mfc.c revision 1.40 1 1.40 elad /* $NetBSD: mfc.c,v 1.40 2006/05/14 21:55:09 elad Exp $ */
2 1.3 chopps
3 1.1 chopps /*
4 1.1 chopps * Copyright (c) 1982, 1990 The Regents of the University of California.
5 1.1 chopps * All rights reserved.
6 1.1 chopps *
7 1.1 chopps * Redistribution and use in source and binary forms, with or without
8 1.1 chopps * modification, are permitted provided that the following conditions
9 1.1 chopps * are met:
10 1.1 chopps * 1. Redistributions of source code must retain the above copyright
11 1.1 chopps * notice, this list of conditions and the following disclaimer.
12 1.1 chopps * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 chopps * notice, this list of conditions and the following disclaimer in the
14 1.1 chopps * documentation and/or other materials provided with the distribution.
15 1.33 agc * 3. Neither the name of the University nor the names of its contributors
16 1.33 agc * may be used to endorse or promote products derived from this software
17 1.33 agc * without specific prior written permission.
18 1.33 agc *
19 1.33 agc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
20 1.33 agc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.33 agc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.33 agc * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
23 1.33 agc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.33 agc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.33 agc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.33 agc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.33 agc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.33 agc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.33 agc * SUCH DAMAGE.
30 1.33 agc */
31 1.33 agc
32 1.33 agc #include "opt_kgdb.h"
33 1.33 agc
34 1.33 agc /*
35 1.33 agc * Copyright (c) 1994 Michael L. Hitch
36 1.33 agc *
37 1.33 agc * Redistribution and use in source and binary forms, with or without
38 1.33 agc * modification, are permitted provided that the following conditions
39 1.33 agc * are met:
40 1.33 agc * 1. Redistributions of source code must retain the above copyright
41 1.33 agc * notice, this list of conditions and the following disclaimer.
42 1.33 agc * 2. Redistributions in binary form must reproduce the above copyright
43 1.33 agc * notice, this list of conditions and the following disclaimer in the
44 1.33 agc * documentation and/or other materials provided with the distribution.
45 1.1 chopps *
46 1.34 mhitch * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
47 1.34 mhitch * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
48 1.34 mhitch * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
49 1.34 mhitch * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
50 1.34 mhitch * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
51 1.34 mhitch * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
52 1.34 mhitch * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
53 1.34 mhitch * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
54 1.34 mhitch * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
55 1.34 mhitch * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
56 1.1 chopps */
57 1.24 lukem
58 1.24 lukem #include "opt_kgdb.h"
59 1.26 aymeric
60 1.26 aymeric #include <sys/cdefs.h>
61 1.40 elad __KERNEL_RCSID(0, "$NetBSD: mfc.c,v 1.40 2006/05/14 21:55:09 elad Exp $");
62 1.1 chopps
63 1.1 chopps #include <sys/param.h>
64 1.1 chopps #include <sys/systm.h>
65 1.1 chopps #include <sys/kernel.h>
66 1.1 chopps #include <sys/device.h>
67 1.1 chopps #include <sys/tty.h>
68 1.1 chopps #include <sys/proc.h>
69 1.1 chopps #include <sys/file.h>
70 1.1 chopps #include <sys/malloc.h>
71 1.1 chopps #include <sys/uio.h>
72 1.1 chopps #include <sys/kernel.h>
73 1.1 chopps #include <sys/syslog.h>
74 1.1 chopps #include <sys/queue.h>
75 1.29 gehenna #include <sys/conf.h>
76 1.40 elad #include <sys/kauth.h>
77 1.1 chopps #include <machine/cpu.h>
78 1.1 chopps #include <amiga/amiga/device.h>
79 1.2 chopps #include <amiga/amiga/isr.h>
80 1.1 chopps #include <amiga/amiga/custom.h>
81 1.1 chopps #include <amiga/amiga/cia.h>
82 1.1 chopps #include <amiga/amiga/cc.h>
83 1.2 chopps #include <amiga/dev/zbusvar.h>
84 1.1 chopps
85 1.1 chopps #include <dev/cons.h>
86 1.1 chopps
87 1.1 chopps #include "mfcs.h"
88 1.1 chopps
89 1.7 chopps #ifndef SEROBUF_SIZE
90 1.1 chopps #define SEROBUF_SIZE 128
91 1.7 chopps #endif
92 1.7 chopps #ifndef SERIBUF_SIZE
93 1.1 chopps #define SERIBUF_SIZE 1024
94 1.7 chopps #endif
95 1.1 chopps
96 1.2 chopps #define splser() spl6()
97 1.2 chopps
98 1.2 chopps /*
99 1.2 chopps * 68581 DUART registers
100 1.2 chopps */
101 1.1 chopps struct mfc_regs {
102 1.1 chopps volatile u_char du_mr1a;
103 1.1 chopps #define du_mr2a du_mr1a
104 1.1 chopps u_char pad0;
105 1.1 chopps volatile u_char du_csra;
106 1.1 chopps #define du_sra du_csra
107 1.1 chopps u_char pad2;
108 1.1 chopps volatile u_char du_cra;
109 1.1 chopps u_char pad4;
110 1.1 chopps volatile u_char du_tba;
111 1.1 chopps #define du_rba du_tba
112 1.1 chopps u_char pad6;
113 1.1 chopps volatile u_char du_acr;
114 1.1 chopps #define du_ipcr du_acr
115 1.1 chopps u_char pad8;
116 1.1 chopps volatile u_char du_imr;
117 1.1 chopps #define du_isr du_imr
118 1.1 chopps u_char pad10;
119 1.1 chopps volatile u_char du_ctur;
120 1.1 chopps #define du_cmsb du_ctur
121 1.1 chopps u_char pad12;
122 1.1 chopps volatile u_char du_ctlr;
123 1.1 chopps #define du_clsb du_ctlr
124 1.1 chopps u_char pad14;
125 1.1 chopps volatile u_char du_mr1b;
126 1.1 chopps #define du_mr2b du_mr1b
127 1.1 chopps u_char pad16;
128 1.1 chopps volatile u_char du_csrb;
129 1.1 chopps #define du_srb du_csrb
130 1.1 chopps u_char pad18;
131 1.1 chopps volatile u_char du_crb;
132 1.1 chopps u_char pad20;
133 1.1 chopps volatile u_char du_tbb;
134 1.1 chopps #define du_rbb du_tbb
135 1.1 chopps u_char pad22;
136 1.1 chopps volatile u_char du_ivr;
137 1.1 chopps u_char pad24;
138 1.1 chopps volatile u_char du_opcr;
139 1.1 chopps #define du_ip du_opcr
140 1.1 chopps u_char pad26;
141 1.1 chopps volatile u_char du_btst;
142 1.1 chopps #define du_strc du_btst
143 1.1 chopps u_char pad28;
144 1.1 chopps volatile u_char du_btrst;
145 1.1 chopps #define du_stpc du_btrst
146 1.1 chopps u_char pad30;
147 1.1 chopps };
148 1.1 chopps
149 1.2 chopps /*
150 1.2 chopps * 68681 DUART serial port registers
151 1.2 chopps */
152 1.1 chopps struct duart_regs {
153 1.1 chopps volatile u_char ch_mr1;
154 1.1 chopps #define ch_mr2 ch_mr1
155 1.1 chopps u_char pad0;
156 1.1 chopps volatile u_char ch_csr;
157 1.1 chopps #define ch_sr ch_csr
158 1.1 chopps u_char pad1;
159 1.1 chopps volatile u_char ch_cr;
160 1.1 chopps u_char pad2;
161 1.1 chopps volatile u_char ch_tb;
162 1.1 chopps #define ch_rb ch_tb
163 1.1 chopps u_char pad3;
164 1.1 chopps };
165 1.1 chopps
166 1.1 chopps struct mfc_softc {
167 1.1 chopps struct device sc_dev;
168 1.2 chopps struct isr sc_isr;
169 1.1 chopps struct mfc_regs *sc_regs;
170 1.1 chopps u_long clk_frq;
171 1.1 chopps u_short ct_val;
172 1.1 chopps u_char ct_usecnt;
173 1.1 chopps u_char imask;
174 1.1 chopps u_char mfc_iii;
175 1.1 chopps u_char last_ip;
176 1.1 chopps };
177 1.1 chopps
178 1.2 chopps #if NMFCS > 0
179 1.1 chopps struct mfcs_softc {
180 1.1 chopps struct device sc_dev;
181 1.6 chopps struct tty *sc_tty;
182 1.1 chopps struct duart_regs *sc_duart;
183 1.1 chopps struct mfc_regs *sc_regs;
184 1.1 chopps struct mfc_softc *sc_mfc;
185 1.9 jtc int swflags;
186 1.1 chopps long flags; /* XXX */
187 1.1 chopps #define CT_USED 1 /* CT in use */
188 1.1 chopps u_short *rptr, *wptr, incnt, ovfl;
189 1.1 chopps u_short inbuf[SERIBUF_SIZE];
190 1.1 chopps char *ptr, *end;
191 1.1 chopps char outbuf[SEROBUF_SIZE];
192 1.9 jtc struct vbl_node vbl_node;
193 1.1 chopps };
194 1.2 chopps #endif
195 1.2 chopps
196 1.2 chopps #if NMFCP > 0
197 1.2 chopps struct mfcp_softc {
198 1.2 chopps };
199 1.2 chopps #endif
200 1.1 chopps
201 1.1 chopps struct mfc_args {
202 1.1 chopps struct zbus_args zargs;
203 1.36 jmc const char *subdev;
204 1.1 chopps char unit;
205 1.1 chopps };
206 1.1 chopps
207 1.25 aymeric int mfcprint(void *auxp, const char *);
208 1.25 aymeric void mfcattach(struct device *, struct device *, void *);
209 1.25 aymeric int mfcmatch(struct device *, struct cfdata *, void *);
210 1.12 veego
211 1.2 chopps #if NMFCS > 0
212 1.25 aymeric int mfcsmatch(struct device *, struct cfdata *, void *);
213 1.25 aymeric void mfcsattach(struct device *, struct device *, void *);
214 1.25 aymeric int mfcsparam( struct tty *, struct termios *);
215 1.25 aymeric int mfcshwiflow(struct tty *, int);
216 1.25 aymeric void mfcsstart(struct tty *);
217 1.25 aymeric int mfcsmctl(dev_t, int, int);
218 1.25 aymeric void mfcsxintr(int);
219 1.25 aymeric void mfcseint(int, int);
220 1.25 aymeric void mfcsmint(register int);
221 1.2 chopps #endif
222 1.12 veego
223 1.2 chopps #if NMFCP > 0
224 1.25 aymeric void mfcpattach(struct device *, struct device *, void *);
225 1.25 aymeric int mfcpmatch(struct device *, struct cfdata *, void *);
226 1.2 chopps #endif
227 1.25 aymeric int mfcintr(void *);
228 1.1 chopps
229 1.31 thorpej CFATTACH_DECL(mfc, sizeof(struct mfc_softc),
230 1.31 thorpej mfcmatch, mfcattach, NULL, NULL);
231 1.10 thorpej
232 1.2 chopps #if NMFCS > 0
233 1.31 thorpej CFATTACH_DECL(mfcs, sizeof(struct mfcs_softc),
234 1.31 thorpej mfcsmatch, mfcsattach, NULL, NULL);
235 1.10 thorpej
236 1.19 thorpej extern struct cfdriver mfcs_cd;
237 1.2 chopps #endif
238 1.2 chopps
239 1.2 chopps #if NMFCP > 0
240 1.31 thorpej CFATTACH_DECL(mfcp, sizeof(struct mfcp_softc),
241 1.31 thorpej mfcpmatch, mfcpattach, NULL, NULL);
242 1.2 chopps #endif
243 1.1 chopps
244 1.29 gehenna dev_type_open(mfcsopen);
245 1.29 gehenna dev_type_close(mfcsclose);
246 1.29 gehenna dev_type_read(mfcsread);
247 1.29 gehenna dev_type_write(mfcswrite);
248 1.29 gehenna dev_type_ioctl(mfcsioctl);
249 1.29 gehenna dev_type_stop(mfcsstop);
250 1.29 gehenna dev_type_tty(mfcstty);
251 1.29 gehenna dev_type_poll(mfcspoll);
252 1.29 gehenna
253 1.29 gehenna const struct cdevsw mfcs_cdevsw = {
254 1.29 gehenna mfcsopen, mfcsclose, mfcsread, mfcswrite, mfcsioctl,
255 1.32 jdolecek mfcsstop, mfcstty, mfcspoll, nommap, ttykqfilter, D_TTY
256 1.29 gehenna };
257 1.12 veego
258 1.1 chopps int mfcs_active;
259 1.1 chopps int mfcsdefaultrate = 38400 /*TTYDEF_SPEED*/;
260 1.9 jtc #define SWFLAGS(dev) (sc->swflags | (((dev) & 0x80) == 0 ? TIOCFLAG_SOFTCAR : 0))
261 1.1 chopps
262 1.4 chopps #ifdef notyet
263 1.4 chopps /*
264 1.4 chopps * MultiFaceCard III, II+ (not supported yet), and
265 1.4 chopps * SerialMaster 500+ (not supported yet)
266 1.4 chopps * baud rate tables for BRG set 1 [not used yet]
267 1.4 chopps */
268 1.4 chopps
269 1.35 matt const struct speedtab mfcs3speedtab1[] = {
270 1.12 veego { 0, 0 },
271 1.12 veego { 100, 0x00 },
272 1.12 veego { 220, 0x11 },
273 1.12 veego { 600, 0x44 },
274 1.12 veego { 1200, 0x55 },
275 1.12 veego { 2400, 0x66 },
276 1.12 veego { 4800, 0x88 },
277 1.12 veego { 9600, 0x99 },
278 1.12 veego { 19200, 0xbb },
279 1.12 veego { 115200, 0xcc },
280 1.12 veego { -1, -1 }
281 1.4 chopps };
282 1.4 chopps
283 1.4 chopps /*
284 1.4 chopps * MultiFaceCard II, I, and SerialMaster 500
285 1.4 chopps * baud rate tables for BRG set 1 [not used yet]
286 1.4 chopps */
287 1.4 chopps
288 1.35 matt const struct speedtab mfcs2speedtab1[] = {
289 1.12 veego { 0, 0 },
290 1.12 veego { 50, 0x00 },
291 1.12 veego { 110, 0x11 },
292 1.12 veego { 300, 0x44 },
293 1.12 veego { 600, 0x55 },
294 1.12 veego { 1200, 0x66 },
295 1.12 veego { 2400, 0x88 },
296 1.12 veego { 4800, 0x99 },
297 1.12 veego { 9600, 0xbb },
298 1.12 veego { 38400, 0xcc },
299 1.12 veego { -1, -1 }
300 1.4 chopps };
301 1.4 chopps #endif
302 1.4 chopps
303 1.4 chopps /*
304 1.4 chopps * MultiFaceCard III, II+ (not supported yet), and
305 1.4 chopps * SerialMaster 500+ (not supported yet)
306 1.4 chopps * baud rate tables for BRG set 2
307 1.4 chopps */
308 1.4 chopps
309 1.35 matt const struct speedtab mfcs3speedtab2[] = {
310 1.12 veego { 0, 0 },
311 1.12 veego { 150, 0x00 },
312 1.12 veego { 200, 0x11 },
313 1.12 veego { 300, 0x33 },
314 1.12 veego { 600, 0x44 },
315 1.12 veego { 1200, 0x55 },
316 1.12 veego { 2400, 0x66 },
317 1.12 veego { 4800, 0x88 },
318 1.12 veego { 9600, 0x99 },
319 1.12 veego { 19200, 0xbb },
320 1.12 veego { 38400, 0xcc },
321 1.12 veego { -1, -1 }
322 1.1 chopps };
323 1.1 chopps
324 1.4 chopps /*
325 1.4 chopps * MultiFaceCard II, I, and SerialMaster 500
326 1.4 chopps * baud rate tables for BRG set 2
327 1.4 chopps */
328 1.4 chopps
329 1.35 matt const struct speedtab mfcs2speedtab2[] = {
330 1.12 veego { 0, 0 },
331 1.12 veego { 75, 0x00 },
332 1.12 veego { 100, 0x11 },
333 1.12 veego { 150, 0x33 },
334 1.12 veego { 300, 0x44 },
335 1.12 veego { 600, 0x55 },
336 1.12 veego { 1200, 0x66 },
337 1.12 veego { 2400, 0x88 },
338 1.12 veego { 4800, 0x99 },
339 1.12 veego { 9600, 0xbb },
340 1.12 veego { 19200, 0xcc },
341 1.12 veego { -1, -1 }
342 1.1 chopps };
343 1.1 chopps
344 1.1 chopps /*
345 1.1 chopps * if we are an bsc/Alf Data MultFaceCard (I, II, and III)
346 1.1 chopps */
347 1.1 chopps int
348 1.25 aymeric mfcmatch(struct device *pdp, struct cfdata *cfp, void *auxp)
349 1.1 chopps {
350 1.1 chopps struct zbus_args *zap;
351 1.1 chopps
352 1.1 chopps zap = auxp;
353 1.1 chopps if (zap->manid == 2092 &&
354 1.1 chopps (zap->prodid == 16 || zap->prodid == 17 || zap->prodid == 18))
355 1.2 chopps
356 1.1 chopps return(1);
357 1.1 chopps return(0);
358 1.1 chopps }
359 1.1 chopps
360 1.1 chopps void
361 1.25 aymeric mfcattach(struct device *pdp, struct device *dp, void *auxp)
362 1.1 chopps {
363 1.1 chopps struct mfc_softc *scc;
364 1.1 chopps struct zbus_args *zap;
365 1.1 chopps struct mfc_args ma;
366 1.1 chopps int unit;
367 1.1 chopps struct mfc_regs *rp;
368 1.1 chopps
369 1.1 chopps zap = auxp;
370 1.2 chopps
371 1.17 christos printf ("\n");
372 1.1 chopps
373 1.1 chopps scc = (struct mfc_softc *)dp;
374 1.39 thorpej unit = device_unit(&scc->sc_dev);
375 1.1 chopps scc->sc_regs = rp = zap->va;
376 1.1 chopps if (zap->prodid == 18)
377 1.1 chopps scc->mfc_iii = 3;
378 1.1 chopps scc->clk_frq = scc->mfc_iii ? 230400 : 115200;
379 1.1 chopps
380 1.1 chopps rp->du_opcr = 0x00; /* configure output port? */
381 1.1 chopps rp->du_btrst = 0x0f; /* clear modem lines */
382 1.1 chopps rp->du_ivr = 0; /* IVR */
383 1.1 chopps rp->du_imr = 0; /* IMR */
384 1.1 chopps rp->du_acr = 0xe0; /* baud rate generate set 2 */
385 1.1 chopps rp->du_ctur = 0;
386 1.1 chopps rp->du_ctlr = 4;
387 1.1 chopps rp->du_csra = 0xcc; /* clock select = 38400 */
388 1.1 chopps rp->du_cra = 0x10; /* reset mode register ptr */
389 1.1 chopps rp->du_cra = 0x20;
390 1.1 chopps rp->du_cra = 0x30;
391 1.1 chopps rp->du_cra = 0x40;
392 1.1 chopps rp->du_mr1a = 0x93; /* MRA1 */
393 1.1 chopps rp->du_mr2a = 0x17; /* MRA2 */
394 1.1 chopps rp->du_csrb = 0xcc; /* clock select = 38400 */
395 1.1 chopps rp->du_crb = 0x10; /* reset mode register ptr */
396 1.1 chopps rp->du_crb = 0x20;
397 1.1 chopps rp->du_crb = 0x30;
398 1.1 chopps rp->du_crb = 0x40;
399 1.1 chopps rp->du_mr1b = 0x93; /* MRB1 */
400 1.1 chopps rp->du_mr2b = 0x17; /* MRB2 */
401 1.1 chopps rp->du_cra = 0x05; /* enable A Rx & Tx */
402 1.1 chopps rp->du_crb = 0x05; /* enable B Rx & Tx */
403 1.1 chopps
404 1.2 chopps scc->sc_isr.isr_intr = mfcintr;
405 1.2 chopps scc->sc_isr.isr_arg = scc;
406 1.2 chopps scc->sc_isr.isr_ipl = 6;
407 1.2 chopps add_isr(&scc->sc_isr);
408 1.1 chopps
409 1.1 chopps /* configure ports */
410 1.1 chopps bcopy(zap, &ma.zargs, sizeof(struct zbus_args));
411 1.1 chopps ma.subdev = "mfcs";
412 1.1 chopps ma.unit = unit * 2;
413 1.1 chopps config_found(dp, &ma, mfcprint);
414 1.1 chopps ma.unit = unit * 2 + 1;
415 1.1 chopps config_found(dp, &ma, mfcprint);
416 1.1 chopps ma.subdev = "mfcp";
417 1.1 chopps ma.unit = unit;
418 1.1 chopps config_found(dp, &ma, mfcprint);
419 1.1 chopps }
420 1.1 chopps
421 1.1 chopps /*
422 1.2 chopps *
423 1.1 chopps */
424 1.1 chopps int
425 1.25 aymeric mfcsmatch(struct device *pdp, struct cfdata *cfp, void *auxp)
426 1.1 chopps {
427 1.1 chopps struct mfc_args *ma;
428 1.1 chopps
429 1.1 chopps ma = auxp;
430 1.1 chopps if (strcmp(ma->subdev, "mfcs") == 0)
431 1.1 chopps return (1);
432 1.1 chopps return (0);
433 1.1 chopps }
434 1.1 chopps
435 1.1 chopps void
436 1.25 aymeric mfcsattach(struct device *pdp, struct device *dp, void *auxp)
437 1.1 chopps {
438 1.1 chopps int unit;
439 1.1 chopps struct mfcs_softc *sc;
440 1.1 chopps struct mfc_softc *scc;
441 1.1 chopps struct mfc_args *ma;
442 1.1 chopps struct mfc_regs *rp;
443 1.1 chopps
444 1.1 chopps sc = (struct mfcs_softc *) dp;
445 1.1 chopps scc = (struct mfc_softc *) pdp;
446 1.1 chopps ma = auxp;
447 1.1 chopps
448 1.1 chopps if (dp) {
449 1.17 christos printf (": input fifo %d output fifo %d\n", SERIBUF_SIZE,
450 1.1 chopps SEROBUF_SIZE);
451 1.1 chopps alloc_sicallback();
452 1.1 chopps }
453 1.1 chopps
454 1.1 chopps unit = ma->unit;
455 1.1 chopps mfcs_active |= 1 << unit;
456 1.1 chopps sc->rptr = sc->wptr = sc->inbuf;
457 1.1 chopps sc->sc_mfc = scc;
458 1.1 chopps sc->sc_regs = rp = scc->sc_regs;
459 1.36 jmc sc->sc_duart = (struct duart_regs *) ((unit & 1) ?
460 1.36 jmc __UNVOLATILE(&rp->du_mr1b) : __UNVOLATILE(&rp->du_mr1a));
461 1.1 chopps /*
462 1.1 chopps * should have only one vbl routine to handle all ports?
463 1.1 chopps */
464 1.9 jtc sc->vbl_node.function = (void (*) (void *)) mfcsmint;
465 1.9 jtc sc->vbl_node.data = (void *) unit;
466 1.9 jtc add_vbl_function(&sc->vbl_node, 1, (void *) unit);
467 1.1 chopps }
468 1.1 chopps
469 1.1 chopps /*
470 1.1 chopps * print diag if pnp is NULL else just extra
471 1.1 chopps */
472 1.1 chopps int
473 1.25 aymeric mfcprint(void *auxp, const char *pnp)
474 1.1 chopps {
475 1.1 chopps if (pnp == NULL)
476 1.1 chopps return(UNCONF);
477 1.1 chopps return(QUIET);
478 1.1 chopps }
479 1.1 chopps
480 1.1 chopps int
481 1.38 christos mfcsopen(dev_t dev, int flag, int mode, struct lwp *l)
482 1.1 chopps {
483 1.1 chopps struct tty *tp;
484 1.6 chopps struct mfcs_softc *sc;
485 1.1 chopps int unit, error, s;
486 1.1 chopps
487 1.1 chopps error = 0;
488 1.1 chopps unit = dev & 0x1f;
489 1.1 chopps
490 1.10 thorpej if (unit >= mfcs_cd.cd_ndevs || (mfcs_active & (1 << unit)) == 0)
491 1.1 chopps return (ENXIO);
492 1.10 thorpej sc = mfcs_cd.cd_devs[unit];
493 1.1 chopps
494 1.1 chopps s = spltty();
495 1.1 chopps
496 1.6 chopps if (sc->sc_tty)
497 1.6 chopps tp = sc->sc_tty;
498 1.13 mhitch else {
499 1.6 chopps tp = sc->sc_tty = ttymalloc();
500 1.13 mhitch tty_attach(tp);
501 1.13 mhitch }
502 1.1 chopps
503 1.1 chopps tp->t_oproc = (void (*) (struct tty *)) mfcsstart;
504 1.1 chopps tp->t_param = mfcsparam;
505 1.1 chopps tp->t_dev = dev;
506 1.1 chopps tp->t_hwiflow = mfcshwiflow;
507 1.1 chopps
508 1.20 mhitch if ((tp->t_state & TS_ISOPEN) == 0 && tp->t_wopen == 0) {
509 1.1 chopps ttychars(tp);
510 1.1 chopps if (tp->t_ispeed == 0) {
511 1.1 chopps /*
512 1.1 chopps * only when cleared do we reset to defaults.
513 1.1 chopps */
514 1.1 chopps tp->t_iflag = TTYDEF_IFLAG;
515 1.1 chopps tp->t_oflag = TTYDEF_OFLAG;
516 1.1 chopps tp->t_cflag = TTYDEF_CFLAG;
517 1.1 chopps tp->t_lflag = TTYDEF_LFLAG;
518 1.1 chopps tp->t_ispeed = tp->t_ospeed = mfcsdefaultrate;
519 1.1 chopps }
520 1.1 chopps /*
521 1.1 chopps * do these all the time
522 1.1 chopps */
523 1.9 jtc if (sc->swflags & TIOCFLAG_CLOCAL)
524 1.1 chopps tp->t_cflag |= CLOCAL;
525 1.9 jtc if (sc->swflags & TIOCFLAG_CRTSCTS)
526 1.1 chopps tp->t_cflag |= CRTSCTS;
527 1.9 jtc if (sc->swflags & TIOCFLAG_MDMBUF)
528 1.1 chopps tp->t_cflag |= MDMBUF;
529 1.1 chopps mfcsparam(tp, &tp->t_termios);
530 1.1 chopps ttsetwater(tp);
531 1.2 chopps
532 1.1 chopps (void)mfcsmctl(dev, TIOCM_DTR | TIOCM_RTS, DMSET);
533 1.2 chopps if ((SWFLAGS(dev) & TIOCFLAG_SOFTCAR) ||
534 1.1 chopps (mfcsmctl(dev, 0, DMGET) & TIOCM_CD))
535 1.1 chopps tp->t_state |= TS_CARR_ON;
536 1.1 chopps else
537 1.1 chopps tp->t_state &= ~TS_CARR_ON;
538 1.37 kleink } else if (tp->t_state & TS_XCLUDE &&
539 1.40 elad kauth_authorize_generic(l->l_proc->p_cred,
540 1.40 elad KAUTH_GENERIC_ISSUSER,
541 1.40 elad &l->l_proc->p_acflag) != 0) {
542 1.1 chopps splx(s);
543 1.1 chopps return(EBUSY);
544 1.1 chopps }
545 1.1 chopps
546 1.1 chopps /*
547 1.1 chopps * if NONBLOCK requested, ignore carrier
548 1.1 chopps */
549 1.1 chopps if (flag & O_NONBLOCK)
550 1.1 chopps goto done;
551 1.1 chopps
552 1.1 chopps /*
553 1.1 chopps * block waiting for carrier
554 1.1 chopps */
555 1.1 chopps while ((tp->t_state & TS_CARR_ON) == 0 && (tp->t_cflag & CLOCAL) == 0) {
556 1.20 mhitch tp->t_wopen++;
557 1.2 chopps error = ttysleep(tp, (caddr_t)&tp->t_rawq,
558 1.1 chopps TTIPRI | PCATCH, ttopen, 0);
559 1.20 mhitch tp->t_wopen--;
560 1.1 chopps if (error) {
561 1.1 chopps splx(s);
562 1.1 chopps return(error);
563 1.1 chopps }
564 1.1 chopps }
565 1.1 chopps done:
566 1.1 chopps /* This is a way to handle lost XON characters */
567 1.1 chopps if ((flag & O_TRUNC) && (tp->t_state & TS_TTSTOP)) {
568 1.1 chopps tp->t_state &= ~TS_TTSTOP;
569 1.1 chopps ttstart (tp);
570 1.1 chopps }
571 1.1 chopps
572 1.1 chopps splx(s);
573 1.1 chopps /*
574 1.1 chopps * Reset the tty pointer, as there could have been a dialout
575 1.1 chopps * use of the tty with a dialin open waiting.
576 1.1 chopps */
577 1.1 chopps tp->t_dev = dev;
578 1.22 aymeric return tp->t_linesw->l_open(dev, tp);
579 1.1 chopps }
580 1.1 chopps
581 1.1 chopps /*ARGSUSED*/
582 1.1 chopps int
583 1.38 christos mfcsclose(dev_t dev, int flag, int mode, struct lwp *l)
584 1.1 chopps {
585 1.1 chopps struct tty *tp;
586 1.1 chopps int unit;
587 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[dev & 31];
588 1.1 chopps struct mfc_softc *scc= sc->sc_mfc;
589 1.1 chopps
590 1.1 chopps unit = dev & 31;
591 1.1 chopps
592 1.6 chopps tp = sc->sc_tty;
593 1.22 aymeric tp->t_linesw->l_close(tp, flag);
594 1.1 chopps sc->sc_duart->ch_cr = 0x70; /* stop break */
595 1.1 chopps
596 1.1 chopps scc->imask &= ~(0x7 << ((unit & 1) * 4));
597 1.1 chopps scc->sc_regs->du_imr = scc->imask;
598 1.1 chopps if (sc->flags & CT_USED) {
599 1.1 chopps --scc->ct_usecnt;
600 1.1 chopps sc->flags &= ~CT_USED;
601 1.1 chopps }
602 1.1 chopps
603 1.1 chopps /*
604 1.1 chopps * If the device is closed, it's close, no matter whether we deal with
605 1.1 chopps * modem control signals nor not.
606 1.1 chopps */
607 1.1 chopps #if 0
608 1.20 mhitch if (tp->t_cflag & HUPCL || tp->t_wopen != 0 ||
609 1.1 chopps (tp->t_state & TS_ISOPEN) == 0)
610 1.1 chopps #endif
611 1.1 chopps (void) mfcsmctl(dev, 0, DMSET);
612 1.1 chopps ttyclose(tp);
613 1.1 chopps #if not_yet
614 1.1 chopps if (tp != &mfcs_cons) {
615 1.9 jtc remove_vbl_function(&sc->vbl_node);
616 1.1 chopps ttyfree(tp);
617 1.6 chopps sc->sc_tty = (struct tty *) NULL;
618 1.1 chopps }
619 1.1 chopps #endif
620 1.1 chopps return (0);
621 1.1 chopps }
622 1.1 chopps
623 1.1 chopps int
624 1.25 aymeric mfcsread(dev_t dev, struct uio *uio, int flag)
625 1.1 chopps {
626 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[dev & 31];
627 1.6 chopps struct tty *tp = sc->sc_tty;
628 1.6 chopps if (tp == NULL)
629 1.1 chopps return(ENXIO);
630 1.22 aymeric return tp->t_linesw->l_read(tp, uio, flag);
631 1.1 chopps }
632 1.1 chopps
633 1.1 chopps int
634 1.25 aymeric mfcswrite(dev_t dev, struct uio *uio, int flag)
635 1.1 chopps {
636 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[dev & 31];
637 1.6 chopps struct tty *tp = sc->sc_tty;
638 1.1 chopps
639 1.6 chopps if (tp == NULL)
640 1.1 chopps return(ENXIO);
641 1.22 aymeric return tp->t_linesw->l_write(tp, uio, flag);
642 1.23 scw }
643 1.23 scw
644 1.23 scw int
645 1.38 christos mfcspoll(dev_t dev, int events, struct lwp *l)
646 1.23 scw {
647 1.23 scw struct mfcs_softc *sc = mfcs_cd.cd_devs[dev & 31];
648 1.23 scw struct tty *tp = sc->sc_tty;
649 1.23 scw
650 1.23 scw if (tp == NULL)
651 1.23 scw return(ENXIO);
652 1.38 christos return ((*tp->t_linesw->l_poll)(tp, events, l));
653 1.1 chopps }
654 1.5 chopps
655 1.5 chopps struct tty *
656 1.25 aymeric mfcstty(dev_t dev)
657 1.5 chopps {
658 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[dev & 31];
659 1.6 chopps
660 1.6 chopps return (sc->sc_tty);
661 1.5 chopps }
662 1.5 chopps
663 1.1 chopps int
664 1.38 christos mfcsioctl(dev_t dev, u_long cmd, caddr_t data, int flag, struct lwp *l)
665 1.1 chopps {
666 1.1 chopps register struct tty *tp;
667 1.1 chopps register int error;
668 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[dev & 31];
669 1.1 chopps
670 1.6 chopps tp = sc->sc_tty;
671 1.1 chopps if (!tp)
672 1.1 chopps return ENXIO;
673 1.1 chopps
674 1.38 christos error = tp->t_linesw->l_ioctl(tp, cmd, data, flag, l);
675 1.28 atatat if (error != EPASSTHROUGH)
676 1.1 chopps return(error);
677 1.1 chopps
678 1.38 christos error = ttioctl(tp, cmd, data, flag, l);
679 1.28 atatat if (error != EPASSTHROUGH)
680 1.1 chopps return(error);
681 1.1 chopps
682 1.1 chopps switch (cmd) {
683 1.1 chopps case TIOCSBRK:
684 1.1 chopps sc->sc_duart->ch_cr = 0x60; /* start break */
685 1.1 chopps break;
686 1.1 chopps
687 1.1 chopps case TIOCCBRK:
688 1.1 chopps sc->sc_duart->ch_cr = 0x70; /* stop break */
689 1.1 chopps break;
690 1.1 chopps
691 1.1 chopps case TIOCSDTR:
692 1.1 chopps (void) mfcsmctl(dev, TIOCM_DTR | TIOCM_RTS, DMBIS);
693 1.1 chopps break;
694 1.1 chopps
695 1.1 chopps case TIOCCDTR:
696 1.1 chopps (void) mfcsmctl(dev, TIOCM_DTR | TIOCM_RTS, DMBIC);
697 1.1 chopps break;
698 1.1 chopps
699 1.1 chopps case TIOCMSET:
700 1.1 chopps (void) mfcsmctl(dev, *(int *) data, DMSET);
701 1.1 chopps break;
702 1.1 chopps
703 1.1 chopps case TIOCMBIS:
704 1.1 chopps (void) mfcsmctl(dev, *(int *) data, DMBIS);
705 1.1 chopps break;
706 1.1 chopps
707 1.1 chopps case TIOCMBIC:
708 1.1 chopps (void) mfcsmctl(dev, *(int *) data, DMBIC);
709 1.1 chopps break;
710 1.1 chopps
711 1.1 chopps case TIOCMGET:
712 1.1 chopps *(int *)data = mfcsmctl(dev, 0, DMGET);
713 1.1 chopps break;
714 1.1 chopps case TIOCGFLAGS:
715 1.1 chopps *(int *)data = SWFLAGS(dev);
716 1.1 chopps break;
717 1.1 chopps case TIOCSFLAGS:
718 1.40 elad error = kauth_authorize_generic(l->l_proc->p_cred,
719 1.40 elad KAUTH_GENERIC_ISSUSER,
720 1.40 elad &l->l_proc->p_acflag);
721 1.1 chopps if (error != 0)
722 1.2 chopps return(EPERM);
723 1.1 chopps
724 1.9 jtc sc->swflags = *(int *)data;
725 1.9 jtc sc->swflags &= /* only allow valid flags */
726 1.1 chopps (TIOCFLAG_SOFTCAR | TIOCFLAG_CLOCAL | TIOCFLAG_CRTSCTS);
727 1.4 chopps /* XXXX need to change duart parameters? */
728 1.1 chopps break;
729 1.1 chopps default:
730 1.28 atatat return(EPASSTHROUGH);
731 1.1 chopps }
732 1.1 chopps
733 1.1 chopps return(0);
734 1.1 chopps }
735 1.1 chopps
736 1.1 chopps int
737 1.25 aymeric mfcsparam(struct tty *tp, struct termios *t)
738 1.1 chopps {
739 1.12 veego int cflag, unit, ospeed;
740 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[tp->t_dev & 31];
741 1.1 chopps struct mfc_softc *scc= sc->sc_mfc;
742 1.2 chopps
743 1.1 chopps cflag = t->c_cflag;
744 1.1 chopps unit = tp->t_dev & 31;
745 1.1 chopps if (sc->flags & CT_USED) {
746 1.1 chopps --scc->ct_usecnt;
747 1.1 chopps sc->flags &= ~CT_USED;
748 1.1 chopps }
749 1.4 chopps ospeed = ttspeedtab(t->c_ospeed, scc->mfc_iii ? mfcs3speedtab2 :
750 1.4 chopps mfcs2speedtab2);
751 1.1 chopps
752 1.1 chopps /*
753 1.1 chopps * If Baud Rate Generator can't generate requested speed,
754 1.1 chopps * try to use the counter/timer.
755 1.1 chopps */
756 1.1 chopps if (ospeed < 0 && (scc->clk_frq % t->c_ospeed) == 0) {
757 1.1 chopps ospeed = scc->clk_frq / t->c_ospeed; /* divisor */
758 1.1 chopps if (scc->ct_usecnt > 0 && scc->ct_val != ospeed)
759 1.1 chopps ospeed = -1;
760 1.1 chopps else {
761 1.1 chopps scc->sc_regs->du_ctur = ospeed >> 8;
762 1.1 chopps scc->sc_regs->du_ctlr = ospeed;
763 1.1 chopps scc->ct_val = ospeed;
764 1.1 chopps ++scc->ct_usecnt;
765 1.1 chopps sc->flags |= CT_USED;
766 1.1 chopps ospeed = 0xdd;
767 1.1 chopps }
768 1.1 chopps }
769 1.1 chopps /* XXXX 68681 duart could handle split speeds */
770 1.1 chopps if (ospeed < 0 || (t->c_ispeed && t->c_ispeed != t->c_ospeed))
771 1.1 chopps return(EINVAL);
772 1.1 chopps
773 1.4 chopps /* XXXX handle parity, character size, stop bits, flow control */
774 1.4 chopps
775 1.2 chopps /*
776 1.1 chopps * copy to tty
777 1.1 chopps */
778 1.1 chopps tp->t_ispeed = t->c_ispeed;
779 1.1 chopps tp->t_ospeed = t->c_ospeed;
780 1.1 chopps tp->t_cflag = cflag;
781 1.1 chopps
782 1.1 chopps /*
783 1.1 chopps * enable interrupts
784 1.1 chopps */
785 1.1 chopps scc->imask |= (0x2 << ((unit & 1) * 4)) | 0x80;
786 1.1 chopps scc->sc_regs->du_imr = scc->imask;
787 1.1 chopps #if defined(DEBUG) && 0
788 1.17 christos printf("mfcsparam: speed %d => %x ct %d imask %x cflag %x\n",
789 1.1 chopps t->c_ospeed, ospeed, scc->ct_val, scc->imask, cflag);
790 1.1 chopps #endif
791 1.1 chopps if (ospeed == 0)
792 1.1 chopps (void)mfcsmctl(tp->t_dev, 0, DMSET); /* hang up line */
793 1.1 chopps else {
794 1.2 chopps /*
795 1.1 chopps * (re)enable DTR
796 1.1 chopps * and set baud rate. (8 bit mode)
797 1.1 chopps */
798 1.1 chopps (void)mfcsmctl(tp->t_dev, TIOCM_DTR | TIOCM_RTS, DMSET);
799 1.1 chopps sc->sc_duart->ch_csr = ospeed;
800 1.1 chopps }
801 1.1 chopps return(0);
802 1.1 chopps }
803 1.1 chopps
804 1.12 veego int
805 1.25 aymeric mfcshwiflow(struct tty *tp, int flag)
806 1.1 chopps {
807 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[tp->t_dev & 31];
808 1.1 chopps int unit = tp->t_dev & 1;
809 1.1 chopps
810 1.1 chopps if (flag)
811 1.1 chopps sc->sc_regs->du_btrst = 1 << unit;
812 1.1 chopps else
813 1.1 chopps sc->sc_regs->du_btst = 1 << unit;
814 1.1 chopps return 1;
815 1.1 chopps }
816 1.1 chopps
817 1.12 veego void
818 1.25 aymeric mfcsstart(struct tty *tp)
819 1.1 chopps {
820 1.1 chopps int cc, s, unit;
821 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[tp->t_dev & 31];
822 1.1 chopps struct mfc_softc *scc= sc->sc_mfc;
823 1.1 chopps
824 1.1 chopps if ((tp->t_state & TS_ISOPEN) == 0)
825 1.1 chopps return;
826 1.1 chopps
827 1.1 chopps unit = tp->t_dev & 1;
828 1.1 chopps
829 1.2 chopps s = splser();
830 1.1 chopps if (tp->t_state & (TS_TIMEOUT | TS_TTSTOP))
831 1.1 chopps goto out;
832 1.1 chopps
833 1.1 chopps cc = tp->t_outq.c_cc;
834 1.1 chopps if (cc <= tp->t_lowat) {
835 1.1 chopps if (tp->t_state & TS_ASLEEP) {
836 1.1 chopps tp->t_state &= ~TS_ASLEEP;
837 1.1 chopps wakeup((caddr_t) & tp->t_outq);
838 1.1 chopps }
839 1.1 chopps selwakeup(&tp->t_wsel);
840 1.1 chopps }
841 1.1 chopps if (cc == 0 || (tp->t_state & TS_BUSY))
842 1.1 chopps goto out;
843 1.1 chopps
844 1.1 chopps /*
845 1.1 chopps * We only do bulk transfers if using CTSRTS flow control, not for
846 1.1 chopps * (probably sloooow) ixon/ixoff devices.
847 1.1 chopps */
848 1.1 chopps if ((tp->t_cflag & CRTSCTS) == 0)
849 1.1 chopps cc = 1;
850 1.1 chopps
851 1.1 chopps /*
852 1.1 chopps * Limit the amount of output we do in one burst
853 1.1 chopps * to prevent hogging the CPU.
854 1.1 chopps */
855 1.1 chopps if (cc > SEROBUF_SIZE)
856 1.1 chopps cc = SEROBUF_SIZE;
857 1.1 chopps cc = q_to_b(&tp->t_outq, sc->outbuf, cc);
858 1.1 chopps if (cc > 0) {
859 1.1 chopps tp->t_state |= TS_BUSY;
860 1.1 chopps
861 1.1 chopps sc->ptr = sc->outbuf;
862 1.1 chopps sc->end = sc->outbuf + cc;
863 1.1 chopps
864 1.1 chopps /*
865 1.1 chopps * Get first character out, then have TBE-interrupts blow out
866 1.1 chopps * further characters, until buffer is empty, and TS_BUSY gets
867 1.2 chopps * cleared.
868 1.1 chopps */
869 1.1 chopps sc->sc_duart->ch_tb = *sc->ptr++;
870 1.1 chopps scc->imask |= 1 << (unit * 4);
871 1.1 chopps sc->sc_regs->du_imr = scc->imask;
872 1.1 chopps }
873 1.1 chopps out:
874 1.1 chopps splx(s);
875 1.1 chopps }
876 1.1 chopps
877 1.1 chopps /*
878 1.1 chopps * Stop output on a line.
879 1.1 chopps */
880 1.1 chopps /*ARGSUSED*/
881 1.15 mycroft void
882 1.25 aymeric mfcsstop(struct tty *tp, int flag)
883 1.1 chopps {
884 1.1 chopps int s;
885 1.1 chopps
886 1.2 chopps s = splser();
887 1.1 chopps if (tp->t_state & TS_BUSY) {
888 1.1 chopps if ((tp->t_state & TS_TTSTOP) == 0)
889 1.1 chopps tp->t_state |= TS_FLUSH;
890 1.1 chopps }
891 1.1 chopps splx(s);
892 1.1 chopps }
893 1.1 chopps
894 1.1 chopps int
895 1.25 aymeric mfcsmctl(dev_t dev, int bits, int how)
896 1.1 chopps {
897 1.1 chopps int unit, s;
898 1.12 veego u_char ub = 0;
899 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[dev & 31];
900 1.1 chopps
901 1.1 chopps unit = dev & 1;
902 1.1 chopps
903 1.1 chopps /*
904 1.1 chopps * convert TIOCM* mask into CIA mask
905 1.1 chopps * which is active low
906 1.1 chopps */
907 1.1 chopps if (how != DMGET) {
908 1.1 chopps /*
909 1.1 chopps * need to save current state of DTR & RTS ?
910 1.1 chopps */
911 1.1 chopps if (bits & TIOCM_DTR)
912 1.1 chopps ub |= 0x04 << unit;
913 1.1 chopps if (bits & TIOCM_RTS)
914 1.1 chopps ub |= 0x01 << unit;
915 1.1 chopps }
916 1.2 chopps s = splser();
917 1.1 chopps switch (how) {
918 1.1 chopps case DMSET:
919 1.1 chopps sc->sc_regs->du_btst = ub;
920 1.4 chopps sc->sc_regs->du_btrst = ub ^ (0x05 << unit);
921 1.1 chopps break;
922 1.1 chopps
923 1.1 chopps case DMBIC:
924 1.1 chopps sc->sc_regs->du_btrst = ub;
925 1.1 chopps ub = ~sc->sc_regs->du_ip;
926 1.1 chopps break;
927 1.1 chopps
928 1.1 chopps case DMBIS:
929 1.1 chopps sc->sc_regs->du_btst = ub;
930 1.1 chopps ub = ~sc->sc_regs->du_ip;
931 1.1 chopps break;
932 1.1 chopps
933 1.1 chopps case DMGET:
934 1.1 chopps ub = ~sc->sc_regs->du_ip;
935 1.1 chopps break;
936 1.1 chopps }
937 1.1 chopps (void)splx(s);
938 1.1 chopps
939 1.4 chopps /* XXXX should keep DTR & RTS states in softc? */
940 1.1 chopps bits = TIOCM_DTR | TIOCM_RTS;
941 1.1 chopps if (ub & (1 << unit))
942 1.1 chopps bits |= TIOCM_CTS;
943 1.1 chopps if (ub & (4 << unit))
944 1.1 chopps bits |= TIOCM_DSR;
945 1.1 chopps if (ub & (0x10 << unit))
946 1.1 chopps bits |= TIOCM_CD;
947 1.4 chopps /* XXXX RI is not supported on all boards */
948 1.1 chopps if (sc->sc_regs->pad26 & (1 << unit))
949 1.1 chopps bits |= TIOCM_RI;
950 1.1 chopps
951 1.1 chopps return(bits);
952 1.1 chopps }
953 1.1 chopps
954 1.1 chopps /*
955 1.2 chopps * Level 6 interrupt processing for the MultiFaceCard 68681 DUART
956 1.1 chopps */
957 1.1 chopps
958 1.1 chopps int
959 1.25 aymeric mfcintr(void *arg)
960 1.1 chopps {
961 1.12 veego struct mfc_softc *scc = arg;
962 1.1 chopps struct mfcs_softc *sc;
963 1.1 chopps struct mfc_regs *regs;
964 1.2 chopps struct tty *tp;
965 1.2 chopps int istat, unit;
966 1.2 chopps u_short c;
967 1.1 chopps
968 1.2 chopps regs = scc->sc_regs;
969 1.2 chopps istat = regs->du_isr & scc->imask;
970 1.2 chopps if (istat == 0)
971 1.2 chopps return (0);
972 1.39 thorpej unit = device_unit(&scc->sc_dev) * 2;
973 1.2 chopps if (istat & 0x02) { /* channel A receive interrupt */
974 1.10 thorpej sc = mfcs_cd.cd_devs[unit];
975 1.2 chopps while (1) {
976 1.2 chopps c = regs->du_sra << 8;
977 1.2 chopps if ((c & 0x0100) == 0)
978 1.2 chopps break;
979 1.2 chopps c |= regs->du_rba;
980 1.2 chopps if (sc->incnt == SERIBUF_SIZE)
981 1.2 chopps ++sc->ovfl;
982 1.2 chopps else {
983 1.2 chopps *sc->wptr++ = c;
984 1.2 chopps if (sc->wptr == sc->inbuf + SERIBUF_SIZE)
985 1.2 chopps sc->wptr = sc->inbuf;
986 1.2 chopps ++sc->incnt;
987 1.2 chopps if (sc->incnt > SERIBUF_SIZE - 16)
988 1.2 chopps regs->du_btrst = 1;
989 1.1 chopps }
990 1.2 chopps if (c & 0x1000)
991 1.2 chopps regs->du_cra = 0x40;
992 1.1 chopps }
993 1.2 chopps }
994 1.2 chopps if (istat & 0x20) { /* channel B receive interrupt */
995 1.10 thorpej sc = mfcs_cd.cd_devs[unit + 1];
996 1.2 chopps while (1) {
997 1.2 chopps c = regs->du_srb << 8;
998 1.2 chopps if ((c & 0x0100) == 0)
999 1.2 chopps break;
1000 1.2 chopps c |= regs->du_rbb;
1001 1.2 chopps if (sc->incnt == SERIBUF_SIZE)
1002 1.2 chopps ++sc->ovfl;
1003 1.2 chopps else {
1004 1.2 chopps *sc->wptr++ = c;
1005 1.2 chopps if (sc->wptr == sc->inbuf + SERIBUF_SIZE)
1006 1.2 chopps sc->wptr = sc->inbuf;
1007 1.2 chopps ++sc->incnt;
1008 1.2 chopps if (sc->incnt > SERIBUF_SIZE - 16)
1009 1.2 chopps regs->du_btrst = 2;
1010 1.1 chopps }
1011 1.2 chopps if (c & 0x1000)
1012 1.2 chopps regs->du_crb = 0x40;
1013 1.1 chopps }
1014 1.2 chopps }
1015 1.2 chopps if (istat & 0x01) { /* channel A transmit interrupt */
1016 1.10 thorpej sc = mfcs_cd.cd_devs[unit];
1017 1.6 chopps tp = sc->sc_tty;
1018 1.2 chopps if (sc->ptr == sc->end) {
1019 1.2 chopps tp->t_state &= ~(TS_BUSY | TS_FLUSH);
1020 1.2 chopps scc->imask &= ~0x01;
1021 1.2 chopps regs->du_imr = scc->imask;
1022 1.22 aymeric add_sicallback (tp->t_linesw ?
1023 1.21 eeh (sifunc_t)tp->t_linesw->l_start
1024 1.8 chopps : (sifunc_t)mfcsstart, tp, NULL);
1025 1.2 chopps
1026 1.1 chopps }
1027 1.2 chopps else
1028 1.2 chopps regs->du_tba = *sc->ptr++;
1029 1.2 chopps }
1030 1.2 chopps if (istat & 0x10) { /* channel B transmit interrupt */
1031 1.10 thorpej sc = mfcs_cd.cd_devs[unit + 1];
1032 1.6 chopps tp = sc->sc_tty;
1033 1.2 chopps if (sc->ptr == sc->end) {
1034 1.2 chopps tp->t_state &= ~(TS_BUSY | TS_FLUSH);
1035 1.2 chopps scc->imask &= ~0x10;
1036 1.2 chopps regs->du_imr = scc->imask;
1037 1.22 aymeric add_sicallback (tp->t_linesw ?
1038 1.21 eeh (sifunc_t)tp->t_linesw->l_start
1039 1.8 chopps : (sifunc_t)mfcsstart, tp, NULL);
1040 1.1 chopps }
1041 1.2 chopps else
1042 1.2 chopps regs->du_tbb = *sc->ptr++;
1043 1.2 chopps }
1044 1.2 chopps if (istat & 0x80) { /* input port change interrupt */
1045 1.2 chopps c = regs->du_ipcr;
1046 1.17 christos printf ("%s: ipcr %02x", scc->sc_dev.dv_xname, c);
1047 1.1 chopps }
1048 1.2 chopps return(1);
1049 1.1 chopps }
1050 1.1 chopps
1051 1.12 veego void
1052 1.25 aymeric mfcsxintr(int unit)
1053 1.1 chopps {
1054 1.1 chopps int s1, s2, ovfl;
1055 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[unit];
1056 1.6 chopps struct tty *tp = sc->sc_tty;
1057 1.1 chopps
1058 1.1 chopps /*
1059 1.1 chopps * Make sure we're not interrupted by another
1060 1.1 chopps * vbl, but allow level6 ints
1061 1.1 chopps */
1062 1.1 chopps s1 = spltty();
1063 1.1 chopps
1064 1.1 chopps /*
1065 1.1 chopps * pass along any acumulated information
1066 1.1 chopps * while input is not blocked
1067 1.1 chopps */
1068 1.1 chopps while (sc->incnt && (tp->t_state & TS_TBLOCK) == 0) {
1069 1.2 chopps /*
1070 1.1 chopps * no collision with ser_fastint()
1071 1.1 chopps */
1072 1.1 chopps mfcseint(unit, *sc->rptr++);
1073 1.1 chopps
1074 1.1 chopps ovfl = 0;
1075 1.1 chopps /* lock against mfcs_fastint() */
1076 1.2 chopps s2 = splser();
1077 1.1 chopps --sc->incnt;
1078 1.1 chopps if (sc->rptr == sc->inbuf + SERIBUF_SIZE)
1079 1.1 chopps sc->rptr = sc->inbuf;
1080 1.1 chopps if (sc->ovfl != 0) {
1081 1.1 chopps ovfl = sc->ovfl;
1082 1.1 chopps sc->ovfl = 0;
1083 1.1 chopps }
1084 1.1 chopps splx(s2);
1085 1.1 chopps if (ovfl != 0)
1086 1.1 chopps log(LOG_WARNING, "%s: %d buffer overflow!\n",
1087 1.1 chopps sc->sc_dev.dv_xname, ovfl);
1088 1.1 chopps }
1089 1.1 chopps if (sc->incnt == 0 && (tp->t_state & TS_TBLOCK) == 0) {
1090 1.4 chopps sc->sc_regs->du_btst = 1 << unit; /* XXXX */
1091 1.1 chopps }
1092 1.1 chopps splx(s1);
1093 1.1 chopps }
1094 1.1 chopps
1095 1.12 veego void
1096 1.25 aymeric mfcseint(int unit, int stat)
1097 1.1 chopps {
1098 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[unit];
1099 1.1 chopps struct tty *tp;
1100 1.1 chopps u_char ch;
1101 1.1 chopps int c;
1102 1.1 chopps
1103 1.6 chopps tp = sc->sc_tty;
1104 1.1 chopps ch = stat & 0xff;
1105 1.1 chopps c = ch;
1106 1.1 chopps
1107 1.1 chopps if ((tp->t_state & TS_ISOPEN) == 0) {
1108 1.1 chopps #ifdef KGDB
1109 1.29 gehenna extern const struct cdevsw ser_cdevsw;
1110 1.29 gehenna int maj;
1111 1.29 gehenna
1112 1.1 chopps /* we don't care about parity errors */
1113 1.29 gehenna maj = cdevsw_lookup_major(&ser_cdevsw);
1114 1.29 gehenna if (kgdb_dev == makedev(maj, unit) && c == FRAME_END)
1115 1.1 chopps kgdb_connect(0); /* trap into kgdb */
1116 1.1 chopps #endif
1117 1.1 chopps return;
1118 1.1 chopps }
1119 1.1 chopps
1120 1.1 chopps /*
1121 1.1 chopps * Check for break and (if enabled) parity error.
1122 1.1 chopps */
1123 1.1 chopps if (stat & 0xc000)
1124 1.1 chopps c |= TTY_FE;
1125 1.1 chopps else if (stat & 0x2000)
1126 1.1 chopps c |= TTY_PE;
1127 1.1 chopps
1128 1.1 chopps if (stat & 0x1000)
1129 1.2 chopps log(LOG_WARNING, "%s: fifo overflow\n",
1130 1.10 thorpej ((struct mfcs_softc *)mfcs_cd.cd_devs[unit])->sc_dev.dv_xname);
1131 1.1 chopps
1132 1.22 aymeric tp->t_linesw->l_rint(c, tp);
1133 1.1 chopps }
1134 1.1 chopps
1135 1.1 chopps /*
1136 1.1 chopps * This interrupt is periodically invoked in the vertical blank
1137 1.1 chopps * interrupt. It's used to keep track of the modem control lines
1138 1.1 chopps * and (new with the fast_int code) to move accumulated data
1139 1.1 chopps * up into the tty layer.
1140 1.1 chopps */
1141 1.1 chopps void
1142 1.25 aymeric mfcsmint(int unit)
1143 1.1 chopps {
1144 1.1 chopps struct tty *tp;
1145 1.10 thorpej struct mfcs_softc *sc = mfcs_cd.cd_devs[unit];
1146 1.1 chopps u_char stat, last, istat;
1147 1.1 chopps
1148 1.6 chopps tp = sc->sc_tty;
1149 1.1 chopps if (!tp)
1150 1.1 chopps return;
1151 1.1 chopps
1152 1.20 mhitch if ((tp->t_state & TS_ISOPEN) == 0 && tp->t_wopen == 0) {
1153 1.1 chopps sc->rptr = sc->wptr = sc->inbuf;
1154 1.1 chopps sc->incnt = 0;
1155 1.1 chopps return;
1156 1.1 chopps }
1157 1.1 chopps /*
1158 1.1 chopps * empty buffer
1159 1.1 chopps */
1160 1.1 chopps mfcsxintr(unit);
1161 1.1 chopps
1162 1.1 chopps stat = ~sc->sc_regs->du_ip;
1163 1.1 chopps last = sc->sc_mfc->last_ip;
1164 1.1 chopps sc->sc_mfc->last_ip = stat;
1165 1.1 chopps
1166 1.1 chopps /*
1167 1.1 chopps * check whether any interesting signal changed state
1168 1.1 chopps */
1169 1.1 chopps istat = stat ^ last;
1170 1.1 chopps
1171 1.1 chopps if ((istat & (0x10 << (unit & 1))) && /* CD changed */
1172 1.1 chopps (SWFLAGS(tp->t_dev) & TIOCFLAG_SOFTCAR) == 0) {
1173 1.1 chopps if (stat & (0x10 << (unit & 1)))
1174 1.22 aymeric tp->t_linesw->l_modem(tp, 1);
1175 1.22 aymeric else if (tp->t_linesw->l_modem(tp, 0) == 0) {
1176 1.1 chopps sc->sc_regs->du_btrst = 0x0a << (unit & 1);
1177 1.1 chopps }
1178 1.1 chopps }
1179 1.1 chopps }
1180