zs.c revision 1.38 1 1.38 mrg /* $NetBSD: zs.c,v 1.38 1996/05/28 14:06:28 mrg Exp $ */
2 1.18 deraadt
3 1.1 deraadt /*
4 1.1 deraadt * Copyright (c) 1992, 1993
5 1.1 deraadt * The Regents of the University of California. All rights reserved.
6 1.1 deraadt *
7 1.1 deraadt * This software was developed by the Computer Systems Engineering group
8 1.1 deraadt * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
9 1.1 deraadt * contributed to Berkeley.
10 1.1 deraadt *
11 1.1 deraadt * All advertising materials mentioning features or use of this software
12 1.1 deraadt * must display the following acknowledgement:
13 1.1 deraadt * This product includes software developed by the University of
14 1.1 deraadt * California, Lawrence Berkeley Laboratory.
15 1.1 deraadt *
16 1.1 deraadt * Redistribution and use in source and binary forms, with or without
17 1.1 deraadt * modification, are permitted provided that the following conditions
18 1.1 deraadt * are met:
19 1.1 deraadt * 1. Redistributions of source code must retain the above copyright
20 1.1 deraadt * notice, this list of conditions and the following disclaimer.
21 1.1 deraadt * 2. Redistributions in binary form must reproduce the above copyright
22 1.1 deraadt * notice, this list of conditions and the following disclaimer in the
23 1.1 deraadt * documentation and/or other materials provided with the distribution.
24 1.1 deraadt * 3. All advertising materials mentioning features or use of this software
25 1.1 deraadt * must display the following acknowledgement:
26 1.1 deraadt * This product includes software developed by the University of
27 1.1 deraadt * California, Berkeley and its contributors.
28 1.1 deraadt * 4. Neither the name of the University nor the names of its contributors
29 1.1 deraadt * may be used to endorse or promote products derived from this software
30 1.1 deraadt * without specific prior written permission.
31 1.1 deraadt *
32 1.1 deraadt * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
33 1.1 deraadt * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
34 1.1 deraadt * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
35 1.1 deraadt * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
36 1.1 deraadt * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
37 1.1 deraadt * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
38 1.1 deraadt * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
39 1.1 deraadt * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
40 1.1 deraadt * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
41 1.1 deraadt * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
42 1.1 deraadt * SUCH DAMAGE.
43 1.1 deraadt *
44 1.1 deraadt * @(#)zs.c 8.1 (Berkeley) 7/19/93
45 1.1 deraadt */
46 1.1 deraadt
47 1.1 deraadt /*
48 1.1 deraadt * Zilog Z8530 (ZSCC) driver.
49 1.1 deraadt *
50 1.1 deraadt * Runs two tty ports (ttya and ttyb) on zs0,
51 1.38 mrg * and runs a keyboard and mouse on zs1, and
52 1.38 mrg * possibly two more tty ports (ttyc and ttyd) on zs2.
53 1.1 deraadt *
54 1.1 deraadt * This driver knows far too much about chip to usage mappings.
55 1.1 deraadt */
56 1.38 mrg #include "zs.h"
57 1.38 mrg
58 1.1 deraadt #include <sys/param.h>
59 1.34 christos #include <sys/systm.h>
60 1.1 deraadt #include <sys/proc.h>
61 1.1 deraadt #include <sys/device.h>
62 1.1 deraadt #include <sys/file.h>
63 1.1 deraadt #include <sys/ioctl.h>
64 1.32 pk #include <sys/malloc.h>
65 1.1 deraadt #include <sys/tty.h>
66 1.1 deraadt #include <sys/time.h>
67 1.1 deraadt #include <sys/kernel.h>
68 1.1 deraadt #include <sys/syslog.h>
69 1.37 christos #include <sys/conf.h>
70 1.1 deraadt
71 1.1 deraadt #include <machine/autoconf.h>
72 1.37 christos #include <machine/conf.h>
73 1.1 deraadt #include <machine/cpu.h>
74 1.38 mrg #include <machine/kbd.h>
75 1.1 deraadt
76 1.1 deraadt #include <sparc/sparc/vaddrs.h>
77 1.1 deraadt #include <sparc/sparc/auxreg.h>
78 1.38 mrg #include <sparc/dev/zsreg.h>
79 1.31 cgd #include <dev/ic/z8530reg.h>
80 1.1 deraadt #include <sparc/dev/zsvar.h>
81 1.1 deraadt
82 1.1 deraadt #ifdef KGDB
83 1.1 deraadt #include <machine/remote-sl.h>
84 1.1 deraadt #endif
85 1.1 deraadt
86 1.1 deraadt #define ZSMAJOR 12 /* XXX */
87 1.1 deraadt
88 1.1 deraadt #define ZS_KBD 2 /* XXX */
89 1.1 deraadt #define ZS_MOUSE 3 /* XXX */
90 1.1 deraadt
91 1.1 deraadt /* the magic number below was stolen from the Sprite source. */
92 1.1 deraadt #define PCLK (19660800/4) /* PCLK pin input clock rate */
93 1.1 deraadt
94 1.1 deraadt /*
95 1.1 deraadt * Select software interrupt bit based on TTY ipl.
96 1.1 deraadt */
97 1.1 deraadt #if PIL_TTY == 1
98 1.1 deraadt # define IE_ZSSOFT IE_L1
99 1.1 deraadt #elif PIL_TTY == 4
100 1.1 deraadt # define IE_ZSSOFT IE_L4
101 1.1 deraadt #elif PIL_TTY == 6
102 1.1 deraadt # define IE_ZSSOFT IE_L6
103 1.1 deraadt #else
104 1.1 deraadt # error "no suitable software interrupt bit"
105 1.1 deraadt #endif
106 1.1 deraadt
107 1.1 deraadt /*
108 1.38 mrg * Software state per found chip.
109 1.1 deraadt */
110 1.38 mrg struct zs_softc {
111 1.38 mrg struct device sc_dev; /* base device */
112 1.38 mrg volatile struct zsdevice *sc_zs; /* chip registers */
113 1.38 mrg struct evcnt sc_intrcnt;
114 1.38 mrg struct zs_chanstate sc_cs[2]; /* chan A/B software state */
115 1.1 deraadt };
116 1.1 deraadt
117 1.1 deraadt /* Definition of the driver for autoconfig. */
118 1.19 deraadt static int zsmatch __P((struct device *, void *, void *));
119 1.16 deraadt static void zsattach __P((struct device *, struct device *, void *));
120 1.35 thorpej
121 1.35 thorpej struct cfattach zs_ca = {
122 1.38 mrg sizeof(struct zs_softc), zsmatch, zsattach
123 1.35 thorpej };
124 1.35 thorpej
125 1.35 thorpej struct cfdriver zs_cd = {
126 1.35 thorpej NULL, "zs", DV_TTY
127 1.35 thorpej };
128 1.1 deraadt
129 1.1 deraadt /* Interrupt handlers. */
130 1.16 deraadt static int zshard __P((void *));
131 1.1 deraadt static struct intrhand levelhard = { zshard };
132 1.16 deraadt static int zssoft __P((void *));
133 1.1 deraadt static struct intrhand levelsoft = { zssoft };
134 1.1 deraadt
135 1.1 deraadt struct zs_chanstate *zslist;
136 1.1 deraadt
137 1.1 deraadt /* Routines called from other code. */
138 1.16 deraadt static void zsiopen __P((struct tty *));
139 1.16 deraadt static void zsiclose __P((struct tty *));
140 1.16 deraadt static void zsstart __P((struct tty *));
141 1.16 deraadt static int zsparam __P((struct tty *, struct termios *));
142 1.1 deraadt
143 1.1 deraadt /* Routines purely local to this driver. */
144 1.16 deraadt static int zs_getspeed __P((volatile struct zschan *));
145 1.34 christos #ifdef KGDB
146 1.16 deraadt static void zs_reset __P((volatile struct zschan *, int, int));
147 1.34 christos #endif
148 1.16 deraadt static void zs_modem __P((struct zs_chanstate *, int));
149 1.16 deraadt static void zs_loadchannelregs __P((volatile struct zschan *, u_char *));
150 1.1 deraadt
151 1.1 deraadt /* Console stuff. */
152 1.1 deraadt static struct tty *zs_ctty; /* console `struct tty *' */
153 1.1 deraadt static int zs_consin = -1, zs_consout = -1;
154 1.34 christos static void zscnputc __P((int)); /* console putc function */
155 1.1 deraadt static volatile struct zschan *zs_conschan;
156 1.38 mrg static struct tty *zs_checkcons __P((struct zs_softc *, int,
157 1.38 mrg struct zs_chanstate *));
158 1.1 deraadt
159 1.1 deraadt #ifdef KGDB
160 1.1 deraadt /* KGDB stuff. Must reboot to change zs_kgdbunit. */
161 1.1 deraadt extern int kgdb_dev, kgdb_rate;
162 1.1 deraadt static int zs_kgdb_savedspeed;
163 1.16 deraadt static void zs_checkkgdb __P((int, struct zs_chanstate *, struct tty *));
164 1.34 christos void zskgdb __P((int));
165 1.34 christos static int zs_kgdb_getc __P((void *));
166 1.34 christos static void zs_kgdb_putc __P((void *, int));
167 1.1 deraadt #endif
168 1.1 deraadt
169 1.34 christos static int zsrint __P((struct zs_chanstate *, volatile struct zschan *));
170 1.34 christos static int zsxint __P((struct zs_chanstate *, volatile struct zschan *));
171 1.34 christos static int zssint __P((struct zs_chanstate *, volatile struct zschan *));
172 1.34 christos
173 1.34 christos void zsabort __P((void));
174 1.34 christos static void zsoverrun __P((int, long *, char *));
175 1.34 christos
176 1.1 deraadt static volatile struct zsdevice *zsaddr[NZS]; /* XXX, but saves work */
177 1.1 deraadt
178 1.1 deraadt /*
179 1.1 deraadt * Console keyboard L1-A processing is done in the hardware interrupt code,
180 1.1 deraadt * so we need to duplicate some of the console keyboard decode state. (We
181 1.1 deraadt * must not use the regular state as the hardware code keeps ahead of the
182 1.1 deraadt * software state: the software state tracks the most recent ring input but
183 1.1 deraadt * the hardware state tracks the most recent ZSCC input.) See also kbd.h.
184 1.1 deraadt */
185 1.1 deraadt static struct conk_state { /* console keyboard state */
186 1.1 deraadt char conk_id; /* true => ID coming up (console only) */
187 1.1 deraadt char conk_l1; /* true => L1 pressed (console only) */
188 1.1 deraadt } zsconk_state;
189 1.1 deraadt
190 1.1 deraadt int zshardscope;
191 1.1 deraadt int zsshortcuts; /* number of "shortcut" software interrupts */
192 1.1 deraadt
193 1.12 deraadt #ifdef SUN4
194 1.34 christos static u_int zs_read __P((volatile struct zschan *, u_int reg));
195 1.34 christos static u_int zs_write __P((volatile struct zschan *, u_int, u_int));
196 1.34 christos
197 1.34 christos static u_int
198 1.12 deraadt zs_read(zc, reg)
199 1.12 deraadt volatile struct zschan *zc;
200 1.34 christos u_int reg;
201 1.12 deraadt {
202 1.12 deraadt u_char val;
203 1.12 deraadt
204 1.12 deraadt zc->zc_csr = reg;
205 1.12 deraadt ZS_DELAY();
206 1.12 deraadt val = zc->zc_csr;
207 1.12 deraadt ZS_DELAY();
208 1.12 deraadt return val;
209 1.12 deraadt }
210 1.12 deraadt
211 1.34 christos static u_int
212 1.12 deraadt zs_write(zc, reg, val)
213 1.12 deraadt volatile struct zschan *zc;
214 1.34 christos u_int reg, val;
215 1.12 deraadt {
216 1.12 deraadt zc->zc_csr = reg;
217 1.12 deraadt ZS_DELAY();
218 1.12 deraadt zc->zc_csr = val;
219 1.12 deraadt ZS_DELAY();
220 1.12 deraadt return val;
221 1.12 deraadt }
222 1.12 deraadt #endif /* SUN4 */
223 1.12 deraadt
224 1.1 deraadt /*
225 1.1 deraadt * Match slave number to zs unit number, so that misconfiguration will
226 1.1 deraadt * not set up the keyboard as ttya, etc.
227 1.1 deraadt */
228 1.1 deraadt static int
229 1.19 deraadt zsmatch(parent, vcf, aux)
230 1.16 deraadt struct device *parent;
231 1.19 deraadt void *vcf, *aux;
232 1.1 deraadt {
233 1.19 deraadt struct cfdata *cf = vcf;
234 1.13 deraadt struct confargs *ca = aux;
235 1.13 deraadt struct romaux *ra = &ca->ca_ra;
236 1.1 deraadt
237 1.14 deraadt if (strcmp(cf->cf_driver->cd_name, ra->ra_name))
238 1.14 deraadt return (0);
239 1.33 pk if ((ca->ca_bustype == BUS_MAIN && !CPU_ISSUN4) ||
240 1.33 pk (ca->ca_bustype == BUS_OBIO && CPU_ISSUN4M))
241 1.14 deraadt return (getpropint(ra->ra_node, "slave", -2) == cf->cf_unit);
242 1.15 deraadt ra->ra_len = NBPG;
243 1.15 deraadt return (probeget(ra->ra_vaddr, 1) != -1);
244 1.1 deraadt }
245 1.1 deraadt
246 1.1 deraadt /*
247 1.1 deraadt * Attach a found zs.
248 1.1 deraadt *
249 1.1 deraadt * USE ROM PROPERTIES port-a-ignore-cd AND port-b-ignore-cd FOR
250 1.1 deraadt * SOFT CARRIER, AND keyboard PROPERTY FOR KEYBOARD/MOUSE?
251 1.1 deraadt */
252 1.1 deraadt static void
253 1.16 deraadt zsattach(parent, dev, aux)
254 1.16 deraadt struct device *parent;
255 1.16 deraadt struct device *dev;
256 1.16 deraadt void *aux;
257 1.1 deraadt {
258 1.1 deraadt register int zs = dev->dv_unit, unit;
259 1.38 mrg register struct zs_softc *sc;
260 1.1 deraadt register struct zs_chanstate *cs;
261 1.1 deraadt register volatile struct zsdevice *addr;
262 1.1 deraadt register struct tty *tp, *ctp;
263 1.13 deraadt register struct confargs *ca = aux;
264 1.13 deraadt register struct romaux *ra = &ca->ca_ra;
265 1.21 deraadt int pri;
266 1.1 deraadt static int didintr, prevpri;
267 1.32 pk int ringsize;
268 1.1 deraadt
269 1.1 deraadt if ((addr = zsaddr[zs]) == NULL)
270 1.38 mrg addr = zsaddr[zs] = (volatile struct zsdevice *)findzs(zs);
271 1.14 deraadt if (ca->ca_bustype==BUS_MAIN)
272 1.14 deraadt if ((void *)addr != ra->ra_vaddr)
273 1.14 deraadt panic("zsattach");
274 1.1 deraadt if (ra->ra_nintr != 1) {
275 1.1 deraadt printf(": expected 1 interrupt, got %d\n", ra->ra_nintr);
276 1.1 deraadt return;
277 1.1 deraadt }
278 1.1 deraadt pri = ra->ra_intr[0].int_pri;
279 1.1 deraadt printf(" pri %d, softpri %d\n", pri, PIL_TTY);
280 1.1 deraadt if (!didintr) {
281 1.1 deraadt didintr = 1;
282 1.1 deraadt prevpri = pri;
283 1.1 deraadt intr_establish(pri, &levelhard);
284 1.1 deraadt intr_establish(PIL_TTY, &levelsoft);
285 1.1 deraadt } else if (pri != prevpri)
286 1.1 deraadt panic("broken zs interrupt scheme");
287 1.38 mrg sc = (struct zs_softc *)dev;
288 1.38 mrg evcnt_attach(&sc->sc_dev, "intr", &sc->sc_intrcnt);
289 1.38 mrg sc->sc_zs = addr;
290 1.1 deraadt unit = zs * 2;
291 1.38 mrg cs = sc->sc_cs;
292 1.28 pk cs->cs_ttyp = tp = ttymalloc();
293 1.2 deraadt
294 1.1 deraadt /* link into interrupt list with order (A,B) (B=A+1) */
295 1.1 deraadt cs[0].cs_next = &cs[1];
296 1.38 mrg cs[0].cs_sc = sc;
297 1.1 deraadt cs[1].cs_next = zslist;
298 1.38 mrg cs[1].cs_sc = sc;
299 1.1 deraadt zslist = cs;
300 1.1 deraadt
301 1.1 deraadt cs->cs_unit = unit;
302 1.26 mycroft cs->cs_speed = zs_getspeed(&addr->zs_chan[ZS_CHAN_A]);
303 1.26 mycroft cs->cs_zc = &addr->zs_chan[ZS_CHAN_A];
304 1.1 deraadt tp->t_dev = makedev(ZSMAJOR, unit);
305 1.38 mrg if ((ctp = zs_checkcons(cs, unit, cs)) != NULL)
306 1.28 pk cs->cs_ttyp = tp = ctp;
307 1.38 mrg else {
308 1.38 mrg tp = ttymalloc();
309 1.38 mrg tp->t_dev = makedev(ZSMAJOR, unit);
310 1.38 mrg tp->t_oproc = zsstart;
311 1.38 mrg tp->t_param = zsparam;
312 1.38 mrg }
313 1.38 mrg cs->cs_ttyp = tp;
314 1.1 deraadt #ifdef KGDB
315 1.1 deraadt if (ctp == NULL)
316 1.1 deraadt zs_checkkgdb(unit, cs, tp);
317 1.1 deraadt #endif
318 1.1 deraadt if (unit == ZS_KBD) {
319 1.1 deraadt /*
320 1.1 deraadt * Keyboard: tell /dev/kbd driver how to talk to us.
321 1.1 deraadt */
322 1.1 deraadt tp->t_ispeed = tp->t_ospeed = cs->cs_speed;
323 1.1 deraadt tp->t_cflag = CS8;
324 1.1 deraadt kbd_serial(tp, zsiopen, zsiclose);
325 1.1 deraadt cs->cs_conk = 1; /* do L1-A processing */
326 1.32 pk ringsize = 128;
327 1.38 mrg } else {
328 1.38 mrg if (tp != ctp)
329 1.38 mrg tty_attach(tp);
330 1.32 pk ringsize = 4096;
331 1.38 mrg }
332 1.32 pk
333 1.1 deraadt unit++;
334 1.1 deraadt cs++;
335 1.28 pk cs->cs_ttyp = tp = ttymalloc();
336 1.1 deraadt cs->cs_unit = unit;
337 1.26 mycroft cs->cs_speed = zs_getspeed(&addr->zs_chan[ZS_CHAN_B]);
338 1.26 mycroft cs->cs_zc = &addr->zs_chan[ZS_CHAN_B];
339 1.38 mrg if ((ctp = zs_checkcons(sc, unit, cs)) != NULL)
340 1.38 mrg tp = ctp;
341 1.38 mrg else {
342 1.38 mrg tp = ttymalloc();
343 1.38 mrg tp->t_dev = makedev(ZSMAJOR, unit);
344 1.38 mrg tp->t_oproc = zsstart;
345 1.38 mrg tp->t_param = zsparam;
346 1.38 mrg }
347 1.38 mrg cs->cs_ttyp = tp;
348 1.1 deraadt #ifdef KGDB
349 1.1 deraadt if (ctp == NULL)
350 1.1 deraadt zs_checkkgdb(unit, cs, tp);
351 1.1 deraadt #endif
352 1.1 deraadt if (unit == ZS_MOUSE) {
353 1.1 deraadt /*
354 1.1 deraadt * Mouse: tell /dev/mouse driver how to talk to us.
355 1.1 deraadt */
356 1.38 mrg tp->t_ispeed = tp->t_ospeed = B1200;
357 1.1 deraadt tp->t_cflag = CS8;
358 1.1 deraadt ms_serial(tp, zsiopen, zsiclose);
359 1.32 pk ringsize = 128;
360 1.38 mrg } else {
361 1.38 mrg if (tp != ctp)
362 1.38 mrg tty_attach(tp);
363 1.32 pk ringsize = 4096;
364 1.38 mrg }
365 1.32 pk cs->cs_ringmask = ringsize - 1;
366 1.32 pk cs->cs_rbuf = malloc((u_long)ringsize * sizeof(*cs->cs_rbuf),
367 1.32 pk M_DEVBUF, M_NOWAIT);
368 1.1 deraadt }
369 1.1 deraadt
370 1.34 christos #ifdef KGDB
371 1.1 deraadt /*
372 1.1 deraadt * Put a channel in a known state. Interrupts may be left disabled
373 1.1 deraadt * or enabled, as desired.
374 1.1 deraadt */
375 1.1 deraadt static void
376 1.1 deraadt zs_reset(zc, inten, speed)
377 1.1 deraadt volatile struct zschan *zc;
378 1.1 deraadt int inten, speed;
379 1.1 deraadt {
380 1.1 deraadt int tconst;
381 1.1 deraadt static u_char reg[16] = {
382 1.1 deraadt 0,
383 1.1 deraadt 0,
384 1.1 deraadt 0,
385 1.1 deraadt ZSWR3_RX_8 | ZSWR3_RX_ENABLE,
386 1.1 deraadt ZSWR4_CLK_X16 | ZSWR4_ONESB | ZSWR4_EVENP,
387 1.1 deraadt ZSWR5_TX_8 | ZSWR5_TX_ENABLE,
388 1.1 deraadt 0,
389 1.1 deraadt 0,
390 1.1 deraadt 0,
391 1.1 deraadt 0,
392 1.1 deraadt ZSWR10_NRZ,
393 1.1 deraadt ZSWR11_TXCLK_BAUD | ZSWR11_RXCLK_BAUD,
394 1.1 deraadt 0,
395 1.1 deraadt 0,
396 1.1 deraadt ZSWR14_BAUD_FROM_PCLK | ZSWR14_BAUD_ENA,
397 1.1 deraadt ZSWR15_BREAK_IE | ZSWR15_DCD_IE,
398 1.1 deraadt };
399 1.1 deraadt
400 1.1 deraadt reg[9] = inten ? ZSWR9_MASTER_IE | ZSWR9_NO_VECTOR : ZSWR9_NO_VECTOR;
401 1.1 deraadt tconst = BPS_TO_TCONST(PCLK / 16, speed);
402 1.1 deraadt reg[12] = tconst;
403 1.1 deraadt reg[13] = tconst >> 8;
404 1.1 deraadt zs_loadchannelregs(zc, reg);
405 1.1 deraadt }
406 1.34 christos #endif
407 1.1 deraadt
408 1.1 deraadt /*
409 1.1 deraadt * Declare the given tty (which is in fact &cons) as a console input
410 1.1 deraadt * or output. This happens before the zs chip is attached; the hookup
411 1.1 deraadt * is finished later, in zs_setcons() below.
412 1.1 deraadt *
413 1.1 deraadt * This is used only for ports a and b. The console keyboard is decoded
414 1.1 deraadt * independently (we always send unit-2 input to /dev/kbd, which will
415 1.1 deraadt * direct it to /dev/console if appropriate).
416 1.1 deraadt */
417 1.1 deraadt void
418 1.3 deraadt zsconsole(tp, unit, out, fnstop)
419 1.1 deraadt register struct tty *tp;
420 1.1 deraadt register int unit;
421 1.1 deraadt int out;
422 1.34 christos int (**fnstop) __P((struct tty *, int));
423 1.1 deraadt {
424 1.1 deraadt int zs;
425 1.1 deraadt volatile struct zsdevice *addr;
426 1.1 deraadt
427 1.1 deraadt if (unit >= ZS_KBD)
428 1.1 deraadt panic("zsconsole");
429 1.1 deraadt if (out) {
430 1.1 deraadt zs_consout = unit;
431 1.1 deraadt zs = unit >> 1;
432 1.1 deraadt if ((addr = zsaddr[zs]) == NULL)
433 1.38 mrg addr = zsaddr[zs] = (volatile struct zsdevice *)findzs(zs);
434 1.26 mycroft zs_conschan = (unit & 1) == 0 ? &addr->zs_chan[ZS_CHAN_A] :
435 1.26 mycroft &addr->zs_chan[ZS_CHAN_B];
436 1.1 deraadt v_putc = zscnputc;
437 1.1 deraadt } else
438 1.1 deraadt zs_consin = unit;
439 1.3 deraadt if(fnstop)
440 1.3 deraadt *fnstop = &zsstop;
441 1.1 deraadt zs_ctty = tp;
442 1.1 deraadt }
443 1.1 deraadt
444 1.1 deraadt /*
445 1.1 deraadt * Polled console output putchar.
446 1.1 deraadt */
447 1.34 christos static void
448 1.1 deraadt zscnputc(c)
449 1.1 deraadt int c;
450 1.1 deraadt {
451 1.1 deraadt register volatile struct zschan *zc = zs_conschan;
452 1.1 deraadt register int s;
453 1.1 deraadt
454 1.1 deraadt if (c == '\n')
455 1.1 deraadt zscnputc('\r');
456 1.1 deraadt /*
457 1.1 deraadt * Must block output interrupts (i.e., raise to >= splzs) without
458 1.1 deraadt * lowering current ipl. Need a better way.
459 1.1 deraadt */
460 1.1 deraadt s = splhigh();
461 1.33 pk if (CPU_ISSUN4C && s <= (12 << 8)) /* XXX */
462 1.1 deraadt (void) splzs();
463 1.1 deraadt while ((zc->zc_csr & ZSRR0_TX_READY) == 0)
464 1.12 deraadt ZS_DELAY();
465 1.1 deraadt zc->zc_data = c;
466 1.12 deraadt ZS_DELAY();
467 1.1 deraadt splx(s);
468 1.1 deraadt }
469 1.1 deraadt
470 1.1 deraadt /*
471 1.1 deraadt * Set up the given unit as console input, output, both, or neither, as
472 1.1 deraadt * needed. Return console tty if it is to receive console input.
473 1.1 deraadt */
474 1.1 deraadt static struct tty *
475 1.38 mrg zs_checkcons(sc, unit, cs)
476 1.38 mrg struct zs_softc *sc;
477 1.16 deraadt int unit;
478 1.16 deraadt struct zs_chanstate *cs;
479 1.1 deraadt {
480 1.1 deraadt register struct tty *tp;
481 1.1 deraadt char *i, *o;
482 1.1 deraadt
483 1.30 pk if ((tp = zs_ctty) == NULL) /* XXX */
484 1.1 deraadt return (0);
485 1.1 deraadt i = zs_consin == unit ? "input" : NULL;
486 1.1 deraadt o = zs_consout == unit ? "output" : NULL;
487 1.1 deraadt if (i == NULL && o == NULL)
488 1.1 deraadt return (0);
489 1.1 deraadt
490 1.1 deraadt /* rewire the minor device (gack) */
491 1.1 deraadt tp->t_dev = makedev(major(tp->t_dev), unit);
492 1.1 deraadt
493 1.1 deraadt /*
494 1.1 deraadt * Rewire input and/or output. Note that baud rate reflects
495 1.1 deraadt * input settings, not output settings, but we can do no better
496 1.1 deraadt * if the console is split across two ports.
497 1.1 deraadt *
498 1.1 deraadt * XXX split consoles don't work anyway -- this needs to be
499 1.1 deraadt * thrown away and redone
500 1.1 deraadt */
501 1.1 deraadt if (i) {
502 1.1 deraadt tp->t_param = zsparam;
503 1.1 deraadt tp->t_ispeed = tp->t_ospeed = cs->cs_speed;
504 1.1 deraadt tp->t_cflag = CS8;
505 1.1 deraadt ttsetwater(tp);
506 1.1 deraadt }
507 1.1 deraadt if (o) {
508 1.1 deraadt tp->t_oproc = zsstart;
509 1.1 deraadt }
510 1.1 deraadt printf("%s%c: console %s\n",
511 1.38 mrg sc->sc_dev.dv_xname, (unit & 1) + 'a', i ? (o ? "i/o" : i) : o);
512 1.1 deraadt cs->cs_consio = 1;
513 1.1 deraadt cs->cs_brkabort = 1;
514 1.1 deraadt return (tp);
515 1.1 deraadt }
516 1.1 deraadt
517 1.1 deraadt #ifdef KGDB
518 1.1 deraadt /*
519 1.1 deraadt * The kgdb zs port, if any, was altered at boot time (see zs_kgdb_init).
520 1.1 deraadt * Pick up the current speed and character size and restore the original
521 1.1 deraadt * speed.
522 1.1 deraadt */
523 1.1 deraadt static void
524 1.16 deraadt zs_checkkgdb(unit, cs, tp)
525 1.16 deraadt int unit;
526 1.16 deraadt struct zs_chanstate *cs;
527 1.16 deraadt struct tty *tp;
528 1.1 deraadt {
529 1.1 deraadt
530 1.1 deraadt if (kgdb_dev == makedev(ZSMAJOR, unit)) {
531 1.1 deraadt tp->t_ispeed = tp->t_ospeed = kgdb_rate;
532 1.1 deraadt tp->t_cflag = CS8;
533 1.1 deraadt cs->cs_kgdb = 1;
534 1.1 deraadt cs->cs_speed = zs_kgdb_savedspeed;
535 1.1 deraadt (void) zsparam(tp, &tp->t_termios);
536 1.1 deraadt }
537 1.1 deraadt }
538 1.1 deraadt #endif
539 1.1 deraadt
540 1.1 deraadt /*
541 1.1 deraadt * Compute the current baud rate given a ZSCC channel.
542 1.1 deraadt */
543 1.1 deraadt static int
544 1.1 deraadt zs_getspeed(zc)
545 1.1 deraadt register volatile struct zschan *zc;
546 1.1 deraadt {
547 1.1 deraadt register int tconst;
548 1.1 deraadt
549 1.1 deraadt tconst = ZS_READ(zc, 12);
550 1.1 deraadt tconst |= ZS_READ(zc, 13) << 8;
551 1.1 deraadt return (TCONST_TO_BPS(PCLK / 16, tconst));
552 1.1 deraadt }
553 1.1 deraadt
554 1.1 deraadt
555 1.1 deraadt /*
556 1.1 deraadt * Do an internal open.
557 1.1 deraadt */
558 1.1 deraadt static void
559 1.16 deraadt zsiopen(tp)
560 1.16 deraadt struct tty *tp;
561 1.1 deraadt {
562 1.1 deraadt
563 1.1 deraadt (void) zsparam(tp, &tp->t_termios);
564 1.1 deraadt ttsetwater(tp);
565 1.1 deraadt tp->t_state = TS_ISOPEN | TS_CARR_ON;
566 1.1 deraadt }
567 1.1 deraadt
568 1.1 deraadt /*
569 1.1 deraadt * Do an internal close. Eventually we should shut off the chip when both
570 1.1 deraadt * ports on it are closed.
571 1.1 deraadt */
572 1.1 deraadt static void
573 1.16 deraadt zsiclose(tp)
574 1.16 deraadt struct tty *tp;
575 1.1 deraadt {
576 1.1 deraadt
577 1.1 deraadt ttylclose(tp, 0); /* ??? */
578 1.1 deraadt ttyclose(tp); /* ??? */
579 1.1 deraadt tp->t_state = 0;
580 1.1 deraadt }
581 1.1 deraadt
582 1.1 deraadt
583 1.1 deraadt /*
584 1.1 deraadt * Open a zs serial port. This interface may not be used to open
585 1.1 deraadt * the keyboard and mouse ports. (XXX)
586 1.1 deraadt */
587 1.1 deraadt int
588 1.16 deraadt zsopen(dev, flags, mode, p)
589 1.16 deraadt dev_t dev;
590 1.16 deraadt int flags;
591 1.16 deraadt int mode;
592 1.16 deraadt struct proc *p;
593 1.1 deraadt {
594 1.1 deraadt register struct tty *tp;
595 1.1 deraadt register struct zs_chanstate *cs;
596 1.38 mrg struct zs_softc *sc;
597 1.1 deraadt int unit = minor(dev), zs = unit >> 1, error, s;
598 1.1 deraadt
599 1.38 mrg if (zs >= zs_cd.cd_ndevs || (sc = zs_cd.cd_devs[zs]) == NULL ||
600 1.1 deraadt unit == ZS_KBD || unit == ZS_MOUSE)
601 1.1 deraadt return (ENXIO);
602 1.38 mrg cs = &sc->sc_cs[unit & 1];
603 1.1 deraadt if (cs->cs_consio)
604 1.1 deraadt return (ENXIO); /* ??? */
605 1.1 deraadt tp = cs->cs_ttyp;
606 1.1 deraadt s = spltty();
607 1.1 deraadt if ((tp->t_state & TS_ISOPEN) == 0) {
608 1.1 deraadt ttychars(tp);
609 1.1 deraadt if (tp->t_ispeed == 0) {
610 1.1 deraadt tp->t_iflag = TTYDEF_IFLAG;
611 1.1 deraadt tp->t_oflag = TTYDEF_OFLAG;
612 1.1 deraadt tp->t_cflag = TTYDEF_CFLAG;
613 1.1 deraadt tp->t_lflag = TTYDEF_LFLAG;
614 1.1 deraadt tp->t_ispeed = tp->t_ospeed = cs->cs_speed;
615 1.1 deraadt }
616 1.1 deraadt (void) zsparam(tp, &tp->t_termios);
617 1.1 deraadt ttsetwater(tp);
618 1.1 deraadt } else if (tp->t_state & TS_XCLUDE && p->p_ucred->cr_uid != 0) {
619 1.1 deraadt splx(s);
620 1.1 deraadt return (EBUSY);
621 1.1 deraadt }
622 1.1 deraadt error = 0;
623 1.1 deraadt for (;;) {
624 1.29 pk register int rr0;
625 1.29 pk
626 1.1 deraadt /* loop, turning on the device, until carrier present */
627 1.1 deraadt zs_modem(cs, 1);
628 1.29 pk /* May never get status intr if carrier already on. -gwr */
629 1.29 pk rr0 = cs->cs_zc->zc_csr;
630 1.29 pk ZS_DELAY();
631 1.29 pk if ((rr0 & ZSRR0_DCD) || cs->cs_softcar)
632 1.1 deraadt tp->t_state |= TS_CARR_ON;
633 1.1 deraadt if (flags & O_NONBLOCK || tp->t_cflag & CLOCAL ||
634 1.1 deraadt tp->t_state & TS_CARR_ON)
635 1.1 deraadt break;
636 1.1 deraadt tp->t_state |= TS_WOPEN;
637 1.34 christos error = ttysleep(tp, (caddr_t)&tp->t_rawq, TTIPRI | PCATCH,
638 1.34 christos ttopen, 0);
639 1.34 christos if (error) {
640 1.17 pk if (!(tp->t_state & TS_ISOPEN)) {
641 1.17 pk zs_modem(cs, 0);
642 1.17 pk tp->t_state &= ~TS_WOPEN;
643 1.17 pk ttwakeup(tp);
644 1.17 pk }
645 1.17 pk splx(s);
646 1.17 pk return error;
647 1.17 pk }
648 1.1 deraadt }
649 1.1 deraadt splx(s);
650 1.1 deraadt if (error == 0)
651 1.1 deraadt error = linesw[tp->t_line].l_open(dev, tp);
652 1.1 deraadt if (error)
653 1.1 deraadt zs_modem(cs, 0);
654 1.1 deraadt return (error);
655 1.1 deraadt }
656 1.1 deraadt
657 1.1 deraadt /*
658 1.1 deraadt * Close a zs serial port.
659 1.1 deraadt */
660 1.1 deraadt int
661 1.16 deraadt zsclose(dev, flags, mode, p)
662 1.16 deraadt dev_t dev;
663 1.16 deraadt int flags;
664 1.16 deraadt int mode;
665 1.16 deraadt struct proc *p;
666 1.1 deraadt {
667 1.1 deraadt register struct zs_chanstate *cs;
668 1.1 deraadt register struct tty *tp;
669 1.38 mrg struct zs_softc *sc;
670 1.1 deraadt int unit = minor(dev), s;
671 1.1 deraadt
672 1.38 mrg sc = zs_cd.cd_devs[unit >> 1];
673 1.38 mrg cs = &sc->sc_cs[unit & 1];
674 1.1 deraadt tp = cs->cs_ttyp;
675 1.1 deraadt linesw[tp->t_line].l_close(tp, flags);
676 1.1 deraadt if (tp->t_cflag & HUPCL || tp->t_state & TS_WOPEN ||
677 1.1 deraadt (tp->t_state & TS_ISOPEN) == 0) {
678 1.1 deraadt zs_modem(cs, 0);
679 1.1 deraadt /* hold low for 1 second */
680 1.1 deraadt (void) tsleep((caddr_t)cs, TTIPRI, ttclos, hz);
681 1.1 deraadt }
682 1.7 deraadt if (cs->cs_creg[5] & ZSWR5_BREAK)
683 1.7 deraadt {
684 1.7 deraadt s = splzs();
685 1.7 deraadt cs->cs_preg[5] &= ~ZSWR5_BREAK;
686 1.7 deraadt cs->cs_creg[5] &= ~ZSWR5_BREAK;
687 1.7 deraadt ZS_WRITE(cs->cs_zc, 5, cs->cs_creg[5]);
688 1.7 deraadt splx(s);
689 1.7 deraadt }
690 1.1 deraadt ttyclose(tp);
691 1.1 deraadt #ifdef KGDB
692 1.1 deraadt /* Reset the speed if we're doing kgdb on this port */
693 1.1 deraadt if (cs->cs_kgdb) {
694 1.1 deraadt tp->t_ispeed = tp->t_ospeed = kgdb_rate;
695 1.1 deraadt (void) zsparam(tp, &tp->t_termios);
696 1.1 deraadt }
697 1.1 deraadt #endif
698 1.1 deraadt return (0);
699 1.1 deraadt }
700 1.1 deraadt
701 1.1 deraadt /*
702 1.1 deraadt * Read/write zs serial port.
703 1.1 deraadt */
704 1.1 deraadt int
705 1.16 deraadt zsread(dev, uio, flags)
706 1.16 deraadt dev_t dev;
707 1.16 deraadt struct uio *uio;
708 1.16 deraadt int flags;
709 1.1 deraadt {
710 1.28 pk register struct zs_chanstate *cs;
711 1.38 mrg register struct zs_softc *sc;
712 1.28 pk register struct tty *tp;
713 1.28 pk int unit = minor(dev);
714 1.28 pk
715 1.38 mrg sc = zs_cd.cd_devs[unit >> 1];
716 1.38 mrg cs = &sc->sc_cs[unit & 1];
717 1.28 pk tp = cs->cs_ttyp;
718 1.1 deraadt
719 1.1 deraadt return (linesw[tp->t_line].l_read(tp, uio, flags));
720 1.28 pk
721 1.1 deraadt }
722 1.1 deraadt
723 1.1 deraadt int
724 1.16 deraadt zswrite(dev, uio, flags)
725 1.16 deraadt dev_t dev;
726 1.16 deraadt struct uio *uio;
727 1.16 deraadt int flags;
728 1.1 deraadt {
729 1.28 pk register struct zs_chanstate *cs;
730 1.38 mrg register struct zs_softc *sc;
731 1.28 pk register struct tty *tp;
732 1.28 pk int unit = minor(dev);
733 1.28 pk
734 1.38 mrg sc = zs_cd.cd_devs[unit >> 1];
735 1.38 mrg cs = &sc->sc_cs[unit & 1];
736 1.28 pk tp = cs->cs_ttyp;
737 1.1 deraadt
738 1.1 deraadt return (linesw[tp->t_line].l_write(tp, uio, flags));
739 1.28 pk }
740 1.28 pk
741 1.28 pk struct tty *
742 1.28 pk zstty(dev)
743 1.28 pk dev_t dev;
744 1.28 pk {
745 1.28 pk register struct zs_chanstate *cs;
746 1.38 mrg register struct zs_softc *sc;
747 1.28 pk int unit = minor(dev);
748 1.28 pk
749 1.38 mrg sc = zs_cd.cd_devs[unit >> 1];
750 1.38 mrg cs = &sc->sc_cs[unit & 1];
751 1.28 pk
752 1.28 pk return (cs->cs_ttyp);
753 1.38 mrg }
754 1.28 pk
755 1.38 mrg static int zsrint __P((struct zs_chanstate *, volatile struct zschan *));
756 1.38 mrg static int zsxint __P((struct zs_chanstate *, volatile struct zschan *));
757 1.38 mrg static int zssint __P((struct zs_chanstate *, volatile struct zschan *));
758 1.1 deraadt
759 1.1 deraadt /*
760 1.1 deraadt * ZS hardware interrupt. Scan all ZS channels. NB: we know here that
761 1.1 deraadt * channels are kept in (A,B) pairs.
762 1.1 deraadt *
763 1.1 deraadt * Do just a little, then get out; set a software interrupt if more
764 1.1 deraadt * work is needed.
765 1.1 deraadt *
766 1.1 deraadt * We deliberately ignore the vectoring Zilog gives us, and match up
767 1.1 deraadt * only the number of `reset interrupt under service' operations, not
768 1.1 deraadt * the order.
769 1.1 deraadt */
770 1.1 deraadt /* ARGSUSED */
771 1.1 deraadt int
772 1.16 deraadt zshard(intrarg)
773 1.16 deraadt void *intrarg;
774 1.1 deraadt {
775 1.1 deraadt register struct zs_chanstate *a;
776 1.1 deraadt #define b (a + 1)
777 1.1 deraadt register volatile struct zschan *zc;
778 1.32 pk register int rr3, intflags = 0, v, i, ringmask;
779 1.38 mrg
780 1.38 mrg #define ZSHARD_NEED_SOFTINTR 1
781 1.38 mrg #define ZSHARD_WAS_SERVICED 2
782 1.38 mrg #define ZSHARD_CHIP_GOTINTR 4
783 1.1 deraadt
784 1.1 deraadt for (a = zslist; a != NULL; a = b->cs_next) {
785 1.32 pk ringmask = a->cs_ringmask;
786 1.1 deraadt rr3 = ZS_READ(a->cs_zc, 3);
787 1.1 deraadt if (rr3 & (ZSRR3_IP_A_RX|ZSRR3_IP_A_TX|ZSRR3_IP_A_STAT)) {
788 1.38 mrg intflags |= (ZSHARD_CHIP_GOTINTR|ZSHARD_WAS_SERVICED);
789 1.1 deraadt zc = a->cs_zc;
790 1.1 deraadt i = a->cs_rbput;
791 1.1 deraadt if (rr3 & ZSRR3_IP_A_RX && (v = zsrint(a, zc)) != 0) {
792 1.32 pk a->cs_rbuf[i++ & ringmask] = v;
793 1.38 mrg intflags |= ZSHARD_NEED_SOFTINTR;
794 1.1 deraadt }
795 1.1 deraadt if (rr3 & ZSRR3_IP_A_TX && (v = zsxint(a, zc)) != 0) {
796 1.32 pk a->cs_rbuf[i++ & ringmask] = v;
797 1.38 mrg intflags |= ZSHARD_NEED_SOFTINTR;
798 1.1 deraadt }
799 1.1 deraadt if (rr3 & ZSRR3_IP_A_STAT && (v = zssint(a, zc)) != 0) {
800 1.32 pk a->cs_rbuf[i++ & ringmask] = v;
801 1.38 mrg intflags |= ZSHARD_NEED_SOFTINTR;
802 1.1 deraadt }
803 1.1 deraadt a->cs_rbput = i;
804 1.1 deraadt }
805 1.1 deraadt if (rr3 & (ZSRR3_IP_B_RX|ZSRR3_IP_B_TX|ZSRR3_IP_B_STAT)) {
806 1.38 mrg intflags |= (ZSHARD_CHIP_GOTINTR|ZSHARD_WAS_SERVICED);
807 1.1 deraadt zc = b->cs_zc;
808 1.1 deraadt i = b->cs_rbput;
809 1.1 deraadt if (rr3 & ZSRR3_IP_B_RX && (v = zsrint(b, zc)) != 0) {
810 1.32 pk b->cs_rbuf[i++ & ringmask] = v;
811 1.38 mrg intflags |= ZSHARD_NEED_SOFTINTR;
812 1.1 deraadt }
813 1.1 deraadt if (rr3 & ZSRR3_IP_B_TX && (v = zsxint(b, zc)) != 0) {
814 1.32 pk b->cs_rbuf[i++ & ringmask] = v;
815 1.38 mrg intflags |= ZSHARD_NEED_SOFTINTR;
816 1.1 deraadt }
817 1.1 deraadt if (rr3 & ZSRR3_IP_B_STAT && (v = zssint(b, zc)) != 0) {
818 1.32 pk b->cs_rbuf[i++ & ringmask] = v;
819 1.38 mrg intflags |= ZSHARD_NEED_SOFTINTR;
820 1.1 deraadt }
821 1.1 deraadt b->cs_rbput = i;
822 1.1 deraadt }
823 1.38 mrg if (intflags & ZSHARD_CHIP_GOTINTR) {
824 1.38 mrg a->cs_sc->sc_intrcnt.ev_count++;
825 1.38 mrg intflags &= ~ZSHARD_CHIP_GOTINTR;
826 1.38 mrg }
827 1.1 deraadt }
828 1.1 deraadt #undef b
829 1.14 deraadt
830 1.38 mrg if (intflags & ZSHARD_NEED_SOFTINTR) {
831 1.33 pk if (CPU_ISSUN4COR4M) {
832 1.14 deraadt /* XXX -- but this will go away when zshard moves to locore.s */
833 1.14 deraadt struct clockframe *p = intrarg;
834 1.14 deraadt
835 1.14 deraadt if ((p->psr & PSR_PIL) < (PIL_TTY << 8)) {
836 1.14 deraadt zsshortcuts++;
837 1.14 deraadt (void) spltty();
838 1.14 deraadt if (zshardscope) {
839 1.14 deraadt LED_ON;
840 1.14 deraadt LED_OFF;
841 1.14 deraadt }
842 1.14 deraadt return (zssoft(intrarg));
843 1.1 deraadt }
844 1.1 deraadt }
845 1.33 pk
846 1.33 pk if (CPU_ISSUN4M)
847 1.33 pk raise(0, PIL_TTY);
848 1.33 pk else
849 1.38 mrg ienab_bis(IE_ZSSOFT);
850 1.1 deraadt }
851 1.38 mrg return (intflags & ZSHARD_WAS_SERVICED);
852 1.1 deraadt }
853 1.1 deraadt
854 1.1 deraadt static int
855 1.16 deraadt zsrint(cs, zc)
856 1.16 deraadt register struct zs_chanstate *cs;
857 1.16 deraadt register volatile struct zschan *zc;
858 1.1 deraadt {
859 1.38 mrg register u_int c = zc->zc_data;
860 1.1 deraadt
861 1.29 pk ZS_DELAY();
862 1.1 deraadt if (cs->cs_conk) {
863 1.1 deraadt register struct conk_state *conk = &zsconk_state;
864 1.1 deraadt
865 1.1 deraadt /*
866 1.1 deraadt * Check here for console abort function, so that we
867 1.1 deraadt * can abort even when interrupts are locking up the
868 1.1 deraadt * machine.
869 1.1 deraadt */
870 1.1 deraadt if (c == KBD_RESET) {
871 1.1 deraadt conk->conk_id = 1; /* ignore next byte */
872 1.1 deraadt conk->conk_l1 = 0;
873 1.1 deraadt } else if (conk->conk_id)
874 1.1 deraadt conk->conk_id = 0; /* stop ignoring bytes */
875 1.1 deraadt else if (c == KBD_L1)
876 1.1 deraadt conk->conk_l1 = 1; /* L1 went down */
877 1.1 deraadt else if (c == (KBD_L1|KBD_UP))
878 1.1 deraadt conk->conk_l1 = 0; /* L1 went up */
879 1.1 deraadt else if (c == KBD_A && conk->conk_l1) {
880 1.1 deraadt zsabort();
881 1.1 deraadt conk->conk_l1 = 0; /* we never see the up */
882 1.1 deraadt goto clearit; /* eat the A after L1-A */
883 1.1 deraadt }
884 1.1 deraadt }
885 1.1 deraadt #ifdef KGDB
886 1.36 pk if (c == FRAME_START && cs->cs_kgdb &&
887 1.1 deraadt (cs->cs_ttyp->t_state & TS_ISOPEN) == 0) {
888 1.1 deraadt zskgdb(cs->cs_unit);
889 1.1 deraadt goto clearit;
890 1.1 deraadt }
891 1.1 deraadt #endif
892 1.1 deraadt /* compose receive character and status */
893 1.1 deraadt c <<= 8;
894 1.1 deraadt c |= ZS_READ(zc, 1);
895 1.1 deraadt
896 1.1 deraadt /* clear receive error & interrupt condition */
897 1.1 deraadt zc->zc_csr = ZSWR0_RESET_ERRORS;
898 1.14 deraadt ZS_DELAY();
899 1.1 deraadt zc->zc_csr = ZSWR0_CLR_INTR;
900 1.14 deraadt ZS_DELAY();
901 1.1 deraadt
902 1.1 deraadt return (ZRING_MAKE(ZRING_RINT, c));
903 1.1 deraadt
904 1.1 deraadt clearit:
905 1.1 deraadt zc->zc_csr = ZSWR0_RESET_ERRORS;
906 1.14 deraadt ZS_DELAY();
907 1.1 deraadt zc->zc_csr = ZSWR0_CLR_INTR;
908 1.14 deraadt ZS_DELAY();
909 1.1 deraadt return (0);
910 1.1 deraadt }
911 1.1 deraadt
912 1.1 deraadt static int
913 1.16 deraadt zsxint(cs, zc)
914 1.16 deraadt register struct zs_chanstate *cs;
915 1.16 deraadt register volatile struct zschan *zc;
916 1.1 deraadt {
917 1.1 deraadt register int i = cs->cs_tbc;
918 1.1 deraadt
919 1.1 deraadt if (i == 0) {
920 1.1 deraadt zc->zc_csr = ZSWR0_RESET_TXINT;
921 1.14 deraadt ZS_DELAY();
922 1.1 deraadt zc->zc_csr = ZSWR0_CLR_INTR;
923 1.14 deraadt ZS_DELAY();
924 1.1 deraadt return (ZRING_MAKE(ZRING_XINT, 0));
925 1.1 deraadt }
926 1.1 deraadt cs->cs_tbc = i - 1;
927 1.1 deraadt zc->zc_data = *cs->cs_tba++;
928 1.14 deraadt ZS_DELAY();
929 1.1 deraadt zc->zc_csr = ZSWR0_CLR_INTR;
930 1.14 deraadt ZS_DELAY();
931 1.1 deraadt return (0);
932 1.1 deraadt }
933 1.1 deraadt
934 1.1 deraadt static int
935 1.16 deraadt zssint(cs, zc)
936 1.16 deraadt register struct zs_chanstate *cs;
937 1.16 deraadt register volatile struct zschan *zc;
938 1.1 deraadt {
939 1.38 mrg register u_int rr0;
940 1.1 deraadt
941 1.1 deraadt rr0 = zc->zc_csr;
942 1.29 pk ZS_DELAY();
943 1.1 deraadt zc->zc_csr = ZSWR0_RESET_STATUS;
944 1.14 deraadt ZS_DELAY();
945 1.1 deraadt zc->zc_csr = ZSWR0_CLR_INTR;
946 1.14 deraadt ZS_DELAY();
947 1.1 deraadt /*
948 1.1 deraadt * The chip's hardware flow control is, as noted in zsreg.h,
949 1.1 deraadt * busted---if the DCD line goes low the chip shuts off the
950 1.1 deraadt * receiver (!). If we want hardware CTS flow control but do
951 1.1 deraadt * not have it, and carrier is now on, turn HFC on; if we have
952 1.1 deraadt * HFC now but carrier has gone low, turn it off.
953 1.1 deraadt */
954 1.1 deraadt if (rr0 & ZSRR0_DCD) {
955 1.1 deraadt if (cs->cs_ttyp->t_cflag & CCTS_OFLOW &&
956 1.1 deraadt (cs->cs_creg[3] & ZSWR3_HFC) == 0) {
957 1.1 deraadt cs->cs_creg[3] |= ZSWR3_HFC;
958 1.1 deraadt ZS_WRITE(zc, 3, cs->cs_creg[3]);
959 1.1 deraadt }
960 1.1 deraadt } else {
961 1.1 deraadt if (cs->cs_creg[3] & ZSWR3_HFC) {
962 1.1 deraadt cs->cs_creg[3] &= ~ZSWR3_HFC;
963 1.1 deraadt ZS_WRITE(zc, 3, cs->cs_creg[3]);
964 1.1 deraadt }
965 1.1 deraadt }
966 1.1 deraadt if ((rr0 & ZSRR0_BREAK) && cs->cs_brkabort) {
967 1.12 deraadt /*
968 1.12 deraadt * XXX This might not be necessary. Test and
969 1.12 deraadt * delete if it isn't.
970 1.12 deraadt */
971 1.33 pk if (CPU_ISSUN4) {
972 1.14 deraadt while (zc->zc_csr & ZSRR0_BREAK)
973 1.14 deraadt ZS_DELAY();
974 1.14 deraadt }
975 1.1 deraadt zsabort();
976 1.1 deraadt return (0);
977 1.1 deraadt }
978 1.1 deraadt return (ZRING_MAKE(ZRING_SINT, rr0));
979 1.1 deraadt }
980 1.1 deraadt
981 1.34 christos void
982 1.1 deraadt zsabort()
983 1.1 deraadt {
984 1.1 deraadt
985 1.5 pk #ifdef DDB
986 1.5 pk Debugger();
987 1.5 pk #else
988 1.1 deraadt printf("stopping on keyboard abort\n");
989 1.1 deraadt callrom();
990 1.5 pk #endif
991 1.1 deraadt }
992 1.1 deraadt
993 1.1 deraadt #ifdef KGDB
994 1.1 deraadt /*
995 1.1 deraadt * KGDB framing character received: enter kernel debugger. This probably
996 1.1 deraadt * should time out after a few seconds to avoid hanging on spurious input.
997 1.1 deraadt */
998 1.34 christos void
999 1.16 deraadt zskgdb(unit)
1000 1.16 deraadt int unit;
1001 1.1 deraadt {
1002 1.1 deraadt
1003 1.1 deraadt printf("zs%d%c: kgdb interrupt\n", unit >> 1, (unit & 1) + 'a');
1004 1.1 deraadt kgdb_connect(1);
1005 1.1 deraadt }
1006 1.1 deraadt #endif
1007 1.1 deraadt
1008 1.1 deraadt /*
1009 1.1 deraadt * Print out a ring or fifo overrun error message.
1010 1.1 deraadt */
1011 1.1 deraadt static void
1012 1.16 deraadt zsoverrun(unit, ptime, what)
1013 1.16 deraadt int unit;
1014 1.16 deraadt long *ptime;
1015 1.16 deraadt char *what;
1016 1.1 deraadt {
1017 1.1 deraadt
1018 1.1 deraadt if (*ptime != time.tv_sec) {
1019 1.1 deraadt *ptime = time.tv_sec;
1020 1.1 deraadt log(LOG_WARNING, "zs%d%c: %s overrun\n", unit >> 1,
1021 1.1 deraadt (unit & 1) + 'a', what);
1022 1.1 deraadt }
1023 1.1 deraadt }
1024 1.1 deraadt
1025 1.1 deraadt /*
1026 1.1 deraadt * ZS software interrupt. Scan all channels for deferred interrupts.
1027 1.1 deraadt */
1028 1.1 deraadt int
1029 1.16 deraadt zssoft(arg)
1030 1.16 deraadt void *arg;
1031 1.1 deraadt {
1032 1.1 deraadt register struct zs_chanstate *cs;
1033 1.1 deraadt register volatile struct zschan *zc;
1034 1.1 deraadt register struct linesw *line;
1035 1.1 deraadt register struct tty *tp;
1036 1.32 pk register int get, n, c, cc, unit, s, ringmask, ringsize;
1037 1.14 deraadt int retval = 0;
1038 1.1 deraadt
1039 1.1 deraadt for (cs = zslist; cs != NULL; cs = cs->cs_next) {
1040 1.32 pk ringmask = cs->cs_ringmask;
1041 1.1 deraadt get = cs->cs_rbget;
1042 1.1 deraadt again:
1043 1.1 deraadt n = cs->cs_rbput; /* atomic */
1044 1.1 deraadt if (get == n) /* nothing more on this line */
1045 1.1 deraadt continue;
1046 1.14 deraadt retval = 1;
1047 1.1 deraadt unit = cs->cs_unit; /* set up to handle interrupts */
1048 1.1 deraadt zc = cs->cs_zc;
1049 1.1 deraadt tp = cs->cs_ttyp;
1050 1.1 deraadt line = &linesw[tp->t_line];
1051 1.1 deraadt /*
1052 1.1 deraadt * Compute the number of interrupts in the receive ring.
1053 1.1 deraadt * If the count is overlarge, we lost some events, and
1054 1.1 deraadt * must advance to the first valid one. It may get
1055 1.1 deraadt * overwritten if more data are arriving, but this is
1056 1.1 deraadt * too expensive to check and gains nothing (we already
1057 1.1 deraadt * lost out; all we can do at this point is trade one
1058 1.1 deraadt * kind of loss for another).
1059 1.1 deraadt */
1060 1.32 pk ringsize = ringmask + 1;
1061 1.1 deraadt n -= get;
1062 1.32 pk if (n > ringsize) {
1063 1.1 deraadt zsoverrun(unit, &cs->cs_rotime, "ring");
1064 1.32 pk get += n - ringsize;
1065 1.32 pk n = ringsize;
1066 1.1 deraadt }
1067 1.1 deraadt while (--n >= 0) {
1068 1.1 deraadt /* race to keep ahead of incoming interrupts */
1069 1.32 pk c = cs->cs_rbuf[get++ & ringmask];
1070 1.1 deraadt switch (ZRING_TYPE(c)) {
1071 1.1 deraadt
1072 1.1 deraadt case ZRING_RINT:
1073 1.1 deraadt c = ZRING_VALUE(c);
1074 1.1 deraadt if (c & ZSRR1_DO)
1075 1.1 deraadt zsoverrun(unit, &cs->cs_fotime, "fifo");
1076 1.1 deraadt cc = c >> 8;
1077 1.1 deraadt if (c & ZSRR1_FE)
1078 1.1 deraadt cc |= TTY_FE;
1079 1.1 deraadt if (c & ZSRR1_PE)
1080 1.1 deraadt cc |= TTY_PE;
1081 1.1 deraadt /*
1082 1.1 deraadt * this should be done through
1083 1.1 deraadt * bstreams XXX gag choke
1084 1.1 deraadt */
1085 1.1 deraadt if (unit == ZS_KBD)
1086 1.1 deraadt kbd_rint(cc);
1087 1.1 deraadt else if (unit == ZS_MOUSE)
1088 1.1 deraadt ms_rint(cc);
1089 1.1 deraadt else
1090 1.1 deraadt line->l_rint(cc, tp);
1091 1.1 deraadt break;
1092 1.1 deraadt
1093 1.1 deraadt case ZRING_XINT:
1094 1.1 deraadt /*
1095 1.1 deraadt * Transmit done: change registers and resume,
1096 1.1 deraadt * or clear BUSY.
1097 1.1 deraadt */
1098 1.1 deraadt if (cs->cs_heldchange) {
1099 1.1 deraadt s = splzs();
1100 1.1 deraadt c = zc->zc_csr;
1101 1.14 deraadt ZS_DELAY();
1102 1.1 deraadt if ((c & ZSRR0_DCD) == 0)
1103 1.1 deraadt cs->cs_preg[3] &= ~ZSWR3_HFC;
1104 1.1 deraadt bcopy((caddr_t)cs->cs_preg,
1105 1.1 deraadt (caddr_t)cs->cs_creg, 16);
1106 1.1 deraadt zs_loadchannelregs(zc, cs->cs_creg);
1107 1.1 deraadt splx(s);
1108 1.1 deraadt cs->cs_heldchange = 0;
1109 1.1 deraadt if (cs->cs_heldtbc &&
1110 1.1 deraadt (tp->t_state & TS_TTSTOP) == 0) {
1111 1.1 deraadt cs->cs_tbc = cs->cs_heldtbc - 1;
1112 1.1 deraadt zc->zc_data = *cs->cs_tba++;
1113 1.14 deraadt ZS_DELAY();
1114 1.1 deraadt goto again;
1115 1.1 deraadt }
1116 1.1 deraadt }
1117 1.1 deraadt tp->t_state &= ~TS_BUSY;
1118 1.1 deraadt if (tp->t_state & TS_FLUSH)
1119 1.1 deraadt tp->t_state &= ~TS_FLUSH;
1120 1.1 deraadt else
1121 1.1 deraadt ndflush(&tp->t_outq,
1122 1.9 pk cs->cs_tba - (caddr_t)tp->t_outq.c_cf);
1123 1.1 deraadt line->l_start(tp);
1124 1.1 deraadt break;
1125 1.1 deraadt
1126 1.1 deraadt case ZRING_SINT:
1127 1.1 deraadt /*
1128 1.1 deraadt * Status line change. HFC bit is run in
1129 1.1 deraadt * hardware interrupt, to avoid locking
1130 1.1 deraadt * at splzs here.
1131 1.1 deraadt */
1132 1.1 deraadt c = ZRING_VALUE(c);
1133 1.1 deraadt if ((c ^ cs->cs_rr0) & ZSRR0_DCD) {
1134 1.1 deraadt cc = (c & ZSRR0_DCD) != 0;
1135 1.1 deraadt if (line->l_modem(tp, cc) == 0)
1136 1.1 deraadt zs_modem(cs, cc);
1137 1.1 deraadt }
1138 1.1 deraadt cs->cs_rr0 = c;
1139 1.1 deraadt break;
1140 1.1 deraadt
1141 1.1 deraadt default:
1142 1.1 deraadt log(LOG_ERR, "zs%d%c: bad ZRING_TYPE (%x)\n",
1143 1.1 deraadt unit >> 1, (unit & 1) + 'a', c);
1144 1.1 deraadt break;
1145 1.1 deraadt }
1146 1.1 deraadt }
1147 1.1 deraadt cs->cs_rbget = get;
1148 1.1 deraadt goto again;
1149 1.1 deraadt }
1150 1.14 deraadt return (retval);
1151 1.1 deraadt }
1152 1.1 deraadt
1153 1.1 deraadt int
1154 1.16 deraadt zsioctl(dev, cmd, data, flag, p)
1155 1.16 deraadt dev_t dev;
1156 1.16 deraadt u_long cmd;
1157 1.16 deraadt caddr_t data;
1158 1.16 deraadt int flag;
1159 1.16 deraadt struct proc *p;
1160 1.1 deraadt {
1161 1.1 deraadt int unit = minor(dev);
1162 1.38 mrg struct zs_softc *sc = zs_cd.cd_devs[unit >> 1];
1163 1.38 mrg register struct zs_chanstate *cs = &sc->sc_cs[unit & 1];
1164 1.30 pk register struct tty *tp = cs->cs_ttyp;
1165 1.7 deraadt register int error, s;
1166 1.1 deraadt
1167 1.4 deraadt error = linesw[tp->t_line].l_ioctl(tp, cmd, data, flag, p);
1168 1.1 deraadt if (error >= 0)
1169 1.1 deraadt return (error);
1170 1.4 deraadt error = ttioctl(tp, cmd, data, flag, p);
1171 1.1 deraadt if (error >= 0)
1172 1.1 deraadt return (error);
1173 1.1 deraadt
1174 1.1 deraadt switch (cmd) {
1175 1.1 deraadt case TIOCSBRK:
1176 1.16 deraadt s = splzs();
1177 1.16 deraadt cs->cs_preg[5] |= ZSWR5_BREAK;
1178 1.16 deraadt cs->cs_creg[5] |= ZSWR5_BREAK;
1179 1.16 deraadt ZS_WRITE(cs->cs_zc, 5, cs->cs_creg[5]);
1180 1.16 deraadt splx(s);
1181 1.16 deraadt break;
1182 1.1 deraadt case TIOCCBRK:
1183 1.16 deraadt s = splzs();
1184 1.16 deraadt cs->cs_preg[5] &= ~ZSWR5_BREAK;
1185 1.16 deraadt cs->cs_creg[5] &= ~ZSWR5_BREAK;
1186 1.16 deraadt ZS_WRITE(cs->cs_zc, 5, cs->cs_creg[5]);
1187 1.16 deraadt splx(s);
1188 1.16 deraadt break;
1189 1.21 deraadt case TIOCGFLAGS: {
1190 1.21 deraadt int bits = 0;
1191 1.21 deraadt
1192 1.21 deraadt if (cs->cs_softcar)
1193 1.21 deraadt bits |= TIOCFLAG_SOFTCAR;
1194 1.21 deraadt if (cs->cs_creg[15] & ZSWR15_DCD_IE)
1195 1.21 deraadt bits |= TIOCFLAG_CLOCAL;
1196 1.21 deraadt if (cs->cs_creg[3] & ZSWR3_HFC)
1197 1.21 deraadt bits |= TIOCFLAG_CRTSCTS;
1198 1.21 deraadt *(int *)data = bits;
1199 1.21 deraadt break;
1200 1.21 deraadt }
1201 1.21 deraadt case TIOCSFLAGS: {
1202 1.34 christos int userbits;
1203 1.21 deraadt
1204 1.27 mycroft error = suser(p->p_ucred, &p->p_acflag);
1205 1.21 deraadt if (error != 0)
1206 1.21 deraadt return (EPERM);
1207 1.21 deraadt
1208 1.21 deraadt userbits = *(int *)data;
1209 1.21 deraadt
1210 1.21 deraadt /*
1211 1.21 deraadt * can have `local' or `softcar', and `rtscts' or `mdmbuf'
1212 1.21 deraadt # defaulting to software flow control.
1213 1.21 deraadt */
1214 1.21 deraadt if (userbits & TIOCFLAG_SOFTCAR && userbits & TIOCFLAG_CLOCAL)
1215 1.21 deraadt return(EINVAL);
1216 1.21 deraadt if (userbits & TIOCFLAG_MDMBUF) /* don't support this (yet?) */
1217 1.21 deraadt return(ENXIO);
1218 1.21 deraadt
1219 1.21 deraadt s = splzs();
1220 1.30 pk if ((userbits & TIOCFLAG_SOFTCAR) || cs->cs_consio) {
1221 1.21 deraadt cs->cs_softcar = 1; /* turn on softcar */
1222 1.21 deraadt cs->cs_preg[15] &= ~ZSWR15_DCD_IE; /* turn off dcd */
1223 1.21 deraadt cs->cs_creg[15] &= ~ZSWR15_DCD_IE;
1224 1.21 deraadt ZS_WRITE(cs->cs_zc, 15, cs->cs_creg[15]);
1225 1.21 deraadt } else if (userbits & TIOCFLAG_CLOCAL) {
1226 1.21 deraadt cs->cs_softcar = 0; /* turn off softcar */
1227 1.21 deraadt cs->cs_preg[15] |= ZSWR15_DCD_IE; /* turn on dcd */
1228 1.21 deraadt cs->cs_creg[15] |= ZSWR15_DCD_IE;
1229 1.21 deraadt ZS_WRITE(cs->cs_zc, 15, cs->cs_creg[15]);
1230 1.21 deraadt tp->t_termios.c_cflag |= CLOCAL;
1231 1.21 deraadt }
1232 1.21 deraadt if (userbits & TIOCFLAG_CRTSCTS) {
1233 1.21 deraadt cs->cs_preg[15] |= ZSWR15_CTS_IE;
1234 1.21 deraadt cs->cs_creg[15] |= ZSWR15_CTS_IE;
1235 1.21 deraadt ZS_WRITE(cs->cs_zc, 15, cs->cs_creg[15]);
1236 1.21 deraadt cs->cs_preg[3] |= ZSWR3_HFC;
1237 1.21 deraadt cs->cs_creg[3] |= ZSWR3_HFC;
1238 1.21 deraadt ZS_WRITE(cs->cs_zc, 3, cs->cs_creg[3]);
1239 1.21 deraadt tp->t_termios.c_cflag |= CRTSCTS;
1240 1.21 deraadt } else {
1241 1.21 deraadt /* no mdmbuf, so we must want software flow control */
1242 1.21 deraadt cs->cs_preg[15] &= ~ZSWR15_CTS_IE;
1243 1.21 deraadt cs->cs_creg[15] &= ~ZSWR15_CTS_IE;
1244 1.21 deraadt ZS_WRITE(cs->cs_zc, 15, cs->cs_creg[15]);
1245 1.21 deraadt cs->cs_preg[3] &= ~ZSWR3_HFC;
1246 1.21 deraadt cs->cs_creg[3] &= ~ZSWR3_HFC;
1247 1.21 deraadt ZS_WRITE(cs->cs_zc, 3, cs->cs_creg[3]);
1248 1.21 deraadt tp->t_termios.c_cflag &= ~CRTSCTS;
1249 1.21 deraadt }
1250 1.21 deraadt splx(s);
1251 1.21 deraadt break;
1252 1.21 deraadt }
1253 1.1 deraadt case TIOCSDTR:
1254 1.22 pk zs_modem(cs, 1);
1255 1.22 pk break;
1256 1.1 deraadt case TIOCCDTR:
1257 1.22 pk zs_modem(cs, 0);
1258 1.22 pk break;
1259 1.1 deraadt case TIOCMSET:
1260 1.38 mrg case TIOCMGET:
1261 1.1 deraadt case TIOCMBIS:
1262 1.1 deraadt case TIOCMBIC:
1263 1.1 deraadt default:
1264 1.1 deraadt return (ENOTTY);
1265 1.1 deraadt }
1266 1.1 deraadt return (0);
1267 1.1 deraadt }
1268 1.1 deraadt
1269 1.1 deraadt /*
1270 1.1 deraadt * Start or restart transmission.
1271 1.1 deraadt */
1272 1.1 deraadt static void
1273 1.16 deraadt zsstart(tp)
1274 1.16 deraadt register struct tty *tp;
1275 1.1 deraadt {
1276 1.1 deraadt register struct zs_chanstate *cs;
1277 1.1 deraadt register int s, nch;
1278 1.1 deraadt int unit = minor(tp->t_dev);
1279 1.38 mrg struct zs_softc *sc = zs_cd.cd_devs[unit >> 1];
1280 1.1 deraadt
1281 1.38 mrg cs = &sc->sc_cs[unit & 1];
1282 1.1 deraadt s = spltty();
1283 1.1 deraadt
1284 1.1 deraadt /*
1285 1.1 deraadt * If currently active or delaying, no need to do anything.
1286 1.1 deraadt */
1287 1.1 deraadt if (tp->t_state & (TS_TIMEOUT | TS_BUSY | TS_TTSTOP))
1288 1.1 deraadt goto out;
1289 1.1 deraadt
1290 1.1 deraadt /*
1291 1.1 deraadt * If there are sleepers, and output has drained below low
1292 1.1 deraadt * water mark, awaken.
1293 1.1 deraadt */
1294 1.1 deraadt if (tp->t_outq.c_cc <= tp->t_lowat) {
1295 1.1 deraadt if (tp->t_state & TS_ASLEEP) {
1296 1.1 deraadt tp->t_state &= ~TS_ASLEEP;
1297 1.1 deraadt wakeup((caddr_t)&tp->t_outq);
1298 1.1 deraadt }
1299 1.1 deraadt selwakeup(&tp->t_wsel);
1300 1.1 deraadt }
1301 1.1 deraadt
1302 1.1 deraadt nch = ndqb(&tp->t_outq, 0); /* XXX */
1303 1.1 deraadt if (nch) {
1304 1.1 deraadt register char *p = tp->t_outq.c_cf;
1305 1.1 deraadt
1306 1.1 deraadt /* mark busy, enable tx done interrupts, & send first byte */
1307 1.1 deraadt tp->t_state |= TS_BUSY;
1308 1.1 deraadt (void) splzs();
1309 1.1 deraadt cs->cs_preg[1] |= ZSWR1_TIE;
1310 1.1 deraadt cs->cs_creg[1] |= ZSWR1_TIE;
1311 1.1 deraadt ZS_WRITE(cs->cs_zc, 1, cs->cs_creg[1]);
1312 1.1 deraadt cs->cs_zc->zc_data = *p;
1313 1.14 deraadt ZS_DELAY();
1314 1.1 deraadt cs->cs_tba = p + 1;
1315 1.1 deraadt cs->cs_tbc = nch - 1;
1316 1.1 deraadt } else {
1317 1.1 deraadt /*
1318 1.1 deraadt * Nothing to send, turn off transmit done interrupts.
1319 1.1 deraadt * This is useful if something is doing polled output.
1320 1.1 deraadt */
1321 1.1 deraadt (void) splzs();
1322 1.1 deraadt cs->cs_preg[1] &= ~ZSWR1_TIE;
1323 1.1 deraadt cs->cs_creg[1] &= ~ZSWR1_TIE;
1324 1.1 deraadt ZS_WRITE(cs->cs_zc, 1, cs->cs_creg[1]);
1325 1.1 deraadt }
1326 1.1 deraadt out:
1327 1.1 deraadt splx(s);
1328 1.1 deraadt }
1329 1.1 deraadt
1330 1.1 deraadt /*
1331 1.1 deraadt * Stop output, e.g., for ^S or output flush.
1332 1.1 deraadt */
1333 1.34 christos int
1334 1.16 deraadt zsstop(tp, flag)
1335 1.16 deraadt register struct tty *tp;
1336 1.16 deraadt int flag;
1337 1.1 deraadt {
1338 1.1 deraadt register struct zs_chanstate *cs;
1339 1.1 deraadt register int s, unit = minor(tp->t_dev);
1340 1.38 mrg struct zs_softc *sc = zs_cd.cd_devs[unit >> 1];
1341 1.1 deraadt
1342 1.38 mrg cs = &sc->sc_cs[unit & 1];
1343 1.1 deraadt s = splzs();
1344 1.1 deraadt if (tp->t_state & TS_BUSY) {
1345 1.1 deraadt /*
1346 1.1 deraadt * Device is transmitting; must stop it.
1347 1.1 deraadt */
1348 1.1 deraadt cs->cs_tbc = 0;
1349 1.1 deraadt if ((tp->t_state & TS_TTSTOP) == 0)
1350 1.1 deraadt tp->t_state |= TS_FLUSH;
1351 1.1 deraadt }
1352 1.1 deraadt splx(s);
1353 1.1 deraadt }
1354 1.1 deraadt
1355 1.1 deraadt /*
1356 1.1 deraadt * Set ZS tty parameters from termios.
1357 1.1 deraadt *
1358 1.1 deraadt * This routine makes use of the fact that only registers
1359 1.1 deraadt * 1, 3, 4, 5, 9, 10, 11, 12, 13, 14, and 15 are written.
1360 1.1 deraadt */
1361 1.1 deraadt static int
1362 1.16 deraadt zsparam(tp, t)
1363 1.16 deraadt register struct tty *tp;
1364 1.16 deraadt register struct termios *t;
1365 1.1 deraadt {
1366 1.1 deraadt int unit = minor(tp->t_dev);
1367 1.38 mrg struct zs_softc *sc = zs_cd.cd_devs[unit >> 1];
1368 1.38 mrg register struct zs_chanstate *cs = &sc->sc_cs[unit & 1];
1369 1.1 deraadt register int tmp, tmp5, cflag, s;
1370 1.1 deraadt
1371 1.1 deraadt /*
1372 1.1 deraadt * Because PCLK is only run at 4.9 MHz, the fastest we
1373 1.1 deraadt * can go is 51200 baud (this corresponds to TC=1).
1374 1.1 deraadt * This is somewhat unfortunate as there is no real
1375 1.1 deraadt * reason we should not be able to handle higher rates.
1376 1.1 deraadt */
1377 1.1 deraadt tmp = t->c_ospeed;
1378 1.1 deraadt if (tmp < 0 || (t->c_ispeed && t->c_ispeed != tmp))
1379 1.1 deraadt return (EINVAL);
1380 1.1 deraadt if (tmp == 0) {
1381 1.1 deraadt /* stty 0 => drop DTR and RTS */
1382 1.1 deraadt zs_modem(cs, 0);
1383 1.1 deraadt return (0);
1384 1.1 deraadt }
1385 1.1 deraadt tmp = BPS_TO_TCONST(PCLK / 16, tmp);
1386 1.1 deraadt if (tmp < 2)
1387 1.1 deraadt return (EINVAL);
1388 1.1 deraadt
1389 1.1 deraadt cflag = t->c_cflag;
1390 1.1 deraadt tp->t_ispeed = tp->t_ospeed = TCONST_TO_BPS(PCLK / 16, tmp);
1391 1.1 deraadt tp->t_cflag = cflag;
1392 1.1 deraadt
1393 1.1 deraadt /*
1394 1.1 deraadt * Block interrupts so that state will not
1395 1.1 deraadt * be altered until we are done setting it up.
1396 1.1 deraadt */
1397 1.1 deraadt s = splzs();
1398 1.1 deraadt cs->cs_preg[12] = tmp;
1399 1.1 deraadt cs->cs_preg[13] = tmp >> 8;
1400 1.1 deraadt cs->cs_preg[1] = ZSWR1_RIE | ZSWR1_TIE | ZSWR1_SIE;
1401 1.1 deraadt switch (cflag & CSIZE) {
1402 1.1 deraadt case CS5:
1403 1.1 deraadt tmp = ZSWR3_RX_5;
1404 1.1 deraadt tmp5 = ZSWR5_TX_5;
1405 1.1 deraadt break;
1406 1.1 deraadt case CS6:
1407 1.1 deraadt tmp = ZSWR3_RX_6;
1408 1.1 deraadt tmp5 = ZSWR5_TX_6;
1409 1.1 deraadt break;
1410 1.1 deraadt case CS7:
1411 1.1 deraadt tmp = ZSWR3_RX_7;
1412 1.1 deraadt tmp5 = ZSWR5_TX_7;
1413 1.1 deraadt break;
1414 1.1 deraadt case CS8:
1415 1.1 deraadt default:
1416 1.1 deraadt tmp = ZSWR3_RX_8;
1417 1.1 deraadt tmp5 = ZSWR5_TX_8;
1418 1.1 deraadt break;
1419 1.1 deraadt }
1420 1.1 deraadt
1421 1.1 deraadt /*
1422 1.1 deraadt * Output hardware flow control on the chip is horrendous: if
1423 1.1 deraadt * carrier detect drops, the receiver is disabled. Hence we
1424 1.1 deraadt * can only do this when the carrier is on.
1425 1.1 deraadt */
1426 1.29 pk tmp |= ZSWR3_RX_ENABLE;
1427 1.29 pk if (cflag & CCTS_OFLOW) {
1428 1.29 pk if (cs->cs_zc->zc_csr & ZSRR0_DCD)
1429 1.29 pk tmp |= ZSWR3_HFC;
1430 1.29 pk ZS_DELAY();
1431 1.29 pk }
1432 1.1 deraadt cs->cs_preg[3] = tmp;
1433 1.1 deraadt cs->cs_preg[5] = tmp5 | ZSWR5_TX_ENABLE | ZSWR5_DTR | ZSWR5_RTS;
1434 1.1 deraadt
1435 1.1 deraadt tmp = ZSWR4_CLK_X16 | (cflag & CSTOPB ? ZSWR4_TWOSB : ZSWR4_ONESB);
1436 1.1 deraadt if ((cflag & PARODD) == 0)
1437 1.1 deraadt tmp |= ZSWR4_EVENP;
1438 1.1 deraadt if (cflag & PARENB)
1439 1.1 deraadt tmp |= ZSWR4_PARENB;
1440 1.1 deraadt cs->cs_preg[4] = tmp;
1441 1.1 deraadt cs->cs_preg[9] = ZSWR9_MASTER_IE | ZSWR9_NO_VECTOR;
1442 1.1 deraadt cs->cs_preg[10] = ZSWR10_NRZ;
1443 1.1 deraadt cs->cs_preg[11] = ZSWR11_TXCLK_BAUD | ZSWR11_RXCLK_BAUD;
1444 1.1 deraadt cs->cs_preg[14] = ZSWR14_BAUD_FROM_PCLK | ZSWR14_BAUD_ENA;
1445 1.1 deraadt cs->cs_preg[15] = ZSWR15_BREAK_IE | ZSWR15_DCD_IE;
1446 1.1 deraadt
1447 1.1 deraadt /*
1448 1.1 deraadt * If nothing is being transmitted, set up new current values,
1449 1.1 deraadt * else mark them as pending.
1450 1.1 deraadt */
1451 1.1 deraadt if (cs->cs_heldchange == 0) {
1452 1.1 deraadt if (cs->cs_ttyp->t_state & TS_BUSY) {
1453 1.1 deraadt cs->cs_heldtbc = cs->cs_tbc;
1454 1.1 deraadt cs->cs_tbc = 0;
1455 1.1 deraadt cs->cs_heldchange = 1;
1456 1.1 deraadt } else {
1457 1.1 deraadt bcopy((caddr_t)cs->cs_preg, (caddr_t)cs->cs_creg, 16);
1458 1.1 deraadt zs_loadchannelregs(cs->cs_zc, cs->cs_creg);
1459 1.1 deraadt }
1460 1.1 deraadt }
1461 1.1 deraadt splx(s);
1462 1.1 deraadt return (0);
1463 1.1 deraadt }
1464 1.1 deraadt
1465 1.1 deraadt /*
1466 1.1 deraadt * Raise or lower modem control (DTR/RTS) signals. If a character is
1467 1.1 deraadt * in transmission, the change is deferred.
1468 1.1 deraadt */
1469 1.1 deraadt static void
1470 1.16 deraadt zs_modem(cs, onoff)
1471 1.16 deraadt struct zs_chanstate *cs;
1472 1.16 deraadt int onoff;
1473 1.1 deraadt {
1474 1.1 deraadt int s, bis, and;
1475 1.1 deraadt
1476 1.1 deraadt if (onoff) {
1477 1.1 deraadt bis = ZSWR5_DTR | ZSWR5_RTS;
1478 1.1 deraadt and = ~0;
1479 1.1 deraadt } else {
1480 1.1 deraadt bis = 0;
1481 1.1 deraadt and = ~(ZSWR5_DTR | ZSWR5_RTS);
1482 1.1 deraadt }
1483 1.1 deraadt s = splzs();
1484 1.1 deraadt cs->cs_preg[5] = (cs->cs_preg[5] | bis) & and;
1485 1.1 deraadt if (cs->cs_heldchange == 0) {
1486 1.1 deraadt if (cs->cs_ttyp->t_state & TS_BUSY) {
1487 1.1 deraadt cs->cs_heldtbc = cs->cs_tbc;
1488 1.1 deraadt cs->cs_tbc = 0;
1489 1.1 deraadt cs->cs_heldchange = 1;
1490 1.1 deraadt } else {
1491 1.1 deraadt cs->cs_creg[5] = (cs->cs_creg[5] | bis) & and;
1492 1.1 deraadt ZS_WRITE(cs->cs_zc, 5, cs->cs_creg[5]);
1493 1.1 deraadt }
1494 1.1 deraadt }
1495 1.1 deraadt splx(s);
1496 1.1 deraadt }
1497 1.1 deraadt
1498 1.1 deraadt /*
1499 1.1 deraadt * Write the given register set to the given zs channel in the proper order.
1500 1.1 deraadt * The channel must not be transmitting at the time. The receiver will
1501 1.1 deraadt * be disabled for the time it takes to write all the registers.
1502 1.1 deraadt */
1503 1.1 deraadt static void
1504 1.16 deraadt zs_loadchannelregs(zc, reg)
1505 1.16 deraadt volatile struct zschan *zc;
1506 1.16 deraadt u_char *reg;
1507 1.1 deraadt {
1508 1.1 deraadt int i;
1509 1.1 deraadt
1510 1.1 deraadt zc->zc_csr = ZSM_RESET_ERR; /* reset error condition */
1511 1.14 deraadt ZS_DELAY();
1512 1.1 deraadt i = zc->zc_data; /* drain fifo */
1513 1.14 deraadt ZS_DELAY();
1514 1.1 deraadt i = zc->zc_data;
1515 1.14 deraadt ZS_DELAY();
1516 1.1 deraadt i = zc->zc_data;
1517 1.14 deraadt ZS_DELAY();
1518 1.1 deraadt ZS_WRITE(zc, 4, reg[4]);
1519 1.1 deraadt ZS_WRITE(zc, 10, reg[10]);
1520 1.1 deraadt ZS_WRITE(zc, 3, reg[3] & ~ZSWR3_RX_ENABLE);
1521 1.1 deraadt ZS_WRITE(zc, 5, reg[5] & ~ZSWR5_TX_ENABLE);
1522 1.1 deraadt ZS_WRITE(zc, 1, reg[1]);
1523 1.1 deraadt ZS_WRITE(zc, 9, reg[9]);
1524 1.1 deraadt ZS_WRITE(zc, 11, reg[11]);
1525 1.1 deraadt ZS_WRITE(zc, 12, reg[12]);
1526 1.1 deraadt ZS_WRITE(zc, 13, reg[13]);
1527 1.1 deraadt ZS_WRITE(zc, 14, reg[14]);
1528 1.1 deraadt ZS_WRITE(zc, 15, reg[15]);
1529 1.1 deraadt ZS_WRITE(zc, 3, reg[3]);
1530 1.1 deraadt ZS_WRITE(zc, 5, reg[5]);
1531 1.1 deraadt }
1532 1.1 deraadt
1533 1.1 deraadt #ifdef KGDB
1534 1.1 deraadt /*
1535 1.1 deraadt * Get a character from the given kgdb channel. Called at splhigh().
1536 1.1 deraadt */
1537 1.1 deraadt static int
1538 1.16 deraadt zs_kgdb_getc(arg)
1539 1.16 deraadt void *arg;
1540 1.1 deraadt {
1541 1.1 deraadt register volatile struct zschan *zc = (volatile struct zschan *)arg;
1542 1.38 mrg u_char c;
1543 1.1 deraadt
1544 1.1 deraadt while ((zc->zc_csr & ZSRR0_RX_READY) == 0)
1545 1.14 deraadt ZS_DELAY();
1546 1.38 mrg c = zc->zc_data;
1547 1.38 mrg ZS_DELAY();
1548 1.38 mrg return c;
1549 1.1 deraadt }
1550 1.1 deraadt
1551 1.1 deraadt /*
1552 1.1 deraadt * Put a character to the given kgdb channel. Called at splhigh().
1553 1.1 deraadt */
1554 1.1 deraadt static void
1555 1.16 deraadt zs_kgdb_putc(arg, c)
1556 1.16 deraadt void *arg;
1557 1.16 deraadt int c;
1558 1.1 deraadt {
1559 1.1 deraadt register volatile struct zschan *zc = (volatile struct zschan *)arg;
1560 1.1 deraadt
1561 1.1 deraadt while ((zc->zc_csr & ZSRR0_TX_READY) == 0)
1562 1.14 deraadt ZS_DELAY();
1563 1.1 deraadt zc->zc_data = c;
1564 1.14 deraadt ZS_DELAY();
1565 1.1 deraadt }
1566 1.1 deraadt
1567 1.1 deraadt /*
1568 1.1 deraadt * Set up for kgdb; called at boot time before configuration.
1569 1.1 deraadt * KGDB interrupts will be enabled later when zs0 is configured.
1570 1.1 deraadt */
1571 1.1 deraadt void
1572 1.1 deraadt zs_kgdb_init()
1573 1.1 deraadt {
1574 1.1 deraadt volatile struct zsdevice *addr;
1575 1.1 deraadt volatile struct zschan *zc;
1576 1.1 deraadt int unit, zs;
1577 1.1 deraadt
1578 1.1 deraadt if (major(kgdb_dev) != ZSMAJOR)
1579 1.1 deraadt return;
1580 1.1 deraadt unit = minor(kgdb_dev);
1581 1.1 deraadt /*
1582 1.1 deraadt * Unit must be 0 or 1 (zs0).
1583 1.1 deraadt */
1584 1.1 deraadt if ((unsigned)unit >= ZS_KBD) {
1585 1.1 deraadt printf("zs_kgdb_init: bad minor dev %d\n", unit);
1586 1.1 deraadt return;
1587 1.1 deraadt }
1588 1.1 deraadt zs = unit >> 1;
1589 1.1 deraadt if ((addr = zsaddr[zs]) == NULL)
1590 1.38 mrg addr = zsaddr[zs] = (volatile struct zsdevice *)findzs(zs);
1591 1.1 deraadt unit &= 1;
1592 1.26 mycroft zc = unit == 0 ? &addr->zs_chan[ZS_CHAN_A] : &addr->zs_chan[ZS_CHAN_B];
1593 1.1 deraadt zs_kgdb_savedspeed = zs_getspeed(zc);
1594 1.1 deraadt printf("zs_kgdb_init: attaching zs%d%c at %d baud\n",
1595 1.1 deraadt zs, unit + 'a', kgdb_rate);
1596 1.1 deraadt zs_reset(zc, 1, kgdb_rate);
1597 1.1 deraadt kgdb_attach(zs_kgdb_getc, zs_kgdb_putc, (void *)zc);
1598 1.1 deraadt }
1599 1.1 deraadt #endif /* KGDB */
1600