4  garbled 	splx(s);
    436       1.4  garbled }
    437       1.4  garbled 
    438       1.6  garbled /*
    439       1.6  garbled  * The tadpole microcontroller is not preprogrammed with icon
    440       1.6  garbled  * representations.  The machine boots with the DC-IN light as
    441       1.6  garbled  * a blank (all 0x00) and the other lights, as 4 rows of horizontal
    442       1.6  garbled  * bars.  The below code initializes the icons in the system to
    443       1.6  garbled  * sane values.  Some of these icons could be used for any purpose
    444       1.6  garbled  * desired, namely the pcmcia, LAN and WAN lights.  For the disk spinner,
    445       1.6  garbled  * only the backslash is unprogrammed.  (sigh)
    446       1.6  garbled  *
    447       1.6  garbled  * programming the icons is simple.  It is a 5x8 matrix, which each row a
    448       1.6  garbled  * bitfield in the order 0x10 0x08 0x04 0x02 0x01.
    449       1.6  garbled  */
    450       1.6  garbled 
    451       1.6  garbled static void
    452       1.6  garbled tctrl_init_lcd(void)
    453       1.6  garbled {
    454       1.6  garbled 	struct tctrl_req req;
    455       1.6  garbled 
    456       1.6  garbled 	req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
    457       1.6  garbled 	req.cmdlen = 11;
    458       1.6  garbled 	req.rsplen = 1;
    459       1.6  garbled 	req.cmdbuf[1] = 0x08;	/*len*/
    460       1.6  garbled 	req.cmdbuf[2] = TS102_BLK_OFF_DEF_DC_GOOD;
    461       1.6  garbled 	req.cmdbuf[3] =  0x00;	/* ..... */
    462       1.6  garbled 	req.cmdbuf[4] =  0x00;	/* ..... */
    463       1.6  garbled 	req.cmdbuf[5] =  0x1f;	/* XXXXX */
    464       1.6  garbled 	req.cmdbuf[6] =  0x00;	/* ..... */
    465       1.6  garbled 	req.cmdbuf[7] =  0x15;	/* X.X.X */
    466       1.6  garbled 	req.cmdbuf[8] =  0x00;	/* ..... */
    467       1.6  garbled 	req.cmdbuf[9] =  0x00;	/* ..... */
    468       1.6  garbled 	req.cmdbuf[10] = 0x00;	/* ..... */
    469       1.6  garbled 	req.p = NULL;
    470       1.6  garbled 	tadpole_request(&req, 1);
    471       1.6  garbled 
    472       1.6  garbled 	req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
    473       1.6  garbled 	req.cmdlen = 11;
    474       1.6  garbled 	req.rsplen = 1;
    475       1.6  garbled 	req.cmdbuf[1] = 0x08;	/*len*/
    476       1.6  garbled 	req.cmdbuf[2] = TS102_BLK_OFF_DEF_BACKSLASH;
    477       1.6  garbled 	req.cmdbuf[3] =  0x00;	/* ..... */
    478       1.6  garbled 	req.cmdbuf[4] =  0x10;	/* X.... */
    479       1.6  garbled 	req.cmdbuf[5] =  0x08;	/* .X... */
    480       1.6  garbled 	req.cmdbuf[6] =  0x04;	/* ..X.. */
    481       1.6  garbled 	req.cmdbuf[7] =  0x02;	/* ...X. */
    482       1.6  garbled 	req.cmdbuf[8] =  0x01;	/* ....X */
    483       1.6  garbled 	req.cmdbuf[9] =  0x00;	/* ..... */
    484       1.6  garbled 	req.cmdbuf[10] = 0x00;	/* ..... */
    485       1.6  garbled 	req.p = NULL;
    486       1.6  garbled 	tadpole_request(&req, 1);
    487       1.6  garbled 
    488       1.6  garbled 	req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
    489       1.6  garbled 	req.cmdlen = 11;
    490       1.6  garbled 	req.rsplen = 1;
    491       1.6  garbled 	req.cmdbuf[1] = 0x08;	/*len*/
    492       1.6  garbled 	req.cmdbuf[2] = TS102_BLK_OFF_DEF_WAN1;
    493       1.6  garbled 	req.cmdbuf[3] =  0x0c;	/* .XXX. */
    494       1.6  garbled 	req.cmdbuf[4] =  0x16;	/* X.XX. */
    495       1.6  garbled 	req.cmdbuf[5] =  0x10;	/* X.... */
    496       1.6  garbled 	req.cmdbuf[6] =  0x15;	/* X.X.X */
    497       1.6  garbled 	req.cmdbuf[7] =  0x10;	/* X.... */
    498       1.6  garbled 	req.cmdbuf[8] =  0x16;	/* X.XX. */
    499       1.6  garbled 	req.cmdbuf[9] =  0x0c;	/* .XXX. */
    500       1.6  garbled 	req.cmdbuf[10] = 0x00;	/* ..... */
    501       1.6  garbled 	req.p = NULL;
    502       1.6  garbled 	tadpole_request(&req, 1);
    503       1.6  garbled 
    504       1.6  garbled 	req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
    505       1.6  garbled 	req.cmdlen = 11;
    506       1.6  garbled 	req.rsplen = 1;
    507       1.6  garbled 	req.cmdbuf[1] = 0x08;	/*len*/
    508       1.6  garbled 	req.cmdbuf[2] = TS102_BLK_OFF_DEF_WAN2;
    509       1.6  garbled 	req.cmdbuf[3] =  0x0c;	/* .XXX. */
    510       1.6  garbled 	req.cmdbuf[4] =  0x0d;	/* .XX.X */
    511       1.6  garbled 	req.cmdbuf[5] =  0x01;	/* ....X */
    512       1.6  garbled 	req.cmdbuf[6] =  0x15;	/* X.X.X */
    513       1.6  garbled 	req.cmdbuf[7] =  0x01;	/* ....X */
    514       1.6  garbled 	req.cmdbuf[8] =  0x0d;	/* .XX.X */
    515       1.6  garbled 	req.cmdbuf[9] =  0x0c;	/* .XXX. */
    516       1.6  garbled 	req.cmdbuf[10] = 0x00;	/* ..... */
    517       1.6  garbled 	req.p = NULL;
    518       1.6  garbled 	tadpole_request(&req, 1);
    519       1.6  garbled 
    520       1.6  garbled 	req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
    521       1.6  garbled 	req.cmdlen = 11;
    522       1.6  garbled 	req.rsplen = 1;
    523       1.6  garbled 	req.cmdbuf[1] = 0x08;	/*len*/
    524       1.6  garbled 	req.cmdbuf[2] = TS102_BLK_OFF_DEF_LAN1;
    525       1.6  garbled 	req.cmdbuf[3] =  0x00;	/* ..... */
    526       1.6  garbled 	req.cmdbuf[4] =  0x04;	/* ..X.. */
    527       1.6  garbled 	req.cmdbuf[5] =  0x08;	/* .X... */
    528       1.6  garbled 	req.cmdbuf[6] =  0x13;	/* X..XX */
    529       1.6  garbled 	req.cmdbuf[7] =  0x08;	/* .X... */
    530       1.6  garbled 	req.cmdbuf[8] =  0x04;	/* ..X.. */
    531       1.6  garbled 	req.cmdbuf[9] =  0x00;	/* ..... */
    532       1.6  garbled 	req.cmdbuf[10] = 0x00;	/* ..... */
    533       1.6  garbled 	req.p = NULL;
    534       1.6  garbled 	tadpole_request(&req, 1);
    535       1.6  garbled 
    536       1.6  garbled 	req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
    537       1.6  garbled 	req.cmdlen = 11;
    538       1.6  garbled 	req.rsplen = 1;
    539       1.6  garbled 	req.cmdbuf[1] = 0x08;	/*len*/
    540       1.6  garbled 	req.cmdbuf[2] = TS102_BLK_OFF_DEF_LAN2;
    541       1.6  garbled 	req.cmdbuf[3] =  0x00;	/* ..... */
    542       1.6  garbled 	req.cmdbuf[4] =  0x04;	/* ..X.. */
    543       1.6  garbled 	req.cmdbuf[5] =  0x02;	/* ...X. */
    544       1.6  garbled 	req.cmdbuf[6] =  0x19;	/* XX..X */
    545       1.6  garbled 	req.cmdbuf[7] =  0x02;	/* ...X. */
    546       1.6  garbled 	req.cmdbuf[8] =  0x04;	/* ..X.. */
    547       1.6  garbled 	req.cmdbuf[9] =  0x00;	/* ..... */
    548       1.6  garbled 	req.cmdbuf[10] = 0x00;	/* ..... */
    549       1.6  garbled 	req.p = NULL;
    550       1.6  garbled 	tadpole_request(&req, 1);
    551       1.6  garbled 
    552       1.6  garbled 	req.cmdbuf[0] = TS102_OP_BLK_DEF_SPCL_CHAR;
    553       1.6  garbled 	req.cmdlen = 11;
    554       1.6  garbled 	req.rsplen = 1;
    555       1.6  garbled 	req.cmdbuf[1] = 0x08;	/*len*/
    556       1.6  garbled 	req.cmdbuf[2] = TS102_BLK_OFF_DEF_PCMCIA;
    557       1.6  garbled 	req.cmdbuf[3] =  0x00;	/* ..... */
    558       1.6  garbled 	req.cmdbuf[4] =  0x0c;	/* .XXX. */
    559       1.6  garbled 	req.cmdbuf[5] =  0x1f;	/* XXXXX */
    560       1.6  garbled 	req.cmdbuf[6] =  0x1f;	/* XXXXX */
    561       1.6  garbled 	req.cmdbuf[7] =  0x1f;	/* XXXXX */
    562       1.6  garbled 	req.cmdbuf[8] =  0x1f;	/* XXXXX */
    563       1.6  garbled 	req.cmdbuf[9] =  0x00;	/* ..... */
    564       1.6  garbled 	req.cmdbuf[10] = 0x00;	/* ..... */
    565       1.6  garbled 	req.p = NULL;
    566       1.6  garbled 	tadpole_request(&req, 1);
    567       1.6  garbled }
    568       1.6  garbled 
    569       1.6  garbled 
    570       1.6  garbled 
    571       1.6  garbled /*
    572       1.6  garbled  * set the blinken-lights on the lcd.  what:
    573       1.6  garbled  * what = 0 off,  what = 1 on,  what = 2 toggle
    574       1.6  garbled  */
    575       1.6  garbled 
    576       1.6  garbled void
    577       1.6  garbled tctrl_set_lcd(what, which)
    578       1.6  garbled 	int what;
    579       1.6  garbled 	unsigned short which;
    580       1.6  garbled {
    581       1.6  garbled 	struct tctrl_softc *sc;
    582       1.6  garbled 	struct tctrl_req req;
    583       1.6  garbled 	int s;
    584       1.6  garbled 
    585       1.6  garbled 	sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
    586       1.6  garbled 	s = splts102();
    587       1.6  garbled 
    588       1.6  garbled 	/* provide a quick exit to save cpu time */
    589       1.6  garbled 	if ((what == 1 && sc->sc_lcdstate & which) ||
    590       1.6  garbled 	    (what == 0 && !(sc->sc_lcdstate & which))) {
    591       1.6  garbled 		splx(s);
    592       1.6  garbled 		return;
    593       1.6  garbled 	}
    594       1.6  garbled 	/*
    595       1.6  garbled 	 * the mask setup on this particular command is *very* bizzare
    596       1.6  garbled 	 * and totally undocumented.
    597       1.6  garbled 	 */
    598       1.6  garbled 	if ((what == 1) || (what == 2 && !(sc->sc_lcdstate & which))) {
    599       1.6  garbled 		req.cmdbuf[2] = (u_int8_t)(which&0xff);
    600       1.6  garbled 		req.cmdbuf[3] = (u_int8_t)(which>>8);
    601       1.6  garbled 	} else {
    602       1.6  garbled 		req.cmdbuf[2] = 0;
    603       1.6  garbled 		req.cmdbuf[3] = 0;
    604       1.6  garbled 	}
    605       1.6  garbled 	req.cmdbuf[0] = TS102_OP_CTL_LCD;
    606       1.6  garbled 	req.cmdbuf[4] = (u_int8_t)(~which>>8);
    607       1.6  garbled 	req.cmdbuf[1] = (u_int8_t)(~which&0xff);
    608       1.6  garbled 
    609  1.12.4.1  thorpej 	/* XXX this thing is weird.... */
    610       1.6  garbled 	req.cmdlen = 3;
    611       1.6  garbled 	req.rsplen = 2;
    612       1.6  garbled #if 0
    613       1.6  garbled 	req.cmdlen = 5;
    614       1.6  garbled 	req.rsplen = 4;
    615       1.6  garbled #endif
    616       1.6  garbled 	req.p = NULL;
    617       1.6  garbled 	tadpole_request(&req, 1);
    618       1.6  garbled 	s = splts102();
    619       1.6  garbled 	sc->sc_lcdstate = (unsigned short)req.rspbuf[0];
    620       1.6  garbled 	splx(s);
    621       1.6  garbled }
    622       1.6  garbled 
    623       1.4  garbled static void
    624       1.4  garbled tctrl_read_ext_status(void)
    625       1.4  garbled {
    626       1.4  garbled 	struct tctrl_softc *sc;
    627       1.4  garbled 	struct tctrl_req req;
    628       1.4  garbled 	int s;
    629       1.4  garbled 
    630       1.4  garbled 	sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
    631       1.4  garbled 	req.cmdbuf[0] = TS102_OP_RD_EXT_STATUS;
    632       1.4  garbled 	req.cmdlen = 1;
    633       1.4  garbled 	req.rsplen = 3;
    634       1.4  garbled 	req.p = NULL;
    635       1.4  garbled #ifdef TCTRLDEBUG
    636       1.4  garbled 	printf("pre read: sc->sc_ext_status = 0x%x\n", sc->sc_ext_status);
    637       1.4  garbled #endif
    638       1.4  garbled 	tadpole_request(&req, 1);
    639       1.4  garbled 	s = splts102();
    640       1.4  garbled 	sc->sc_ext_status = req.rspbuf[0] * 256 + req.rspbuf[1];
    641       1.4  garbled 	splx(s);
    642       1.4  garbled #ifdef TCTRLDEBUG
    643       1.4  garbled 	printf("post read: sc->sc_ext_status = 0x%x\n", sc->sc_ext_status);
    644       1.4  garbled #endif
    645       1.4  garbled }
    646       1.4  garbled 
    647       1.4  garbled /*
    648       1.4  garbled  * return 0 if the user will notice and handle the event,
    649       1.4  garbled  * return 1 if the kernel driver should do so.
    650       1.4  garbled  */
    651       1.4  garbled static int
    652       1.4  garbled tctrl_apm_record_event(sc, event_type)
    653       1.4  garbled 	struct tctrl_softc *sc;
    654       1.4  garbled 	u_int event_type;
    655       1.4  garbled {
    656       1.4  garbled 	struct apm_event_info *evp;
    657       1.4  garbled 
    658       1.4  garbled 	if ((sc->sc_flags & TCTRL_APM_CTLOPEN) &&
    659       1.4  garbled 	    (sc->sc_event_count < APM_NEVENTS)) {
    660       1.4  garbled 		evp = &sc->sc_event_list[sc->sc_event_ptr];
    661       1.4  garbled 		sc->sc_event_count++;
    662       1.4  garbled 		sc->sc_event_ptr++;
    663       1.4  garbled 		sc->sc_event_ptr %= APM_NEVENTS;
    664       1.4  garbled 		evp->type = event_type;
    665       1.4  garbled 		evp->index = ++tctrl_apm_evindex;
    666       1.4  garbled 		selwakeup(&sc->sc_rsel);
    667       1.4  garbled 		return(sc->sc_flags & TCTRL_APM_CTLOPEN) ? 0 : 1;
    668       1.1     matt 	}
    669       1.4  garbled 	return(1);
    670       1.1     matt }
    671       1.1     matt 
    672       1.1     matt static void
    673       1.4  garbled tctrl_read_event_status(arg)
    674       1.4  garbled 	void *arg;
    675       1.1     matt {
    676       1.4  garbled 	struct tctrl_softc *sc;
    677       1.4  garbled 	struct tctrl_req req;
    678       1.4  garbled 	int s;
    679       1.4  garbled 	unsigned int v;
    680       1.4  garbled 
    681       1.4  garbled 	sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
    682       1.4  garbled 	req.cmdbuf[0] = TS102_OP_RD_EVENT_STATUS;
    683       1.4  garbled 	req.cmdlen = 1;
    684       1.4  garbled 	req.rsplen = 3;
    685       1.4  garbled 	req.p = NULL;
    686       1.4  garbled 	tadpole_request(&req, 1);
    687       1.4  garbled 	s = splts102();
    688       1.4  garbled 	v = req.rspbuf[0] * 256 + req.rspbuf[1];
    689       1.4  garbled 	if (v & TS102_EVENT_STATUS_SHUTDOWN_REQUEST) {
    690       1.4  garbled 		printf("%s: SHUTDOWN REQUEST!\n", sc->sc_dev.dv_xname);
    691       1.4  garbled 	}
    692       1.4  garbled 	if (v & TS102_EVENT_STATUS_VERY_LOW_POWER_WARNING) {
    693       1.4  garbled /*printf("%s: VERY LOW POWER WARNING!\n", sc->sc_dev.dv_xname);*/
    694       1.4  garbled /* according to a tadpole header, and observation */
    695       1.4  garbled #ifdef TCTRLDEBUG
    696       1.4  garbled 		printf("%s: Battery charge level change\n", sc->sc_dev.dv_xname);
    697       1.4  garbled #endif
    698       1.1     matt 	}
    699       1.4  garbled 	if (v & TS102_EVENT_STATUS_LOW_POWER_WARNING) {
    700       1.4  garbled 		if (tctrl_apm_record_event(sc, APM_BATTERY_LOW))
    701       1.1     matt 			printf("%s: LOW POWER WARNING!\n", sc->sc_dev.dv_xname);
    702       1.4  garbled 	}
    703       1.4  garbled 	if (v & TS102_EVENT_STATUS_DC_STATUS_CHANGE) {
    704       1.4  garbled 		splx(s);
    705       1.4  garbled 		tctrl_read_ext_status();
    706       1.4  garbled 		s = splts102();
    707       1.4  garbled 		if (tctrl_apm_record_event(sc, APM_POWER_CHANGE))
    708       1.1     matt 			printf("%s: main power %s\n", sc->sc_dev.dv_xname,
    709       1.4  garbled 			    (sc->sc_ext_status &
    710       1.4  garbled 			    TS102_EXT_STATUS_MAIN_POWER_AVAILABLE) ?
    711       1.4  garbled 			    "restored" : "removed");
    712       1.4  garbled 	}
    713       1.4  garbled 	if (v & TS102_EVENT_STATUS_LID_STATUS_CHANGE) {
    714       1.4  garbled 		splx(s);
    715       1.4  garbled 		tctrl_read_ext_status();
    716       1.4  garbled 		tctrl_setup_bitport();
    717       1.4  garbled #ifdef TCTRLDEBUG
    718       1.4  garbled 		printf("%s: lid %s\n", sc->sc_dev.dv_xname,
    719       1.4  garbled 		    (sc->sc_ext_status & TS102_EXT_STATUS_LID_DOWN)
    720       1.4  garbled 		    ? "closed" : "opened");
    721       1.2     matt #endif
    722       1.1     matt 	}
    723       1.4  garbled 	splx(s);
    724       1.1     matt }
    725       1.1     matt 
    726       1.1     matt void
    727       1.4  garbled tadpole_request(req, spin)
    728       1.4  garbled 	struct tctrl_req *req;
    729       1.4  garbled 	int spin;
    730       1.1     matt {
    731       1.1     matt 	struct tctrl_softc *sc;
    732       1.1     matt 	int i, s;
    733       1.1     matt 
    734       1.1     matt 	if (tctrl_cd.cd_devs == NULL
    735       1.1     matt 	    || tctrl_cd.cd_ndevs == 0
    736       1.4  garbled 	    || tctrl_cd.cd_devs[TCTRL_STD_DEV] == NULL) {
    737       1.1     matt 		return;
    738       1.1     matt 	}
    739       1.1     matt 
    740       1.4  garbled 	sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
    741       1.4  garbled 	while (sc->sc_wantdata != 0) {
    742       1.4  garbled 		if (req->p != NULL)
    743       1.4  garbled 			tsleep(&sc->sc_wantdata, PLOCK, "tctrl_lock", 10);
    744       1.4  garbled 		else
    745       1.4  garbled 			DELAY(1);
    746       1.4  garbled 	}
    747       1.4  garbled 	if (spin)
    748       1.4  garbled 		s = splhigh();
    749       1.4  garbled 	else
    750       1.4  garbled 		s = splts102();
    751       1.4  garbled 	sc->sc_flags |= TCTRL_SEND_REQUEST;
    752       1.4  garbled 	memcpy(sc->sc_cmdbuf, req->cmdbuf, req->cmdlen);
    753       1.4  garbled 	sc->sc_wantdata = 1;
    754       1.4  garbled 	sc->sc_rsplen = req->rsplen;
    755       1.4  garbled 	sc->sc_cmdlen = req->cmdlen;
    756       1.4  garbled 	sc->sc_cmdoff = sc->sc_rspoff = 0;
    757       1.4  garbled 
    758       1.4  garbled 	/* we spin for certain commands, like poweroffs */
    759       1.4  garbled 	if (spin) {
    760       1.6  garbled /*		for (i = 0; i < 30000; i++) {*/
    761       1.6  garbled 		while (sc->sc_wantdata == 1) {
    762       1.4  garbled 			tctrl_intr(sc);
    763       1.4  garbled 			DELAY(1);
    764       1.4  garbled 		}
    765       1.4  garbled 	} else {
    766       1.1     matt 		tctrl_intr(sc);
    767       1.5  garbled 		i = 0;
    768       1.5  garbled 		while (((sc->sc_rspoff != sc->sc_rsplen) ||
    769       1.5  garbled 		    (sc->sc_cmdoff != sc->sc_cmdlen)) &&
    770       1.5  garbled 		    (i < (5 * sc->sc_rsplen + sc->sc_cmdlen)))
    771       1.5  garbled 			if (req->p != NULL) {
    772       1.5  garbled 				tsleep(sc, PWAIT, "tctrl_data", 15);
    773       1.5  garbled 				i++;
    774       1.5  garbled 			}
    775       1.4  garbled 			else
    776       1.4  garbled 				DELAY(1);
    777       1.1     matt 	}
    778       1.5  garbled 	/*
    779       1.5  garbled 	 * we give the user a reasonable amount of time for a command
    780       1.5  garbled 	 * to complete.  If it doesn't complete in time, we hand them
    781       1.5  garbled 	 * garbage.  This is here to stop things like setting the
    782       1.5  garbled 	 * rsplen too long, and sleeping forever in a CMD_REQ ioctl.
    783       1.5  garbled 	 */
    784       1.5  garbled 	sc->sc_wantdata = 0;
    785       1.4  garbled 	memcpy(req->rspbuf, sc->sc_rspbuf, req->rsplen);
    786       1.1     matt 	splx(s);
    787       1.1     matt }
    788       1.1     matt 
    789       1.1     matt void
    790       1.4  garbled tadpole_powerdown(void)
    791       1.4  garbled {
    792       1.4  garbled 	struct tctrl_req req;
    793       1.4  garbled 
    794       1.4  garbled 	req.cmdbuf[0] = TS102_OP_ADMIN_POWER_OFF;
    795       1.4  garbled 	req.cmdlen = 1;
    796       1.4  garbled 	req.rsplen = 1;
    797       1.4  garbled 	req.p = NULL;
    798       1.4  garbled 	tadpole_request(&req, 1);
    799       1.4  garbled }
    800       1.4  garbled 
    801       1.4  garbled void
    802       1.4  garbled tadpole_set_video(enabled)
    803       1.4  garbled 	int enabled;
    804       1.1     matt {
    805       1.1     matt 	struct tctrl_softc *sc;
    806       1.4  garbled 	struct tctrl_req req;
    807       1.1     matt 	int s;
    808       1.1     matt 
    809       1.4  garbled 	sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
    810       1.4  garbled 	while (sc->sc_wantdata != 0)
    811       1.4  garbled 		DELAY(1);
    812       1.4  garbled 	s = splts102();
    813       1.4  garbled 	req.p = NULL;
    814       1.4  garbled 	if ((sc->sc_ext_status & TS102_EXT_STATUS_LID_DOWN && !enabled)
    815       1.4  garbled 	    || (sc->sc_tft_on)) {
    816       1.4  garbled 		req.cmdbuf[2] = TS102_BITPORT_TFTPWR;
    817       1.4  garbled 	} else {
    818       1.4  garbled 		req.cmdbuf[2] = 0;
    819       1.1     matt 	}
    820       1.4  garbled 	req.cmdbuf[0] = TS102_OP_CTL_BITPORT;
    821       1.4  garbled 	req.cmdbuf[1] = ~TS102_BITPORT_TFTPWR;
    822       1.4  garbled 	req.cmdlen = 3;
    823       1.4  garbled 	req.rsplen = 2;
    824       1.1     matt 
    825       1.1     matt 	if ((sc->sc_tft_on && !enabled) || (!sc->sc_tft_on && enabled)) {
    826       1.1     matt 		sc->sc_tft_on = enabled;
    827       1.1     matt 		if (sc->sc_ext_status & TS102_EXT_STATUS_LID_DOWN) {
    828       1.1     matt 			splx(s);
    829       1.1     matt 			return;
    830       1.1     matt 		}
    831       1.4  garbled 		tadpole_request(&req, 1);
    832       1.4  garbled 		sc->sc_bitport =
    833       1.4  garbled 		    (req.rspbuf[0] & req.cmdbuf[1]) ^ req.cmdbuf[2];
    834       1.1     matt 	}
    835       1.1     matt 	splx(s);
    836       1.1     matt }
    837       1.1     matt 
    838       1.1     matt static void
    839       1.4  garbled tctrl_write_data(sc, v)
    840       1.4  garbled 	struct tctrl_softc *sc;
    841       1.4  garbled 	u_int8_t v;
    842       1.1     matt {
    843       1.1     matt 	unsigned int i;
    844       1.4  garbled 
    845       1.1     matt 	for (i = 0; i < 100; i++)  {
    846       1.2     matt 		if (TS102_UCTRL_STS_TXNF_STA & tctrl_read(sc, TS102_REG_UCTRL_STS))
    847       1.1     matt 			break;
    848       1.1     matt 	}
    849       1.1     matt 	tctrl_write(sc, TS102_REG_UCTRL_DATA, v);
    850       1.1     matt }
    851       1.1     matt 
    852       1.1     matt static u_int8_t
    853       1.4  garbled tctrl_read_data(sc)
    854       1.4  garbled 	struct tctrl_softc *sc;
    855       1.4  garbled {
    856       1.1     matt 	unsigned int i, v;
    857       1.1     matt 
    858       1.1     matt 	for (i = 0; i < 100000; i++) {
    859       1.2     matt 		if (TS102_UCTRL_STS_RXNE_STA & tctrl_read(sc, TS102_REG_UCTRL_STS))
    860       1.1     matt 			break;
    861       1.1     matt 		DELAY(1);
    862       1.1     matt 	}
    863       1.1     matt 
    864       1.1     matt 	v = tctrl_read(sc, TS102_REG_UCTRL_DATA);
    865       1.2     matt 	tctrl_write(sc, TS102_REG_UCTRL_STS, TS102_UCTRL_STS_RXNE_STA);
    866       1.1     matt 	return v;
    867       1.1     matt }
    868       1.1     matt 
    869       1.1     matt static u_int8_t
    870       1.4  garbled tctrl_read(sc, off)
    871       1.4  garbled 	struct tctrl_softc *sc;
    872       1.4  garbled 	bus_size_t off;
    873       1.1     matt {
    874       1.4  garbled 
    875       1.2     matt 	sc->sc_junk = bus_space_read_1(sc->sc_memt, sc->sc_memh, off);
    876       1.1     matt 	return sc->sc_junk;
    877       1.1     matt }
    878       1.1     matt 
    879       1.1     matt static void
    880       1.4  garbled tctrl_write(sc, off, v)
    881       1.4  garbled 	struct tctrl_softc *sc;
    882       1.4  garbled 	bus_size_t off;
    883       1.4  garbled 	u_int8_t v;
    884       1.1     matt {
    885       1.4  garbled 
    886       1.1     matt 	sc->sc_junk = v;
    887       1.2     matt 	bus_space_write_1(sc->sc_memt, sc->sc_memh, off, v);
    888       1.4  garbled }
    889       1.4  garbled 
    890       1.4  garbled int
    891       1.4  garbled tctrlopen(dev, flags, mode, p)
    892       1.4  garbled 	dev_t dev;
    893       1.4  garbled 	int flags, mode;
    894       1.4  garbled 	struct proc *p;
    895       1.4  garbled {
    896       1.4  garbled 	int unit = (minor(dev)&0xf0);
    897       1.4  garbled 	int ctl = (minor(dev)&0x0f);
    898       1.4  garbled 	struct tctrl_softc *sc;
    899       1.4  garbled 
    900       1.4  garbled 	if (unit >= tctrl_cd.cd_ndevs)
    901       1.4  garbled 		return(ENXIO);
    902       1.4  garbled 	sc = tctrl_cd.cd_devs[TCTRL_STD_DEV];
    903       1.4  garbled 	if (!sc)
    904       1.4  garbled 		return(ENXIO);
    905       1.4  garbled 
    906       1.4  garbled 	switch (ctl) {
    907       1.4  garbled 	case TCTRL_STD_DEV:
    908       1.4  garbled 		break;
    909       1.4  garbled 	case TCTRL_APMCTL_DEV:
    910       1.4  garbled 		if (!(flags & FWRITE))
    911       1.4  garbled 			return(EINVAL);
    912       1.4  garbled 		if (sc->sc_flags & TCTRL_APM_CTLOPEN)
    913       1.4  garbled 			return(EBUSY);
    914       1.4  garbled 		sc->sc_flags |= TCTRL_APM_CTLOPEN;
    915       1.4  garbled 		break;
    916       1.4  garbled 	default:
    917       1.4  garbled 		return(ENXIO);
    918       1.4  garbled 		break;
    919       1.4  garbled 	}
    920       1.4  garbled 
    921       1.4  garbled 	return(0);
    922       1.4  garbled }
    923       1.4  garbled 
    924       1.4  garbled int
    925       1.4  garbled tctrlclose(dev, flags, mode, p)
    926       1.4  garbled 	dev_t dev;
    927       1.4  garbled 	int flags, mode;
    928       1.4  garbled 	struct proc *p;
    929       1.4  garbled {
    930       1.4  garbled 	int ctl = (minor(dev)&0x0f);
    931       1.4  garbled 	struct tctrl_softc *sc;
    932       1.4  garbled 
    933       1.4  garbled 	sc = tctrl_cd.cd_devs[TCTRL_STD_DEV];
    934       1.4  garbled 	if (!sc)
    935       1.4  garbled 		return(ENXIO);
    936       1.4  garbled 
    937       1.4  garbled 	switch (ctl) {
    938       1.4  garbled 	case TCTRL_STD_DEV:
    939       1.4  garbled 		break;
    940       1.4  garbled 	case TCTRL_APMCTL_DEV:
    941       1.4  garbled 		sc->sc_flags &= ~TCTRL_APM_CTLOPEN;
    942       1.4  garbled 		break;
    943       1.4  garbled 	}
    944       1.4  garbled 	return(0);
    945       1.4  garbled }
    946       1.4  garbled 
    947       1.4  garbled int
    948       1.4  garbled tctrlioctl(dev, cmd, data, flags, p)
    949       1.4  garbled         dev_t dev;
    950       1.4  garbled         u_long cmd;
    951       1.4  garbled         caddr_t data;
    952       1.4  garbled         int flags;
    953       1.4  garbled         struct proc *p;
    954       1.4  garbled {
    955       1.4  garbled 	struct tctrl_req req, *reqn;
    956       1.7      jdc 	struct tctrl_pwr *pwrreq;
    957       1.4  garbled 	envsys_range_t *envrange;
    958       1.4  garbled 	envsys_temp_data_t *envdata;
    959       1.4  garbled 	envsys_temp_info_t *envinfo;
    960       1.4  garbled 	struct apm_power_info *powerp;
    961       1.4  garbled 	struct apm_event_info *evp;
    962       1.4  garbled 	struct tctrl_softc *sc;
    963       1.4  garbled 	int i;
    964       1.4  garbled 	u_int j;
    965       1.4  garbled 	u_int16_t a;
    966       1.4  garbled 	u_int8_t c;
    967       1.4  garbled 
    968       1.4  garbled 	if (tctrl_cd.cd_devs == NULL
    969       1.4  garbled 	    || tctrl_cd.cd_ndevs == 0
    970       1.4  garbled 	    || tctrl_cd.cd_devs[TCTRL_STD_DEV] == NULL) {
    971       1.4  garbled 		return ENXIO;
    972       1.4  garbled 	}
    973       1.4  garbled 	sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
    974       1.4  garbled         switch (cmd) {
    975       1.4  garbled 
    976       1.4  garbled 	case APM_IOC_STANDBY:
    977       1.4  garbled 		return(EOPNOTSUPP); /* for now */
    978       1.4  garbled 
    979       1.4  garbled 	case APM_IOC_SUSPEND:
    980       1.4  garbled 		return(EOPNOTSUPP); /* for now */
    981       1.4  garbled 
    982       1.4  garbled 	case APM_IOC_GETPOWER:
    983       1.4  garbled 		powerp = (struct apm_power_info *)data;
    984       1.4  garbled 		req.cmdbuf[0] = TS102_OP_RD_INT_CHARGE_RATE;
    985       1.4  garbled 		req.cmdlen = 1;
    986       1.4  garbled 		req.rsplen = 2;
    987       1.4  garbled 		req.p = p;
    988       1.4  garbled 		tadpole_request(&req, 0);
    989       1.4  garbled 		if (req.rspbuf[0] > 0x00)
    990       1.4  garbled 			powerp->battery_state = APM_BATT_CHARGING;
    991       1.4  garbled 		req.cmdbuf[0] = TS102_OP_RD_INT_CHARGE_LEVEL;
    992       1.4  garbled 		req.cmdlen = 1;
    993       1.4  garbled 		req.rsplen = 3;
    994       1.4  garbled 		req.p = p;
    995       1.4  garbled 		tadpole_request(&req, 0);
    996       1.4  garbled 		c = req.rspbuf[0];
    997       1.4  garbled 		powerp->battery_life = c;
    998       1.6  garbled 		if (c > 0x70)	/* the tadpole sometimes dips below zero, and */
    999       1.6  garbled 			c = 0;	/* into the 255 range. */
   1000       1.4  garbled 		powerp->minutes_left = (45 * c) / 100; /* XXX based on 45 min */
   1001       1.4  garbled 		if (powerp->battery_state != APM_BATT_CHARGING) {
   1002       1.4  garbled 			if (c < 0x20)
   1003       1.4  garbled 				powerp->battery_state = APM_BATT_CRITICAL;
   1004       1.4  garbled 			else if (c < 0x40)
   1005       1.4  garbled 				powerp->battery_state = APM_BATT_LOW;
   1006       1.4  garbled 			else if (c < 0x66)
   1007       1.4  garbled 				powerp->battery_state = APM_BATT_HIGH;
   1008       1.4  garbled 			else
   1009       1.4  garbled 				powerp->battery_state = APM_BATT_UNKNOWN;
   1010       1.4  garbled 		}
   1011       1.4  garbled 		req.cmdbuf[0] = TS102_OP_RD_EXT_STATUS;
   1012       1.4  garbled 		req.cmdlen = 1;
   1013       1.4  garbled 		req.rsplen = 3;
   1014       1.4  garbled 		req.p = p;
   1015       1.4  garbled 		tadpole_request(&req, 0);
   1016       1.4  garbled 		a = req.rspbuf[0] * 256 + req.rspbuf[1];
   1017       1.4  garbled 		if (a & TS102_EXT_STATUS_MAIN_POWER_AVAILABLE)
   1018       1.4  garbled 			powerp->ac_state = APM_AC_ON;
   1019       1.4  garbled 		else
   1020       1.4  garbled 			powerp->ac_state = APM_AC_OFF;
   1021       1.4  garbled 		break;
   1022       1.4  garbled 
   1023       1.4  garbled 	case APM_IOC_NEXTEVENT:
   1024       1.4  garbled 		if (!sc->sc_event_count)
   1025       1.4  garbled 			return EAGAIN;
   1026       1.4  garbled 
   1027       1.4  garbled 		evp = (struct apm_event_info *)data;
   1028       1.4  garbled 		i = sc->sc_event_ptr + APM_NEVENTS - sc->sc_event_count;
   1029       1.4  garbled 		i %= APM_NEVENTS;
   1030       1.4  garbled 		*evp = sc->sc_event_list[i];
   1031       1.4  garbled 		sc->sc_event_count--;
   1032       1.4  garbled 		return(0);
   1033       1.4  garbled 
   1034       1.4  garbled 	/* this ioctl assumes the caller knows exactly what he is doing */
   1035       1.4  garbled 	case TCTRL_CMD_REQ:
   1036       1.4  garbled 		reqn = (struct tctrl_req *)data;
   1037       1.4  garbled 		if ((i = suser(p->p_ucred, &p->p_acflag)) != 0 &&
   1038       1.4  garbled 		    (reqn->cmdbuf[0] == TS102_OP_CTL_BITPORT ||
   1039       1.4  garbled 		    (reqn->cmdbuf[0] >= TS102_OP_CTL_WATCHDOG &&
   1040       1.4  garbled 		    reqn->cmdbuf[0] <= TS102_OP_CTL_SECURITY_KEY) ||
   1041       1.4  garbled 		    reqn->cmdbuf[0] == TS102_OP_CTL_TIMEZONE ||
   1042       1.4  garbled 		    reqn->cmdbuf[0] == TS102_OP_CTL_DIAGNOSTIC_MODE ||
   1043       1.4  garbled 		    reqn->cmdbuf[0] == TS102_OP_CMD_SOFTWARE_RESET ||
   1044       1.4  garbled 		    (reqn->cmdbuf[0] >= TS102_OP_CMD_SET_RTC &&
   1045       1.4  garbled 		    reqn->cmdbuf[0] < TS102_OP_RD_INT_CHARGE_LEVEL) ||
   1046       1.4  garbled 		    reqn->cmdbuf[0] > TS102_OP_RD_EXT_CHARGE_LEVEL))
   1047       1.4  garbled 			return(i);
   1048       1.4  garbled 		reqn->p = p;
   1049       1.4  garbled 		tadpole_request(reqn, 0);
   1050       1.4  garbled 		break;
   1051       1.4  garbled 
   1052       1.4  garbled 	case ENVSYS_VERSION:
   1053       1.4  garbled 		*(int32_t *)data = 1000;
   1054       1.4  garbled 		break;
   1055       1.4  garbled 
   1056       1.4  garbled 	case ENVSYS_GRANGE:
   1057       1.4  garbled 		envrange = (envsys_range_t *)data;
   1058       1.4  garbled 		i = 0;
   1059       1.4  garbled 		envrange->high = envrange->low = 0;
   1060       1.4  garbled 		for (j=0; j < ENVSYS_NUMSENSORS; j++) {
   1061       1.4  garbled 			if (!i && envrange->units == sc->sc_esensors[j].units) {
   1062       1.4  garbled 				envrange->low = j;
   1063       1.4  garbled 				i++;
   1064       1.4  garbled 			}
   1065       1.4  garbled 			if (i && envrange->units == sc->sc_esensors[j].units)
   1066       1.4  garbled 				envrange->high = j;
   1067       1.4  garbled 		}
   1068       1.4  garbled 		if (!i) {
   1069       1.4  garbled 			envrange->high = 0;
   1070       1.4  garbled 			envrange->low = 1;
   1071       1.4  garbled 		}
   1072       1.4  garbled 		break;
   1073       1.4  garbled 
   1074       1.4  garbled 	case ENVSYS_GTREDATA:
   1075       1.4  garbled 		envdata = (envsys_temp_data_t *)data;
   1076       1.4  garbled 		if (envdata->sensor >= ENVSYS_NUMSENSORS) {
   1077       1.4  garbled 			envdata->validflags = 0;
   1078       1.4  garbled 			break;
   1079       1.4  garbled 		}
   1080       1.4  garbled 		envdata->warnflags = ENVSYS_WARN_OK;
   1081       1.4  garbled 		if (envdata->sensor == 0) {
   1082       1.4  garbled 			envdata->validflags |= ENVSYS_FVALID;
   1083       1.4  garbled 			req.cmdbuf[0] = TS102_OP_RD_CURRENT_TEMP;
   1084       1.4  garbled 			req.cmdlen = 1;
   1085       1.4  garbled 			req.rsplen = 2;
   1086       1.4  garbled 			req.p = p;
   1087       1.4  garbled 			tadpole_request(&req, 0);
   1088       1.4  garbled 			envdata->cur.data_us =             /* 273160? */
   1089       1.6  garbled 			    (u_int32_t)((int)((int)req.rspbuf[0]-32)*5000000/9+273150000);
   1090       1.4  garbled 			envdata->validflags |= ENVSYS_FCURVALID;
   1091       1.4  garbled 			req.cmdbuf[0] = TS102_OP_RD_MAX_TEMP;
   1092       1.4  garbled 			req.cmdlen = 1;
   1093       1.4  garbled 			req.rsplen = 2;
   1094       1.4  garbled 			req.p = p;
   1095       1.4  garbled 			tadpole_request(&req, 0);
   1096       1.4  garbled 			envdata->max.data_us =
   1097       1.6  garbled 			    (u_int32_t)((int)((int)req.rspbuf[0]-32)*5000000/9+273150000);
   1098       1.4  garbled 			envdata->validflags |= ENVSYS_FMAXVALID;
   1099       1.4  garbled 			req.cmdbuf[0] = TS102_OP_RD_MIN_TEMP;
   1100       1.4  garbled 			req.cmdlen = 1;
   1101       1.4  garbled 			req.rsplen = 2;
   1102       1.4  garbled 			req.p = p;
   1103       1.4  garbled 			tadpole_request(&req, 0);
   1104       1.4  garbled 			envdata->min.data_us =
   1105       1.6  garbled 			    (u_int32_t)((int)((int)req.rspbuf[0]-32)*5000000/9+273150000);
   1106       1.4  garbled 			envdata->validflags |= ENVSYS_FMINVALID;
   1107       1.4  garbled 			envdata->units = sc->sc_esensors[envdata->sensor].units;
   1108       1.4  garbled 			break;
   1109       1.4  garbled 		} else if (envdata->sensor == 1 || envdata->sensor == 2) {
   1110       1.4  garbled 			envdata->validflags = ENVSYS_FVALID|ENVSYS_FCURVALID;
   1111       1.4  garbled 			envdata->units = sc->sc_esensors[envdata->sensor].units;
   1112       1.4  garbled 			if (envdata->sensor == 1)
   1113       1.4  garbled 				req.cmdbuf[0] = TS102_OP_RD_INT_BATT_VLT;
   1114       1.4  garbled 			else
   1115       1.4  garbled 				req.cmdbuf[0] = TS102_OP_RD_DC_IN_VLT;
   1116       1.4  garbled 			req.cmdlen = 1;
   1117       1.4  garbled 			req.rsplen = 2;
   1118       1.4  garbled 			req.p = p;
   1119       1.4  garbled 			tadpole_request(&req, 0);
   1120       1.6  garbled 			envdata->cur.data_s = (int32_t)req.rspbuf[0]*1000000/11;
   1121       1.4  garbled 			break;
   1122       1.4  garbled 		}
   1123       1.4  garbled 		break;
   1124       1.4  garbled 
   1125       1.4  garbled         case ENVSYS_GTREINFO:
   1126       1.4  garbled 		envinfo = (envsys_temp_info_t *)data;
   1127       1.4  garbled 		if (envinfo->sensor >= ENVSYS_NUMSENSORS) {
   1128       1.4  garbled 			envinfo->validflags = 0;
   1129       1.4  garbled 			break;
   1130       1.4  garbled 		}
   1131       1.4  garbled 		envinfo->units = sc->sc_esensors[envinfo->sensor].units;
   1132       1.4  garbled 		memcpy(envinfo->desc, sc->sc_esensors[envinfo->sensor].desc,
   1133       1.4  garbled 		    sizeof(sc->sc_esensors[envinfo->sensor].desc) >
   1134       1.4  garbled 		    sizeof(envinfo->desc) ? sizeof(envinfo->desc) :
   1135       1.4  garbled 		    sizeof(sc->sc_esensors[envinfo->sensor].desc));
   1136       1.4  garbled 		if (envinfo->units == ENVSYS_STEMP) {
   1137       1.4  garbled 			envinfo->validflags = ENVSYS_FVALID|ENVSYS_FCURVALID|
   1138       1.4  garbled 			    ENVSYS_FMINVALID|ENVSYS_FMAXVALID;
   1139       1.4  garbled 		} else if (envinfo->units == ENVSYS_SVOLTS_DC) {
   1140       1.4  garbled 			envinfo->validflags = ENVSYS_FVALID|ENVSYS_FCURVALID;
   1141       1.4  garbled 		} else
   1142       1.4  garbled 			envinfo->validflags = 0;
   1143       1.4  garbled                 break;
   1144       1.4  garbled 
   1145       1.4  garbled         case ENVSYS_STREINFO:
   1146       1.4  garbled 		envinfo = (envsys_temp_info_t *)data;
   1147       1.4  garbled 		if (envinfo->sensor >= ENVSYS_NUMSENSORS) {
   1148       1.4  garbled 			envinfo->validflags = 0;
   1149       1.4  garbled 			break;
   1150       1.4  garbled 		}
   1151       1.4  garbled 		if (envinfo->units == sc->sc_esensors[envinfo->sensor].units)
   1152       1.4  garbled 			memcpy(sc->sc_esensors[envinfo->sensor].desc,
   1153       1.4  garbled 			    envinfo->desc,
   1154       1.4  garbled 			    sizeof(envinfo->desc) > sizeof(char)*32 ?
   1155       1.4  garbled 			    sizeof(char)*32 : sizeof(envinfo->desc) );
   1156       1.4  garbled 		if (envinfo->units == ENVSYS_STEMP) {
   1157       1.4  garbled 			envinfo->validflags = ENVSYS_FVALID|ENVSYS_FCURVALID|
   1158       1.4  garbled 			    ENVSYS_FMINVALID|ENVSYS_FMAXVALID;
   1159       1.4  garbled 		} else if (envinfo->units == ENVSYS_SVOLTS_DC) {
   1160       1.4  garbled 			envinfo->validflags = ENVSYS_FVALID|ENVSYS_FCURVALID;
   1161       1.4  garbled 		} else
   1162       1.4  garbled 			envinfo->validflags = 0;
   1163       1.4  garbled                 break;
   1164       1.7      jdc 
   1165       1.7      jdc 	/* serial power mode (via auxiotwo) */
   1166       1.7      jdc 	case TCTRL_SERIAL_PWR:
   1167       1.7      jdc 		pwrreq = (struct tctrl_pwr *)data;
   1168       1.7      jdc 		if (pwrreq->rw)
   1169       1.7      jdc 			pwrreq->state = auxiotwoserialgetapm();
   1170       1.7      jdc 		else
   1171       1.7      jdc 			auxiotwoserialsetapm(pwrreq->state);
   1172       1.7      jdc 		break;
   1173       1.7      jdc 
   1174       1.7      jdc 	/* modem power mode (via auxio) */
   1175       1.7      jdc 	case TCTRL_MODEM_PWR:
   1176       1.7      jdc 		return(EOPNOTSUPP); /* for now */
   1177       1.7      jdc 		break;
   1178       1.4  garbled 
   1179       1.4  garbled 
   1180       1.4  garbled         default:
   1181       1.4  garbled                 return (ENOTTY);
   1182       1.4  garbled         }
   1183       1.4  garbled         return (0);
   1184       1.4  garbled }
   1185       1.4  garbled 
   1186       1.4  garbled int
   1187       1.4  garbled tctrlpoll(dev, events, p)
   1188       1.4  garbled 	dev_t dev;
   1189       1.4  garbled 	int events;
   1190       1.4  garbled 	struct proc *p;
   1191       1.4  garbled {
   1192       1.4  garbled 	struct tctrl_softc *sc = tctrl_cd.cd_devs[TCTRL_STD_DEV];
   1193       1.4  garbled 	int revents = 0;
   1194       1.4  garbled 
   1195       1.4  garbled 	if (events & (POLLIN | POLLRDNORM)) {
   1196       1.4  garbled 		if (sc->sc_event_count)
   1197       1.4  garbled 			revents |= events & (POLLIN | POLLRDNORM);
   1198       1.4  garbled 		else
   1199       1.4  garbled 			selrecord(p, &sc->sc_rsel);
   1200       1.4  garbled 	}
   1201       1.4  garbled 
   1202       1.4  garbled 	return (revents);
   1203       1.1     matt }
   1204       1.6  garbled /* DO NOT SET THIS OPTION */
   1205       1.6  garbled #ifdef TADPOLE_BLINK
   1206       1.6  garbled void
   1207       1.6  garbled cpu_disk_unbusy(busy)
   1208       1.6  garbled         int busy;
   1209       1.6  garbled {
   1210       1.6  garbled 	static struct timeval tctrl_ds_timestamp;
   1211       1.6  garbled         struct timeval dv_time, diff_time;
   1212       1.6  garbled 	struct tctrl_softc *sc;
   1213       1.6  garbled 
   1214       1.6  garbled 	sc = (struct tctrl_softc *) tctrl_cd.cd_devs[TCTRL_STD_DEV];
   1215       1.6  garbled 
   1216       1.6  garbled 	/* quickly bail */
   1217       1.6  garbled 	if (!(sc->sc_lcdstate & TS102_LCD_DISK_ACTIVE) || busy > 0)
   1218       1.6  garbled 		return;
   1219       1.6  garbled 
   1220       1.6  garbled         /* we aren't terribly concerned with precision here */
   1221       1.6  garbled         dv_time = mono_time;
   1222       1.6  garbled         timersub(&dv_time, &tctrl_ds_timestamp, &diff_time);
   1223       1.6  garbled 
   1224       1.6  garbled 	if (diff_time.tv_sec > 0) {
   1225       1.6  garbled                 tctrl_set_lcd(0, TS102_LCD_DISK_ACTIVE);
   1226       1.6  garbled 		tctrl_ds_timestamp = mono_time;
   1227       1.6  garbled 	}
   1228       1.6  garbled }
   1229       1.6  garbled #endif
   1230