ki2c.c revision 1.39 1 1.39 macallan /* $NetBSD: ki2c.c,v 1.39 2025/08/20 07:55:19 macallan Exp $ */
2 1.1 grant /* Id: ki2c.c,v 1.7 2002/10/05 09:56:05 tsubai Exp */
3 1.1 grant
4 1.1 grant /*-
5 1.1 grant * Copyright (c) 2001 Tsubai Masanari. All rights reserved.
6 1.1 grant *
7 1.1 grant * Redistribution and use in source and binary forms, with or without
8 1.1 grant * modification, are permitted provided that the following conditions
9 1.1 grant * are met:
10 1.1 grant * 1. Redistributions of source code must retain the above copyright
11 1.1 grant * notice, this list of conditions and the following disclaimer.
12 1.1 grant * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 grant * notice, this list of conditions and the following disclaimer in the
14 1.1 grant * documentation and/or other materials provided with the distribution.
15 1.1 grant * 3. The name of the author may not be used to endorse or promote products
16 1.1 grant * derived from this software without specific prior written permission.
17 1.1 grant *
18 1.1 grant * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.1 grant * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.1 grant * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.1 grant * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.1 grant * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 1.1 grant * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 1.1 grant * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 1.1 grant * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 1.1 grant * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
27 1.1 grant * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 1.1 grant */
29 1.1 grant
30 1.1 grant #include <sys/param.h>
31 1.1 grant #include <sys/device.h>
32 1.1 grant #include <sys/systm.h>
33 1.11 ad #include <sys/mutex.h>
34 1.1 grant
35 1.1 grant #include <dev/ofw/openfirm.h>
36 1.1 grant #include <machine/autoconf.h>
37 1.37 macallan #include <powerpc/pic/picvar.h>
38 1.1 grant
39 1.29 macallan #include "opt_ki2c.h"
40 1.3 macallan #include <macppc/dev/ki2cvar.h>
41 1.1 grant
42 1.20 macallan #ifdef KI2C_DEBUG
43 1.20 macallan #define DPRINTF printf
44 1.20 macallan #else
45 1.20 macallan #define DPRINTF while (0) printf
46 1.20 macallan #endif
47 1.20 macallan
48 1.33 mlelstv #define KI2C_EXEC_MAX_CMDLEN 32
49 1.33 mlelstv #define KI2C_EXEC_MAX_BUFLEN 32
50 1.33 mlelstv
51 1.17 matt int ki2c_match(device_t, cfdata_t, void *);
52 1.17 matt void ki2c_attach(device_t, device_t, void *);
53 1.21 macallan inline uint8_t ki2c_readreg(struct ki2c_softc *, int);
54 1.21 macallan inline void ki2c_writereg(struct ki2c_softc *, int, uint8_t);
55 1.1 grant u_int ki2c_getmode(struct ki2c_softc *);
56 1.1 grant void ki2c_setmode(struct ki2c_softc *, u_int);
57 1.1 grant u_int ki2c_getspeed(struct ki2c_softc *);
58 1.1 grant void ki2c_setspeed(struct ki2c_softc *, u_int);
59 1.35 macallan int ki2c_intr(void *);
60 1.1 grant int ki2c_poll(struct ki2c_softc *, int);
61 1.1 grant int ki2c_start(struct ki2c_softc *, int, int, void *, int);
62 1.1 grant int ki2c_read(struct ki2c_softc *, int, int, void *, int);
63 1.3 macallan int ki2c_write(struct ki2c_softc *, int, int, void *, int);
64 1.3 macallan
65 1.3 macallan /* I2C glue */
66 1.3 macallan static int ki2c_i2c_exec(void *, i2c_op_t, i2c_addr_t, const void *, size_t,
67 1.3 macallan void *, size_t, int);
68 1.3 macallan
69 1.1 grant
70 1.18 macallan CFATTACH_DECL_NEW(ki2c, sizeof(struct ki2c_softc), ki2c_match, ki2c_attach,
71 1.9 dogcow NULL, NULL);
72 1.1 grant
73 1.1 grant int
74 1.17 matt ki2c_match(device_t parent, cfdata_t match, void *aux)
75 1.1 grant {
76 1.1 grant struct confargs *ca = aux;
77 1.1 grant
78 1.1 grant if (strcmp(ca->ca_name, "i2c") == 0)
79 1.1 grant return 1;
80 1.1 grant
81 1.1 grant return 0;
82 1.1 grant }
83 1.1 grant
84 1.1 grant void
85 1.17 matt ki2c_attach(device_t parent, device_t self, void *aux)
86 1.1 grant {
87 1.17 matt struct ki2c_softc *sc = device_private(self);
88 1.1 grant struct confargs *ca = aux;
89 1.39 macallan int node = ca->ca_node, root;
90 1.35 macallan uint32_t addr, channel, reg, intr[2];
91 1.28 macallan int rate, child, /*namelen,*/ i2cbus[2] = {0, 0};
92 1.3 macallan struct i2cbus_attach_args iba;
93 1.20 macallan prop_dictionary_t dict = device_properties(self);
94 1.20 macallan prop_array_t cfg;
95 1.37 macallan int devs, devc, intrparent;;
96 1.26 macallan char compat[256], num[8], descr[32];
97 1.22 macallan prop_dictionary_t dev;
98 1.22 macallan prop_data_t data;
99 1.39 macallan char name[32], intr_xname[32], model[32];
100 1.38 macallan uint32_t picbase;
101 1.18 macallan
102 1.18 macallan sc->sc_dev = self;
103 1.21 macallan sc->sc_tag = ca->ca_tag;
104 1.1 grant ca->ca_reg[0] += ca->ca_baseaddr;
105 1.1 grant
106 1.39 macallan root = OF_finddevice("/");
107 1.39 macallan model[0] = 0;
108 1.39 macallan OF_getprop(root, "model", model, 32);
109 1.39 macallan DPRINTF("model %s\n", model);
110 1.1 grant if (OF_getprop(node, "AAPL,i2c-rate", &rate, 4) != 4) {
111 1.20 macallan aprint_error(": cannot get i2c-rate\n");
112 1.1 grant return;
113 1.1 grant }
114 1.20 macallan if (OF_getprop(node, "AAPL,address", &addr, 4) != 4) {
115 1.20 macallan aprint_error(": unable to find i2c address\n");
116 1.1 grant return;
117 1.1 grant }
118 1.21 macallan if (bus_space_map(sc->sc_tag, addr, PAGE_SIZE, 0, &sc->sc_bh) != 0) {
119 1.21 macallan aprint_error_dev(sc->sc_dev, "failed to map registers\n");
120 1.21 macallan return;
121 1.21 macallan }
122 1.21 macallan
123 1.1 grant if (OF_getprop(node, "AAPL,address-step", &sc->sc_regstep, 4) != 4) {
124 1.20 macallan aprint_error(": unable to find i2c address step\n");
125 1.1 grant return;
126 1.1 grant }
127 1.1 grant
128 1.35 macallan if(OF_getprop(node, "interrupts", intr, 8) != 8) {
129 1.35 macallan aprint_error(": can't find interrupt\n");
130 1.35 macallan return;
131 1.35 macallan }
132 1.35 macallan
133 1.37 macallan /*
134 1.37 macallan * on some G5 we have two openpics, one in mac-io, one in /u3
135 1.37 macallan * in order to get interrupts we need to know which one we're
136 1.37 macallan * connected to
137 1.37 macallan */
138 1.37 macallan sc->sc_poll = 0;
139 1.37 macallan
140 1.37 macallan if(OF_getprop(node, "interrupt-parent", &intrparent, 4) == 4) {
141 1.38 macallan uint32_t preg[8];
142 1.37 macallan struct pic_ops *pic;
143 1.37 macallan
144 1.37 macallan sc->sc_poll = 1;
145 1.37 macallan if(OF_getprop(intrparent, "reg", preg, 8) > 4) {
146 1.37 macallan /* now look for a pic with that base... */
147 1.38 macallan picbase = preg[0];
148 1.38 macallan if ((picbase & 0x80000000) == 0) {
149 1.38 macallan /* some OF versions have the openpic's reg as
150 1.38 macallan * an offset into mac-io just to be annoying */
151 1.38 macallan int mio = OF_parent(intrparent);
152 1.38 macallan if (OF_getprop(mio, "ranges", preg, 20) == 20)
153 1.38 macallan picbase += preg[3];
154 1.38 macallan }
155 1.38 macallan DPRINTF("PIC base %08x\n", picbase);
156 1.38 macallan pic = find_pic_by_cookie((void *)picbase);
157 1.37 macallan if (pic != NULL) {
158 1.37 macallan sc->sc_poll = 0;
159 1.37 macallan intr[0] += pic->pic_intrbase;
160 1.37 macallan }
161 1.37 macallan }
162 1.37 macallan }
163 1.37 macallan
164 1.37 macallan if (sc->sc_poll) {
165 1.37 macallan aprint_normal(" polling");
166 1.37 macallan } else aprint_normal(" irq %d", intr[0]);
167 1.35 macallan
168 1.1 grant printf("\n");
169 1.1 grant
170 1.1 grant ki2c_writereg(sc, STATUS, 0);
171 1.1 grant ki2c_writereg(sc, ISR, 0);
172 1.1 grant ki2c_writereg(sc, IER, 0);
173 1.1 grant
174 1.1 grant ki2c_setmode(sc, I2C_STDSUBMODE);
175 1.1 grant ki2c_setspeed(sc, I2C_100kHz); /* XXX rate */
176 1.3 macallan
177 1.3 macallan ki2c_writereg(sc, IER,I2C_INT_DATA|I2C_INT_ADDR|I2C_INT_STOP);
178 1.3 macallan
179 1.20 macallan cfg = prop_array_create();
180 1.20 macallan prop_dictionary_set(dict, "i2c-child-devices", cfg);
181 1.20 macallan prop_object_release(cfg);
182 1.20 macallan
183 1.4 macallan /*
184 1.4 macallan * newer OF puts I2C devices under 'i2c-bus' instead of attaching them
185 1.4 macallan * directly to the ki2c node so we just check if we have a child named
186 1.25 macallan * 'i2c-bus' and if so we attach its children, not ours
187 1.25 macallan *
188 1.25 macallan * XXX
189 1.25 macallan * should probably check for multiple i2c-bus children
190 1.4 macallan */
191 1.28 macallan
192 1.28 macallan int found_busnode = 0;
193 1.25 macallan channel = 0;
194 1.4 macallan child = OF_child(node);
195 1.28 macallan while (child != 0) {
196 1.4 macallan OF_getprop(child, "name", name, sizeof(name));
197 1.25 macallan if (strcmp(name, "i2c-bus") == 0) {
198 1.25 macallan OF_getprop(child, "reg", &channel, sizeof(channel));
199 1.28 macallan i2cbus[channel] = child;
200 1.25 macallan DPRINTF("found channel %x\n", channel);
201 1.28 macallan found_busnode = 1;
202 1.25 macallan }
203 1.4 macallan child = OF_peer(child);
204 1.4 macallan }
205 1.28 macallan if (found_busnode == 0)
206 1.28 macallan i2cbus[0] = node;
207 1.22 macallan
208 1.28 macallan for (channel = 0; channel < 2; channel++) {
209 1.28 macallan devs = OF_child(i2cbus[channel]);
210 1.28 macallan while (devs != 0) {
211 1.28 macallan if (OF_getprop(devs, "name", name, 32) <= 0)
212 1.22 macallan goto skip;
213 1.28 macallan if (OF_getprop(devs, "compatible", compat, 256) <= 0) {
214 1.28 macallan /* some i2c device nodes don't have 'compatible' */
215 1.28 macallan memset(compat, 0, 256);
216 1.28 macallan strncpy(compat, name, 256);
217 1.28 macallan }
218 1.28 macallan if (OF_getprop(devs, "reg", &addr, 4) <= 0)
219 1.28 macallan if (OF_getprop(devs, "i2c-address", &addr, 4) <= 0)
220 1.28 macallan goto skip;
221 1.28 macallan addr |= channel << 8;
222 1.28 macallan addr = addr >> 1;
223 1.28 macallan DPRINTF("-> %s@%x\n", name, addr);
224 1.28 macallan dev = prop_dictionary_create();
225 1.30 macallan prop_dictionary_set_string(dev, "name", name);
226 1.30 macallan data = prop_data_create_copy(compat, strlen(compat)+1);
227 1.28 macallan prop_dictionary_set(dev, "compatible", data);
228 1.28 macallan prop_object_release(data);
229 1.28 macallan prop_dictionary_set_uint32(dev, "addr", addr);
230 1.28 macallan prop_dictionary_set_uint64(dev, "cookie", devs);
231 1.28 macallan /* look for location info for sensors */
232 1.28 macallan devc = OF_child(devs);
233 1.34 macallan if (devc == 0) {
234 1.34 macallan /* old style name info */
235 1.34 macallan uint32_t ids[4];
236 1.34 macallan int len = OF_getprop(devs, "hwsensor-id", ids, 16);
237 1.34 macallan int i = 0, idx = 0;
238 1.34 macallan char buffer[256];
239 1.34 macallan memset(buffer, 0, 256);
240 1.39 macallan if (len <= 0) {
241 1.39 macallan /* no info, fill in what we may know */
242 1.39 macallan if ((strcmp(name, "temp-monitor") == 0) &&
243 1.39 macallan (strcmp(model, "RackMac1,2") == 0)) {
244 1.39 macallan prop_dictionary_set_string(dev, "s00", "CASE");
245 1.39 macallan }
246 1.39 macallan } else {
247 1.39 macallan OF_getprop(devs, "hwsensor-location", buffer, 256);
248 1.39 macallan while (len > 0) {
249 1.39 macallan reg = ids[i];
250 1.39 macallan strcpy(descr, &buffer[idx]);
251 1.39 macallan idx += strlen(descr) + 1;
252 1.39 macallan DPRINTF("found '%s' at %02x\n", descr, reg);
253 1.39 macallan snprintf(num, 7, "s%02x", i);
254 1.39 macallan prop_dictionary_set_string(dev, num, descr);
255 1.39 macallan i++;
256 1.39 macallan len -= 4;
257 1.39 macallan }
258 1.34 macallan }
259 1.34 macallan } else {
260 1.34 macallan while (devc != 0) {
261 1.34 macallan if (OF_getprop(devc, "reg", ®, 4) < 4) goto nope;
262 1.34 macallan if (OF_getprop(devc, "location", descr, 32) <= 0)
263 1.34 macallan goto nope;
264 1.34 macallan DPRINTF("found '%s' at %02x\n", descr, reg);
265 1.34 macallan snprintf(num, 7, "s%02x", reg);
266 1.34 macallan prop_dictionary_set_string(dev, num, descr);
267 1.34 macallan nope:
268 1.34 macallan devc = OF_peer(devc);
269 1.35 macallan }
270 1.28 macallan }
271 1.34 macallan
272 1.28 macallan prop_array_add(cfg, dev);
273 1.28 macallan prop_object_release(dev);
274 1.28 macallan skip:
275 1.28 macallan devs = OF_peer(devs);
276 1.26 macallan }
277 1.3 macallan }
278 1.3 macallan
279 1.35 macallan cv_init(&sc->sc_todev, device_xname(self));
280 1.35 macallan mutex_init(&sc->sc_todevmtx, MUTEX_DEFAULT, IPL_NONE);
281 1.35 macallan
282 1.37 macallan if(sc->sc_poll == 0) {
283 1.37 macallan snprintf(intr_xname, sizeof(intr_xname), "%s intr", device_xname(self));
284 1.37 macallan intr_establish_xname(intr[0], (intr[1] & 1) ? IST_LEVEL : IST_EDGE,
285 1.37 macallan IPL_BIO, ki2c_intr, sc, intr_xname);
286 1.35 macallan
287 1.37 macallan ki2c_writereg(sc, IER, I2C_INT_DATA | I2C_INT_ADDR| I2C_INT_STOP);
288 1.37 macallan }
289 1.35 macallan
290 1.22 macallan /* fill in the i2c tag */
291 1.27 thorpej iic_tag_init(&sc->sc_i2c);
292 1.22 macallan sc->sc_i2c.ic_cookie = sc;
293 1.22 macallan sc->sc_i2c.ic_exec = ki2c_i2c_exec;
294 1.3 macallan
295 1.22 macallan memset(&iba, 0, sizeof(iba));
296 1.22 macallan iba.iba_tag = &sc->sc_i2c;
297 1.32 thorpej config_found(sc->sc_dev, &iba, iicbus_print, CFARGS_NONE);
298 1.22 macallan
299 1.1 grant }
300 1.1 grant
301 1.21 macallan uint8_t
302 1.14 dsl ki2c_readreg(struct ki2c_softc *sc, int reg)
303 1.1 grant {
304 1.1 grant
305 1.21 macallan return bus_space_read_1(sc->sc_tag, sc->sc_bh, sc->sc_regstep * reg);
306 1.1 grant }
307 1.1 grant
308 1.1 grant void
309 1.21 macallan ki2c_writereg(struct ki2c_softc *sc, int reg, uint8_t val)
310 1.1 grant {
311 1.21 macallan
312 1.21 macallan bus_space_write_1(sc->sc_tag, sc->sc_bh, reg * sc->sc_regstep, val);
313 1.1 grant delay(10);
314 1.1 grant }
315 1.1 grant
316 1.1 grant u_int
317 1.14 dsl ki2c_getmode(struct ki2c_softc *sc)
318 1.1 grant {
319 1.1 grant return ki2c_readreg(sc, MODE) & I2C_MODE;
320 1.1 grant }
321 1.1 grant
322 1.1 grant void
323 1.14 dsl ki2c_setmode(struct ki2c_softc *sc, u_int mode)
324 1.1 grant {
325 1.25 macallan ki2c_writereg(sc, MODE, mode);
326 1.1 grant }
327 1.1 grant
328 1.1 grant u_int
329 1.14 dsl ki2c_getspeed(struct ki2c_softc *sc)
330 1.1 grant {
331 1.1 grant return ki2c_readreg(sc, MODE) & I2C_SPEED;
332 1.1 grant }
333 1.1 grant
334 1.1 grant void
335 1.14 dsl ki2c_setspeed(struct ki2c_softc *sc, u_int speed)
336 1.1 grant {
337 1.1 grant u_int x;
338 1.1 grant
339 1.1 grant KASSERT((speed & ~I2C_SPEED) == 0);
340 1.1 grant x = ki2c_readreg(sc, MODE);
341 1.1 grant x &= ~I2C_SPEED;
342 1.1 grant x |= speed;
343 1.1 grant ki2c_writereg(sc, MODE, x);
344 1.1 grant }
345 1.1 grant
346 1.1 grant int
347 1.35 macallan ki2c_intr(void *cookie)
348 1.1 grant {
349 1.35 macallan struct ki2c_softc *sc = cookie;
350 1.1 grant u_int isr, x;
351 1.1 grant isr = ki2c_readreg(sc, ISR);
352 1.1 grant if (isr & I2C_INT_ADDR) {
353 1.1 grant #if 0
354 1.1 grant if ((ki2c_readreg(sc, STATUS) & I2C_ST_LASTAAK) == 0) {
355 1.1 grant /* No slave responded. */
356 1.1 grant sc->sc_flags |= I2C_ERROR;
357 1.1 grant goto out;
358 1.1 grant }
359 1.1 grant #endif
360 1.1 grant
361 1.1 grant if (sc->sc_flags & I2C_READING) {
362 1.1 grant if (sc->sc_resid > 1) {
363 1.1 grant x = ki2c_readreg(sc, CONTROL);
364 1.1 grant x |= I2C_CT_AAK;
365 1.1 grant ki2c_writereg(sc, CONTROL, x);
366 1.1 grant }
367 1.1 grant } else {
368 1.1 grant ki2c_writereg(sc, DATA, *sc->sc_data++);
369 1.1 grant sc->sc_resid--;
370 1.1 grant }
371 1.1 grant }
372 1.1 grant
373 1.1 grant if (isr & I2C_INT_DATA) {
374 1.1 grant if (sc->sc_flags & I2C_READING) {
375 1.1 grant *sc->sc_data++ = ki2c_readreg(sc, DATA);
376 1.1 grant sc->sc_resid--;
377 1.1 grant
378 1.1 grant if (sc->sc_resid == 0) { /* Completed */
379 1.1 grant ki2c_writereg(sc, CONTROL, 0);
380 1.1 grant goto out;
381 1.1 grant }
382 1.1 grant } else {
383 1.1 grant #if 0
384 1.1 grant if ((ki2c_readreg(sc, STATUS) & I2C_ST_LASTAAK) == 0) {
385 1.1 grant /* No slave responded. */
386 1.1 grant sc->sc_flags |= I2C_ERROR;
387 1.1 grant goto out;
388 1.1 grant }
389 1.1 grant #endif
390 1.1 grant
391 1.1 grant if (sc->sc_resid == 0) {
392 1.1 grant x = ki2c_readreg(sc, CONTROL) | I2C_CT_STOP;
393 1.1 grant ki2c_writereg(sc, CONTROL, x);
394 1.1 grant } else {
395 1.1 grant ki2c_writereg(sc, DATA, *sc->sc_data++);
396 1.1 grant sc->sc_resid--;
397 1.1 grant }
398 1.1 grant }
399 1.1 grant }
400 1.1 grant
401 1.1 grant out:
402 1.1 grant if (isr & I2C_INT_STOP) {
403 1.1 grant ki2c_writereg(sc, CONTROL, 0);
404 1.1 grant sc->sc_flags &= ~I2C_BUSY;
405 1.35 macallan cv_signal(&sc->sc_todev);
406 1.1 grant }
407 1.1 grant
408 1.1 grant ki2c_writereg(sc, ISR, isr);
409 1.1 grant
410 1.1 grant return 1;
411 1.1 grant }
412 1.1 grant
413 1.1 grant int
414 1.14 dsl ki2c_poll(struct ki2c_softc *sc, int timo)
415 1.1 grant {
416 1.37 macallan int bail = 0;
417 1.1 grant while (sc->sc_flags & I2C_BUSY) {
418 1.37 macallan if ((cold) || (bail > 10) || (sc->sc_poll)) {
419 1.35 macallan if (ki2c_readreg(sc, ISR))
420 1.35 macallan ki2c_intr(sc);
421 1.35 macallan timo -= 10;
422 1.35 macallan if (timo < 0) {
423 1.35 macallan DPRINTF("i2c_poll: timeout\n");
424 1.35 macallan return -1;
425 1.35 macallan }
426 1.35 macallan delay(10);
427 1.35 macallan } else {
428 1.35 macallan mutex_enter(&sc->sc_todevmtx);
429 1.37 macallan cv_timedwait_sig(&sc->sc_todev, &sc->sc_todevmtx, hz/10);
430 1.35 macallan mutex_exit(&sc->sc_todevmtx);
431 1.37 macallan bail++;
432 1.1 grant }
433 1.1 grant }
434 1.1 grant return 0;
435 1.1 grant }
436 1.1 grant
437 1.1 grant int
438 1.15 dsl ki2c_start(struct ki2c_softc *sc, int addr, int subaddr, void *data, int len)
439 1.1 grant {
440 1.1 grant int rw = (sc->sc_flags & I2C_READING) ? 1 : 0;
441 1.1 grant int timo, x;
442 1.1 grant
443 1.1 grant KASSERT((addr & 1) == 0);
444 1.1 grant
445 1.1 grant sc->sc_data = data;
446 1.1 grant sc->sc_resid = len;
447 1.1 grant sc->sc_flags |= I2C_BUSY;
448 1.1 grant
449 1.1 grant timo = 1000 + len * 200;
450 1.1 grant
451 1.1 grant /* XXX TAS3001 sometimes takes 50ms to finish writing registers. */
452 1.1 grant /* if (addr == 0x68) */
453 1.1 grant timo += 100000;
454 1.1 grant
455 1.1 grant ki2c_writereg(sc, ADDR, addr | rw);
456 1.1 grant ki2c_writereg(sc, SUBADDR, subaddr);
457 1.1 grant
458 1.1 grant x = ki2c_readreg(sc, CONTROL) | I2C_CT_ADDR;
459 1.1 grant ki2c_writereg(sc, CONTROL, x);
460 1.1 grant
461 1.1 grant if (ki2c_poll(sc, timo))
462 1.1 grant return -1;
463 1.1 grant if (sc->sc_flags & I2C_ERROR) {
464 1.20 macallan DPRINTF("I2C_ERROR\n");
465 1.1 grant return -1;
466 1.1 grant }
467 1.1 grant return 0;
468 1.1 grant }
469 1.1 grant
470 1.1 grant int
471 1.15 dsl ki2c_read(struct ki2c_softc *sc, int addr, int subaddr, void *data, int len)
472 1.1 grant {
473 1.1 grant sc->sc_flags = I2C_READING;
474 1.20 macallan DPRINTF("ki2c_read: %02x %d\n", addr, len);
475 1.1 grant return ki2c_start(sc, addr, subaddr, data, len);
476 1.1 grant }
477 1.1 grant
478 1.1 grant int
479 1.15 dsl ki2c_write(struct ki2c_softc *sc, int addr, int subaddr, void *data, int len)
480 1.1 grant {
481 1.1 grant sc->sc_flags = 0;
482 1.20 macallan DPRINTF("ki2c_write: %02x %d\n",addr,len);
483 1.3 macallan return ki2c_start(sc, addr, subaddr, data, len);
484 1.3 macallan }
485 1.3 macallan
486 1.3 macallan int
487 1.3 macallan ki2c_i2c_exec(void *cookie, i2c_op_t op, i2c_addr_t addr, const void *vcmd,
488 1.3 macallan size_t cmdlen, void *vbuf, size_t buflen, int flags)
489 1.3 macallan {
490 1.3 macallan struct ki2c_softc *sc = cookie;
491 1.12 pgoyette int i;
492 1.12 pgoyette size_t w_len;
493 1.12 pgoyette uint8_t *wp;
494 1.33 mlelstv uint8_t wrbuf[KI2C_EXEC_MAX_CMDLEN + KI2C_EXEC_MAX_CMDLEN];
495 1.25 macallan uint8_t channel;
496 1.12 pgoyette
497 1.12 pgoyette /*
498 1.12 pgoyette * We don't have any idea if the ki2c controller can execute
499 1.12 pgoyette * i2c quick_{read,write} operations, so if someone tries one,
500 1.12 pgoyette * return an error.
501 1.12 pgoyette */
502 1.12 pgoyette if (cmdlen == 0 && buflen == 0)
503 1.12 pgoyette return -1;
504 1.12 pgoyette
505 1.33 mlelstv /*
506 1.33 mlelstv * Transaction could be much larger now. Bail if it exceeds our
507 1.33 mlelstv * small combining buffer, we don't expect such devices.
508 1.33 mlelstv */
509 1.33 mlelstv if (cmdlen + buflen > sizeof(wrbuf))
510 1.33 mlelstv return -1;
511 1.33 mlelstv
512 1.25 macallan channel = (addr & 0xf80) ? 0x10 : 0x00;
513 1.25 macallan addr &= 0x7f;
514 1.25 macallan
515 1.25 macallan
516 1.3 macallan /* we handle the subaddress stuff ourselves */
517 1.25 macallan ki2c_setmode(sc, channel | I2C_STDMODE);
518 1.28 macallan ki2c_setspeed(sc, I2C_50kHz);
519 1.3 macallan
520 1.12 pgoyette /* Write-buffer defaults to vcmd */
521 1.12 pgoyette wp = (uint8_t *)(__UNCONST(vcmd));
522 1.12 pgoyette w_len = cmdlen;
523 1.12 pgoyette
524 1.12 pgoyette /*
525 1.12 pgoyette * Concatenate vcmd and vbuf for write operations
526 1.12 pgoyette *
527 1.12 pgoyette * Drivers written specifically for ki2c might already do this,
528 1.12 pgoyette * but "generic" i2c drivers still provide separate arguments
529 1.12 pgoyette * for the cmd and buf parts of iic_smbus_write_{byte,word}.
530 1.12 pgoyette */
531 1.12 pgoyette if (I2C_OP_WRITE_P(op) && buflen != 0) {
532 1.12 pgoyette if (cmdlen == 0) {
533 1.12 pgoyette wp = (uint8_t *)vbuf;
534 1.12 pgoyette w_len = buflen;
535 1.12 pgoyette } else {
536 1.12 pgoyette KASSERT((cmdlen + buflen) <= sizeof(wrbuf));
537 1.12 pgoyette wp = (uint8_t *)(__UNCONST(vcmd));
538 1.12 pgoyette w_len = 0;
539 1.12 pgoyette for (i = 0; i < cmdlen; i++)
540 1.12 pgoyette wrbuf[w_len++] = *wp++;
541 1.12 pgoyette wp = (uint8_t *)vbuf;
542 1.12 pgoyette for (i = 0; i < buflen; i++)
543 1.12 pgoyette wrbuf[w_len++] = *wp++;
544 1.12 pgoyette wp = wrbuf;
545 1.12 pgoyette }
546 1.12 pgoyette }
547 1.12 pgoyette
548 1.22 macallan if (w_len > 0)
549 1.22 macallan if (ki2c_write(sc, addr << 1, 0, wp, w_len) !=0 )
550 1.22 macallan return -1;
551 1.10 garbled
552 1.10 garbled if (I2C_OP_READ_P(op)) {
553 1.20 macallan if (ki2c_read(sc, addr << 1, 0, vbuf, buflen) !=0 )
554 1.3 macallan return -1;
555 1.3 macallan }
556 1.3 macallan return 0;
557 1.1 grant }
558