spi.c revision 1.11 1 1.11 mlelstv /* $NetBSD: spi.c,v 1.11 2019/03/09 07:53:12 mlelstv Exp $ */
2 1.1 gdamore
3 1.1 gdamore /*-
4 1.1 gdamore * Copyright (c) 2006 Urbana-Champaign Independent Media Center.
5 1.1 gdamore * Copyright (c) 2006 Garrett D'Amore.
6 1.1 gdamore * All rights reserved.
7 1.1 gdamore *
8 1.1 gdamore * Portions of this code were written by Garrett D'Amore for the
9 1.1 gdamore * Champaign-Urbana Community Wireless Network Project.
10 1.1 gdamore *
11 1.1 gdamore * Redistribution and use in source and binary forms, with or
12 1.1 gdamore * without modification, are permitted provided that the following
13 1.1 gdamore * conditions are met:
14 1.1 gdamore * 1. Redistributions of source code must retain the above copyright
15 1.1 gdamore * notice, this list of conditions and the following disclaimer.
16 1.1 gdamore * 2. Redistributions in binary form must reproduce the above
17 1.1 gdamore * copyright notice, this list of conditions and the following
18 1.1 gdamore * disclaimer in the documentation and/or other materials provided
19 1.1 gdamore * with the distribution.
20 1.1 gdamore * 3. All advertising materials mentioning features or use of this
21 1.1 gdamore * software must display the following acknowledgements:
22 1.1 gdamore * This product includes software developed by the Urbana-Champaign
23 1.1 gdamore * Independent Media Center.
24 1.1 gdamore * This product includes software developed by Garrett D'Amore.
25 1.1 gdamore * 4. Urbana-Champaign Independent Media Center's name and Garrett
26 1.1 gdamore * D'Amore's name may not be used to endorse or promote products
27 1.1 gdamore * derived from this software without specific prior written permission.
28 1.1 gdamore *
29 1.1 gdamore * THIS SOFTWARE IS PROVIDED BY THE URBANA-CHAMPAIGN INDEPENDENT
30 1.1 gdamore * MEDIA CENTER AND GARRETT D'AMORE ``AS IS'' AND ANY EXPRESS OR
31 1.1 gdamore * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
32 1.1 gdamore * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
33 1.1 gdamore * ARE DISCLAIMED. IN NO EVENT SHALL THE URBANA-CHAMPAIGN INDEPENDENT
34 1.1 gdamore * MEDIA CENTER OR GARRETT D'AMORE BE LIABLE FOR ANY DIRECT, INDIRECT,
35 1.1 gdamore * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
36 1.1 gdamore * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
37 1.1 gdamore * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
38 1.1 gdamore * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
39 1.1 gdamore * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
40 1.1 gdamore * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
41 1.1 gdamore * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
42 1.1 gdamore */
43 1.1 gdamore
44 1.1 gdamore #include <sys/cdefs.h>
45 1.11 mlelstv __KERNEL_RCSID(0, "$NetBSD: spi.c,v 1.11 2019/03/09 07:53:12 mlelstv Exp $");
46 1.1 gdamore
47 1.1 gdamore #include "locators.h"
48 1.1 gdamore
49 1.1 gdamore #include <sys/param.h>
50 1.1 gdamore #include <sys/systm.h>
51 1.1 gdamore #include <sys/device.h>
52 1.10 mlelstv #include <sys/conf.h>
53 1.1 gdamore #include <sys/malloc.h>
54 1.5 rmind #include <sys/mutex.h>
55 1.5 rmind #include <sys/condvar.h>
56 1.1 gdamore #include <sys/errno.h>
57 1.1 gdamore
58 1.1 gdamore #include <dev/spi/spivar.h>
59 1.10 mlelstv #include <dev/spi/spi_io.h>
60 1.10 mlelstv
61 1.10 mlelstv #include "ioconf.h"
62 1.10 mlelstv #include "locators.h"
63 1.1 gdamore
64 1.1 gdamore struct spi_softc {
65 1.1 gdamore struct spi_controller sc_controller;
66 1.1 gdamore int sc_mode;
67 1.1 gdamore int sc_speed;
68 1.10 mlelstv int sc_slave;
69 1.1 gdamore int sc_nslaves;
70 1.1 gdamore struct spi_handle *sc_slaves;
71 1.10 mlelstv kmutex_t sc_lock;
72 1.10 mlelstv kcondvar_t sc_cv;
73 1.10 mlelstv int sc_flags;
74 1.10 mlelstv #define SPIC_BUSY 1
75 1.10 mlelstv };
76 1.10 mlelstv
77 1.10 mlelstv static dev_type_open(spi_open);
78 1.10 mlelstv static dev_type_close(spi_close);
79 1.10 mlelstv static dev_type_ioctl(spi_ioctl);
80 1.10 mlelstv
81 1.10 mlelstv const struct cdevsw spi_cdevsw = {
82 1.10 mlelstv .d_open = spi_open,
83 1.10 mlelstv .d_close = spi_close,
84 1.10 mlelstv .d_read = noread,
85 1.10 mlelstv .d_write = nowrite,
86 1.10 mlelstv .d_ioctl = spi_ioctl,
87 1.10 mlelstv .d_stop = nostop,
88 1.10 mlelstv .d_tty = notty,
89 1.10 mlelstv .d_poll = nopoll,
90 1.10 mlelstv .d_mmap = nommap,
91 1.10 mlelstv .d_kqfilter = nokqfilter,
92 1.10 mlelstv .d_discard = nodiscard,
93 1.10 mlelstv .d_flag = D_OTHER
94 1.1 gdamore };
95 1.1 gdamore
96 1.1 gdamore /*
97 1.1 gdamore * SPI slave device. We have one of these per slave.
98 1.1 gdamore */
99 1.1 gdamore struct spi_handle {
100 1.1 gdamore struct spi_softc *sh_sc;
101 1.1 gdamore struct spi_controller *sh_controller;
102 1.1 gdamore int sh_slave;
103 1.10 mlelstv int sh_mode;
104 1.10 mlelstv int sh_speed;
105 1.1 gdamore };
106 1.1 gdamore
107 1.10 mlelstv #define SPI_MAXDATA 4096
108 1.10 mlelstv
109 1.1 gdamore /*
110 1.1 gdamore * API for bus drivers.
111 1.1 gdamore */
112 1.1 gdamore
113 1.1 gdamore int
114 1.1 gdamore spibus_print(void *aux, const char *pnp)
115 1.1 gdamore {
116 1.1 gdamore
117 1.1 gdamore if (pnp != NULL)
118 1.1 gdamore aprint_normal("spi at %s", pnp);
119 1.1 gdamore
120 1.1 gdamore return (UNCONF);
121 1.1 gdamore }
122 1.1 gdamore
123 1.1 gdamore
124 1.1 gdamore static int
125 1.3 xtraeme spi_match(device_t parent, cfdata_t cf, void *aux)
126 1.1 gdamore {
127 1.5 rmind
128 1.1 gdamore return 1;
129 1.1 gdamore }
130 1.1 gdamore
131 1.1 gdamore static int
132 1.1 gdamore spi_print(void *aux, const char *pnp)
133 1.1 gdamore {
134 1.1 gdamore struct spi_attach_args *sa = aux;
135 1.1 gdamore
136 1.1 gdamore if (sa->sa_handle->sh_slave != -1)
137 1.1 gdamore aprint_normal(" slave %d", sa->sa_handle->sh_slave);
138 1.1 gdamore
139 1.1 gdamore return (UNCONF);
140 1.1 gdamore }
141 1.1 gdamore
142 1.1 gdamore static int
143 1.3 xtraeme spi_search(device_t parent, cfdata_t cf, const int *ldesc, void *aux)
144 1.1 gdamore {
145 1.3 xtraeme struct spi_softc *sc = device_private(parent);
146 1.1 gdamore struct spi_attach_args sa;
147 1.1 gdamore int addr;
148 1.1 gdamore
149 1.1 gdamore addr = cf->cf_loc[SPICF_SLAVE];
150 1.1 gdamore if ((addr < 0) || (addr >= sc->sc_controller.sct_nslaves)) {
151 1.1 gdamore return -1;
152 1.1 gdamore }
153 1.1 gdamore
154 1.1 gdamore sa.sa_handle = &sc->sc_slaves[addr];
155 1.1 gdamore
156 1.1 gdamore if (config_match(parent, cf, &sa) > 0)
157 1.1 gdamore config_attach(parent, cf, &sa, spi_print);
158 1.1 gdamore
159 1.1 gdamore return 0;
160 1.1 gdamore }
161 1.1 gdamore
162 1.1 gdamore /*
163 1.1 gdamore * API for device drivers.
164 1.1 gdamore *
165 1.1 gdamore * We provide wrapper routines to decouple the ABI for the SPI
166 1.1 gdamore * device drivers from the ABI for the SPI bus drivers.
167 1.1 gdamore */
168 1.1 gdamore static void
169 1.3 xtraeme spi_attach(device_t parent, device_t self, void *aux)
170 1.1 gdamore {
171 1.1 gdamore struct spi_softc *sc = device_private(self);
172 1.1 gdamore struct spibus_attach_args *sba = aux;
173 1.1 gdamore int i;
174 1.1 gdamore
175 1.1 gdamore aprint_naive(": SPI bus\n");
176 1.1 gdamore aprint_normal(": SPI bus\n");
177 1.1 gdamore
178 1.10 mlelstv mutex_init(&sc->sc_lock, MUTEX_DEFAULT, IPL_BIO);
179 1.10 mlelstv cv_init(&sc->sc_cv, "spictl");
180 1.10 mlelstv
181 1.1 gdamore sc->sc_controller = *sba->sba_controller;
182 1.8 rkujawa sc->sc_nslaves = sba->sba_controller->sct_nslaves;
183 1.1 gdamore /* allocate slave structures */
184 1.1 gdamore sc->sc_slaves = malloc(sizeof (struct spi_handle) * sc->sc_nslaves,
185 1.1 gdamore M_DEVBUF, M_WAITOK | M_ZERO);
186 1.1 gdamore
187 1.1 gdamore sc->sc_speed = 0;
188 1.2 gdamore sc->sc_mode = -1;
189 1.10 mlelstv sc->sc_slave = -1;
190 1.1 gdamore
191 1.1 gdamore /*
192 1.1 gdamore * Initialize slave handles
193 1.1 gdamore */
194 1.1 gdamore for (i = 0; i < sc->sc_nslaves; i++) {
195 1.1 gdamore sc->sc_slaves[i].sh_slave = i;
196 1.1 gdamore sc->sc_slaves[i].sh_sc = sc;
197 1.1 gdamore sc->sc_slaves[i].sh_controller = &sc->sc_controller;
198 1.1 gdamore }
199 1.1 gdamore
200 1.1 gdamore /*
201 1.1 gdamore * Locate and attach child devices
202 1.1 gdamore */
203 1.1 gdamore config_search_ia(spi_search, self, "spi", NULL);
204 1.1 gdamore }
205 1.1 gdamore
206 1.10 mlelstv static int
207 1.10 mlelstv spi_open(dev_t dev, int flag, int fmt, lwp_t *l)
208 1.10 mlelstv {
209 1.10 mlelstv struct spi_softc *sc = device_lookup_private(&spi_cd, minor(dev));
210 1.10 mlelstv
211 1.10 mlelstv if (sc == NULL)
212 1.10 mlelstv return ENXIO;
213 1.10 mlelstv
214 1.10 mlelstv return 0;
215 1.10 mlelstv }
216 1.10 mlelstv
217 1.10 mlelstv static int
218 1.10 mlelstv spi_close(dev_t dev, int flag, int fmt, lwp_t *l)
219 1.10 mlelstv {
220 1.10 mlelstv
221 1.10 mlelstv return 0;
222 1.10 mlelstv }
223 1.10 mlelstv
224 1.10 mlelstv static int
225 1.10 mlelstv spi_ioctl(dev_t dev, u_long cmd, void *data, int flag, lwp_t *l)
226 1.10 mlelstv {
227 1.10 mlelstv struct spi_softc *sc = device_lookup_private(&spi_cd, minor(dev));
228 1.10 mlelstv struct spi_handle *sh;
229 1.10 mlelstv spi_ioctl_configure_t *sic;
230 1.10 mlelstv spi_ioctl_transfer_t *sit;
231 1.10 mlelstv uint8_t *sbuf, *rbuf;
232 1.10 mlelstv int error;
233 1.10 mlelstv
234 1.10 mlelstv if (sc == NULL)
235 1.10 mlelstv return ENXIO;
236 1.10 mlelstv
237 1.10 mlelstv switch (cmd) {
238 1.10 mlelstv case SPI_IOCTL_CONFIGURE:
239 1.10 mlelstv sic = (spi_ioctl_configure_t *)data;
240 1.10 mlelstv if (sic->sic_addr < 0 || sic->sic_addr >= sc->sc_nslaves) {
241 1.10 mlelstv error = EINVAL;
242 1.10 mlelstv break;
243 1.10 mlelstv }
244 1.10 mlelstv sh = &sc->sc_slaves[sic->sic_addr];
245 1.10 mlelstv error = spi_configure(sh, sic->sic_mode, sic->sic_speed);
246 1.10 mlelstv break;
247 1.10 mlelstv case SPI_IOCTL_TRANSFER:
248 1.10 mlelstv sit = (spi_ioctl_transfer_t *)data;
249 1.10 mlelstv if (sit->sit_addr < 0 || sit->sit_addr >= sc->sc_nslaves) {
250 1.10 mlelstv error = EINVAL;
251 1.10 mlelstv break;
252 1.10 mlelstv }
253 1.11 mlelstv if ((sit->sit_send && sit->sit_sendlen == 0)
254 1.11 mlelstv || (sit->sit_recv && sit->sit_recv == 0)) {
255 1.11 mlelstv error = EINVAL;
256 1.11 mlelstv break;
257 1.11 mlelstv }
258 1.10 mlelstv sh = &sc->sc_slaves[sit->sit_addr];
259 1.10 mlelstv sbuf = rbuf = NULL;
260 1.10 mlelstv error = 0;
261 1.11 mlelstv if (sit->sit_send && sit->sit_sendlen <= SPI_MAXDATA) {
262 1.10 mlelstv sbuf = malloc(sit->sit_sendlen, M_DEVBUF, M_WAITOK);
263 1.10 mlelstv error = copyin(sit->sit_send, sbuf, sit->sit_sendlen);
264 1.10 mlelstv }
265 1.11 mlelstv if (sit->sit_recv && sit->sit_recvlen <= SPI_MAXDATA) {
266 1.10 mlelstv rbuf = malloc(sit->sit_recvlen, M_DEVBUF, M_WAITOK);
267 1.10 mlelstv }
268 1.10 mlelstv if (error == 0) {
269 1.10 mlelstv if (sbuf && rbuf)
270 1.10 mlelstv error = spi_send_recv(sh,
271 1.10 mlelstv sit->sit_sendlen, sbuf,
272 1.10 mlelstv sit->sit_recvlen, rbuf);
273 1.10 mlelstv else if (sbuf)
274 1.10 mlelstv error = spi_send(sh,
275 1.10 mlelstv sit->sit_sendlen, sbuf);
276 1.10 mlelstv else if (rbuf)
277 1.10 mlelstv error = spi_recv(sh,
278 1.10 mlelstv sit->sit_recvlen, rbuf);
279 1.10 mlelstv }
280 1.10 mlelstv if (rbuf) {
281 1.10 mlelstv if (error == 0)
282 1.10 mlelstv error = copyout(rbuf, sit->sit_recv,
283 1.10 mlelstv sit->sit_recvlen);
284 1.10 mlelstv free(rbuf, M_DEVBUF);
285 1.10 mlelstv }
286 1.10 mlelstv if (sbuf) {
287 1.10 mlelstv free(sbuf, M_DEVBUF);
288 1.10 mlelstv }
289 1.10 mlelstv break;
290 1.10 mlelstv default:
291 1.10 mlelstv error = ENODEV;
292 1.10 mlelstv break;
293 1.10 mlelstv }
294 1.10 mlelstv
295 1.10 mlelstv return error;
296 1.10 mlelstv }
297 1.10 mlelstv
298 1.3 xtraeme CFATTACH_DECL_NEW(spi, sizeof(struct spi_softc),
299 1.1 gdamore spi_match, spi_attach, NULL, NULL);
300 1.1 gdamore
301 1.1 gdamore /*
302 1.1 gdamore * Configure. This should be the first thing that the SPI driver
303 1.1 gdamore * should do, to configure which mode (e.g. SPI_MODE_0, which is the
304 1.1 gdamore * same as Philips Microwire mode), and speed. If the bus driver
305 1.1 gdamore * cannot run fast enough, then it should just configure the fastest
306 1.1 gdamore * mode that it can support. If the bus driver cannot run slow
307 1.1 gdamore * enough, then the device is incompatible and an error should be
308 1.1 gdamore * returned.
309 1.1 gdamore */
310 1.1 gdamore int
311 1.1 gdamore spi_configure(struct spi_handle *sh, int mode, int speed)
312 1.1 gdamore {
313 1.1 gdamore
314 1.10 mlelstv sh->sh_mode = mode;
315 1.10 mlelstv sh->sh_speed = speed;
316 1.10 mlelstv return 0;
317 1.10 mlelstv }
318 1.10 mlelstv
319 1.10 mlelstv /*
320 1.10 mlelstv * Acquire controller
321 1.10 mlelstv */
322 1.10 mlelstv static void
323 1.10 mlelstv spi_acquire(struct spi_handle *sh)
324 1.10 mlelstv {
325 1.10 mlelstv struct spi_softc *sc = sh->sh_sc;
326 1.10 mlelstv
327 1.10 mlelstv mutex_enter(&sc->sc_lock);
328 1.10 mlelstv while ((sc->sc_flags & SPIC_BUSY) != 0)
329 1.10 mlelstv cv_wait(&sc->sc_cv, &sc->sc_lock);
330 1.10 mlelstv sc->sc_flags |= SPIC_BUSY;
331 1.10 mlelstv mutex_exit(&sc->sc_lock);
332 1.10 mlelstv }
333 1.10 mlelstv
334 1.10 mlelstv /*
335 1.10 mlelstv * Release controller
336 1.10 mlelstv */
337 1.10 mlelstv static void
338 1.10 mlelstv spi_release(struct spi_handle *sh)
339 1.10 mlelstv {
340 1.10 mlelstv struct spi_softc *sc = sh->sh_sc;
341 1.10 mlelstv
342 1.10 mlelstv mutex_enter(&sc->sc_lock);
343 1.10 mlelstv sc->sc_flags &= ~SPIC_BUSY;
344 1.10 mlelstv cv_broadcast(&sc->sc_cv);
345 1.10 mlelstv mutex_exit(&sc->sc_lock);
346 1.1 gdamore }
347 1.1 gdamore
348 1.1 gdamore void
349 1.1 gdamore spi_transfer_init(struct spi_transfer *st)
350 1.1 gdamore {
351 1.1 gdamore
352 1.5 rmind mutex_init(&st->st_lock, MUTEX_DEFAULT, IPL_BIO);
353 1.10 mlelstv cv_init(&st->st_cv, "spixfr");
354 1.5 rmind
355 1.1 gdamore st->st_flags = 0;
356 1.1 gdamore st->st_errno = 0;
357 1.1 gdamore st->st_done = NULL;
358 1.1 gdamore st->st_chunks = NULL;
359 1.1 gdamore st->st_private = NULL;
360 1.1 gdamore st->st_slave = -1;
361 1.1 gdamore }
362 1.1 gdamore
363 1.1 gdamore void
364 1.1 gdamore spi_chunk_init(struct spi_chunk *chunk, int cnt, const uint8_t *wptr,
365 1.1 gdamore uint8_t *rptr)
366 1.1 gdamore {
367 1.1 gdamore
368 1.1 gdamore chunk->chunk_write = chunk->chunk_wptr = wptr;
369 1.6 mrg chunk->chunk_read = chunk->chunk_rptr = rptr;
370 1.1 gdamore chunk->chunk_rresid = chunk->chunk_wresid = chunk->chunk_count = cnt;
371 1.1 gdamore chunk->chunk_next = NULL;
372 1.1 gdamore }
373 1.1 gdamore
374 1.1 gdamore void
375 1.1 gdamore spi_transfer_add(struct spi_transfer *st, struct spi_chunk *chunk)
376 1.1 gdamore {
377 1.1 gdamore struct spi_chunk **cpp;
378 1.1 gdamore
379 1.1 gdamore /* this is an O(n) insert -- perhaps we should use a simpleq? */
380 1.1 gdamore for (cpp = &st->st_chunks; *cpp; cpp = &(*cpp)->chunk_next);
381 1.1 gdamore *cpp = chunk;
382 1.1 gdamore }
383 1.1 gdamore
384 1.1 gdamore int
385 1.1 gdamore spi_transfer(struct spi_handle *sh, struct spi_transfer *st)
386 1.1 gdamore {
387 1.10 mlelstv struct spi_softc *sc = sh->sh_sc;
388 1.1 gdamore struct spi_controller *tag = sh->sh_controller;
389 1.1 gdamore struct spi_chunk *chunk;
390 1.10 mlelstv int error;
391 1.1 gdamore
392 1.1 gdamore /*
393 1.1 gdamore * Initialize "resid" counters and pointers, so that callers
394 1.1 gdamore * and bus drivers don't have to.
395 1.1 gdamore */
396 1.1 gdamore for (chunk = st->st_chunks; chunk; chunk = chunk->chunk_next) {
397 1.1 gdamore chunk->chunk_wresid = chunk->chunk_rresid = chunk->chunk_count;
398 1.1 gdamore chunk->chunk_wptr = chunk->chunk_write;
399 1.1 gdamore chunk->chunk_rptr = chunk->chunk_read;
400 1.1 gdamore }
401 1.1 gdamore
402 1.1 gdamore /*
403 1.10 mlelstv * Match slave and parameters to handle
404 1.1 gdamore */
405 1.1 gdamore st->st_slave = sh->sh_slave;
406 1.1 gdamore
407 1.10 mlelstv /*
408 1.10 mlelstv * Reserve controller during transaction
409 1.10 mlelstv */
410 1.10 mlelstv spi_acquire(sh);
411 1.10 mlelstv
412 1.10 mlelstv st->st_spiprivate = (void *)sh;
413 1.10 mlelstv
414 1.10 mlelstv /*
415 1.10 mlelstv * Reconfigure controller
416 1.10 mlelstv *
417 1.10 mlelstv * XXX backends don't configure per-slave parameters
418 1.10 mlelstv * Whenever we switch slaves or change mode or speed, we
419 1.10 mlelstv * need to tell the backend.
420 1.10 mlelstv */
421 1.10 mlelstv if (sc->sc_slave != sh->sh_slave
422 1.10 mlelstv || sc->sc_mode != sh->sh_mode
423 1.10 mlelstv || sc->sc_speed != sh->sh_speed) {
424 1.10 mlelstv error = (*tag->sct_configure)(tag->sct_cookie,
425 1.10 mlelstv sh->sh_slave, sh->sh_mode, sh->sh_speed);
426 1.10 mlelstv if (error)
427 1.10 mlelstv return error;
428 1.10 mlelstv }
429 1.10 mlelstv sc->sc_mode = sh->sh_mode;
430 1.10 mlelstv sc->sc_speed = sh->sh_speed;
431 1.10 mlelstv sc->sc_slave = sh->sh_slave;
432 1.10 mlelstv
433 1.10 mlelstv error = (*tag->sct_transfer)(tag->sct_cookie, st);
434 1.10 mlelstv
435 1.10 mlelstv return error;
436 1.1 gdamore }
437 1.1 gdamore
438 1.1 gdamore void
439 1.1 gdamore spi_wait(struct spi_transfer *st)
440 1.1 gdamore {
441 1.10 mlelstv struct spi_handle *sh = st->st_spiprivate;
442 1.1 gdamore
443 1.5 rmind mutex_enter(&st->st_lock);
444 1.4 jym while (!(st->st_flags & SPI_F_DONE)) {
445 1.5 rmind cv_wait(&st->st_cv, &st->st_lock);
446 1.1 gdamore }
447 1.5 rmind mutex_exit(&st->st_lock);
448 1.7 jakllsch cv_destroy(&st->st_cv);
449 1.7 jakllsch mutex_destroy(&st->st_lock);
450 1.10 mlelstv
451 1.10 mlelstv /*
452 1.10 mlelstv * End transaction
453 1.10 mlelstv */
454 1.10 mlelstv spi_release(sh);
455 1.1 gdamore }
456 1.1 gdamore
457 1.1 gdamore void
458 1.1 gdamore spi_done(struct spi_transfer *st, int err)
459 1.1 gdamore {
460 1.1 gdamore
461 1.5 rmind mutex_enter(&st->st_lock);
462 1.1 gdamore if ((st->st_errno = err) != 0) {
463 1.1 gdamore st->st_flags |= SPI_F_ERROR;
464 1.1 gdamore }
465 1.1 gdamore st->st_flags |= SPI_F_DONE;
466 1.1 gdamore if (st->st_done != NULL) {
467 1.1 gdamore (*st->st_done)(st);
468 1.1 gdamore } else {
469 1.5 rmind cv_broadcast(&st->st_cv);
470 1.1 gdamore }
471 1.5 rmind mutex_exit(&st->st_lock);
472 1.1 gdamore }
473 1.1 gdamore
474 1.1 gdamore /*
475 1.1 gdamore * Some convenience routines. These routines block until the work
476 1.1 gdamore * is done.
477 1.1 gdamore *
478 1.1 gdamore * spi_recv - receives data from the bus
479 1.1 gdamore *
480 1.1 gdamore * spi_send - sends data to the bus
481 1.1 gdamore *
482 1.1 gdamore * spi_send_recv - sends data to the bus, and then receives. Note that this is
483 1.1 gdamore * done synchronously, i.e. send a command and get the response. This is
484 1.1 gdamore * not full duplex. If you wnat full duplex, you can't use these convenience
485 1.1 gdamore * wrappers.
486 1.1 gdamore */
487 1.1 gdamore int
488 1.1 gdamore spi_recv(struct spi_handle *sh, int cnt, uint8_t *data)
489 1.1 gdamore {
490 1.1 gdamore struct spi_transfer trans;
491 1.1 gdamore struct spi_chunk chunk;
492 1.1 gdamore
493 1.1 gdamore spi_transfer_init(&trans);
494 1.1 gdamore spi_chunk_init(&chunk, cnt, NULL, data);
495 1.1 gdamore spi_transfer_add(&trans, &chunk);
496 1.1 gdamore
497 1.1 gdamore /* enqueue it and wait for it to complete */
498 1.1 gdamore spi_transfer(sh, &trans);
499 1.1 gdamore spi_wait(&trans);
500 1.1 gdamore
501 1.1 gdamore if (trans.st_flags & SPI_F_ERROR)
502 1.1 gdamore return trans.st_errno;
503 1.1 gdamore
504 1.1 gdamore return 0;
505 1.1 gdamore }
506 1.1 gdamore
507 1.1 gdamore int
508 1.1 gdamore spi_send(struct spi_handle *sh, int cnt, const uint8_t *data)
509 1.1 gdamore {
510 1.1 gdamore struct spi_transfer trans;
511 1.1 gdamore struct spi_chunk chunk;
512 1.1 gdamore
513 1.1 gdamore spi_transfer_init(&trans);
514 1.1 gdamore spi_chunk_init(&chunk, cnt, data, NULL);
515 1.1 gdamore spi_transfer_add(&trans, &chunk);
516 1.1 gdamore
517 1.1 gdamore /* enqueue it and wait for it to complete */
518 1.1 gdamore spi_transfer(sh, &trans);
519 1.1 gdamore spi_wait(&trans);
520 1.1 gdamore
521 1.1 gdamore if (trans.st_flags & SPI_F_ERROR)
522 1.1 gdamore return trans.st_errno;
523 1.1 gdamore
524 1.1 gdamore return 0;
525 1.1 gdamore }
526 1.1 gdamore
527 1.1 gdamore int
528 1.1 gdamore spi_send_recv(struct spi_handle *sh, int scnt, const uint8_t *snd,
529 1.1 gdamore int rcnt, uint8_t *rcv)
530 1.1 gdamore {
531 1.1 gdamore struct spi_transfer trans;
532 1.1 gdamore struct spi_chunk chunk1, chunk2;
533 1.1 gdamore
534 1.1 gdamore spi_transfer_init(&trans);
535 1.1 gdamore spi_chunk_init(&chunk1, scnt, snd, NULL);
536 1.1 gdamore spi_chunk_init(&chunk2, rcnt, NULL, rcv);
537 1.1 gdamore spi_transfer_add(&trans, &chunk1);
538 1.1 gdamore spi_transfer_add(&trans, &chunk2);
539 1.1 gdamore
540 1.1 gdamore /* enqueue it and wait for it to complete */
541 1.1 gdamore spi_transfer(sh, &trans);
542 1.1 gdamore spi_wait(&trans);
543 1.1 gdamore
544 1.1 gdamore if (trans.st_flags & SPI_F_ERROR)
545 1.1 gdamore return trans.st_errno;
546 1.1 gdamore
547 1.1 gdamore return 0;
548 1.1 gdamore }
549 1.10 mlelstv
550