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zs.c revision 1.74.16.1
      1  1.74.16.1     rmind /*	$NetBSD: zs.c,v 1.74.16.1 2014/05/18 17:45:00 rmind Exp $	*/
      2        1.1       leo 
      3        1.1       leo /*
      4        1.1       leo  * Copyright (c) 1992, 1993
      5        1.1       leo  *	The Regents of the University of California.  All rights reserved.
      6        1.1       leo  *
      7        1.1       leo  * This software was developed by the Computer Systems Engineering group
      8        1.1       leo  * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
      9        1.1       leo  * contributed to Berkeley.
     10        1.1       leo  *
     11        1.1       leo  *
     12        1.1       leo  * All advertising materials mentioning features or use of this software
     13        1.1       leo  * must display the following acknowledgement:
     14        1.1       leo  *	This product includes software developed by the University of
     15        1.1       leo  *	California, Lawrence Berkeley Laboratory.
     16        1.1       leo  *
     17        1.1       leo  * Redistribution and use in source and binary forms, with or without
     18        1.1       leo  * modification, are permitted provided that the following conditions
     19        1.1       leo  * are met:
     20        1.1       leo  * 1. Redistributions of source code must retain the above copyright
     21        1.1       leo  *    notice, this list of conditions and the following disclaimer.
     22        1.1       leo  * 2. Redistributions in binary form must reproduce the above copyright
     23        1.1       leo  *    notice, this list of conditions and the following disclaimer in the
     24        1.1       leo  *    documentation and/or other materials provided with the distribution.
     25       1.41       agc  * 3. Neither the name of the University nor the names of its contributors
     26       1.41       agc  *    may be used to endorse or promote products derived from this software
     27       1.41       agc  *    without specific prior written permission.
     28       1.41       agc  *
     29       1.41       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     30       1.41       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     31       1.41       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     32       1.41       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     33       1.41       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     34       1.41       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     35       1.41       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     36       1.41       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     37       1.41       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     38       1.41       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     39       1.41       agc  * SUCH DAMAGE.
     40       1.41       agc  *
     41       1.41       agc  *	@(#)zs.c	8.1 (Berkeley) 7/19/93
     42       1.41       agc  */
     43       1.41       agc 
     44       1.42       leo /*-
     45       1.42       leo  * Copyright (c) 1995 The NetBSD Foundation, Inc. (Atari modifications)
     46       1.42       leo  * All rights reserved.
     47       1.41       agc  *
     48       1.42       leo  * This code is derived from software contributed to The NetBSD Foundation
     49       1.42       leo  * by Leo Weppelman.
     50       1.41       agc  *
     51       1.41       agc  * Redistribution and use in source and binary forms, with or without
     52       1.41       agc  * modification, are permitted provided that the following conditions
     53       1.41       agc  * are met:
     54       1.41       agc  * 1. Redistributions of source code must retain the above copyright
     55       1.41       agc  *    notice, this list of conditions and the following disclaimer.
     56       1.41       agc  * 2. Redistributions in binary form must reproduce the above copyright
     57       1.41       agc  *    notice, this list of conditions and the following disclaimer in the
     58       1.41       agc  *    documentation and/or other materials provided with the distribution.
     59        1.1       leo  *
     60       1.42       leo  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     61       1.42       leo  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     62       1.42       leo  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     63       1.42       leo  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     64       1.42       leo  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     65       1.42       leo  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     66       1.42       leo  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     67       1.42       leo  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     68       1.42       leo  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     69       1.42       leo  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     70       1.42       leo  * POSSIBILITY OF SUCH DAMAGE.
     71        1.1       leo  */
     72        1.1       leo 
     73        1.1       leo /*
     74        1.1       leo  * Zilog Z8530 (ZSCC) driver.
     75        1.1       leo  *
     76        1.1       leo  * Runs two tty ports (modem2 and serial2) on zs0.
     77        1.1       leo  *
     78        1.1       leo  * This driver knows far too much about chip to usage mappings.
     79        1.1       leo  */
     80       1.40     lukem 
     81       1.40     lukem #include <sys/cdefs.h>
     82  1.74.16.1     rmind __KERNEL_RCSID(0, "$NetBSD: zs.c,v 1.74.16.1 2014/05/18 17:45:00 rmind Exp $");
     83       1.40     lukem 
     84        1.1       leo #include <sys/param.h>
     85        1.9       leo #include <sys/systm.h>
     86        1.1       leo #include <sys/proc.h>
     87        1.1       leo #include <sys/device.h>
     88        1.1       leo #include <sys/conf.h>
     89        1.1       leo #include <sys/file.h>
     90        1.1       leo #include <sys/ioctl.h>
     91       1.13       leo #include <sys/malloc.h>
     92        1.1       leo #include <sys/tty.h>
     93        1.1       leo #include <sys/time.h>
     94        1.1       leo #include <sys/kernel.h>
     95        1.1       leo #include <sys/syslog.h>
     96       1.47      elad #include <sys/kauth.h>
     97        1.1       leo 
     98        1.1       leo #include <machine/cpu.h>
     99        1.1       leo #include <machine/iomap.h>
    100        1.1       leo #include <machine/scu.h>
    101        1.1       leo #include <machine/mfp.h>
    102       1.18       leo #include <atari/dev/ym2149reg.h>
    103        1.1       leo 
    104        1.7       cgd #include <dev/ic/z8530reg.h>
    105        1.1       leo #include <atari/dev/zsvar.h>
    106       1.65   tsutsui 
    107       1.65   tsutsui #include "ioconf.h"
    108       1.65   tsutsui 
    109        1.1       leo #include "zs.h"
    110        1.1       leo #if NZS > 1
    111        1.1       leo #error "This driver supports only 1 85C30!"
    112        1.1       leo #endif
    113        1.1       leo 
    114        1.1       leo #if NZS > 0
    115        1.1       leo 
    116       1.12       leo #define PCLK	(8053976)	/* PCLK pin input clock rate */
    117       1.30   mycroft #define PCLK_HD	(9600 * 1536)	/* PCLK on Hades pin input clock rate */
    118        1.1       leo 
    119        1.1       leo #define splzs	spl5
    120        1.1       leo 
    121        1.1       leo /*
    122        1.1       leo  * Software state per found chip.
    123        1.1       leo  */
    124        1.1       leo struct zs_softc {
    125       1.69   tsutsui 	device_t sc_dev;		/* base device */
    126       1.72   tsutsui 	struct zs_chanstate *sc_cs[2];	/* chan A and B software state */
    127       1.72   tsutsui 
    128       1.72   tsutsui 	struct zs_chanstate sc_cs_store[2];
    129       1.72   tsutsui 	void *sc_sicookie;		/* for callback */
    130        1.1       leo };
    131        1.1       leo 
    132        1.1       leo /*
    133        1.1       leo  * Define the registers for a closed port
    134        1.1       leo  */
    135       1.66   tsutsui static uint8_t zs_init_regs[16] = {
    136        1.1       leo /*  0 */	0,
    137        1.1       leo /*  1 */	0,
    138        1.1       leo /*  2 */	0x60,
    139        1.1       leo /*  3 */	0,
    140        1.1       leo /*  4 */	0,
    141        1.1       leo /*  5 */	0,
    142        1.1       leo /*  6 */	0,
    143        1.1       leo /*  7 */	0,
    144        1.1       leo /*  8 */	0,
    145       1.13       leo /*  9 */	ZSWR9_MASTER_IE | ZSWR9_VECTOR_INCL_STAT,
    146        1.1       leo /* 10 */	ZSWR10_NRZ,
    147        1.1       leo /* 11 */	ZSWR11_TXCLK_BAUD | ZSWR11_RXCLK_BAUD,
    148        1.1       leo /* 12 */	0,
    149        1.1       leo /* 13 */	0,
    150        1.1       leo /* 14 */	ZSWR14_BAUD_FROM_PCLK | ZSWR14_BAUD_ENA,
    151        1.1       leo /* 15 */	0
    152        1.1       leo };
    153        1.1       leo 
    154        1.6       leo /*
    155       1.74       wiz  * Define the machine dependent clock frequencies
    156        1.6       leo  * If BRgen feeds sender/receiver we always use a
    157        1.6       leo  * divisor 16, therefor the division by 16 can as
    158        1.6       leo  * well be done here.
    159        1.6       leo  */
    160       1.71   tsutsui static const u_long zs_freqs_tt[] = {
    161        1.6       leo 	/*
    162        1.6       leo 	 * Atari TT, RTxCB is generated by TT-MFP timer C,
    163       1.46     lukem 	 * which is set to 307.2 kHz during initialisation
    164        1.6       leo 	 * and never changed afterwards.
    165        1.6       leo 	 */
    166        1.6       leo 	PCLK/16,	/* BRgen, PCLK,  divisor 16	*/
    167        1.6       leo 	 229500,	/* BRgen, RTxCA, divisor 16	*/
    168        1.6       leo 	3672000,	/* RTxCA, from PCLK4		*/
    169        1.6       leo 	      0,	/* TRxCA, external		*/
    170        1.6       leo 
    171        1.6       leo 	PCLK/16,	/* BRgen, PCLK,  divisor 16	*/
    172        1.6       leo 	  19200,	/* BRgen, RTxCB, divisor 16	*/
    173        1.6       leo 	 307200,	/* RTxCB, from TT-MFP TCO	*/
    174        1.6       leo 	2457600		/* TRxCB, from BCLK		*/
    175        1.6       leo };
    176       1.24       leo 
    177       1.71   tsutsui static const u_long zs_freqs_falcon[] = {
    178        1.6       leo 	/*
    179        1.6       leo 	 * Atari Falcon, XXX no specs available, this might be wrong
    180        1.6       leo 	 */
    181        1.6       leo 	PCLK/16,	/* BRgen, PCLK,  divisor 16	*/
    182        1.6       leo 	 229500,	/* BRgen, RTxCA, divisor 16	*/
    183        1.6       leo 	3672000,	/* RTxCA, ???			*/
    184        1.6       leo 	      0,	/* TRxCA, external		*/
    185        1.6       leo 
    186        1.6       leo 	PCLK/16,	/* BRgen, PCLK,  divisor 16	*/
    187        1.6       leo 	 229500,	/* BRgen, RTxCB, divisor 16	*/
    188        1.6       leo 	3672000,	/* RTxCB, ???			*/
    189        1.6       leo 	2457600		/* TRxCB, ???			*/
    190        1.6       leo };
    191       1.24       leo 
    192       1.71   tsutsui static const u_long zs_freqs_hades[] = {
    193       1.24       leo 	/*
    194       1.24       leo 	 * XXX: Channel-A unchecked!!!!!
    195       1.24       leo 	 */
    196       1.24       leo      PCLK_HD/16,	/* BRgen, PCLK,  divisor 16	*/
    197       1.24       leo 	 229500,	/* BRgen, RTxCA, divisor 16	*/
    198       1.24       leo 	3672000,	/* RTxCA, from PCLK4		*/
    199       1.24       leo 	      0,	/* TRxCA, external		*/
    200       1.24       leo 
    201       1.24       leo      PCLK_HD/16,	/* BRgen, PCLK,  divisor 16	*/
    202       1.24       leo 	 235550,	/* BRgen, RTxCB, divisor 16	*/
    203       1.24       leo 	3768800,	/* RTxCB, 3.7688MHz		*/
    204       1.24       leo 	3768800		/* TRxCB, 3.7688MHz		*/
    205       1.24       leo };
    206       1.24       leo 
    207       1.71   tsutsui static const u_long zs_freqs_generic[] = {
    208        1.6       leo 	/*
    209        1.6       leo 	 * other machines, assume only PCLK is available
    210        1.6       leo 	 */
    211        1.6       leo 	PCLK/16,	/* BRgen, PCLK,  divisor 16	*/
    212        1.6       leo 	      0,	/* BRgen, RTxCA, divisor 16	*/
    213        1.6       leo 	      0,	/* RTxCA, unknown		*/
    214        1.6       leo 	      0,	/* TRxCA, unknown		*/
    215        1.6       leo 
    216        1.6       leo 	PCLK/16,	/* BRgen, PCLK,  divisor 16	*/
    217        1.6       leo 	      0,	/* BRgen, RTxCB, divisor 16	*/
    218        1.6       leo 	      0,	/* RTxCB, unknown		*/
    219        1.6       leo 	      0		/* TRxCB, unknown		*/
    220        1.6       leo };
    221       1.71   tsutsui static const u_long *zs_frequencies;
    222        1.6       leo 
    223        1.1       leo /* Definition of the driver for autoconfig. */
    224       1.69   tsutsui static int	zsmatch(device_t, cfdata_t, void *);
    225       1.69   tsutsui static void	zsattach(device_t, device_t, void *);
    226       1.17   thorpej 
    227       1.69   tsutsui CFATTACH_DECL_NEW(zs, sizeof(struct zs_softc),
    228       1.38   thorpej     zsmatch, zsattach, NULL, NULL);
    229       1.17   thorpej 
    230       1.15       leo /* {b,c}devsw[] function prototypes */
    231       1.15       leo dev_type_open(zsopen);
    232       1.15       leo dev_type_close(zsclose);
    233       1.15       leo dev_type_read(zsread);
    234       1.15       leo dev_type_write(zswrite);
    235       1.15       leo dev_type_ioctl(zsioctl);
    236       1.36   gehenna dev_type_stop(zsstop);
    237       1.16       leo dev_type_tty(zstty);
    238       1.36   gehenna dev_type_poll(zspoll);
    239       1.36   gehenna 
    240       1.36   gehenna const struct cdevsw zs_cdevsw = {
    241  1.74.16.1     rmind 	.d_open = zsopen,
    242  1.74.16.1     rmind 	.d_close = zsclose,
    243  1.74.16.1     rmind 	.d_read = zsread,
    244  1.74.16.1     rmind 	.d_write = zswrite,
    245  1.74.16.1     rmind 	.d_ioctl = zsioctl,
    246  1.74.16.1     rmind 	.d_stop = zsstop,
    247  1.74.16.1     rmind 	.d_tty = zstty,
    248  1.74.16.1     rmind 	.d_poll = zspoll,
    249  1.74.16.1     rmind 	.d_mmap = nommap,
    250  1.74.16.1     rmind 	.d_kqfilter = ttykqfilter,
    251  1.74.16.1     rmind 	.d_flag = D_TTY
    252       1.36   gehenna };
    253       1.15       leo 
    254        1.1       leo /* Interrupt handlers. */
    255       1.72   tsutsui static int	zshard(void *);
    256       1.72   tsutsui static int	zssoft(void *);
    257       1.67   tsutsui static int	zsrint(struct zs_chanstate *, struct zschan *);
    258       1.67   tsutsui static int	zsxint(struct zs_chanstate *, struct zschan *);
    259       1.67   tsutsui static int	zssint(struct zs_chanstate *, struct zschan *);
    260        1.1       leo 
    261        1.1       leo /* Routines called from other code. */
    262       1.59       dsl static void	zsstart(struct tty *);
    263       1.16       leo 
    264       1.16       leo /* Routines purely local to this driver. */
    265       1.59       dsl static void	zsoverrun(int, long *, const char *);
    266       1.59       dsl static int	zsparam(struct tty *, struct termios *);
    267       1.59       dsl static int	zsbaudrate(int, int, int *, int *, int *, int *);
    268       1.59       dsl static int	zs_modem(struct zs_chanstate *, int, int);
    269       1.67   tsutsui static void	zs_loadchannelregs(struct zschan *, uint8_t *);
    270       1.59       dsl static void	zs_shutdown(struct zs_chanstate *);
    271        1.1       leo 
    272        1.4       leo static int
    273       1.69   tsutsui zsmatch(device_t parent, cfdata_t cf, void *aux)
    274        1.1       leo {
    275       1.66   tsutsui 	static int zs_matched = 0;
    276       1.31       leo 
    277       1.69   tsutsui 	if (strcmp("zs", aux) || zs_matched)
    278       1.66   tsutsui 		return 0;
    279       1.31       leo 	zs_matched = 1;
    280       1.66   tsutsui 	return 1;
    281        1.1       leo }
    282        1.1       leo 
    283        1.1       leo /*
    284        1.1       leo  * Attach a found zs.
    285        1.1       leo  */
    286        1.1       leo static void
    287       1.69   tsutsui zsattach(device_t parent, device_t self, void *aux)
    288        1.1       leo {
    289       1.68   tsutsui 	struct zs_softc *sc;
    290       1.72   tsutsui 	struct zsdevice *zs;
    291       1.72   tsutsui 	struct zschan *zc;
    292       1.66   tsutsui 	struct zs_chanstate *cs;
    293       1.72   tsutsui 	int channel;
    294        1.1       leo 
    295       1.72   tsutsui 	sc = device_private(self);
    296       1.69   tsutsui 	sc->sc_dev = self;
    297        1.1       leo 
    298       1.72   tsutsui 	printf(": serial2 on channel a and modem2 on channel b\n");
    299       1.72   tsutsui 
    300       1.72   tsutsui 	zs = (struct zsdevice *)AD_SCC;
    301       1.72   tsutsui 
    302       1.72   tsutsui 	for (channel = 0; channel < 2; channel++) {
    303       1.72   tsutsui 		cs = &sc->sc_cs_store[channel];
    304       1.72   tsutsui 		sc->sc_cs[channel] = cs;
    305       1.72   tsutsui 
    306       1.72   tsutsui 		cs->cs_unit = channel;
    307       1.72   tsutsui 		cs->cs_zc = zc =
    308       1.72   tsutsui 		    (channel == 0) ?  &zs->zs_chan_a : &zs->zs_chan_b;
    309       1.72   tsutsui 		/*
    310       1.72   tsutsui 		 * Get the command register into a known state.
    311       1.72   tsutsui 		 */
    312       1.72   tsutsui 		(void)zc->zc_csr;
    313       1.72   tsutsui 		(void)zc->zc_csr;
    314        1.1       leo 
    315       1.72   tsutsui 		/*
    316       1.72   tsutsui 		 * Do a hardware reset.
    317       1.72   tsutsui 		 */
    318       1.72   tsutsui 		if (channel == 0) {
    319       1.72   tsutsui 			ZS_WRITE(zc, 9, ZSWR9_HARD_RESET);
    320       1.72   tsutsui 			delay(50000);	/* enough ? */
    321       1.72   tsutsui 			ZS_WRITE(zc, 9, 0);
    322       1.72   tsutsui 		}
    323        1.1       leo 
    324       1.72   tsutsui 		/*
    325       1.72   tsutsui 		 * Initialize channel
    326       1.72   tsutsui 		 */
    327       1.72   tsutsui 		zs_loadchannelregs(zc, zs_init_regs);
    328       1.72   tsutsui 	}
    329        1.1       leo 
    330       1.66   tsutsui 	if (machineid & ATARI_TT) {
    331        1.5       leo 		/*
    332        1.6       leo 		 * ininitialise TT-MFP timer C: 307200Hz
    333        1.6       leo 		 * timer C and D share one control register:
    334        1.6       leo 		 *	bits 0-2 control timer D
    335        1.6       leo 		 *	bits 4-6 control timer C
    336        1.6       leo 		 */
    337        1.6       leo 		int cr = MFP2->mf_tcdcr & 7;
    338        1.6       leo 		MFP2->mf_tcdcr = cr;		/* stop timer C  */
    339        1.6       leo 		MFP2->mf_tcdr  = 1;		/* counter 1     */
    340        1.6       leo 		cr |= T_Q004 << 4;		/* divisor 4     */
    341        1.6       leo 		MFP2->mf_tcdcr = cr;		/* start timer C */
    342        1.6       leo 		/*
    343        1.5       leo 		 * enable scc related interrupts
    344        1.5       leo 		 */
    345       1.27       leo 		SCU->vme_mask |= SCU_SCC;
    346        1.6       leo 
    347        1.6       leo 		zs_frequencies = zs_freqs_tt;
    348        1.6       leo 	} else if (machineid & ATARI_FALCON) {
    349        1.6       leo 		zs_frequencies = zs_freqs_falcon;
    350       1.24       leo 	} else if (machineid & ATARI_HADES) {
    351       1.24       leo 		zs_frequencies = zs_freqs_hades;
    352        1.6       leo 	} else {
    353        1.6       leo 		zs_frequencies = zs_freqs_generic;
    354        1.5       leo 	}
    355        1.1       leo 
    356       1.72   tsutsui 	if (intr_establish(36, USER_VEC, 0, (hw_ifun_t)zshard, sc) == NULL)
    357       1.72   tsutsui 		aprint_error_dev(self,
    358       1.72   tsutsui 		    "Can't establish interrupt (Rx chan B)\n");
    359       1.72   tsutsui 	if (intr_establish(32, USER_VEC, 0, (hw_ifun_t)zshard, sc) == NULL)
    360       1.72   tsutsui 		aprint_error_dev(self,
    361       1.72   tsutsui 		    "Can't establish interrupt (Tx empty chan B)\n");
    362       1.72   tsutsui 	if (intr_establish(34, USER_VEC, 0, (hw_ifun_t)zshard, sc) == NULL)
    363       1.72   tsutsui 		aprint_error_dev(self,
    364       1.72   tsutsui 		    "Can't establish interrupt (Ext./Status chan B)\n");
    365       1.72   tsutsui 	if (intr_establish(38, USER_VEC, 0, (hw_ifun_t)zshard, sc) == NULL)
    366       1.72   tsutsui 		aprint_error_dev(self,
    367       1.72   tsutsui 		    "Can't establish interrupt (Special Rx cond. chan B)\n");
    368       1.72   tsutsui 	if (intr_establish(44, USER_VEC, 0, (hw_ifun_t)zshard, sc) == NULL)
    369       1.72   tsutsui 		aprint_error_dev(self,
    370       1.72   tsutsui 		    "Can't establish interrupt (Rx chan A)\n");
    371       1.72   tsutsui 	if (intr_establish(40, USER_VEC, 0, (hw_ifun_t)zshard, sc) == NULL)
    372       1.72   tsutsui 		aprint_error_dev(self,
    373       1.72   tsutsui 		    "Can't establish interrupt (Tx empty chan A)\n");
    374       1.72   tsutsui 	if (intr_establish(42, USER_VEC, 0, (hw_ifun_t)zshard, sc) == NULL)
    375       1.72   tsutsui 		aprint_error_dev(self,
    376       1.72   tsutsui 		    "Can't establish interrupt (Ext./Status chan A)\n");
    377       1.72   tsutsui 	if (intr_establish(46, USER_VEC, 0, (hw_ifun_t)zshard, sc) == NULL)
    378       1.72   tsutsui 		aprint_error_dev(self,
    379       1.72   tsutsui 		    "Can't establish interrupt (Special Rx cond. chan A)\n");
    380       1.58      tjam 
    381       1.72   tsutsui 	sc->sc_sicookie = softint_establish(SOFTINT_SERIAL,
    382       1.72   tsutsui 	    (void (*)(void *))zssoft, sc);
    383        1.1       leo }
    384        1.1       leo 
    385        1.1       leo /*
    386        1.1       leo  * Open a zs serial port.
    387        1.1       leo  */
    388        1.1       leo int
    389       1.60       dsl zsopen(dev_t dev, int flags, int mode, struct lwp *l)
    390        1.1       leo {
    391       1.66   tsutsui 	struct tty *tp;
    392       1.66   tsutsui 	struct zs_chanstate *cs;
    393       1.68   tsutsui 	struct zs_softc *sc;
    394       1.66   tsutsui 	int unit = ZS_UNIT(dev);
    395       1.66   tsutsui 	int zs = unit >> 1;
    396       1.66   tsutsui 	int error, s;
    397        1.1       leo 
    398       1.68   tsutsui 	sc = device_lookup_private(&zs_cd, zs);
    399       1.68   tsutsui 	if (sc == NULL)
    400       1.66   tsutsui 		return ENXIO;
    401       1.72   tsutsui 	cs = sc->sc_cs[unit & 1];
    402       1.10       jtc 
    403       1.10       jtc 	/*
    404       1.10       jtc 	 * When port A (ser02) is selected on the TT, make sure
    405       1.10       jtc 	 * the port is enabled.
    406       1.10       jtc 	 */
    407       1.66   tsutsui 	if ((machineid & ATARI_TT) && !(unit & 1))
    408       1.26       leo 		ym2149_ser2(1);
    409       1.13       leo 
    410       1.13       leo 	if (cs->cs_rbuf == NULL) {
    411       1.13       leo 		cs->cs_rbuf = malloc(ZLRB_RING_SIZE * sizeof(int), M_DEVBUF,
    412       1.66   tsutsui 		    M_WAITOK);
    413       1.10       jtc 	}
    414       1.10       jtc 
    415        1.1       leo 	tp = cs->cs_ttyp;
    416       1.70   tsutsui 	if (tp == NULL) {
    417       1.73     rmind 		cs->cs_ttyp = tp = tty_alloc();
    418       1.21       leo 		tty_attach(tp);
    419       1.21       leo 		tp->t_dev   = dev;
    420       1.21       leo 		tp->t_oproc = zsstart;
    421       1.21       leo 		tp->t_param = zsparam;
    422        1.1       leo 	}
    423        1.1       leo 
    424       1.50      elad 	if (kauth_authorize_device_tty(l->l_cred, KAUTH_DEVICE_TTY_OPEN, tp))
    425       1.66   tsutsui 		return EBUSY;
    426       1.29       leo 
    427        1.1       leo 	s  = spltty();
    428       1.29       leo 
    429       1.29       leo 	/*
    430       1.29       leo 	 * Do the following iff this is a first open.
    431       1.29       leo 	 */
    432       1.66   tsutsui 	if ((tp->t_state & TS_ISOPEN) == 0 && tp->t_wopen == 0) {
    433       1.70   tsutsui 		if (tp->t_ispeed == 0) {
    434        1.1       leo 			tp->t_iflag = TTYDEF_IFLAG;
    435        1.1       leo 			tp->t_oflag = TTYDEF_OFLAG;
    436        1.1       leo 			tp->t_cflag = TTYDEF_CFLAG;
    437        1.1       leo 			tp->t_lflag = TTYDEF_LFLAG;
    438        1.1       leo 			tp->t_ispeed = tp->t_ospeed = TTYDEF_SPEED;
    439        1.1       leo 		}
    440       1.29       leo 		ttychars(tp);
    441       1.29       leo 		ttsetwater(tp);
    442       1.29       leo 
    443        1.1       leo 		(void)zsparam(tp, &tp->t_termios);
    444       1.29       leo 
    445       1.29       leo 		/*
    446       1.29       leo 		 * Turn on DTR.  We must always do this, even if carrier is not
    447       1.29       leo 		 * present, because otherwise we'd have to use TIOCSDTR
    448       1.29       leo 		 * immediately after setting CLOCAL, which applications do not
    449       1.29       leo 		 * expect.  We always assert DTR while the device is open
    450       1.29       leo 		 * unless explicitly requested to deassert it.
    451       1.29       leo 		 */
    452        1.1       leo 		zs_modem(cs, ZSWR5_RTS|ZSWR5_DTR, DMSET);
    453        1.8       leo 		/* May never get a status intr. if DCD already on. -gwr */
    454       1.66   tsutsui 		if (((cs->cs_rr0 = cs->cs_zc->zc_csr) & ZSRR0_DCD) != 0)
    455        1.8       leo 			tp->t_state |= TS_CARR_ON;
    456       1.70   tsutsui 		if (cs->cs_softcar)
    457        1.1       leo 			tp->t_state |= TS_CARR_ON;
    458        1.1       leo 	}
    459       1.29       leo 
    460        1.1       leo 	splx(s);
    461       1.29       leo 
    462       1.29       leo 	error = ttyopen(tp, ZS_DIALOUT(dev), (flags & O_NONBLOCK));
    463       1.29       leo 	if (error)
    464       1.29       leo 		goto bad;
    465       1.29       leo 
    466       1.32       eeh 	error = tp->t_linesw->l_open(dev, tp);
    467       1.66   tsutsui 	if (error)
    468       1.29       leo 		goto bad;
    469       1.66   tsutsui 	return 0;
    470       1.29       leo 
    471       1.29       leo bad:
    472       1.66   tsutsui 	if ((tp->t_state & TS_ISOPEN) == 0 && tp->t_wopen == 0) {
    473       1.29       leo 		/*
    474       1.29       leo 		 * We failed to open the device, and nobody else had it opened.
    475       1.29       leo 		 * Clean up the state as appropriate.
    476       1.29       leo 		 */
    477       1.29       leo 		zs_shutdown(cs);
    478       1.29       leo 	}
    479       1.66   tsutsui 	return error;
    480        1.1       leo }
    481        1.1       leo 
    482        1.1       leo /*
    483        1.1       leo  * Close a zs serial port.
    484        1.1       leo  */
    485        1.1       leo int
    486       1.60       dsl zsclose(dev_t dev, int flags, int mode, struct lwp *l)
    487        1.1       leo {
    488       1.66   tsutsui 	struct zs_chanstate *cs;
    489       1.66   tsutsui 	struct tty *tp;
    490       1.68   tsutsui 	struct zs_softc *sc;
    491       1.66   tsutsui 	int unit = ZS_UNIT(dev);
    492        1.1       leo 
    493       1.68   tsutsui 	sc = device_lookup_private(&zs_cd, unit >> 1);
    494       1.72   tsutsui 	cs = sc->sc_cs[unit & 1];
    495        1.1       leo 	tp = cs->cs_ttyp;
    496       1.29       leo 
    497       1.32       eeh 	tp->t_linesw->l_close(tp, flags);
    498        1.1       leo 	ttyclose(tp);
    499        1.1       leo 
    500       1.66   tsutsui 	if ((tp->t_state & TS_ISOPEN) == 0 && tp->t_wopen == 0) {
    501       1.29       leo 		/*
    502       1.29       leo 		 * Although we got a last close, the device may still be in
    503       1.29       leo 		 * use; e.g. if this was the dialout node, and there are still
    504       1.29       leo 		 * processes waiting for carrier on the non-dialout node.
    505       1.29       leo 		 */
    506       1.29       leo 		zs_shutdown(cs);
    507       1.29       leo 	}
    508       1.66   tsutsui 	return 0;
    509        1.1       leo }
    510        1.1       leo 
    511        1.1       leo /*
    512        1.1       leo  * Read/write zs serial port.
    513        1.1       leo  */
    514        1.1       leo int
    515       1.60       dsl zsread(dev_t dev, struct uio *uio, int flags)
    516        1.1       leo {
    517       1.66   tsutsui 	struct zs_chanstate *cs;
    518       1.68   tsutsui 	struct zs_softc *sc;
    519       1.66   tsutsui 	struct tty *tp;
    520       1.66   tsutsui 	int unit;
    521        1.4       leo 
    522        1.4       leo 	unit = ZS_UNIT(dev);
    523       1.68   tsutsui 	sc   = device_lookup_private(&zs_cd, unit >> 1);
    524       1.72   tsutsui 	cs   = sc->sc_cs[unit & 1];
    525        1.4       leo 	tp   = cs->cs_ttyp;
    526        1.1       leo 
    527       1.66   tsutsui 	return (*tp->t_linesw->l_read)(tp, uio, flags);
    528        1.1       leo }
    529        1.1       leo 
    530        1.4       leo int
    531       1.60       dsl zswrite(dev_t dev, struct uio *uio, int flags)
    532        1.1       leo {
    533       1.66   tsutsui 	struct zs_chanstate *cs;
    534       1.68   tsutsui 	struct zs_softc *sc;
    535       1.66   tsutsui 	struct tty *tp;
    536       1.66   tsutsui 	int unit;
    537        1.4       leo 
    538        1.4       leo 	unit = ZS_UNIT(dev);
    539       1.68   tsutsui 	sc   = device_lookup_private(&zs_cd, unit >> 1);
    540       1.72   tsutsui 	cs   = sc->sc_cs[unit & 1];
    541        1.4       leo 	tp   = cs->cs_ttyp;
    542        1.1       leo 
    543       1.66   tsutsui 	return (*tp->t_linesw->l_write)(tp, uio, flags);
    544       1.34       scw }
    545       1.34       scw 
    546       1.34       scw int
    547       1.60       dsl zspoll(dev_t dev, int events, struct lwp *l)
    548       1.34       scw {
    549       1.66   tsutsui 	struct zs_chanstate *cs;
    550       1.68   tsutsui 	struct zs_softc *sc;
    551       1.66   tsutsui 	struct tty *tp;
    552       1.66   tsutsui 	int unit;
    553       1.34       scw 
    554       1.34       scw 	unit = ZS_UNIT(dev);
    555       1.68   tsutsui 	sc   = device_lookup_private(&zs_cd, unit >> 1);
    556       1.72   tsutsui 	cs   = sc->sc_cs[unit & 1];
    557       1.34       scw 	tp   = cs->cs_ttyp;
    558       1.34       scw 
    559       1.66   tsutsui 	return (*tp->t_linesw->l_poll)(tp, events, l);
    560        1.4       leo }
    561        1.4       leo 
    562        1.4       leo struct tty *
    563       1.60       dsl zstty(dev_t dev)
    564        1.4       leo {
    565       1.66   tsutsui 	struct zs_chanstate *cs;
    566       1.68   tsutsui 	struct zs_softc *sc;
    567       1.66   tsutsui 	int unit;
    568        1.4       leo 
    569        1.4       leo 	unit = ZS_UNIT(dev);
    570       1.68   tsutsui 	sc   = device_lookup_private(&zs_cd, unit >> 1);
    571       1.72   tsutsui 	cs   = sc->sc_cs[unit & 1];
    572       1.66   tsutsui 	return cs->cs_ttyp;
    573        1.1       leo }
    574        1.1       leo 
    575        1.1       leo /*
    576        1.1       leo  * ZS hardware interrupt.  Scan all ZS channels.  NB: we know here that
    577        1.1       leo  * channels are kept in (A,B) pairs.
    578        1.1       leo  *
    579        1.1       leo  * Do just a little, then get out; set a software interrupt if more
    580        1.1       leo  * work is needed.
    581        1.1       leo  *
    582        1.1       leo  * We deliberately ignore the vectoring Zilog gives us, and match up
    583        1.1       leo  * only the number of `reset interrupt under service' operations, not
    584        1.1       leo  * the order.
    585        1.1       leo  */
    586        1.8       leo 
    587        1.1       leo int
    588       1.72   tsutsui zshard(void *arg)
    589        1.1       leo {
    590       1.72   tsutsui 	struct zs_softc *sc;
    591       1.72   tsutsui 	struct zs_chanstate *cs0, *cs1;
    592       1.67   tsutsui 	struct zschan *zc;
    593       1.72   tsutsui 	int intflags, v, i;
    594       1.72   tsutsui 	uint8_t rr3;
    595       1.72   tsutsui 
    596       1.72   tsutsui 	sc = arg;
    597       1.72   tsutsui 	intflags = 0;
    598       1.72   tsutsui 	cs0 = sc->sc_cs[0];
    599       1.72   tsutsui 	cs1 = sc->sc_cs[1];
    600        1.1       leo 
    601        1.8       leo 	do {
    602       1.66   tsutsui 		intflags &= ~4;
    603       1.72   tsutsui 		rr3 = ZS_READ(cs0->cs_zc, 3);
    604       1.72   tsutsui 		if (rr3 & (ZSRR3_IP_A_RX | ZSRR3_IP_A_TX | ZSRR3_IP_A_STAT)) {
    605       1.72   tsutsui 			intflags |= 4 | 2;
    606       1.72   tsutsui 			zc = cs0->cs_zc;
    607       1.72   tsutsui 			i  = cs0->cs_rbput;
    608       1.72   tsutsui 			if ((rr3 & ZSRR3_IP_A_RX) != 0 &&
    609       1.72   tsutsui 			    (v = zsrint(cs0, zc)) != 0) {
    610       1.72   tsutsui 				cs0->cs_rbuf[i++ & ZLRB_RING_MASK] = v;
    611       1.72   tsutsui 				intflags |= 1;
    612       1.72   tsutsui 			}
    613       1.72   tsutsui 			if ((rr3 & ZSRR3_IP_A_TX) != 0 &&
    614       1.72   tsutsui 			    (v = zsxint(cs0, zc)) != 0) {
    615       1.72   tsutsui 				cs0->cs_rbuf[i++ & ZLRB_RING_MASK] = v;
    616       1.72   tsutsui 				intflags |= 1;
    617       1.72   tsutsui 			}
    618       1.72   tsutsui 			if ((rr3 & ZSRR3_IP_A_STAT) != 0 &&
    619       1.72   tsutsui 			    (v = zssint(cs0, zc)) != 0) {
    620       1.72   tsutsui 				cs0->cs_rbuf[i++ & ZLRB_RING_MASK] = v;
    621       1.72   tsutsui 				intflags |= 1;
    622       1.72   tsutsui 			}
    623       1.72   tsutsui 			cs0->cs_rbput = i;
    624       1.72   tsutsui 		}
    625       1.72   tsutsui 		if (rr3 & (ZSRR3_IP_B_RX | ZSRR3_IP_B_TX | ZSRR3_IP_B_STAT)) {
    626       1.72   tsutsui 			intflags |= 4 | 2;
    627       1.72   tsutsui 			zc = cs1->cs_zc;
    628       1.72   tsutsui 			i  = cs1->cs_rbput;
    629       1.72   tsutsui 			if ((rr3 & ZSRR3_IP_B_RX) != 0 &&
    630       1.72   tsutsui 			    (v = zsrint(cs1, zc)) != 0) {
    631       1.72   tsutsui 				cs1->cs_rbuf[i++ & ZLRB_RING_MASK] = v;
    632       1.72   tsutsui 				intflags |= 1;
    633       1.72   tsutsui 			}
    634       1.72   tsutsui 			if ((rr3 & ZSRR3_IP_B_TX) != 0 &&
    635       1.72   tsutsui 			    (v = zsxint(cs1, zc)) != 0) {
    636       1.72   tsutsui 				cs1->cs_rbuf[i++ & ZLRB_RING_MASK] = v;
    637       1.72   tsutsui 				intflags |= 1;
    638        1.1       leo 			}
    639       1.72   tsutsui 			if ((rr3 & ZSRR3_IP_B_STAT) != 0 &&
    640       1.72   tsutsui 			    (v = zssint(cs1, zc)) != 0) {
    641       1.72   tsutsui 				cs1->cs_rbuf[i++ & ZLRB_RING_MASK] = v;
    642       1.72   tsutsui 				intflags |= 1;
    643        1.1       leo 			}
    644       1.72   tsutsui 			cs1->cs_rbput = i;
    645        1.1       leo 		}
    646       1.66   tsutsui 	} while (intflags & 4);
    647        1.1       leo 
    648       1.66   tsutsui 	if (intflags & 1)
    649       1.72   tsutsui 		softint_schedule(sc->sc_sicookie);
    650       1.58      tjam 
    651       1.66   tsutsui 	return intflags & 2;
    652        1.1       leo }
    653        1.1       leo 
    654        1.1       leo static int
    655       1.67   tsutsui zsrint(struct zs_chanstate *cs, struct zschan *zc)
    656        1.1       leo {
    657       1.66   tsutsui 	int c;
    658        1.1       leo 
    659        1.8       leo 	/*
    660        1.8       leo 	 * First read the status, because read of the received char
    661        1.8       leo 	 * destroy the status of this char.
    662        1.8       leo 	 */
    663        1.8       leo 	c = ZS_READ(zc, 1);
    664        1.8       leo 	c |= (zc->zc_data << 8);
    665        1.1       leo 
    666        1.1       leo 	/* clear receive error & interrupt condition */
    667        1.1       leo 	zc->zc_csr = ZSWR0_RESET_ERRORS;
    668        1.1       leo 	zc->zc_csr = ZSWR0_CLR_INTR;
    669        1.1       leo 
    670       1.66   tsutsui 	return ZRING_MAKE(ZRING_RINT, c);
    671        1.1       leo }
    672        1.1       leo 
    673        1.1       leo static int
    674       1.67   tsutsui zsxint(struct zs_chanstate *cs, struct zschan *zc)
    675        1.1       leo {
    676       1.66   tsutsui 	int i = cs->cs_tbc;
    677        1.1       leo 
    678       1.66   tsutsui 	if (i == 0) {
    679        1.1       leo 		zc->zc_csr = ZSWR0_RESET_TXINT;
    680        1.1       leo 		zc->zc_csr = ZSWR0_CLR_INTR;
    681       1.66   tsutsui 		return ZRING_MAKE(ZRING_XINT, 0);
    682        1.1       leo 	}
    683        1.1       leo 	cs->cs_tbc = i - 1;
    684        1.1       leo 	zc->zc_data = *cs->cs_tba++;
    685        1.1       leo 	zc->zc_csr = ZSWR0_CLR_INTR;
    686       1.66   tsutsui 	return 0;
    687        1.1       leo }
    688        1.1       leo 
    689        1.1       leo static int
    690       1.67   tsutsui zssint(struct zs_chanstate *cs, struct zschan *zc)
    691        1.1       leo {
    692       1.66   tsutsui 	int rr0;
    693        1.1       leo 
    694        1.1       leo 	rr0 = zc->zc_csr;
    695        1.1       leo 	zc->zc_csr = ZSWR0_RESET_STATUS;
    696        1.1       leo 	zc->zc_csr = ZSWR0_CLR_INTR;
    697        1.1       leo 	/*
    698        1.1       leo 	 * The chip's hardware flow control is, as noted in zsreg.h,
    699        1.1       leo 	 * busted---if the DCD line goes low the chip shuts off the
    700        1.1       leo 	 * receiver (!).  If we want hardware CTS flow control but do
    701        1.1       leo 	 * not have it, and carrier is now on, turn HFC on; if we have
    702        1.1       leo 	 * HFC now but carrier has gone low, turn it off.
    703        1.1       leo 	 */
    704       1.66   tsutsui 	if (rr0 & ZSRR0_DCD) {
    705       1.66   tsutsui 		if (cs->cs_ttyp->t_cflag & CCTS_OFLOW &&
    706        1.1       leo 		    (cs->cs_creg[3] & ZSWR3_HFC) == 0) {
    707        1.1       leo 			cs->cs_creg[3] |= ZSWR3_HFC;
    708        1.1       leo 			ZS_WRITE(zc, 3, cs->cs_creg[3]);
    709        1.1       leo 		}
    710       1.66   tsutsui 	} else {
    711        1.1       leo 		if (cs->cs_creg[3] & ZSWR3_HFC) {
    712        1.1       leo 			cs->cs_creg[3] &= ~ZSWR3_HFC;
    713        1.1       leo 			ZS_WRITE(zc, 3, cs->cs_creg[3]);
    714        1.1       leo 		}
    715        1.1       leo 	}
    716       1.66   tsutsui 	return ZRING_MAKE(ZRING_SINT, rr0);
    717        1.1       leo }
    718        1.1       leo 
    719        1.1       leo /*
    720        1.1       leo  * Print out a ring or fifo overrun error message.
    721        1.1       leo  */
    722        1.1       leo static void
    723       1.60       dsl zsoverrun(int unit, long *ptime, const char *what)
    724        1.1       leo {
    725       1.55     joerg 	time_t cur_sec = time_second;
    726        1.1       leo 
    727       1.70   tsutsui 	if (*ptime != cur_sec) {
    728       1.55     joerg 		*ptime = cur_sec;
    729        1.1       leo 		log(LOG_WARNING, "zs%d%c: %s overrun\n", unit >> 1,
    730        1.1       leo 		    (unit & 1) + 'a', what);
    731        1.1       leo 	}
    732        1.1       leo }
    733        1.1       leo 
    734        1.1       leo /*
    735        1.1       leo  * ZS software interrupt.  Scan all channels for deferred interrupts.
    736        1.1       leo  */
    737        1.1       leo int
    738       1.72   tsutsui zssoft(void *arg)
    739        1.1       leo {
    740       1.72   tsutsui 	struct zs_softc *sc;
    741       1.66   tsutsui 	struct zs_chanstate *cs;
    742       1.67   tsutsui 	struct zschan *zc;
    743       1.66   tsutsui 	struct linesw *line;
    744       1.66   tsutsui 	struct tty *tp;
    745       1.72   tsutsui 	int chan, get, n, c, cc, s;
    746       1.66   tsutsui 	int retval = 0;
    747       1.66   tsutsui 
    748       1.72   tsutsui 	sc = arg;
    749       1.66   tsutsui 	s = spltty();
    750       1.72   tsutsui 	for (chan = 0; chan < 2; chan++) {
    751       1.72   tsutsui 		cs = sc->sc_cs[chan];
    752       1.66   tsutsui 		get = cs->cs_rbget;
    753        1.1       leo again:
    754       1.66   tsutsui 		n = cs->cs_rbput;	/* atomic			*/
    755       1.66   tsutsui 		if (get == n)		/* nothing more on this line	*/
    756       1.66   tsutsui 			continue;
    757       1.66   tsutsui 		retval = 1;
    758       1.66   tsutsui 		zc     = cs->cs_zc;
    759       1.66   tsutsui 		tp     = cs->cs_ttyp;
    760       1.66   tsutsui 		line   = tp->t_linesw;
    761       1.66   tsutsui 		/*
    762       1.66   tsutsui 		 * Compute the number of interrupts in the receive ring.
    763       1.66   tsutsui 		 * If the count is overlarge, we lost some events, and
    764       1.66   tsutsui 		 * must advance to the first valid one.  It may get
    765       1.66   tsutsui 		 * overwritten if more data are arriving, but this is
    766       1.66   tsutsui 		 * too expensive to check and gains nothing (we already
    767       1.66   tsutsui 		 * lost out; all we can do at this point is trade one
    768       1.66   tsutsui 		 * kind of loss for another).
    769       1.66   tsutsui 		 */
    770       1.66   tsutsui 		n -= get;
    771       1.66   tsutsui 		if (n > ZLRB_RING_SIZE) {
    772       1.72   tsutsui 			zsoverrun(chan, &cs->cs_rotime, "ring");
    773       1.66   tsutsui 			get += n - ZLRB_RING_SIZE;
    774       1.66   tsutsui 			n    = ZLRB_RING_SIZE;
    775       1.66   tsutsui 		}
    776       1.66   tsutsui 		while (--n >= 0) {
    777       1.66   tsutsui 			/* race to keep ahead of incoming interrupts */
    778       1.66   tsutsui 			c = cs->cs_rbuf[get++ & ZLRB_RING_MASK];
    779       1.66   tsutsui 			switch (ZRING_TYPE(c)) {
    780       1.66   tsutsui 
    781       1.66   tsutsui 			case ZRING_RINT:
    782       1.66   tsutsui 				c = ZRING_VALUE(c);
    783       1.66   tsutsui 				if ((c & ZSRR1_DO) != 0)
    784       1.72   tsutsui 					zsoverrun(chan, &cs->cs_fotime, "fifo");
    785       1.66   tsutsui 				cc = c >> 8;
    786       1.66   tsutsui 				if ((c & ZSRR1_FE) != 0)
    787       1.66   tsutsui 					cc |= TTY_FE;
    788       1.66   tsutsui 				if ((c & ZSRR1_PE) != 0)
    789       1.66   tsutsui 					cc |= TTY_PE;
    790       1.66   tsutsui 				line->l_rint(cc, tp);
    791       1.66   tsutsui 				break;
    792       1.66   tsutsui 
    793       1.66   tsutsui 			case ZRING_XINT:
    794       1.66   tsutsui 				/*
    795       1.66   tsutsui 				 * Transmit done: change registers and resume,
    796       1.66   tsutsui 				 * or clear BUSY.
    797       1.66   tsutsui 				 */
    798       1.66   tsutsui 				if (cs->cs_heldchange) {
    799       1.66   tsutsui 					int sps;
    800       1.66   tsutsui 
    801       1.66   tsutsui 					sps = splzs();
    802       1.66   tsutsui 					c = zc->zc_csr;
    803       1.66   tsutsui 					if ((c & ZSRR0_DCD) == 0)
    804       1.66   tsutsui 						cs->cs_preg[3] &= ~ZSWR3_HFC;
    805       1.66   tsutsui 					memcpy((void *)cs->cs_creg,
    806       1.66   tsutsui 					    (void *)cs->cs_preg, 16);
    807       1.66   tsutsui 					zs_loadchannelregs(zc, cs->cs_creg);
    808       1.66   tsutsui 					splx(sps);
    809       1.66   tsutsui 					cs->cs_heldchange = 0;
    810       1.66   tsutsui 					if (cs->cs_heldtbc &&
    811       1.66   tsutsui 					    (tp->t_state & TS_TTSTOP) == 0) {
    812       1.66   tsutsui 						cs->cs_tbc = cs->cs_heldtbc - 1;
    813       1.66   tsutsui 						zc->zc_data = *cs->cs_tba++;
    814       1.66   tsutsui 						goto again;
    815       1.66   tsutsui 					}
    816       1.66   tsutsui 				}
    817       1.66   tsutsui 				tp->t_state &= ~TS_BUSY;
    818       1.66   tsutsui 				if ((tp->t_state & TS_FLUSH) != 0)
    819       1.66   tsutsui 					tp->t_state &= ~TS_FLUSH;
    820       1.66   tsutsui 				else
    821       1.66   tsutsui 					ndflush(&tp->t_outq,
    822       1.66   tsutsui 					    cs->cs_tba - tp->t_outq.c_cf);
    823       1.66   tsutsui 				line->l_start(tp);
    824       1.66   tsutsui 				break;
    825        1.1       leo 
    826       1.66   tsutsui 			case ZRING_SINT:
    827       1.66   tsutsui 				/*
    828       1.66   tsutsui 				 * Status line change.  HFC bit is run in
    829       1.66   tsutsui 				 * hardware interrupt, to avoid locking
    830       1.66   tsutsui 				 * at splzs here.
    831       1.66   tsutsui 				 */
    832       1.66   tsutsui 				c = ZRING_VALUE(c);
    833       1.66   tsutsui 				if (((c ^ cs->cs_rr0) & ZSRR0_DCD) != 0) {
    834       1.66   tsutsui 					cc = (c & ZSRR0_DCD) != 0;
    835       1.66   tsutsui 					if (line->l_modem(tp, cc) == 0)
    836       1.66   tsutsui 						zs_modem(cs,
    837       1.66   tsutsui 						    ZSWR5_RTS | ZSWR5_DTR,
    838       1.66   tsutsui 						    cc ? DMBIS : DMBIC);
    839        1.1       leo 				}
    840       1.66   tsutsui 				cs->cs_rr0 = c;
    841       1.66   tsutsui 				break;
    842        1.1       leo 
    843       1.66   tsutsui 			default:
    844       1.66   tsutsui 				log(LOG_ERR, "zs%d%c: bad ZRING_TYPE (%x)\n",
    845       1.72   tsutsui 				    chan >> 1, (chan & 1) + 'a', c);
    846       1.66   tsutsui 				break;
    847        1.1       leo 			}
    848        1.1       leo 		}
    849       1.66   tsutsui 		cs->cs_rbget = get;
    850       1.66   tsutsui 		goto again;
    851        1.1       leo 	}
    852       1.66   tsutsui 	splx(s);
    853       1.66   tsutsui 	return retval;
    854        1.1       leo }
    855        1.1       leo 
    856        1.1       leo int
    857       1.60       dsl zsioctl(dev_t dev, u_long cmd, void * data, int flag, struct lwp *l)
    858        1.1       leo {
    859       1.66   tsutsui 	int unit = ZS_UNIT(dev);
    860       1.68   tsutsui 	struct zs_softc *sc = device_lookup_private(&zs_cd, unit >> 1);
    861       1.72   tsutsui 	struct zs_chanstate *cs = sc->sc_cs[unit & 1];
    862       1.72   tsutsui 	struct tty *tp = cs->cs_ttyp;
    863       1.66   tsutsui 	int error, s;
    864        1.1       leo 
    865       1.45  christos 	error = tp->t_linesw->l_ioctl(tp, cmd, data, flag, l);
    866       1.66   tsutsui 	if (error != EPASSTHROUGH)
    867       1.66   tsutsui 		return error;
    868       1.35    atatat 
    869       1.45  christos 	error = ttioctl(tp, cmd, data, flag, l);
    870       1.66   tsutsui 	if (error !=EPASSTHROUGH)
    871       1.66   tsutsui 		return error;
    872        1.1       leo 
    873        1.1       leo 	switch (cmd) {
    874        1.1       leo 	case TIOCSBRK:
    875        1.1       leo 		s = splzs();
    876        1.1       leo 		cs->cs_preg[5] |= ZSWR5_BREAK;
    877        1.1       leo 		cs->cs_creg[5] |= ZSWR5_BREAK;
    878        1.1       leo 		ZS_WRITE(cs->cs_zc, 5, cs->cs_creg[5]);
    879        1.1       leo 		splx(s);
    880        1.1       leo 		break;
    881        1.1       leo 	case TIOCCBRK:
    882        1.1       leo 		s = splzs();
    883        1.1       leo 		cs->cs_preg[5] &= ~ZSWR5_BREAK;
    884        1.1       leo 		cs->cs_creg[5] &= ~ZSWR5_BREAK;
    885        1.1       leo 		ZS_WRITE(cs->cs_zc, 5, cs->cs_creg[5]);
    886        1.1       leo 		splx(s);
    887        1.1       leo 		break;
    888        1.1       leo 	case TIOCGFLAGS: {
    889        1.1       leo 		int bits = 0;
    890        1.1       leo 
    891       1.66   tsutsui 		if (cs->cs_softcar)
    892        1.1       leo 			bits |= TIOCFLAG_SOFTCAR;
    893       1.66   tsutsui 		if ((cs->cs_creg[15] & ZSWR15_DCD_IE) != 0)
    894        1.1       leo 			bits |= TIOCFLAG_CLOCAL;
    895       1.66   tsutsui 		if ((cs->cs_creg[3] & ZSWR3_HFC) != 0)
    896        1.1       leo 			bits |= TIOCFLAG_CRTSCTS;
    897        1.1       leo 		*(int *)data = bits;
    898        1.1       leo 		break;
    899        1.1       leo 	}
    900        1.1       leo 	case TIOCSFLAGS: {
    901       1.15       leo 		int userbits = 0;
    902        1.1       leo 
    903       1.51      elad 		error = kauth_authorize_device_tty(l->l_cred,
    904       1.51      elad 		    KAUTH_DEVICE_TTY_PRIVSET, tp);
    905       1.66   tsutsui 		if (error != 0)
    906       1.66   tsutsui 			return EPERM;
    907        1.1       leo 
    908        1.1       leo 		userbits = *(int *)data;
    909        1.1       leo 
    910        1.1       leo 		/*
    911        1.1       leo 		 * can have `local' or `softcar', and `rtscts' or `mdmbuf'
    912        1.1       leo 		 # defaulting to software flow control.
    913        1.1       leo 		 */
    914       1.66   tsutsui 		if ((userbits & TIOCFLAG_SOFTCAR) != 0 &&
    915       1.66   tsutsui 		    (userbits & TIOCFLAG_CLOCAL) != 0)
    916       1.66   tsutsui 			return EINVAL;
    917       1.66   tsutsui 		if ((userbits & TIOCFLAG_MDMBUF) != 0)
    918       1.66   tsutsui 			/* don't support this (yet?) */
    919       1.66   tsutsui 			return ENODEV;
    920        1.1       leo 
    921        1.1       leo 		s = splzs();
    922       1.66   tsutsui 		if ((userbits & TIOCFLAG_SOFTCAR) != 0) {
    923        1.1       leo 			cs->cs_softcar = 1;	/* turn on softcar */
    924        1.1       leo 			cs->cs_preg[15] &= ~ZSWR15_DCD_IE; /* turn off dcd */
    925        1.1       leo 			cs->cs_creg[15] &= ~ZSWR15_DCD_IE;
    926        1.1       leo 			ZS_WRITE(cs->cs_zc, 15, cs->cs_creg[15]);
    927       1.66   tsutsui 		} else if ((userbits & TIOCFLAG_CLOCAL) != 0) {
    928        1.1       leo 			cs->cs_softcar = 0; 	/* turn off softcar */
    929        1.1       leo 			cs->cs_preg[15] |= ZSWR15_DCD_IE; /* turn on dcd */
    930        1.1       leo 			cs->cs_creg[15] |= ZSWR15_DCD_IE;
    931        1.1       leo 			ZS_WRITE(cs->cs_zc, 15, cs->cs_creg[15]);
    932        1.1       leo 			tp->t_termios.c_cflag |= CLOCAL;
    933        1.1       leo 		}
    934       1.66   tsutsui 		if ((userbits & TIOCFLAG_CRTSCTS) != 0) {
    935        1.1       leo 			cs->cs_preg[15] |= ZSWR15_CTS_IE;
    936        1.1       leo 			cs->cs_creg[15] |= ZSWR15_CTS_IE;
    937        1.1       leo 			ZS_WRITE(cs->cs_zc, 15, cs->cs_creg[15]);
    938        1.1       leo 			cs->cs_preg[3] |= ZSWR3_HFC;
    939        1.1       leo 			cs->cs_creg[3] |= ZSWR3_HFC;
    940        1.1       leo 			ZS_WRITE(cs->cs_zc, 3, cs->cs_creg[3]);
    941        1.1       leo 			tp->t_termios.c_cflag |= CRTSCTS;
    942       1.66   tsutsui 		} else {
    943        1.1       leo 			/* no mdmbuf, so we must want software flow control */
    944        1.1       leo 			cs->cs_preg[15] &= ~ZSWR15_CTS_IE;
    945        1.1       leo 			cs->cs_creg[15] &= ~ZSWR15_CTS_IE;
    946        1.1       leo 			ZS_WRITE(cs->cs_zc, 15, cs->cs_creg[15]);
    947        1.1       leo 			cs->cs_preg[3] &= ~ZSWR3_HFC;
    948        1.1       leo 			cs->cs_creg[3] &= ~ZSWR3_HFC;
    949        1.1       leo 			ZS_WRITE(cs->cs_zc, 3, cs->cs_creg[3]);
    950        1.1       leo 			tp->t_termios.c_cflag &= ~CRTSCTS;
    951        1.1       leo 		}
    952        1.1       leo 		splx(s);
    953        1.1       leo 		break;
    954        1.1       leo 	}
    955        1.1       leo 	case TIOCSDTR:
    956        1.1       leo 		zs_modem(cs, ZSWR5_DTR, DMBIS);
    957        1.1       leo 		break;
    958        1.1       leo 	case TIOCCDTR:
    959        1.1       leo 		zs_modem(cs, ZSWR5_DTR, DMBIC);
    960        1.1       leo 		break;
    961        1.1       leo 	case TIOCMGET:
    962        1.1       leo 		zs_modem(cs, 0, DMGET);
    963        1.1       leo 		break;
    964        1.1       leo 	case TIOCMSET:
    965        1.1       leo 	case TIOCMBIS:
    966        1.1       leo 	case TIOCMBIC:
    967        1.1       leo 	default:
    968       1.66   tsutsui 		return EPASSTHROUGH;
    969        1.1       leo 	}
    970       1.66   tsutsui 	return 0;
    971        1.1       leo }
    972        1.1       leo 
    973        1.1       leo /*
    974        1.1       leo  * Start or restart transmission.
    975        1.1       leo  */
    976        1.1       leo static void
    977       1.66   tsutsui zsstart(struct tty *tp)
    978        1.1       leo {
    979       1.66   tsutsui 	struct zs_chanstate *cs;
    980       1.66   tsutsui 	int s, nch;
    981       1.66   tsutsui 	int unit = ZS_UNIT(tp->t_dev);
    982       1.68   tsutsui 	struct zs_softc *sc = device_lookup_private(&zs_cd, unit >> 1);
    983        1.1       leo 
    984       1.72   tsutsui 	cs = sc->sc_cs[unit & 1];
    985        1.1       leo 	s  = spltty();
    986        1.1       leo 
    987        1.1       leo 	/*
    988        1.1       leo 	 * If currently active or delaying, no need to do anything.
    989        1.1       leo 	 */
    990       1.66   tsutsui 	if ((tp->t_state & (TS_TIMEOUT | TS_BUSY | TS_TTSTOP)) != 0)
    991        1.1       leo 		goto out;
    992        1.1       leo 
    993        1.1       leo 	/*
    994        1.1       leo 	 * If there are sleepers, and output has drained below low
    995        1.1       leo 	 * water mark, awaken.
    996        1.1       leo 	 */
    997       1.54        ad 	ttypull(tp);
    998        1.1       leo 
    999        1.1       leo 	nch = ndqb(&tp->t_outq, 0);	/* XXX */
   1000       1.66   tsutsui 	if (nch) {
   1001       1.66   tsutsui 		char *p = tp->t_outq.c_cf;
   1002        1.1       leo 
   1003        1.1       leo 		/* mark busy, enable tx done interrupts, & send first byte */
   1004        1.1       leo 		tp->t_state |= TS_BUSY;
   1005       1.66   tsutsui 		(void)splzs();
   1006        1.1       leo 		cs->cs_preg[1] |= ZSWR1_TIE;
   1007        1.1       leo 		cs->cs_creg[1] |= ZSWR1_TIE;
   1008        1.1       leo 		ZS_WRITE(cs->cs_zc, 1, cs->cs_creg[1]);
   1009        1.1       leo 		cs->cs_zc->zc_data = *p;
   1010        1.1       leo 		cs->cs_tba = p + 1;
   1011        1.1       leo 		cs->cs_tbc = nch - 1;
   1012        1.1       leo 	} else {
   1013        1.1       leo 		/*
   1014        1.1       leo 		 * Nothing to send, turn off transmit done interrupts.
   1015        1.1       leo 		 * This is useful if something is doing polled output.
   1016        1.1       leo 		 */
   1017       1.66   tsutsui 		(void)splzs();
   1018        1.1       leo 		cs->cs_preg[1] &= ~ZSWR1_TIE;
   1019        1.1       leo 		cs->cs_creg[1] &= ~ZSWR1_TIE;
   1020        1.1       leo 		ZS_WRITE(cs->cs_zc, 1, cs->cs_creg[1]);
   1021        1.1       leo 	}
   1022        1.1       leo out:
   1023        1.1       leo 	splx(s);
   1024        1.1       leo }
   1025        1.1       leo 
   1026        1.1       leo /*
   1027        1.1       leo  * Stop output, e.g., for ^S or output flush.
   1028        1.1       leo  */
   1029        1.1       leo void
   1030       1.66   tsutsui zsstop(struct tty *tp, int flag)
   1031        1.1       leo {
   1032       1.66   tsutsui 	struct zs_chanstate *cs;
   1033       1.66   tsutsui 	int s, unit = ZS_UNIT(tp->t_dev);
   1034       1.68   tsutsui 	struct zs_softc *sc = device_lookup_private(&zs_cd, unit >> 1);
   1035        1.1       leo 
   1036       1.72   tsutsui 	cs = sc->sc_cs[unit & 1];
   1037        1.1       leo 	s  = splzs();
   1038       1.66   tsutsui 	if ((tp->t_state & TS_BUSY) != 0) {
   1039        1.1       leo 		/*
   1040        1.1       leo 		 * Device is transmitting; must stop it.
   1041        1.1       leo 		 */
   1042        1.1       leo 		cs->cs_tbc = 0;
   1043        1.1       leo 		if ((tp->t_state & TS_TTSTOP) == 0)
   1044        1.1       leo 			tp->t_state |= TS_FLUSH;
   1045        1.1       leo 	}
   1046       1.29       leo 	splx(s);
   1047       1.29       leo }
   1048       1.29       leo 
   1049       1.29       leo static void
   1050       1.60       dsl zs_shutdown(struct zs_chanstate *cs)
   1051       1.29       leo {
   1052       1.66   tsutsui 	struct tty *tp = cs->cs_ttyp;
   1053       1.66   tsutsui 	int s;
   1054       1.29       leo 
   1055       1.29       leo 	s = splzs();
   1056       1.29       leo 
   1057       1.29       leo 	/*
   1058       1.29       leo 	 * Hang up if necessary.  Wait a bit, so the other side has time to
   1059       1.29       leo 	 * notice even if we immediately open the port again.
   1060       1.29       leo 	 */
   1061       1.66   tsutsui 	if ((tp->t_cflag & HUPCL) != 0) {
   1062       1.29       leo 		zs_modem(cs, 0, DMSET);
   1063       1.52  christos 		(void)tsleep((void *)cs, TTIPRI, ttclos, hz);
   1064       1.29       leo 	}
   1065       1.29       leo 
   1066       1.29       leo 	/* Clear any break condition set with TIOCSBRK. */
   1067       1.66   tsutsui 	if ((cs->cs_creg[5] & ZSWR5_BREAK) != 0) {
   1068       1.29       leo 		cs->cs_preg[5] &= ~ZSWR5_BREAK;
   1069       1.29       leo 		cs->cs_creg[5] &= ~ZSWR5_BREAK;
   1070       1.29       leo 		ZS_WRITE(cs->cs_zc, 5, cs->cs_creg[5]);
   1071       1.29       leo 	}
   1072       1.29       leo 
   1073       1.29       leo 	/*
   1074       1.29       leo 	 * Drop all lines and cancel interrupts
   1075       1.29       leo 	 */
   1076       1.29       leo 	zs_loadchannelregs(cs->cs_zc, zs_init_regs);
   1077        1.1       leo 	splx(s);
   1078        1.1       leo }
   1079        1.1       leo 
   1080        1.1       leo /*
   1081        1.1       leo  * Set ZS tty parameters from termios.
   1082        1.1       leo  *
   1083        1.1       leo  * This routine makes use of the fact that only registers
   1084        1.1       leo  * 1, 3, 4, 5, 9, 10, 11, 12, 13, 14, and 15 are written.
   1085        1.1       leo  */
   1086        1.1       leo static int
   1087       1.66   tsutsui zsparam(struct tty *tp, struct termios *t)
   1088        1.1       leo {
   1089       1.66   tsutsui 	int unit = ZS_UNIT(tp->t_dev);
   1090       1.68   tsutsui 	struct zs_softc *sc = device_lookup_private(&zs_cd, unit >> 1);
   1091       1.72   tsutsui 	struct zs_chanstate *cs = sc->sc_cs[unit & 1];
   1092       1.66   tsutsui 	int cdiv = 0;	/* XXX gcc4 -Wuninitialized */
   1093       1.66   tsutsui 	int clkm = 0;	/* XXX gcc4 -Wuninitialized */
   1094       1.66   tsutsui 	int brgm = 0;	/* XXX gcc4 -Wuninitialized */
   1095       1.66   tsutsui 	int tcon = 0;	/* XXX gcc4 -Wuninitialized */
   1096       1.66   tsutsui 	int tmp, tmp5, cflag, s;
   1097        1.1       leo 
   1098        1.6       leo 	tmp  = t->c_ospeed;
   1099        1.6       leo 	tmp5 = t->c_ispeed;
   1100       1.66   tsutsui 	if (tmp < 0 || (tmp5 && tmp5 != tmp))
   1101       1.66   tsutsui 		return EINVAL;
   1102       1.66   tsutsui 	if (tmp == 0) {
   1103        1.1       leo 		/* stty 0 => drop DTR and RTS */
   1104        1.1       leo 		zs_modem(cs, 0, DMSET);
   1105       1.66   tsutsui 		return 0;
   1106        1.1       leo 	}
   1107        1.6       leo 	tmp = zsbaudrate(unit, tmp, &cdiv, &clkm, &brgm, &tcon);
   1108        1.6       leo 	if (tmp < 0)
   1109       1.66   tsutsui 		return EINVAL;
   1110        1.6       leo 	tp->t_ispeed = tp->t_ospeed = tmp;
   1111        1.1       leo 
   1112        1.6       leo 	cflag = tp->t_cflag = t->c_cflag;
   1113       1.66   tsutsui 	if ((cflag & CSTOPB) != 0)
   1114        1.6       leo 		cdiv |= ZSWR4_TWOSB;
   1115        1.6       leo 	else
   1116        1.6       leo 		cdiv |= ZSWR4_ONESB;
   1117       1.66   tsutsui 	if ((cflag & PARODD) == 0)
   1118        1.6       leo 		cdiv |= ZSWR4_EVENP;
   1119       1.66   tsutsui 	if ((cflag & PARENB) != 0)
   1120        1.6       leo 		cdiv |= ZSWR4_PARENB;
   1121        1.1       leo 
   1122       1.66   tsutsui 	switch (cflag & CSIZE) {
   1123        1.1       leo 	case CS5:
   1124        1.1       leo 		tmp  = ZSWR3_RX_5;
   1125        1.1       leo 		tmp5 = ZSWR5_TX_5;
   1126        1.1       leo 		break;
   1127        1.1       leo 	case CS6:
   1128        1.1       leo 		tmp  = ZSWR3_RX_6;
   1129        1.1       leo 		tmp5 = ZSWR5_TX_6;
   1130        1.1       leo 		break;
   1131        1.1       leo 	case CS7:
   1132        1.1       leo 		tmp  = ZSWR3_RX_7;
   1133        1.1       leo 		tmp5 = ZSWR5_TX_7;
   1134        1.1       leo 		break;
   1135        1.1       leo 	case CS8:
   1136        1.1       leo 	default:
   1137        1.1       leo 		tmp  = ZSWR3_RX_8;
   1138        1.1       leo 		tmp5 = ZSWR5_TX_8;
   1139        1.1       leo 		break;
   1140        1.1       leo 	}
   1141        1.6       leo 	tmp  |= ZSWR3_RX_ENABLE;
   1142        1.6       leo 	tmp5 |= ZSWR5_TX_ENABLE | ZSWR5_DTR | ZSWR5_RTS;
   1143        1.6       leo 
   1144        1.6       leo 	/*
   1145        1.6       leo 	 * Block interrupts so that state will not
   1146        1.6       leo 	 * be altered until we are done setting it up.
   1147        1.6       leo 	 */
   1148        1.6       leo 	s = splzs();
   1149        1.6       leo 	cs->cs_preg[4]  = cdiv;
   1150        1.6       leo 	cs->cs_preg[11] = clkm;
   1151        1.6       leo 	cs->cs_preg[12] = tcon;
   1152        1.6       leo 	cs->cs_preg[13] = tcon >> 8;
   1153        1.6       leo 	cs->cs_preg[14] = brgm;
   1154        1.6       leo 	cs->cs_preg[1]  = ZSWR1_RIE | ZSWR1_TIE | ZSWR1_SIE;
   1155        1.6       leo 	cs->cs_preg[9]  = ZSWR9_MASTER_IE | ZSWR9_VECTOR_INCL_STAT;
   1156        1.6       leo 	cs->cs_preg[10] = ZSWR10_NRZ;
   1157        1.6       leo 	cs->cs_preg[15] = ZSWR15_BREAK_IE | ZSWR15_DCD_IE;
   1158        1.1       leo 
   1159        1.1       leo 	/*
   1160        1.1       leo 	 * Output hardware flow control on the chip is horrendous: if
   1161        1.1       leo 	 * carrier detect drops, the receiver is disabled.  Hence we
   1162        1.1       leo 	 * can only do this when the carrier is on.
   1163        1.1       leo 	 */
   1164       1.66   tsutsui 	if ((cflag & CCTS_OFLOW) != 0 &&
   1165       1.66   tsutsui 	    (cs->cs_zc->zc_csr & ZSRR0_DCD) != 0)
   1166        1.6       leo 		tmp |= ZSWR3_HFC;
   1167        1.1       leo 	cs->cs_preg[3] = tmp;
   1168        1.6       leo 	cs->cs_preg[5] = tmp5;
   1169        1.1       leo 
   1170        1.1       leo 	/*
   1171        1.1       leo 	 * If nothing is being transmitted, set up new current values,
   1172        1.1       leo 	 * else mark them as pending.
   1173        1.1       leo 	 */
   1174       1.66   tsutsui 	if (cs->cs_heldchange == 0) {
   1175       1.66   tsutsui 		if ((cs->cs_ttyp->t_state & TS_BUSY) != 0) {
   1176        1.1       leo 			cs->cs_heldtbc = cs->cs_tbc;
   1177        1.1       leo 			cs->cs_tbc = 0;
   1178        1.1       leo 			cs->cs_heldchange = 1;
   1179        1.6       leo 		} else {
   1180       1.63   tsutsui 			memcpy((void *)cs->cs_creg, (void *)cs->cs_preg, 16);
   1181        1.1       leo 			zs_loadchannelregs(cs->cs_zc, cs->cs_creg);
   1182        1.1       leo 		}
   1183        1.1       leo 	}
   1184        1.1       leo 	splx(s);
   1185       1.66   tsutsui 	return 0;
   1186        1.6       leo }
   1187        1.6       leo 
   1188        1.6       leo /*
   1189        1.6       leo  * search for the best matching baudrate
   1190        1.6       leo  */
   1191        1.6       leo static int
   1192       1.66   tsutsui zsbaudrate(int unit, int wanted, int *divisor, int *clockmode, int *brgenmode,
   1193       1.66   tsutsui     int *timeconst)
   1194        1.6       leo {
   1195       1.66   tsutsui 	int bestdiff, bestbps, source;
   1196        1.6       leo 
   1197       1.20       leo 	bestdiff = bestbps = 0;
   1198        1.6       leo 	unit = (unit & 1) << 2;
   1199        1.6       leo 	for (source = 0; source < 4; ++source) {
   1200       1.71   tsutsui 		u_long freq = zs_frequencies[unit + source];
   1201       1.66   tsutsui 		int diff, bps, div, clkm, brgm, tcon;
   1202       1.20       leo 
   1203       1.20       leo 		bps = div = clkm = brgm = tcon = 0;
   1204        1.6       leo 		switch (source) {
   1205       1.66   tsutsui 		case 0:	/* BRgen, PCLK */
   1206       1.66   tsutsui 			brgm = ZSWR14_BAUD_ENA|ZSWR14_BAUD_FROM_PCLK;
   1207       1.66   tsutsui 			break;
   1208       1.66   tsutsui 		case 1:	/* BRgen, RTxC */
   1209       1.66   tsutsui 			brgm = ZSWR14_BAUD_ENA;
   1210       1.66   tsutsui 			break;
   1211       1.66   tsutsui 		case 2: /* RTxC */
   1212       1.66   tsutsui 			clkm = ZSWR11_RXCLK_RTXC|ZSWR11_TXCLK_RTXC;
   1213       1.66   tsutsui 			break;
   1214       1.66   tsutsui 		case 3: /* TRxC */
   1215       1.66   tsutsui 			clkm = ZSWR11_RXCLK_TRXC|ZSWR11_TXCLK_TRXC;
   1216       1.66   tsutsui 			break;
   1217        1.6       leo 		}
   1218        1.6       leo 		switch (source) {
   1219       1.66   tsutsui 		case 0:
   1220       1.66   tsutsui 		case 1:
   1221       1.66   tsutsui 			div  = ZSWR4_CLK_X16;
   1222       1.66   tsutsui 			clkm = ZSWR11_RXCLK_BAUD|ZSWR11_TXCLK_BAUD;
   1223       1.66   tsutsui 			tcon = BPS_TO_TCONST(freq, wanted);
   1224       1.66   tsutsui 			if (tcon < 0)
   1225       1.66   tsutsui 				tcon = 0;
   1226       1.66   tsutsui 			bps  = TCONST_TO_BPS(freq, tcon);
   1227       1.66   tsutsui 			break;
   1228       1.66   tsutsui 		case 2:
   1229       1.66   tsutsui 		case 3:
   1230       1.66   tsutsui 		    {
   1231       1.66   tsutsui 			int b1 = freq / 16, d1 = abs(b1 - wanted);
   1232       1.66   tsutsui 			int b2 = freq / 32, d2 = abs(b2 - wanted);
   1233       1.66   tsutsui 			int b3 = freq / 64, d3 = abs(b3 - wanted);
   1234       1.66   tsutsui 
   1235       1.66   tsutsui 			if (d1 < d2 && d1 < d3) {
   1236       1.66   tsutsui 				div = ZSWR4_CLK_X16;
   1237       1.66   tsutsui 				bps = b1;
   1238       1.66   tsutsui 			} else if (d2 < d3 && d2 < d1) {
   1239       1.66   tsutsui 				div = ZSWR4_CLK_X32;
   1240       1.66   tsutsui 				bps = b2;
   1241       1.66   tsutsui 			} else {
   1242       1.66   tsutsui 				div = ZSWR4_CLK_X64;
   1243       1.66   tsutsui 				bps = b3;
   1244        1.6       leo 			}
   1245       1.66   tsutsui 			brgm = tcon = 0;
   1246       1.66   tsutsui 			break;
   1247       1.66   tsutsui 		    }
   1248        1.6       leo 		}
   1249        1.6       leo 		diff = abs(bps - wanted);
   1250        1.6       leo 		if (!source || diff < bestdiff) {
   1251        1.6       leo 			*divisor   = div;
   1252        1.6       leo 			*clockmode = clkm;
   1253        1.6       leo 			*brgenmode = brgm;
   1254        1.6       leo 			*timeconst = tcon;
   1255        1.6       leo 			bestbps    = bps;
   1256        1.6       leo 			bestdiff   = diff;
   1257        1.6       leo 			if (diff == 0)
   1258        1.6       leo 				break;
   1259        1.6       leo 		}
   1260        1.6       leo 	}
   1261        1.6       leo 	/* Allow deviations upto 5% */
   1262        1.6       leo 	if (20 * bestdiff > wanted)
   1263        1.6       leo 		return -1;
   1264        1.6       leo 	return bestbps;
   1265        1.1       leo }
   1266        1.1       leo 
   1267        1.1       leo /*
   1268        1.1       leo  * Raise or lower modem control (DTR/RTS) signals.  If a character is
   1269        1.1       leo  * in transmission, the change is deferred.
   1270        1.1       leo  */
   1271        1.1       leo static int
   1272       1.61       dsl zs_modem(struct zs_chanstate *cs, int bits, int how)
   1273        1.1       leo {
   1274        1.1       leo 	int s, mbits;
   1275        1.1       leo 
   1276        1.1       leo 	bits  &= ZSWR5_DTR | ZSWR5_RTS;
   1277        1.1       leo 
   1278        1.1       leo 	s = splzs();
   1279        1.1       leo 	mbits  = cs->cs_preg[5] &  (ZSWR5_DTR | ZSWR5_RTS);
   1280        1.1       leo 
   1281       1.66   tsutsui 	switch (how) {
   1282       1.66   tsutsui 	case DMSET:
   1283       1.66   tsutsui 		mbits  = bits;
   1284       1.66   tsutsui 		break;
   1285       1.66   tsutsui 	case DMBIS:
   1286       1.66   tsutsui 		mbits |= bits;
   1287       1.66   tsutsui 		break;
   1288       1.66   tsutsui 	case DMBIC:
   1289       1.66   tsutsui 		mbits &= ~bits;
   1290       1.66   tsutsui 		break;
   1291       1.66   tsutsui 	case DMGET:
   1292       1.66   tsutsui 		splx(s);
   1293       1.66   tsutsui 		return mbits;
   1294        1.1       leo 	}
   1295        1.1       leo 
   1296        1.1       leo 	cs->cs_preg[5] = (cs->cs_preg[5] & ~(ZSWR5_DTR | ZSWR5_RTS)) | mbits;
   1297       1.66   tsutsui 	if (cs->cs_heldchange == 0) {
   1298       1.66   tsutsui 		if ((cs->cs_ttyp->t_state & TS_BUSY) != 0) {
   1299        1.1       leo 			cs->cs_heldtbc = cs->cs_tbc;
   1300        1.1       leo 			cs->cs_tbc = 0;
   1301        1.1       leo 			cs->cs_heldchange = 1;
   1302       1.66   tsutsui 		} else {
   1303        1.1       leo 			ZS_WRITE(cs->cs_zc, 5, cs->cs_creg[5]);
   1304        1.1       leo 		}
   1305        1.1       leo 	}
   1306        1.1       leo 	splx(s);
   1307       1.66   tsutsui 	return 0;
   1308        1.1       leo }
   1309        1.1       leo 
   1310        1.1       leo /*
   1311        1.1       leo  * Write the given register set to the given zs channel in the proper order.
   1312        1.1       leo  * The channel must not be transmitting at the time.  The receiver will
   1313        1.1       leo  * be disabled for the time it takes to write all the registers.
   1314        1.1       leo  */
   1315        1.1       leo static void
   1316       1.67   tsutsui zs_loadchannelregs(struct zschan *zc, uint8_t *reg)
   1317        1.1       leo {
   1318        1.1       leo 	int i;
   1319        1.1       leo 
   1320        1.1       leo 	zc->zc_csr = ZSM_RESET_ERR;	/* reset error condition */
   1321        1.1       leo 	i = zc->zc_data;		/* drain fifo */
   1322        1.1       leo 	i = zc->zc_data;
   1323        1.1       leo 	i = zc->zc_data;
   1324        1.1       leo 	ZS_WRITE(zc,  4, reg[4]);
   1325        1.1       leo 	ZS_WRITE(zc, 10, reg[10]);
   1326        1.1       leo 	ZS_WRITE(zc,  3, reg[3] & ~ZSWR3_RX_ENABLE);
   1327        1.1       leo 	ZS_WRITE(zc,  5, reg[5] & ~ZSWR5_TX_ENABLE);
   1328        1.1       leo 	ZS_WRITE(zc,  1, reg[1]);
   1329        1.1       leo 	ZS_WRITE(zc,  9, reg[9]);
   1330        1.1       leo 	ZS_WRITE(zc, 11, reg[11]);
   1331        1.1       leo 	ZS_WRITE(zc, 12, reg[12]);
   1332        1.1       leo 	ZS_WRITE(zc, 13, reg[13]);
   1333        1.1       leo 	ZS_WRITE(zc, 14, reg[14]);
   1334        1.1       leo 	ZS_WRITE(zc, 15, reg[15]);
   1335        1.1       leo 	ZS_WRITE(zc,  3, reg[3]);
   1336        1.1       leo 	ZS_WRITE(zc,  5, reg[5]);
   1337  1.74.16.1     rmind 	__USE(i);
   1338        1.1       leo }
   1339        1.1       leo #endif /* NZS > 1 */
   1340