z8530tty.c revision 1.127 1 1.127 mrg /* $NetBSD: z8530tty.c,v 1.127 2009/05/22 03:51:30 mrg Exp $ */
2 1.21 mycroft
3 1.21 mycroft /*-
4 1.57 mycroft * Copyright (c) 1993, 1994, 1995, 1996, 1997, 1998, 1999
5 1.21 mycroft * Charles M. Hannum. All rights reserved.
6 1.21 mycroft *
7 1.21 mycroft * Redistribution and use in source and binary forms, with or without
8 1.21 mycroft * modification, are permitted provided that the following conditions
9 1.21 mycroft * are met:
10 1.21 mycroft * 1. Redistributions of source code must retain the above copyright
11 1.21 mycroft * notice, this list of conditions and the following disclaimer.
12 1.21 mycroft * 2. Redistributions in binary form must reproduce the above copyright
13 1.21 mycroft * notice, this list of conditions and the following disclaimer in the
14 1.21 mycroft * documentation and/or other materials provided with the distribution.
15 1.21 mycroft * 3. All advertising materials mentioning features or use of this software
16 1.21 mycroft * must display the following acknowledgement:
17 1.21 mycroft * This product includes software developed by Charles M. Hannum.
18 1.21 mycroft * 4. The name of the author may not be used to endorse or promote products
19 1.21 mycroft * derived from this software without specific prior written permission.
20 1.21 mycroft *
21 1.21 mycroft * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.21 mycroft * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.21 mycroft * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.21 mycroft * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.21 mycroft * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.21 mycroft * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.21 mycroft * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.21 mycroft * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.21 mycroft * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.21 mycroft * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.21 mycroft */
32 1.1 gwr
33 1.1 gwr /*
34 1.1 gwr * Copyright (c) 1992, 1993
35 1.1 gwr * The Regents of the University of California. All rights reserved.
36 1.1 gwr *
37 1.1 gwr * This software was developed by the Computer Systems Engineering group
38 1.1 gwr * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
39 1.1 gwr * contributed to Berkeley.
40 1.1 gwr *
41 1.1 gwr * All advertising materials mentioning features or use of this software
42 1.1 gwr * must display the following acknowledgement:
43 1.1 gwr * This product includes software developed by the University of
44 1.1 gwr * California, Lawrence Berkeley Laboratory.
45 1.1 gwr *
46 1.1 gwr * Redistribution and use in source and binary forms, with or without
47 1.1 gwr * modification, are permitted provided that the following conditions
48 1.1 gwr * are met:
49 1.1 gwr * 1. Redistributions of source code must retain the above copyright
50 1.1 gwr * notice, this list of conditions and the following disclaimer.
51 1.1 gwr * 2. Redistributions in binary form must reproduce the above copyright
52 1.1 gwr * notice, this list of conditions and the following disclaimer in the
53 1.1 gwr * documentation and/or other materials provided with the distribution.
54 1.92 agc * 3. Neither the name of the University nor the names of its contributors
55 1.92 agc * may be used to endorse or promote products derived from this software
56 1.92 agc * without specific prior written permission.
57 1.92 agc *
58 1.92 agc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
59 1.92 agc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
60 1.92 agc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
61 1.92 agc * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
62 1.92 agc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
63 1.92 agc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
64 1.92 agc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
65 1.92 agc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
66 1.92 agc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
67 1.92 agc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
68 1.92 agc * SUCH DAMAGE.
69 1.92 agc *
70 1.92 agc * @(#)zs.c 8.1 (Berkeley) 7/19/93
71 1.92 agc */
72 1.92 agc
73 1.92 agc /*
74 1.92 agc * Copyright (c) 1994 Gordon W. Ross
75 1.92 agc *
76 1.92 agc * This software was developed by the Computer Systems Engineering group
77 1.92 agc * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
78 1.92 agc * contributed to Berkeley.
79 1.92 agc *
80 1.92 agc * All advertising materials mentioning features or use of this software
81 1.92 agc * must display the following acknowledgement:
82 1.92 agc * This product includes software developed by the University of
83 1.92 agc * California, Lawrence Berkeley Laboratory.
84 1.92 agc *
85 1.92 agc * Redistribution and use in source and binary forms, with or without
86 1.92 agc * modification, are permitted provided that the following conditions
87 1.92 agc * are met:
88 1.92 agc * 1. Redistributions of source code must retain the above copyright
89 1.92 agc * notice, this list of conditions and the following disclaimer.
90 1.92 agc * 2. Redistributions in binary form must reproduce the above copyright
91 1.92 agc * notice, this list of conditions and the following disclaimer in the
92 1.92 agc * documentation and/or other materials provided with the distribution.
93 1.1 gwr * 3. All advertising materials mentioning features or use of this software
94 1.1 gwr * must display the following acknowledgement:
95 1.1 gwr * This product includes software developed by the University of
96 1.1 gwr * California, Berkeley and its contributors.
97 1.1 gwr * 4. Neither the name of the University nor the names of its contributors
98 1.1 gwr * may be used to endorse or promote products derived from this software
99 1.1 gwr * without specific prior written permission.
100 1.1 gwr *
101 1.1 gwr * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
102 1.1 gwr * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
103 1.1 gwr * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
104 1.1 gwr * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
105 1.1 gwr * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
106 1.1 gwr * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
107 1.1 gwr * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
108 1.1 gwr * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
109 1.1 gwr * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
110 1.1 gwr * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
111 1.1 gwr * SUCH DAMAGE.
112 1.1 gwr *
113 1.1 gwr * @(#)zs.c 8.1 (Berkeley) 7/19/93
114 1.1 gwr */
115 1.1 gwr
116 1.1 gwr /*
117 1.1 gwr * Zilog Z8530 Dual UART driver (tty interface)
118 1.1 gwr *
119 1.1 gwr * This is the "slave" driver that will be attached to
120 1.1 gwr * the "zsc" driver for plain "tty" async. serial lines.
121 1.8 gwr *
122 1.8 gwr * Credits, history:
123 1.8 gwr *
124 1.8 gwr * The original version of this code was the sparc/dev/zs.c driver
125 1.8 gwr * as distributed with the Berkeley 4.4 Lite release. Since then,
126 1.8 gwr * Gordon Ross reorganized the code into the current parent/child
127 1.8 gwr * driver scheme, separating the Sun keyboard and mouse support
128 1.8 gwr * into independent child drivers.
129 1.8 gwr *
130 1.8 gwr * RTS/CTS flow-control support was a collaboration of:
131 1.93 keihan * Gordon Ross <gwr (at) NetBSD.org>,
132 1.8 gwr * Bill Studenmund <wrstuden (at) loki.stanford.edu>
133 1.8 gwr * Ian Dall <Ian.Dall (at) dsto.defence.gov.au>
134 1.57 mycroft *
135 1.57 mycroft * The driver was massively overhauled in November 1997 by Charles Hannum,
136 1.57 mycroft * fixing *many* bugs, and substantially improving performance.
137 1.1 gwr */
138 1.78 lukem
139 1.78 lukem #include <sys/cdefs.h>
140 1.127 mrg __KERNEL_RCSID(0, "$NetBSD: z8530tty.c,v 1.127 2009/05/22 03:51:30 mrg Exp $");
141 1.77 lukem
142 1.77 lukem #include "opt_kgdb.h"
143 1.94 simonb #include "opt_ntp.h"
144 1.1 gwr
145 1.1 gwr #include <sys/param.h>
146 1.1 gwr #include <sys/systm.h>
147 1.1 gwr #include <sys/proc.h>
148 1.1 gwr #include <sys/device.h>
149 1.1 gwr #include <sys/conf.h>
150 1.1 gwr #include <sys/file.h>
151 1.1 gwr #include <sys/ioctl.h>
152 1.6 gwr #include <sys/malloc.h>
153 1.59 wrstuden #include <sys/timepps.h>
154 1.1 gwr #include <sys/tty.h>
155 1.1 gwr #include <sys/time.h>
156 1.1 gwr #include <sys/kernel.h>
157 1.1 gwr #include <sys/syslog.h>
158 1.107 elad #include <sys/kauth.h>
159 1.1 gwr
160 1.1 gwr #include <dev/ic/z8530reg.h>
161 1.1 gwr #include <machine/z8530var.h>
162 1.1 gwr
163 1.52 drochner #include <dev/cons.h>
164 1.52 drochner
165 1.122 tsutsui #include "ioconf.h"
166 1.17 jtk #include "locators.h"
167 1.17 jtk
168 1.1 gwr /*
169 1.1 gwr * How many input characters we can buffer.
170 1.1 gwr * The port-specific var.h may override this.
171 1.1 gwr * Note: must be a power of two!
172 1.1 gwr */
173 1.1 gwr #ifndef ZSTTY_RING_SIZE
174 1.36 mycroft #define ZSTTY_RING_SIZE 2048
175 1.1 gwr #endif
176 1.6 gwr
177 1.72 eeh static struct cnm_state zstty_cnm_state;
178 1.6 gwr /*
179 1.6 gwr * Make this an option variable one can patch.
180 1.6 gwr * But be warned: this must be a power of 2!
181 1.6 gwr */
182 1.35 mycroft u_int zstty_rbuf_size = ZSTTY_RING_SIZE;
183 1.1 gwr
184 1.35 mycroft /* Stop input when 3/4 of the ring is full; restart when only 1/4 is full. */
185 1.35 mycroft u_int zstty_rbuf_hiwat = (ZSTTY_RING_SIZE * 1) / 4;
186 1.35 mycroft u_int zstty_rbuf_lowat = (ZSTTY_RING_SIZE * 3) / 4;
187 1.8 gwr
188 1.1 gwr struct zstty_softc {
189 1.122 tsutsui device_t zst_dev; /* required first: base device */
190 1.1 gwr struct tty *zst_tty;
191 1.1 gwr struct zs_chanstate *zst_cs;
192 1.1 gwr
193 1.65 thorpej struct callout zst_diag_ch;
194 1.65 thorpej
195 1.35 mycroft u_int zst_overflows,
196 1.35 mycroft zst_floods,
197 1.35 mycroft zst_errors;
198 1.35 mycroft
199 1.35 mycroft int zst_hwflags, /* see z8530var.h */
200 1.35 mycroft zst_swflags; /* TIOCFLAG_SOFTCAR, ... <ttycom.h> */
201 1.35 mycroft
202 1.35 mycroft u_int zst_r_hiwat,
203 1.35 mycroft zst_r_lowat;
204 1.122 tsutsui uint8_t *volatile zst_rbget,
205 1.122 tsutsui *volatile zst_rbput;
206 1.35 mycroft volatile u_int zst_rbavail;
207 1.122 tsutsui uint8_t *zst_rbuf,
208 1.122 tsutsui *zst_ebuf;
209 1.1 gwr
210 1.1 gwr /*
211 1.1 gwr * The transmit byte count and address are used for pseudo-DMA
212 1.1 gwr * output in the hardware interrupt code. PDMA can be suspended
213 1.1 gwr * to get pending changes done; heldtbc is used for this. It can
214 1.1 gwr * also be stopped for ^S; this sets TS_TTSTOP in tp->t_state.
215 1.1 gwr */
216 1.122 tsutsui uint8_t *zst_tba; /* transmit buffer address */
217 1.35 mycroft u_int zst_tbc, /* transmit byte count */
218 1.35 mycroft zst_heldtbc; /* held tbc while xmission stopped */
219 1.1 gwr
220 1.8 gwr /* Flags to communicate with zstty_softint() */
221 1.122 tsutsui volatile uint8_t zst_rx_flags, /* receiver blocked */
222 1.35 mycroft #define RX_TTY_BLOCKED 0x01
223 1.35 mycroft #define RX_TTY_OVERFLOWED 0x02
224 1.35 mycroft #define RX_IBUF_BLOCKED 0x04
225 1.35 mycroft #define RX_IBUF_OVERFLOWED 0x08
226 1.35 mycroft #define RX_ANY_BLOCK 0x0f
227 1.35 mycroft zst_tx_busy, /* working on an output chunk */
228 1.35 mycroft zst_tx_done, /* done with one output chunk */
229 1.35 mycroft zst_tx_stopped, /* H/W level stop (lost CTS) */
230 1.35 mycroft zst_st_check, /* got a status interrupt */
231 1.35 mycroft zst_rx_ready;
232 1.59 wrstuden
233 1.59 wrstuden /* PPS signal on DCD, with or without inkernel clock disciplining */
234 1.122 tsutsui uint8_t zst_ppsmask; /* pps signal mask */
235 1.108 kardel struct pps_state zst_pps_state;
236 1.1 gwr };
237 1.1 gwr
238 1.1 gwr /* Definition of the driver for autoconfig. */
239 1.122 tsutsui static int zstty_match(device_t, cfdata_t, void *);
240 1.122 tsutsui static void zstty_attach(device_t, device_t, void *);
241 1.1 gwr
242 1.122 tsutsui CFATTACH_DECL_NEW(zstty, sizeof(struct zstty_softc),
243 1.84 thorpej zstty_match, zstty_attach, NULL, NULL);
244 1.4 thorpej
245 1.80 gehenna dev_type_open(zsopen);
246 1.80 gehenna dev_type_close(zsclose);
247 1.80 gehenna dev_type_read(zsread);
248 1.80 gehenna dev_type_write(zswrite);
249 1.80 gehenna dev_type_ioctl(zsioctl);
250 1.80 gehenna dev_type_stop(zsstop);
251 1.80 gehenna dev_type_tty(zstty);
252 1.80 gehenna dev_type_poll(zspoll);
253 1.80 gehenna
254 1.80 gehenna const struct cdevsw zstty_cdevsw = {
255 1.80 gehenna zsopen, zsclose, zsread, zswrite, zsioctl,
256 1.85 jdolecek zsstop, zstty, zspoll, nommap, ttykqfilter, D_TTY
257 1.80 gehenna };
258 1.80 gehenna
259 1.1 gwr struct zsops zsops_tty;
260 1.1 gwr
261 1.96 perry static void zs_shutdown(struct zstty_softc *);
262 1.96 perry static void zsstart(struct tty *);
263 1.96 perry static int zsparam(struct tty *, struct termios *);
264 1.96 perry static void zs_modem(struct zstty_softc *, int);
265 1.96 perry static void tiocm_to_zs(struct zstty_softc *, u_long, int);
266 1.96 perry static int zs_to_tiocm(struct zstty_softc *);
267 1.96 perry static int zshwiflow(struct tty *, int);
268 1.96 perry static void zs_hwiflow(struct zstty_softc *);
269 1.96 perry static void zs_maskintr(struct zstty_softc *);
270 1.1 gwr
271 1.57 mycroft /* Low-level routines. */
272 1.96 perry static void zstty_rxint (struct zs_chanstate *);
273 1.96 perry static void zstty_stint (struct zs_chanstate *, int);
274 1.96 perry static void zstty_txint (struct zs_chanstate *);
275 1.96 perry static void zstty_softint(struct zs_chanstate *);
276 1.118 ad static void zstty_softint1(struct zs_chanstate *);
277 1.57 mycroft
278 1.47 mycroft #define ZSUNIT(x) (minor(x) & 0x7ffff)
279 1.47 mycroft #define ZSDIALOUT(x) (minor(x) & 0x80000)
280 1.47 mycroft
281 1.126 cegger struct tty *zstty_get_tty_from_dev(device_t);
282 1.99 macallan
283 1.99 macallan /*
284 1.126 cegger * XXX get the (struct tty *) out of a (device_t) we trust to be a
285 1.99 macallan * (struct zstty_softc *) - needed by sparc/dev/zs.c, sparc64/dev/zs.c,
286 1.99 macallan * sun3/dev/zs.c and sun2/dev/zs.c will probably need it at some point
287 1.99 macallan */
288 1.99 macallan
289 1.99 macallan struct tty *
290 1.126 cegger zstty_get_tty_from_dev(device_t dev)
291 1.99 macallan {
292 1.122 tsutsui struct zstty_softc *sc = device_private(dev);
293 1.99 macallan
294 1.99 macallan return sc->zst_tty;
295 1.99 macallan }
296 1.99 macallan
297 1.1 gwr /*
298 1.1 gwr * zstty_match: how is this zs channel configured?
299 1.1 gwr */
300 1.97 perry int
301 1.122 tsutsui zstty_match(device_t parent, cfdata_t cf, void *aux)
302 1.1 gwr {
303 1.1 gwr struct zsc_attach_args *args = aux;
304 1.1 gwr
305 1.1 gwr /* Exact match is better than wildcard. */
306 1.95 thorpej if (cf->zsccf_channel == args->channel)
307 1.1 gwr return 2;
308 1.1 gwr
309 1.1 gwr /* This driver accepts wildcard. */
310 1.95 thorpej if (cf->zsccf_channel == ZSCCF_CHANNEL_DEFAULT)
311 1.1 gwr return 1;
312 1.1 gwr
313 1.1 gwr return 0;
314 1.1 gwr }
315 1.1 gwr
316 1.97 perry void
317 1.122 tsutsui zstty_attach(device_t parent, device_t self, void *aux)
318 1.1 gwr {
319 1.122 tsutsui struct zstty_softc *zst = device_private(self);
320 1.122 tsutsui struct zsc_softc *zsc = device_private(parent);
321 1.125 cegger cfdata_t cf = device_cfdata(self);
322 1.1 gwr struct zsc_attach_args *args = aux;
323 1.1 gwr struct zs_chanstate *cs;
324 1.1 gwr struct tty *tp;
325 1.122 tsutsui int channel, tty_unit;
326 1.1 gwr dev_t dev;
327 1.98 christos const char *i, *o;
328 1.89 pk int dtr_on;
329 1.89 pk int resetbit;
330 1.1 gwr
331 1.122 tsutsui zst->zst_dev = self;
332 1.122 tsutsui
333 1.114 ad callout_init(&zst->zst_diag_ch, 0);
334 1.72 eeh cn_init_magic(&zstty_cnm_state);
335 1.65 thorpej
336 1.122 tsutsui tty_unit = device_unit(self);
337 1.1 gwr channel = args->channel;
338 1.14 gwr cs = zsc->zsc_cs[channel];
339 1.1 gwr cs->cs_private = zst;
340 1.1 gwr cs->cs_ops = &zsops_tty;
341 1.1 gwr
342 1.1 gwr zst->zst_cs = cs;
343 1.1 gwr zst->zst_swflags = cf->cf_flags; /* softcar, etc. */
344 1.1 gwr zst->zst_hwflags = args->hwflags;
345 1.80 gehenna dev = makedev(cdevsw_lookup_major(&zstty_cdevsw), tty_unit);
346 1.1 gwr
347 1.1 gwr if (zst->zst_swflags)
348 1.122 tsutsui aprint_normal(" flags 0x%x", zst->zst_swflags);
349 1.1 gwr
350 1.64 pk /*
351 1.64 pk * Check whether we serve as a console device.
352 1.64 pk * XXX - split console input/output channels aren't
353 1.64 pk * supported yet on /dev/console
354 1.64 pk */
355 1.64 pk i = o = NULL;
356 1.64 pk if ((zst->zst_hwflags & ZS_HWFLAG_CONSOLE_INPUT) != 0) {
357 1.64 pk i = "input";
358 1.64 pk if ((args->hwflags & ZS_HWFLAG_USE_CONSDEV) != 0) {
359 1.72 eeh args->consdev->cn_dev = dev;
360 1.64 pk cn_tab->cn_pollc = args->consdev->cn_pollc;
361 1.64 pk cn_tab->cn_getc = args->consdev->cn_getc;
362 1.64 pk }
363 1.64 pk cn_tab->cn_dev = dev;
364 1.72 eeh /* Set console magic to BREAK */
365 1.72 eeh cn_set_magic("\047\001");
366 1.64 pk }
367 1.64 pk if ((zst->zst_hwflags & ZS_HWFLAG_CONSOLE_OUTPUT) != 0) {
368 1.64 pk o = "output";
369 1.64 pk if ((args->hwflags & ZS_HWFLAG_USE_CONSDEV) != 0) {
370 1.64 pk cn_tab->cn_putc = args->consdev->cn_putc;
371 1.64 pk }
372 1.52 drochner cn_tab->cn_dev = dev;
373 1.64 pk }
374 1.64 pk if (i != NULL || o != NULL)
375 1.122 tsutsui aprint_normal(" (console %s)", i ? (o ? "i/o" : i) : o);
376 1.64 pk
377 1.1 gwr #ifdef KGDB
378 1.57 mycroft if (zs_check_kgdb(cs, dev)) {
379 1.1 gwr /*
380 1.15 gwr * Allow kgdb to "take over" this port. Returns true
381 1.15 gwr * if this serial port is in-use by kgdb.
382 1.1 gwr */
383 1.122 tsutsui aprint_normal(" (kgdb)\n");
384 1.57 mycroft /*
385 1.57 mycroft * This is the kgdb port (exclusive use)
386 1.57 mycroft * so skip the normal attach code.
387 1.57 mycroft */
388 1.57 mycroft return;
389 1.64 pk }
390 1.1 gwr #endif
391 1.122 tsutsui aprint_normal("\n");
392 1.1 gwr
393 1.6 gwr tp = ttymalloc();
394 1.49 wrstuden tp->t_dev = dev;
395 1.1 gwr tp->t_oproc = zsstart;
396 1.1 gwr tp->t_param = zsparam;
397 1.8 gwr tp->t_hwiflow = zshwiflow;
398 1.9 gwr tty_attach(tp);
399 1.1 gwr
400 1.6 gwr zst->zst_tty = tp;
401 1.106 tsutsui zst->zst_rbuf = malloc(zstty_rbuf_size << 1, M_DEVBUF, M_NOWAIT);
402 1.106 tsutsui if (zst->zst_rbuf == NULL) {
403 1.122 tsutsui aprint_error_dev(zst->zst_dev,
404 1.122 tsutsui "unable to allocate ring buffer\n");
405 1.106 tsutsui return;
406 1.106 tsutsui }
407 1.35 mycroft zst->zst_ebuf = zst->zst_rbuf + (zstty_rbuf_size << 1);
408 1.35 mycroft /* Disable the high water mark. */
409 1.35 mycroft zst->zst_r_hiwat = 0;
410 1.35 mycroft zst->zst_r_lowat = 0;
411 1.35 mycroft zst->zst_rbget = zst->zst_rbput = zst->zst_rbuf;
412 1.35 mycroft zst->zst_rbavail = zstty_rbuf_size;
413 1.6 gwr
414 1.63 jdc /* if there are no enable/disable functions, assume the device
415 1.63 jdc is always enabled */
416 1.63 jdc if (!cs->enable)
417 1.63 jdc cs->enabled = 1;
418 1.14 gwr
419 1.1 gwr /*
420 1.1 gwr * Hardware init
421 1.1 gwr */
422 1.89 pk dtr_on = 0;
423 1.89 pk resetbit = 0;
424 1.35 mycroft if (ISSET(zst->zst_hwflags, ZS_HWFLAG_CONSOLE)) {
425 1.14 gwr /* Call zsparam similar to open. */
426 1.14 gwr struct termios t;
427 1.74 tsutsui
428 1.74 tsutsui /* Wait a while for previous console output to complete */
429 1.74 tsutsui DELAY(10000);
430 1.52 drochner
431 1.57 mycroft /* Setup the "new" parameters in t. */
432 1.57 mycroft t.c_ispeed = 0;
433 1.57 mycroft t.c_ospeed = cs->cs_defspeed;
434 1.57 mycroft t.c_cflag = cs->cs_defcflag;
435 1.14 gwr
436 1.57 mycroft /*
437 1.57 mycroft * Turn on receiver and status interrupts.
438 1.57 mycroft * We defer the actual write of the register to zsparam(),
439 1.57 mycroft * but we must make sure status interrupts are turned on by
440 1.57 mycroft * the time zsparam() reads the initial rr0 state.
441 1.57 mycroft */
442 1.124 tsutsui SET(cs->cs_preg[1], ZSWR1_RIE | ZSWR1_TIE | ZSWR1_SIE);
443 1.34 gwr
444 1.14 gwr /* Make sure zsparam will see changes. */
445 1.14 gwr tp->t_ospeed = 0;
446 1.34 gwr (void) zsparam(tp, &t);
447 1.35 mycroft
448 1.34 gwr /* Make sure DTR is on now. */
449 1.89 pk dtr_on = 1;
450 1.43 mycroft
451 1.76 thorpej } else if (!ISSET(zst->zst_hwflags, ZS_HWFLAG_NORESET)) {
452 1.1 gwr /* Not the console; may need reset. */
453 1.89 pk resetbit = (channel == 0) ? ZSWR9_A_RESET : ZSWR9_B_RESET;
454 1.89 pk }
455 1.43 mycroft
456 1.115 ad mutex_spin_enter(&cs->cs_lock);
457 1.89 pk if (resetbit)
458 1.89 pk zs_write_reg(cs, 9, resetbit);
459 1.89 pk zs_modem(zst, dtr_on);
460 1.115 ad mutex_spin_exit(&cs->cs_lock);
461 1.1 gwr }
462 1.1 gwr
463 1.1 gwr
464 1.1 gwr /*
465 1.1 gwr * Return pointer to our tty.
466 1.1 gwr */
467 1.1 gwr struct tty *
468 1.122 tsutsui zstty(dev_t dev)
469 1.1 gwr {
470 1.122 tsutsui struct zstty_softc *zst;
471 1.122 tsutsui
472 1.122 tsutsui zst = device_lookup_private(&zstty_cd, ZSUNIT(dev));
473 1.1 gwr
474 1.1 gwr return (zst->zst_tty);
475 1.1 gwr }
476 1.1 gwr
477 1.1 gwr
478 1.45 mycroft void
479 1.122 tsutsui zs_shutdown(struct zstty_softc *zst)
480 1.45 mycroft {
481 1.46 mycroft struct zs_chanstate *cs = zst->zst_cs;
482 1.45 mycroft struct tty *tp = zst->zst_tty;
483 1.45 mycroft
484 1.115 ad mutex_spin_enter(&cs->cs_lock);
485 1.45 mycroft
486 1.45 mycroft /* If we were asserting flow control, then deassert it. */
487 1.45 mycroft SET(zst->zst_rx_flags, RX_IBUF_BLOCKED);
488 1.45 mycroft zs_hwiflow(zst);
489 1.45 mycroft
490 1.45 mycroft /* Clear any break condition set with TIOCSBRK. */
491 1.45 mycroft zs_break(cs, 0);
492 1.45 mycroft
493 1.45 mycroft /*
494 1.45 mycroft * Hang up if necessary. Wait a bit, so the other side has time to
495 1.45 mycroft * notice even if we immediately open the port again.
496 1.45 mycroft */
497 1.45 mycroft if (ISSET(tp->t_cflag, HUPCL)) {
498 1.45 mycroft zs_modem(zst, 0);
499 1.115 ad mutex_spin_exit(&cs->cs_lock);
500 1.88 pk /*
501 1.88 pk * XXX - another process is not prevented from opening
502 1.88 pk * the device during our sleep.
503 1.88 pk */
504 1.45 mycroft (void) tsleep(cs, TTIPRI, ttclos, hz);
505 1.89 pk /* Re-check state in case we were opened during our sleep */
506 1.89 pk if (ISSET(tp->t_state, TS_ISOPEN) || tp->t_wopen != 0)
507 1.89 pk return;
508 1.89 pk
509 1.115 ad mutex_spin_enter(&cs->cs_lock);
510 1.45 mycroft }
511 1.45 mycroft
512 1.45 mycroft /* Turn off interrupts if not the console. */
513 1.57 mycroft if (!ISSET(zst->zst_hwflags, ZS_HWFLAG_CONSOLE)) {
514 1.124 tsutsui CLR(cs->cs_preg[1], ZSWR1_RIE | ZSWR1_TIE | ZSWR1_SIE);
515 1.57 mycroft cs->cs_creg[1] = cs->cs_preg[1];
516 1.57 mycroft zs_write_reg(cs, 1, cs->cs_creg[1]);
517 1.57 mycroft }
518 1.45 mycroft
519 1.63 jdc /* Call the power management hook. */
520 1.63 jdc if (cs->disable) {
521 1.63 jdc #ifdef DIAGNOSTIC
522 1.63 jdc if (!cs->enabled)
523 1.122 tsutsui panic("%s: not enabled?", __func__);
524 1.63 jdc #endif
525 1.63 jdc (*cs->disable)(zst->zst_cs);
526 1.63 jdc }
527 1.63 jdc
528 1.115 ad mutex_spin_exit(&cs->cs_lock);
529 1.45 mycroft }
530 1.45 mycroft
531 1.1 gwr /*
532 1.1 gwr * Open a zs serial (tty) port.
533 1.1 gwr */
534 1.1 gwr int
535 1.122 tsutsui zsopen(dev_t dev, int flags, int mode, struct lwp *l)
536 1.1 gwr {
537 1.45 mycroft struct zstty_softc *zst;
538 1.45 mycroft struct zs_chanstate *cs;
539 1.35 mycroft struct tty *tp;
540 1.45 mycroft int error;
541 1.1 gwr
542 1.122 tsutsui zst = device_lookup_private(&zstty_cd, ZSUNIT(dev));
543 1.68 thorpej if (zst == NULL)
544 1.1 gwr return (ENXIO);
545 1.68 thorpej
546 1.1 gwr tp = zst->zst_tty;
547 1.1 gwr cs = zst->zst_cs;
548 1.1 gwr
549 1.1 gwr /* If KGDB took the line, then tp==NULL */
550 1.1 gwr if (tp == NULL)
551 1.1 gwr return (EBUSY);
552 1.1 gwr
553 1.111 elad if (kauth_authorize_device_tty(l->l_cred, KAUTH_DEVICE_TTY_OPEN, tp))
554 1.1 gwr return (EBUSY);
555 1.1 gwr
556 1.115 ad mutex_spin_enter(&tty_lock);
557 1.1 gwr
558 1.35 mycroft /*
559 1.35 mycroft * Do the following iff this is a first open.
560 1.35 mycroft */
561 1.45 mycroft if (!ISSET(tp->t_state, TS_ISOPEN) && tp->t_wopen == 0) {
562 1.14 gwr struct termios t;
563 1.50 wrstuden
564 1.50 wrstuden tp->t_dev = dev;
565 1.63 jdc
566 1.63 jdc /* Call the power management hook. */
567 1.63 jdc if (cs->enable) {
568 1.63 jdc if ((*cs->enable)(cs)) {
569 1.115 ad mutex_spin_exit(&tty_lock);
570 1.63 jdc printf("%s: device enable failed\n",
571 1.122 tsutsui device_xname(zst->zst_dev));
572 1.63 jdc return (EIO);
573 1.63 jdc }
574 1.63 jdc }
575 1.35 mycroft
576 1.14 gwr /*
577 1.35 mycroft * Initialize the termios status to the defaults. Add in the
578 1.35 mycroft * sticky bits from TIOCSFLAGS.
579 1.14 gwr */
580 1.20 mycroft t.c_ispeed = 0;
581 1.20 mycroft t.c_ospeed = cs->cs_defspeed;
582 1.20 mycroft t.c_cflag = cs->cs_defcflag;
583 1.35 mycroft if (ISSET(zst->zst_swflags, TIOCFLAG_CLOCAL))
584 1.35 mycroft SET(t.c_cflag, CLOCAL);
585 1.35 mycroft if (ISSET(zst->zst_swflags, TIOCFLAG_CRTSCTS))
586 1.35 mycroft SET(t.c_cflag, CRTSCTS);
587 1.40 mycroft if (ISSET(zst->zst_swflags, TIOCFLAG_CDTRCTS))
588 1.40 mycroft SET(t.c_cflag, CDTRCTS);
589 1.35 mycroft if (ISSET(zst->zst_swflags, TIOCFLAG_MDMBUF))
590 1.35 mycroft SET(t.c_cflag, MDMBUF);
591 1.57 mycroft
592 1.115 ad mutex_spin_enter(&cs->cs_lock);
593 1.57 mycroft
594 1.57 mycroft /*
595 1.57 mycroft * Turn on receiver and status interrupts.
596 1.57 mycroft * We defer the actual write of the register to zsparam(),
597 1.57 mycroft * but we must make sure status interrupts are turned on by
598 1.57 mycroft * the time zsparam() reads the initial rr0 state.
599 1.57 mycroft */
600 1.124 tsutsui SET(cs->cs_preg[1], ZSWR1_RIE | ZSWR1_TIE | ZSWR1_SIE);
601 1.57 mycroft
602 1.59 wrstuden /* Clear PPS capture state on first open. */
603 1.123 ad mutex_spin_enter(&timecounter_lock);
604 1.59 wrstuden zst->zst_ppsmask = 0;
605 1.108 kardel memset(&zst->zst_pps_state, 0, sizeof(zst->zst_pps_state));
606 1.122 tsutsui zst->zst_pps_state.ppscap =
607 1.122 tsutsui PPS_CAPTUREASSERT | PPS_CAPTURECLEAR;
608 1.108 kardel pps_init(&zst->zst_pps_state);
609 1.123 ad mutex_spin_exit(&timecounter_lock);
610 1.59 wrstuden
611 1.115 ad mutex_spin_exit(&cs->cs_lock);
612 1.57 mycroft
613 1.14 gwr /* Make sure zsparam will see changes. */
614 1.14 gwr tp->t_ospeed = 0;
615 1.14 gwr (void) zsparam(tp, &t);
616 1.57 mycroft
617 1.14 gwr /*
618 1.14 gwr * Note: zsparam has done: cflag, ispeed, ospeed
619 1.14 gwr * so we just need to do: iflag, oflag, lflag, cc
620 1.14 gwr * For "raw" mode, just leave all zeros.
621 1.14 gwr */
622 1.35 mycroft if (!ISSET(zst->zst_hwflags, ZS_HWFLAG_RAW)) {
623 1.14 gwr tp->t_iflag = TTYDEF_IFLAG;
624 1.14 gwr tp->t_oflag = TTYDEF_OFLAG;
625 1.14 gwr tp->t_lflag = TTYDEF_LFLAG;
626 1.35 mycroft } else {
627 1.35 mycroft tp->t_iflag = 0;
628 1.35 mycroft tp->t_oflag = 0;
629 1.35 mycroft tp->t_lflag = 0;
630 1.14 gwr }
631 1.19 gwr ttychars(tp);
632 1.1 gwr ttsetwater(tp);
633 1.20 mycroft
634 1.115 ad mutex_spin_enter(&cs->cs_lock);
635 1.43 mycroft
636 1.20 mycroft /*
637 1.20 mycroft * Turn on DTR. We must always do this, even if carrier is not
638 1.20 mycroft * present, because otherwise we'd have to use TIOCSDTR
639 1.28 mycroft * immediately after setting CLOCAL, which applications do not
640 1.28 mycroft * expect. We always assert DTR while the device is open
641 1.28 mycroft * unless explicitly requested to deassert it.
642 1.20 mycroft */
643 1.20 mycroft zs_modem(zst, 1);
644 1.20 mycroft
645 1.20 mycroft /* Clear the input ring, and unblock. */
646 1.35 mycroft zst->zst_rbget = zst->zst_rbput = zst->zst_rbuf;
647 1.35 mycroft zst->zst_rbavail = zstty_rbuf_size;
648 1.20 mycroft zs_iflush(cs);
649 1.35 mycroft CLR(zst->zst_rx_flags, RX_ANY_BLOCK);
650 1.24 mycroft zs_hwiflow(zst);
651 1.26 mycroft
652 1.115 ad mutex_spin_exit(&cs->cs_lock);
653 1.1 gwr }
654 1.14 gwr
655 1.115 ad mutex_spin_exit(&tty_lock);
656 1.1 gwr
657 1.47 mycroft error = ttyopen(tp, ZSDIALOUT(dev), ISSET(flags, O_NONBLOCK));
658 1.47 mycroft if (error)
659 1.47 mycroft goto bad;
660 1.45 mycroft
661 1.70 eeh error = (*tp->t_linesw->l_open)(dev, tp);
662 1.45 mycroft if (error)
663 1.45 mycroft goto bad;
664 1.45 mycroft
665 1.45 mycroft return (0);
666 1.45 mycroft
667 1.45 mycroft bad:
668 1.45 mycroft if (!ISSET(tp->t_state, TS_ISOPEN) && tp->t_wopen == 0) {
669 1.45 mycroft /*
670 1.45 mycroft * We failed to open the device, and nobody else had it opened.
671 1.45 mycroft * Clean up the state as appropriate.
672 1.45 mycroft */
673 1.45 mycroft zs_shutdown(zst);
674 1.45 mycroft }
675 1.45 mycroft
676 1.1 gwr return (error);
677 1.1 gwr }
678 1.1 gwr
679 1.1 gwr /*
680 1.1 gwr * Close a zs serial port.
681 1.1 gwr */
682 1.1 gwr int
683 1.122 tsutsui zsclose(dev_t dev, int flags, int mode, struct lwp *l)
684 1.1 gwr {
685 1.122 tsutsui struct zstty_softc *zst;
686 1.122 tsutsui struct tty *tp;
687 1.122 tsutsui
688 1.122 tsutsui zst = device_lookup_private(&zstty_cd, ZSUNIT(dev));
689 1.122 tsutsui tp = zst->zst_tty;
690 1.1 gwr
691 1.1 gwr /* XXX This is for cons.c. */
692 1.35 mycroft if (!ISSET(tp->t_state, TS_ISOPEN))
693 1.1 gwr return 0;
694 1.1 gwr
695 1.70 eeh (*tp->t_linesw->l_close)(tp, flags);
696 1.20 mycroft ttyclose(tp);
697 1.20 mycroft
698 1.47 mycroft if (!ISSET(tp->t_state, TS_ISOPEN) && tp->t_wopen == 0) {
699 1.47 mycroft /*
700 1.47 mycroft * Although we got a last close, the device may still be in
701 1.47 mycroft * use; e.g. if this was the dialout node, and there are still
702 1.47 mycroft * processes waiting for carrier on the non-dialout node.
703 1.47 mycroft */
704 1.47 mycroft zs_shutdown(zst);
705 1.47 mycroft }
706 1.14 gwr
707 1.1 gwr return (0);
708 1.1 gwr }
709 1.1 gwr
710 1.1 gwr /*
711 1.1 gwr * Read/write zs serial port.
712 1.1 gwr */
713 1.1 gwr int
714 1.122 tsutsui zsread(dev_t dev, struct uio *uio, int flags)
715 1.1 gwr {
716 1.122 tsutsui struct zstty_softc *zst;
717 1.122 tsutsui struct tty *tp;
718 1.122 tsutsui
719 1.122 tsutsui zst = device_lookup_private(&zstty_cd, ZSUNIT(dev));
720 1.122 tsutsui tp = zst->zst_tty;
721 1.1 gwr
722 1.70 eeh return ((*tp->t_linesw->l_read)(tp, uio, flags));
723 1.1 gwr }
724 1.1 gwr
725 1.1 gwr int
726 1.122 tsutsui zswrite(dev_t dev, struct uio *uio, int flags)
727 1.1 gwr {
728 1.122 tsutsui struct zstty_softc *zst;
729 1.122 tsutsui struct tty *tp;
730 1.122 tsutsui
731 1.122 tsutsui zst = device_lookup_private(&zstty_cd, ZSUNIT(dev));
732 1.122 tsutsui tp = zst->zst_tty;
733 1.1 gwr
734 1.70 eeh return ((*tp->t_linesw->l_write)(tp, uio, flags));
735 1.75 scw }
736 1.75 scw
737 1.75 scw int
738 1.122 tsutsui zspoll(dev_t dev, int events, struct lwp *l)
739 1.75 scw {
740 1.122 tsutsui struct zstty_softc *zst;
741 1.122 tsutsui struct tty *tp;
742 1.122 tsutsui
743 1.122 tsutsui zst = device_lookup_private(&zstty_cd, ZSUNIT(dev));
744 1.122 tsutsui tp = zst->zst_tty;
745 1.75 scw
746 1.101 christos return ((*tp->t_linesw->l_poll)(tp, events, l));
747 1.1 gwr }
748 1.1 gwr
749 1.1 gwr int
750 1.122 tsutsui zsioctl(dev_t dev, u_long cmd, void *data, int flag, struct lwp *l)
751 1.1 gwr {
752 1.122 tsutsui struct zstty_softc *zst;
753 1.122 tsutsui struct zs_chanstate *cs;
754 1.122 tsutsui struct tty *tp;
755 1.35 mycroft int error;
756 1.1 gwr
757 1.122 tsutsui zst = device_lookup_private(&zstty_cd, ZSUNIT(dev));
758 1.122 tsutsui cs = zst->zst_cs;
759 1.122 tsutsui tp = zst->zst_tty;
760 1.101 christos error = (*tp->t_linesw->l_ioctl)(tp, cmd, data, flag, l);
761 1.79 atatat if (error != EPASSTHROUGH)
762 1.1 gwr return (error);
763 1.14 gwr
764 1.101 christos error = ttioctl(tp, cmd, data, flag, l);
765 1.79 atatat if (error != EPASSTHROUGH)
766 1.1 gwr return (error);
767 1.1 gwr
768 1.14 gwr #ifdef ZS_MD_IOCTL
769 1.79 atatat error = ZS_MD_IOCTL(cs, cmd, data);
770 1.79 atatat if (error != EPASSTHROUGH)
771 1.14 gwr return (error);
772 1.14 gwr #endif /* ZS_MD_IOCTL */
773 1.44 mycroft
774 1.44 mycroft error = 0;
775 1.14 gwr
776 1.115 ad mutex_spin_enter(&cs->cs_lock);
777 1.43 mycroft
778 1.1 gwr switch (cmd) {
779 1.1 gwr case TIOCSBRK:
780 1.1 gwr zs_break(cs, 1);
781 1.1 gwr break;
782 1.1 gwr
783 1.1 gwr case TIOCCBRK:
784 1.1 gwr zs_break(cs, 0);
785 1.1 gwr break;
786 1.1 gwr
787 1.1 gwr case TIOCGFLAGS:
788 1.1 gwr *(int *)data = zst->zst_swflags;
789 1.1 gwr break;
790 1.1 gwr
791 1.1 gwr case TIOCSFLAGS:
792 1.112 elad error = kauth_authorize_device_tty(l->l_cred,
793 1.112 elad KAUTH_DEVICE_TTY_PRIVSET, tp);
794 1.20 mycroft if (error)
795 1.43 mycroft break;
796 1.20 mycroft zst->zst_swflags = *(int *)data;
797 1.1 gwr break;
798 1.1 gwr
799 1.1 gwr case TIOCSDTR:
800 1.1 gwr zs_modem(zst, 1);
801 1.1 gwr break;
802 1.1 gwr
803 1.1 gwr case TIOCCDTR:
804 1.1 gwr zs_modem(zst, 0);
805 1.1 gwr break;
806 1.1 gwr
807 1.1 gwr case TIOCMSET:
808 1.1 gwr case TIOCMBIS:
809 1.1 gwr case TIOCMBIC:
810 1.58 mycroft tiocm_to_zs(zst, cmd, *(int *)data);
811 1.54 christos break;
812 1.54 christos
813 1.1 gwr case TIOCMGET:
814 1.58 mycroft *(int *)data = zs_to_tiocm(zst);
815 1.54 christos break;
816 1.54 christos
817 1.108 kardel case PPS_IOC_CREATE:
818 1.108 kardel case PPS_IOC_DESTROY:
819 1.108 kardel case PPS_IOC_GETPARAMS:
820 1.108 kardel case PPS_IOC_SETPARAMS:
821 1.108 kardel case PPS_IOC_GETCAP:
822 1.108 kardel case PPS_IOC_FETCH:
823 1.108 kardel #ifdef PPS_SYNC
824 1.108 kardel case PPS_IOC_KCBIND:
825 1.108 kardel #endif
826 1.123 ad mutex_spin_enter(&timecounter_lock);
827 1.108 kardel error = pps_ioctl(cmd, data, &zst->zst_pps_state);
828 1.108 kardel if (zst->zst_pps_state.ppsparam.mode & PPS_CAPTUREBOTH)
829 1.108 kardel zst->zst_ppsmask = ZSRR0_DCD;
830 1.108 kardel else
831 1.108 kardel zst->zst_ppsmask = 0;
832 1.123 ad mutex_spin_exit(&timecounter_lock);
833 1.108 kardel break;
834 1.94 simonb
835 1.59 wrstuden case TIOCDCDTIMESTAMP: /* XXX old, overloaded API used by xntpd v3 */
836 1.59 wrstuden if (cs->cs_rr0_pps == 0) {
837 1.59 wrstuden error = EINVAL;
838 1.59 wrstuden break;
839 1.59 wrstuden }
840 1.123 ad mutex_spin_enter(&timecounter_lock);
841 1.108 kardel #ifndef PPS_TRAILING_EDGE
842 1.108 kardel TIMESPEC_TO_TIMEVAL((struct timeval *)data,
843 1.108 kardel &zst->zst_pps_state.ppsinfo.assert_timestamp);
844 1.108 kardel #else
845 1.108 kardel TIMESPEC_TO_TIMEVAL((struct timeval *)data,
846 1.108 kardel &zst->zst_pps_state.ppsinfo.clear_timestamp);
847 1.108 kardel #endif
848 1.123 ad mutex_spin_exit(&timecounter_lock);
849 1.59 wrstuden /*
850 1.59 wrstuden * Now update interrupts.
851 1.59 wrstuden */
852 1.59 wrstuden zs_maskintr(zst);
853 1.59 wrstuden /*
854 1.59 wrstuden * If nothing is being transmitted, set up new current values,
855 1.59 wrstuden * else mark them as pending.
856 1.59 wrstuden */
857 1.59 wrstuden if (!cs->cs_heldchange) {
858 1.59 wrstuden if (zst->zst_tx_busy) {
859 1.59 wrstuden zst->zst_heldtbc = zst->zst_tbc;
860 1.59 wrstuden zst->zst_tbc = 0;
861 1.59 wrstuden cs->cs_heldchange = 1;
862 1.59 wrstuden } else
863 1.59 wrstuden zs_loadchannelregs(cs);
864 1.59 wrstuden }
865 1.59 wrstuden
866 1.59 wrstuden break;
867 1.59 wrstuden
868 1.1 gwr default:
869 1.79 atatat error = EPASSTHROUGH;
870 1.43 mycroft break;
871 1.1 gwr }
872 1.43 mycroft
873 1.115 ad mutex_spin_exit(&cs->cs_lock);
874 1.43 mycroft
875 1.43 mycroft return (error);
876 1.1 gwr }
877 1.1 gwr
878 1.1 gwr /*
879 1.1 gwr * Start or restart transmission.
880 1.1 gwr */
881 1.1 gwr static void
882 1.122 tsutsui zsstart(struct tty *tp)
883 1.1 gwr {
884 1.122 tsutsui struct zstty_softc *zst;
885 1.122 tsutsui struct zs_chanstate *cs;
886 1.102 chs u_char *tba;
887 1.115 ad int tbc;
888 1.1 gwr
889 1.122 tsutsui zst = device_lookup_private(&zstty_cd, ZSUNIT(tp->t_dev));
890 1.122 tsutsui cs = zst->zst_cs;
891 1.122 tsutsui
892 1.35 mycroft if (ISSET(tp->t_state, TS_BUSY | TS_TIMEOUT | TS_TTSTOP))
893 1.116 ad return;
894 1.14 gwr if (zst->zst_tx_stopped)
895 1.116 ad return;
896 1.117 ad if (!ttypull(tp))
897 1.117 ad return;
898 1.1 gwr
899 1.20 mycroft /* Grab the first contiguous region of buffer space. */
900 1.102 chs tba = tp->t_outq.c_cf;
901 1.102 chs tbc = ndqb(&tp->t_outq, 0);
902 1.20 mycroft
903 1.115 ad mutex_spin_enter(&cs->cs_lock);
904 1.97 perry
905 1.102 chs zst->zst_tba = tba;
906 1.102 chs zst->zst_tbc = tbc;
907 1.102 chs SET(tp->t_state, TS_BUSY);
908 1.102 chs zst->zst_tx_busy = 1;
909 1.20 mycroft
910 1.102 chs #ifdef ZS_TXDMA
911 1.102 chs if (zst->zst_tbc > 1) {
912 1.102 chs zs_dma_setup(cs, zst->zst_tba, zst->zst_tbc);
913 1.115 ad mutex_spin_exit(&cs->cs_lock);
914 1.116 ad return;
915 1.20 mycroft }
916 1.102 chs #endif
917 1.1 gwr
918 1.20 mycroft /* Output the first character of the contiguous buffer. */
919 1.102 chs zs_write_data(cs, *zst->zst_tba);
920 1.102 chs zst->zst_tbc--;
921 1.102 chs zst->zst_tba++;
922 1.102 chs
923 1.115 ad mutex_spin_exit(&cs->cs_lock);
924 1.1 gwr }
925 1.1 gwr
926 1.1 gwr /*
927 1.1 gwr * Stop output, e.g., for ^S or output flush.
928 1.1 gwr */
929 1.10 mycroft void
930 1.122 tsutsui zsstop(struct tty *tp, int flag)
931 1.1 gwr {
932 1.122 tsutsui struct zstty_softc *zst;
933 1.1 gwr
934 1.122 tsutsui zst = device_lookup_private(&zstty_cd, ZSUNIT(tp->t_dev));
935 1.122 tsutsui
936 1.127 mrg mutex_spin_enter(&zst->zst_cs->cs_lock);
937 1.35 mycroft if (ISSET(tp->t_state, TS_BUSY)) {
938 1.35 mycroft /* Stop transmitting at the next chunk. */
939 1.1 gwr zst->zst_tbc = 0;
940 1.8 gwr zst->zst_heldtbc = 0;
941 1.35 mycroft if (!ISSET(tp->t_state, TS_TTSTOP))
942 1.35 mycroft SET(tp->t_state, TS_FLUSH);
943 1.1 gwr }
944 1.127 mrg mutex_spin_exit(&zst->zst_cs->cs_lock);
945 1.1 gwr }
946 1.1 gwr
947 1.1 gwr /*
948 1.1 gwr * Set ZS tty parameters from termios.
949 1.1 gwr * XXX - Should just copy the whole termios after
950 1.1 gwr * making sure all the changes could be done.
951 1.1 gwr */
952 1.1 gwr static int
953 1.122 tsutsui zsparam(struct tty *tp, struct termios *t)
954 1.1 gwr {
955 1.122 tsutsui struct zstty_softc *zst;
956 1.122 tsutsui struct zs_chanstate *cs;
957 1.86 thorpej int ospeed;
958 1.86 thorpej tcflag_t cflag;
959 1.122 tsutsui uint8_t tmp3, tmp4, tmp5;
960 1.115 ad int error;
961 1.1 gwr
962 1.122 tsutsui zst = device_lookup_private(&zstty_cd, ZSUNIT(tp->t_dev));
963 1.122 tsutsui cs = zst->zst_cs;
964 1.35 mycroft ospeed = t->c_ospeed;
965 1.14 gwr cflag = t->c_cflag;
966 1.1 gwr
967 1.35 mycroft /* Check requested parameters. */
968 1.35 mycroft if (ospeed < 0)
969 1.35 mycroft return (EINVAL);
970 1.35 mycroft if (t->c_ispeed && t->c_ispeed != ospeed)
971 1.1 gwr return (EINVAL);
972 1.14 gwr
973 1.14 gwr /*
974 1.20 mycroft * For the console, always force CLOCAL and !HUPCL, so that the port
975 1.20 mycroft * is always active.
976 1.20 mycroft */
977 1.35 mycroft if (ISSET(zst->zst_swflags, TIOCFLAG_SOFTCAR) ||
978 1.35 mycroft ISSET(zst->zst_hwflags, ZS_HWFLAG_CONSOLE)) {
979 1.35 mycroft SET(cflag, CLOCAL);
980 1.35 mycroft CLR(cflag, HUPCL);
981 1.20 mycroft }
982 1.20 mycroft
983 1.20 mycroft /*
984 1.14 gwr * Only whack the UART when params change.
985 1.14 gwr * Some callers need to clear tp->t_ospeed
986 1.14 gwr * to make sure initialization gets done.
987 1.14 gwr */
988 1.35 mycroft if (tp->t_ospeed == ospeed &&
989 1.20 mycroft tp->t_cflag == cflag)
990 1.1 gwr return (0);
991 1.1 gwr
992 1.14 gwr /*
993 1.14 gwr * Call MD functions to deal with changed
994 1.14 gwr * clock modes or H/W flow control modes.
995 1.14 gwr * The BRG divisor is set now. (reg 12,13)
996 1.14 gwr */
997 1.35 mycroft error = zs_set_speed(cs, ospeed);
998 1.14 gwr if (error)
999 1.14 gwr return (error);
1000 1.14 gwr error = zs_set_modes(cs, cflag);
1001 1.14 gwr if (error)
1002 1.14 gwr return (error);
1003 1.1 gwr
1004 1.1 gwr /*
1005 1.1 gwr * Block interrupts so that state will not
1006 1.1 gwr * be altered until we are done setting it up.
1007 1.14 gwr *
1008 1.1 gwr * Initial values in cs_preg are set before
1009 1.1 gwr * our attach routine is called. The master
1010 1.1 gwr * interrupt enable is handled by zsc.c
1011 1.14 gwr *
1012 1.1 gwr */
1013 1.115 ad mutex_spin_enter(&cs->cs_lock);
1014 1.29 mycroft
1015 1.59 wrstuden /*
1016 1.59 wrstuden * Recalculate which status ints to enable.
1017 1.59 wrstuden */
1018 1.59 wrstuden zs_maskintr(zst);
1019 1.1 gwr
1020 1.14 gwr /* Recompute character size bits. */
1021 1.35 mycroft tmp3 = cs->cs_preg[3];
1022 1.35 mycroft tmp5 = cs->cs_preg[5];
1023 1.35 mycroft CLR(tmp3, ZSWR3_RXSIZE);
1024 1.35 mycroft CLR(tmp5, ZSWR5_TXSIZE);
1025 1.35 mycroft switch (ISSET(cflag, CSIZE)) {
1026 1.1 gwr case CS5:
1027 1.35 mycroft SET(tmp3, ZSWR3_RX_5);
1028 1.35 mycroft SET(tmp5, ZSWR5_TX_5);
1029 1.1 gwr break;
1030 1.1 gwr case CS6:
1031 1.35 mycroft SET(tmp3, ZSWR3_RX_6);
1032 1.35 mycroft SET(tmp5, ZSWR5_TX_6);
1033 1.1 gwr break;
1034 1.1 gwr case CS7:
1035 1.35 mycroft SET(tmp3, ZSWR3_RX_7);
1036 1.35 mycroft SET(tmp5, ZSWR5_TX_7);
1037 1.1 gwr break;
1038 1.1 gwr case CS8:
1039 1.35 mycroft SET(tmp3, ZSWR3_RX_8);
1040 1.35 mycroft SET(tmp5, ZSWR5_TX_8);
1041 1.1 gwr break;
1042 1.1 gwr }
1043 1.14 gwr cs->cs_preg[3] = tmp3;
1044 1.14 gwr cs->cs_preg[5] = tmp5;
1045 1.14 gwr
1046 1.14 gwr /*
1047 1.14 gwr * Recompute the stop bits and parity bits. Note that
1048 1.14 gwr * zs_set_speed() may have set clock selection bits etc.
1049 1.14 gwr * in wr4, so those must preserved.
1050 1.14 gwr */
1051 1.14 gwr tmp4 = cs->cs_preg[4];
1052 1.35 mycroft CLR(tmp4, ZSWR4_SBMASK | ZSWR4_PARMASK);
1053 1.35 mycroft if (ISSET(cflag, CSTOPB))
1054 1.35 mycroft SET(tmp4, ZSWR4_TWOSB);
1055 1.35 mycroft else
1056 1.35 mycroft SET(tmp4, ZSWR4_ONESB);
1057 1.35 mycroft if (!ISSET(cflag, PARODD))
1058 1.35 mycroft SET(tmp4, ZSWR4_EVENP);
1059 1.35 mycroft if (ISSET(cflag, PARENB))
1060 1.35 mycroft SET(tmp4, ZSWR4_PARENB);
1061 1.1 gwr cs->cs_preg[4] = tmp4;
1062 1.1 gwr
1063 1.35 mycroft /* And copy to tty. */
1064 1.35 mycroft tp->t_ispeed = 0;
1065 1.35 mycroft tp->t_ospeed = ospeed;
1066 1.35 mycroft tp->t_cflag = cflag;
1067 1.8 gwr
1068 1.8 gwr /*
1069 1.1 gwr * If nothing is being transmitted, set up new current values,
1070 1.1 gwr * else mark them as pending.
1071 1.1 gwr */
1072 1.25 mycroft if (!cs->cs_heldchange) {
1073 1.8 gwr if (zst->zst_tx_busy) {
1074 1.1 gwr zst->zst_heldtbc = zst->zst_tbc;
1075 1.1 gwr zst->zst_tbc = 0;
1076 1.25 mycroft cs->cs_heldchange = 1;
1077 1.25 mycroft } else
1078 1.1 gwr zs_loadchannelregs(cs);
1079 1.1 gwr }
1080 1.20 mycroft
1081 1.57 mycroft /*
1082 1.57 mycroft * If hardware flow control is disabled, turn off the buffer water
1083 1.57 mycroft * marks and unblock any soft flow control state. Otherwise, enable
1084 1.57 mycroft * the water marks.
1085 1.57 mycroft */
1086 1.35 mycroft if (!ISSET(cflag, CHWFLOW)) {
1087 1.35 mycroft zst->zst_r_hiwat = 0;
1088 1.35 mycroft zst->zst_r_lowat = 0;
1089 1.35 mycroft if (ISSET(zst->zst_rx_flags, RX_TTY_OVERFLOWED)) {
1090 1.35 mycroft CLR(zst->zst_rx_flags, RX_TTY_OVERFLOWED);
1091 1.35 mycroft zst->zst_rx_ready = 1;
1092 1.35 mycroft cs->cs_softreq = 1;
1093 1.35 mycroft }
1094 1.35 mycroft if (ISSET(zst->zst_rx_flags, RX_TTY_BLOCKED|RX_IBUF_BLOCKED)) {
1095 1.35 mycroft CLR(zst->zst_rx_flags, RX_TTY_BLOCKED|RX_IBUF_BLOCKED);
1096 1.33 mycroft zs_hwiflow(zst);
1097 1.33 mycroft }
1098 1.33 mycroft } else {
1099 1.35 mycroft zst->zst_r_hiwat = zstty_rbuf_hiwat;
1100 1.35 mycroft zst->zst_r_lowat = zstty_rbuf_lowat;
1101 1.33 mycroft }
1102 1.33 mycroft
1103 1.56 wrstuden /*
1104 1.57 mycroft * Force a recheck of the hardware carrier and flow control status,
1105 1.57 mycroft * since we may have changed which bits we're looking at.
1106 1.56 wrstuden */
1107 1.57 mycroft zstty_stint(cs, 1);
1108 1.56 wrstuden
1109 1.115 ad mutex_spin_exit(&cs->cs_lock);
1110 1.15 gwr
1111 1.20 mycroft /*
1112 1.57 mycroft * If hardware flow control is disabled, unblock any hard flow control
1113 1.57 mycroft * state.
1114 1.55 wrstuden */
1115 1.35 mycroft if (!ISSET(cflag, CHWFLOW)) {
1116 1.14 gwr if (zst->zst_tx_stopped) {
1117 1.14 gwr zst->zst_tx_stopped = 0;
1118 1.14 gwr zsstart(tp);
1119 1.14 gwr }
1120 1.14 gwr }
1121 1.14 gwr
1122 1.118 ad zstty_softint1(cs);
1123 1.57 mycroft
1124 1.1 gwr return (0);
1125 1.1 gwr }
1126 1.1 gwr
1127 1.1 gwr /*
1128 1.87 wiz * Compute interrupt enable bits and set in the pending bits. Called both
1129 1.59 wrstuden * in zsparam() and when PPS (pulse per second timing) state changes.
1130 1.59 wrstuden * Must be called at splzs().
1131 1.59 wrstuden */
1132 1.59 wrstuden static void
1133 1.122 tsutsui zs_maskintr(struct zstty_softc *zst)
1134 1.59 wrstuden {
1135 1.59 wrstuden struct zs_chanstate *cs = zst->zst_cs;
1136 1.122 tsutsui uint8_t tmp15;
1137 1.59 wrstuden
1138 1.59 wrstuden cs->cs_rr0_mask = cs->cs_rr0_cts | cs->cs_rr0_dcd;
1139 1.59 wrstuden if (zst->zst_ppsmask != 0)
1140 1.59 wrstuden cs->cs_rr0_mask |= cs->cs_rr0_pps;
1141 1.59 wrstuden tmp15 = cs->cs_preg[15];
1142 1.59 wrstuden if (ISSET(cs->cs_rr0_mask, ZSRR0_DCD))
1143 1.59 wrstuden SET(tmp15, ZSWR15_DCD_IE);
1144 1.59 wrstuden else
1145 1.59 wrstuden CLR(tmp15, ZSWR15_DCD_IE);
1146 1.59 wrstuden if (ISSET(cs->cs_rr0_mask, ZSRR0_CTS))
1147 1.59 wrstuden SET(tmp15, ZSWR15_CTS_IE);
1148 1.59 wrstuden else
1149 1.59 wrstuden CLR(tmp15, ZSWR15_CTS_IE);
1150 1.59 wrstuden cs->cs_preg[15] = tmp15;
1151 1.59 wrstuden }
1152 1.59 wrstuden
1153 1.59 wrstuden
1154 1.59 wrstuden /*
1155 1.1 gwr * Raise or lower modem control (DTR/RTS) signals. If a character is
1156 1.1 gwr * in transmission, the change is deferred.
1157 1.89 pk * Called at splzs() and with the channel lock held.
1158 1.1 gwr */
1159 1.1 gwr static void
1160 1.122 tsutsui zs_modem(struct zstty_softc *zst, int onoff)
1161 1.1 gwr {
1162 1.81 ad struct zs_chanstate *cs = zst->zst_cs, *ccs;
1163 1.1 gwr
1164 1.14 gwr if (cs->cs_wr5_dtr == 0)
1165 1.14 gwr return;
1166 1.1 gwr
1167 1.81 ad ccs = (cs->cs_ctl_chan != NULL ? cs->cs_ctl_chan : cs);
1168 1.81 ad
1169 1.24 mycroft if (onoff)
1170 1.81 ad SET(ccs->cs_preg[5], cs->cs_wr5_dtr);
1171 1.24 mycroft else
1172 1.81 ad CLR(ccs->cs_preg[5], cs->cs_wr5_dtr);
1173 1.14 gwr
1174 1.25 mycroft if (!cs->cs_heldchange) {
1175 1.8 gwr if (zst->zst_tx_busy) {
1176 1.1 gwr zst->zst_heldtbc = zst->zst_tbc;
1177 1.1 gwr zst->zst_tbc = 0;
1178 1.25 mycroft cs->cs_heldchange = 1;
1179 1.25 mycroft } else
1180 1.25 mycroft zs_loadchannelregs(cs);
1181 1.1 gwr }
1182 1.54 christos }
1183 1.54 christos
1184 1.89 pk /*
1185 1.89 pk * Set modem bits.
1186 1.89 pk * Called at splzs() and with the channel lock held.
1187 1.89 pk */
1188 1.54 christos static void
1189 1.122 tsutsui tiocm_to_zs(struct zstty_softc *zst, u_long how, int ttybits)
1190 1.54 christos {
1191 1.81 ad struct zs_chanstate *cs = zst->zst_cs, *ccs;
1192 1.122 tsutsui uint8_t zsbits;
1193 1.54 christos
1194 1.81 ad ccs = (cs->cs_ctl_chan != NULL ? cs->cs_ctl_chan : cs);
1195 1.81 ad
1196 1.57 mycroft zsbits = 0;
1197 1.57 mycroft if (ISSET(ttybits, TIOCM_DTR))
1198 1.57 mycroft SET(zsbits, ZSWR5_DTR);
1199 1.57 mycroft if (ISSET(ttybits, TIOCM_RTS))
1200 1.57 mycroft SET(zsbits, ZSWR5_RTS);
1201 1.54 christos
1202 1.54 christos switch (how) {
1203 1.54 christos case TIOCMBIC:
1204 1.81 ad CLR(ccs->cs_preg[5], zsbits);
1205 1.54 christos break;
1206 1.54 christos
1207 1.54 christos case TIOCMBIS:
1208 1.81 ad SET(ccs->cs_preg[5], zsbits);
1209 1.54 christos break;
1210 1.54 christos
1211 1.54 christos case TIOCMSET:
1212 1.81 ad CLR(ccs->cs_preg[5], ZSWR5_RTS | ZSWR5_DTR);
1213 1.81 ad SET(ccs->cs_preg[5], zsbits);
1214 1.54 christos break;
1215 1.54 christos }
1216 1.54 christos
1217 1.54 christos if (!cs->cs_heldchange) {
1218 1.54 christos if (zst->zst_tx_busy) {
1219 1.54 christos zst->zst_heldtbc = zst->zst_tbc;
1220 1.54 christos zst->zst_tbc = 0;
1221 1.54 christos cs->cs_heldchange = 1;
1222 1.57 mycroft } else
1223 1.57 mycroft zs_loadchannelregs(cs);
1224 1.54 christos }
1225 1.54 christos }
1226 1.54 christos
1227 1.89 pk /*
1228 1.89 pk * Get modem bits.
1229 1.89 pk * Called at splzs() and with the channel lock held.
1230 1.89 pk */
1231 1.54 christos static int
1232 1.122 tsutsui zs_to_tiocm(struct zstty_softc *zst)
1233 1.54 christos {
1234 1.81 ad struct zs_chanstate *cs = zst->zst_cs, *ccs;
1235 1.122 tsutsui uint8_t zsbits;
1236 1.57 mycroft int ttybits = 0;
1237 1.54 christos
1238 1.81 ad ccs = (cs->cs_ctl_chan != NULL ? cs->cs_ctl_chan : cs);
1239 1.81 ad
1240 1.81 ad zsbits = ccs->cs_preg[5];
1241 1.57 mycroft if (ISSET(zsbits, ZSWR5_DTR))
1242 1.57 mycroft SET(ttybits, TIOCM_DTR);
1243 1.57 mycroft if (ISSET(zsbits, ZSWR5_RTS))
1244 1.57 mycroft SET(ttybits, TIOCM_RTS);
1245 1.57 mycroft
1246 1.57 mycroft zsbits = cs->cs_rr0;
1247 1.57 mycroft if (ISSET(zsbits, ZSRR0_DCD))
1248 1.57 mycroft SET(ttybits, TIOCM_CD);
1249 1.57 mycroft if (ISSET(zsbits, ZSRR0_CTS))
1250 1.57 mycroft SET(ttybits, TIOCM_CTS);
1251 1.54 christos
1252 1.57 mycroft return (ttybits);
1253 1.1 gwr }
1254 1.1 gwr
1255 1.8 gwr /*
1256 1.8 gwr * Try to block or unblock input using hardware flow-control.
1257 1.8 gwr * This is called by kern/tty.c if MDMBUF|CRTSCTS is set, and
1258 1.8 gwr * if this function returns non-zero, the TS_TBLOCK flag will
1259 1.24 mycroft * be set or cleared according to the "block" arg passed.
1260 1.8 gwr */
1261 1.8 gwr int
1262 1.122 tsutsui zshwiflow(struct tty *tp, int block)
1263 1.8 gwr {
1264 1.122 tsutsui struct zstty_softc *zst;
1265 1.122 tsutsui struct zs_chanstate *cs;
1266 1.122 tsutsui
1267 1.122 tsutsui zst = device_lookup_private(&zstty_cd, ZSUNIT(tp->t_dev));
1268 1.122 tsutsui cs = zst->zst_cs;
1269 1.8 gwr
1270 1.14 gwr if (cs->cs_wr5_rts == 0)
1271 1.14 gwr return (0);
1272 1.8 gwr
1273 1.115 ad mutex_spin_enter(&cs->cs_lock);
1274 1.24 mycroft if (block) {
1275 1.35 mycroft if (!ISSET(zst->zst_rx_flags, RX_TTY_BLOCKED)) {
1276 1.35 mycroft SET(zst->zst_rx_flags, RX_TTY_BLOCKED);
1277 1.24 mycroft zs_hwiflow(zst);
1278 1.24 mycroft }
1279 1.8 gwr } else {
1280 1.35 mycroft if (ISSET(zst->zst_rx_flags, RX_TTY_OVERFLOWED)) {
1281 1.35 mycroft CLR(zst->zst_rx_flags, RX_TTY_OVERFLOWED);
1282 1.35 mycroft zst->zst_rx_ready = 1;
1283 1.35 mycroft cs->cs_softreq = 1;
1284 1.35 mycroft }
1285 1.35 mycroft if (ISSET(zst->zst_rx_flags, RX_TTY_BLOCKED)) {
1286 1.35 mycroft CLR(zst->zst_rx_flags, RX_TTY_BLOCKED);
1287 1.24 mycroft zs_hwiflow(zst);
1288 1.24 mycroft }
1289 1.8 gwr }
1290 1.115 ad mutex_spin_exit(&cs->cs_lock);
1291 1.35 mycroft return (1);
1292 1.8 gwr }
1293 1.8 gwr
1294 1.8 gwr /*
1295 1.8 gwr * Internal version of zshwiflow
1296 1.89 pk * Called at splzs() and with the channel lock held.
1297 1.8 gwr */
1298 1.8 gwr static void
1299 1.122 tsutsui zs_hwiflow(struct zstty_softc *zst)
1300 1.8 gwr {
1301 1.81 ad struct zs_chanstate *cs = zst->zst_cs, *ccs;
1302 1.8 gwr
1303 1.14 gwr if (cs->cs_wr5_rts == 0)
1304 1.14 gwr return;
1305 1.8 gwr
1306 1.81 ad ccs = (cs->cs_ctl_chan != NULL ? cs->cs_ctl_chan : cs);
1307 1.81 ad
1308 1.35 mycroft if (ISSET(zst->zst_rx_flags, RX_ANY_BLOCK)) {
1309 1.81 ad CLR(ccs->cs_preg[5], cs->cs_wr5_rts);
1310 1.81 ad CLR(ccs->cs_creg[5], cs->cs_wr5_rts);
1311 1.8 gwr } else {
1312 1.81 ad SET(ccs->cs_preg[5], cs->cs_wr5_rts);
1313 1.81 ad SET(ccs->cs_creg[5], cs->cs_wr5_rts);
1314 1.8 gwr }
1315 1.81 ad zs_write_reg(ccs, 5, ccs->cs_creg[5]);
1316 1.8 gwr }
1317 1.8 gwr
1318 1.1 gwr
1319 1.1 gwr /****************************************************************
1320 1.1 gwr * Interface to the lower layer (zscc)
1321 1.1 gwr ****************************************************************/
1322 1.3 gwr
1323 1.35 mycroft #define integrate static inline
1324 1.96 perry integrate void zstty_rxsoft(struct zstty_softc *, struct tty *);
1325 1.96 perry integrate void zstty_txsoft(struct zstty_softc *, struct tty *);
1326 1.96 perry integrate void zstty_stsoft(struct zstty_softc *, struct tty *);
1327 1.96 perry static void zstty_diag(void *);
1328 1.1 gwr
1329 1.6 gwr /*
1330 1.89 pk * Receiver Ready interrupt.
1331 1.89 pk * Called at splzs() and with the channel lock held.
1332 1.6 gwr */
1333 1.6 gwr static void
1334 1.122 tsutsui zstty_rxint(struct zs_chanstate *cs)
1335 1.1 gwr {
1336 1.35 mycroft struct zstty_softc *zst = cs->cs_private;
1337 1.122 tsutsui uint8_t *put, *end;
1338 1.35 mycroft u_int cc;
1339 1.122 tsutsui uint8_t rr0, rr1, c;
1340 1.1 gwr
1341 1.35 mycroft end = zst->zst_ebuf;
1342 1.1 gwr put = zst->zst_rbput;
1343 1.35 mycroft cc = zst->zst_rbavail;
1344 1.1 gwr
1345 1.35 mycroft while (cc > 0) {
1346 1.35 mycroft /*
1347 1.35 mycroft * First read the status, because reading the received char
1348 1.35 mycroft * destroys the status of this char.
1349 1.35 mycroft */
1350 1.35 mycroft rr1 = zs_read_reg(cs, 1);
1351 1.35 mycroft c = zs_read_data(cs);
1352 1.35 mycroft
1353 1.35 mycroft if (ISSET(rr1, ZSRR1_FE | ZSRR1_DO | ZSRR1_PE)) {
1354 1.35 mycroft /* Clear the receive error. */
1355 1.35 mycroft zs_write_csr(cs, ZSWR0_RESET_ERRORS);
1356 1.35 mycroft }
1357 1.35 mycroft
1358 1.72 eeh cn_check_magic(zst->zst_tty->t_dev, c, zstty_cnm_state);
1359 1.35 mycroft put[0] = c;
1360 1.35 mycroft put[1] = rr1;
1361 1.35 mycroft put += 2;
1362 1.35 mycroft if (put >= end)
1363 1.35 mycroft put = zst->zst_rbuf;
1364 1.35 mycroft cc--;
1365 1.35 mycroft
1366 1.35 mycroft rr0 = zs_read_csr(cs);
1367 1.35 mycroft if (!ISSET(rr0, ZSRR0_RX_READY))
1368 1.35 mycroft break;
1369 1.35 mycroft }
1370 1.1 gwr
1371 1.5 gwr /*
1372 1.35 mycroft * Current string of incoming characters ended because
1373 1.35 mycroft * no more data was available or we ran out of space.
1374 1.35 mycroft * Schedule a receive event if any data was received.
1375 1.35 mycroft * If we're out of space, turn off receive interrupts.
1376 1.5 gwr */
1377 1.35 mycroft zst->zst_rbput = put;
1378 1.35 mycroft zst->zst_rbavail = cc;
1379 1.35 mycroft if (!ISSET(zst->zst_rx_flags, RX_TTY_OVERFLOWED)) {
1380 1.35 mycroft zst->zst_rx_ready = 1;
1381 1.35 mycroft cs->cs_softreq = 1;
1382 1.1 gwr }
1383 1.1 gwr
1384 1.35 mycroft /*
1385 1.35 mycroft * See if we are in danger of overflowing a buffer. If
1386 1.35 mycroft * so, use hardware flow control to ease the pressure.
1387 1.35 mycroft */
1388 1.35 mycroft if (!ISSET(zst->zst_rx_flags, RX_IBUF_BLOCKED) &&
1389 1.35 mycroft cc < zst->zst_r_hiwat) {
1390 1.35 mycroft SET(zst->zst_rx_flags, RX_IBUF_BLOCKED);
1391 1.35 mycroft zs_hwiflow(zst);
1392 1.1 gwr }
1393 1.1 gwr
1394 1.8 gwr /*
1395 1.35 mycroft * If we're out of space, disable receive interrupts
1396 1.35 mycroft * until the queue has drained a bit.
1397 1.8 gwr */
1398 1.35 mycroft if (!cc) {
1399 1.35 mycroft SET(zst->zst_rx_flags, RX_IBUF_OVERFLOWED);
1400 1.35 mycroft CLR(cs->cs_preg[1], ZSWR1_RIE);
1401 1.35 mycroft cs->cs_creg[1] = cs->cs_preg[1];
1402 1.35 mycroft zs_write_reg(cs, 1, cs->cs_creg[1]);
1403 1.8 gwr }
1404 1.8 gwr
1405 1.35 mycroft #if 0
1406 1.35 mycroft printf("%xH%04d\n", zst->zst_rx_flags, zst->zst_rbavail);
1407 1.35 mycroft #endif
1408 1.1 gwr }
1409 1.1 gwr
1410 1.6 gwr /*
1411 1.89 pk * Transmitter Ready interrupt.
1412 1.89 pk * Called at splzs() and with the channel lock held.
1413 1.6 gwr */
1414 1.6 gwr static void
1415 1.122 tsutsui zstty_txint(struct zs_chanstate *cs)
1416 1.1 gwr {
1417 1.35 mycroft struct zstty_softc *zst = cs->cs_private;
1418 1.8 gwr
1419 1.124 tsutsui zs_write_csr(cs, ZSWR0_RESET_TXINT);
1420 1.124 tsutsui
1421 1.8 gwr /*
1422 1.35 mycroft * If we've delayed a parameter change, do it now, and restart
1423 1.35 mycroft * output.
1424 1.8 gwr */
1425 1.8 gwr if (cs->cs_heldchange) {
1426 1.25 mycroft zs_loadchannelregs(cs);
1427 1.8 gwr cs->cs_heldchange = 0;
1428 1.35 mycroft zst->zst_tbc = zst->zst_heldtbc;
1429 1.35 mycroft zst->zst_heldtbc = 0;
1430 1.35 mycroft }
1431 1.1 gwr
1432 1.35 mycroft /* Output the next character in the buffer, if any. */
1433 1.48 mycroft if (zst->zst_tbc > 0) {
1434 1.2 gwr zs_write_data(cs, *zst->zst_tba);
1435 1.35 mycroft zst->zst_tbc--;
1436 1.2 gwr zst->zst_tba++;
1437 1.35 mycroft } else {
1438 1.35 mycroft if (zst->zst_tx_busy) {
1439 1.35 mycroft zst->zst_tx_busy = 0;
1440 1.35 mycroft zst->zst_tx_done = 1;
1441 1.35 mycroft cs->cs_softreq = 1;
1442 1.35 mycroft }
1443 1.1 gwr }
1444 1.1 gwr }
1445 1.1 gwr
1446 1.6 gwr /*
1447 1.89 pk * Status Change interrupt.
1448 1.89 pk * Called at splzs() and with the channel lock held.
1449 1.6 gwr */
1450 1.6 gwr static void
1451 1.122 tsutsui zstty_stint(struct zs_chanstate *cs, int force)
1452 1.1 gwr {
1453 1.35 mycroft struct zstty_softc *zst = cs->cs_private;
1454 1.122 tsutsui uint8_t rr0, delta;
1455 1.1 gwr
1456 1.2 gwr rr0 = zs_read_csr(cs);
1457 1.2 gwr zs_write_csr(cs, ZSWR0_RESET_STATUS);
1458 1.1 gwr
1459 1.6 gwr /*
1460 1.6 gwr * Check here for console break, so that we can abort
1461 1.6 gwr * even when interrupts are locking up the machine.
1462 1.6 gwr */
1463 1.72 eeh if (ISSET(rr0, ZSRR0_BREAK))
1464 1.72 eeh cn_check_magic(zst->zst_tty->t_dev, CNC_BREAK, zstty_cnm_state);
1465 1.1 gwr
1466 1.57 mycroft if (!force)
1467 1.57 mycroft delta = rr0 ^ cs->cs_rr0;
1468 1.57 mycroft else
1469 1.57 mycroft delta = cs->cs_rr0_mask;
1470 1.14 gwr cs->cs_rr0 = rr0;
1471 1.57 mycroft
1472 1.35 mycroft if (ISSET(delta, cs->cs_rr0_mask)) {
1473 1.35 mycroft SET(cs->cs_rr0_delta, delta);
1474 1.59 wrstuden
1475 1.59 wrstuden /*
1476 1.59 wrstuden * Pulse-per-second clock signal on edge of DCD?
1477 1.59 wrstuden */
1478 1.59 wrstuden if (ISSET(delta, zst->zst_ppsmask)) {
1479 1.122 tsutsui if (zst->zst_pps_state.ppsparam.mode &
1480 1.122 tsutsui PPS_CAPTUREBOTH) {
1481 1.123 ad mutex_spin_enter(&timecounter_lock);
1482 1.108 kardel pps_capture(&zst->zst_pps_state);
1483 1.108 kardel pps_event(&zst->zst_pps_state,
1484 1.108 kardel (ISSET(cs->cs_rr0, zst->zst_ppsmask))
1485 1.108 kardel ? PPS_CAPTUREASSERT
1486 1.108 kardel : PPS_CAPTURECLEAR);
1487 1.123 ad mutex_spin_exit(&timecounter_lock);
1488 1.108 kardel }
1489 1.59 wrstuden }
1490 1.14 gwr
1491 1.22 mycroft /*
1492 1.22 mycroft * Stop output immediately if we lose the output
1493 1.22 mycroft * flow control signal or carrier detect.
1494 1.22 mycroft */
1495 1.35 mycroft if (ISSET(~rr0, cs->cs_rr0_mask)) {
1496 1.22 mycroft zst->zst_tbc = 0;
1497 1.22 mycroft zst->zst_heldtbc = 0;
1498 1.22 mycroft }
1499 1.22 mycroft
1500 1.22 mycroft zst->zst_st_check = 1;
1501 1.35 mycroft cs->cs_softreq = 1;
1502 1.35 mycroft }
1503 1.35 mycroft }
1504 1.35 mycroft
1505 1.35 mycroft void
1506 1.122 tsutsui zstty_diag(void *arg)
1507 1.35 mycroft {
1508 1.35 mycroft struct zstty_softc *zst = arg;
1509 1.35 mycroft int overflows, floods;
1510 1.35 mycroft
1511 1.127 mrg mutex_spin_enter(&zst->zst_cs->cs_lock);
1512 1.35 mycroft overflows = zst->zst_overflows;
1513 1.35 mycroft zst->zst_overflows = 0;
1514 1.35 mycroft floods = zst->zst_floods;
1515 1.35 mycroft zst->zst_floods = 0;
1516 1.35 mycroft zst->zst_errors = 0;
1517 1.127 mrg mutex_spin_exit(&zst->zst_cs->cs_lock);
1518 1.35 mycroft
1519 1.35 mycroft log(LOG_WARNING, "%s: %d silo overflow%s, %d ibuf flood%s\n",
1520 1.122 tsutsui device_xname(zst->zst_dev),
1521 1.35 mycroft overflows, overflows == 1 ? "" : "s",
1522 1.35 mycroft floods, floods == 1 ? "" : "s");
1523 1.35 mycroft }
1524 1.35 mycroft
1525 1.35 mycroft integrate void
1526 1.122 tsutsui zstty_rxsoft(struct zstty_softc *zst, struct tty *tp)
1527 1.35 mycroft {
1528 1.35 mycroft struct zs_chanstate *cs = zst->zst_cs;
1529 1.98 christos int (*rint)(int, struct tty *) = tp->t_linesw->l_rint;
1530 1.122 tsutsui uint8_t *get, *end;
1531 1.35 mycroft u_int cc, scc;
1532 1.122 tsutsui uint8_t rr1;
1533 1.35 mycroft int code;
1534 1.35 mycroft
1535 1.35 mycroft end = zst->zst_ebuf;
1536 1.35 mycroft get = zst->zst_rbget;
1537 1.35 mycroft scc = cc = zstty_rbuf_size - zst->zst_rbavail;
1538 1.35 mycroft
1539 1.35 mycroft if (cc == zstty_rbuf_size) {
1540 1.35 mycroft zst->zst_floods++;
1541 1.35 mycroft if (zst->zst_errors++ == 0)
1542 1.66 hannken callout_reset(&zst->zst_diag_ch, 60 * hz,
1543 1.65 thorpej zstty_diag, zst);
1544 1.35 mycroft }
1545 1.35 mycroft
1546 1.60 pk /* If not yet open, drop the entire buffer content here */
1547 1.60 pk if (!ISSET(tp->t_state, TS_ISOPEN)) {
1548 1.60 pk get += cc << 1;
1549 1.60 pk if (get >= end)
1550 1.60 pk get -= zstty_rbuf_size << 1;
1551 1.60 pk cc = 0;
1552 1.60 pk }
1553 1.35 mycroft while (cc) {
1554 1.37 mycroft code = get[0];
1555 1.35 mycroft rr1 = get[1];
1556 1.37 mycroft if (ISSET(rr1, ZSRR1_DO | ZSRR1_FE | ZSRR1_PE)) {
1557 1.37 mycroft if (ISSET(rr1, ZSRR1_DO)) {
1558 1.37 mycroft zst->zst_overflows++;
1559 1.37 mycroft if (zst->zst_errors++ == 0)
1560 1.66 hannken callout_reset(&zst->zst_diag_ch,
1561 1.65 thorpej 60 * hz, zstty_diag, zst);
1562 1.37 mycroft }
1563 1.35 mycroft if (ISSET(rr1, ZSRR1_FE))
1564 1.35 mycroft SET(code, TTY_FE);
1565 1.35 mycroft if (ISSET(rr1, ZSRR1_PE))
1566 1.35 mycroft SET(code, TTY_PE);
1567 1.35 mycroft }
1568 1.35 mycroft if ((*rint)(code, tp) == -1) {
1569 1.35 mycroft /*
1570 1.35 mycroft * The line discipline's buffer is out of space.
1571 1.35 mycroft */
1572 1.35 mycroft if (!ISSET(zst->zst_rx_flags, RX_TTY_BLOCKED)) {
1573 1.35 mycroft /*
1574 1.35 mycroft * We're either not using flow control, or the
1575 1.35 mycroft * line discipline didn't tell us to block for
1576 1.35 mycroft * some reason. Either way, we have no way to
1577 1.35 mycroft * know when there's more space available, so
1578 1.35 mycroft * just drop the rest of the data.
1579 1.35 mycroft */
1580 1.35 mycroft get += cc << 1;
1581 1.35 mycroft if (get >= end)
1582 1.35 mycroft get -= zstty_rbuf_size << 1;
1583 1.35 mycroft cc = 0;
1584 1.35 mycroft } else {
1585 1.35 mycroft /*
1586 1.35 mycroft * Don't schedule any more receive processing
1587 1.35 mycroft * until the line discipline tells us there's
1588 1.35 mycroft * space available (through comhwiflow()).
1589 1.35 mycroft * Leave the rest of the data in the input
1590 1.35 mycroft * buffer.
1591 1.35 mycroft */
1592 1.35 mycroft SET(zst->zst_rx_flags, RX_TTY_OVERFLOWED);
1593 1.35 mycroft }
1594 1.35 mycroft break;
1595 1.35 mycroft }
1596 1.35 mycroft get += 2;
1597 1.35 mycroft if (get >= end)
1598 1.35 mycroft get = zst->zst_rbuf;
1599 1.35 mycroft cc--;
1600 1.8 gwr }
1601 1.6 gwr
1602 1.35 mycroft if (cc != scc) {
1603 1.35 mycroft zst->zst_rbget = get;
1604 1.115 ad mutex_spin_enter(&cs->cs_lock);
1605 1.35 mycroft cc = zst->zst_rbavail += scc - cc;
1606 1.35 mycroft /* Buffers should be ok again, release possible block. */
1607 1.35 mycroft if (cc >= zst->zst_r_lowat) {
1608 1.35 mycroft if (ISSET(zst->zst_rx_flags, RX_IBUF_OVERFLOWED)) {
1609 1.35 mycroft CLR(zst->zst_rx_flags, RX_IBUF_OVERFLOWED);
1610 1.35 mycroft SET(cs->cs_preg[1], ZSWR1_RIE);
1611 1.35 mycroft cs->cs_creg[1] = cs->cs_preg[1];
1612 1.35 mycroft zs_write_reg(cs, 1, cs->cs_creg[1]);
1613 1.35 mycroft }
1614 1.35 mycroft if (ISSET(zst->zst_rx_flags, RX_IBUF_BLOCKED)) {
1615 1.35 mycroft CLR(zst->zst_rx_flags, RX_IBUF_BLOCKED);
1616 1.35 mycroft zs_hwiflow(zst);
1617 1.35 mycroft }
1618 1.35 mycroft }
1619 1.115 ad mutex_spin_exit(&cs->cs_lock);
1620 1.35 mycroft }
1621 1.35 mycroft
1622 1.35 mycroft #if 0
1623 1.35 mycroft printf("%xS%04d\n", zst->zst_rx_flags, zst->zst_rbavail);
1624 1.35 mycroft #endif
1625 1.1 gwr }
1626 1.1 gwr
1627 1.35 mycroft integrate void
1628 1.122 tsutsui zstty_txsoft(struct zstty_softc *zst, struct tty *tp)
1629 1.35 mycroft {
1630 1.89 pk struct zs_chanstate *cs = zst->zst_cs;
1631 1.35 mycroft
1632 1.115 ad mutex_spin_enter(&cs->cs_lock);
1633 1.35 mycroft CLR(tp->t_state, TS_BUSY);
1634 1.35 mycroft if (ISSET(tp->t_state, TS_FLUSH))
1635 1.35 mycroft CLR(tp->t_state, TS_FLUSH);
1636 1.35 mycroft else
1637 1.35 mycroft ndflush(&tp->t_outq, (int)(zst->zst_tba - tp->t_outq.c_cf));
1638 1.115 ad mutex_spin_exit(&cs->cs_lock);
1639 1.70 eeh (*tp->t_linesw->l_start)(tp);
1640 1.35 mycroft }
1641 1.35 mycroft
1642 1.35 mycroft integrate void
1643 1.122 tsutsui zstty_stsoft(struct zstty_softc *zst, struct tty *tp)
1644 1.1 gwr {
1645 1.35 mycroft struct zs_chanstate *cs = zst->zst_cs;
1646 1.122 tsutsui uint8_t rr0, delta;
1647 1.35 mycroft
1648 1.115 ad mutex_spin_enter(&cs->cs_lock);
1649 1.35 mycroft rr0 = cs->cs_rr0;
1650 1.35 mycroft delta = cs->cs_rr0_delta;
1651 1.35 mycroft cs->cs_rr0_delta = 0;
1652 1.115 ad mutex_spin_exit(&cs->cs_lock);
1653 1.35 mycroft
1654 1.35 mycroft if (ISSET(delta, cs->cs_rr0_dcd)) {
1655 1.35 mycroft /*
1656 1.35 mycroft * Inform the tty layer that carrier detect changed.
1657 1.35 mycroft */
1658 1.119 ad mutex_spin_exit(&tty_lock);
1659 1.70 eeh (void) (*tp->t_linesw->l_modem)(tp, ISSET(rr0, ZSRR0_DCD));
1660 1.119 ad mutex_spin_enter(&tty_lock);
1661 1.35 mycroft }
1662 1.1 gwr
1663 1.35 mycroft if (ISSET(delta, cs->cs_rr0_cts)) {
1664 1.35 mycroft /* Block or unblock output according to flow control. */
1665 1.35 mycroft if (ISSET(rr0, cs->cs_rr0_cts)) {
1666 1.35 mycroft zst->zst_tx_stopped = 0;
1667 1.70 eeh (*tp->t_linesw->l_start)(tp);
1668 1.35 mycroft } else {
1669 1.35 mycroft zst->zst_tx_stopped = 1;
1670 1.35 mycroft }
1671 1.1 gwr }
1672 1.1 gwr }
1673 1.1 gwr
1674 1.6 gwr /*
1675 1.6 gwr * Software interrupt. Called at zssoft
1676 1.8 gwr *
1677 1.8 gwr * The main job to be done here is to empty the input ring
1678 1.8 gwr * by passing its contents up to the tty layer. The ring is
1679 1.8 gwr * always emptied during this operation, therefore the ring
1680 1.8 gwr * must not be larger than the space after "high water" in
1681 1.8 gwr * the tty layer, or the tty layer might drop our input.
1682 1.8 gwr *
1683 1.8 gwr * Note: an "input blockage" condition is assumed to exist if
1684 1.8 gwr * EITHER the TS_TBLOCK flag or zst_rx_blocked flag is set.
1685 1.6 gwr */
1686 1.6 gwr static void
1687 1.122 tsutsui zstty_softint(struct zs_chanstate *cs)
1688 1.1 gwr {
1689 1.118 ad
1690 1.118 ad zstty_softint1(cs);
1691 1.118 ad }
1692 1.118 ad
1693 1.118 ad static void
1694 1.122 tsutsui zstty_softint1(struct zs_chanstate *cs)
1695 1.118 ad {
1696 1.35 mycroft struct zstty_softc *zst = cs->cs_private;
1697 1.35 mycroft struct tty *tp = zst->zst_tty;
1698 1.1 gwr
1699 1.1 gwr
1700 1.35 mycroft if (zst->zst_rx_ready) {
1701 1.35 mycroft zst->zst_rx_ready = 0;
1702 1.35 mycroft zstty_rxsoft(zst, tp);
1703 1.1 gwr }
1704 1.1 gwr
1705 1.8 gwr if (zst->zst_st_check) {
1706 1.8 gwr zst->zst_st_check = 0;
1707 1.35 mycroft zstty_stsoft(zst, tp);
1708 1.8 gwr }
1709 1.8 gwr
1710 1.8 gwr if (zst->zst_tx_done) {
1711 1.8 gwr zst->zst_tx_done = 0;
1712 1.35 mycroft zstty_txsoft(zst, tp);
1713 1.1 gwr }
1714 1.1 gwr }
1715 1.1 gwr
1716 1.1 gwr struct zsops zsops_tty = {
1717 1.1 gwr zstty_rxint, /* receive char available */
1718 1.1 gwr zstty_stint, /* external/status */
1719 1.1 gwr zstty_txint, /* xmit buffer empty */
1720 1.1 gwr zstty_softint, /* process software interrupt */
1721 1.1 gwr };
1722 1.102 chs
1723 1.102 chs #ifdef ZS_TXDMA
1724 1.102 chs void
1725 1.122 tsutsui zstty_txdma_int(void *arg)
1726 1.102 chs {
1727 1.102 chs struct zs_chanstate *cs = arg;
1728 1.102 chs struct zstty_softc *zst = cs->cs_private;
1729 1.102 chs
1730 1.102 chs zst->zst_tba += zst->zst_tbc;
1731 1.102 chs zst->zst_tbc = 0;
1732 1.102 chs
1733 1.102 chs if (zst->zst_tx_busy) {
1734 1.102 chs zst->zst_tx_busy = 0;
1735 1.102 chs zst->zst_tx_done = 1;
1736 1.102 chs cs->cs_softreq = 1;
1737 1.102 chs }
1738 1.102 chs }
1739 1.102 chs #endif
1740