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zs.c revision 1.55
      1  1.55    martin /*	$NetBSD: zs.c,v 1.55 2022/02/13 12:24:24 martin Exp $	*/
      2   1.1    tsubai 
      3   1.1    tsubai /*
      4   1.7  wrstuden  * Copyright (c) 1996, 1998 Bill Studenmund
      5   1.1    tsubai  * Copyright (c) 1995 Gordon W. Ross
      6   1.1    tsubai  * All rights reserved.
      7   1.1    tsubai  *
      8   1.1    tsubai  * Redistribution and use in source and binary forms, with or without
      9   1.1    tsubai  * modification, are permitted provided that the following conditions
     10   1.1    tsubai  * are met:
     11   1.1    tsubai  * 1. Redistributions of source code must retain the above copyright
     12   1.1    tsubai  *    notice, this list of conditions and the following disclaimer.
     13   1.1    tsubai  * 2. Redistributions in binary form must reproduce the above copyright
     14   1.1    tsubai  *    notice, this list of conditions and the following disclaimer in the
     15   1.1    tsubai  *    documentation and/or other materials provided with the distribution.
     16   1.1    tsubai  *
     17   1.1    tsubai  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     18   1.1    tsubai  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     19   1.1    tsubai  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     20   1.1    tsubai  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     21   1.1    tsubai  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     22   1.1    tsubai  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     23   1.1    tsubai  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     24   1.1    tsubai  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     25   1.1    tsubai  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     26   1.1    tsubai  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     27   1.1    tsubai  */
     28   1.1    tsubai 
     29   1.1    tsubai /*
     30   1.1    tsubai  * Zilog Z8530 Dual UART driver (machine-dependent part)
     31   1.1    tsubai  *
     32   1.1    tsubai  * Runs two serial lines per chip using slave drivers.
     33   1.1    tsubai  * Plain tty/async lines use the zs_async slave.
     34   1.1    tsubai  * Sun keyboard/mouse uses the zs_kbd/zs_ms slaves.
     35   1.1    tsubai  * Other ports use their own mice & keyboard slaves.
     36   1.1    tsubai  *
     37   1.1    tsubai  * Credits & history:
     38   1.1    tsubai  *
     39   1.1    tsubai  * With NetBSD 1.1, port-mac68k started using a port of the port-sparc
     40   1.1    tsubai  * (port-sun3?) zs.c driver (which was in turn based on code in the
     41   1.1    tsubai  * Berkeley 4.4 Lite release). Bill Studenmund did the port, with
     42  1.28    keihan  * help from Allen Briggs and Gordon Ross <gwr (at) NetBSD.org>. Noud de
     43   1.1    tsubai  * Brouwer field-tested the driver at a local ISP.
     44   1.1    tsubai  *
     45  1.41       wiz  * Bill Studenmund and Gordon Ross then ported the machine-independent
     46   1.1    tsubai  * z8530 driver to work with port-mac68k. NetBSD 1.2 contained an
     47   1.1    tsubai  * intermediate version (mac68k using a local, patched version of
     48   1.1    tsubai  * the m.i. drivers), with NetBSD 1.3 containing a full version.
     49   1.1    tsubai  */
     50  1.27     lukem 
     51  1.27     lukem #include <sys/cdefs.h>
     52  1.55    martin __KERNEL_RCSID(0, "$NetBSD: zs.c,v 1.55 2022/02/13 12:24:24 martin Exp $");
     53   1.3  jonathan 
     54   1.3  jonathan #include "opt_ddb.h"
     55  1.19       dbj #include "opt_kgdb.h"
     56   1.1    tsubai 
     57   1.1    tsubai #include <sys/param.h>
     58   1.1    tsubai #include <sys/systm.h>
     59   1.1    tsubai #include <sys/proc.h>
     60   1.1    tsubai #include <sys/device.h>
     61   1.1    tsubai #include <sys/conf.h>
     62   1.1    tsubai #include <sys/file.h>
     63   1.1    tsubai #include <sys/ioctl.h>
     64   1.1    tsubai #include <sys/tty.h>
     65   1.1    tsubai #include <sys/time.h>
     66   1.1    tsubai #include <sys/kernel.h>
     67   1.1    tsubai #include <sys/syslog.h>
     68  1.45        ad #include <sys/intr.h>
     69  1.45        ad #include <sys/cpu.h>
     70  1.19       dbj #ifdef KGDB
     71  1.19       dbj #include <sys/kgdb.h>
     72  1.19       dbj #endif
     73   1.1    tsubai 
     74   1.1    tsubai #include <dev/cons.h>
     75   1.1    tsubai #include <dev/ofw/openfirm.h>
     76  1.55    martin #include <powerpc/ofw_cons.h>
     77   1.1    tsubai #include <dev/ic/z8530reg.h>
     78   1.1    tsubai 
     79   1.1    tsubai #include <machine/z8530var.h>
     80   1.1    tsubai #include <machine/autoconf.h>
     81   1.1    tsubai #include <machine/pio.h>
     82   1.1    tsubai 
     83   1.1    tsubai /* Are these in a header file anywhere? */
     84   1.1    tsubai /* Booter flags interface */
     85   1.1    tsubai #define ZSMAC_RAW	0x01
     86   1.1    tsubai #define ZSMAC_LOCALTALK	0x02
     87  1.11   mycroft 
     88   1.1    tsubai /*
     89   1.1    tsubai  * Some warts needed by z8530tty.c -
     90   1.1    tsubai  */
     91   1.1    tsubai int zs_def_cflag = (CREAD | CS8 | HUPCL);
     92   1.1    tsubai 
     93   1.1    tsubai /*
     94   1.1    tsubai  * abort detection on console will now timeout after iterating on a loop
     95   1.1    tsubai  * the following # of times. Cheep hack. Also, abort detection is turned
     96   1.1    tsubai  * off after a timeout (i.e. maybe there's not a terminal hooked up).
     97   1.1    tsubai  */
     98   1.1    tsubai #define ZSABORT_DELAY 3000000
     99   1.1    tsubai 
    100   1.1    tsubai struct zsdevice {
    101   1.1    tsubai 	/* Yes, they are backwards. */
    102   1.1    tsubai 	struct	zschan zs_chan_b;
    103   1.1    tsubai 	struct	zschan zs_chan_a;
    104   1.1    tsubai };
    105   1.1    tsubai 
    106  1.31       chs static int zs_defspeed[2] = {
    107  1.31       chs 	38400,		/* ttyZ0 */
    108  1.31       chs 	38400,		/* ttyZ1 */
    109   1.1    tsubai };
    110  1.15    tsubai 
    111   1.1    tsubai /* console stuff */
    112   1.1    tsubai void	*zs_conschan = 0;
    113  1.32      matt int	zs_conschannel = -1;
    114   1.1    tsubai #ifdef	ZS_CONSOLE_ABORT
    115   1.1    tsubai int	zs_cons_canabort = 1;
    116   1.1    tsubai #else
    117   1.1    tsubai int	zs_cons_canabort = 0;
    118   1.1    tsubai #endif /* ZS_CONSOLE_ABORT*/
    119  1.55    martin #if PMAC_G5
    120  1.55    martin static void zscn_delayed_init(struct zsdevice *zsd);
    121  1.55    martin #endif
    122   1.1    tsubai 
    123   1.1    tsubai /* device to which the console is attached--if serial. */
    124   1.1    tsubai /* Mac stuff */
    125   1.1    tsubai 
    126  1.30       chs static int zs_get_speed(struct zs_chanstate *);
    127  1.55    martin void zscnprobe(struct consdev *cp);
    128  1.55    martin void zscninit(struct consdev *cp);
    129  1.55    martin int zscngetc(dev_t dev);
    130  1.55    martin void zscnputc(dev_t dev, int c);
    131  1.55    martin #define zscnpollc	nullcnpollc
    132  1.55    martin cons_decl(zs);
    133  1.55    martin 
    134  1.55    martin struct consdev consdev_zs = {
    135  1.55    martin 	zscnprobe,
    136  1.55    martin 	zscninit,
    137  1.55    martin 	zscngetc,
    138  1.55    martin 	zscnputc,
    139  1.55    martin 	zscnpollc,
    140  1.55    martin };
    141   1.1    tsubai 
    142   1.1    tsubai /*
    143   1.1    tsubai  * Even though zsparam will set up the clock multiples, etc., we
    144   1.1    tsubai  * still set them here as: 1) mice & keyboards don't use zsparam,
    145   1.1    tsubai  * and 2) the console stuff uses these defaults before device
    146   1.1    tsubai  * attach.
    147   1.1    tsubai  */
    148   1.1    tsubai 
    149  1.46   tsutsui static uint8_t zs_init_reg[16] = {
    150   1.1    tsubai 	0,	/* 0: CMD (reset, etc.) */
    151   1.1    tsubai 	0,	/* 1: No interrupts yet. */
    152   1.1    tsubai 	0,	/* IVECT */
    153   1.1    tsubai 	ZSWR3_RX_8 | ZSWR3_RX_ENABLE,
    154   1.1    tsubai 	ZSWR4_CLK_X16 | ZSWR4_ONESB | ZSWR4_EVENP,
    155   1.1    tsubai 	ZSWR5_TX_8 | ZSWR5_TX_ENABLE,
    156   1.1    tsubai 	0,	/* 6: TXSYNC/SYNCLO */
    157   1.1    tsubai 	0,	/* 7: RXSYNC/SYNCHI */
    158   1.1    tsubai 	0,	/* 8: alias for data port */
    159   1.1    tsubai 	ZSWR9_MASTER_IE,
    160   1.1    tsubai 	0,	/*10: Misc. TX/RX control bits */
    161   1.1    tsubai 	ZSWR11_TXCLK_BAUD | ZSWR11_RXCLK_BAUD,
    162  1.11   mycroft 	((PCLK/32)/38400)-2,	/*12: BAUDLO (default=38400) */
    163  1.11   mycroft 	0,			/*13: BAUDHI (default=38400) */
    164  1.12  wrstuden 	ZSWR14_BAUD_ENA,
    165  1.10   mycroft 	ZSWR15_BREAK_IE,
    166   1.1    tsubai };
    167   1.1    tsubai 
    168   1.1    tsubai /****************************************************************
    169   1.1    tsubai  * Autoconfig
    170   1.1    tsubai  ****************************************************************/
    171   1.1    tsubai 
    172   1.1    tsubai /* Definition of the driver for autoconfig. */
    173  1.46   tsutsui static int	zsc_match(device_t, cfdata_t, void *);
    174  1.46   tsutsui static void	zsc_attach(device_t, device_t, void *);
    175  1.30       chs static int	zsc_print(void *, const char *);
    176   1.1    tsubai 
    177  1.46   tsutsui CFATTACH_DECL_NEW(zsc, sizeof(struct zsc_softc),
    178  1.23   thorpej     zsc_match, zsc_attach, NULL, NULL);
    179   1.1    tsubai 
    180   1.1    tsubai extern struct cfdriver zsc_cd;
    181   1.1    tsubai 
    182  1.31       chs int zsc_attached;
    183  1.31       chs 
    184  1.30       chs int zshard(void *);
    185   1.1    tsubai #ifdef ZS_TXDMA
    186  1.30       chs static int zs_txdma_int(void *);
    187   1.1    tsubai #endif
    188   1.1    tsubai 
    189  1.30       chs void zscnprobe(struct consdev *);
    190  1.30       chs void zscninit(struct consdev *);
    191  1.30       chs int  zscngetc(dev_t);
    192  1.30       chs void zscnputc(dev_t, int);
    193  1.30       chs void zscnpollc(dev_t, int);
    194   1.1    tsubai 
    195   1.1    tsubai /*
    196   1.1    tsubai  * Is the zs chip present?
    197   1.1    tsubai  */
    198   1.1    tsubai static int
    199  1.46   tsutsui zsc_match(device_t parent, cfdata_t cf, void *aux)
    200   1.1    tsubai {
    201   1.1    tsubai 	struct confargs *ca = aux;
    202   1.1    tsubai 
    203   1.1    tsubai 	if (strcmp(ca->ca_name, "escc") != 0)
    204   1.1    tsubai 		return 0;
    205   1.1    tsubai 
    206  1.31       chs 	if (zsc_attached)
    207   1.1    tsubai 		return 0;
    208   1.1    tsubai 
    209   1.1    tsubai 	return 1;
    210   1.1    tsubai }
    211   1.1    tsubai 
    212   1.1    tsubai /*
    213   1.1    tsubai  * Attach a found zs.
    214   1.1    tsubai  *
    215   1.1    tsubai  * Match slave number to zs unit number, so that misconfiguration will
    216   1.1    tsubai  * not set up the keyboard as ttya, etc.
    217   1.1    tsubai  */
    218   1.1    tsubai static void
    219  1.46   tsutsui zsc_attach(device_t parent, device_t self, void *aux)
    220   1.1    tsubai {
    221  1.46   tsutsui 	struct zsc_softc *zsc = device_private(self);
    222   1.1    tsubai 	struct confargs *ca = aux;
    223   1.1    tsubai 	struct zsc_attach_args zsc_args;
    224   1.1    tsubai 	volatile struct zschan *zc;
    225   1.1    tsubai 	struct xzs_chanstate *xcs;
    226   1.1    tsubai 	struct zs_chanstate *cs;
    227  1.15    tsubai 	struct zsdevice *zsd;
    228  1.31       chs 	int channel;
    229   1.1    tsubai 	int s, chip, theflags;
    230   1.1    tsubai 	int node, intr[2][3];
    231   1.1    tsubai 	u_int regs[6];
    232  1.51       rin 	char intr_xname[INTRDEVNAMEBUF];
    233   1.1    tsubai 
    234  1.31       chs 	zsc_attached = 1;
    235  1.31       chs 
    236  1.46   tsutsui 	zsc->zsc_dev = self;
    237  1.46   tsutsui 
    238  1.15    tsubai 	chip = 0;
    239   1.8    tsubai 	ca->ca_reg[0] += ca->ca_baseaddr;
    240  1.50      matt 	zsd = mapiodev(ca->ca_reg[0], ca->ca_reg[1], false);
    241   1.8    tsubai 
    242   1.8    tsubai 	node = OF_child(ca->ca_node);	/* ch-a */
    243   1.1    tsubai 
    244   1.1    tsubai 	for (channel = 0; channel < 2; channel++) {
    245   1.8    tsubai 		if (OF_getprop(node, "AAPL,interrupts",
    246   1.9    tsubai 			       intr[channel], sizeof(intr[0])) == -1 &&
    247   1.8    tsubai 		    OF_getprop(node, "interrupts",
    248   1.9    tsubai 			       intr[channel], sizeof(intr[0])) == -1) {
    249  1.46   tsutsui 			aprint_error(": cannot find interrupt property\n");
    250   1.8    tsubai 			return;
    251   1.8    tsubai 		}
    252   1.8    tsubai 
    253   1.8    tsubai 		if (OF_getprop(node, "reg", regs, sizeof(regs)) < 24) {
    254  1.46   tsutsui 			aprint_error(": cannot find reg property\n");
    255   1.8    tsubai 			return;
    256   1.8    tsubai 		}
    257   1.1    tsubai 		regs[2] += ca->ca_baseaddr;
    258   1.1    tsubai 		regs[4] += ca->ca_baseaddr;
    259   1.1    tsubai #ifdef ZS_TXDMA
    260  1.50      matt 		zsc->zsc_txdmareg[channel] = mapiodev(regs[2], regs[3], false);
    261   1.1    tsubai 		zsc->zsc_txdmacmd[channel] =
    262   1.1    tsubai 			dbdma_alloc(sizeof(dbdma_command_t) * 3);
    263  1.18       wiz 		memset(zsc->zsc_txdmacmd[channel], 0,
    264  1.18       wiz 			sizeof(dbdma_command_t) * 3);
    265   1.1    tsubai 		dbdma_reset(zsc->zsc_txdmareg[channel]);
    266   1.1    tsubai #endif
    267   1.1    tsubai 		node = OF_peer(node);	/* ch-b */
    268   1.1    tsubai 	}
    269   1.1    tsubai 
    270  1.48   tsutsui 	aprint_normal(" irq %d,%d\n", intr[0][0], intr[1][0]);
    271   1.1    tsubai 
    272  1.55    martin #if PMAC_G5
    273  1.55    martin 	extern struct consdev failsafe_cons;
    274  1.55    martin 	if (ofwoea_use_serial_console && cn_tab == &failsafe_cons)
    275  1.55    martin 		zscn_delayed_init(zsd);
    276  1.55    martin #endif
    277  1.55    martin 
    278   1.1    tsubai 	/*
    279   1.1    tsubai 	 * Initialize software state for each channel.
    280   1.1    tsubai 	 */
    281   1.1    tsubai 	for (channel = 0; channel < 2; channel++) {
    282   1.1    tsubai 		zsc_args.channel = channel;
    283  1.31       chs 		zsc_args.hwflags = (channel == zs_conschannel ?
    284  1.31       chs 				    ZS_HWFLAG_CONSOLE : 0);
    285   1.1    tsubai 		xcs = &zsc->xzsc_xcs_store[channel];
    286   1.1    tsubai 		cs  = &xcs->xzs_cs;
    287   1.1    tsubai 		zsc->zsc_cs[channel] = cs;
    288   1.1    tsubai 
    289  1.44        ad 		zs_lock_init(cs);
    290   1.1    tsubai 		cs->cs_channel = channel;
    291   1.1    tsubai 		cs->cs_private = NULL;
    292   1.1    tsubai 		cs->cs_ops = &zsops_null;
    293   1.1    tsubai 
    294  1.15    tsubai 		zc = (channel == 0) ? &zsd->zs_chan_a : &zsd->zs_chan_b;
    295  1.15    tsubai 
    296   1.1    tsubai 		cs->cs_reg_csr  = &zc->zc_csr;
    297   1.1    tsubai 		cs->cs_reg_data = &zc->zc_data;
    298   1.1    tsubai 
    299  1.18       wiz 		memcpy(cs->cs_creg, zs_init_reg, 16);
    300  1.18       wiz 		memcpy(cs->cs_preg, zs_init_reg, 16);
    301   1.1    tsubai 
    302   1.1    tsubai 		/* Current BAUD rate generator clock. */
    303  1.11   mycroft 		cs->cs_brg_clk = PCLK / 16;	/* RTxC is 230400*16, so use 230400 */
    304  1.13    tsubai 		if (zsc_args.hwflags & ZS_HWFLAG_CONSOLE)
    305  1.13    tsubai 			cs->cs_defspeed = zs_get_speed(cs);
    306  1.13    tsubai 		else
    307  1.31       chs 			cs->cs_defspeed = zs_defspeed[channel];
    308   1.1    tsubai 		cs->cs_defcflag = zs_def_cflag;
    309   1.1    tsubai 
    310   1.1    tsubai 		/* Make these correspond to cs_defcflag (-crtscts) */
    311   1.1    tsubai 		cs->cs_rr0_dcd = ZSRR0_DCD;
    312   1.1    tsubai 		cs->cs_rr0_cts = 0;
    313   1.1    tsubai 		cs->cs_wr5_dtr = ZSWR5_DTR;
    314   1.1    tsubai 		cs->cs_wr5_rts = 0;
    315   1.1    tsubai 
    316   1.1    tsubai #ifdef __notyet__
    317   1.1    tsubai 		cs->cs_slave_type = ZS_SLAVE_NONE;
    318   1.1    tsubai #endif
    319   1.1    tsubai 
    320   1.1    tsubai 		/* Define BAUD rate stuff. */
    321  1.11   mycroft 		xcs->cs_clocks[0].clk = PCLK;
    322   1.7  wrstuden 		xcs->cs_clocks[0].flags = ZSC_RTXBRG | ZSC_RTXDIV;
    323   1.1    tsubai 		xcs->cs_clocks[1].flags =
    324   1.1    tsubai 			ZSC_RTXBRG | ZSC_RTXDIV | ZSC_VARIABLE | ZSC_EXTERN;
    325   1.1    tsubai 		xcs->cs_clocks[2].flags = ZSC_TRXDIV | ZSC_VARIABLE;
    326   1.1    tsubai 		xcs->cs_clock_count = 3;
    327   1.1    tsubai 		if (channel == 0) {
    328   1.1    tsubai 			theflags = 0; /*mac68k_machine.modem_flags;*/
    329   1.6    tsubai 			/*xcs->cs_clocks[1].clk = mac68k_machine.modem_dcd_clk;*/
    330   1.6    tsubai 			/*xcs->cs_clocks[2].clk = mac68k_machine.modem_cts_clk;*/
    331   1.6    tsubai 			xcs->cs_clocks[1].clk = 0;
    332   1.1    tsubai 			xcs->cs_clocks[2].clk = 0;
    333   1.1    tsubai 		} else {
    334   1.1    tsubai 			theflags = 0; /*mac68k_machine.print_flags;*/
    335   1.1    tsubai 			xcs->cs_clocks[1].flags = ZSC_VARIABLE;
    336   1.1    tsubai 			/*
    337   1.1    tsubai 			 * Yes, we aren't defining ANY clock source enables for the
    338   1.1    tsubai 			 * printer's DCD clock in. The hardware won't let us
    339   1.1    tsubai 			 * use it. But a clock will freak out the chip, so we
    340   1.1    tsubai 			 * let you set it, telling us to bar interrupts on the line.
    341   1.1    tsubai 			 */
    342   1.6    tsubai 			/*xcs->cs_clocks[1].clk = mac68k_machine.print_dcd_clk;*/
    343   1.6    tsubai 			/*xcs->cs_clocks[2].clk = mac68k_machine.print_cts_clk;*/
    344   1.6    tsubai 			xcs->cs_clocks[1].clk = 0;
    345   1.1    tsubai 			xcs->cs_clocks[2].clk = 0;
    346   1.1    tsubai 		}
    347   1.1    tsubai 		if (xcs->cs_clocks[1].clk)
    348   1.1    tsubai 			zsc_args.hwflags |= ZS_HWFLAG_NO_DCD;
    349   1.1    tsubai 		if (xcs->cs_clocks[2].clk)
    350   1.1    tsubai 			zsc_args.hwflags |= ZS_HWFLAG_NO_CTS;
    351   1.1    tsubai 
    352   1.1    tsubai 		/* Set defaults in our "extended" chanstate. */
    353   1.1    tsubai 		xcs->cs_csource = 0;
    354   1.1    tsubai 		xcs->cs_psource = 0;
    355   1.1    tsubai 		xcs->cs_cclk_flag = 0;  /* Nothing fancy by default */
    356   1.1    tsubai 		xcs->cs_pclk_flag = 0;
    357   1.1    tsubai 
    358   1.1    tsubai 		if (theflags & ZSMAC_RAW) {
    359   1.1    tsubai 			zsc_args.hwflags |= ZS_HWFLAG_RAW;
    360   1.1    tsubai 			printf(" (raw defaults)");
    361   1.1    tsubai 		}
    362   1.1    tsubai 
    363   1.1    tsubai 		/*
    364   1.1    tsubai 		 * XXX - This might be better done with a "stub" driver
    365   1.1    tsubai 		 * (to replace zstty) that ignores LocalTalk for now.
    366   1.1    tsubai 		 */
    367   1.1    tsubai 		if (theflags & ZSMAC_LOCALTALK) {
    368   1.1    tsubai 			printf(" shielding from LocalTalk");
    369   1.1    tsubai 			cs->cs_defspeed = 1;
    370   1.1    tsubai 			cs->cs_creg[ZSRR_BAUDLO] = cs->cs_preg[ZSRR_BAUDLO] = 0xff;
    371   1.1    tsubai 			cs->cs_creg[ZSRR_BAUDHI] = cs->cs_preg[ZSRR_BAUDHI] = 0xff;
    372   1.1    tsubai 			zs_write_reg(cs, ZSRR_BAUDLO, 0xff);
    373   1.1    tsubai 			zs_write_reg(cs, ZSRR_BAUDHI, 0xff);
    374   1.1    tsubai 			/*
    375   1.1    tsubai 			 * If we might have LocalTalk, then make sure we have the
    376   1.1    tsubai 			 * Baud rate low-enough to not do any damage.
    377   1.1    tsubai 			 */
    378   1.1    tsubai 		}
    379   1.1    tsubai 
    380   1.1    tsubai 		/*
    381   1.1    tsubai 		 * We used to disable chip interrupts here, but we now
    382   1.1    tsubai 		 * do that in zscnprobe, just in case MacOS left the chip on.
    383   1.1    tsubai 		 */
    384   1.1    tsubai 
    385   1.1    tsubai 		xcs->cs_chip = chip;
    386   1.1    tsubai 
    387   1.1    tsubai 		/* Stash away a copy of the final H/W flags. */
    388   1.1    tsubai 		xcs->cs_hwflags = zsc_args.hwflags;
    389   1.1    tsubai 
    390   1.1    tsubai 		/*
    391   1.1    tsubai 		 * Look for a child driver for this channel.
    392   1.1    tsubai 		 * The child attach will setup the hardware.
    393   1.1    tsubai 		 */
    394  1.52   thorpej 		if (!config_found(self, (void *)&zsc_args, zsc_print,
    395  1.53   thorpej 		    CFARGS_NONE)) {
    396   1.1    tsubai 			/* No sub-driver.  Just reset it. */
    397  1.46   tsutsui 			uint8_t reset = (channel == 0) ?
    398   1.1    tsubai 				ZSWR9_A_RESET : ZSWR9_B_RESET;
    399   1.1    tsubai 			s = splzs();
    400   1.1    tsubai 			zs_write_reg(cs, 9, reset);
    401   1.1    tsubai 			splx(s);
    402   1.1    tsubai 		}
    403   1.1    tsubai 	}
    404   1.1    tsubai 
    405   1.1    tsubai 	/* XXX - Now safe to install interrupt handlers. */
    406  1.51       rin 	for (channel = 0; channel < 2; channel++) {
    407  1.51       rin 		snprintf(intr_xname, sizeof(intr_xname), "%s pio%d",
    408  1.51       rin 		    device_xname(self), channel);
    409  1.51       rin 		intr_establish_xname(intr[channel][0], IST_EDGE, IPL_TTY,
    410  1.51       rin 		    zshard, zsc, intr_xname);
    411   1.1    tsubai #ifdef ZS_TXDMA
    412  1.51       rin 		snprintf(intr_xname, sizeof(intr_xname), "%s dma%d",
    413  1.51       rin 		    device_xname(self), channel);
    414  1.51       rin 		intr_establish_xname(intr[channel][1], IST_EDGE, IPL_TTY,
    415  1.51       rin 		    zs_txdma_int, (void *)channel, intr_xname);
    416   1.1    tsubai #endif
    417  1.51       rin 	}
    418   1.1    tsubai 
    419  1.45        ad 	zsc->zsc_si = softint_establish(SOFTINT_SERIAL,
    420  1.29      matt 		(void (*)(void *)) zsc_intr_soft, zsc);
    421  1.29      matt 
    422   1.1    tsubai 	/*
    423   1.1    tsubai 	 * Set the master interrupt enable and interrupt vector.
    424   1.1    tsubai 	 * (common to both channels, do it on A)
    425   1.1    tsubai 	 */
    426   1.1    tsubai 	cs = zsc->zsc_cs[0];
    427   1.1    tsubai 	s = splzs();
    428   1.1    tsubai 	/* interrupt vector */
    429   1.1    tsubai 	zs_write_reg(cs, 2, zs_init_reg[2]);
    430   1.1    tsubai 	/* master interrupt control (enable) */
    431   1.1    tsubai 	zs_write_reg(cs, 9, zs_init_reg[9]);
    432   1.1    tsubai 	splx(s);
    433   1.1    tsubai }
    434   1.1    tsubai 
    435   1.1    tsubai static int
    436  1.30       chs zsc_print(void *aux, const char *name)
    437   1.1    tsubai {
    438   1.1    tsubai 	struct zsc_attach_args *args = aux;
    439   1.1    tsubai 
    440   1.1    tsubai 	if (name != NULL)
    441  1.24   thorpej 		aprint_normal("%s: ", name);
    442   1.1    tsubai 
    443   1.1    tsubai 	if (args->channel != -1)
    444  1.24   thorpej 		aprint_normal(" channel %d", args->channel);
    445   1.1    tsubai 
    446   1.1    tsubai 	return UNCONF;
    447   1.6    tsubai }
    448   1.6    tsubai 
    449   1.6    tsubai int
    450  1.42  christos zsmdioctl(struct zs_chanstate *cs, u_long cmd, void *data)
    451   1.6    tsubai {
    452   1.6    tsubai 	switch (cmd) {
    453   1.6    tsubai 	default:
    454  1.20    atatat 		return (EPASSTHROUGH);
    455   1.6    tsubai 	}
    456   1.6    tsubai 	return (0);
    457   1.6    tsubai }
    458   1.6    tsubai 
    459   1.6    tsubai void
    460  1.30       chs zsmd_setclock(struct zs_chanstate *cs)
    461   1.6    tsubai {
    462  1.16      matt #ifdef NOTYET
    463   1.6    tsubai 	struct xzs_chanstate *xcs = (void *)cs;
    464   1.6    tsubai 
    465   1.6    tsubai 	if (cs->cs_channel != 0)
    466   1.6    tsubai 		return;
    467   1.6    tsubai 
    468   1.6    tsubai 	/*
    469   1.6    tsubai 	 * If the new clock has the external bit set, then select the
    470   1.6    tsubai 	 * external source.
    471   1.6    tsubai 	 */
    472  1.16      matt 	via_set_modem((xcs->cs_pclk_flag & ZSC_EXTERN) ? 1 : 0);
    473  1.16      matt #endif
    474   1.1    tsubai }
    475   1.1    tsubai 
    476   1.1    tsubai int
    477  1.30       chs zshard(void *arg)
    478   1.1    tsubai {
    479  1.30       chs 	struct zsc_softc *zsc;
    480  1.39   tsutsui 	int rval;
    481   1.1    tsubai 
    482  1.39   tsutsui 	zsc = arg;
    483  1.39   tsutsui 	rval = zsc_intr_hard(zsc);
    484  1.39   tsutsui 	if ((zsc->zsc_cs[0]->cs_softreq) || (zsc->zsc_cs[1]->cs_softreq))
    485  1.45        ad 		softint_schedule(zsc->zsc_si);
    486  1.39   tsutsui 
    487  1.39   tsutsui 	return rval;
    488   1.1    tsubai }
    489   1.1    tsubai 
    490   1.1    tsubai #ifdef ZS_TXDMA
    491   1.1    tsubai int
    492  1.30       chs zs_txdma_int(void *arg)
    493   1.1    tsubai {
    494   1.1    tsubai 	int ch = (int)arg;
    495   1.1    tsubai 	struct zsc_softc *zsc;
    496   1.1    tsubai 	struct zs_chanstate *cs;
    497   1.1    tsubai 
    498  1.47    cegger 	zsc = device_lookup_private(&zsc_cd, ch);
    499   1.1    tsubai 	if (zsc == NULL)
    500   1.1    tsubai 		panic("zs_txdma_int");
    501   1.1    tsubai 
    502   1.1    tsubai 	cs = zsc->zsc_cs[ch];
    503   1.1    tsubai 	zstty_txdma_int(cs);
    504   1.1    tsubai 
    505  1.38   tsutsui 	if (cs->cs_softreq)
    506  1.45        ad 		softint_schedule(zsc->zsc_si);
    507  1.38   tsutsui 
    508   1.1    tsubai 	return 1;
    509   1.1    tsubai }
    510   1.1    tsubai 
    511   1.1    tsubai void
    512  1.42  christos zs_dma_setup(struct zs_chanstate *cs, void *pa, int len)
    513   1.1    tsubai {
    514   1.1    tsubai 	struct zsc_softc *zsc;
    515   1.1    tsubai 	dbdma_command_t *cmdp;
    516   1.1    tsubai 	int ch = cs->cs_channel;
    517   1.1    tsubai 
    518  1.47    cegger 	zsc = device_lookup_private(&zsc_cd, ch);
    519   1.1    tsubai 	cmdp = zsc->zsc_txdmacmd[ch];
    520   1.1    tsubai 
    521   1.1    tsubai 	DBDMA_BUILD(cmdp, DBDMA_CMD_OUT_LAST, 0, len, kvtop(pa),
    522   1.1    tsubai 		DBDMA_INT_ALWAYS, DBDMA_WAIT_NEVER, DBDMA_BRANCH_NEVER);
    523   1.1    tsubai 	cmdp++;
    524   1.1    tsubai 	DBDMA_BUILD(cmdp, DBDMA_CMD_STOP, 0, 0, 0,
    525   1.1    tsubai 		DBDMA_INT_NEVER, DBDMA_WAIT_NEVER, DBDMA_BRANCH_NEVER);
    526   1.1    tsubai 
    527  1.35     perry 	__asm volatile("eieio");
    528   1.1    tsubai 
    529   1.1    tsubai 	dbdma_start(zsc->zsc_txdmareg[ch], zsc->zsc_txdmacmd[ch]);
    530   1.1    tsubai }
    531   1.1    tsubai #endif
    532   1.1    tsubai 
    533   1.1    tsubai /*
    534  1.13    tsubai  * Compute the current baud rate given a ZS channel.
    535  1.13    tsubai  * XXX Assume internal BRG.
    536   1.1    tsubai  */
    537   1.1    tsubai int
    538  1.30       chs zs_get_speed(struct zs_chanstate *cs)
    539   1.1    tsubai {
    540  1.13    tsubai 	int tconst;
    541   1.1    tsubai 
    542  1.13    tsubai 	tconst = zs_read_reg(cs, 12);
    543  1.13    tsubai 	tconst |= zs_read_reg(cs, 13) << 8;
    544  1.13    tsubai 	return TCONST_TO_BPS(cs->cs_brg_clk, tconst);
    545   1.1    tsubai }
    546  1.13    tsubai 
    547  1.13    tsubai #ifndef ZS_TOLERANCE
    548  1.13    tsubai #define ZS_TOLERANCE 51
    549  1.13    tsubai /* 5% in tenths of a %, plus 1 so that exactly 5% will be ok. */
    550  1.13    tsubai #endif
    551   1.1    tsubai 
    552   1.1    tsubai /*
    553   1.1    tsubai  * Search through the signal sources in the channel, and
    554   1.1    tsubai  * pick the best one for the baud rate requested. Return
    555   1.1    tsubai  * a -1 if not achievable in tolerance. Otherwise return 0
    556   1.1    tsubai  * and fill in the values.
    557   1.1    tsubai  *
    558   1.1    tsubai  * This routine draws inspiration from the Atari port's zs.c
    559   1.1    tsubai  * driver in NetBSD 1.1 which did the same type of source switching.
    560   1.1    tsubai  * Tolerance code inspired by comspeed routine in isa/com.c.
    561   1.1    tsubai  *
    562   1.1    tsubai  * By Bill Studenmund, 1996-05-12
    563   1.1    tsubai  */
    564   1.1    tsubai int
    565  1.30       chs zs_set_speed(struct zs_chanstate *cs, int bps)
    566   1.1    tsubai {
    567   1.1    tsubai 	struct xzs_chanstate *xcs = (void *) cs;
    568   1.1    tsubai 	int i, tc, tc0 = 0, tc1, s, sf = 0;
    569   1.1    tsubai 	int src, rate0, rate1, err, tol;
    570   1.1    tsubai 
    571   1.1    tsubai 	if (bps == 0)
    572   1.1    tsubai 		return (0);
    573   1.1    tsubai 
    574   1.1    tsubai 	src = -1;		/* no valid source yet */
    575   1.1    tsubai 	tol = ZS_TOLERANCE;
    576   1.1    tsubai 
    577   1.1    tsubai 	/*
    578   1.1    tsubai 	 * Step through all the sources and see which one matches
    579   1.1    tsubai 	 * the best. A source has to match BETTER than tol to be chosen.
    580   1.1    tsubai 	 * Thus if two sources give the same error, the first one will be
    581  1.54    andvar 	 * chosen. Also, allow for the possibility that one source might run
    582   1.1    tsubai 	 * both the BRG and the direct divider (i.e. RTxC).
    583   1.1    tsubai 	 */
    584   1.1    tsubai 	for (i = 0; i < xcs->cs_clock_count; i++) {
    585   1.1    tsubai 		if (xcs->cs_clocks[i].clk <= 0)
    586  1.17       wiz 			continue;	/* skip non-existent or bad clocks */
    587   1.1    tsubai 		if (xcs->cs_clocks[i].flags & ZSC_BRG) {
    588   1.1    tsubai 			/* check out BRG at /16 */
    589   1.1    tsubai 			tc1 = BPS_TO_TCONST(xcs->cs_clocks[i].clk >> 4, bps);
    590   1.1    tsubai 			if (tc1 >= 0) {
    591   1.1    tsubai 				rate1 = TCONST_TO_BPS(xcs->cs_clocks[i].clk >> 4, tc1);
    592   1.1    tsubai 				err = abs(((rate1 - bps)*1000)/bps);
    593   1.1    tsubai 				if (err < tol) {
    594   1.1    tsubai 					tol = err;
    595   1.1    tsubai 					src = i;
    596   1.1    tsubai 					sf = xcs->cs_clocks[i].flags & ~ZSC_DIV;
    597   1.1    tsubai 					tc0 = tc1;
    598   1.1    tsubai 					rate0 = rate1;
    599   1.1    tsubai 				}
    600   1.1    tsubai 			}
    601   1.1    tsubai 		}
    602   1.1    tsubai 		if (xcs->cs_clocks[i].flags & ZSC_DIV) {
    603   1.1    tsubai 			/*
    604   1.1    tsubai 			 * Check out either /1, /16, /32, or /64
    605   1.1    tsubai 			 * Note: for /1, you'd better be using a synchronized
    606   1.1    tsubai 			 * clock!
    607   1.1    tsubai 			 */
    608   1.1    tsubai 			int b0 = xcs->cs_clocks[i].clk, e0 = abs(b0-bps);
    609   1.1    tsubai 			int b1 = b0 >> 4, e1 = abs(b1-bps);
    610   1.1    tsubai 			int b2 = b1 >> 1, e2 = abs(b2-bps);
    611   1.1    tsubai 			int b3 = b2 >> 1, e3 = abs(b3-bps);
    612   1.1    tsubai 
    613   1.1    tsubai 			if (e0 < e1 && e0 < e2 && e0 < e3) {
    614   1.1    tsubai 				err = e0;
    615   1.1    tsubai 				rate1 = b0;
    616   1.1    tsubai 				tc1 = ZSWR4_CLK_X1;
    617   1.1    tsubai 			} else if (e0 > e1 && e1 < e2  && e1 < e3) {
    618   1.1    tsubai 				err = e1;
    619   1.1    tsubai 				rate1 = b1;
    620   1.1    tsubai 				tc1 = ZSWR4_CLK_X16;
    621   1.1    tsubai 			} else if (e0 > e2 && e1 > e2 && e2 < e3) {
    622   1.1    tsubai 				err = e2;
    623   1.1    tsubai 				rate1 = b2;
    624   1.1    tsubai 				tc1 = ZSWR4_CLK_X32;
    625   1.1    tsubai 			} else {
    626   1.1    tsubai 				err = e3;
    627   1.1    tsubai 				rate1 = b3;
    628   1.1    tsubai 				tc1 = ZSWR4_CLK_X64;
    629   1.1    tsubai 			}
    630   1.1    tsubai 
    631   1.1    tsubai 			err = (err * 1000)/bps;
    632   1.1    tsubai 			if (err < tol) {
    633   1.1    tsubai 				tol = err;
    634   1.1    tsubai 				src = i;
    635   1.1    tsubai 				sf = xcs->cs_clocks[i].flags & ~ZSC_BRG;
    636   1.1    tsubai 				tc0 = tc1;
    637   1.1    tsubai 				rate0 = rate1;
    638   1.1    tsubai 			}
    639   1.1    tsubai 		}
    640   1.1    tsubai 	}
    641   1.1    tsubai #ifdef ZSMACDEBUG
    642   1.1    tsubai 	zsprintf("Checking for rate %d. Found source #%d.\n",bps, src);
    643   1.1    tsubai #endif
    644   1.1    tsubai 	if (src == -1)
    645   1.1    tsubai 		return (EINVAL); /* no can do */
    646   1.1    tsubai 
    647   1.1    tsubai 	/*
    648   1.1    tsubai 	 * The M.I. layer likes to keep cs_brg_clk current, even though
    649   1.1    tsubai 	 * we are the only ones who should be touching the BRG's rate.
    650   1.1    tsubai 	 *
    651   1.1    tsubai 	 * Note: we are assuming that any ZSC_EXTERN signal source comes in
    652   1.1    tsubai 	 * on the RTxC pin. Correct for the mac68k obio zsc.
    653   1.1    tsubai 	 */
    654   1.1    tsubai 	if (sf & ZSC_EXTERN)
    655   1.1    tsubai 		cs->cs_brg_clk = xcs->cs_clocks[i].clk >> 4;
    656   1.1    tsubai 	else
    657  1.11   mycroft 		cs->cs_brg_clk = PCLK / 16;
    658   1.1    tsubai 
    659   1.1    tsubai 	/*
    660   1.1    tsubai 	 * Now we have a source, so set it up.
    661   1.1    tsubai 	 */
    662   1.1    tsubai 	s = splzs();
    663   1.1    tsubai 	xcs->cs_psource = src;
    664   1.1    tsubai 	xcs->cs_pclk_flag = sf;
    665   1.1    tsubai 	bps = rate0;
    666   1.1    tsubai 	if (sf & ZSC_BRG) {
    667   1.1    tsubai 		cs->cs_preg[4] = ZSWR4_CLK_X16;
    668   1.1    tsubai 		cs->cs_preg[11]= ZSWR11_RXCLK_BAUD | ZSWR11_TXCLK_BAUD;
    669   1.1    tsubai 		if (sf & ZSC_PCLK) {
    670   1.1    tsubai 			cs->cs_preg[14] = ZSWR14_BAUD_ENA | ZSWR14_BAUD_FROM_PCLK;
    671   1.1    tsubai 		} else {
    672   1.1    tsubai 			cs->cs_preg[14] = ZSWR14_BAUD_ENA;
    673   1.1    tsubai 		}
    674   1.1    tsubai 		tc = tc0;
    675   1.1    tsubai 	} else {
    676   1.1    tsubai 		cs->cs_preg[4] = tc0;
    677   1.1    tsubai 		if (sf & ZSC_RTXDIV) {
    678   1.1    tsubai 			cs->cs_preg[11] = ZSWR11_RXCLK_RTXC | ZSWR11_TXCLK_RTXC;
    679   1.1    tsubai 		} else {
    680   1.1    tsubai 			cs->cs_preg[11] = ZSWR11_RXCLK_TRXC | ZSWR11_TXCLK_TRXC;
    681   1.1    tsubai 		}
    682   1.1    tsubai 		cs->cs_preg[14]= 0;
    683   1.1    tsubai 		tc = 0xffff;
    684   1.1    tsubai 	}
    685   1.1    tsubai 	/* Set the BAUD rate divisor. */
    686   1.1    tsubai 	cs->cs_preg[12] = tc;
    687   1.1    tsubai 	cs->cs_preg[13] = tc >> 8;
    688   1.1    tsubai 	splx(s);
    689   1.1    tsubai 
    690   1.1    tsubai #ifdef ZSMACDEBUG
    691   1.1    tsubai 	zsprintf("Rate is %7d, tc is %7d, source no. %2d, flags %4x\n", \
    692   1.1    tsubai 	    bps, tc, src, sf);
    693   1.1    tsubai 	zsprintf("Registers are: 4 %x, 11 %x, 14 %x\n\n",
    694   1.1    tsubai 		cs->cs_preg[4], cs->cs_preg[11], cs->cs_preg[14]);
    695   1.1    tsubai #endif
    696   1.1    tsubai 
    697   1.1    tsubai 	cs->cs_preg[5] |= ZSWR5_RTS;	/* Make sure the drivers are on! */
    698   1.1    tsubai 
    699   1.1    tsubai 	/* Caller will stuff the pending registers. */
    700   1.1    tsubai 	return (0);
    701   1.1    tsubai }
    702   1.1    tsubai 
    703   1.1    tsubai int
    704  1.30       chs zs_set_modes(struct zs_chanstate *cs, int cflag)
    705   1.1    tsubai {
    706   1.1    tsubai 	struct xzs_chanstate *xcs = (void*)cs;
    707   1.1    tsubai 	int s;
    708   1.1    tsubai 
    709   1.1    tsubai 	/*
    710   1.1    tsubai 	 * Make sure we don't enable hfc on a signal line we're ignoring.
    711   1.1    tsubai 	 * As we enable CTS interrupts only if we have CRTSCTS or CDTRCTS,
    712  1.54    andvar 	 * this code also effectively turns off ZSWR15_CTS_IE.
    713   1.1    tsubai 	 *
    714   1.1    tsubai 	 * Also, disable DCD interrupts if we've been told to ignore
    715   1.1    tsubai 	 * the DCD pin. Happens on mac68k because the input line for
    716   1.1    tsubai 	 * DCD can also be used as a clock input.  (Just set CLOCAL.)
    717   1.1    tsubai 	 *
    718   1.1    tsubai 	 * If someone tries to turn an invalid flow mode on, Just Say No
    719   1.1    tsubai 	 * (Suggested by gwr)
    720   1.1    tsubai 	 */
    721   1.1    tsubai 	if ((cflag & CDTRCTS) && (cflag & (CRTSCTS | MDMBUF)))
    722   1.1    tsubai 		return (EINVAL);
    723   1.1    tsubai 	if (xcs->cs_hwflags & ZS_HWFLAG_NO_DCD) {
    724   1.1    tsubai 		if (cflag & MDMBUF)
    725   1.1    tsubai 			return (EINVAL);
    726   1.1    tsubai 		cflag |= CLOCAL;
    727   1.1    tsubai 	}
    728   1.1    tsubai 	if ((xcs->cs_hwflags & ZS_HWFLAG_NO_CTS) && (cflag & (CRTSCTS | CDTRCTS)))
    729   1.1    tsubai 		return (EINVAL);
    730   1.1    tsubai 
    731   1.1    tsubai 	/*
    732   1.1    tsubai 	 * Output hardware flow control on the chip is horrendous:
    733   1.1    tsubai 	 * if carrier detect drops, the receiver is disabled, and if
    734  1.54    andvar 	 * CTS drops, the transmitter is stopped IN MID CHARACTER!
    735   1.1    tsubai 	 * Therefore, NEVER set the HFC bit, and instead use the
    736   1.1    tsubai 	 * status interrupt to detect CTS changes.
    737   1.1    tsubai 	 */
    738   1.1    tsubai 	s = splzs();
    739   1.1    tsubai 	if ((cflag & (CLOCAL | MDMBUF)) != 0)
    740   1.1    tsubai 		cs->cs_rr0_dcd = 0;
    741   1.1    tsubai 	else
    742   1.1    tsubai 		cs->cs_rr0_dcd = ZSRR0_DCD;
    743   1.1    tsubai 	/*
    744   1.1    tsubai 	 * The mac hardware only has one output, DTR (HSKo in Mac
    745   1.1    tsubai 	 * parlance). In HFC mode, we use it for the functions
    746   1.1    tsubai 	 * typically served by RTS and DTR on other ports, so we
    747   1.1    tsubai 	 * have to fake the upper layer out some.
    748   1.1    tsubai 	 *
    749   1.1    tsubai 	 * CRTSCTS we use CTS as an input which tells us when to shut up.
    750   1.1    tsubai 	 * We make no effort to shut up the other side of the connection.
    751   1.1    tsubai 	 * DTR is used to hang up the modem.
    752   1.1    tsubai 	 *
    753   1.1    tsubai 	 * In CDTRCTS, we use CTS to tell us to stop, but we use DTR to
    754   1.1    tsubai 	 * shut up the other side.
    755   1.1    tsubai 	 */
    756   1.1    tsubai 	if ((cflag & CRTSCTS) != 0) {
    757   1.1    tsubai 		cs->cs_wr5_dtr = ZSWR5_DTR;
    758   1.1    tsubai 		cs->cs_wr5_rts = 0;
    759   1.1    tsubai 		cs->cs_rr0_cts = ZSRR0_CTS;
    760   1.1    tsubai 	} else if ((cflag & CDTRCTS) != 0) {
    761   1.1    tsubai 		cs->cs_wr5_dtr = 0;
    762   1.1    tsubai 		cs->cs_wr5_rts = ZSWR5_DTR;
    763   1.1    tsubai 		cs->cs_rr0_cts = ZSRR0_CTS;
    764   1.1    tsubai 	} else if ((cflag & MDMBUF) != 0) {
    765   1.1    tsubai 		cs->cs_wr5_dtr = 0;
    766   1.1    tsubai 		cs->cs_wr5_rts = ZSWR5_DTR;
    767   1.1    tsubai 		cs->cs_rr0_cts = ZSRR0_DCD;
    768   1.1    tsubai 	} else {
    769   1.1    tsubai 		cs->cs_wr5_dtr = ZSWR5_DTR;
    770   1.1    tsubai 		cs->cs_wr5_rts = 0;
    771   1.1    tsubai 		cs->cs_rr0_cts = 0;
    772   1.1    tsubai 	}
    773   1.1    tsubai 	splx(s);
    774   1.1    tsubai 
    775   1.1    tsubai 	/* Caller will stuff the pending registers. */
    776   1.1    tsubai 	return (0);
    777   1.1    tsubai }
    778   1.1    tsubai 
    779   1.1    tsubai 
    780   1.1    tsubai /*
    781   1.1    tsubai  * Read or write the chip with suitable delays.
    782   1.1    tsubai  * MacII hardware has the delay built in.
    783   1.1    tsubai  * No need for extra delay. :-) However, some clock-chirped
    784   1.1    tsubai  * macs, or zsc's on serial add-on boards might need it.
    785   1.1    tsubai  */
    786   1.1    tsubai #define	ZS_DELAY()
    787   1.1    tsubai 
    788  1.46   tsutsui uint8_t
    789  1.46   tsutsui zs_read_reg(struct zs_chanstate *cs, uint8_t reg)
    790   1.1    tsubai {
    791  1.46   tsutsui 	uint8_t val;
    792   1.1    tsubai 
    793   1.1    tsubai 	out8(cs->cs_reg_csr, reg);
    794   1.1    tsubai 	ZS_DELAY();
    795   1.1    tsubai 	val = in8(cs->cs_reg_csr);
    796   1.1    tsubai 	ZS_DELAY();
    797   1.1    tsubai 	return val;
    798   1.1    tsubai }
    799   1.1    tsubai 
    800   1.1    tsubai void
    801  1.46   tsutsui zs_write_reg(struct zs_chanstate *cs, uint8_t reg, uint8_t val)
    802   1.1    tsubai {
    803   1.1    tsubai 	out8(cs->cs_reg_csr, reg);
    804   1.1    tsubai 	ZS_DELAY();
    805   1.1    tsubai 	out8(cs->cs_reg_csr, val);
    806   1.1    tsubai 	ZS_DELAY();
    807   1.1    tsubai }
    808   1.1    tsubai 
    809  1.46   tsutsui uint8_t
    810  1.30       chs zs_read_csr(struct zs_chanstate *cs)
    811   1.1    tsubai {
    812  1.46   tsutsui 	uint8_t val;
    813   1.1    tsubai 
    814   1.1    tsubai 	val = in8(cs->cs_reg_csr);
    815   1.1    tsubai 	ZS_DELAY();
    816   1.1    tsubai 	/* make up for the fact CTS is wired backwards */
    817   1.1    tsubai 	val ^= ZSRR0_CTS;
    818   1.1    tsubai 	return val;
    819   1.1    tsubai }
    820   1.1    tsubai 
    821  1.30       chs void
    822  1.46   tsutsui zs_write_csr(struct zs_chanstate *cs, uint8_t val)
    823   1.1    tsubai {
    824   1.1    tsubai 	/* Note, the csr does not write CTS... */
    825   1.1    tsubai 	out8(cs->cs_reg_csr, val);
    826   1.1    tsubai 	ZS_DELAY();
    827   1.1    tsubai }
    828   1.1    tsubai 
    829  1.46   tsutsui uint8_t
    830  1.30       chs zs_read_data(struct zs_chanstate *cs)
    831   1.1    tsubai {
    832  1.46   tsutsui 	uint8_t val;
    833   1.1    tsubai 
    834   1.1    tsubai 	val = in8(cs->cs_reg_data);
    835   1.1    tsubai 	ZS_DELAY();
    836   1.1    tsubai 	return val;
    837   1.1    tsubai }
    838   1.1    tsubai 
    839  1.30       chs void
    840  1.46   tsutsui zs_write_data(struct zs_chanstate *cs, uint8_t val)
    841   1.1    tsubai {
    842   1.1    tsubai 	out8(cs->cs_reg_data, val);
    843   1.1    tsubai 	ZS_DELAY();
    844   1.1    tsubai }
    845   1.1    tsubai 
    846   1.1    tsubai /****************************************************************
    847   1.1    tsubai  * Console support functions (powermac specific!)
    848   1.1    tsubai  * Note: this code is allowed to know about the layout of
    849   1.1    tsubai  * the chip registers, and uses that to keep things simple.
    850   1.1    tsubai  * XXX - I think I like the mvme167 code better. -gwr
    851   1.1    tsubai  * XXX - Well :-P  :-)  -wrs
    852   1.1    tsubai  ****************************************************************/
    853   1.1    tsubai 
    854   1.4    tsubai static int stdin, stdout;
    855   1.4    tsubai 
    856   1.1    tsubai /*
    857   1.1    tsubai  * Console functions.
    858   1.1    tsubai  */
    859   1.1    tsubai 
    860   1.1    tsubai /*
    861   1.1    tsubai  * zscnprobe is the routine which gets called as the kernel is trying to
    862   1.1    tsubai  * figure out where the console should be. Each io driver which might
    863   1.1    tsubai  * be the console (as defined in mac68k/conf.c) gets probed. The probe
    864   1.1    tsubai  * fills in the consdev structure. Important parts are the device #,
    865   1.1    tsubai  * and the console priority. Values are CN_DEAD (don't touch me),
    866   1.1    tsubai  * CN_NORMAL (I'm here, but elsewhere might be better), CN_INTERNAL
    867   1.1    tsubai  * (the video, better than CN_NORMAL), and CN_REMOTE (pick me!)
    868   1.1    tsubai  *
    869   1.1    tsubai  * As the mac's a bit different, we do extra work here. We mainly check
    870   1.1    tsubai  * to see if we have serial echo going on. Also chould check for default
    871   1.1    tsubai  * speeds.
    872   1.1    tsubai  */
    873   1.1    tsubai 
    874   1.1    tsubai /*
    875   1.1    tsubai  * Polled input char.
    876   1.1    tsubai  */
    877   1.1    tsubai int
    878  1.30       chs zs_getc(void *v)
    879   1.1    tsubai {
    880  1.30       chs 	volatile struct zschan *zc = v;
    881  1.30       chs 	int s, c, rr0;
    882   1.1    tsubai 
    883   1.1    tsubai 	s = splhigh();
    884   1.1    tsubai 	/* Wait for a character to arrive. */
    885   1.1    tsubai 	do {
    886   1.1    tsubai 		rr0 = in8(&zc->zc_csr);
    887   1.1    tsubai 		ZS_DELAY();
    888   1.1    tsubai 	} while ((rr0 & ZSRR0_RX_READY) == 0);
    889   1.1    tsubai 
    890   1.1    tsubai 	c = in8(&zc->zc_data);
    891   1.1    tsubai 	ZS_DELAY();
    892   1.1    tsubai 	splx(s);
    893   1.1    tsubai 
    894   1.1    tsubai 	/*
    895   1.1    tsubai 	 * This is used by the kd driver to read scan codes,
    896   1.1    tsubai 	 * so don't translate '\r' ==> '\n' here...
    897   1.1    tsubai 	 */
    898   1.1    tsubai 	return (c);
    899   1.1    tsubai }
    900   1.1    tsubai 
    901   1.1    tsubai /*
    902   1.1    tsubai  * Polled output char.
    903   1.1    tsubai  */
    904   1.1    tsubai void
    905  1.30       chs zs_putc(void *v, int c)
    906   1.1    tsubai {
    907  1.30       chs 	volatile struct zschan *zc = v;
    908  1.30       chs 	int s, rr0;
    909  1.30       chs 	long wait = 0;
    910   1.1    tsubai 
    911   1.1    tsubai 	s = splhigh();
    912   1.1    tsubai 	/* Wait for transmitter to become ready. */
    913   1.1    tsubai 	do {
    914   1.1    tsubai 		rr0 = in8(&zc->zc_csr);
    915   1.1    tsubai 		ZS_DELAY();
    916   1.1    tsubai 	} while (((rr0 & ZSRR0_TX_READY) == 0) && (wait++ < 1000000));
    917   1.1    tsubai 
    918   1.1    tsubai 	if ((rr0 & ZSRR0_TX_READY) != 0) {
    919   1.1    tsubai 		out8(&zc->zc_data, c);
    920   1.1    tsubai 		ZS_DELAY();
    921   1.1    tsubai 	}
    922   1.1    tsubai 	splx(s);
    923   1.1    tsubai }
    924   1.1    tsubai 
    925   1.1    tsubai 
    926   1.1    tsubai /*
    927   1.1    tsubai  * Polled console input putchar.
    928   1.1    tsubai  */
    929   1.1    tsubai int
    930  1.30       chs zscngetc(dev_t dev)
    931   1.1    tsubai {
    932  1.30       chs 	volatile struct zschan *zc = zs_conschan;
    933  1.30       chs 	int c;
    934   1.1    tsubai 
    935   1.4    tsubai 	if (zc) {
    936  1.33      matt 		c = zs_getc(__UNVOLATILE(zc));
    937   1.4    tsubai 	} else {
    938   1.4    tsubai 		char ch = 0;
    939   1.4    tsubai 		OF_read(stdin, &ch, 1);
    940   1.4    tsubai 		c = ch;
    941   1.4    tsubai 	}
    942   1.4    tsubai 	return c;
    943   1.1    tsubai }
    944   1.1    tsubai 
    945   1.1    tsubai /*
    946   1.1    tsubai  * Polled console output putchar.
    947   1.1    tsubai  */
    948   1.1    tsubai void
    949  1.30       chs zscnputc(dev_t dev, int c)
    950   1.1    tsubai {
    951  1.30       chs 	volatile struct zschan *zc = zs_conschan;
    952   1.1    tsubai 
    953   1.4    tsubai 	if (zc) {
    954  1.33      matt 		zs_putc(__UNVOLATILE(zc), c);
    955   1.4    tsubai 	} else {
    956   1.4    tsubai 		char ch = c;
    957   1.4    tsubai 		OF_write(stdout, &ch, 1);
    958   1.4    tsubai 	}
    959   1.1    tsubai }
    960   1.1    tsubai 
    961   1.1    tsubai /*
    962   1.1    tsubai  * Handle user request to enter kernel debugger.
    963   1.1    tsubai  */
    964   1.1    tsubai void
    965  1.30       chs zs_abort(struct zs_chanstate *cs)
    966   1.1    tsubai {
    967   1.1    tsubai 	volatile struct zschan *zc = zs_conschan;
    968   1.1    tsubai 	int rr0;
    969  1.30       chs 	long wait = 0;
    970   1.1    tsubai 
    971   1.1    tsubai 	if (zs_cons_canabort == 0)
    972   1.1    tsubai 		return;
    973   1.1    tsubai 
    974   1.1    tsubai 	/* Wait for end of break to avoid PROM abort. */
    975   1.1    tsubai 	do {
    976   1.1    tsubai 		rr0 = in8(&zc->zc_csr);
    977   1.1    tsubai 		ZS_DELAY();
    978   1.1    tsubai 	} while ((rr0 & ZSRR0_BREAK) && (wait++ < ZSABORT_DELAY));
    979   1.1    tsubai 
    980   1.1    tsubai 	if (wait > ZSABORT_DELAY) {
    981   1.1    tsubai 		zs_cons_canabort = 0;
    982   1.1    tsubai 	/* If we time out, turn off the abort ability! */
    983   1.1    tsubai 	}
    984   1.1    tsubai 
    985  1.19       dbj #if defined(KGDB)
    986  1.19       dbj 	kgdb_connect(1);
    987  1.19       dbj #elif defined(DDB)
    988   1.1    tsubai 	Debugger();
    989   1.1    tsubai #endif
    990   1.1    tsubai }
    991   1.1    tsubai 
    992   1.1    tsubai void
    993  1.30       chs zscnprobe(struct consdev *cp)
    994   1.1    tsubai {
    995   1.4    tsubai 	int chosen, pkg;
    996   1.4    tsubai 	char name[16];
    997   1.4    tsubai 
    998   1.4    tsubai 	if ((chosen = OF_finddevice("/chosen")) == -1)
    999   1.4    tsubai 		return;
   1000   1.4    tsubai 
   1001   1.4    tsubai 	if (OF_getprop(chosen, "stdin", &stdin, sizeof(stdin)) == -1)
   1002   1.4    tsubai 		return;
   1003   1.4    tsubai 	if (OF_getprop(chosen, "stdout", &stdout, sizeof(stdout)) == -1)
   1004   1.4    tsubai 		return;
   1005   1.4    tsubai 
   1006   1.4    tsubai 	if ((pkg = OF_instance_to_package(stdin)) == -1)
   1007   1.4    tsubai 		return;
   1008   1.1    tsubai 
   1009  1.18       wiz 	memset(name, 0, sizeof(name));
   1010   1.4    tsubai 	if (OF_getprop(pkg, "device_type", name, sizeof(name)) == -1)
   1011   1.1    tsubai 		return;
   1012   1.1    tsubai 
   1013   1.4    tsubai 	if (strcmp(name, "serial") != 0)
   1014   1.4    tsubai 		return;
   1015   1.4    tsubai 
   1016  1.18       wiz 	memset(name, 0, sizeof(name));
   1017   1.4    tsubai 	if (OF_getprop(pkg, "name", name, sizeof(name)) == -1)
   1018   1.1    tsubai 		return;
   1019   1.1    tsubai 
   1020   1.4    tsubai 	cp->cn_pri = CN_REMOTE;
   1021   1.1    tsubai }
   1022   1.1    tsubai 
   1023   1.1    tsubai void
   1024  1.30       chs zscninit(struct consdev *cp)
   1025   1.1    tsubai {
   1026  1.15    tsubai 	int escc, escc_ch, obio, zs_offset;
   1027  1.15    tsubai 	u_int32_t reg[5];
   1028   1.4    tsubai 	char name[16];
   1029   1.1    tsubai 
   1030  1.15    tsubai 	if ((escc_ch = OF_instance_to_package(stdin)) == -1)
   1031   1.1    tsubai 		return;
   1032   1.1    tsubai 
   1033  1.18       wiz 	memset(name, 0, sizeof(name));
   1034  1.15    tsubai 	if (OF_getprop(escc_ch, "name", name, sizeof(name)) == -1)
   1035   1.1    tsubai 		return;
   1036   1.1    tsubai 
   1037  1.37  macallan 	zs_conschannel = strcmp(name, "ch-b") == 0;
   1038  1.15    tsubai 
   1039  1.15    tsubai 	if (OF_getprop(escc_ch, "reg", reg, sizeof(reg)) < 4)
   1040  1.15    tsubai 		return;
   1041  1.15    tsubai 	zs_offset = reg[0];
   1042  1.15    tsubai 
   1043  1.15    tsubai 	escc = OF_parent(escc_ch);
   1044  1.15    tsubai 	obio = OF_parent(escc);
   1045  1.15    tsubai 
   1046  1.15    tsubai 	if (OF_getprop(obio, "assigned-addresses", reg, sizeof(reg)) < 12)
   1047  1.15    tsubai 		return;
   1048  1.15    tsubai 	zs_conschan = (void *)(reg[2] + zs_offset);
   1049   1.1    tsubai }
   1050  1.55    martin 
   1051  1.55    martin #if PMAC_G5
   1052  1.55    martin /*
   1053  1.55    martin  * Do a delayed (now that the device is properly mapped) init of the
   1054  1.55    martin  * global zs console state, basically the equivalent of calling
   1055  1.55    martin  *	zscnprobe(&consdev_zs); zscninit(&consdev_zs);
   1056  1.55    martin  * but with the mapped address of the device passed in as zsd.
   1057  1.55    martin  */
   1058  1.55    martin static void
   1059  1.55    martin zscn_delayed_init(struct zsdevice *zsd)
   1060  1.55    martin {
   1061  1.55    martin 	int chosen, escc_ch;
   1062  1.55    martin 	char name[16];
   1063  1.55    martin 
   1064  1.55    martin 	if ((chosen = OF_finddevice("/chosen")) == -1)
   1065  1.55    martin 		return;
   1066  1.55    martin 
   1067  1.55    martin 	if (OF_getprop(chosen, "stdin", &stdin, sizeof(stdin)) == -1)
   1068  1.55    martin 		return;
   1069  1.55    martin 
   1070  1.55    martin 	if (OF_getprop(chosen, "stdout", &stdout, sizeof(stdout)) == -1)
   1071  1.55    martin 		return;
   1072  1.55    martin 
   1073  1.55    martin 	if ((escc_ch = OF_instance_to_package(stdin)) == -1)
   1074  1.55    martin 		return;
   1075  1.55    martin 
   1076  1.55    martin 	memset(name, 0, sizeof(name));
   1077  1.55    martin 	if (OF_getprop(escc_ch, "name", name, sizeof(name)) == -1)
   1078  1.55    martin 		return;
   1079  1.55    martin 
   1080  1.55    martin 	zs_conschannel = strcmp(name, "ch-b") == 0;
   1081  1.55    martin 	zs_conschan = (zs_conschannel == 0) ?
   1082  1.55    martin 	    &zsd->zs_chan_a :
   1083  1.55    martin 	    &zsd->zs_chan_b;
   1084  1.55    martin 	cn_tab = &consdev_zs;
   1085  1.55    martin }
   1086  1.55    martin #endif
   1087