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zs.c revision 1.64.14.2
      1  1.64.14.1       mjf /*	$NetBSD: zs.c,v 1.64.14.2 2008/06/02 13:22:43 mjf Exp $	*/
      2        1.1       eeh 
      3        1.1       eeh /*-
      4        1.1       eeh  * Copyright (c) 1996 The NetBSD Foundation, Inc.
      5        1.1       eeh  * All rights reserved.
      6        1.1       eeh  *
      7        1.1       eeh  * This code is derived from software contributed to The NetBSD Foundation
      8        1.1       eeh  * by Gordon W. Ross.
      9        1.1       eeh  *
     10        1.1       eeh  * Redistribution and use in source and binary forms, with or without
     11        1.1       eeh  * modification, are permitted provided that the following conditions
     12        1.1       eeh  * are met:
     13        1.1       eeh  * 1. Redistributions of source code must retain the above copyright
     14        1.1       eeh  *    notice, this list of conditions and the following disclaimer.
     15        1.1       eeh  * 2. Redistributions in binary form must reproduce the above copyright
     16        1.1       eeh  *    notice, this list of conditions and the following disclaimer in the
     17        1.1       eeh  *    documentation and/or other materials provided with the distribution.
     18        1.1       eeh  *
     19        1.1       eeh  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20        1.1       eeh  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21        1.1       eeh  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22        1.1       eeh  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23        1.1       eeh  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24        1.1       eeh  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25        1.1       eeh  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26        1.1       eeh  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27        1.1       eeh  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28        1.1       eeh  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29        1.1       eeh  * POSSIBILITY OF SUCH DAMAGE.
     30        1.1       eeh  */
     31        1.1       eeh 
     32        1.1       eeh /*
     33        1.1       eeh  * Zilog Z8530 Dual UART driver (machine-dependent part)
     34        1.1       eeh  *
     35        1.1       eeh  * Runs two serial lines per chip using slave drivers.
     36        1.1       eeh  * Plain tty/async lines use the zs_async slave.
     37        1.1       eeh  * Sun keyboard/mouse uses the zs_kbd/zs_ms slaves.
     38        1.1       eeh  */
     39       1.47     lukem 
     40       1.47     lukem #include <sys/cdefs.h>
     41  1.64.14.1       mjf __KERNEL_RCSID(0, "$NetBSD: zs.c,v 1.64.14.2 2008/06/02 13:22:43 mjf Exp $");
     42        1.2  jonathan 
     43        1.2  jonathan #include "opt_ddb.h"
     44       1.29     lukem #include "opt_kgdb.h"
     45        1.1       eeh 
     46        1.1       eeh #include <sys/param.h>
     47        1.1       eeh #include <sys/systm.h>
     48        1.1       eeh #include <sys/conf.h>
     49        1.1       eeh #include <sys/device.h>
     50        1.1       eeh #include <sys/file.h>
     51        1.1       eeh #include <sys/ioctl.h>
     52        1.1       eeh #include <sys/kernel.h>
     53        1.1       eeh #include <sys/proc.h>
     54        1.1       eeh #include <sys/tty.h>
     55        1.1       eeh #include <sys/time.h>
     56        1.1       eeh #include <sys/syslog.h>
     57       1.64        ad #include <sys/intr.h>
     58        1.1       eeh 
     59        1.1       eeh #include <machine/autoconf.h>
     60        1.1       eeh #include <machine/openfirm.h>
     61        1.1       eeh #include <machine/cpu.h>
     62        1.1       eeh #include <machine/eeprom.h>
     63        1.1       eeh #include <machine/psl.h>
     64        1.1       eeh #include <machine/z8530var.h>
     65        1.1       eeh 
     66        1.1       eeh #include <dev/cons.h>
     67        1.1       eeh #include <dev/ic/z8530reg.h>
     68       1.26       eeh #include <dev/sun/kbd_ms_ttyvar.h>
     69       1.16       mrg #include <ddb/db_output.h>
     70        1.1       eeh 
     71        1.1       eeh #include <sparc64/dev/cons.h>
     72        1.1       eeh 
     73  1.64.14.1       mjf #include "ioconf.h"
     74        1.1       eeh #include "kbd.h"	/* NKBD */
     75       1.26       eeh #include "ms.h"		/* NMS */
     76        1.1       eeh #include "zs.h" 	/* NZS */
     77        1.1       eeh 
     78        1.1       eeh /* Make life easier for the initialized arrays here. */
     79        1.1       eeh #if NZS < 3
     80        1.1       eeh #undef  NZS
     81        1.1       eeh #define NZS 3
     82        1.1       eeh #endif
     83        1.1       eeh 
     84        1.1       eeh /*
     85        1.1       eeh  * Some warts needed by z8530tty.c -
     86        1.1       eeh  * The default parity REALLY needs to be the same as the PROM uses,
     87        1.1       eeh  * or you can not see messages done with printf during boot-up...
     88        1.1       eeh  */
     89        1.1       eeh int zs_def_cflag = (CREAD | CS8 | HUPCL);
     90        1.1       eeh 
     91        1.1       eeh /*
     92        1.1       eeh  * The Sun provides a 4.9152 MHz clock to the ZS chips.
     93        1.1       eeh  */
     94        1.1       eeh #define PCLK	(9600 * 512)	/* PCLK pin input clock rate */
     95        1.1       eeh 
     96       1.10       eeh #define	ZS_DELAY()
     97        1.1       eeh 
     98        1.1       eeh /* The layout of this is hardware-dependent (padding, order). */
     99        1.1       eeh struct zschan {
    100  1.64.14.1       mjf 	volatile uint8_t zc_csr;	/* ctrl,status, and indirect access */
    101  1.64.14.1       mjf 	uint8_t		zc_xxx0;
    102  1.64.14.1       mjf 	volatile uint8_t zc_data;	/* data */
    103  1.64.14.1       mjf 	uint8_t		zc_xxx1;
    104        1.1       eeh };
    105        1.1       eeh struct zsdevice {
    106        1.1       eeh 	/* Yes, they are backwards. */
    107        1.1       eeh 	struct	zschan zs_chan_b;
    108        1.1       eeh 	struct	zschan zs_chan_a;
    109        1.1       eeh };
    110        1.1       eeh 
    111       1.20       eeh /* ZS channel used as the console device (if any) */
    112       1.20       eeh void *zs_conschan_get, *zs_conschan_put;
    113       1.20       eeh 
    114        1.1       eeh /* Saved PROM mappings */
    115        1.1       eeh static struct zsdevice *zsaddr[NZS];
    116        1.1       eeh 
    117  1.64.14.1       mjf static uint8_t zs_init_reg[16] = {
    118        1.1       eeh 	0,	/* 0: CMD (reset, etc.) */
    119        1.1       eeh 	0,	/* 1: No interrupts yet. */
    120        1.1       eeh 	0,	/* 2: IVECT */
    121        1.1       eeh 	ZSWR3_RX_8 | ZSWR3_RX_ENABLE,
    122        1.1       eeh 	ZSWR4_CLK_X16 | ZSWR4_ONESB | ZSWR4_EVENP,
    123        1.1       eeh 	ZSWR5_TX_8 | ZSWR5_TX_ENABLE,
    124        1.1       eeh 	0,	/* 6: TXSYNC/SYNCLO */
    125        1.1       eeh 	0,	/* 7: RXSYNC/SYNCHI */
    126        1.1       eeh 	0,	/* 8: alias for data port */
    127        1.1       eeh 	ZSWR9_MASTER_IE | ZSWR9_NO_VECTOR,
    128        1.1       eeh 	0,	/*10: Misc. TX/RX control bits */
    129        1.1       eeh 	ZSWR11_TXCLK_BAUD | ZSWR11_RXCLK_BAUD,
    130        1.7   mycroft 	((PCLK/32)/9600)-2,	/*12: BAUDLO (default=9600) */
    131        1.7   mycroft 	0,			/*13: BAUDHI (default=9600) */
    132        1.1       eeh 	ZSWR14_BAUD_ENA | ZSWR14_BAUD_FROM_PCLK,
    133        1.6   mycroft 	ZSWR15_BREAK_IE,
    134        1.1       eeh };
    135        1.1       eeh 
    136       1.20       eeh /* Console ops */
    137       1.57       cdi static int  zscngetc(dev_t);
    138       1.57       cdi static void zscnputc(dev_t, int);
    139       1.57       cdi static void zscnpollc(dev_t, int);
    140       1.20       eeh 
    141       1.20       eeh struct consdev zs_consdev = {
    142       1.62    martin 	.cn_getc = zscngetc,
    143       1.62    martin 	.cn_putc = zscnputc,
    144       1.62    martin 	.cn_pollc = zscnpollc,
    145       1.20       eeh };
    146        1.1       eeh 
    147        1.1       eeh 
    148        1.1       eeh /****************************************************************
    149        1.1       eeh  * Autoconfig
    150        1.1       eeh  ****************************************************************/
    151        1.1       eeh 
    152        1.1       eeh /* Definition of the driver for autoconfig. */
    153  1.64.14.1       mjf static int  zs_match_sbus(device_t, cfdata_t, void *);
    154  1.64.14.1       mjf static void zs_attach_sbus(device_t, device_t, void *);
    155        1.1       eeh 
    156       1.57       cdi static void zs_attach(struct zsc_softc *, struct zsdevice *, int);
    157       1.57       cdi static int  zs_print(void *, const char *);
    158        1.1       eeh 
    159  1.64.14.1       mjf CFATTACH_DECL_NEW(zs, sizeof(struct zsc_softc),
    160       1.48    petrov     zs_match_sbus, zs_attach_sbus, NULL, NULL);
    161        1.1       eeh 
    162        1.1       eeh /* Interrupt handlers. */
    163       1.57       cdi int zscheckintr(void *);
    164       1.57       cdi static int zshard(void *);
    165       1.57       cdi static void zssoft(void *);
    166        1.1       eeh 
    167       1.57       cdi static int zs_get_speed(struct zs_chanstate *);
    168        1.1       eeh 
    169       1.20       eeh /* Console device support */
    170       1.57       cdi static int zs_console_flags(int, int, int);
    171       1.20       eeh 
    172       1.20       eeh /* Power management hooks */
    173       1.57       cdi int  zs_enable(struct zs_chanstate *);
    174       1.57       cdi void zs_disable(struct zs_chanstate *);
    175        1.1       eeh 
    176       1.55  macallan /* from dev/ic/z8530tty.c */
    177       1.55  macallan struct tty *zstty_get_tty_from_dev(struct device *);
    178       1.55  macallan 
    179        1.1       eeh /*
    180        1.1       eeh  * Is the zs chip present?
    181        1.1       eeh  */
    182        1.1       eeh static int
    183  1.64.14.1       mjf zs_match_sbus(device_t parent, cfdata_t cf, void *aux)
    184        1.1       eeh {
    185        1.1       eeh 	struct sbus_attach_args *sa = aux;
    186        1.1       eeh 
    187       1.39   thorpej 	if (strcmp(cf->cf_name, sa->sa_name) != 0)
    188        1.1       eeh 		return (0);
    189        1.1       eeh 
    190       1.20       eeh 	return (1);
    191        1.1       eeh }
    192        1.1       eeh 
    193        1.1       eeh static void
    194  1.64.14.1       mjf zs_attach_sbus(device_t parent, device_t self, void *aux)
    195        1.1       eeh {
    196  1.64.14.1       mjf 	struct zsc_softc *zsc = device_private(self);
    197        1.1       eeh 	struct sbus_attach_args *sa = aux;
    198       1.33       eeh 	bus_space_handle_t bh;
    199  1.64.14.1       mjf 	int zs_unit;
    200  1.64.14.1       mjf 
    201  1.64.14.1       mjf 	zsc->zsc_dev = self;
    202  1.64.14.1       mjf 	zs_unit = device_unit(self);
    203        1.1       eeh 
    204       1.20       eeh 	if (sa->sa_nintr == 0) {
    205  1.64.14.1       mjf 		aprint_error(": no interrupt lines\n");
    206       1.20       eeh 		return;
    207       1.20       eeh 	}
    208        1.1       eeh 
    209       1.33       eeh 	/* Use the mapping setup by the Sun PROM if possible. */
    210       1.10       eeh 	if (zsaddr[zs_unit] == NULL) {
    211       1.20       eeh 		/* Only map registers once. */
    212       1.10       eeh 		if (sa->sa_npromvaddrs) {
    213       1.10       eeh 			/*
    214       1.10       eeh 			 * We're converting from a 32-bit pointer to a 64-bit
    215       1.10       eeh 			 * pointer.  Since the 32-bit entity is negative, but
    216       1.10       eeh 			 * the kernel is still mapped into the lower 4GB
    217       1.10       eeh 			 * range, this needs to be zero-extended.
    218       1.10       eeh 			 *
    219       1.10       eeh 			 * XXXXX If we map the kernel and devices into the
    220       1.10       eeh 			 * high 4GB range, this needs to be changed to
    221       1.10       eeh 			 * sign-extend the address.
    222       1.10       eeh 			 */
    223       1.33       eeh 			sparc_promaddr_to_handle(sa->sa_bustag,
    224       1.34       eeh 				sa->sa_promvaddrs[0], &bh);
    225       1.33       eeh 
    226       1.10       eeh 		} else {
    227       1.10       eeh 
    228       1.10       eeh 			if (sbus_bus_map(sa->sa_bustag, sa->sa_slot,
    229       1.10       eeh 					 sa->sa_offset,
    230       1.10       eeh 					 sa->sa_size,
    231       1.10       eeh 					 BUS_SPACE_MAP_LINEAR,
    232       1.33       eeh 					 &bh) != 0) {
    233  1.64.14.1       mjf 				aprint_error(": cannot map registers\n");
    234       1.10       eeh 				return;
    235       1.10       eeh 			}
    236       1.10       eeh 		}
    237  1.64.14.1       mjf 		zsaddr[zs_unit] = bus_space_vaddr(sa->sa_bustag, bh);
    238       1.10       eeh 	}
    239       1.20       eeh 	zsc->zsc_bustag = sa->sa_bustag;
    240       1.20       eeh 	zsc->zsc_dmatag = sa->sa_dmatag;
    241       1.51        pk 	zsc->zsc_promunit = prom_getpropint(sa->sa_node, "slave", -2);
    242       1.20       eeh 	zsc->zsc_node = sa->sa_node;
    243       1.20       eeh 	zs_attach(zsc, zsaddr[zs_unit], sa->sa_pri);
    244        1.1       eeh }
    245        1.1       eeh 
    246        1.1       eeh /*
    247        1.1       eeh  * Attach a found zs.
    248        1.1       eeh  *
    249        1.1       eeh  * USE ROM PROPERTIES port-a-ignore-cd AND port-b-ignore-cd FOR
    250        1.1       eeh  * SOFT CARRIER, AND keyboard PROPERTY FOR KEYBOARD/MOUSE?
    251        1.1       eeh  */
    252        1.1       eeh static void
    253       1.57       cdi zs_attach(struct zsc_softc *zsc, struct zsdevice *zsd, int pri)
    254        1.1       eeh {
    255        1.1       eeh 	struct zsc_attach_args zsc_args;
    256        1.1       eeh 	struct zs_chanstate *cs;
    257       1.64        ad 	int s, channel;
    258       1.20       eeh 
    259       1.20       eeh 	if (zsd == NULL) {
    260  1.64.14.1       mjf 		aprint_error(": configuration incomplete\n");
    261       1.20       eeh 		return;
    262       1.20       eeh 	}
    263        1.1       eeh 
    264        1.1       eeh 	/*
    265        1.1       eeh 	 * Initialize software state for each channel.
    266        1.1       eeh 	 */
    267        1.1       eeh 	for (channel = 0; channel < 2; channel++) {
    268       1.20       eeh 		struct zschan *zc;
    269       1.26       eeh 		struct device *child;
    270       1.20       eeh 
    271        1.1       eeh 		zsc_args.channel = channel;
    272        1.1       eeh 		cs = &zsc->zsc_cs_store[channel];
    273        1.1       eeh 		zsc->zsc_cs[channel] = cs;
    274        1.1       eeh 
    275       1.63        ad 		zs_lock_init(cs);
    276        1.1       eeh 		cs->cs_channel = channel;
    277        1.1       eeh 		cs->cs_private = NULL;
    278        1.1       eeh 		cs->cs_ops = &zsops_null;
    279        1.1       eeh 		cs->cs_brg_clk = PCLK / 16;
    280        1.1       eeh 
    281       1.20       eeh 		zc = (channel == 0) ? &zsd->zs_chan_a : &zsd->zs_chan_b;
    282       1.20       eeh 
    283       1.26       eeh 		zsc_args.consdev = NULL;
    284       1.20       eeh 		zsc_args.hwflags = zs_console_flags(zsc->zsc_promunit,
    285       1.20       eeh 						    zsc->zsc_node,
    286       1.20       eeh 						    channel);
    287       1.20       eeh 
    288       1.20       eeh 		if (zsc_args.hwflags & ZS_HWFLAG_CONSOLE) {
    289       1.20       eeh 			zsc_args.hwflags |= ZS_HWFLAG_USE_CONSDEV;
    290       1.20       eeh 			zsc_args.consdev = &zs_consdev;
    291       1.11       eeh 		}
    292       1.20       eeh 
    293       1.20       eeh 		if ((zsc_args.hwflags & ZS_HWFLAG_CONSOLE_INPUT) != 0) {
    294       1.20       eeh 			zs_conschan_get = zc;
    295       1.20       eeh 		}
    296       1.20       eeh 		if ((zsc_args.hwflags & ZS_HWFLAG_CONSOLE_OUTPUT) != 0) {
    297       1.20       eeh 			zs_conschan_put = zc;
    298       1.20       eeh 		}
    299       1.20       eeh 
    300       1.31       eeh 		/* Children need to set cn_dev, etc */
    301        1.1       eeh 		cs->cs_reg_csr  = &zc->zc_csr;
    302        1.1       eeh 		cs->cs_reg_data = &zc->zc_data;
    303        1.1       eeh 
    304       1.49    martin 		memcpy(cs->cs_creg, zs_init_reg, 16);
    305       1.49    martin 		memcpy(cs->cs_preg, zs_init_reg, 16);
    306        1.1       eeh 
    307       1.20       eeh 		/* XXX: Consult PROM properties for this?! */
    308       1.20       eeh 		cs->cs_defspeed = zs_get_speed(cs);
    309        1.1       eeh 		cs->cs_defcflag = zs_def_cflag;
    310        1.1       eeh 
    311        1.1       eeh 		/* Make these correspond to cs_defcflag (-crtscts) */
    312        1.1       eeh 		cs->cs_rr0_dcd = ZSRR0_DCD;
    313        1.1       eeh 		cs->cs_rr0_cts = 0;
    314        1.1       eeh 		cs->cs_wr5_dtr = ZSWR5_DTR | ZSWR5_RTS;
    315        1.1       eeh 		cs->cs_wr5_rts = 0;
    316        1.1       eeh 
    317        1.1       eeh 		/*
    318        1.1       eeh 		 * Clear the master interrupt enable.
    319        1.1       eeh 		 * The INTENA is common to both channels,
    320        1.1       eeh 		 * so just do it on the A channel.
    321        1.1       eeh 		 */
    322        1.1       eeh 		if (channel == 0) {
    323        1.1       eeh 			zs_write_reg(cs, 9, 0);
    324        1.1       eeh 		}
    325        1.1       eeh 
    326        1.1       eeh 		/*
    327        1.1       eeh 		 * Look for a child driver for this channel.
    328        1.1       eeh 		 * The child attach will setup the hardware.
    329        1.1       eeh 		 */
    330  1.64.14.1       mjf 		child = config_found(zsc->zsc_dev, (void *)&zsc_args,
    331       1.55  macallan 		    zs_print);
    332       1.55  macallan 		if (child == NULL) {
    333        1.1       eeh 			/* No sub-driver.  Just reset it. */
    334  1.64.14.1       mjf 			uint8_t reset = (channel == 0) ?
    335        1.1       eeh 				ZSWR9_A_RESET : ZSWR9_B_RESET;
    336        1.1       eeh 			s = splzs();
    337        1.1       eeh 			zs_write_reg(cs,  9, reset);
    338        1.1       eeh 			splx(s);
    339       1.26       eeh 		}
    340       1.26       eeh #if (NKBD > 0) || (NMS > 0)
    341       1.26       eeh 		/*
    342       1.26       eeh 		 * If this was a zstty it has a keyboard
    343       1.26       eeh 		 * property on it we need to attach the
    344       1.26       eeh 		 * sunkbd and sunms line disciplines.
    345       1.26       eeh 		 */
    346       1.26       eeh 		if (child
    347       1.60   thorpej 		    && (device_is_a(child, "zstty"))
    348       1.51        pk 		    && (prom_getproplen(zsc->zsc_node, "keyboard") == 0)) {
    349       1.26       eeh 			struct kbd_ms_tty_attach_args kma;
    350       1.26       eeh 			struct tty *tp;
    351       1.26       eeh 
    352       1.55  macallan 			kma.kmta_tp = tp = zstty_get_tty_from_dev(child);
    353       1.26       eeh 			kma.kmta_dev = tp->t_dev;
    354       1.26       eeh 			kma.kmta_consdev = zsc_args.consdev;
    355       1.26       eeh 
    356       1.26       eeh 			/* Attach 'em if we got 'em. */
    357       1.26       eeh #if (NKBD > 0)
    358       1.26       eeh 			if (channel == 0) {
    359       1.26       eeh 				kma.kmta_name = "keyboard";
    360       1.26       eeh 				config_found(child, (void *)&kma, NULL);
    361       1.26       eeh 			}
    362       1.26       eeh #endif
    363       1.26       eeh #if (NMS > 0)
    364       1.26       eeh 			if (channel == 1) {
    365       1.26       eeh 				kma.kmta_name = "mouse";
    366       1.26       eeh 				config_found(child, (void *)&kma, NULL);
    367       1.26       eeh 			}
    368       1.26       eeh #endif
    369        1.1       eeh 		}
    370       1.26       eeh #endif
    371        1.1       eeh 	}
    372        1.1       eeh 
    373        1.1       eeh 	/*
    374        1.1       eeh 	 * Now safe to install interrupt handlers.  Note the arguments
    375        1.1       eeh 	 * to the interrupt handlers aren't used.  Note, we only do this
    376        1.1       eeh 	 * once since both SCCs interrupt at the same level and vector.
    377        1.1       eeh 	 */
    378       1.44        pk 	bus_intr_establish(zsc->zsc_bustag, pri, IPL_SERIAL, zshard, zsc);
    379       1.64        ad 	if (!(zsc->zsc_softintr = softint_establish(SOFTINT_SERIAL, zssoft, zsc)))
    380       1.40    provos 		panic("zsattach: could not establish soft interrupt");
    381        1.1       eeh 
    382       1.21       cgd 	evcnt_attach_dynamic(&zsc->zsc_intrcnt, EVCNT_TYPE_INTR, NULL,
    383  1.64.14.1       mjf 	    device_xname(zsc->zsc_dev), "intr");
    384        1.1       eeh 
    385       1.24       eeh 
    386        1.1       eeh 	/*
    387        1.1       eeh 	 * Set the master interrupt enable and interrupt vector.
    388        1.1       eeh 	 * (common to both channels, do it on A)
    389        1.1       eeh 	 */
    390        1.1       eeh 	cs = zsc->zsc_cs[0];
    391        1.1       eeh 	s = splhigh();
    392        1.1       eeh 	/* interrupt vector */
    393        1.1       eeh 	zs_write_reg(cs, 2, zs_init_reg[2]);
    394        1.1       eeh 	/* master interrupt control (enable) */
    395        1.1       eeh 	zs_write_reg(cs, 9, zs_init_reg[9]);
    396        1.1       eeh 	splx(s);
    397        1.1       eeh 
    398        1.1       eeh }
    399        1.1       eeh 
    400        1.1       eeh static int
    401       1.57       cdi zs_print(void *aux, const char *name)
    402        1.1       eeh {
    403        1.1       eeh 	struct zsc_attach_args *args = aux;
    404        1.1       eeh 
    405        1.1       eeh 	if (name != NULL)
    406       1.45   thorpej 		aprint_normal("%s: ", name);
    407        1.1       eeh 
    408        1.1       eeh 	if (args->channel != -1)
    409       1.45   thorpej 		aprint_normal(" channel %d", args->channel);
    410        1.1       eeh 
    411        1.1       eeh 	return (UNCONF);
    412        1.1       eeh }
    413        1.1       eeh 
    414       1.24       eeh /* Deprecate this? */
    415        1.1       eeh static volatile int zssoftpending;
    416        1.1       eeh 
    417        1.1       eeh static int
    418       1.57       cdi zshard(void *arg)
    419        1.1       eeh {
    420  1.64.14.1       mjf 	struct zsc_softc *zsc = arg;
    421       1.24       eeh 	int rr3, rval;
    422       1.24       eeh 
    423       1.24       eeh 	rval = 0;
    424       1.24       eeh 	while ((rr3 = zsc_intr_hard(zsc))) {
    425       1.24       eeh 		/* Count up the interrupts. */
    426       1.24       eeh 		rval |= rr3;
    427       1.24       eeh 		zsc->zsc_intrcnt.ev_count++;
    428       1.24       eeh 	}
    429       1.24       eeh 	if (((zsc->zsc_cs[0] && zsc->zsc_cs[0]->cs_softreq) ||
    430       1.24       eeh 	     (zsc->zsc_cs[1] && zsc->zsc_cs[1]->cs_softreq)) &&
    431       1.24       eeh 	    zsc->zsc_softintr) {
    432       1.24       eeh 		zssoftpending = PIL_TTY;
    433       1.64        ad 		softint_schedule(zsc->zsc_softintr);
    434       1.24       eeh 	}
    435       1.24       eeh 	return (rval);
    436       1.24       eeh }
    437       1.24       eeh 
    438       1.24       eeh int
    439       1.57       cdi zscheckintr(void *arg)
    440       1.24       eeh {
    441       1.20       eeh 	struct zsc_softc *zsc;
    442       1.24       eeh 	int unit, rval;
    443        1.1       eeh 
    444       1.24       eeh 	rval = 0;
    445        1.1       eeh 	for (unit = 0; unit < zs_cd.cd_ndevs; unit++) {
    446       1.20       eeh 
    447  1.64.14.1       mjf 		zsc = device_private(zs_cd.cd_devs[unit]);
    448        1.1       eeh 		if (zsc == NULL)
    449        1.1       eeh 			continue;
    450       1.24       eeh 		rval = (zshard((void *)zsc) || rval);
    451        1.1       eeh 	}
    452        1.1       eeh 	return (rval);
    453        1.1       eeh }
    454        1.1       eeh 
    455       1.24       eeh 
    456        1.1       eeh /*
    457       1.24       eeh  * We need this only for TTY_DEBUG purposes.
    458        1.1       eeh  */
    459       1.28      fvdl static void
    460       1.57       cdi zssoft(void *arg)
    461        1.1       eeh {
    462  1.64.14.1       mjf 	struct zsc_softc *zsc = arg;
    463       1.24       eeh 	int s;
    464        1.1       eeh 
    465        1.1       eeh 	/* Make sure we call the tty layer at spltty. */
    466        1.1       eeh 	s = spltty();
    467       1.24       eeh 	zssoftpending = 0;
    468       1.24       eeh 	(void)zsc_intr_soft(zsc);
    469       1.13       eeh #ifdef TTY_DEBUG
    470       1.24       eeh 	{
    471       1.24       eeh 		struct zstty_softc *zst0 = zsc->zsc_cs[0]->cs_private;
    472       1.24       eeh 		struct zstty_softc *zst1 = zsc->zsc_cs[1]->cs_private;
    473       1.24       eeh 		if (zst0->zst_overflows || zst1->zst_overflows ) {
    474       1.24       eeh 			struct trapframe *frame = (struct trapframe *)arg;
    475       1.24       eeh 
    476       1.24       eeh 			printf("zs silo overflow from %p\n",
    477       1.24       eeh 			       (long)frame->tf_pc);
    478       1.13       eeh 		}
    479       1.24       eeh 	}
    480       1.13       eeh #endif
    481        1.1       eeh 	splx(s);
    482        1.1       eeh }
    483        1.1       eeh 
    484        1.1       eeh 
    485        1.1       eeh /*
    486        1.1       eeh  * Compute the current baud rate given a ZS channel.
    487        1.1       eeh  */
    488        1.1       eeh static int
    489       1.57       cdi zs_get_speed(struct zs_chanstate *cs)
    490        1.1       eeh {
    491        1.1       eeh 	int tconst;
    492        1.1       eeh 
    493        1.1       eeh 	tconst = zs_read_reg(cs, 12);
    494        1.1       eeh 	tconst |= zs_read_reg(cs, 13) << 8;
    495        1.1       eeh 	return (TCONST_TO_BPS(cs->cs_brg_clk, tconst));
    496        1.1       eeh }
    497        1.1       eeh 
    498        1.1       eeh /*
    499        1.1       eeh  * MD functions for setting the baud rate and control modes.
    500        1.1       eeh  */
    501        1.1       eeh int
    502       1.58       cdi zs_set_speed(struct zs_chanstate *cs, int bps /* bits per second */)
    503        1.1       eeh {
    504        1.1       eeh 	int tconst, real_bps;
    505        1.1       eeh 
    506        1.1       eeh 	if (bps == 0)
    507        1.1       eeh 		return (0);
    508        1.1       eeh 
    509        1.1       eeh #ifdef	DIAGNOSTIC
    510        1.1       eeh 	if (cs->cs_brg_clk == 0)
    511        1.1       eeh 		panic("zs_set_speed");
    512        1.1       eeh #endif
    513        1.1       eeh 
    514        1.1       eeh 	tconst = BPS_TO_TCONST(cs->cs_brg_clk, bps);
    515        1.1       eeh 	if (tconst < 0)
    516        1.1       eeh 		return (EINVAL);
    517        1.1       eeh 
    518        1.1       eeh 	/* Convert back to make sure we can do it. */
    519        1.1       eeh 	real_bps = TCONST_TO_BPS(cs->cs_brg_clk, tconst);
    520        1.1       eeh 
    521        1.1       eeh 	/* XXX - Allow some tolerance here? */
    522        1.1       eeh 	if (real_bps != bps)
    523        1.1       eeh 		return (EINVAL);
    524        1.1       eeh 
    525        1.1       eeh 	cs->cs_preg[12] = tconst;
    526        1.1       eeh 	cs->cs_preg[13] = tconst >> 8;
    527        1.1       eeh 
    528        1.1       eeh 	/* Caller will stuff the pending registers. */
    529        1.1       eeh 	return (0);
    530        1.1       eeh }
    531        1.1       eeh 
    532        1.1       eeh int
    533       1.58       cdi zs_set_modes(struct zs_chanstate *cs, int cflag)
    534        1.1       eeh {
    535        1.1       eeh 	int s;
    536        1.1       eeh 
    537        1.1       eeh 	/*
    538        1.1       eeh 	 * Output hardware flow control on the chip is horrendous:
    539        1.1       eeh 	 * if carrier detect drops, the receiver is disabled, and if
    540        1.1       eeh 	 * CTS drops, the transmitter is stoped IN MID CHARACTER!
    541        1.1       eeh 	 * Therefore, NEVER set the HFC bit, and instead use the
    542        1.1       eeh 	 * status interrupt to detect CTS changes.
    543        1.1       eeh 	 */
    544        1.1       eeh 	s = splzs();
    545        1.9  wrstuden 	cs->cs_rr0_pps = 0;
    546        1.9  wrstuden 	if ((cflag & (CLOCAL | MDMBUF)) != 0) {
    547        1.1       eeh 		cs->cs_rr0_dcd = 0;
    548        1.9  wrstuden 		if ((cflag & MDMBUF) == 0)
    549        1.9  wrstuden 			cs->cs_rr0_pps = ZSRR0_DCD;
    550        1.9  wrstuden 	} else
    551        1.1       eeh 		cs->cs_rr0_dcd = ZSRR0_DCD;
    552        1.1       eeh 	if ((cflag & CRTSCTS) != 0) {
    553        1.1       eeh 		cs->cs_wr5_dtr = ZSWR5_DTR;
    554        1.1       eeh 		cs->cs_wr5_rts = ZSWR5_RTS;
    555        1.1       eeh 		cs->cs_rr0_cts = ZSRR0_CTS;
    556        1.1       eeh 	} else if ((cflag & CDTRCTS) != 0) {
    557        1.1       eeh 		cs->cs_wr5_dtr = 0;
    558        1.1       eeh 		cs->cs_wr5_rts = ZSWR5_DTR;
    559        1.1       eeh 		cs->cs_rr0_cts = ZSRR0_CTS;
    560        1.1       eeh 	} else if ((cflag & MDMBUF) != 0) {
    561        1.1       eeh 		cs->cs_wr5_dtr = 0;
    562        1.1       eeh 		cs->cs_wr5_rts = ZSWR5_DTR;
    563        1.1       eeh 		cs->cs_rr0_cts = ZSRR0_DCD;
    564        1.1       eeh 	} else {
    565        1.1       eeh 		cs->cs_wr5_dtr = ZSWR5_DTR | ZSWR5_RTS;
    566        1.1       eeh 		cs->cs_wr5_rts = 0;
    567        1.1       eeh 		cs->cs_rr0_cts = 0;
    568        1.1       eeh 	}
    569        1.1       eeh 	splx(s);
    570        1.1       eeh 
    571        1.1       eeh 	/* Caller will stuff the pending registers. */
    572        1.1       eeh 	return (0);
    573        1.1       eeh }
    574        1.1       eeh 
    575        1.1       eeh 
    576        1.1       eeh /*
    577        1.1       eeh  * Read or write the chip with suitable delays.
    578        1.1       eeh  */
    579        1.1       eeh 
    580        1.1       eeh u_char
    581       1.58       cdi zs_read_reg(struct zs_chanstate *cs, u_char reg)
    582        1.1       eeh {
    583        1.1       eeh 	u_char val;
    584        1.1       eeh 
    585        1.1       eeh 	*cs->cs_reg_csr = reg;
    586        1.1       eeh 	ZS_DELAY();
    587        1.1       eeh 	val = *cs->cs_reg_csr;
    588        1.1       eeh 	ZS_DELAY();
    589        1.1       eeh 	return (val);
    590        1.1       eeh }
    591        1.1       eeh 
    592        1.1       eeh void
    593       1.58       cdi zs_write_reg(struct zs_chanstate *cs, u_char reg, u_char val)
    594        1.1       eeh {
    595        1.1       eeh 	*cs->cs_reg_csr = reg;
    596        1.1       eeh 	ZS_DELAY();
    597        1.1       eeh 	*cs->cs_reg_csr = val;
    598        1.1       eeh 	ZS_DELAY();
    599        1.1       eeh }
    600        1.1       eeh 
    601        1.1       eeh u_char
    602       1.58       cdi zs_read_csr(struct zs_chanstate *cs)
    603        1.1       eeh {
    604       1.20       eeh 	u_char val;
    605        1.1       eeh 
    606        1.1       eeh 	val = *cs->cs_reg_csr;
    607        1.1       eeh 	ZS_DELAY();
    608        1.1       eeh 	return (val);
    609        1.1       eeh }
    610        1.1       eeh 
    611       1.58       cdi void
    612       1.58       cdi zs_write_csr(struct zs_chanstate *cs, u_char val)
    613        1.1       eeh {
    614        1.1       eeh 	*cs->cs_reg_csr = val;
    615        1.1       eeh 	ZS_DELAY();
    616        1.1       eeh }
    617        1.1       eeh 
    618       1.58       cdi u_char
    619       1.58       cdi zs_read_data(struct zs_chanstate *cs)
    620        1.1       eeh {
    621       1.20       eeh 	u_char val;
    622        1.1       eeh 
    623        1.1       eeh 	val = *cs->cs_reg_data;
    624        1.1       eeh 	ZS_DELAY();
    625        1.1       eeh 	return (val);
    626        1.1       eeh }
    627        1.1       eeh 
    628       1.58       cdi void
    629       1.58       cdi zs_write_data(struct zs_chanstate *cs, u_char val)
    630        1.1       eeh {
    631        1.1       eeh 	*cs->cs_reg_data = val;
    632        1.1       eeh 	ZS_DELAY();
    633        1.1       eeh }
    634        1.1       eeh 
    635        1.1       eeh /****************************************************************
    636        1.1       eeh  * Console support functions (Sun specific!)
    637        1.1       eeh  * Note: this code is allowed to know about the layout of
    638        1.1       eeh  * the chip registers, and uses that to keep things simple.
    639        1.1       eeh  * XXX - I think I like the mvme167 code better. -gwr
    640        1.1       eeh  ****************************************************************/
    641        1.1       eeh 
    642       1.57       cdi extern void Debugger(void);
    643        1.1       eeh 
    644        1.1       eeh /*
    645        1.1       eeh  * Handle user request to enter kernel debugger.
    646        1.1       eeh  */
    647        1.1       eeh void
    648       1.58       cdi zs_abort(struct zs_chanstate *cs)
    649        1.1       eeh {
    650       1.20       eeh 	volatile struct zschan *zc = zs_conschan_get;
    651        1.1       eeh 	int rr0;
    652        1.1       eeh 
    653        1.1       eeh 	/* Wait for end of break to avoid PROM abort. */
    654        1.1       eeh 	/* XXX - Limit the wait? */
    655        1.1       eeh 	do {
    656        1.1       eeh 		rr0 = zc->zc_csr;
    657        1.1       eeh 		ZS_DELAY();
    658        1.1       eeh 	} while (rr0 & ZSRR0_BREAK);
    659        1.1       eeh 
    660        1.1       eeh #if defined(KGDB)
    661        1.1       eeh 	zskgdb(cs);
    662        1.1       eeh #elif defined(DDB)
    663       1.12       eeh 	{
    664       1.12       eeh 		extern int db_active;
    665       1.12       eeh 
    666       1.12       eeh 		if (!db_active)
    667       1.12       eeh 			Debugger();
    668       1.12       eeh 		else
    669       1.12       eeh 			/* Debugger is probably hozed */
    670       1.12       eeh 			callrom();
    671       1.12       eeh 	}
    672        1.1       eeh #else
    673        1.1       eeh 	printf("stopping on keyboard abort\n");
    674        1.1       eeh 	callrom();
    675        1.1       eeh #endif
    676        1.1       eeh }
    677        1.1       eeh 
    678       1.20       eeh 
    679        1.1       eeh /*
    680        1.1       eeh  * Polled input char.
    681        1.1       eeh  */
    682        1.1       eeh int
    683       1.58       cdi zs_getc(void *arg)
    684        1.1       eeh {
    685       1.20       eeh 	volatile struct zschan *zc = arg;
    686       1.20       eeh 	int s, c, rr0;
    687        1.1       eeh 
    688        1.1       eeh 	s = splhigh();
    689        1.1       eeh 	/* Wait for a character to arrive. */
    690        1.1       eeh 	do {
    691        1.1       eeh 		rr0 = zc->zc_csr;
    692        1.1       eeh 		ZS_DELAY();
    693        1.1       eeh 	} while ((rr0 & ZSRR0_RX_READY) == 0);
    694        1.1       eeh 
    695        1.1       eeh 	c = zc->zc_data;
    696        1.1       eeh 	ZS_DELAY();
    697        1.1       eeh 	splx(s);
    698        1.1       eeh 
    699        1.1       eeh 	/*
    700        1.1       eeh 	 * This is used by the kd driver to read scan codes,
    701        1.1       eeh 	 * so don't translate '\r' ==> '\n' here...
    702        1.1       eeh 	 */
    703        1.1       eeh 	return (c);
    704        1.1       eeh }
    705        1.1       eeh 
    706        1.1       eeh /*
    707        1.1       eeh  * Polled output char.
    708        1.1       eeh  */
    709        1.1       eeh void
    710       1.58       cdi zs_putc(void *arg, int c)
    711        1.1       eeh {
    712       1.20       eeh 	volatile struct zschan *zc = arg;
    713       1.20       eeh 	int s, rr0;
    714        1.1       eeh 
    715        1.1       eeh 	s = splhigh();
    716        1.1       eeh 
    717        1.1       eeh 	/* Wait for transmitter to become ready. */
    718        1.1       eeh 	do {
    719        1.1       eeh 		rr0 = zc->zc_csr;
    720        1.1       eeh 		ZS_DELAY();
    721        1.1       eeh 	} while ((rr0 & ZSRR0_TX_READY) == 0);
    722        1.1       eeh 
    723        1.1       eeh 	/*
    724        1.1       eeh 	 * Send the next character.
    725        1.1       eeh 	 * Now you'd think that this could be followed by a ZS_DELAY()
    726        1.1       eeh 	 * just like all the other chip accesses, but it turns out that
    727        1.1       eeh 	 * the `transmit-ready' interrupt isn't de-asserted until
    728        1.1       eeh 	 * some period of time after the register write completes
    729        1.1       eeh 	 * (more than a couple instructions).  So to avoid stray
    730       1.50       wiz 	 * interrupts we put in the 2us delay regardless of CPU model.
    731        1.1       eeh 	 */
    732        1.1       eeh 	zc->zc_data = c;
    733        1.1       eeh 	delay(2);
    734        1.1       eeh 
    735        1.1       eeh 	splx(s);
    736        1.1       eeh }
    737        1.1       eeh 
    738        1.1       eeh /*****************************************************************/
    739        1.1       eeh 
    740        1.1       eeh 
    741       1.20       eeh 
    742        1.1       eeh 
    743        1.1       eeh /*
    744        1.1       eeh  * Polled console input putchar.
    745        1.1       eeh  */
    746        1.1       eeh static int
    747       1.57       cdi zscngetc(dev_t dev)
    748        1.1       eeh {
    749       1.20       eeh 	return (zs_getc(zs_conschan_get));
    750        1.1       eeh }
    751        1.1       eeh 
    752        1.1       eeh /*
    753        1.1       eeh  * Polled console output putchar.
    754        1.1       eeh  */
    755        1.1       eeh static void
    756       1.57       cdi zscnputc(dev_t dev, int c)
    757        1.1       eeh {
    758       1.20       eeh 	zs_putc(zs_conschan_put, c);
    759        1.5       eeh }
    760        1.5       eeh 
    761        1.5       eeh int swallow_zsintrs;
    762        1.5       eeh 
    763        1.5       eeh static void
    764       1.57       cdi zscnpollc(dev_t dev, int on)
    765        1.5       eeh {
    766        1.5       eeh 	/*
    767        1.5       eeh 	 * Need to tell zs driver to acknowledge all interrupts or we get
    768        1.5       eeh 	 * annoying spurious interrupt messages.  This is because mucking
    769        1.5       eeh 	 * with spl() levels during polling does not prevent interrupts from
    770        1.5       eeh 	 * being generated.
    771        1.5       eeh 	 */
    772        1.5       eeh 
    773        1.5       eeh 	if (on) swallow_zsintrs++;
    774        1.5       eeh 	else swallow_zsintrs--;
    775        1.1       eeh }
    776       1.20       eeh 
    777       1.20       eeh int
    778       1.57       cdi zs_console_flags(int promunit, int node, int channel)
    779       1.20       eeh {
    780       1.20       eeh 	int cookie, flags = 0;
    781       1.20       eeh 	char buf[255];
    782       1.20       eeh 
    783       1.20       eeh 	/*
    784       1.53        pk 	 * We'll just do the OBP grovelling down here since that's
    785       1.20       eeh 	 * the only type of firmware we support.
    786       1.20       eeh 	 */
    787       1.20       eeh 
    788       1.20       eeh 	/* Default to channel 0 if there are no explicit prom args */
    789       1.20       eeh 	cookie = 0;
    790       1.54        pk 	if (node == prom_instance_to_package(prom_stdin())) {
    791       1.61    martin 		if (prom_getoption("input-device", buf, sizeof buf) == 0 &&
    792       1.53        pk 		    strcmp("ttyb", buf) == 0)
    793       1.53        pk 			cookie = 1;
    794       1.20       eeh 
    795       1.20       eeh 		if (channel == cookie)
    796       1.20       eeh 			flags |= ZS_HWFLAG_CONSOLE_INPUT;
    797       1.20       eeh 	}
    798       1.20       eeh 
    799       1.54        pk 	if (node == prom_instance_to_package(prom_stdout())) {
    800       1.61    martin 		if (prom_getoption("output-device", buf, sizeof buf) == 0 &&
    801       1.53        pk 		    strcmp("ttyb", buf) == 0)
    802       1.53        pk 			cookie = 1;
    803       1.20       eeh 
    804       1.20       eeh 		if (channel == cookie)
    805       1.20       eeh 			flags |= ZS_HWFLAG_CONSOLE_OUTPUT;
    806       1.20       eeh 	}
    807       1.20       eeh 
    808       1.20       eeh 	return (flags);
    809       1.20       eeh }
    810       1.20       eeh 
    811