ser.c revision 1.15 1 1.1 mw /*
2 1.1 mw * Copyright (c) 1982, 1986, 1990 The Regents of the University of California.
3 1.1 mw * All rights reserved.
4 1.1 mw *
5 1.1 mw * Redistribution and use in source and binary forms, with or without
6 1.1 mw * modification, are permitted provided that the following conditions
7 1.1 mw * are met:
8 1.1 mw * 1. Redistributions of source code must retain the above copyright
9 1.1 mw * notice, this list of conditions and the following disclaimer.
10 1.1 mw * 2. Redistributions in binary form must reproduce the above copyright
11 1.1 mw * notice, this list of conditions and the following disclaimer in the
12 1.1 mw * documentation and/or other materials provided with the distribution.
13 1.1 mw * 3. All advertising materials mentioning features or use of this software
14 1.1 mw * must display the following acknowledgement:
15 1.1 mw * This product includes software developed by the University of
16 1.1 mw * California, Berkeley and its contributors.
17 1.1 mw * 4. Neither the name of the University nor the names of its contributors
18 1.1 mw * may be used to endorse or promote products derived from this software
19 1.1 mw * without specific prior written permission.
20 1.1 mw *
21 1.1 mw * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
22 1.1 mw * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23 1.1 mw * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24 1.1 mw * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
25 1.1 mw * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
26 1.1 mw * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
27 1.1 mw * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
28 1.1 mw * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
29 1.1 mw * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30 1.1 mw * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31 1.1 mw * SUCH DAMAGE.
32 1.1 mw *
33 1.4 mw * @(#)ser.c 7.12 (Berkeley) 6/27/91
34 1.15 chopps * $Id: ser.c,v 1.15 1994/05/08 05:53:45 chopps Exp $
35 1.15 chopps */
36 1.15 chopps /*
37 1.15 chopps * XXX This file needs major cleanup it will never ervice more than one
38 1.15 chopps * XXX unit.
39 1.1 mw */
40 1.1 mw
41 1.10 chopps #include <sys/param.h>
42 1.10 chopps #include <sys/systm.h>
43 1.10 chopps #include <sys/ioctl.h>
44 1.15 chopps #include <sys/device.h>
45 1.10 chopps #include <sys/tty.h>
46 1.10 chopps #include <sys/proc.h>
47 1.10 chopps #include <sys/conf.h>
48 1.10 chopps #include <sys/file.h>
49 1.10 chopps #include <sys/malloc.h>
50 1.10 chopps #include <sys/uio.h>
51 1.10 chopps #include <sys/kernel.h>
52 1.10 chopps #include <sys/syslog.h>
53 1.13 chopps #include <sys/queue.h>
54 1.15 chopps #include <machine/cpu.h>
55 1.15 chopps #include <amiga/amiga/device.h>
56 1.10 chopps #include <amiga/dev/serreg.h>
57 1.10 chopps #include <amiga/amiga/custom.h>
58 1.10 chopps #include <amiga/amiga/cia.h>
59 1.10 chopps #include <amiga/amiga/cc.h>
60 1.1 mw
61 1.14 chopps #include <dev/cons.h>
62 1.14 chopps
63 1.15 chopps #include "ser.h"
64 1.15 chopps #if NSER > 0
65 1.14 chopps
66 1.15 chopps void serattach __P((struct device *, struct device *, void *));
67 1.15 chopps int sermatch __P((struct device *, struct cfdata *, void *));
68 1.15 chopps
69 1.15 chopps struct cfdriver sercd = {
70 1.15 chopps NULL, "ser", sermatch, serattach, DV_TTY,
71 1.15 chopps sizeof(struct device), NULL, 0 };
72 1.15 chopps
73 1.15 chopps #define SEROBUF_SIZE 32
74 1.15 chopps #define SERIBUF_SIZE 512
75 1.1 mw
76 1.1 mw int serstart(), serparam(), serintr();
77 1.1 mw int ser_active;
78 1.1 mw int ser_hasfifo;
79 1.1 mw int nser = NSER;
80 1.1 mw #ifdef SERCONSOLE
81 1.1 mw int serconsole = SERCONSOLE;
82 1.1 mw #else
83 1.1 mw int serconsole = -1;
84 1.1 mw #endif
85 1.1 mw int serconsinit;
86 1.1 mw int serdefaultrate = TTYDEF_SPEED;
87 1.1 mw int sermajor;
88 1.14 chopps int serswflags;
89 1.14 chopps #define SWFLAGS(dev) (serswflags | (DIALOUT(dev) ? TIOCFLAG_SOFTCAR : 0))
90 1.14 chopps
91 1.5 mw struct vbl_node ser_vbl_node[NSER];
92 1.1 mw struct tty ser_cons;
93 1.3 mw struct tty *ser_tty[NSER];
94 1.1 mw
95 1.1 mw struct speedtab serspeedtab[] = {
96 1.1 mw 0, 0,
97 1.1 mw 50, SERBRD(50),
98 1.1 mw 75, SERBRD(75),
99 1.1 mw 110, SERBRD(110),
100 1.1 mw 134, SERBRD(134),
101 1.1 mw 150, SERBRD(150),
102 1.1 mw 200, SERBRD(200),
103 1.1 mw 300, SERBRD(300),
104 1.1 mw 600, SERBRD(600),
105 1.1 mw 1200, SERBRD(1200),
106 1.1 mw 1800, SERBRD(1800),
107 1.1 mw 2400, SERBRD(2400),
108 1.1 mw 4800, SERBRD(4800),
109 1.1 mw 9600, SERBRD(9600),
110 1.1 mw 19200, SERBRD(19200),
111 1.1 mw 38400, SERBRD(38400),
112 1.12 chopps 57600, SERBRD(57600),
113 1.12 chopps 76800, SERBRD(76800),
114 1.1 mw -1, -1
115 1.1 mw };
116 1.1 mw
117 1.1 mw
118 1.14 chopps /*
119 1.14 chopps * Since this UART is not particularly bright (to put it nicely), we'll
120 1.14 chopps * have to do parity stuff on our own. This table contains the 8th bit
121 1.14 chopps * in 7bit character mode, for even parity. If you want odd parity,
122 1.14 chopps * flip the bit. (for generation of the table, see genpar.c)
123 1.14 chopps */
124 1.14 chopps
125 1.14 chopps u_char even_parity[] = {
126 1.14 chopps 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0,
127 1.14 chopps 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1,
128 1.14 chopps 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1,
129 1.14 chopps 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0,
130 1.14 chopps 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1,
131 1.14 chopps 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0,
132 1.14 chopps 0, 1, 1, 0, 1, 0, 0, 1, 1, 0, 0, 1, 0, 1, 1, 0,
133 1.14 chopps 1, 0, 0, 1, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0, 0, 1,
134 1.1 mw };
135 1.1 mw
136 1.14 chopps /*
137 1.14 chopps * Since we don't get interrupts for changes on the modem control line,
138 1.14 chopps * we'll have to fake them by comparing current settings to the settings
139 1.14 chopps * we remembered on last invocation.
140 1.14 chopps */
141 1.14 chopps
142 1.14 chopps u_char last_ciab_pra;
143 1.14 chopps
144 1.14 chopps extern struct tty *constty;
145 1.1 mw
146 1.1 mw #ifdef KGDB
147 1.10 chopps #include <machine/remote-sl.h>
148 1.1 mw
149 1.1 mw extern dev_t kgdb_dev;
150 1.1 mw extern int kgdb_rate;
151 1.1 mw extern int kgdb_debug_init;
152 1.1 mw #endif
153 1.1 mw
154 1.1 mw #ifdef DEBUG
155 1.1 mw long fifoin[17];
156 1.1 mw long fifoout[17];
157 1.1 mw long serintrcount[16];
158 1.1 mw long sermintcount[16];
159 1.1 mw #endif
160 1.1 mw
161 1.14 chopps void sermint __P((register int unit));
162 1.5 mw
163 1.5 mw int
164 1.15 chopps sermatch(pdp, cfp, auxp)
165 1.15 chopps struct device *pdp;
166 1.15 chopps struct cfdata *cfp;
167 1.15 chopps void *auxp;
168 1.15 chopps {
169 1.15 chopps if (matchname("ser", (char *)auxp) == 0 || cfp->cf_unit != 0)
170 1.15 chopps return(0);
171 1.15 chopps if (serconsole != 0 && amiga_realconfig == 0)
172 1.15 chopps return(0);
173 1.15 chopps return(1);
174 1.15 chopps }
175 1.15 chopps
176 1.15 chopps
177 1.15 chopps void
178 1.15 chopps serattach(pdp, dp, auxp)
179 1.15 chopps struct device *pdp, *dp;
180 1.15 chopps void *auxp;
181 1.1 mw {
182 1.15 chopps u_short ir;
183 1.14 chopps
184 1.14 chopps ir = custom.intenar;
185 1.15 chopps if (serconsole == 0)
186 1.14 chopps DELAY(100000);
187 1.14 chopps
188 1.15 chopps ser_active |= 1;
189 1.15 chopps ser_vbl_node[0].function = (void (*) (void *)) sermint;
190 1.15 chopps add_vbl_function(&ser_vbl_node[0], SER_VBL_PRIORITY, (void *) 0);
191 1.1 mw #ifdef KGDB
192 1.15 chopps if (kgdb_dev == makedev(sermajor, 0)) {
193 1.15 chopps if (serconsole == 0)
194 1.14 chopps kgdb_dev = NODEV; /* can't debug over console port */
195 1.14 chopps else {
196 1.15 chopps (void) serinit(0, kgdb_rate);
197 1.14 chopps serconsinit = 1; /* don't re-init in serputc */
198 1.14 chopps if (kgdb_debug_init == 0)
199 1.15 chopps printf(" kgdb enabled\n");
200 1.14 chopps else {
201 1.14 chopps /*
202 1.14 chopps * Print prefix of device name,
203 1.14 chopps * let kgdb_connect print the rest.
204 1.14 chopps */
205 1.15 chopps printf("ser0: ");
206 1.14 chopps kgdb_connect(1);
207 1.14 chopps }
208 1.14 chopps }
209 1.14 chopps }
210 1.5 mw #endif
211 1.14 chopps /*
212 1.14 chopps * Need to reset baud rate, etc. of next print so reset serconsinit.
213 1.14 chopps */
214 1.15 chopps if (0 == serconsole)
215 1.14 chopps serconsinit = 0;
216 1.15 chopps if (dp)
217 1.15 chopps printf(" input fifo: %d output fifo: %d\n", SERIBUF_SIZE,
218 1.15 chopps SEROBUF_SIZE);
219 1.1 mw }
220 1.1 mw
221 1.14 chopps
222 1.1 mw /* ARGSUSED */
223 1.5 mw int
224 1.1 mw seropen(dev, flag, mode, p)
225 1.14 chopps dev_t dev;
226 1.14 chopps int flag, mode;
227 1.14 chopps struct proc *p;
228 1.1 mw {
229 1.14 chopps struct tty *tp;
230 1.14 chopps int unit, error, s;
231 1.14 chopps
232 1.14 chopps error = 0;
233 1.14 chopps unit = SERUNIT(dev);
234 1.14 chopps
235 1.14 chopps if (unit >= NSER || (ser_active & (1 << unit)) == 0)
236 1.14 chopps return (ENXIO);
237 1.14 chopps
238 1.14 chopps s = spltty();
239 1.14 chopps
240 1.14 chopps if (ser_tty[unit])
241 1.14 chopps tp = ser_tty[unit];
242 1.14 chopps else
243 1.14 chopps tp = ser_tty[unit] = ttymalloc();
244 1.14 chopps
245 1.14 chopps tp->t_oproc = (void (*) (struct tty *)) serstart;
246 1.14 chopps tp->t_param = serparam;
247 1.14 chopps tp->t_dev = dev;
248 1.14 chopps
249 1.14 chopps if ((tp->t_state & TS_ISOPEN) == 0) {
250 1.14 chopps tp->t_state |= TS_WOPEN;
251 1.14 chopps ttychars(tp);
252 1.14 chopps if (tp->t_ispeed == 0) {
253 1.14 chopps /*
254 1.14 chopps * only when cleared do we reset to defaults.
255 1.14 chopps */
256 1.14 chopps tp->t_iflag = TTYDEF_IFLAG;
257 1.14 chopps tp->t_oflag = TTYDEF_OFLAG;
258 1.14 chopps tp->t_cflag = TTYDEF_CFLAG;
259 1.14 chopps tp->t_lflag = TTYDEF_LFLAG;
260 1.14 chopps tp->t_ispeed = tp->t_ospeed = serdefaultrate;
261 1.14 chopps }
262 1.14 chopps /*
263 1.14 chopps * do these all the time
264 1.14 chopps */
265 1.14 chopps if (serswflags & TIOCFLAG_CLOCAL)
266 1.14 chopps tp->t_cflag |= CLOCAL;
267 1.14 chopps if (serswflags & TIOCFLAG_CRTSCTS)
268 1.14 chopps tp->t_cflag |= CRTSCTS;
269 1.14 chopps if (serswflags & TIOCFLAG_MDMBUF)
270 1.14 chopps tp->t_cflag |= MDMBUF;
271 1.14 chopps serparam(tp, &tp->t_termios);
272 1.14 chopps ttsetwater(tp);
273 1.14 chopps
274 1.14 chopps (void)sermctl(dev, TIOCM_DTR | TIOCM_RTS, DMSET);
275 1.14 chopps if ((SWFLAGS(dev) & TIOCFLAG_SOFTCAR) ||
276 1.14 chopps (sermctl(dev, 0, DMGET) & TIOCM_CD))
277 1.14 chopps tp->t_state |= TS_CARR_ON;
278 1.14 chopps else
279 1.14 chopps tp->t_state &= ~TS_CARR_ON;
280 1.14 chopps } else if (tp->t_state & TS_XCLUDE && p->p_ucred->cr_uid != 0) {
281 1.14 chopps splx(s);
282 1.14 chopps return(EBUSY);
283 1.14 chopps }
284 1.14 chopps
285 1.14 chopps /*
286 1.14 chopps * if NONBLOCK requested, ignore carrier
287 1.14 chopps */
288 1.14 chopps if (flag & O_NONBLOCK)
289 1.14 chopps goto done;
290 1.14 chopps
291 1.14 chopps /*
292 1.14 chopps * block waiting for carrier
293 1.14 chopps */
294 1.14 chopps while ((tp->t_state & TS_CARR_ON) == 0 && (tp->t_cflag & CLOCAL) == 0) {
295 1.14 chopps tp->t_state |= TS_WOPEN;
296 1.14 chopps error = ttysleep(tp, (caddr_t)&tp->t_rawq,
297 1.14 chopps TTIPRI | PCATCH, ttopen, 0);
298 1.14 chopps if (error) {
299 1.14 chopps splx(s);
300 1.14 chopps return(error);
301 1.14 chopps }
302 1.1 mw }
303 1.14 chopps done:
304 1.14 chopps splx(s);
305 1.14 chopps /*
306 1.14 chopps * Reset the tty pointer, as there could have been a dialout
307 1.14 chopps * use of the tty with a dialin open waiting.
308 1.14 chopps */
309 1.14 chopps tp->t_dev = dev;
310 1.14 chopps return((*linesw[tp->t_line].l_open)(dev, tp));
311 1.1 mw }
312 1.14 chopps
313 1.1 mw /*ARGSUSED*/
314 1.5 mw int
315 1.1 mw serclose(dev, flag, mode, p)
316 1.14 chopps dev_t dev;
317 1.14 chopps int flag, mode;
318 1.14 chopps struct proc *p;
319 1.14 chopps {
320 1.14 chopps struct tty *tp;
321 1.14 chopps int unit;
322 1.14 chopps
323 1.14 chopps unit = SERUNIT(dev);
324 1.14 chopps
325 1.14 chopps tp = ser_tty[unit];
326 1.14 chopps (*linesw[tp->t_line].l_close)(tp, flag);
327 1.14 chopps custom.adkcon = ADKCONF_UARTBRK; /* clear break */
328 1.1 mw #ifdef KGDB
329 1.14 chopps /*
330 1.14 chopps * do not disable interrupts if debugging
331 1.14 chopps */
332 1.14 chopps if (dev != kgdb_dev)
333 1.1 mw #endif
334 1.14 chopps custom.intena = INTF_RBF | INTF_TBE; /* disable interrups */
335 1.14 chopps custom.intreq = INTF_RBF | INTF_TBE; /* clear intr request */
336 1.14 chopps
337 1.14 chopps /*
338 1.14 chopps * If the device is closed, it's close, no matter whether we deal with
339 1.14 chopps * modem control signals nor not.
340 1.14 chopps */
341 1.1 mw #if 0
342 1.14 chopps if (tp->t_cflag & HUPCL || tp->t_state & TS_WOPEN ||
343 1.14 chopps (tp->t_state & TS_ISOPEN) == 0)
344 1.1 mw #endif
345 1.14 chopps (void) sermctl(dev, 0, DMSET);
346 1.14 chopps ttyclose(tp);
347 1.14 chopps #if not_yet
348 1.14 chopps if (tp != &ser_cons) {
349 1.14 chopps remove_vbl_function(&ser_vbl_node[unit]);
350 1.14 chopps ttyfree(tp);
351 1.14 chopps ser_tty[unit] = (struct tty *) NULL;
352 1.14 chopps }
353 1.3 mw #endif
354 1.14 chopps return (0);
355 1.1 mw }
356 1.14 chopps
357 1.5 mw int
358 1.1 mw serread(dev, uio, flag)
359 1.14 chopps dev_t dev;
360 1.14 chopps struct uio *uio;
361 1.14 chopps int flag;
362 1.1 mw {
363 1.14 chopps struct tty *tp;
364 1.14 chopps if ((tp = ser_tty[SERUNIT(dev)]) == NULL)
365 1.14 chopps return(ENXIO);
366 1.14 chopps return((*linesw[tp->t_line].l_read)(tp, uio, flag));
367 1.14 chopps }
368 1.1 mw
369 1.5 mw int
370 1.1 mw serwrite(dev, uio, flag)
371 1.14 chopps dev_t dev;
372 1.14 chopps struct uio *uio;
373 1.14 chopps int flag;
374 1.1 mw {
375 1.14 chopps struct tty *tp;
376 1.14 chopps
377 1.14 chopps if((tp = ser_tty[SERUNIT(dev)]) == NULL)
378 1.14 chopps return(ENXIO);
379 1.14 chopps return((*linesw[tp->t_line].l_write)(tp, uio, flag));
380 1.1 mw }
381 1.3 mw
382 1.3 mw
383 1.14 chopps /*
384 1.14 chopps * We don't do any processing of data here, so we store the raw code
385 1.14 chopps * obtained from the uart register. In theory, 110kBaud gives you
386 1.14 chopps * 11kcps, so 16k buffer should be more than enough, interrupt
387 1.14 chopps * latency of 1s should never happen, or something is seriously
388 1.14 chopps * wrong..
389 1.14 chopps */
390 1.14 chopps
391 1.3 mw static u_short serbuf[SERIBUF_SIZE];
392 1.3 mw static u_short *sbrpt = serbuf;
393 1.3 mw static u_short *sbwpt = serbuf;
394 1.3 mw
395 1.14 chopps /*
396 1.14 chopps * This is a replacement for the lack of a hardware fifo. 32k should be
397 1.14 chopps * enough (there's only one unit anyway, so this is not going to
398 1.14 chopps * accumulate).
399 1.14 chopps */
400 1.3 mw void
401 1.14 chopps ser_fastint()
402 1.3 mw {
403 1.14 chopps /*
404 1.14 chopps * We're at RBE-level, which is higher than VBL-level which is used
405 1.14 chopps * to periodically transmit contents of this buffer up one layer,
406 1.14 chopps * so no spl-raising is necessary.
407 1.14 chopps */
408 1.14 chopps register u_short ints, code;
409 1.14 chopps
410 1.14 chopps ints = custom.intreqr & INTF_RBF;
411 1.14 chopps if (ints == 0)
412 1.14 chopps return;
413 1.14 chopps
414 1.14 chopps /*
415 1.14 chopps * clear interrupt
416 1.14 chopps */
417 1.14 chopps custom.intreq = ints;
418 1.14 chopps
419 1.14 chopps /*
420 1.14 chopps * this register contains both data and status bits!
421 1.14 chopps */
422 1.14 chopps code = custom.serdatr;
423 1.14 chopps
424 1.14 chopps /*
425 1.14 chopps * check for buffer overflow.
426 1.14 chopps */
427 1.14 chopps if (sbwpt + 1 == sbrpt ||
428 1.14 chopps (sbwpt == serbuf + SERIBUF_SIZE - 1 && sbrpt == serbuf)) {
429 1.14 chopps log(LOG_WARNING, "ser_fastint: buffer overflow!");
430 1.14 chopps return;
431 1.14 chopps }
432 1.14 chopps /*
433 1.14 chopps * store in buffer
434 1.14 chopps */
435 1.14 chopps *sbwpt++ = code;
436 1.14 chopps if (sbwpt == serbuf + SERIBUF_SIZE)
437 1.14 chopps sbwpt = serbuf;
438 1.3 mw }
439 1.3 mw
440 1.3 mw
441 1.3 mw int
442 1.14 chopps serintr(unit)
443 1.14 chopps int unit;
444 1.1 mw {
445 1.14 chopps int s1, s2;
446 1.1 mw
447 1.14 chopps /*
448 1.14 chopps * Make sure we're not interrupted by another
449 1.14 chopps * vbl, but allow level5 ints
450 1.14 chopps */
451 1.14 chopps s1 = spltty();
452 1.1 mw
453 1.14 chopps /*
454 1.14 chopps * pass along any acumulated information
455 1.14 chopps */
456 1.14 chopps while (sbrpt != sbwpt) {
457 1.14 chopps /*
458 1.14 chopps * no collision with ser_fastint()
459 1.14 chopps */
460 1.15 chopps sereint(unit, *sbrpt);
461 1.14 chopps
462 1.14 chopps /* lock against ser_fastint() */
463 1.14 chopps s2 = spl5();
464 1.14 chopps sbrpt++;
465 1.14 chopps if (sbrpt == serbuf + SERIBUF_SIZE)
466 1.14 chopps sbrpt = serbuf;
467 1.14 chopps splx(s2);
468 1.14 chopps }
469 1.14 chopps splx(s1);
470 1.1 mw }
471 1.1 mw
472 1.5 mw int
473 1.15 chopps sereint(unit, stat)
474 1.14 chopps int unit, stat;
475 1.1 mw {
476 1.14 chopps struct tty *tp;
477 1.14 chopps u_char ch;
478 1.14 chopps int c;
479 1.14 chopps
480 1.14 chopps tp = ser_tty[unit];
481 1.14 chopps ch = stat & 0xff;
482 1.14 chopps c = ch;
483 1.14 chopps
484 1.14 chopps if ((tp->t_state & TS_ISOPEN) == 0) {
485 1.1 mw #ifdef KGDB
486 1.14 chopps /* we don't care about parity errors */
487 1.14 chopps if (kgdb_dev == makedev(sermajor, unit) && c == FRAME_END)
488 1.14 chopps kgdb_connect(0); /* trap into kgdb */
489 1.1 mw #endif
490 1.14 chopps return;
491 1.14 chopps }
492 1.14 chopps
493 1.14 chopps /*
494 1.14 chopps * Check for break and (if enabled) parity error.
495 1.14 chopps */
496 1.14 chopps if ((stat & 0x1ff) == 0)
497 1.14 chopps c |= TTY_FE;
498 1.14 chopps else if ((tp->t_cflag & PARENB) &&
499 1.14 chopps (((ch >> 7) + even_parity[ch & 0x7f]
500 1.14 chopps + !!(tp->t_cflag & PARODD)) & 1))
501 1.14 chopps c |= TTY_PE;
502 1.14 chopps
503 1.14 chopps if (stat & SERDATRF_OVRUN)
504 1.15 chopps log(LOG_WARNING, "ser0: silo overflow\n");
505 1.1 mw
506 1.14 chopps (*linesw[tp->t_line].l_rint)(c, tp);
507 1.14 chopps }
508 1.14 chopps
509 1.14 chopps /*
510 1.14 chopps * This interrupt is periodically invoked in the vertical blank
511 1.14 chopps * interrupt. It's used to keep track of the modem control lines
512 1.14 chopps * and (new with the fast_int code) to move accumulated data
513 1.14 chopps * up into the tty layer.
514 1.14 chopps */
515 1.3 mw void
516 1.14 chopps sermint(unit)
517 1.14 chopps int unit;
518 1.1 mw {
519 1.14 chopps struct tty *tp;
520 1.14 chopps u_char stat, last, istat;
521 1.14 chopps
522 1.14 chopps tp = ser_tty[unit];
523 1.14 chopps if (!tp)
524 1.14 chopps return;
525 1.14 chopps
526 1.14 chopps if ((tp->t_state & (TS_ISOPEN | TS_WOPEN)) == 0) {
527 1.14 chopps sbrpt = sbwpt = serbuf;
528 1.14 chopps return;
529 1.14 chopps }
530 1.14 chopps /*
531 1.14 chopps * empty buffer
532 1.14 chopps */
533 1.14 chopps serintr(unit);
534 1.14 chopps
535 1.14 chopps stat = ciab.pra;
536 1.14 chopps last = last_ciab_pra;
537 1.14 chopps last_ciab_pra = stat;
538 1.14 chopps
539 1.14 chopps /*
540 1.14 chopps * check whether any interesting signal changed state
541 1.14 chopps */
542 1.14 chopps istat = stat ^ last;
543 1.1 mw
544 1.14 chopps if ((istat & CIAB_PRA_CD) &&
545 1.14 chopps (SWFLAGS(tp->t_dev) & TIOCFLAG_SOFTCAR) == 0) {
546 1.14 chopps if (ISDCD(stat))
547 1.14 chopps (*linesw[tp->t_line].l_modem)(tp, 1);
548 1.14 chopps else if ((*linesw[tp->t_line].l_modem)(tp, 0) == 0) {
549 1.14 chopps CLRDTR(stat);
550 1.14 chopps CLRRTS(stat);
551 1.14 chopps ciab.pra = stat;
552 1.14 chopps last_ciab_pra = stat;
553 1.14 chopps }
554 1.14 chopps }
555 1.14 chopps if ((istat & CIAB_PRA_CTS) && (tp->t_state & TS_ISOPEN) &&
556 1.14 chopps (tp->t_cflag & CRTSCTS)) {
557 1.5 mw #if 0
558 1.14 chopps /* the line is up and we want to do rts/cts flow control */
559 1.14 chopps if (ISCTS(stat)) {
560 1.14 chopps tp->t_state &= ~TS_TTSTOP;
561 1.14 chopps ttstart(tp);
562 1.14 chopps /* cause tbe-int if we were stuck there */
563 1.14 chopps custom.intreq = INTF_SETCLR | INTF_TBE;
564 1.14 chopps } else
565 1.14 chopps tp->t_state |= TS_TTSTOP;
566 1.5 mw #else
567 1.14 chopps /* do this on hardware level, not with tty driver */
568 1.14 chopps if (ISCTS(stat)) {
569 1.14 chopps tp->t_state &= ~TS_TTSTOP;
570 1.14 chopps /* cause TBE interrupt */
571 1.14 chopps custom.intreq = INTF_SETCLR | INTF_TBE;
572 1.14 chopps }
573 1.14 chopps #endif
574 1.5 mw }
575 1.1 mw }
576 1.1 mw
577 1.5 mw int
578 1.8 chopps serioctl(dev, cmd, data, flag, p)
579 1.14 chopps dev_t dev;
580 1.8 chopps caddr_t data;
581 1.8 chopps struct proc *p;
582 1.1 mw {
583 1.14 chopps register struct tty *tp;
584 1.14 chopps register int unit = SERUNIT(dev);
585 1.14 chopps register int error;
586 1.14 chopps
587 1.14 chopps tp = ser_tty[unit];
588 1.14 chopps if (!tp)
589 1.14 chopps return ENXIO;
590 1.14 chopps
591 1.14 chopps error = (*linesw[tp->t_line].l_ioctl)(tp, cmd, data, flag, p);
592 1.14 chopps if (error >= 0)
593 1.14 chopps return(error);
594 1.14 chopps
595 1.14 chopps error = ttioctl(tp, cmd, data, flag, p);
596 1.14 chopps if (error >= 0)
597 1.14 chopps return(error);
598 1.14 chopps
599 1.14 chopps switch (cmd) {
600 1.14 chopps case TIOCSBRK:
601 1.14 chopps custom.adkcon = ADKCONF_SETCLR | ADKCONF_UARTBRK;
602 1.14 chopps break;
603 1.14 chopps
604 1.14 chopps case TIOCCBRK:
605 1.14 chopps custom.adkcon = ADKCONF_UARTBRK;
606 1.14 chopps break;
607 1.14 chopps
608 1.14 chopps case TIOCSDTR:
609 1.14 chopps (void) sermctl(dev, TIOCM_DTR | TIOCM_RTS, DMBIS);
610 1.14 chopps break;
611 1.14 chopps
612 1.14 chopps case TIOCCDTR:
613 1.14 chopps (void) sermctl(dev, TIOCM_DTR | TIOCM_RTS, DMBIC);
614 1.14 chopps break;
615 1.14 chopps
616 1.14 chopps case TIOCMSET:
617 1.14 chopps (void) sermctl(dev, *(int *) data, DMSET);
618 1.14 chopps break;
619 1.14 chopps
620 1.14 chopps case TIOCMBIS:
621 1.14 chopps (void) sermctl(dev, *(int *) data, DMBIS);
622 1.14 chopps break;
623 1.14 chopps
624 1.14 chopps case TIOCMBIC:
625 1.14 chopps (void) sermctl(dev, *(int *) data, DMBIC);
626 1.14 chopps break;
627 1.14 chopps
628 1.14 chopps case TIOCMGET:
629 1.14 chopps *(int *)data = sermctl(dev, 0, DMGET);
630 1.14 chopps break;
631 1.14 chopps case TIOCGFLAGS:
632 1.14 chopps *(int *)data = SWFLAGS(dev);
633 1.14 chopps break;
634 1.14 chopps case TIOCSFLAGS:
635 1.14 chopps error = suser(p->p_ucred, &p->p_acflag);
636 1.14 chopps if (error != 0)
637 1.14 chopps return(EPERM);
638 1.14 chopps
639 1.14 chopps serswflags = *(int *)data;
640 1.14 chopps serswflags &= /* only allow valid flags */
641 1.14 chopps (TIOCFLAG_SOFTCAR | TIOCFLAG_CLOCAL | TIOCFLAG_CRTSCTS);
642 1.14 chopps break;
643 1.14 chopps default:
644 1.14 chopps return(ENOTTY);
645 1.14 chopps }
646 1.1 mw
647 1.14 chopps return(0);
648 1.1 mw }
649 1.1 mw
650 1.5 mw int
651 1.1 mw serparam(tp, t)
652 1.14 chopps struct tty *tp;
653 1.14 chopps struct termios *t;
654 1.1 mw {
655 1.14 chopps int cfcr, cflag, unit, ospeed;
656 1.14 chopps
657 1.14 chopps cflag = t->c_cflag;
658 1.14 chopps unit = SERUNIT(tp->t_dev);
659 1.14 chopps ospeed = ttspeedtab(t->c_ospeed, serspeedtab);
660 1.14 chopps
661 1.14 chopps if (ospeed < 0 || (t->c_ispeed && t->c_ispeed != t->c_ospeed))
662 1.14 chopps return(EINVAL);
663 1.14 chopps
664 1.14 chopps /*
665 1.14 chopps * copy to tty
666 1.14 chopps */
667 1.14 chopps tp->t_ispeed = t->c_ispeed;
668 1.14 chopps tp->t_ospeed = t->c_ospeed;
669 1.14 chopps tp->t_cflag = cflag;
670 1.14 chopps
671 1.14 chopps /*
672 1.14 chopps * enable interrupts
673 1.14 chopps */
674 1.14 chopps custom.intena = INTF_SETCLR | INTF_RBF | INTF_TBE;
675 1.14 chopps last_ciab_pra = ciab.pra;
676 1.14 chopps
677 1.14 chopps if (ospeed == 0)
678 1.14 chopps (void)sermctl(tp->t_dev, 0, DMSET); /* hang up line */
679 1.14 chopps else {
680 1.14 chopps /*
681 1.14 chopps * (re)enable DTR
682 1.14 chopps * and set baud rate. (8 bit mode)
683 1.14 chopps */
684 1.14 chopps (void)sermctl(tp->t_dev, TIOCM_DTR | TIOCM_RTS, DMSET);
685 1.14 chopps custom.serper = (0 << 15) | ospeed;
686 1.14 chopps }
687 1.14 chopps return(0);
688 1.1 mw }
689 1.3 mw
690 1.3 mw
691 1.3 mw static void
692 1.14 chopps ser_putchar(tp, c)
693 1.14 chopps struct tty *tp;
694 1.14 chopps u_short c;
695 1.14 chopps {
696 1.14 chopps if ((tp->t_cflag & CSIZE) == CS7 || (tp->t_cflag & PARENB))
697 1.14 chopps c &= 0x7f;
698 1.14 chopps
699 1.14 chopps /*
700 1.14 chopps * handle parity if necessary
701 1.14 chopps */
702 1.14 chopps if (tp->t_cflag & PARENB) {
703 1.14 chopps if (even_parity[c])
704 1.14 chopps c |= 0x80;
705 1.14 chopps if (tp->t_cflag & PARODD)
706 1.14 chopps c ^= 0x80;
707 1.14 chopps }
708 1.14 chopps /*
709 1.14 chopps * add stop bit(s)
710 1.14 chopps */
711 1.14 chopps if (tp->t_cflag & CSTOPB)
712 1.14 chopps c |= 0x300;
713 1.14 chopps else
714 1.14 chopps c |= 0x100;
715 1.14 chopps
716 1.14 chopps custom.serdat = c;
717 1.3 mw }
718 1.3 mw
719 1.3 mw
720 1.3 mw static u_char ser_outbuf[SEROBUF_SIZE];
721 1.14 chopps static u_char *sob_ptr = ser_outbuf, *sob_end = ser_outbuf;
722 1.14 chopps
723 1.3 mw void
724 1.14 chopps ser_outintr()
725 1.3 mw {
726 1.14 chopps struct tty *tp = ser_tty[0];
727 1.14 chopps u_short c;
728 1.14 chopps int s;
729 1.14 chopps
730 1.14 chopps tp = ser_tty[0];
731 1.14 chopps s = spltty();
732 1.14 chopps
733 1.14 chopps if (tp == 0)
734 1.14 chopps goto out;
735 1.14 chopps
736 1.14 chopps if ((custom.intreqr & INTF_TBE) == 0)
737 1.14 chopps goto out;
738 1.14 chopps
739 1.14 chopps /*
740 1.14 chopps * clear interrupt
741 1.14 chopps */
742 1.14 chopps custom.intreq = INTF_TBE;
743 1.14 chopps
744 1.14 chopps if (sob_ptr == sob_end) {
745 1.14 chopps tp->t_state &= ~(TS_BUSY | TS_FLUSH);
746 1.14 chopps if (tp->t_line)
747 1.14 chopps (*linesw[tp->t_line].l_start)(tp);
748 1.14 chopps else
749 1.14 chopps serstart(tp);
750 1.14 chopps goto out;
751 1.14 chopps }
752 1.14 chopps
753 1.14 chopps /*
754 1.14 chopps * Do hardware flow control here. if the CTS line goes down, don't
755 1.14 chopps * transmit anything. That way, we'll be restarted by the periodic
756 1.14 chopps * interrupt when CTS comes back up.
757 1.14 chopps */
758 1.14 chopps if (ISCTS(ciab.pra))
759 1.14 chopps ser_putchar(tp, *sob_ptr++);
760 1.5 mw out:
761 1.14 chopps splx(s);
762 1.3 mw }
763 1.14 chopps
764 1.5 mw int
765 1.1 mw serstart(tp)
766 1.14 chopps struct tty *tp;
767 1.1 mw {
768 1.14 chopps int cc, s, unit, hiwat;
769 1.14 chopps
770 1.14 chopps hiwat = 0;
771 1.14 chopps
772 1.14 chopps if ((tp->t_state & TS_ISOPEN) == 0)
773 1.14 chopps return;
774 1.14 chopps
775 1.14 chopps unit = SERUNIT(tp->t_dev);
776 1.1 mw
777 1.14 chopps s = spltty();
778 1.14 chopps if (tp->t_state & (TS_TIMEOUT | TS_TTSTOP))
779 1.14 chopps goto out;
780 1.14 chopps
781 1.14 chopps cc = tp->t_outq.c_cc;
782 1.14 chopps if (cc <= tp->t_lowat) {
783 1.14 chopps if (tp->t_state & TS_ASLEEP) {
784 1.14 chopps tp->t_state &= ~TS_ASLEEP;
785 1.14 chopps wakeup((caddr_t) & tp->t_outq);
786 1.14 chopps }
787 1.14 chopps selwakeup(&tp->t_wsel);
788 1.14 chopps }
789 1.14 chopps if (cc == 0 || (tp->t_state & TS_BUSY))
790 1.14 chopps goto out;
791 1.14 chopps
792 1.14 chopps /*
793 1.14 chopps * We only do bulk transfers if using CTSRTS flow control, not for
794 1.14 chopps * (probably sloooow) ixon/ixoff devices.
795 1.14 chopps */
796 1.14 chopps if ((tp->t_cflag & CRTSCTS) == 0)
797 1.14 chopps cc = 1;
798 1.14 chopps
799 1.14 chopps /*
800 1.14 chopps * Limit the amount of output we do in one burst
801 1.14 chopps * to prevent hogging the CPU.
802 1.14 chopps */
803 1.14 chopps if (cc > SEROBUF_SIZE) {
804 1.14 chopps hiwat++;
805 1.14 chopps cc = SEROBUF_SIZE;
806 1.14 chopps }
807 1.14 chopps cc = q_to_b(&tp->t_outq, ser_outbuf, cc);
808 1.14 chopps if (cc > 0) {
809 1.14 chopps tp->t_state |= TS_BUSY;
810 1.14 chopps
811 1.14 chopps sob_ptr = ser_outbuf;
812 1.14 chopps sob_end = ser_outbuf + cc;
813 1.14 chopps
814 1.14 chopps /*
815 1.14 chopps * Get first character out, then have TBE-interrupts blow out
816 1.14 chopps * further characters, until buffer is empty, and TS_BUSY gets
817 1.14 chopps * cleared.
818 1.14 chopps */
819 1.14 chopps ser_putchar(tp, *sob_ptr++);
820 1.14 chopps }
821 1.14 chopps out:
822 1.14 chopps splx(s);
823 1.1 mw }
824 1.14 chopps
825 1.1 mw /*
826 1.1 mw * Stop output on a line.
827 1.1 mw */
828 1.1 mw /*ARGSUSED*/
829 1.5 mw int
830 1.1 mw serstop(tp, flag)
831 1.14 chopps struct tty *tp;
832 1.1 mw {
833 1.14 chopps int s;
834 1.1 mw
835 1.14 chopps s = spltty();
836 1.14 chopps if (tp->t_state & TS_BUSY) {
837 1.14 chopps if ((tp->t_state & TS_TTSTOP) == 0)
838 1.14 chopps tp->t_state |= TS_FLUSH;
839 1.14 chopps }
840 1.14 chopps splx(s);
841 1.1 mw }
842 1.14 chopps
843 1.5 mw int
844 1.1 mw sermctl(dev, bits, how)
845 1.14 chopps dev_t dev;
846 1.14 chopps int bits, how;
847 1.1 mw {
848 1.14 chopps int unit, s;
849 1.14 chopps u_char ub;
850 1.14 chopps
851 1.14 chopps unit = SERUNIT(dev);
852 1.14 chopps
853 1.14 chopps /*
854 1.14 chopps * convert TIOCM* mask into CIA mask
855 1.14 chopps * which is active low
856 1.14 chopps */
857 1.14 chopps if (how != DMGET) {
858 1.14 chopps ub = 0;
859 1.14 chopps if (bits & TIOCM_DTR)
860 1.14 chopps ub |= CIAB_PRA_DTR;
861 1.14 chopps if (bits & TIOCM_RTS)
862 1.14 chopps ub |= CIAB_PRA_RTS;
863 1.14 chopps if (bits & TIOCM_CTS)
864 1.14 chopps ub |= CIAB_PRA_CTS;
865 1.14 chopps if (bits & TIOCM_CD)
866 1.14 chopps ub |= CIAB_PRA_CD;
867 1.14 chopps if (bits & TIOCM_RI)
868 1.14 chopps ub |= CIAB_PRA_SEL; /* collision with /dev/par ! */
869 1.14 chopps if (bits & TIOCM_DSR)
870 1.14 chopps ub |= CIAB_PRA_DSR;
871 1.14 chopps }
872 1.14 chopps s = spltty();
873 1.14 chopps switch (how) {
874 1.14 chopps case DMSET:
875 1.14 chopps /* invert and set */
876 1.14 chopps ciab.pra = ~ub;
877 1.14 chopps break;
878 1.14 chopps
879 1.14 chopps case DMBIC:
880 1.14 chopps ciab.pra |= ub;
881 1.14 chopps ub = ~ciab.pra;
882 1.14 chopps break;
883 1.14 chopps
884 1.14 chopps case DMBIS:
885 1.14 chopps ciab.pra &= ~ub;
886 1.14 chopps ub = ~ciab.pra;
887 1.14 chopps break;
888 1.14 chopps
889 1.14 chopps case DMGET:
890 1.14 chopps ub = ~ciab.pra;
891 1.14 chopps break;
892 1.14 chopps }
893 1.14 chopps (void)splx(s);
894 1.14 chopps
895 1.14 chopps bits = 0;
896 1.14 chopps if (ub & CIAB_PRA_DTR)
897 1.14 chopps bits |= TIOCM_DTR;
898 1.14 chopps if (ub & CIAB_PRA_RTS)
899 1.14 chopps bits |= TIOCM_RTS;
900 1.14 chopps if (ub & CIAB_PRA_CTS)
901 1.14 chopps bits |= TIOCM_CTS;
902 1.14 chopps if (ub & CIAB_PRA_CD)
903 1.14 chopps bits |= TIOCM_CD;
904 1.14 chopps if (ub & CIAB_PRA_SEL)
905 1.14 chopps bits |= TIOCM_RI;
906 1.14 chopps if (ub & CIAB_PRA_DSR)
907 1.14 chopps bits |= TIOCM_DSR;
908 1.14 chopps
909 1.14 chopps return(bits);
910 1.1 mw }
911 1.1 mw
912 1.1 mw /*
913 1.1 mw * Following are all routines needed for SER to act as console
914 1.1 mw */
915 1.14 chopps int
916 1.1 mw sercnprobe(cp)
917 1.1 mw struct consdev *cp;
918 1.1 mw {
919 1.14 chopps int unit = CONUNIT;
920 1.14 chopps
921 1.14 chopps /* locate the major number */
922 1.14 chopps for (sermajor = 0; sermajor < nchrdev; sermajor++)
923 1.14 chopps if (cdevsw[sermajor].d_open == (void *)seropen)
924 1.14 chopps break;
925 1.14 chopps
926 1.14 chopps
927 1.14 chopps unit = CONUNIT; /* XXX: ick */
928 1.14 chopps
929 1.14 chopps /*
930 1.14 chopps * initialize required fields
931 1.14 chopps */
932 1.14 chopps cp->cn_dev = makedev(sermajor, unit);
933 1.14 chopps if (serconsole == unit)
934 1.14 chopps cp->cn_pri = CN_REMOTE;
935 1.14 chopps else
936 1.14 chopps cp->cn_pri = CN_NORMAL;
937 1.1 mw #ifdef KGDB
938 1.14 chopps if (major(kgdb_dev) == 1) /* XXX */
939 1.14 chopps kgdb_dev = makedev(sermajor, minor(kgdb_dev));
940 1.1 mw #endif
941 1.1 mw }
942 1.1 mw
943 1.1 mw sercninit(cp)
944 1.1 mw struct consdev *cp;
945 1.1 mw {
946 1.14 chopps int unit;
947 1.1 mw
948 1.14 chopps unit = SERUNIT(cp->cn_dev);
949 1.14 chopps
950 1.14 chopps serinit(unit, serdefaultrate);
951 1.14 chopps serconsole = unit;
952 1.14 chopps serconsinit = 1;
953 1.1 mw }
954 1.1 mw
955 1.1 mw serinit(unit, rate)
956 1.1 mw int unit, rate;
957 1.1 mw {
958 1.14 chopps int s;
959 1.1 mw
960 1.14 chopps s = splhigh();
961 1.14 chopps /*
962 1.14 chopps * might want to fiddle with the CIA later ???
963 1.14 chopps */
964 1.14 chopps custom.serper = ttspeedtab(rate, serspeedtab);
965 1.14 chopps splx(s);
966 1.1 mw }
967 1.1 mw
968 1.1 mw sercngetc(dev)
969 1.1 mw {
970 1.14 chopps u_short stat;
971 1.14 chopps int c, s;
972 1.1 mw
973 1.14 chopps s = splhigh();
974 1.14 chopps /*
975 1.14 chopps * poll
976 1.14 chopps */
977 1.14 chopps while (((stat = custom.serdatr & 0xffff) & SERDATRF_RBF) == 0)
978 1.14 chopps ;
979 1.14 chopps c = stat & 0xff;
980 1.14 chopps /*
981 1.14 chopps * clear interrupt
982 1.14 chopps */
983 1.14 chopps custom.intreq = INTF_RBF;
984 1.14 chopps splx(s);
985 1.14 chopps return(c);
986 1.1 mw }
987 1.1 mw
988 1.1 mw /*
989 1.1 mw * Console kernel output character routine.
990 1.1 mw */
991 1.1 mw sercnputc(dev, c)
992 1.14 chopps dev_t dev;
993 1.14 chopps int c;
994 1.1 mw {
995 1.14 chopps register int timo;
996 1.14 chopps short stat;
997 1.14 chopps int s;
998 1.14 chopps
999 1.14 chopps s = splhigh();
1000 1.1 mw
1001 1.14 chopps if (serconsinit == 0) {
1002 1.14 chopps (void)serinit(SERUNIT(dev), serdefaultrate);
1003 1.14 chopps serconsinit = 1;
1004 1.14 chopps }
1005 1.14 chopps
1006 1.14 chopps /*
1007 1.14 chopps * wait for any pending transmission to finish
1008 1.14 chopps */
1009 1.14 chopps timo = 50000;
1010 1.14 chopps while (!(custom.serdatr & SERDATRF_TBE) && --timo);
1011 1.14 chopps
1012 1.14 chopps /*
1013 1.14 chopps * transmit char.
1014 1.14 chopps */
1015 1.14 chopps custom.serdat = (c & 0xff) | 0x100;
1016 1.14 chopps
1017 1.14 chopps /*
1018 1.14 chopps * wait for this transmission to complete
1019 1.14 chopps */
1020 1.14 chopps timo = 1500000;
1021 1.14 chopps while (!(custom.serdatr & SERDATRF_TBE) && --timo)
1022 1.14 chopps ;
1023 1.14 chopps
1024 1.14 chopps /*
1025 1.14 chopps * Wait for the device (my vt100..) to process the data, since we
1026 1.14 chopps * don't do flow-control with cnputc
1027 1.14 chopps */
1028 1.14 chopps for (timo = 0; timo < 30000; timo++)
1029 1.14 chopps ;
1030 1.14 chopps
1031 1.14 chopps /*
1032 1.14 chopps * clear any interrupts generated by this transmission
1033 1.14 chopps */
1034 1.14 chopps custom.intreq = INTF_TBE;
1035 1.14 chopps splx(s);
1036 1.1 mw }
1037 1.1 mw
1038 1.14 chopps #if 0
1039 1.1 mw serspit(c)
1040 1.14 chopps int c;
1041 1.1 mw {
1042 1.14 chopps extern int cold;
1043 1.14 chopps register struct Custom *cu asm("a2") = (struct Custom *) CUSTOMbase;
1044 1.14 chopps register int timo asm("d2");
1045 1.14 chopps int s;
1046 1.14 chopps
1047 1.14 chopps if (c == 10)
1048 1.14 chopps serspit(13);
1049 1.14 chopps
1050 1.14 chopps s = splhigh();
1051 1.14 chopps
1052 1.14 chopps /* wait for any pending transmission to finish */
1053 1.14 chopps timo = 500000;
1054 1.14 chopps while (!(cu->serdatr & (SERDATRF_TBE | SERDATRF_TSRE)) && --timo)
1055 1.14 chopps ;
1056 1.14 chopps
1057 1.14 chopps cu->serdat = (c & 0xff) | 0x100;
1058 1.14 chopps
1059 1.14 chopps /* wait for this transmission to complete */
1060 1.14 chopps timo = 15000000;
1061 1.14 chopps while (!(cu->serdatr & SERDATRF_TBE) && --timo)
1062 1.14 chopps ;
1063 1.14 chopps
1064 1.14 chopps /* clear any interrupts generated by this transmission */
1065 1.14 chopps cu->intreq = INTF_TBE;
1066 1.14 chopps
1067 1.14 chopps for (timo = 0; timo < 30000; timo++)
1068 1.14 chopps ;
1069 1.14 chopps
1070 1.14 chopps splx(s);
1071 1.1 mw }
1072 1.3 mw serspits(cp)
1073 1.14 chopps char *cp;
1074 1.3 mw {
1075 1.14 chopps while (*cp)
1076 1.14 chopps serspit(*cp++);
1077 1.3 mw }
1078 1.14 chopps #endif
1079 1.1 mw int
1080 1.1 mw serselect(dev, rw, p)
1081 1.14 chopps dev_t dev;
1082 1.14 chopps int rw;
1083 1.14 chopps struct proc *p;
1084 1.14 chopps {
1085 1.14 chopps struct tty *tp = ser_tty[SERUNIT(dev)];
1086 1.14 chopps struct proc *selp;
1087 1.14 chopps int nread, s;
1088 1.14 chopps
1089 1.14 chopps tp = ser_tty[SERUNIT(dev)];
1090 1.14 chopps s = spltty();
1091 1.14 chopps
1092 1.14 chopps switch (rw) {
1093 1.14 chopps case FREAD:
1094 1.14 chopps nread = ttnread(tp);
1095 1.14 chopps if (nread > 0 || ((tp->t_cflag & CLOCAL) == 0
1096 1.14 chopps && (tp->t_state & TS_CARR_ON) == 0))
1097 1.14 chopps goto win;
1098 1.14 chopps selrecord(p, &tp->t_rsel);
1099 1.14 chopps break;
1100 1.14 chopps
1101 1.14 chopps case FWRITE:
1102 1.14 chopps if (tp->t_outq.c_cc <= tp->t_lowat)
1103 1.14 chopps goto win;
1104 1.14 chopps selrecord(p, &tp->t_wsel);
1105 1.14 chopps break;
1106 1.14 chopps }
1107 1.14 chopps splx(s);
1108 1.14 chopps return (0);
1109 1.5 mw
1110 1.5 mw win:
1111 1.14 chopps splx(s);
1112 1.14 chopps return (1);
1113 1.1 mw }
1114 1.1 mw #endif
1115