tcic2.c revision 1.16 1 1.16 mycroft /* $NetBSD: tcic2.c,v 1.16 2004/08/11 06:56:57 mycroft Exp $ */
2 1.1 bad
3 1.1 bad /*
4 1.1 bad * Copyright (c) 1998, 1999 Christoph Badura. All rights reserved.
5 1.1 bad * Copyright (c) 1997 Marc Horowitz. All rights reserved.
6 1.1 bad *
7 1.1 bad * Redistribution and use in source and binary forms, with or without
8 1.1 bad * modification, are permitted provided that the following conditions
9 1.1 bad * are met:
10 1.1 bad * 1. Redistributions of source code must retain the above copyright
11 1.1 bad * notice, this list of conditions and the following disclaimer.
12 1.1 bad * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 bad * notice, this list of conditions and the following disclaimer in the
14 1.1 bad * documentation and/or other materials provided with the distribution.
15 1.1 bad * 3. All advertising materials mentioning features or use of this software
16 1.1 bad * must display the following acknowledgement:
17 1.1 bad * This product includes software developed by Marc Horowitz.
18 1.1 bad * 4. The name of the author may not be used to endorse or promote products
19 1.1 bad * derived from this software without specific prior written permission.
20 1.1 bad *
21 1.1 bad * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.1 bad * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.1 bad * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.1 bad * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.1 bad * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.1 bad * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.1 bad * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.1 bad * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.1 bad * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.1 bad * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.1 bad */
32 1.7 lukem
33 1.7 lukem #include <sys/cdefs.h>
34 1.16 mycroft __KERNEL_RCSID(0, "$NetBSD: tcic2.c,v 1.16 2004/08/11 06:56:57 mycroft Exp $");
35 1.7 lukem
36 1.7 lukem #undef TCICDEBUG
37 1.1 bad
38 1.1 bad #include <sys/param.h>
39 1.1 bad #include <sys/systm.h>
40 1.1 bad #include <sys/device.h>
41 1.1 bad #include <sys/extent.h>
42 1.1 bad #include <sys/malloc.h>
43 1.1 bad #include <sys/kthread.h>
44 1.1 bad
45 1.1 bad #include <machine/bus.h>
46 1.1 bad #include <machine/intr.h>
47 1.1 bad
48 1.1 bad #include <dev/pcmcia/pcmciareg.h>
49 1.1 bad #include <dev/pcmcia/pcmciavar.h>
50 1.1 bad
51 1.1 bad #include <dev/ic/tcic2reg.h>
52 1.1 bad #include <dev/ic/tcic2var.h>
53 1.1 bad
54 1.1 bad #ifdef TCICDEBUG
55 1.1 bad int tcic_debug = 1;
56 1.1 bad #define DPRINTF(arg) if (tcic_debug) printf arg;
57 1.1 bad #else
58 1.1 bad #define DPRINTF(arg)
59 1.1 bad #endif
60 1.1 bad
61 1.1 bad /*
62 1.1 bad * Individual drivers will allocate their own memory and io regions. Memory
63 1.1 bad * regions must be a multiple of 4k, aligned on a 4k boundary.
64 1.1 bad */
65 1.1 bad
66 1.1 bad #define TCIC_MEM_ALIGN TCIC_MEM_PAGESIZE
67 1.1 bad
68 1.1 bad void tcic_attach_socket __P((struct tcic_handle *));
69 1.1 bad void tcic_init_socket __P((struct tcic_handle *));
70 1.1 bad
71 1.1 bad int tcic_submatch __P((struct device *, struct cfdata *, void *));
72 1.1 bad int tcic_print __P((void *arg, const char *pnp));
73 1.1 bad int tcic_intr_socket __P((struct tcic_handle *));
74 1.1 bad
75 1.1 bad void tcic_attach_card __P((struct tcic_handle *));
76 1.1 bad void tcic_detach_card __P((struct tcic_handle *, int));
77 1.1 bad void tcic_deactivate_card __P((struct tcic_handle *));
78 1.1 bad
79 1.1 bad void tcic_chip_do_mem_map __P((struct tcic_handle *, int));
80 1.1 bad void tcic_chip_do_io_map __P((struct tcic_handle *, int));
81 1.1 bad
82 1.1 bad void tcic_create_event_thread __P((void *));
83 1.1 bad void tcic_event_thread __P((void *));
84 1.1 bad
85 1.1 bad void tcic_queue_event __P((struct tcic_handle *, int));
86 1.1 bad
87 1.1 bad /* Map between irq numbers and internal representation */
88 1.1 bad #if 1
89 1.1 bad int tcic_irqmap[] =
90 1.1 bad { 0, 0, 0, 3, 4, 5, 6, 7, 0, 0, 10, 1, 0, 0, 14, 0 };
91 1.1 bad int tcic_valid_irqs = 0x4cf8;
92 1.1 bad #else
93 1.1 bad int tcic_irqmap[] = /* irqs 9 and 6 switched, some ISA cards */
94 1.1 bad { 0, 0, 0, 3, 4, 5, 0, 7, 0, 6, 10, 1, 0, 0, 14, 0 };
95 1.1 bad int tcic_valid_irqs = 0x4eb8;
96 1.1 bad #endif
97 1.1 bad
98 1.1 bad int tcic_mem_speed = 250; /* memory access time in nanoseconds */
99 1.1 bad int tcic_io_speed = 165; /* io access time in nanoseconds */
100 1.1 bad
101 1.1 bad /*
102 1.1 bad * Check various reserved and otherwise in their value restricted bits.
103 1.1 bad */
104 1.1 bad int
105 1.1 bad tcic_check_reserved_bits(iot, ioh)
106 1.1 bad bus_space_tag_t iot;
107 1.1 bad bus_space_handle_t ioh;
108 1.1 bad {
109 1.1 bad int val, auxreg;
110 1.1 bad
111 1.1 bad DPRINTF(("tcic: chkrsvd 1\n"));
112 1.1 bad /* R_ADDR bit 30:28 have a restricted range. */
113 1.1 bad val = (bus_space_read_2(iot, ioh, TCIC_R_ADDR2) & TCIC_SS_MASK)
114 1.1 bad >> TCIC_SS_SHIFT;
115 1.1 bad if (val > 1)
116 1.1 bad return 0;
117 1.1 bad
118 1.1 bad DPRINTF(("tcic: chkrsvd 2\n"));
119 1.1 bad /* R_SCTRL bits 6,2,1 are reserved. */
120 1.1 bad val = bus_space_read_1(iot, ioh, TCIC_R_SCTRL);
121 1.1 bad if (val & TCIC_SCTRL_RSVD)
122 1.1 bad return 0;
123 1.1 bad
124 1.1 bad DPRINTF(("tcic: chkrsvd 3\n"));
125 1.1 bad /* R_ICSR bit 2 must be same as bit 3. */
126 1.1 bad val = bus_space_read_1(iot, ioh, TCIC_R_ICSR);
127 1.1 bad if (((val >> 1) & 1) != ((val >> 2) & 1))
128 1.1 bad return 0;
129 1.1 bad
130 1.1 bad DPRINTF(("tcic: chkrsvd 4\n"));
131 1.1 bad /* R_IENA bits 7,2 are reserverd. */
132 1.1 bad val = bus_space_read_1(iot, ioh, TCIC_R_IENA);
133 1.1 bad if (val & TCIC_IENA_RSVD)
134 1.1 bad return 0;
135 1.1 bad
136 1.1 bad DPRINTF(("tcic: chkrsvd 5\n"));
137 1.1 bad /* Some aux registers have reserved bits. */
138 1.1 bad /* Which are we looking at? */
139 1.1 bad auxreg = bus_space_read_1(iot, ioh, TCIC_R_MODE)
140 1.1 bad & TCIC_AR_MASK;
141 1.1 bad val = bus_space_read_2(iot, ioh, TCIC_R_AUX);
142 1.1 bad DPRINTF(("tcic: auxreg 0x%02x val 0x%04x\n", auxreg, val));
143 1.1 bad switch (auxreg) {
144 1.1 bad case TCIC_AR_SYSCFG:
145 1.1 bad if (INVALID_AR_SYSCFG(val))
146 1.1 bad return 0;
147 1.1 bad break;
148 1.1 bad case TCIC_AR_ILOCK:
149 1.1 bad if (INVALID_AR_ILOCK(val))
150 1.1 bad return 0;
151 1.1 bad break;
152 1.1 bad case TCIC_AR_TEST:
153 1.1 bad if (INVALID_AR_TEST(val))
154 1.1 bad return 0;
155 1.1 bad break;
156 1.1 bad }
157 1.1 bad
158 1.1 bad DPRINTF(("tcic: chkrsvd 6\n"));
159 1.1 bad /* XXX fails if pcmcia bios is enabled. */
160 1.1 bad /* Various bits set or not depending if in RESET mode. */
161 1.1 bad val = bus_space_read_1(iot, ioh, TCIC_R_SCTRL);
162 1.1 bad if (val & TCIC_SCTRL_RESET) {
163 1.1 bad DPRINTF(("tcic: chkrsvd 7\n"));
164 1.1 bad /* Address bits must be 0 */
165 1.1 bad val = bus_space_read_2(iot, ioh, TCIC_R_ADDR);
166 1.1 bad if (val != 0)
167 1.1 bad return 0;
168 1.1 bad val = bus_space_read_2(iot, ioh, TCIC_R_ADDR2);
169 1.1 bad if (val != 0)
170 1.1 bad return 0;
171 1.1 bad DPRINTF(("tcic: chkrsvd 8\n"));
172 1.1 bad /* EDC bits must be 0 */
173 1.1 bad val = bus_space_read_2(iot, ioh, TCIC_R_EDC);
174 1.1 bad if (val != 0)
175 1.1 bad return 0;
176 1.1 bad /* We're OK, so take it out of reset. XXX -chb */
177 1.1 bad bus_space_write_1(iot, ioh, TCIC_R_SCTRL, 0);
178 1.1 bad }
179 1.1 bad else { /* not in RESET mode */
180 1.1 bad int omode;
181 1.1 bad int val1, val2;
182 1.1 bad DPRINTF(("tcic: chkrsvd 9\n"));
183 1.1 bad /* Programming timers must have expired. */
184 1.1 bad val = bus_space_read_1(iot, ioh, TCIC_R_SSTAT);
185 1.1 bad if ((val & (TCIC_SSTAT_6US|TCIC_SSTAT_10US|TCIC_SSTAT_PROGTIME))
186 1.1 bad != (TCIC_SSTAT_6US|TCIC_SSTAT_10US|TCIC_SSTAT_PROGTIME))
187 1.1 bad return 0;
188 1.1 bad DPRINTF(("tcic: chkrsvd 10\n"));
189 1.1 bad /*
190 1.1 bad * EDC bits should change on read from data space
191 1.1 bad * as long as either EDC or the data are nonzero.
192 1.1 bad */
193 1.1 bad if ((bus_space_read_2(iot, ioh, TCIC_R_ADDR2)
194 1.1 bad & TCIC_ADDR2_INDREG) != 0) {
195 1.1 bad val1 = bus_space_read_2(iot, ioh, TCIC_R_EDC);
196 1.1 bad val2 = bus_space_read_2(iot, ioh, TCIC_R_DATA);
197 1.1 bad if (val1 | val2) {
198 1.1 bad val1 = bus_space_read_2(iot, ioh, TCIC_R_EDC);
199 1.1 bad if (val1 == val2)
200 1.1 bad return 0;
201 1.1 bad }
202 1.1 bad }
203 1.1 bad DPRINTF(("tcic: chkrsvd 11\n"));
204 1.1 bad /* XXX what does this check? -chb */
205 1.1 bad omode = bus_space_read_1(iot, ioh, TCIC_R_MODE);
206 1.1 bad val1 = omode ^ TCIC_AR_MASK;
207 1.1 bad bus_space_write_1(iot, ioh, TCIC_R_MODE, val1);
208 1.1 bad val2 = bus_space_read_1(iot, ioh, TCIC_R_MODE);
209 1.1 bad bus_space_write_1(iot, ioh, TCIC_R_MODE, omode);
210 1.1 bad if ( val1 != val2)
211 1.1 bad return 0;
212 1.1 bad }
213 1.1 bad /* All tests passed */
214 1.1 bad return 1;
215 1.1 bad }
216 1.1 bad
217 1.1 bad /*
218 1.1 bad * Read chip ID from AR_ILOCK in test mode.
219 1.1 bad */
220 1.1 bad int
221 1.1 bad tcic_chipid(iot, ioh)
222 1.1 bad bus_space_tag_t iot;
223 1.1 bad bus_space_handle_t ioh;
224 1.1 bad {
225 1.1 bad unsigned id, otest;
226 1.1 bad
227 1.1 bad otest = tcic_read_aux_2(iot, ioh, TCIC_AR_TEST);
228 1.1 bad tcic_write_aux_2(iot, ioh, TCIC_AR_TEST, TCIC_TEST_DIAG);
229 1.1 bad id = tcic_read_aux_2(iot, ioh, TCIC_AR_ILOCK);
230 1.1 bad tcic_write_aux_2(iot, ioh, TCIC_AR_TEST, otest);
231 1.1 bad id &= TCIC_ILOCKTEST_ID_MASK;
232 1.1 bad id >>= TCIC_ILOCKTEST_ID_SHFT;
233 1.1 bad
234 1.1 bad /* clear up IRQs inside tcic. XXX -chb */
235 1.1 bad while (bus_space_read_1(iot, ioh, TCIC_R_ICSR))
236 1.1 bad bus_space_write_1(iot, ioh, TCIC_R_ICSR, TCIC_ICSR_JAM);
237 1.1 bad
238 1.1 bad return id;
239 1.1 bad }
240 1.1 bad /*
241 1.1 bad * Indicate whether the driver can handle the chip.
242 1.1 bad */
243 1.1 bad int
244 1.1 bad tcic_chipid_known(id)
245 1.1 bad int id;
246 1.1 bad {
247 1.1 bad /* XXX only know how to handle DB86082 -chb */
248 1.1 bad switch (id) {
249 1.1 bad case TCIC_CHIPID_DB86082_1:
250 1.1 bad case TCIC_CHIPID_DB86082A:
251 1.1 bad case TCIC_CHIPID_DB86082B_ES:
252 1.1 bad case TCIC_CHIPID_DB86082B:
253 1.1 bad case TCIC_CHIPID_DB86084_1:
254 1.1 bad case TCIC_CHIPID_DB86084A:
255 1.1 bad case TCIC_CHIPID_DB86184_1:
256 1.1 bad case TCIC_CHIPID_DB86072_1_ES:
257 1.1 bad case TCIC_CHIPID_DB86072_1:
258 1.1 bad return 1;
259 1.1 bad }
260 1.1 bad
261 1.1 bad return 0;
262 1.1 bad }
263 1.1 bad
264 1.1 bad char *
265 1.1 bad tcic_chipid_to_string(id)
266 1.1 bad int id;
267 1.1 bad {
268 1.1 bad switch (id) {
269 1.1 bad case TCIC_CHIPID_DB86082_1:
270 1.1 bad return ("Databook DB86082");
271 1.1 bad case TCIC_CHIPID_DB86082A:
272 1.1 bad return ("Databook DB86082A");
273 1.1 bad case TCIC_CHIPID_DB86082B_ES:
274 1.1 bad return ("Databook DB86082B-es");
275 1.1 bad case TCIC_CHIPID_DB86082B:
276 1.1 bad return ("Databook DB86082B");
277 1.1 bad case TCIC_CHIPID_DB86084_1:
278 1.1 bad return ("Databook DB86084");
279 1.1 bad case TCIC_CHIPID_DB86084A:
280 1.1 bad return ("Databook DB86084A");
281 1.1 bad case TCIC_CHIPID_DB86184_1:
282 1.1 bad return ("Databook DB86184");
283 1.1 bad case TCIC_CHIPID_DB86072_1_ES:
284 1.1 bad return ("Databook DB86072-es");
285 1.1 bad case TCIC_CHIPID_DB86072_1:
286 1.1 bad return ("Databook DB86072");
287 1.1 bad }
288 1.1 bad
289 1.1 bad return ("Unknown controller");
290 1.1 bad }
291 1.1 bad /*
292 1.1 bad * Return bitmask of IRQs that the chip can handle.
293 1.1 bad * XXX should be table driven.
294 1.1 bad */
295 1.1 bad int
296 1.1 bad tcic_validirqs(chipid)
297 1.1 bad int chipid;
298 1.1 bad {
299 1.1 bad switch (chipid) {
300 1.1 bad case TCIC_CHIPID_DB86082_1:
301 1.1 bad case TCIC_CHIPID_DB86082A:
302 1.1 bad case TCIC_CHIPID_DB86082B_ES:
303 1.1 bad case TCIC_CHIPID_DB86082B:
304 1.1 bad case TCIC_CHIPID_DB86084_1:
305 1.1 bad case TCIC_CHIPID_DB86084A:
306 1.1 bad case TCIC_CHIPID_DB86184_1:
307 1.1 bad case TCIC_CHIPID_DB86072_1_ES:
308 1.1 bad case TCIC_CHIPID_DB86072_1:
309 1.1 bad return tcic_valid_irqs;
310 1.1 bad }
311 1.1 bad return 0;
312 1.1 bad }
313 1.1 bad
314 1.1 bad void
315 1.1 bad tcic_attach(sc)
316 1.1 bad struct tcic_softc *sc;
317 1.1 bad {
318 1.1 bad int i, reg;
319 1.1 bad
320 1.13 wiz /* set more chipset dependent parameters in the softc. */
321 1.1 bad switch (sc->chipid) {
322 1.1 bad case TCIC_CHIPID_DB86084_1:
323 1.1 bad case TCIC_CHIPID_DB86084A:
324 1.1 bad case TCIC_CHIPID_DB86184_1:
325 1.1 bad sc->pwrena = TCIC_PWR_ENA;
326 1.1 bad break;
327 1.1 bad default:
328 1.1 bad sc->pwrena = 0;
329 1.1 bad break;
330 1.1 bad }
331 1.1 bad
332 1.1 bad /* set up global config registers */
333 1.1 bad reg = TCIC_WAIT_SYNC | TCIC_WAIT_CCLK | TCIC_WAIT_RISING;
334 1.1 bad reg |= (tcic_ns2wscnt(250) & TCIC_WAIT_COUNT_MASK);
335 1.1 bad tcic_write_aux_1(sc->iot, sc->ioh, TCIC_AR_WCTL, TCIC_R_WCTL_WAIT, reg);
336 1.1 bad reg = TCIC_SYSCFG_MPSEL_RI | TCIC_SYSCFG_MCSFULL;
337 1.1 bad tcic_write_aux_2(sc->iot, sc->ioh, TCIC_AR_SYSCFG, reg);
338 1.1 bad reg = tcic_read_aux_2(sc->iot, sc->ioh, TCIC_AR_ILOCK);
339 1.1 bad reg |= TCIC_ILOCK_HOLD_CCLK;
340 1.1 bad tcic_write_aux_2(sc->iot, sc->ioh, TCIC_AR_ILOCK, reg);
341 1.1 bad
342 1.1 bad /* the TCIC has two sockets */
343 1.1 bad /* XXX should i check for actual presence of sockets? -chb */
344 1.1 bad for (i = 0; i < TCIC_NSLOTS; i++) {
345 1.1 bad sc->handle[i].sc = sc;
346 1.1 bad sc->handle[i].sock = i;
347 1.1 bad sc->handle[i].flags = TCIC_FLAG_SOCKETP;
348 1.1 bad sc->handle[i].memwins
349 1.1 bad = sc->chipid == TCIC_CHIPID_DB86082_1 ? 4 : 5;
350 1.1 bad }
351 1.1 bad
352 1.1 bad /* establish the interrupt */
353 1.1 bad reg = tcic_read_1(&sc->handle[0], TCIC_R_IENA);
354 1.1 bad tcic_write_1(&sc->handle[0], TCIC_R_IENA,
355 1.1 bad (reg & ~TCIC_IENA_CFG_MASK) | TCIC_IENA_CFG_HIGH);
356 1.1 bad reg = tcic_read_aux_2(sc->iot, sc->ioh, TCIC_AR_SYSCFG);
357 1.1 bad tcic_write_aux_2(sc->iot, sc->ioh, TCIC_AR_SYSCFG,
358 1.1 bad (reg & ~TCIC_SYSCFG_IRQ_MASK) | tcic_irqmap[sc->irq]);
359 1.1 bad
360 1.1 bad /* XXX block interrupts? */
361 1.1 bad
362 1.1 bad for (i = 0; i < TCIC_NSLOTS; i++) {
363 1.1 bad /* XXX make more clear what happens here -chb */
364 1.1 bad tcic_sel_sock(&sc->handle[i]);
365 1.1 bad tcic_write_ind_2(&sc->handle[i], TCIC_IR_SCF1_N(i), 0);
366 1.1 bad tcic_write_ind_2(&sc->handle[i], TCIC_IR_SCF2_N(i),
367 1.1 bad (TCIC_SCF2_MCD|TCIC_SCF2_MWP|TCIC_SCF2_MRDY
368 1.1 bad #if 1 /* XXX explain byte routing issue */
369 1.1 bad |TCIC_SCF2_MLBAT2|TCIC_SCF2_MLBAT1|TCIC_SCF2_IDBR));
370 1.1 bad #else
371 1.1 bad |TCIC_SCF2_MLBAT2|TCIC_SCF2_MLBAT1));
372 1.1 bad #endif
373 1.1 bad tcic_write_1(&sc->handle[i], TCIC_R_MODE, 0);
374 1.1 bad reg = tcic_read_aux_2(sc->iot, sc->ioh, TCIC_AR_SYSCFG);
375 1.1 bad reg &= ~TCIC_SYSCFG_AUTOBUSY;
376 1.1 bad tcic_write_aux_2(sc->iot, sc->ioh, TCIC_AR_SYSCFG, reg);
377 1.1 bad SIMPLEQ_INIT(&sc->handle[i].events);
378 1.1 bad }
379 1.1 bad
380 1.1 bad if ((sc->handle[0].flags & TCIC_FLAG_SOCKETP) ||
381 1.1 bad (sc->handle[1].flags & TCIC_FLAG_SOCKETP)) {
382 1.1 bad printf("%s: %s has ", sc->dev.dv_xname,
383 1.1 bad tcic_chipid_to_string(sc->chipid));
384 1.1 bad
385 1.1 bad if ((sc->handle[0].flags & TCIC_FLAG_SOCKETP) &&
386 1.1 bad (sc->handle[1].flags & TCIC_FLAG_SOCKETP))
387 1.1 bad printf("sockets A and B\n");
388 1.1 bad else if (sc->handle[0].flags & TCIC_FLAG_SOCKETP)
389 1.1 bad printf("socket A only\n");
390 1.1 bad else
391 1.1 bad printf("socket B only\n");
392 1.1 bad
393 1.1 bad }
394 1.1 bad }
395 1.1 bad
396 1.1 bad void
397 1.1 bad tcic_attach_sockets(sc)
398 1.1 bad struct tcic_softc *sc;
399 1.1 bad {
400 1.1 bad int i;
401 1.1 bad
402 1.1 bad for (i = 0; i < TCIC_NSLOTS; i++)
403 1.1 bad if (sc->handle[i].flags & TCIC_FLAG_SOCKETP)
404 1.1 bad tcic_attach_socket(&sc->handle[i]);
405 1.1 bad }
406 1.1 bad
407 1.1 bad void
408 1.1 bad tcic_attach_socket(h)
409 1.1 bad struct tcic_handle *h;
410 1.1 bad {
411 1.1 bad struct pcmciabus_attach_args paa;
412 1.1 bad
413 1.1 bad /* initialize the rest of the handle */
414 1.1 bad
415 1.1 bad h->shutdown = 0;
416 1.1 bad h->memalloc = 0;
417 1.1 bad h->ioalloc = 0;
418 1.1 bad h->ih_irq = 0;
419 1.1 bad
420 1.1 bad /* now, config one pcmcia device per socket */
421 1.1 bad
422 1.4 explorer paa.paa_busname = "pcmcia";
423 1.1 bad paa.pct = (pcmcia_chipset_tag_t) h->sc->pct;
424 1.1 bad paa.pch = (pcmcia_chipset_handle_t) h;
425 1.1 bad paa.iobase = h->sc->iobase;
426 1.1 bad paa.iosize = h->sc->iosize;
427 1.1 bad
428 1.1 bad h->pcmcia = config_found_sm(&h->sc->dev, &paa, tcic_print,
429 1.1 bad tcic_submatch);
430 1.1 bad
431 1.1 bad /* if there's actually a pcmcia device attached, initialize the slot */
432 1.1 bad
433 1.1 bad if (h->pcmcia)
434 1.1 bad tcic_init_socket(h);
435 1.1 bad }
436 1.1 bad
437 1.1 bad void
438 1.1 bad tcic_create_event_thread(arg)
439 1.1 bad void *arg;
440 1.1 bad {
441 1.1 bad struct tcic_handle *h = arg;
442 1.1 bad const char *cs;
443 1.1 bad
444 1.1 bad switch (h->sock) {
445 1.1 bad case 0:
446 1.1 bad cs = "0";
447 1.1 bad break;
448 1.1 bad case 1:
449 1.1 bad cs = "1";
450 1.1 bad break;
451 1.1 bad default:
452 1.1 bad panic("tcic_create_event_thread: unknown tcic socket");
453 1.1 bad }
454 1.1 bad
455 1.2 thorpej if (kthread_create1(tcic_event_thread, h, &h->event_thread,
456 1.1 bad "%s,%s", h->sc->dev.dv_xname, cs)) {
457 1.1 bad printf("%s: unable to create event thread for sock 0x%02x\n",
458 1.1 bad h->sc->dev.dv_xname, h->sock);
459 1.1 bad panic("tcic_create_event_thread");
460 1.1 bad }
461 1.1 bad }
462 1.1 bad
463 1.1 bad void
464 1.1 bad tcic_event_thread(arg)
465 1.1 bad void *arg;
466 1.1 bad {
467 1.1 bad struct tcic_handle *h = arg;
468 1.1 bad struct tcic_event *pe;
469 1.1 bad int s;
470 1.1 bad
471 1.1 bad while (h->shutdown == 0) {
472 1.1 bad s = splhigh();
473 1.1 bad if ((pe = SIMPLEQ_FIRST(&h->events)) == NULL) {
474 1.1 bad splx(s);
475 1.1 bad (void) tsleep(&h->events, PWAIT, "tcicev", 0);
476 1.1 bad continue;
477 1.1 bad }
478 1.10 lukem SIMPLEQ_REMOVE_HEAD(&h->events, pe_q);
479 1.1 bad splx(s);
480 1.1 bad
481 1.1 bad switch (pe->pe_type) {
482 1.1 bad case TCIC_EVENT_INSERTION:
483 1.1 bad DPRINTF(("%s: insertion event\n", h->sc->dev.dv_xname));
484 1.1 bad tcic_attach_card(h);
485 1.1 bad break;
486 1.1 bad
487 1.1 bad case TCIC_EVENT_REMOVAL:
488 1.1 bad DPRINTF(("%s: removal event\n", h->sc->dev.dv_xname));
489 1.1 bad tcic_detach_card(h, DETACH_FORCE);
490 1.1 bad break;
491 1.1 bad
492 1.1 bad default:
493 1.1 bad panic("tcic_event_thread: unknown event %d",
494 1.1 bad pe->pe_type);
495 1.1 bad }
496 1.1 bad free(pe, M_TEMP);
497 1.1 bad }
498 1.1 bad
499 1.1 bad h->event_thread = NULL;
500 1.1 bad
501 1.1 bad /* In case parent is waiting for us to exit. */
502 1.1 bad wakeup(h->sc);
503 1.1 bad
504 1.1 bad kthread_exit(0);
505 1.1 bad }
506 1.1 bad
507 1.1 bad
508 1.1 bad void
509 1.1 bad tcic_init_socket(h)
510 1.1 bad struct tcic_handle *h;
511 1.1 bad {
512 1.1 bad int reg;
513 1.1 bad
514 1.1 bad /* select this socket's config registers */
515 1.1 bad tcic_sel_sock(h);
516 1.1 bad
517 1.1 bad /* set up the socket to interrupt on card detect */
518 1.1 bad reg = tcic_read_ind_2(h, TCIC_IR_SCF2_N(h->sock));
519 1.1 bad tcic_write_ind_2(h, TCIC_IR_SCF2_N(h->sock), reg & ~TCIC_SCF2_MCD);
520 1.1 bad
521 1.1 bad /* enable CD irq in R_IENA */
522 1.1 bad reg = tcic_read_2(h, TCIC_R_IENA);
523 1.1 bad tcic_write_2(h, TCIC_R_IENA, reg |= TCIC_IENA_CDCHG);
524 1.1 bad
525 1.1 bad /* if there's a card there, then attach it. also save sstat */
526 1.1 bad h->sstat = reg = tcic_read_1(h, TCIC_R_SSTAT) & TCIC_SSTAT_STAT_MASK;
527 1.1 bad if (reg & TCIC_SSTAT_CD)
528 1.1 bad tcic_attach_card(h);
529 1.1 bad }
530 1.1 bad
531 1.1 bad int
532 1.1 bad tcic_submatch(parent, cf, aux)
533 1.1 bad struct device *parent;
534 1.1 bad struct cfdata *cf;
535 1.1 bad void *aux;
536 1.1 bad {
537 1.1 bad
538 1.1 bad struct pcmciabus_attach_args *paa = aux;
539 1.1 bad struct tcic_handle *h = (struct tcic_handle *) paa->pch;
540 1.1 bad
541 1.1 bad switch (h->sock) {
542 1.1 bad case 0:
543 1.15 thorpej if (cf->pcmciabuscf_controller !=
544 1.1 bad PCMCIABUSCF_CONTROLLER_DEFAULT &&
545 1.15 thorpej cf->pcmciabuscf_controller != 0)
546 1.1 bad return 0;
547 1.15 thorpej if (cf->pcmciabuscf_socket !=
548 1.1 bad PCMCIABUSCF_SOCKET_DEFAULT &&
549 1.15 thorpej cf->pcmciabuscf_socket != 0)
550 1.1 bad return 0;
551 1.1 bad
552 1.1 bad break;
553 1.1 bad case 1:
554 1.15 thorpej if (cf->pcmciabuscf_controller !=
555 1.1 bad PCMCIABUSCF_CONTROLLER_DEFAULT &&
556 1.15 thorpej cf->pcmciabuscf_controller != 0)
557 1.1 bad return 0;
558 1.15 thorpej if (cf->pcmciabuscf_socket !=
559 1.1 bad PCMCIABUSCF_SOCKET_DEFAULT &&
560 1.15 thorpej cf->pcmciabuscf_socket != 1)
561 1.1 bad return 0;
562 1.1 bad
563 1.1 bad break;
564 1.1 bad default:
565 1.1 bad panic("unknown tcic socket");
566 1.1 bad }
567 1.1 bad
568 1.11 thorpej return (config_match(parent, cf, aux));
569 1.1 bad }
570 1.1 bad
571 1.1 bad int
572 1.1 bad tcic_print(arg, pnp)
573 1.1 bad void *arg;
574 1.1 bad const char *pnp;
575 1.1 bad {
576 1.1 bad struct pcmciabus_attach_args *paa = arg;
577 1.1 bad struct tcic_handle *h = (struct tcic_handle *) paa->pch;
578 1.1 bad
579 1.1 bad /* Only "pcmcia"s can attach to "tcic"s... easy. */
580 1.1 bad if (pnp)
581 1.12 thorpej aprint_normal("pcmcia at %s", pnp);
582 1.1 bad
583 1.1 bad switch (h->sock) {
584 1.1 bad case 0:
585 1.12 thorpej aprint_normal(" socket 0");
586 1.1 bad break;
587 1.1 bad case 1:
588 1.12 thorpej aprint_normal(" socket 1");
589 1.1 bad break;
590 1.1 bad default:
591 1.1 bad panic("unknown tcic socket");
592 1.1 bad }
593 1.1 bad return (UNCONF);
594 1.1 bad }
595 1.1 bad
596 1.1 bad int
597 1.1 bad tcic_intr(arg)
598 1.1 bad void *arg;
599 1.1 bad {
600 1.1 bad struct tcic_softc *sc = arg;
601 1.1 bad int i, ret = 0;
602 1.1 bad
603 1.1 bad DPRINTF(("%s: intr\n", sc->dev.dv_xname));
604 1.1 bad
605 1.1 bad for (i = 0; i < TCIC_NSLOTS; i++)
606 1.1 bad if (sc->handle[i].flags & TCIC_FLAG_SOCKETP)
607 1.1 bad ret += tcic_intr_socket(&sc->handle[i]);
608 1.1 bad
609 1.1 bad return (ret ? 1 : 0);
610 1.1 bad }
611 1.1 bad
612 1.1 bad int
613 1.1 bad tcic_intr_socket(h)
614 1.1 bad struct tcic_handle *h;
615 1.1 bad {
616 1.1 bad int icsr, rv;
617 1.1 bad
618 1.1 bad rv = 0;
619 1.1 bad tcic_sel_sock(h);
620 1.1 bad icsr = tcic_read_1(h, TCIC_R_ICSR);
621 1.1 bad
622 1.1 bad DPRINTF(("%s: %d icsr: 0x%02x \n", h->sc->dev.dv_xname, h->sock, icsr));
623 1.1 bad
624 1.1 bad /* XXX or should the next three be handled in tcic_intr? -chb */
625 1.1 bad if (icsr & TCIC_ICSR_PROGTIME) {
626 1.1 bad DPRINTF(("%s: %02x PROGTIME\n", h->sc->dev.dv_xname, h->sock));
627 1.1 bad rv = 1;
628 1.1 bad }
629 1.1 bad if (icsr & TCIC_ICSR_ILOCK) {
630 1.1 bad DPRINTF(("%s: %02x ILOCK\n", h->sc->dev.dv_xname, h->sock));
631 1.1 bad rv = 1;
632 1.1 bad }
633 1.1 bad if (icsr & TCIC_ICSR_ERR) {
634 1.1 bad DPRINTF(("%s: %02x ERR\n", h->sc->dev.dv_xname, h->sock));
635 1.1 bad rv = 1;
636 1.1 bad }
637 1.1 bad if (icsr & TCIC_ICSR_CDCHG) {
638 1.1 bad int sstat, delta;
639 1.1 bad
640 1.1 bad /* compute what changed since last interrupt */
641 1.1 bad sstat = tcic_read_aux_1(h->sc->iot, h->sc->ioh,
642 1.1 bad TCIC_AR_WCTL, TCIC_R_WCTL_XCSR) & TCIC_XCSR_STAT_MASK;
643 1.1 bad delta = h->sstat ^ sstat;
644 1.1 bad h->sstat = sstat;
645 1.1 bad
646 1.1 bad if (delta)
647 1.1 bad rv = 1;
648 1.1 bad
649 1.1 bad DPRINTF(("%s: %02x CDCHG %x\n", h->sc->dev.dv_xname, h->sock,
650 1.1 bad delta));
651 1.1 bad
652 1.1 bad /*
653 1.1 bad * XXX This should probably schedule something to happen
654 1.1 bad * after the interrupt handler completes
655 1.1 bad */
656 1.1 bad
657 1.1 bad if (delta & TCIC_SSTAT_CD) {
658 1.1 bad if (sstat & TCIC_SSTAT_CD) {
659 1.1 bad if (!(h->flags & TCIC_FLAG_CARDP)) {
660 1.1 bad DPRINTF(("%s: enqueing INSERTION event\n",
661 1.1 bad h->sc->dev.dv_xname));
662 1.1 bad tcic_queue_event(h, TCIC_EVENT_INSERTION);
663 1.1 bad }
664 1.1 bad } else {
665 1.1 bad if (h->flags & TCIC_FLAG_CARDP) {
666 1.1 bad /* Deactivate the card now. */
667 1.1 bad DPRINTF(("%s: deactivating card\n",
668 1.1 bad h->sc->dev.dv_xname));
669 1.1 bad tcic_deactivate_card(h);
670 1.1 bad
671 1.1 bad DPRINTF(("%s: enqueing REMOVAL event\n",
672 1.1 bad h->sc->dev.dv_xname));
673 1.1 bad tcic_queue_event(h, TCIC_EVENT_REMOVAL);
674 1.1 bad }
675 1.1 bad }
676 1.1 bad }
677 1.1 bad if (delta & TCIC_SSTAT_RDY) {
678 1.1 bad DPRINTF(("%s: %02x READY\n", h->sc->dev.dv_xname, h->sock));
679 1.1 bad /* shouldn't happen */
680 1.1 bad }
681 1.1 bad if (delta & TCIC_SSTAT_LBAT1) {
682 1.1 bad DPRINTF(("%s: %02x LBAT1\n", h->sc->dev.dv_xname, h->sock));
683 1.1 bad }
684 1.1 bad if (delta & TCIC_SSTAT_LBAT2) {
685 1.1 bad DPRINTF(("%s: %02x LBAT2\n", h->sc->dev.dv_xname, h->sock));
686 1.1 bad }
687 1.1 bad if (delta & TCIC_SSTAT_WP) {
688 1.1 bad DPRINTF(("%s: %02x WP\n", h->sc->dev.dv_xname, h->sock));
689 1.1 bad }
690 1.1 bad }
691 1.1 bad return rv;
692 1.1 bad }
693 1.1 bad
694 1.1 bad void
695 1.1 bad tcic_queue_event(h, event)
696 1.1 bad struct tcic_handle *h;
697 1.1 bad int event;
698 1.1 bad {
699 1.1 bad struct tcic_event *pe;
700 1.1 bad int s;
701 1.1 bad
702 1.1 bad pe = malloc(sizeof(*pe), M_TEMP, M_NOWAIT);
703 1.1 bad if (pe == NULL)
704 1.1 bad panic("tcic_queue_event: can't allocate event");
705 1.1 bad
706 1.1 bad pe->pe_type = event;
707 1.1 bad s = splhigh();
708 1.1 bad SIMPLEQ_INSERT_TAIL(&h->events, pe, pe_q);
709 1.1 bad splx(s);
710 1.1 bad wakeup(&h->events);
711 1.1 bad }
712 1.1 bad void
713 1.1 bad tcic_attach_card(h)
714 1.1 bad struct tcic_handle *h;
715 1.1 bad {
716 1.1 bad DPRINTF(("tcic_attach_card\n"));
717 1.1 bad
718 1.1 bad if (h->flags & TCIC_FLAG_CARDP)
719 1.1 bad panic("tcic_attach_card: already attached");
720 1.1 bad
721 1.1 bad /* call the MI attach function */
722 1.1 bad
723 1.1 bad pcmcia_card_attach(h->pcmcia);
724 1.1 bad
725 1.1 bad h->flags |= TCIC_FLAG_CARDP;
726 1.1 bad }
727 1.1 bad
728 1.1 bad void
729 1.1 bad tcic_detach_card(h, flags)
730 1.1 bad struct tcic_handle *h;
731 1.1 bad int flags; /* DETACH_* */
732 1.1 bad {
733 1.1 bad DPRINTF(("tcic_detach_card\n"));
734 1.1 bad
735 1.1 bad if (!(h->flags & TCIC_FLAG_CARDP))
736 1.1 bad panic("tcic_detach_card: already detached");
737 1.1 bad
738 1.1 bad h->flags &= ~TCIC_FLAG_CARDP;
739 1.1 bad
740 1.1 bad /* call the MI detach function */
741 1.1 bad
742 1.1 bad pcmcia_card_detach(h->pcmcia, flags);
743 1.1 bad
744 1.1 bad }
745 1.1 bad
746 1.1 bad void
747 1.1 bad tcic_deactivate_card(h)
748 1.1 bad struct tcic_handle *h;
749 1.1 bad {
750 1.1 bad int val, reg;
751 1.1 bad
752 1.1 bad if (!(h->flags & TCIC_FLAG_CARDP))
753 1.1 bad panic("tcic_deactivate_card: already detached");
754 1.1 bad
755 1.1 bad /* call the MI deactivate function */
756 1.1 bad pcmcia_card_deactivate(h->pcmcia);
757 1.1 bad
758 1.1 bad tcic_sel_sock(h);
759 1.1 bad
760 1.1 bad /* XXX disable card detect resume and configuration reset??? */
761 1.1 bad
762 1.1 bad /* power down the socket */
763 1.1 bad tcic_write_1(h, TCIC_R_PWR, 0);
764 1.1 bad
765 1.1 bad /* reset the card XXX ? -chb */
766 1.1 bad
767 1.1 bad /* turn off irq's for this socket */
768 1.1 bad reg = TCIC_IR_SCF1_N(h->sock);
769 1.1 bad val = tcic_read_ind_2(h, reg);
770 1.1 bad tcic_write_ind_2(h, reg, (val & ~TCIC_SCF1_IRQ_MASK)|TCIC_SCF1_IRQOFF);
771 1.1 bad reg = TCIC_IR_SCF2_N(h->sock);
772 1.1 bad val = tcic_read_ind_2(h, reg);
773 1.1 bad tcic_write_ind_2(h, reg,
774 1.1 bad (val | (TCIC_SCF2_MLBAT1|TCIC_SCF2_MLBAT2|TCIC_SCF2_MRDY
775 1.1 bad |TCIC_SCF2_MWP|TCIC_SCF2_MCD)));
776 1.1 bad }
777 1.1 bad
778 1.1 bad /* XXX the following routine may need to be rewritten. -chb */
779 1.1 bad int
780 1.1 bad tcic_chip_mem_alloc(pch, size, pcmhp)
781 1.1 bad pcmcia_chipset_handle_t pch;
782 1.1 bad bus_size_t size;
783 1.1 bad struct pcmcia_mem_handle *pcmhp;
784 1.1 bad {
785 1.1 bad struct tcic_handle *h = (struct tcic_handle *) pch;
786 1.1 bad bus_space_handle_t memh;
787 1.1 bad bus_addr_t addr;
788 1.1 bad bus_size_t sizepg;
789 1.1 bad int i, mask, mhandle;
790 1.1 bad
791 1.1 bad /* out of sc->memh, allocate as many pages as necessary */
792 1.1 bad
793 1.1 bad /*
794 1.1 bad * The TCIC can map memory only in sizes that are
795 1.1 bad * powers of two, aligned at the natural boundary for the size.
796 1.1 bad */
797 1.1 bad i = tcic_log2((u_int)size);
798 1.1 bad if ((1<<i) < size)
799 1.1 bad i++;
800 1.1 bad sizepg = max(i, TCIC_MEM_SHIFT) - (TCIC_MEM_SHIFT-1);
801 1.1 bad
802 1.1 bad DPRINTF(("tcic_chip_mem_alloc: size %ld sizepg %ld\n", size, sizepg));
803 1.1 bad
804 1.1 bad /* can't allocate that much anyway */
805 1.1 bad if (sizepg > TCIC_MEM_PAGES) /* XXX -chb */
806 1.1 bad return 1;
807 1.1 bad
808 1.1 bad mask = (1 << sizepg) - 1;
809 1.1 bad
810 1.1 bad addr = 0; /* XXX gcc -Wuninitialized */
811 1.1 bad mhandle = 0; /* XXX gcc -Wuninitialized */
812 1.1 bad
813 1.1 bad /* XXX i should be initialised to always lay on boundary. -chb */
814 1.1 bad for (i = 0; i < (TCIC_MEM_PAGES + 1 - sizepg); i += sizepg) {
815 1.1 bad if ((h->sc->subregionmask & (mask << i)) == (mask << i)) {
816 1.1 bad if (bus_space_subregion(h->sc->memt, h->sc->memh,
817 1.1 bad i * TCIC_MEM_PAGESIZE,
818 1.1 bad sizepg * TCIC_MEM_PAGESIZE, &memh))
819 1.1 bad return (1);
820 1.1 bad mhandle = mask << i;
821 1.1 bad addr = h->sc->membase + (i * TCIC_MEM_PAGESIZE);
822 1.1 bad h->sc->subregionmask &= ~(mhandle);
823 1.1 bad break;
824 1.1 bad }
825 1.1 bad }
826 1.1 bad
827 1.1 bad if (i == (TCIC_MEM_PAGES + 1 - sizepg))
828 1.1 bad return (1);
829 1.1 bad
830 1.1 bad DPRINTF(("tcic_chip_mem_alloc bus addr 0x%lx+0x%lx\n", (u_long) addr,
831 1.1 bad (u_long) size));
832 1.1 bad
833 1.1 bad pcmhp->memt = h->sc->memt;
834 1.1 bad pcmhp->memh = memh;
835 1.1 bad pcmhp->addr = addr;
836 1.1 bad pcmhp->size = size;
837 1.1 bad pcmhp->mhandle = mhandle;
838 1.1 bad pcmhp->realsize = sizepg * TCIC_MEM_PAGESIZE;
839 1.1 bad
840 1.1 bad return (0);
841 1.1 bad }
842 1.1 bad
843 1.1 bad /* XXX the following routine may need to be rewritten. -chb */
844 1.1 bad void
845 1.1 bad tcic_chip_mem_free(pch, pcmhp)
846 1.1 bad pcmcia_chipset_handle_t pch;
847 1.1 bad struct pcmcia_mem_handle *pcmhp;
848 1.1 bad {
849 1.1 bad struct tcic_handle *h = (struct tcic_handle *) pch;
850 1.1 bad
851 1.1 bad h->sc->subregionmask |= pcmhp->mhandle;
852 1.1 bad }
853 1.1 bad
854 1.1 bad void
855 1.1 bad tcic_chip_do_mem_map(h, win)
856 1.1 bad struct tcic_handle *h;
857 1.1 bad int win;
858 1.1 bad {
859 1.1 bad int reg, hwwin, wscnt;
860 1.1 bad
861 1.3 joda int kind = h->mem[win].kind & ~PCMCIA_WIDTH_MEM_MASK;
862 1.3 joda int mem8 = (h->mem[win].kind & PCMCIA_WIDTH_MEM_MASK) == PCMCIA_WIDTH_MEM8;
863 1.1 bad DPRINTF(("tcic_chip_do_mem_map window %d: 0x%lx+0x%lx 0x%lx\n",
864 1.1 bad win, (u_long)h->mem[win].addr, (u_long)h->mem[win].size,
865 1.1 bad (u_long)h->mem[win].offset));
866 1.1 bad /*
867 1.1 bad * the even windows are used for socket 0,
868 1.1 bad * the odd ones for socket 1.
869 1.1 bad */
870 1.1 bad hwwin = (win << 1) + h->sock;
871 1.1 bad
872 1.1 bad /* the WR_MEXT register is MBZ */
873 1.1 bad tcic_write_ind_2(h, TCIC_WR_MEXT_N(hwwin), 0);
874 1.1 bad
875 1.1 bad /* set the host base address and window size */
876 1.1 bad if (h->mem[win].size2 <= 1) {
877 1.1 bad reg = ((h->mem[win].addr >> TCIC_MEM_SHIFT) &
878 1.1 bad TCIC_MBASE_ADDR_MASK) | TCIC_MBASE_4K;
879 1.1 bad } else {
880 1.1 bad reg = ((h->mem[win].addr >> TCIC_MEM_SHIFT) &
881 1.1 bad TCIC_MBASE_ADDR_MASK) | (h->mem[win].size2 >> 1);
882 1.1 bad }
883 1.1 bad tcic_write_ind_2(h, TCIC_WR_MBASE_N(hwwin), reg);
884 1.1 bad
885 1.1 bad /* set the card address and address space */
886 1.1 bad reg = 0;
887 1.1 bad reg = ((h->mem[win].offset >> TCIC_MEM_SHIFT) & TCIC_MMAP_ADDR_MASK);
888 1.3 joda reg |= (kind == PCMCIA_MEM_ATTR) ? TCIC_MMAP_ATTR : 0;
889 1.1 bad DPRINTF(("tcic_chip_do_map_mem window %d(%d) mmap 0x%04x\n",
890 1.1 bad win, hwwin, reg));
891 1.1 bad tcic_write_ind_2(h, TCIC_WR_MMAP_N(hwwin), reg);
892 1.1 bad
893 1.1 bad /* set the MCTL register */
894 1.1 bad /* must save WSCNT field in case this is a DB86082 rev 0 */
895 1.1 bad /* XXX why can't I do the following two in one statement? */
896 1.1 bad reg = tcic_read_ind_2(h, TCIC_WR_MCTL_N(hwwin)) & TCIC_MCTL_WSCNT_MASK;
897 1.1 bad reg |= TCIC_MCTL_ENA|TCIC_MCTL_QUIET;
898 1.3 joda reg |= mem8 ? TCIC_MCTL_B8 : 0;
899 1.1 bad reg |= (h->sock << TCIC_MCTL_SS_SHIFT) & TCIC_MCTL_SS_MASK;
900 1.1 bad #ifdef notyet /* XXX must get speed from CIS somehow. -chb */
901 1.1 bad wscnt = tcic_ns2wscnt(h->mem[win].speed);
902 1.1 bad #else
903 1.1 bad wscnt = tcic_ns2wscnt(tcic_mem_speed); /* 300 is "save" default for CIS memory */
904 1.1 bad #endif
905 1.1 bad if (h->sc->chipid == TCIC_CHIPID_DB86082_1) {
906 1.1 bad /*
907 1.1 bad * this chip has the wait state count in window
908 1.1 bad * register 7 - hwwin.
909 1.1 bad */
910 1.1 bad int reg2;
911 1.1 bad reg2 = tcic_read_ind_2(h, TCIC_WR_MCTL_N(7-hwwin));
912 1.1 bad reg2 &= ~TCIC_MCTL_WSCNT_MASK;
913 1.1 bad reg2 |= wscnt & TCIC_MCTL_WSCNT_MASK;
914 1.1 bad tcic_write_ind_2(h, TCIC_WR_MCTL_N(7-hwwin), reg2);
915 1.1 bad } else {
916 1.1 bad reg |= wscnt & TCIC_MCTL_WSCNT_MASK;
917 1.1 bad }
918 1.1 bad tcic_write_ind_2(h, TCIC_WR_MCTL_N(hwwin), reg);
919 1.1 bad
920 1.1 bad #ifdef TCICDEBUG
921 1.1 bad {
922 1.1 bad int r1, r2, r3;
923 1.1 bad
924 1.1 bad r1 = tcic_read_ind_2(h, TCIC_WR_MBASE_N(hwwin));
925 1.1 bad r2 = tcic_read_ind_2(h, TCIC_WR_MMAP_N(hwwin));
926 1.1 bad r3 = tcic_read_ind_2(h, TCIC_WR_MCTL_N(hwwin));
927 1.1 bad
928 1.1 bad DPRINTF(("tcic_chip_do_mem_map window %d(%d): %04x %04x %04x\n",
929 1.1 bad win, hwwin, r1, r2, r3));
930 1.1 bad }
931 1.1 bad #endif
932 1.1 bad }
933 1.1 bad
934 1.1 bad /* XXX needs work */
935 1.1 bad int
936 1.1 bad tcic_chip_mem_map(pch, kind, card_addr, size, pcmhp, offsetp, windowp)
937 1.1 bad pcmcia_chipset_handle_t pch;
938 1.1 bad int kind;
939 1.1 bad bus_addr_t card_addr;
940 1.1 bad bus_size_t size;
941 1.1 bad struct pcmcia_mem_handle *pcmhp;
942 1.9 soren bus_size_t *offsetp;
943 1.1 bad int *windowp;
944 1.1 bad {
945 1.1 bad struct tcic_handle *h = (struct tcic_handle *) pch;
946 1.1 bad bus_addr_t busaddr;
947 1.1 bad long card_offset;
948 1.1 bad int i, win;
949 1.1 bad
950 1.1 bad win = -1;
951 1.1 bad for (i = 0; i < h->memwins; i++) {
952 1.1 bad if ((h->memalloc & (1 << i)) == 0) {
953 1.1 bad win = i;
954 1.1 bad h->memalloc |= (1 << i);
955 1.1 bad break;
956 1.1 bad }
957 1.1 bad }
958 1.1 bad
959 1.1 bad if (win == -1)
960 1.1 bad return (1);
961 1.1 bad
962 1.1 bad *windowp = win;
963 1.1 bad
964 1.1 bad /* XXX this is pretty gross */
965 1.1 bad
966 1.1 bad if (h->sc->memt != pcmhp->memt)
967 1.1 bad panic("tcic_chip_mem_map memt is bogus");
968 1.1 bad
969 1.1 bad busaddr = pcmhp->addr;
970 1.1 bad
971 1.1 bad /*
972 1.1 bad * compute the address offset to the pcmcia address space for the
973 1.1 bad * tcic. this is intentionally signed. The masks and shifts below
974 1.1 bad * will cause TRT to happen in the tcic registers. Deal with making
975 1.1 bad * sure the address is aligned, and return the alignment offset.
976 1.1 bad */
977 1.1 bad
978 1.1 bad *offsetp = card_addr % TCIC_MEM_ALIGN;
979 1.1 bad card_addr -= *offsetp;
980 1.1 bad
981 1.1 bad DPRINTF(("tcic_chip_mem_map window %d bus %lx+%lx+%lx at card addr "
982 1.1 bad "%lx\n", win, (u_long) busaddr, (u_long) * offsetp, (u_long) size,
983 1.1 bad (u_long) card_addr));
984 1.1 bad
985 1.1 bad /* XXX we can't use size. -chb */
986 1.1 bad /*
987 1.1 bad * include the offset in the size, and decrement size by one, since
988 1.1 bad * the hw wants start/stop
989 1.1 bad */
990 1.1 bad size += *offsetp - 1;
991 1.1 bad
992 1.1 bad card_offset = (((long) card_addr) - ((long) busaddr));
993 1.1 bad
994 1.1 bad DPRINTF(("tcic_chip_mem_map window %d card_offset 0x%lx\n",
995 1.1 bad win, (u_long)card_offset));
996 1.1 bad
997 1.1 bad h->mem[win].addr = busaddr;
998 1.1 bad h->mem[win].size = size;
999 1.1 bad h->mem[win].size2 = tcic_log2((u_int)pcmhp->realsize) - TCIC_MEM_SHIFT;
1000 1.1 bad h->mem[win].offset = card_offset;
1001 1.1 bad h->mem[win].kind = kind;
1002 1.1 bad
1003 1.1 bad tcic_chip_do_mem_map(h, win);
1004 1.1 bad
1005 1.1 bad return (0);
1006 1.1 bad }
1007 1.1 bad
1008 1.1 bad void
1009 1.1 bad tcic_chip_mem_unmap(pch, window)
1010 1.1 bad pcmcia_chipset_handle_t pch;
1011 1.1 bad int window;
1012 1.1 bad {
1013 1.1 bad struct tcic_handle *h = (struct tcic_handle *) pch;
1014 1.16 mycroft int hwwin;
1015 1.1 bad
1016 1.1 bad if (window >= h->memwins)
1017 1.1 bad panic("tcic_chip_mem_unmap: window out of range");
1018 1.1 bad
1019 1.1 bad hwwin = (window << 1) + h->sock;
1020 1.16 mycroft tcic_write_ind_2(h, TCIC_WR_MCTL_N(hwwin), 0);
1021 1.1 bad
1022 1.1 bad h->memalloc &= ~(1 << window);
1023 1.1 bad }
1024 1.1 bad
1025 1.1 bad int
1026 1.1 bad tcic_chip_io_alloc(pch, start, size, align, pcihp)
1027 1.1 bad pcmcia_chipset_handle_t pch;
1028 1.1 bad bus_addr_t start;
1029 1.1 bad bus_size_t size;
1030 1.1 bad bus_size_t align;
1031 1.1 bad struct pcmcia_io_handle *pcihp;
1032 1.1 bad {
1033 1.1 bad struct tcic_handle *h = (struct tcic_handle *) pch;
1034 1.1 bad bus_space_tag_t iot;
1035 1.1 bad bus_space_handle_t ioh;
1036 1.1 bad bus_addr_t ioaddr;
1037 1.1 bad int size2, flags = 0;
1038 1.1 bad
1039 1.1 bad /*
1040 1.1 bad * Allocate some arbitrary I/O space.
1041 1.1 bad */
1042 1.1 bad
1043 1.1 bad DPRINTF(("tcic_chip_io_alloc req 0x%lx %ld %ld\n",
1044 1.1 bad (u_long) start, (u_long) size, (u_long) align));
1045 1.1 bad /*
1046 1.1 bad * The TCIC can map I/O space only in sizes that are
1047 1.1 bad * powers of two, aligned at the natural boundary for the size.
1048 1.1 bad */
1049 1.1 bad size2 = tcic_log2((u_int)size);
1050 1.1 bad if ((1 << size2) < size)
1051 1.1 bad size2++;
1052 1.1 bad /* can't allocate that much anyway */
1053 1.1 bad if (size2 > 16) /* XXX 64K -chb */
1054 1.1 bad return 1;
1055 1.1 bad if (align) {
1056 1.1 bad if ((1 << size2) != align)
1057 1.1 bad return 1; /* not suitably aligned */
1058 1.1 bad } else {
1059 1.1 bad align = 1 << size2; /* no alignment given, make it natural */
1060 1.1 bad }
1061 1.1 bad if (start & (align - 1))
1062 1.1 bad return 1; /* not suitably aligned */
1063 1.1 bad
1064 1.1 bad iot = h->sc->iot;
1065 1.1 bad
1066 1.1 bad if (start) {
1067 1.1 bad ioaddr = start;
1068 1.1 bad if (bus_space_map(iot, start, size, 0, &ioh))
1069 1.1 bad return (1);
1070 1.1 bad DPRINTF(("tcic_chip_io_alloc map port %lx+%lx\n",
1071 1.1 bad (u_long) ioaddr, (u_long) size));
1072 1.1 bad } else {
1073 1.1 bad flags |= PCMCIA_IO_ALLOCATED;
1074 1.1 bad if (bus_space_alloc(iot, h->sc->iobase,
1075 1.1 bad h->sc->iobase + h->sc->iosize, size, align, 0, 0,
1076 1.1 bad &ioaddr, &ioh))
1077 1.1 bad return (1);
1078 1.1 bad DPRINTF(("tcic_chip_io_alloc alloc port %lx+%lx\n",
1079 1.1 bad (u_long) ioaddr, (u_long) size));
1080 1.1 bad }
1081 1.1 bad
1082 1.1 bad pcihp->iot = iot;
1083 1.1 bad pcihp->ioh = ioh;
1084 1.1 bad pcihp->addr = ioaddr;
1085 1.1 bad pcihp->size = size;
1086 1.1 bad pcihp->flags = flags;
1087 1.1 bad
1088 1.1 bad return (0);
1089 1.1 bad }
1090 1.1 bad
1091 1.1 bad void
1092 1.1 bad tcic_chip_io_free(pch, pcihp)
1093 1.1 bad pcmcia_chipset_handle_t pch;
1094 1.1 bad struct pcmcia_io_handle *pcihp;
1095 1.1 bad {
1096 1.1 bad bus_space_tag_t iot = pcihp->iot;
1097 1.1 bad bus_space_handle_t ioh = pcihp->ioh;
1098 1.1 bad bus_size_t size = pcihp->size;
1099 1.1 bad
1100 1.1 bad if (pcihp->flags & PCMCIA_IO_ALLOCATED)
1101 1.1 bad bus_space_free(iot, ioh, size);
1102 1.1 bad else
1103 1.1 bad bus_space_unmap(iot, ioh, size);
1104 1.1 bad }
1105 1.1 bad
1106 1.1 bad static int tcic_iowidth_map[] =
1107 1.1 bad { TCIC_ICTL_AUTOSZ, TCIC_ICTL_B8, TCIC_ICTL_B16 };
1108 1.1 bad
1109 1.1 bad void
1110 1.1 bad tcic_chip_do_io_map(h, win)
1111 1.1 bad struct tcic_handle *h;
1112 1.1 bad int win;
1113 1.1 bad {
1114 1.1 bad int reg, size2, iotiny, wbase, hwwin, wscnt;
1115 1.1 bad
1116 1.1 bad DPRINTF(("tcic_chip_do_io_map win %d addr %lx size %lx width %d\n",
1117 1.1 bad win, (long) h->io[win].addr, (long) h->io[win].size,
1118 1.1 bad h->io[win].width * 8));
1119 1.1 bad
1120 1.1 bad /*
1121 1.1 bad * the even windows are used for socket 0,
1122 1.1 bad * the odd ones for socket 1.
1123 1.1 bad */
1124 1.1 bad hwwin = (win << 1) + h->sock;
1125 1.1 bad
1126 1.1 bad /* set the WR_BASE register */
1127 1.1 bad /* XXX what if size isn't power of 2? -chb */
1128 1.1 bad size2 = tcic_log2((u_int)h->io[win].size);
1129 1.1 bad DPRINTF(("tcic_chip_do_io_map win %d size2 %d\n", win, size2));
1130 1.1 bad if (size2 < 1) {
1131 1.1 bad iotiny = TCIC_ICTL_TINY;
1132 1.1 bad wbase = h->io[win].addr;
1133 1.1 bad } else {
1134 1.1 bad iotiny = 0;
1135 1.1 bad /* XXX we should do better -chb */
1136 1.1 bad wbase = h->io[win].addr | (1 << (size2 - 1));
1137 1.1 bad }
1138 1.1 bad tcic_write_ind_2(h, TCIC_WR_IBASE_N(hwwin), wbase);
1139 1.1 bad
1140 1.1 bad /* set the WR_ICTL register */
1141 1.1 bad reg = TCIC_ICTL_ENA | TCIC_ICTL_QUIET;
1142 1.1 bad reg |= (h->sock << TCIC_ICTL_SS_SHIFT) & TCIC_ICTL_SS_MASK;
1143 1.1 bad reg |= iotiny | tcic_iowidth_map[h->io[win].width];
1144 1.1 bad if (h->sc->chipid != TCIC_CHIPID_DB86082_1)
1145 1.1 bad reg |= TCIC_ICTL_PASS16;
1146 1.1 bad #ifdef notyet /* XXX must get speed from CIS somehow. -chb */
1147 1.1 bad wscnt = tcic_ns2wscnt(h->io[win].speed);
1148 1.1 bad #else
1149 1.1 bad wscnt = tcic_ns2wscnt(tcic_io_speed); /* linux uses 0 as default */
1150 1.1 bad #endif
1151 1.1 bad reg |= wscnt & TCIC_ICTL_WSCNT_MASK;
1152 1.1 bad tcic_write_ind_2(h, TCIC_WR_ICTL_N(hwwin), reg);
1153 1.1 bad
1154 1.1 bad #ifdef TCICDEBUG
1155 1.1 bad {
1156 1.1 bad int r1, r2;
1157 1.1 bad
1158 1.1 bad r1 = tcic_read_ind_2(h, TCIC_WR_IBASE_N(hwwin));
1159 1.1 bad r2 = tcic_read_ind_2(h, TCIC_WR_ICTL_N(hwwin));
1160 1.1 bad
1161 1.1 bad DPRINTF(("tcic_chip_do_io_map window %d(%d): %04x %04x\n",
1162 1.1 bad win, hwwin, r1, r2));
1163 1.1 bad }
1164 1.1 bad #endif
1165 1.1 bad }
1166 1.1 bad
1167 1.1 bad int
1168 1.1 bad tcic_chip_io_map(pch, width, offset, size, pcihp, windowp)
1169 1.1 bad pcmcia_chipset_handle_t pch;
1170 1.1 bad int width;
1171 1.1 bad bus_addr_t offset;
1172 1.1 bad bus_size_t size;
1173 1.1 bad struct pcmcia_io_handle *pcihp;
1174 1.1 bad int *windowp;
1175 1.1 bad {
1176 1.1 bad struct tcic_handle *h = (struct tcic_handle *) pch;
1177 1.1 bad bus_addr_t ioaddr = pcihp->addr + offset;
1178 1.1 bad int i, win;
1179 1.1 bad #ifdef TCICDEBUG
1180 1.1 bad static char *width_names[] = { "auto", "io8", "io16" };
1181 1.1 bad #endif
1182 1.1 bad
1183 1.1 bad /* XXX Sanity check offset/size. */
1184 1.1 bad
1185 1.1 bad win = -1;
1186 1.1 bad for (i = 0; i < TCIC_IO_WINS; i++) {
1187 1.1 bad if ((h->ioalloc & (1 << i)) == 0) {
1188 1.1 bad win = i;
1189 1.1 bad h->ioalloc |= (1 << i);
1190 1.1 bad break;
1191 1.1 bad }
1192 1.1 bad }
1193 1.1 bad
1194 1.1 bad if (win == -1)
1195 1.1 bad return (1);
1196 1.1 bad
1197 1.1 bad *windowp = win;
1198 1.1 bad
1199 1.1 bad /* XXX this is pretty gross */
1200 1.1 bad
1201 1.1 bad if (h->sc->iot != pcihp->iot)
1202 1.1 bad panic("tcic_chip_io_map iot is bogus");
1203 1.1 bad
1204 1.1 bad DPRINTF(("tcic_chip_io_map window %d %s port %lx+%lx\n",
1205 1.1 bad win, width_names[width], (u_long) ioaddr, (u_long) size));
1206 1.1 bad
1207 1.1 bad /* XXX wtf is this doing here? */
1208 1.1 bad
1209 1.14 christos printf("%s: port 0x%lx", h->sc->dev.dv_xname, (u_long) ioaddr);
1210 1.1 bad if (size > 1)
1211 1.1 bad printf("-0x%lx", (u_long) ioaddr + (u_long) size - 1);
1212 1.14 christos printf("\n");
1213 1.1 bad
1214 1.1 bad h->io[win].addr = ioaddr;
1215 1.1 bad h->io[win].size = size;
1216 1.1 bad h->io[win].width = width;
1217 1.1 bad
1218 1.1 bad tcic_chip_do_io_map(h, win);
1219 1.1 bad
1220 1.1 bad return (0);
1221 1.1 bad }
1222 1.1 bad
1223 1.1 bad void
1224 1.1 bad tcic_chip_io_unmap(pch, window)
1225 1.1 bad pcmcia_chipset_handle_t pch;
1226 1.1 bad int window;
1227 1.1 bad {
1228 1.1 bad struct tcic_handle *h = (struct tcic_handle *) pch;
1229 1.16 mycroft int hwwin;
1230 1.1 bad
1231 1.1 bad if (window >= TCIC_IO_WINS)
1232 1.1 bad panic("tcic_chip_io_unmap: window out of range");
1233 1.1 bad
1234 1.1 bad hwwin = (window << 1) + h->sock;
1235 1.16 mycroft tcic_write_ind_2(h, TCIC_WR_ICTL_N(hwwin), 0);
1236 1.1 bad
1237 1.1 bad h->ioalloc &= ~(1 << window);
1238 1.1 bad }
1239 1.1 bad
1240 1.1 bad void
1241 1.1 bad tcic_chip_socket_enable(pch)
1242 1.1 bad pcmcia_chipset_handle_t pch;
1243 1.1 bad {
1244 1.1 bad struct tcic_handle *h = (struct tcic_handle *) pch;
1245 1.16 mycroft int reg, win;
1246 1.1 bad
1247 1.1 bad tcic_sel_sock(h);
1248 1.1 bad
1249 1.1 bad /*
1250 1.1 bad * power down the socket to reset it.
1251 1.1 bad * put card reset into high-z, put chip outputs to card into high-z
1252 1.1 bad */
1253 1.1 bad
1254 1.1 bad tcic_write_1(h, TCIC_R_PWR, 0);
1255 1.1 bad reg = tcic_read_aux_2(h->sc->iot, h->sc->ioh, TCIC_AR_ILOCK);
1256 1.1 bad reg |= TCIC_ILOCK_CWAIT;
1257 1.1 bad reg &= ~(TCIC_ILOCK_CRESET|TCIC_ILOCK_CRESENA);
1258 1.1 bad tcic_write_aux_2(h->sc->iot, h->sc->ioh, TCIC_AR_ILOCK, reg);
1259 1.1 bad tcic_write_1(h, TCIC_R_SCTRL, 0); /* clear TCIC_SCTRL_ENA */
1260 1.1 bad
1261 1.16 mycroft /* zero out the address windows */
1262 1.16 mycroft
1263 1.16 mycroft tcic_write_ind_2(h, TCIC_IR_SCF1_N(h->sock), 0);
1264 1.16 mycroft /* writing to WR_MBASE_N disables the window */
1265 1.16 mycroft for (win = 0; win < h->memwins; win++) {
1266 1.16 mycroft tcic_write_ind_2(h, TCIC_WR_MBASE_N((win << 1) + h->sock), 0);
1267 1.16 mycroft }
1268 1.16 mycroft /* writing to WR_IBASE_N disables the window */
1269 1.16 mycroft for (win = 0; win < TCIC_IO_WINS; win++) {
1270 1.16 mycroft tcic_write_ind_2(h, TCIC_WR_IBASE_N((win << 1) + h->sock), 0);
1271 1.16 mycroft }
1272 1.16 mycroft
1273 1.1 bad /* power up the socket */
1274 1.1 bad
1275 1.1 bad /* turn on VCC, turn of VPP */
1276 1.1 bad reg = TCIC_PWR_VCC_N(h->sock) | TCIC_PWR_VPP_N(h->sock) | h->sc->pwrena;
1277 1.1 bad if (h->sc->pwrena) /* this is a '84 type chip */
1278 1.1 bad reg |= TCIC_PWR_VCC5V;
1279 1.1 bad tcic_write_1(h, TCIC_R_PWR, reg);
1280 1.1 bad delay(10000);
1281 1.1 bad
1282 1.1 bad /* enable reset and wiggle it to reset the card */
1283 1.1 bad reg = tcic_read_aux_2(h->sc->iot, h->sc->ioh, TCIC_AR_ILOCK);
1284 1.1 bad reg |= TCIC_ILOCK_CRESENA;
1285 1.1 bad tcic_write_aux_2(h->sc->iot, h->sc->ioh, TCIC_AR_ILOCK, reg);
1286 1.1 bad /* XXX need bus_space_barrier here */
1287 1.1 bad reg |= TCIC_ILOCK_CRESET;
1288 1.1 bad tcic_write_aux_2(h->sc->iot, h->sc->ioh, TCIC_AR_ILOCK, reg);
1289 1.1 bad /* enable card signals */
1290 1.1 bad tcic_write_1(h, TCIC_R_SCTRL, TCIC_SCTRL_ENA);
1291 1.1 bad delay(10); /* wait 10 us */
1292 1.1 bad
1293 1.1 bad /* clear the reset flag */
1294 1.1 bad reg = tcic_read_aux_2(h->sc->iot, h->sc->ioh, TCIC_AR_ILOCK);
1295 1.1 bad reg &= ~(TCIC_ILOCK_CRESET);
1296 1.1 bad tcic_write_aux_2(h->sc->iot, h->sc->ioh, TCIC_AR_ILOCK, reg);
1297 1.1 bad
1298 1.1 bad /* wait 20ms as per pc card standard (r2.01) section 4.3.6 */
1299 1.1 bad delay(20000);
1300 1.1 bad
1301 1.1 bad /* wait for the chip to finish initializing */
1302 1.1 bad tcic_wait_ready(h);
1303 1.1 bad
1304 1.1 bad /* WWW */
1305 1.1 bad
1306 1.1 bad /* reinstall all the memory and io mappings */
1307 1.1 bad
1308 1.1 bad for (win = 0; win < h->memwins; win++)
1309 1.1 bad if (h->memalloc & (1 << win))
1310 1.1 bad tcic_chip_do_mem_map(h, win);
1311 1.1 bad
1312 1.1 bad for (win = 0; win < TCIC_IO_WINS; win++)
1313 1.1 bad if (h->ioalloc & (1 << win))
1314 1.1 bad tcic_chip_do_io_map(h, win);
1315 1.1 bad }
1316 1.1 bad
1317 1.1 bad void
1318 1.16 mycroft tcic_chip_socket_settype(pch, type)
1319 1.16 mycroft pcmcia_chipset_handle_t pch;
1320 1.16 mycroft int type;
1321 1.16 mycroft {
1322 1.16 mycroft struct tcic_handle *h = (struct tcic_handle *) pch;
1323 1.16 mycroft int reg;
1324 1.16 mycroft
1325 1.16 mycroft tcic_sel_sock(h);
1326 1.16 mycroft
1327 1.16 mycroft /* set the card type */
1328 1.16 mycroft
1329 1.16 mycroft reg = 0;
1330 1.16 mycroft if (type == PCMCIA_IFTYPE_IO) {
1331 1.16 mycroft reg |= TCIC_SCF1_IOSTS;
1332 1.16 mycroft reg |= tcic_irqmap[h->ih_irq]; /* enable interrupts */
1333 1.16 mycroft }
1334 1.16 mycroft tcic_write_ind_2(h, TCIC_IR_SCF1_N(h->sock), reg);
1335 1.16 mycroft
1336 1.16 mycroft DPRINTF(("%s: tcic_chip_socket_enable %d cardtype %s 0x%02x\n",
1337 1.16 mycroft h->sc->dev.dv_xname, h->sock,
1338 1.16 mycroft ((type == PCMCIA_IFTYPE_IO) ? "io" : "mem"), reg));
1339 1.16 mycroft }
1340 1.16 mycroft
1341 1.16 mycroft void
1342 1.1 bad tcic_chip_socket_disable(pch)
1343 1.1 bad pcmcia_chipset_handle_t pch;
1344 1.1 bad {
1345 1.1 bad struct tcic_handle *h = (struct tcic_handle *) pch;
1346 1.1 bad int val;
1347 1.1 bad
1348 1.1 bad DPRINTF(("tcic_chip_socket_disable\n"));
1349 1.1 bad
1350 1.1 bad tcic_sel_sock(h);
1351 1.1 bad
1352 1.1 bad /* disable interrupts */
1353 1.1 bad val = tcic_read_ind_2(h, TCIC_IR_SCF1_N(h->sock));
1354 1.1 bad val &= TCIC_SCF1_IRQ_MASK;
1355 1.1 bad tcic_write_ind_2(h, TCIC_IR_SCF1_N(h->sock), val);
1356 1.1 bad
1357 1.1 bad /* disable the output signals */
1358 1.1 bad tcic_write_1(h, TCIC_R_SCTRL, 0);
1359 1.1 bad val = tcic_read_aux_2(h->sc->iot, h->sc->ioh, TCIC_AR_ILOCK);
1360 1.1 bad val &= ~TCIC_ILOCK_CRESENA;
1361 1.1 bad tcic_write_aux_2(h->sc->iot, h->sc->ioh, TCIC_AR_ILOCK, val);
1362 1.1 bad
1363 1.1 bad /* power down the socket */
1364 1.1 bad tcic_write_1(h, TCIC_R_PWR, 0);
1365 1.1 bad }
1366 1.1 bad
1367 1.1 bad /*
1368 1.1 bad * XXX The following is Linux driver but doesn't match the table
1369 1.1 bad * in the manual.
1370 1.1 bad */
1371 1.1 bad int
1372 1.1 bad tcic_ns2wscnt(ns)
1373 1.1 bad int ns;
1374 1.1 bad {
1375 1.1 bad if (ns < 14) {
1376 1.1 bad return 0;
1377 1.1 bad } else {
1378 1.1 bad return (2*(ns-14))/70; /* XXX assumes 14.31818 MHz clock. */
1379 1.1 bad }
1380 1.1 bad }
1381 1.1 bad
1382 1.1 bad int
1383 1.1 bad tcic_log2(val)
1384 1.1 bad u_int val;
1385 1.1 bad {
1386 1.1 bad int i, l2;
1387 1.1 bad
1388 1.1 bad l2 = i = 0;
1389 1.1 bad while (val) {
1390 1.1 bad if (val & 1)
1391 1.1 bad l2 = i;
1392 1.1 bad i++;
1393 1.1 bad val >>= 1;
1394 1.1 bad }
1395 1.1 bad return l2;
1396 1.1 bad }
1397