ppi.c revision 1.19.22.1 1 1.19.22.1 tls /* $NetBSD: ppi.c,v 1.19.22.1 2012/11/20 03:02:00 tls Exp $ */
2 1.1 gmcgarry
3 1.1 gmcgarry /*-
4 1.1 gmcgarry * Copyright (c) 1996-2003 The NetBSD Foundation, Inc.
5 1.1 gmcgarry * All rights reserved.
6 1.1 gmcgarry *
7 1.1 gmcgarry * This code is derived from software contributed to The NetBSD Foundation
8 1.1 gmcgarry * by Jason R. Thorpe.
9 1.1 gmcgarry *
10 1.1 gmcgarry * Redistribution and use in source and binary forms, with or without
11 1.1 gmcgarry * modification, are permitted provided that the following conditions
12 1.1 gmcgarry * are met:
13 1.1 gmcgarry * 1. Redistributions of source code must retain the above copyright
14 1.1 gmcgarry * notice, this list of conditions and the following disclaimer.
15 1.1 gmcgarry * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 gmcgarry * notice, this list of conditions and the following disclaimer in the
17 1.1 gmcgarry * documentation and/or other materials provided with the distribution.
18 1.1 gmcgarry *
19 1.1 gmcgarry * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 gmcgarry * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 gmcgarry * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 gmcgarry * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 gmcgarry * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 gmcgarry * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 gmcgarry * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 gmcgarry * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 gmcgarry * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 gmcgarry * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 gmcgarry * POSSIBILITY OF SUCH DAMAGE.
30 1.1 gmcgarry */
31 1.1 gmcgarry
32 1.1 gmcgarry /*
33 1.1 gmcgarry * Copyright (c) 1982, 1990, 1993
34 1.1 gmcgarry * The Regents of the University of California. All rights reserved.
35 1.1 gmcgarry *
36 1.1 gmcgarry * Redistribution and use in source and binary forms, with or without
37 1.1 gmcgarry * modification, are permitted provided that the following conditions
38 1.1 gmcgarry * are met:
39 1.1 gmcgarry * 1. Redistributions of source code must retain the above copyright
40 1.1 gmcgarry * notice, this list of conditions and the following disclaimer.
41 1.1 gmcgarry * 2. Redistributions in binary form must reproduce the above copyright
42 1.1 gmcgarry * notice, this list of conditions and the following disclaimer in the
43 1.1 gmcgarry * documentation and/or other materials provided with the distribution.
44 1.2 agc * 3. Neither the name of the University nor the names of its contributors
45 1.1 gmcgarry * may be used to endorse or promote products derived from this software
46 1.1 gmcgarry * without specific prior written permission.
47 1.1 gmcgarry *
48 1.1 gmcgarry * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
49 1.1 gmcgarry * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
50 1.1 gmcgarry * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
51 1.1 gmcgarry * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
52 1.1 gmcgarry * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
53 1.1 gmcgarry * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
54 1.1 gmcgarry * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
55 1.1 gmcgarry * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
56 1.1 gmcgarry * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
57 1.1 gmcgarry * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
58 1.1 gmcgarry * SUCH DAMAGE.
59 1.1 gmcgarry *
60 1.1 gmcgarry * @(#)ppi.c 8.1 (Berkeley) 6/16/93
61 1.1 gmcgarry */
62 1.1 gmcgarry
63 1.1 gmcgarry /*
64 1.1 gmcgarry * Printer/Plotter GPIB interface
65 1.1 gmcgarry */
66 1.1 gmcgarry
67 1.1 gmcgarry #include <sys/cdefs.h>
68 1.19.22.1 tls __KERNEL_RCSID(0, "$NetBSD: ppi.c,v 1.19.22.1 2012/11/20 03:02:00 tls Exp $");
69 1.1 gmcgarry
70 1.1 gmcgarry #include <sys/param.h>
71 1.1 gmcgarry #include <sys/systm.h>
72 1.1 gmcgarry #include <sys/callout.h>
73 1.1 gmcgarry #include <sys/conf.h>
74 1.1 gmcgarry #include <sys/device.h>
75 1.1 gmcgarry #include <sys/malloc.h>
76 1.1 gmcgarry #include <sys/proc.h>
77 1.1 gmcgarry #include <sys/uio.h>
78 1.1 gmcgarry
79 1.1 gmcgarry #include <dev/gpib/gpibvar.h>
80 1.1 gmcgarry
81 1.1 gmcgarry #include <dev/gpib/ppiio.h>
82 1.1 gmcgarry
83 1.1 gmcgarry struct ppi_softc {
84 1.19.22.1 tls device_t sc_dev;
85 1.1 gmcgarry gpib_chipset_tag_t sc_ic;
86 1.1 gmcgarry gpib_handle_t sc_hdl;
87 1.1 gmcgarry
88 1.1 gmcgarry int sc_address; /* GPIB address */
89 1.1 gmcgarry int sc_flags;
90 1.1 gmcgarry int sc_sec;
91 1.1 gmcgarry struct ppiparam sc_param;
92 1.1 gmcgarry #define sc_burst sc_param.burst
93 1.1 gmcgarry #define sc_timo sc_param.timo
94 1.1 gmcgarry #define sc_delay sc_param.delay
95 1.1 gmcgarry struct callout sc_timo_ch;
96 1.1 gmcgarry struct callout sc_start_ch;
97 1.1 gmcgarry };
98 1.1 gmcgarry
99 1.1 gmcgarry /* sc_flags values */
100 1.3 perry #define PPIF_ALIVE 0x01
101 1.3 perry #define PPIF_OPEN 0x02
102 1.1 gmcgarry #define PPIF_UIO 0x04
103 1.1 gmcgarry #define PPIF_TIMO 0x08
104 1.1 gmcgarry #define PPIF_DELAY 0x10
105 1.1 gmcgarry
106 1.17 cegger int ppimatch(device_t, cfdata_t, void *);
107 1.17 cegger void ppiattach(device_t, device_t, void *);
108 1.1 gmcgarry
109 1.19.22.1 tls CFATTACH_DECL_NEW(ppi, sizeof(struct ppi_softc),
110 1.1 gmcgarry ppimatch, ppiattach, NULL, NULL);
111 1.1 gmcgarry
112 1.1 gmcgarry extern struct cfdriver ppi_cd;
113 1.1 gmcgarry
114 1.1 gmcgarry void ppicallback(void *, int);
115 1.1 gmcgarry void ppistart(void *);
116 1.1 gmcgarry
117 1.1 gmcgarry void ppitimo(void *);
118 1.1 gmcgarry int ppirw(dev_t, struct uio *);
119 1.1 gmcgarry int ppihztoms(int);
120 1.1 gmcgarry int ppimstohz(int);
121 1.1 gmcgarry
122 1.1 gmcgarry dev_type_open(ppiopen);
123 1.1 gmcgarry dev_type_close(ppiclose);
124 1.1 gmcgarry dev_type_read(ppiread);
125 1.1 gmcgarry dev_type_write(ppiwrite);
126 1.1 gmcgarry dev_type_ioctl(ppiioctl);
127 1.1 gmcgarry
128 1.1 gmcgarry const struct cdevsw ppi_cdevsw = {
129 1.1 gmcgarry ppiopen, ppiclose, ppiread, ppiwrite, ppiioctl,
130 1.7 cube nostop, notty, nopoll, nommap, nokqfilter, D_OTHER
131 1.1 gmcgarry };
132 1.1 gmcgarry
133 1.1 gmcgarry #define UNIT(x) minor(x)
134 1.1 gmcgarry
135 1.1 gmcgarry #ifdef DEBUG
136 1.1 gmcgarry int ppidebug = 0x80;
137 1.1 gmcgarry #define PDB_FOLLOW 0x01
138 1.1 gmcgarry #define PDB_IO 0x02
139 1.1 gmcgarry #define PDB_NOCHECK 0x80
140 1.1 gmcgarry #define DPRINTF(mask, str) if (ppidebug & (mask)) printf str
141 1.1 gmcgarry #else
142 1.1 gmcgarry #define DPRINTF(mask, str) /* nothing */
143 1.1 gmcgarry #endif
144 1.1 gmcgarry
145 1.1 gmcgarry int
146 1.17 cegger ppimatch(device_t parent, cfdata_t match, void *aux)
147 1.1 gmcgarry {
148 1.1 gmcgarry
149 1.1 gmcgarry return (1);
150 1.1 gmcgarry }
151 1.1 gmcgarry
152 1.1 gmcgarry void
153 1.17 cegger ppiattach(device_t parent, device_t self, void *aux)
154 1.1 gmcgarry {
155 1.6 thorpej struct ppi_softc *sc = device_private(self);
156 1.1 gmcgarry struct gpib_attach_args *ga = aux;
157 1.1 gmcgarry
158 1.1 gmcgarry printf("\n");
159 1.1 gmcgarry
160 1.1 gmcgarry sc->sc_ic = ga->ga_ic;
161 1.1 gmcgarry sc->sc_address = ga->ga_address;
162 1.1 gmcgarry
163 1.10 ad callout_init(&sc->sc_timo_ch, 0);
164 1.10 ad callout_init(&sc->sc_start_ch, 0);
165 1.1 gmcgarry
166 1.1 gmcgarry if (gpibregister(sc->sc_ic, sc->sc_address, ppicallback, sc,
167 1.1 gmcgarry &sc->sc_hdl)) {
168 1.19.22.1 tls aprint_error_dev(sc->sc_dev, "can't register callback\n");
169 1.1 gmcgarry return;
170 1.1 gmcgarry }
171 1.1 gmcgarry
172 1.1 gmcgarry sc->sc_flags = PPIF_ALIVE;
173 1.1 gmcgarry }
174 1.1 gmcgarry
175 1.1 gmcgarry int
176 1.13 cegger ppiopen(dev_t dev, int flags, int fmt, struct lwp *l)
177 1.1 gmcgarry {
178 1.1 gmcgarry struct ppi_softc *sc;
179 1.1 gmcgarry
180 1.13 cegger sc = device_lookup_private(&ppi_cd, UNIT(dev));
181 1.13 cegger if (sc == NULL)
182 1.13 cegger return (ENXIO);
183 1.13 cegger
184 1.18 tsutsui if ((sc->sc_flags & PPIF_ALIVE) == 0)
185 1.1 gmcgarry return (ENXIO);
186 1.1 gmcgarry
187 1.19 tsutsui DPRINTF(PDB_FOLLOW, ("ppiopen(%" PRIx64 ", %x): flags %x\n",
188 1.1 gmcgarry dev, flags, sc->sc_flags));
189 1.1 gmcgarry
190 1.1 gmcgarry if (sc->sc_flags & PPIF_OPEN)
191 1.1 gmcgarry return (EBUSY);
192 1.1 gmcgarry sc->sc_flags |= PPIF_OPEN;
193 1.1 gmcgarry sc->sc_burst = PPI_BURST;
194 1.1 gmcgarry sc->sc_timo = ppimstohz(PPI_TIMO);
195 1.1 gmcgarry sc->sc_delay = ppimstohz(PPI_DELAY);
196 1.1 gmcgarry sc->sc_sec = -1;
197 1.1 gmcgarry return (0);
198 1.1 gmcgarry }
199 1.1 gmcgarry
200 1.1 gmcgarry int
201 1.13 cegger ppiclose(dev_t dev, int flags, int fmt, struct lwp *l)
202 1.1 gmcgarry {
203 1.13 cegger struct ppi_softc *sc;
204 1.13 cegger
205 1.13 cegger sc = device_lookup_private(&ppi_cd, UNIT(dev));
206 1.1 gmcgarry
207 1.19 tsutsui DPRINTF(PDB_FOLLOW, ("ppiclose(%" PRIx64 ", %x): flags %x\n",
208 1.1 gmcgarry dev, flags, sc->sc_flags));
209 1.1 gmcgarry
210 1.1 gmcgarry sc->sc_flags &= ~PPIF_OPEN;
211 1.1 gmcgarry return (0);
212 1.1 gmcgarry }
213 1.1 gmcgarry
214 1.1 gmcgarry void
215 1.14 dsl ppicallback(void *v, int action)
216 1.1 gmcgarry {
217 1.1 gmcgarry struct ppi_softc *sc = v;
218 1.1 gmcgarry
219 1.1 gmcgarry DPRINTF(PDB_FOLLOW, ("ppicallback: v=%p, action=%d\n", v, action));
220 1.1 gmcgarry
221 1.3 perry switch (action) {
222 1.1 gmcgarry case GPIBCBF_START:
223 1.1 gmcgarry ppistart(sc);
224 1.1 gmcgarry case GPIBCBF_INTR:
225 1.1 gmcgarry /* no-op */
226 1.1 gmcgarry break;
227 1.1 gmcgarry #ifdef DEBUG
228 1.1 gmcgarry default:
229 1.1 gmcgarry DPRINTF(PDB_FOLLOW, ("ppicallback: unknown action %d\n",
230 1.1 gmcgarry action));
231 1.1 gmcgarry break;
232 1.1 gmcgarry #endif
233 1.1 gmcgarry }
234 1.1 gmcgarry }
235 1.1 gmcgarry
236 1.1 gmcgarry void
237 1.13 cegger ppistart(void *v)
238 1.1 gmcgarry {
239 1.1 gmcgarry struct ppi_softc *sc = v;
240 1.1 gmcgarry
241 1.19.22.1 tls DPRINTF(PDB_FOLLOW, ("ppistart(%x)\n", device_unit(sc->sc_dev)));
242 1.1 gmcgarry
243 1.1 gmcgarry sc->sc_flags &= ~PPIF_DELAY;
244 1.1 gmcgarry wakeup(sc);
245 1.1 gmcgarry }
246 1.1 gmcgarry
247 1.1 gmcgarry void
248 1.13 cegger ppitimo(void *arg)
249 1.1 gmcgarry {
250 1.1 gmcgarry struct ppi_softc *sc = arg;
251 1.1 gmcgarry
252 1.19.22.1 tls DPRINTF(PDB_FOLLOW, ("ppitimo(%x)\n", device_unit(sc->sc_dev)));
253 1.1 gmcgarry
254 1.1 gmcgarry sc->sc_flags &= ~(PPIF_UIO|PPIF_TIMO);
255 1.1 gmcgarry wakeup(sc);
256 1.1 gmcgarry }
257 1.1 gmcgarry
258 1.1 gmcgarry int
259 1.13 cegger ppiread(dev_t dev, struct uio *uio, int flags)
260 1.1 gmcgarry {
261 1.1 gmcgarry
262 1.19 tsutsui DPRINTF(PDB_FOLLOW, ("ppiread(%" PRIx64 ", %p)\n", dev, uio));
263 1.1 gmcgarry
264 1.1 gmcgarry return (ppirw(dev, uio));
265 1.1 gmcgarry }
266 1.1 gmcgarry
267 1.1 gmcgarry int
268 1.13 cegger ppiwrite(dev_t dev, struct uio *uio, int flags)
269 1.1 gmcgarry {
270 1.1 gmcgarry
271 1.19 tsutsui DPRINTF(PDB_FOLLOW, ("ppiwrite(%" PRIx64 ", %p)\n", dev, uio));
272 1.1 gmcgarry
273 1.1 gmcgarry return (ppirw(dev, uio));
274 1.1 gmcgarry }
275 1.1 gmcgarry
276 1.1 gmcgarry int
277 1.13 cegger ppirw(dev_t dev, struct uio *uio)
278 1.1 gmcgarry {
279 1.13 cegger struct ppi_softc *sc = device_lookup_private(&ppi_cd, UNIT(dev));
280 1.8 ad int s1, s2, len, cnt;
281 1.1 gmcgarry char *cp;
282 1.1 gmcgarry int error = 0, gotdata = 0;
283 1.1 gmcgarry int buflen, address;
284 1.1 gmcgarry char *buf;
285 1.1 gmcgarry
286 1.1 gmcgarry if (uio->uio_resid == 0)
287 1.1 gmcgarry return (0);
288 1.1 gmcgarry
289 1.1 gmcgarry address = sc->sc_address;
290 1.1 gmcgarry
291 1.1 gmcgarry DPRINTF(PDB_FOLLOW|PDB_IO,
292 1.19 tsutsui ("ppirw(%" PRIx64 ", %p, %c): burst %d, timo %d, resid %x\n",
293 1.1 gmcgarry dev, uio, uio->uio_rw == UIO_READ ? 'R' : 'W',
294 1.1 gmcgarry sc->sc_burst, sc->sc_timo, uio->uio_resid));
295 1.1 gmcgarry
296 1.1 gmcgarry buflen = min(sc->sc_burst, uio->uio_resid);
297 1.1 gmcgarry buf = (char *)malloc(buflen, M_DEVBUF, M_WAITOK);
298 1.1 gmcgarry sc->sc_flags |= PPIF_UIO;
299 1.1 gmcgarry if (sc->sc_timo > 0) {
300 1.1 gmcgarry sc->sc_flags |= PPIF_TIMO;
301 1.1 gmcgarry callout_reset(&sc->sc_timo_ch, sc->sc_timo, ppitimo, sc);
302 1.1 gmcgarry }
303 1.1 gmcgarry len = cnt = 0;
304 1.1 gmcgarry while (uio->uio_resid > 0) {
305 1.1 gmcgarry len = min(buflen, uio->uio_resid);
306 1.1 gmcgarry cp = buf;
307 1.1 gmcgarry if (uio->uio_rw == UIO_WRITE) {
308 1.1 gmcgarry error = uiomove(cp, len, uio);
309 1.1 gmcgarry if (error)
310 1.1 gmcgarry break;
311 1.1 gmcgarry }
312 1.1 gmcgarry again:
313 1.8 ad s1 = splsoftclock();
314 1.8 ad s2 = splbio();
315 1.1 gmcgarry if (sc->sc_flags & PPIF_UIO) {
316 1.1 gmcgarry if (gpibrequest(sc->sc_ic, sc->sc_hdl) == 0)
317 1.1 gmcgarry (void) tsleep(sc, PRIBIO + 1, "ppirw", 0);
318 1.1 gmcgarry }
319 1.1 gmcgarry /*
320 1.1 gmcgarry * Check if we timed out during sleep or uiomove
321 1.1 gmcgarry */
322 1.8 ad splx(s2);
323 1.1 gmcgarry if ((sc->sc_flags & PPIF_UIO) == 0) {
324 1.1 gmcgarry DPRINTF(PDB_IO,
325 1.1 gmcgarry ("ppirw: uiomove/sleep timo, flags %x\n",
326 1.1 gmcgarry sc->sc_flags));
327 1.1 gmcgarry if (sc->sc_flags & PPIF_TIMO) {
328 1.1 gmcgarry callout_stop(&sc->sc_timo_ch);
329 1.1 gmcgarry sc->sc_flags &= ~PPIF_TIMO;
330 1.1 gmcgarry }
331 1.8 ad splx(s1);
332 1.1 gmcgarry break;
333 1.1 gmcgarry }
334 1.8 ad splx(s1);
335 1.1 gmcgarry /*
336 1.1 gmcgarry * Perform the operation
337 1.1 gmcgarry */
338 1.1 gmcgarry if (uio->uio_rw == UIO_WRITE)
339 1.1 gmcgarry cnt = gpibsend(sc->sc_ic, address, sc->sc_sec,
340 1.1 gmcgarry cp, len);
341 1.1 gmcgarry else
342 1.1 gmcgarry cnt = gpibrecv(sc->sc_ic, address, sc->sc_sec,
343 1.1 gmcgarry cp, len);
344 1.8 ad s1 = splbio();
345 1.1 gmcgarry gpibrelease(sc->sc_ic, sc->sc_hdl);
346 1.1 gmcgarry DPRINTF(PDB_IO, ("ppirw: %s(%d, %x, %p, %d) -> %d\n",
347 1.1 gmcgarry uio->uio_rw == UIO_READ ? "recv" : "send",
348 1.1 gmcgarry address, sc->sc_sec, cp, len, cnt));
349 1.8 ad splx(s1);
350 1.1 gmcgarry if (uio->uio_rw == UIO_READ) {
351 1.1 gmcgarry if (cnt) {
352 1.1 gmcgarry error = uiomove(cp, cnt, uio);
353 1.1 gmcgarry if (error)
354 1.1 gmcgarry break;
355 1.1 gmcgarry gotdata++;
356 1.1 gmcgarry }
357 1.1 gmcgarry /*
358 1.1 gmcgarry * Didn't get anything this time, but did in the past.
359 1.1 gmcgarry * Consider us done.
360 1.1 gmcgarry */
361 1.1 gmcgarry else if (gotdata)
362 1.1 gmcgarry break;
363 1.1 gmcgarry }
364 1.8 ad s1 = splsoftclock();
365 1.1 gmcgarry /*
366 1.1 gmcgarry * Operation timeout (or non-blocking), quit now.
367 1.1 gmcgarry */
368 1.1 gmcgarry if ((sc->sc_flags & PPIF_UIO) == 0) {
369 1.1 gmcgarry DPRINTF(PDB_IO, ("ppirw: timeout/done\n"));
370 1.8 ad splx(s1);
371 1.1 gmcgarry break;
372 1.1 gmcgarry }
373 1.1 gmcgarry /*
374 1.1 gmcgarry * Implement inter-read delay
375 1.1 gmcgarry */
376 1.1 gmcgarry if (sc->sc_delay > 0) {
377 1.1 gmcgarry sc->sc_flags |= PPIF_DELAY;
378 1.1 gmcgarry callout_reset(&sc->sc_start_ch, sc->sc_delay,
379 1.1 gmcgarry ppistart, sc);
380 1.1 gmcgarry error = tsleep(sc, (PCATCH|PZERO) + 1, "gpib", 0);
381 1.1 gmcgarry if (error) {
382 1.8 ad splx(s1);
383 1.1 gmcgarry break;
384 1.1 gmcgarry }
385 1.1 gmcgarry }
386 1.8 ad splx(s1);
387 1.1 gmcgarry /*
388 1.1 gmcgarry * Must not call uiomove again til we've used all data
389 1.1 gmcgarry * that we already grabbed.
390 1.1 gmcgarry */
391 1.1 gmcgarry if (uio->uio_rw == UIO_WRITE && cnt != len) {
392 1.1 gmcgarry cp += cnt;
393 1.1 gmcgarry len -= cnt;
394 1.1 gmcgarry cnt = 0;
395 1.1 gmcgarry goto again;
396 1.1 gmcgarry }
397 1.1 gmcgarry }
398 1.8 ad s1 = splsoftclock();
399 1.1 gmcgarry if (sc->sc_flags & PPIF_TIMO) {
400 1.1 gmcgarry callout_stop(&sc->sc_timo_ch);
401 1.1 gmcgarry sc->sc_flags &= ~PPIF_TIMO;
402 1.1 gmcgarry }
403 1.1 gmcgarry if (sc->sc_flags & PPIF_DELAY) {
404 1.1 gmcgarry callout_stop(&sc->sc_start_ch);
405 1.1 gmcgarry sc->sc_flags &= ~PPIF_DELAY;
406 1.1 gmcgarry }
407 1.8 ad splx(s1);
408 1.1 gmcgarry /*
409 1.1 gmcgarry * Adjust for those chars that we uiomove'ed but never wrote
410 1.1 gmcgarry */
411 1.1 gmcgarry if (uio->uio_rw == UIO_WRITE && cnt != len) {
412 1.1 gmcgarry uio->uio_resid += (len - cnt);
413 1.1 gmcgarry DPRINTF(PDB_IO, ("ppirw: short write, adjust by %d\n",
414 1.1 gmcgarry len - cnt));
415 1.1 gmcgarry }
416 1.1 gmcgarry free(buf, M_DEVBUF);
417 1.1 gmcgarry DPRINTF(PDB_FOLLOW|PDB_IO, ("ppirw: return %d, resid %d\n",
418 1.1 gmcgarry error, uio->uio_resid));
419 1.1 gmcgarry return (error);
420 1.1 gmcgarry }
421 1.1 gmcgarry
422 1.1 gmcgarry int
423 1.13 cegger ppiioctl(dev_t dev, u_long cmd, void *data, int flag, struct lwp *l)
424 1.1 gmcgarry {
425 1.13 cegger struct ppi_softc *sc = device_lookup_private(&ppi_cd, UNIT(dev));
426 1.1 gmcgarry struct ppiparam *pp, *upp;
427 1.1 gmcgarry int error = 0;
428 1.1 gmcgarry
429 1.1 gmcgarry switch (cmd) {
430 1.1 gmcgarry case PPIIOCGPARAM:
431 1.1 gmcgarry pp = &sc->sc_param;
432 1.1 gmcgarry upp = (struct ppiparam *)data;
433 1.1 gmcgarry upp->burst = pp->burst;
434 1.1 gmcgarry upp->timo = ppihztoms(pp->timo);
435 1.1 gmcgarry upp->delay = ppihztoms(pp->delay);
436 1.1 gmcgarry break;
437 1.1 gmcgarry case PPIIOCSPARAM:
438 1.1 gmcgarry pp = &sc->sc_param;
439 1.1 gmcgarry upp = (struct ppiparam *)data;
440 1.1 gmcgarry if (upp->burst < PPI_BURST_MIN || upp->burst > PPI_BURST_MAX ||
441 1.1 gmcgarry upp->delay < PPI_DELAY_MIN || upp->delay > PPI_DELAY_MAX)
442 1.1 gmcgarry return (EINVAL);
443 1.1 gmcgarry pp->burst = upp->burst;
444 1.1 gmcgarry pp->timo = ppimstohz(upp->timo);
445 1.1 gmcgarry pp->delay = ppimstohz(upp->delay);
446 1.1 gmcgarry break;
447 1.1 gmcgarry case PPIIOCSSEC:
448 1.1 gmcgarry sc->sc_sec = *(int *)data;
449 1.1 gmcgarry break;
450 1.1 gmcgarry default:
451 1.1 gmcgarry return (EINVAL);
452 1.1 gmcgarry }
453 1.1 gmcgarry return (error);
454 1.1 gmcgarry }
455 1.1 gmcgarry
456 1.1 gmcgarry int
457 1.13 cegger ppihztoms(int h)
458 1.1 gmcgarry {
459 1.1 gmcgarry extern int hz;
460 1.1 gmcgarry int m = h;
461 1.1 gmcgarry
462 1.1 gmcgarry if (m > 0)
463 1.1 gmcgarry m = m * 1000 / hz;
464 1.1 gmcgarry return (m);
465 1.1 gmcgarry }
466 1.1 gmcgarry
467 1.1 gmcgarry int
468 1.13 cegger ppimstohz(int m)
469 1.1 gmcgarry {
470 1.1 gmcgarry extern int hz;
471 1.1 gmcgarry int h = m;
472 1.1 gmcgarry
473 1.1 gmcgarry if (h > 0) {
474 1.1 gmcgarry h = h * hz / 1000;
475 1.1 gmcgarry if (h == 0)
476 1.1 gmcgarry h = 1000 / hz;
477 1.1 gmcgarry }
478 1.1 gmcgarry return (h);
479 1.1 gmcgarry }
480