wdc.c revision 1.74 1 1.74 enami /* $NetBSD: wdc.c,v 1.74 1999/09/23 11:04:32 enami Exp $ */
2 1.31 bouyer
3 1.31 bouyer
4 1.31 bouyer /*
5 1.31 bouyer * Copyright (c) 1998 Manuel Bouyer. All rights reserved.
6 1.31 bouyer *
7 1.31 bouyer * Redistribution and use in source and binary forms, with or without
8 1.31 bouyer * modification, are permitted provided that the following conditions
9 1.31 bouyer * are met:
10 1.31 bouyer * 1. Redistributions of source code must retain the above copyright
11 1.31 bouyer * notice, this list of conditions and the following disclaimer.
12 1.31 bouyer * 2. Redistributions in binary form must reproduce the above copyright
13 1.31 bouyer * notice, this list of conditions and the following disclaimer in the
14 1.31 bouyer * documentation and/or other materials provided with the distribution.
15 1.31 bouyer * 3. All advertising materials mentioning features or use of this software
16 1.31 bouyer * must display the following acknowledgement:
17 1.31 bouyer * This product includes software developed by Manuel Bouyer.
18 1.31 bouyer * 4. The name of the author may not be used to endorse or promote products
19 1.31 bouyer * derived from this software without specific prior written permission.
20 1.31 bouyer *
21 1.31 bouyer * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.31 bouyer * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.31 bouyer * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.31 bouyer * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.31 bouyer * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.31 bouyer * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.31 bouyer * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.31 bouyer * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.31 bouyer * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.31 bouyer * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.31 bouyer */
32 1.2 bouyer
33 1.27 mycroft /*-
34 1.27 mycroft * Copyright (c) 1998 The NetBSD Foundation, Inc.
35 1.27 mycroft * All rights reserved.
36 1.2 bouyer *
37 1.27 mycroft * This code is derived from software contributed to The NetBSD Foundation
38 1.27 mycroft * by Charles M. Hannum, by Onno van der Linden and by Manuel Bouyer.
39 1.12 cgd *
40 1.2 bouyer * Redistribution and use in source and binary forms, with or without
41 1.2 bouyer * modification, are permitted provided that the following conditions
42 1.2 bouyer * are met:
43 1.2 bouyer * 1. Redistributions of source code must retain the above copyright
44 1.2 bouyer * notice, this list of conditions and the following disclaimer.
45 1.2 bouyer * 2. Redistributions in binary form must reproduce the above copyright
46 1.2 bouyer * notice, this list of conditions and the following disclaimer in the
47 1.2 bouyer * documentation and/or other materials provided with the distribution.
48 1.2 bouyer * 3. All advertising materials mentioning features or use of this software
49 1.2 bouyer * must display the following acknowledgement:
50 1.27 mycroft * This product includes software developed by the NetBSD
51 1.27 mycroft * Foundation, Inc. and its contributors.
52 1.27 mycroft * 4. Neither the name of The NetBSD Foundation nor the names of its
53 1.27 mycroft * contributors may be used to endorse or promote products derived
54 1.27 mycroft * from this software without specific prior written permission.
55 1.2 bouyer *
56 1.27 mycroft * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
57 1.27 mycroft * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
58 1.27 mycroft * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
59 1.27 mycroft * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
60 1.27 mycroft * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
61 1.27 mycroft * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
62 1.27 mycroft * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
63 1.27 mycroft * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
64 1.27 mycroft * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
65 1.27 mycroft * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
66 1.27 mycroft * POSSIBILITY OF SUCH DAMAGE.
67 1.2 bouyer */
68 1.2 bouyer
69 1.12 cgd /*
70 1.12 cgd * CODE UNTESTED IN THE CURRENT REVISION:
71 1.31 bouyer *
72 1.12 cgd */
73 1.12 cgd
74 1.59 hubertf #ifndef WDCDEBUG
75 1.31 bouyer #define WDCDEBUG
76 1.59 hubertf #endif /* WDCDEBUG */
77 1.31 bouyer
78 1.2 bouyer #include <sys/param.h>
79 1.2 bouyer #include <sys/systm.h>
80 1.2 bouyer #include <sys/kernel.h>
81 1.2 bouyer #include <sys/conf.h>
82 1.2 bouyer #include <sys/buf.h>
83 1.31 bouyer #include <sys/device.h>
84 1.2 bouyer #include <sys/malloc.h>
85 1.71 bouyer #include <sys/pool.h>
86 1.2 bouyer #include <sys/syslog.h>
87 1.2 bouyer #include <sys/proc.h>
88 1.2 bouyer
89 1.2 bouyer #include <vm/vm.h>
90 1.2 bouyer
91 1.2 bouyer #include <machine/intr.h>
92 1.2 bouyer #include <machine/bus.h>
93 1.2 bouyer
94 1.17 sakamoto #ifndef __BUS_SPACE_HAS_STREAM_METHODS
95 1.31 bouyer #define bus_space_write_multi_stream_2 bus_space_write_multi_2
96 1.31 bouyer #define bus_space_write_multi_stream_4 bus_space_write_multi_4
97 1.31 bouyer #define bus_space_read_multi_stream_2 bus_space_read_multi_2
98 1.31 bouyer #define bus_space_read_multi_stream_4 bus_space_read_multi_4
99 1.17 sakamoto #endif /* __BUS_SPACE_HAS_STREAM_METHODS */
100 1.16 sakamoto
101 1.31 bouyer #include <dev/ata/atavar.h>
102 1.31 bouyer #include <dev/ata/atareg.h>
103 1.12 cgd #include <dev/ic/wdcreg.h>
104 1.12 cgd #include <dev/ic/wdcvar.h>
105 1.31 bouyer
106 1.2 bouyer #include "atapibus.h"
107 1.2 bouyer
108 1.31 bouyer #define WDCDELAY 100 /* 100 microseconds */
109 1.31 bouyer #define WDCNDELAY_RST (WDC_RESET_WAIT * 1000 / WDCDELAY)
110 1.2 bouyer #if 0
111 1.31 bouyer /* If you enable this, it will report any delays more than WDCDELAY * N long. */
112 1.2 bouyer #define WDCNDELAY_DEBUG 50
113 1.2 bouyer #endif
114 1.2 bouyer
115 1.71 bouyer struct pool wdc_xfer_pool;
116 1.2 bouyer
117 1.31 bouyer static void __wdcerror __P((struct channel_softc*, char *));
118 1.31 bouyer static int __wdcwait_reset __P((struct channel_softc *, int));
119 1.31 bouyer void __wdccommand_done __P((struct channel_softc *, struct wdc_xfer *));
120 1.31 bouyer void __wdccommand_start __P((struct channel_softc *, struct wdc_xfer *));
121 1.66 bouyer int __wdccommand_intr __P((struct channel_softc *, struct wdc_xfer *, int));
122 1.31 bouyer int wdprint __P((void *, const char *));
123 1.31 bouyer
124 1.31 bouyer
125 1.31 bouyer #define DEBUG_INTR 0x01
126 1.31 bouyer #define DEBUG_XFERS 0x02
127 1.31 bouyer #define DEBUG_STATUS 0x04
128 1.31 bouyer #define DEBUG_FUNCS 0x08
129 1.31 bouyer #define DEBUG_PROBE 0x10
130 1.74 enami #define DEBUG_DETACH 0x20
131 1.31 bouyer #ifdef WDCDEBUG
132 1.32 bouyer int wdcdebug_mask = 0;
133 1.31 bouyer int wdc_nxfer = 0;
134 1.31 bouyer #define WDCDEBUG_PRINT(args, level) if (wdcdebug_mask & (level)) printf args
135 1.2 bouyer #else
136 1.31 bouyer #define WDCDEBUG_PRINT(args, level)
137 1.2 bouyer #endif
138 1.2 bouyer
139 1.31 bouyer int
140 1.31 bouyer wdprint(aux, pnp)
141 1.31 bouyer void *aux;
142 1.31 bouyer const char *pnp;
143 1.31 bouyer {
144 1.31 bouyer struct ata_atapi_attach *aa_link = aux;
145 1.31 bouyer if (pnp)
146 1.31 bouyer printf("drive at %s", pnp);
147 1.31 bouyer printf(" channel %d drive %d", aa_link->aa_channel,
148 1.31 bouyer aa_link->aa_drv_data->drive);
149 1.31 bouyer return (UNCONF);
150 1.31 bouyer }
151 1.2 bouyer
152 1.31 bouyer int
153 1.31 bouyer atapi_print(aux, pnp)
154 1.31 bouyer void *aux;
155 1.31 bouyer const char *pnp;
156 1.31 bouyer {
157 1.31 bouyer struct ata_atapi_attach *aa_link = aux;
158 1.31 bouyer if (pnp)
159 1.31 bouyer printf("atapibus at %s", pnp);
160 1.31 bouyer printf(" channel %d", aa_link->aa_channel);
161 1.31 bouyer return (UNCONF);
162 1.31 bouyer }
163 1.31 bouyer
164 1.31 bouyer /* Test to see controller with at last one attached drive is there.
165 1.31 bouyer * Returns a bit for each possible drive found (0x01 for drive 0,
166 1.31 bouyer * 0x02 for drive 1).
167 1.31 bouyer * Logic:
168 1.31 bouyer * - If a status register is at 0xff, assume there is no drive here
169 1.31 bouyer * (ISA has pull-up resistors). If no drive at all -> return.
170 1.31 bouyer * - reset the controller, wait for it to complete (may take up to 31s !).
171 1.31 bouyer * If timeout -> return.
172 1.31 bouyer * - test ATA/ATAPI signatures. If at last one drive found -> return.
173 1.31 bouyer * - try an ATA command on the master.
174 1.12 cgd */
175 1.31 bouyer
176 1.2 bouyer int
177 1.31 bouyer wdcprobe(chp)
178 1.31 bouyer struct channel_softc *chp;
179 1.12 cgd {
180 1.31 bouyer u_int8_t st0, st1, sc, sn, cl, ch;
181 1.31 bouyer u_int8_t ret_value = 0x03;
182 1.31 bouyer u_int8_t drive;
183 1.31 bouyer
184 1.31 bouyer /*
185 1.31 bouyer * Sanity check to see if the wdc channel responds at all.
186 1.31 bouyer */
187 1.31 bouyer
188 1.43 kenh if (chp->wdc == NULL ||
189 1.43 kenh (chp->wdc->cap & WDC_CAPABILITY_NO_EXTRA_RESETS) == 0) {
190 1.43 kenh bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
191 1.43 kenh WDSD_IBM);
192 1.65 bouyer delay(10);
193 1.43 kenh st0 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_status);
194 1.43 kenh bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
195 1.43 kenh WDSD_IBM | 0x10);
196 1.65 bouyer delay(10);
197 1.43 kenh st1 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_status);
198 1.43 kenh
199 1.43 kenh WDCDEBUG_PRINT(("%s:%d: before reset, st0=0x%x, st1=0x%x\n",
200 1.43 kenh chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe",
201 1.43 kenh chp->channel, st0, st1), DEBUG_PROBE);
202 1.43 kenh
203 1.43 kenh if (st0 == 0xff)
204 1.43 kenh ret_value &= ~0x01;
205 1.43 kenh if (st1 == 0xff)
206 1.43 kenh ret_value &= ~0x02;
207 1.43 kenh if (ret_value == 0)
208 1.43 kenh return 0;
209 1.43 kenh }
210 1.42 thorpej
211 1.31 bouyer /* assert SRST, wait for reset to complete */
212 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
213 1.31 bouyer WDSD_IBM);
214 1.65 bouyer delay(10);
215 1.31 bouyer bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr,
216 1.31 bouyer WDCTL_RST | WDCTL_IDS);
217 1.31 bouyer DELAY(1000);
218 1.31 bouyer bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr,
219 1.31 bouyer WDCTL_IDS);
220 1.31 bouyer delay(1000);
221 1.31 bouyer (void) bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_error);
222 1.31 bouyer bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr, WDCTL_4BIT);
223 1.65 bouyer delay(10);
224 1.31 bouyer
225 1.31 bouyer ret_value = __wdcwait_reset(chp, ret_value);
226 1.31 bouyer WDCDEBUG_PRINT(("%s:%d: after reset, ret_value=0x%d\n",
227 1.31 bouyer chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe", chp->channel,
228 1.31 bouyer ret_value), DEBUG_PROBE);
229 1.26 drochner
230 1.31 bouyer /* if reset failed, there's nothing here */
231 1.31 bouyer if (ret_value == 0)
232 1.31 bouyer return 0;
233 1.2 bouyer
234 1.31 bouyer /*
235 1.31 bouyer * Test presence of drives. First test register signatures looking for
236 1.67 bouyer * ATAPI devices. If it's not an ATAPI and reset said there may be
237 1.67 bouyer * something here assume it's ATA or OLD. Ghost will be killed later in
238 1.67 bouyer * attach routine.
239 1.31 bouyer */
240 1.31 bouyer for (drive = 0; drive < 2; drive++) {
241 1.31 bouyer if ((ret_value & (0x01 << drive)) == 0)
242 1.31 bouyer continue;
243 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
244 1.31 bouyer WDSD_IBM | (drive << 4));
245 1.65 bouyer delay(10);
246 1.31 bouyer /* Save registers contents */
247 1.31 bouyer sc = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_seccnt);
248 1.31 bouyer sn = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_sector);
249 1.31 bouyer cl = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_cyl_lo);
250 1.31 bouyer ch = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_cyl_hi);
251 1.31 bouyer
252 1.31 bouyer WDCDEBUG_PRINT(("%s:%d:%d: after reset, sc=0x%x sn=0x%x "
253 1.31 bouyer "cl=0x%x ch=0x%x\n",
254 1.31 bouyer chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe",
255 1.31 bouyer chp->channel, drive, sc, sn, cl, ch), DEBUG_PROBE);
256 1.57 bouyer /*
257 1.57 bouyer * sc is supposted to be 0x1 for ATAPI but at last one drive
258 1.67 bouyer * set it to 0x0 - or maybe it's the controller.
259 1.57 bouyer */
260 1.57 bouyer if ((sc == 0x00 || sc == 0x01) && sn == 0x01 &&
261 1.57 bouyer cl == 0x14 && ch == 0xeb) {
262 1.31 bouyer chp->ch_drive[drive].drive_flags |= DRIVE_ATAPI;
263 1.67 bouyer } else {
264 1.62 bouyer chp->ch_drive[drive].drive_flags |= DRIVE_ATA;
265 1.67 bouyer if (chp->wdc == NULL ||
266 1.67 bouyer (chp->wdc->cap & WDC_CAPABILITY_PREATA) != 0)
267 1.67 bouyer chp->ch_drive[drive].drive_flags |= DRIVE_OLD;
268 1.2 bouyer }
269 1.7 bouyer }
270 1.31 bouyer return (ret_value);
271 1.31 bouyer }
272 1.31 bouyer
273 1.31 bouyer void
274 1.31 bouyer wdcattach(chp)
275 1.31 bouyer struct channel_softc *chp;
276 1.31 bouyer {
277 1.44 thorpej int channel_flags, ctrl_flags, i, error;
278 1.31 bouyer struct ata_atapi_attach aa_link;
279 1.62 bouyer struct ataparams params;
280 1.62 bouyer static int inited = 0;
281 1.31 bouyer
282 1.44 thorpej if ((error = wdc_addref(chp)) != 0) {
283 1.44 thorpej printf("%s: unable to enable controller\n",
284 1.44 thorpej chp->wdc->sc_dev.dv_xname);
285 1.44 thorpej return;
286 1.44 thorpej }
287 1.44 thorpej
288 1.74 enami if (wdcprobe(chp) == 0)
289 1.44 thorpej /* If no drives, abort attach here. */
290 1.74 enami goto out;
291 1.31 bouyer
292 1.71 bouyer /* initialise global data */
293 1.62 bouyer if (inited == 0) {
294 1.71 bouyer
295 1.71 bouyer /* Initialize the wdc_xfer pool. */
296 1.71 bouyer pool_init(&wdc_xfer_pool, sizeof(struct wdc_xfer), 0,
297 1.71 bouyer 0, 0, "wdcspl", 0, NULL, NULL, M_DEVBUF);
298 1.62 bouyer inited++;
299 1.62 bouyer }
300 1.31 bouyer TAILQ_INIT(&chp->ch_queue->sc_xfer);
301 1.62 bouyer
302 1.62 bouyer for (i = 0; i < 2; i++) {
303 1.62 bouyer chp->ch_drive[i].chnl_softc = chp;
304 1.62 bouyer chp->ch_drive[i].drive = i;
305 1.62 bouyer /* If controller can't do 16bit flag the drives as 32bit */
306 1.62 bouyer if ((chp->wdc->cap &
307 1.62 bouyer (WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32)) ==
308 1.62 bouyer WDC_CAPABILITY_DATA32)
309 1.62 bouyer chp->ch_drive[i].drive_flags |= DRIVE_CAP32;
310 1.67 bouyer if ((chp->ch_drive[i].drive_flags & DRIVE) == 0)
311 1.67 bouyer continue;
312 1.62 bouyer
313 1.62 bouyer /* Issue a IDENTIFY command, to try to detect slave ghost */
314 1.67 bouyer if (ata_get_params(&chp->ch_drive[i], AT_POLL, ¶ms) ==
315 1.62 bouyer CMD_OK) {
316 1.67 bouyer /* If IDENTIFY succeded, this is not an OLD ctrl */
317 1.67 bouyer chp->ch_drive[0].drive_flags &= ~DRIVE_OLD;
318 1.67 bouyer chp->ch_drive[1].drive_flags &= ~DRIVE_OLD;
319 1.67 bouyer } else {
320 1.62 bouyer chp->ch_drive[i].drive_flags &=
321 1.62 bouyer ~(DRIVE_ATA | DRIVE_ATAPI);
322 1.67 bouyer WDCDEBUG_PRINT(("%s:%d:%d: IDENTIFY failed\n",
323 1.67 bouyer chp->wdc->sc_dev.dv_xname,
324 1.67 bouyer chp->channel, i), DEBUG_PROBE);
325 1.67 bouyer if ((chp->ch_drive[i].drive_flags & DRIVE_OLD) == 0)
326 1.67 bouyer continue;
327 1.68 bouyer /*
328 1.68 bouyer * Pre-ATA drive ?
329 1.68 bouyer * Test registers writability (Error register not
330 1.68 bouyer * writable, but cyllo is), then try an ATA command.
331 1.68 bouyer */
332 1.68 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
333 1.68 bouyer WDSD_IBM | (i << 4));
334 1.68 bouyer delay(10);
335 1.68 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh,
336 1.68 bouyer wd_error, 0x58);
337 1.68 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh,
338 1.68 bouyer wd_cyl_lo, 0xa5);
339 1.68 bouyer if (bus_space_read_1(chp->cmd_iot, chp->cmd_ioh,
340 1.68 bouyer wd_error == 0x58) ||
341 1.68 bouyer bus_space_read_1(chp->cmd_iot, chp->cmd_ioh,
342 1.68 bouyer wd_cyl_lo) != 0xa5) {
343 1.68 bouyer WDCDEBUG_PRINT(("%s:%d:%d: register "
344 1.68 bouyer "writability failed\n",
345 1.68 bouyer chp->wdc->sc_dev.dv_xname,
346 1.68 bouyer chp->channel, i), DEBUG_PROBE);
347 1.68 bouyer chp->ch_drive[i].drive_flags &= ~DRIVE_OLD;
348 1.68 bouyer }
349 1.67 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
350 1.67 bouyer WDSD_IBM | (i << 4));
351 1.67 bouyer delay(100);
352 1.67 bouyer if (wait_for_ready(chp, 10000) != 0) {
353 1.67 bouyer WDCDEBUG_PRINT(("%s:%d:%d: not ready\n",
354 1.67 bouyer chp->wdc->sc_dev.dv_xname,
355 1.67 bouyer chp->channel, i), DEBUG_PROBE);
356 1.67 bouyer chp->ch_drive[i].drive_flags &= ~DRIVE_OLD;
357 1.67 bouyer continue;
358 1.67 bouyer }
359 1.67 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh,
360 1.67 bouyer wd_command, WDCC_RECAL);
361 1.67 bouyer if (wait_for_ready(chp, 10000) != 0) {
362 1.67 bouyer WDCDEBUG_PRINT(("%s:%d:%d: WDCC_RECAL failed\n",
363 1.67 bouyer chp->wdc->sc_dev.dv_xname,
364 1.67 bouyer chp->channel, i), DEBUG_PROBE);
365 1.67 bouyer chp->ch_drive[i].drive_flags &= ~DRIVE_OLD;
366 1.67 bouyer }
367 1.62 bouyer }
368 1.62 bouyer }
369 1.31 bouyer ctrl_flags = chp->wdc->sc_dev.dv_cfdata->cf_flags;
370 1.31 bouyer channel_flags = (ctrl_flags >> (NBBY * chp->channel)) & 0xff;
371 1.31 bouyer
372 1.31 bouyer WDCDEBUG_PRINT(("wdcattach: ch_drive_flags 0x%x 0x%x\n",
373 1.31 bouyer chp->ch_drive[0].drive_flags, chp->ch_drive[1].drive_flags),
374 1.31 bouyer DEBUG_PROBE);
375 1.12 cgd
376 1.67 bouyer /* If no drives, abort here */
377 1.67 bouyer if ((chp->ch_drive[0].drive_flags & DRIVE) == 0 &&
378 1.67 bouyer (chp->ch_drive[1].drive_flags & DRIVE) == 0)
379 1.74 enami goto out;
380 1.67 bouyer
381 1.12 cgd /*
382 1.31 bouyer * Attach an ATAPI bus, if needed.
383 1.12 cgd */
384 1.31 bouyer if ((chp->ch_drive[0].drive_flags & DRIVE_ATAPI) ||
385 1.31 bouyer (chp->ch_drive[1].drive_flags & DRIVE_ATAPI)) {
386 1.31 bouyer #if NATAPIBUS > 0
387 1.31 bouyer wdc_atapibus_attach(chp);
388 1.31 bouyer #else
389 1.31 bouyer /*
390 1.31 bouyer * Fills in a fake aa_link and call config_found, so that
391 1.31 bouyer * the config machinery will print
392 1.31 bouyer * "atapibus at xxx not configured"
393 1.31 bouyer */
394 1.31 bouyer memset(&aa_link, 0, sizeof(struct ata_atapi_attach));
395 1.31 bouyer aa_link.aa_type = T_ATAPI;
396 1.31 bouyer aa_link.aa_channel = chp->channel;
397 1.31 bouyer aa_link.aa_openings = 1;
398 1.31 bouyer aa_link.aa_drv_data = 0;
399 1.31 bouyer aa_link.aa_bus_private = NULL;
400 1.74 enami chp->atapibus = config_found(&chp->wdc->sc_dev,
401 1.74 enami (void *)&aa_link, atapi_print);
402 1.31 bouyer #endif
403 1.31 bouyer }
404 1.31 bouyer
405 1.31 bouyer for (i = 0; i < 2; i++) {
406 1.67 bouyer if ((chp->ch_drive[i].drive_flags &
407 1.67 bouyer (DRIVE_ATA | DRIVE_OLD)) == 0) {
408 1.31 bouyer continue;
409 1.31 bouyer }
410 1.31 bouyer memset(&aa_link, 0, sizeof(struct ata_atapi_attach));
411 1.31 bouyer aa_link.aa_type = T_ATA;
412 1.31 bouyer aa_link.aa_channel = chp->channel;
413 1.31 bouyer aa_link.aa_openings = 1;
414 1.31 bouyer aa_link.aa_drv_data = &chp->ch_drive[i];
415 1.31 bouyer if (config_found(&chp->wdc->sc_dev, (void *)&aa_link, wdprint))
416 1.31 bouyer wdc_probe_caps(&chp->ch_drive[i]);
417 1.32 bouyer }
418 1.32 bouyer
419 1.32 bouyer /*
420 1.32 bouyer * reset drive_flags for unnatached devices, reset state for attached
421 1.32 bouyer * ones
422 1.32 bouyer */
423 1.32 bouyer for (i = 0; i < 2; i++) {
424 1.32 bouyer if (chp->ch_drive[i].drv_softc == NULL)
425 1.32 bouyer chp->ch_drive[i].drive_flags = 0;
426 1.32 bouyer else
427 1.32 bouyer chp->ch_drive[i].state = 0;
428 1.2 bouyer }
429 1.12 cgd
430 1.12 cgd /*
431 1.31 bouyer * Reset channel. The probe, with some combinations of ATA/ATAPI
432 1.31 bouyer * devices keep it in a mostly working, but strange state (with busy
433 1.31 bouyer * led on)
434 1.12 cgd */
435 1.31 bouyer if ((chp->wdc->cap & WDC_CAPABILITY_NO_EXTRA_RESETS) == 0) {
436 1.31 bouyer wdcreset(chp, VERBOSE);
437 1.31 bouyer /*
438 1.31 bouyer * Read status registers to avoid spurious interrupts.
439 1.31 bouyer */
440 1.31 bouyer for (i = 1; i >= 0; i--) {
441 1.31 bouyer if (chp->ch_drive[i].drive_flags & DRIVE) {
442 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh,
443 1.31 bouyer wd_sdh, WDSD_IBM | (i << 4));
444 1.31 bouyer if (wait_for_unbusy(chp, 10000) < 0)
445 1.31 bouyer printf("%s:%d:%d: device busy\n",
446 1.31 bouyer chp->wdc->sc_dev.dv_xname,
447 1.31 bouyer chp->channel, i);
448 1.31 bouyer }
449 1.31 bouyer }
450 1.31 bouyer }
451 1.74 enami
452 1.74 enami out:
453 1.44 thorpej wdc_delref(chp);
454 1.74 enami }
455 1.74 enami
456 1.74 enami /*
457 1.74 enami * Call activate routine of underlying devices.
458 1.74 enami */
459 1.74 enami int
460 1.74 enami wdcactivate(self, act)
461 1.74 enami struct device *self;
462 1.74 enami enum devact act;
463 1.74 enami {
464 1.74 enami struct wdc_softc *wdc = (struct wdc_softc *)self;
465 1.74 enami struct channel_softc *chp;
466 1.74 enami struct device *sc;
467 1.74 enami int s, i, j, error = 0;
468 1.74 enami
469 1.74 enami s = splbio();
470 1.74 enami switch (act) {
471 1.74 enami case DVACT_ACTIVATE:
472 1.74 enami error = EOPNOTSUPP;
473 1.74 enami break;
474 1.74 enami
475 1.74 enami case DVACT_DEACTIVATE:
476 1.74 enami for (i = 0; i < wdc->nchannels; i++) {
477 1.74 enami chp = wdc->channels[i];
478 1.74 enami
479 1.74 enami /*
480 1.74 enami * We might call deactivate routine for
481 1.74 enami * the children of atapibus twice (once via
482 1.74 enami * atapibus, once directly), but since
483 1.74 enami * config_deactivate maintains DVF_ACTIVE flag,
484 1.74 enami * it's safe.
485 1.74 enami */
486 1.74 enami sc = chp->atapibus;
487 1.74 enami if (sc != NULL) {
488 1.74 enami error = config_deactivate(sc);
489 1.74 enami if (error != 0)
490 1.74 enami goto out;
491 1.74 enami }
492 1.74 enami
493 1.74 enami for (j = 0; j < 2; j++) {
494 1.74 enami sc = chp->ch_drive[j].drv_softc;
495 1.74 enami WDCDEBUG_PRINT(("wdcactivate: %s:"
496 1.74 enami " deactivating %s\n", wdc->sc_dev.dv_xname,
497 1.74 enami sc == NULL ? "nodrv" : sc->dv_xname),
498 1.74 enami DEBUG_DETACH);
499 1.74 enami if (sc != NULL) {
500 1.74 enami error = config_deactivate(sc);
501 1.74 enami if (error != 0)
502 1.74 enami goto out;
503 1.74 enami }
504 1.74 enami }
505 1.74 enami }
506 1.74 enami break;
507 1.74 enami }
508 1.74 enami
509 1.74 enami out:
510 1.74 enami splx(s);
511 1.74 enami
512 1.74 enami #ifdef WDCDEBUG
513 1.74 enami if (error != 0)
514 1.74 enami WDCDEBUG_PRINT(("wdcactivate: %s: error %d deactivating %s\n",
515 1.74 enami wdc->sc_dev.dv_xname, error, sc->dv_xname), DEBUG_DETACH);
516 1.74 enami #endif
517 1.74 enami return (error);
518 1.74 enami }
519 1.74 enami
520 1.74 enami int
521 1.74 enami wdcdetach(self, flags)
522 1.74 enami struct device *self;
523 1.74 enami int flags;
524 1.74 enami {
525 1.74 enami struct wdc_softc *wdc = (struct wdc_softc *)self;
526 1.74 enami struct channel_softc *chp;
527 1.74 enami struct device *sc;
528 1.74 enami int i, j, error = 0;
529 1.74 enami
530 1.74 enami for (i = 0; i < wdc->nchannels; i++) {
531 1.74 enami chp = wdc->channels[i];
532 1.74 enami
533 1.74 enami /*
534 1.74 enami * Detach atapibus and its children.
535 1.74 enami */
536 1.74 enami sc = chp->atapibus;
537 1.74 enami if (sc != NULL) {
538 1.74 enami WDCDEBUG_PRINT(("wdcdetach: %s: detaching %s\n",
539 1.74 enami wdc->sc_dev.dv_xname, sc->dv_xname), DEBUG_DETACH);
540 1.74 enami error = config_detach(sc, flags);
541 1.74 enami if (error != 0)
542 1.74 enami goto out;
543 1.74 enami }
544 1.74 enami
545 1.74 enami /*
546 1.74 enami * Detach our other children.
547 1.74 enami */
548 1.74 enami for (j = 0; j < 2; j++) {
549 1.74 enami sc = chp->ch_drive[j].drv_softc;
550 1.74 enami WDCDEBUG_PRINT(("wdcdetach: %s: detaching %s\n",
551 1.74 enami wdc->sc_dev.dv_xname,
552 1.74 enami sc == NULL ? "nodrv" : sc->dv_xname),
553 1.74 enami DEBUG_DETACH);
554 1.74 enami if (sc != NULL) {
555 1.74 enami error = config_detach(sc, flags);
556 1.74 enami if (error != 0)
557 1.74 enami goto out;
558 1.74 enami }
559 1.74 enami }
560 1.74 enami }
561 1.74 enami
562 1.74 enami out:
563 1.74 enami #ifdef WDCDEBUG
564 1.74 enami if (error != 0)
565 1.74 enami WDCDEBUG_PRINT(("wdcdetach: %s: error %d detaching %s\n",
566 1.74 enami wdc->sc_dev.dv_xname, error, sc->dv_xname), DEBUG_DETACH);
567 1.74 enami #endif
568 1.74 enami return (error);
569 1.31 bouyer }
570 1.31 bouyer
571 1.31 bouyer /*
572 1.31 bouyer * Start I/O on a controller, for the given channel.
573 1.31 bouyer * The first xfer may be not for our channel if the channel queues
574 1.31 bouyer * are shared.
575 1.31 bouyer */
576 1.31 bouyer void
577 1.45 drochner wdcstart(chp)
578 1.45 drochner struct channel_softc *chp;
579 1.31 bouyer {
580 1.31 bouyer struct wdc_xfer *xfer;
581 1.38 bouyer
582 1.38 bouyer #ifdef WDC_DIAGNOSTIC
583 1.38 bouyer int spl1, spl2;
584 1.38 bouyer
585 1.38 bouyer spl1 = splbio();
586 1.38 bouyer spl2 = splbio();
587 1.38 bouyer if (spl2 != spl1) {
588 1.38 bouyer printf("wdcstart: not at splbio()\n");
589 1.38 bouyer panic("wdcstart");
590 1.38 bouyer }
591 1.38 bouyer splx(spl2);
592 1.38 bouyer splx(spl1);
593 1.38 bouyer #endif /* WDC_DIAGNOSTIC */
594 1.12 cgd
595 1.31 bouyer /* is there a xfer ? */
596 1.45 drochner if ((xfer = chp->ch_queue->sc_xfer.tqh_first) == NULL)
597 1.31 bouyer return;
598 1.47 bouyer
599 1.47 bouyer /* adjust chp, in case we have a shared queue */
600 1.49 bouyer chp = xfer->chp;
601 1.47 bouyer
602 1.31 bouyer if ((chp->ch_flags & WDCF_ACTIVE) != 0 ) {
603 1.31 bouyer return; /* channel aleady active */
604 1.31 bouyer }
605 1.31 bouyer #ifdef DIAGNOSTIC
606 1.31 bouyer if ((chp->ch_flags & WDCF_IRQ_WAIT) != 0)
607 1.31 bouyer panic("wdcstart: channel waiting for irq\n");
608 1.31 bouyer #endif
609 1.45 drochner if (chp->wdc->cap & WDC_CAPABILITY_HWLOCK)
610 1.45 drochner if (!(*chp->wdc->claim_hw)(chp, 0))
611 1.31 bouyer return;
612 1.12 cgd
613 1.31 bouyer WDCDEBUG_PRINT(("wdcstart: xfer %p channel %d drive %d\n", xfer,
614 1.49 bouyer chp->channel, xfer->drive), DEBUG_XFERS);
615 1.31 bouyer chp->ch_flags |= WDCF_ACTIVE;
616 1.37 bouyer if (chp->ch_drive[xfer->drive].drive_flags & DRIVE_RESET) {
617 1.37 bouyer chp->ch_drive[xfer->drive].drive_flags &= ~DRIVE_RESET;
618 1.37 bouyer chp->ch_drive[xfer->drive].state = 0;
619 1.37 bouyer }
620 1.31 bouyer xfer->c_start(chp, xfer);
621 1.31 bouyer }
622 1.2 bouyer
623 1.31 bouyer /* restart an interrupted I/O */
624 1.31 bouyer void
625 1.31 bouyer wdcrestart(v)
626 1.31 bouyer void *v;
627 1.31 bouyer {
628 1.31 bouyer struct channel_softc *chp = v;
629 1.31 bouyer int s;
630 1.2 bouyer
631 1.31 bouyer s = splbio();
632 1.45 drochner wdcstart(chp);
633 1.31 bouyer splx(s);
634 1.2 bouyer }
635 1.31 bouyer
636 1.2 bouyer
637 1.31 bouyer /*
638 1.31 bouyer * Interrupt routine for the controller. Acknowledge the interrupt, check for
639 1.31 bouyer * errors on the current operation, mark it done if necessary, and start the
640 1.31 bouyer * next request. Also check for a partially done transfer, and continue with
641 1.31 bouyer * the next chunk if so.
642 1.31 bouyer */
643 1.12 cgd int
644 1.31 bouyer wdcintr(arg)
645 1.31 bouyer void *arg;
646 1.12 cgd {
647 1.31 bouyer struct channel_softc *chp = arg;
648 1.31 bouyer struct wdc_xfer *xfer;
649 1.12 cgd
650 1.31 bouyer if ((chp->ch_flags & WDCF_IRQ_WAIT) == 0) {
651 1.31 bouyer WDCDEBUG_PRINT(("wdcintr: inactive controller\n"), DEBUG_INTR);
652 1.31 bouyer return 0;
653 1.31 bouyer }
654 1.12 cgd
655 1.31 bouyer WDCDEBUG_PRINT(("wdcintr\n"), DEBUG_INTR);
656 1.31 bouyer chp->ch_flags &= ~WDCF_IRQ_WAIT;
657 1.31 bouyer xfer = chp->ch_queue->sc_xfer.tqh_first;
658 1.66 bouyer return xfer->c_intr(chp, xfer, 1);
659 1.12 cgd }
660 1.12 cgd
661 1.31 bouyer /* Put all disk in RESET state */
662 1.31 bouyer void wdc_reset_channel(drvp)
663 1.31 bouyer struct ata_drive_datas *drvp;
664 1.2 bouyer {
665 1.31 bouyer struct channel_softc *chp = drvp->chnl_softc;
666 1.2 bouyer int drive;
667 1.34 bouyer WDCDEBUG_PRINT(("ata_reset_channel %s:%d for drive %d\n",
668 1.34 bouyer chp->wdc->sc_dev.dv_xname, chp->channel, drvp->drive),
669 1.34 bouyer DEBUG_FUNCS);
670 1.31 bouyer (void) wdcreset(chp, VERBOSE);
671 1.31 bouyer for (drive = 0; drive < 2; drive++) {
672 1.31 bouyer chp->ch_drive[drive].state = 0;
673 1.12 cgd }
674 1.31 bouyer }
675 1.12 cgd
676 1.31 bouyer int
677 1.31 bouyer wdcreset(chp, verb)
678 1.31 bouyer struct channel_softc *chp;
679 1.31 bouyer int verb;
680 1.31 bouyer {
681 1.31 bouyer int drv_mask1, drv_mask2;
682 1.2 bouyer
683 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
684 1.31 bouyer WDSD_IBM); /* master */
685 1.31 bouyer bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr,
686 1.31 bouyer WDCTL_RST | WDCTL_IDS);
687 1.31 bouyer delay(1000);
688 1.31 bouyer bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr,
689 1.31 bouyer WDCTL_IDS);
690 1.31 bouyer delay(1000);
691 1.31 bouyer (void) bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_error);
692 1.31 bouyer bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr,
693 1.31 bouyer WDCTL_4BIT);
694 1.2 bouyer
695 1.31 bouyer drv_mask1 = (chp->ch_drive[0].drive_flags & DRIVE) ? 0x01:0x00;
696 1.31 bouyer drv_mask1 |= (chp->ch_drive[1].drive_flags & DRIVE) ? 0x02:0x00;
697 1.31 bouyer drv_mask2 = __wdcwait_reset(chp, drv_mask1);
698 1.31 bouyer if (verb && drv_mask2 != drv_mask1) {
699 1.31 bouyer printf("%s channel %d: reset failed for",
700 1.31 bouyer chp->wdc->sc_dev.dv_xname, chp->channel);
701 1.31 bouyer if ((drv_mask1 & 0x01) != 0 && (drv_mask2 & 0x01) == 0)
702 1.31 bouyer printf(" drive 0");
703 1.31 bouyer if ((drv_mask1 & 0x02) != 0 && (drv_mask2 & 0x02) == 0)
704 1.31 bouyer printf(" drive 1");
705 1.31 bouyer printf("\n");
706 1.31 bouyer }
707 1.31 bouyer return (drv_mask1 != drv_mask2) ? 1 : 0;
708 1.31 bouyer }
709 1.31 bouyer
710 1.31 bouyer static int
711 1.31 bouyer __wdcwait_reset(chp, drv_mask)
712 1.31 bouyer struct channel_softc *chp;
713 1.31 bouyer int drv_mask;
714 1.31 bouyer {
715 1.31 bouyer int timeout;
716 1.31 bouyer u_int8_t st0, st1;
717 1.70 bouyer #ifdef WDCDEBUG
718 1.70 bouyer u_int8_t sc0, sn0, cl0, ch0;
719 1.70 bouyer u_int8_t sc1, sn1, cl1, ch1;
720 1.70 bouyer #endif
721 1.31 bouyer /* wait for BSY to deassert */
722 1.31 bouyer for (timeout = 0; timeout < WDCNDELAY_RST;timeout++) {
723 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
724 1.31 bouyer WDSD_IBM); /* master */
725 1.65 bouyer delay(10);
726 1.31 bouyer st0 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_status);
727 1.70 bouyer #ifdef WDCDEBUG
728 1.70 bouyer sc0 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_seccnt);
729 1.70 bouyer sn0 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_sector);
730 1.70 bouyer cl0 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_cyl_lo);
731 1.70 bouyer ch0 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_cyl_hi);
732 1.70 bouyer #endif
733 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
734 1.31 bouyer WDSD_IBM | 0x10); /* slave */
735 1.65 bouyer delay(10);
736 1.31 bouyer st1 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_status);
737 1.70 bouyer #ifdef WDCDEBUG
738 1.70 bouyer sc1 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_seccnt);
739 1.70 bouyer sn1 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_sector);
740 1.70 bouyer cl1 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_cyl_lo);
741 1.70 bouyer ch1 = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_cyl_hi);
742 1.70 bouyer #endif
743 1.31 bouyer
744 1.31 bouyer if ((drv_mask & 0x01) == 0) {
745 1.31 bouyer /* no master */
746 1.31 bouyer if ((drv_mask & 0x02) != 0 && (st1 & WDCS_BSY) == 0) {
747 1.31 bouyer /* No master, slave is ready, it's done */
748 1.65 bouyer goto end;
749 1.31 bouyer }
750 1.31 bouyer } else if ((drv_mask & 0x02) == 0) {
751 1.31 bouyer /* no slave */
752 1.31 bouyer if ((drv_mask & 0x01) != 0 && (st0 & WDCS_BSY) == 0) {
753 1.31 bouyer /* No slave, master is ready, it's done */
754 1.65 bouyer goto end;
755 1.31 bouyer }
756 1.2 bouyer } else {
757 1.31 bouyer /* Wait for both master and slave to be ready */
758 1.31 bouyer if ((st0 & WDCS_BSY) == 0 && (st1 & WDCS_BSY) == 0) {
759 1.65 bouyer goto end;
760 1.2 bouyer }
761 1.2 bouyer }
762 1.31 bouyer delay(WDCDELAY);
763 1.2 bouyer }
764 1.31 bouyer /* Reset timed out. Maybe it's because drv_mask was not rigth */
765 1.31 bouyer if (st0 & WDCS_BSY)
766 1.31 bouyer drv_mask &= ~0x01;
767 1.31 bouyer if (st1 & WDCS_BSY)
768 1.31 bouyer drv_mask &= ~0x02;
769 1.65 bouyer end:
770 1.70 bouyer WDCDEBUG_PRINT(("%s:%d:0: after reset, sc=0x%x sn=0x%x "
771 1.70 bouyer "cl=0x%x ch=0x%x\n",
772 1.70 bouyer chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe",
773 1.70 bouyer chp->channel, sc0, sn0, cl0, ch0), DEBUG_PROBE);
774 1.70 bouyer WDCDEBUG_PRINT(("%s:%d:1: after reset, sc=0x%x sn=0x%x "
775 1.70 bouyer "cl=0x%x ch=0x%x\n",
776 1.70 bouyer chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe",
777 1.70 bouyer chp->channel, sc1, sn1, cl1, ch1), DEBUG_PROBE);
778 1.70 bouyer
779 1.65 bouyer WDCDEBUG_PRINT(("%s:%d: wdcwait_reset() end, st0=0x%x, st1=0x%x\n",
780 1.65 bouyer chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe", chp->channel,
781 1.65 bouyer st0, st1), DEBUG_PROBE);
782 1.65 bouyer
783 1.31 bouyer return drv_mask;
784 1.2 bouyer }
785 1.2 bouyer
786 1.2 bouyer /*
787 1.31 bouyer * Wait for a drive to be !BSY, and have mask in its status register.
788 1.31 bouyer * return -1 for a timeout after "timeout" ms.
789 1.2 bouyer */
790 1.31 bouyer int
791 1.31 bouyer wdcwait(chp, mask, bits, timeout)
792 1.31 bouyer struct channel_softc *chp;
793 1.31 bouyer int mask, bits, timeout;
794 1.2 bouyer {
795 1.31 bouyer u_char status;
796 1.31 bouyer int time = 0;
797 1.31 bouyer #ifdef WDCNDELAY_DEBUG
798 1.31 bouyer extern int cold;
799 1.31 bouyer #endif
800 1.60 abs
801 1.60 abs WDCDEBUG_PRINT(("wdcwait %s:%d\n", chp->wdc ?chp->wdc->sc_dev.dv_xname
802 1.60 abs :"none", chp->channel), DEBUG_STATUS);
803 1.31 bouyer chp->ch_error = 0;
804 1.31 bouyer
805 1.31 bouyer timeout = timeout * 1000 / WDCDELAY; /* delay uses microseconds */
806 1.2 bouyer
807 1.31 bouyer for (;;) {
808 1.31 bouyer chp->ch_status = status =
809 1.31 bouyer bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_status);
810 1.31 bouyer if ((status & WDCS_BSY) == 0 && (status & mask) == bits)
811 1.31 bouyer break;
812 1.31 bouyer if (++time > timeout) {
813 1.31 bouyer WDCDEBUG_PRINT(("wdcwait: timeout, status %x "
814 1.31 bouyer "error %x\n", status,
815 1.31 bouyer bus_space_read_1(chp->cmd_iot, chp->cmd_ioh,
816 1.31 bouyer wd_error)),
817 1.31 bouyer DEBUG_STATUS);
818 1.31 bouyer return -1;
819 1.31 bouyer }
820 1.31 bouyer delay(WDCDELAY);
821 1.2 bouyer }
822 1.31 bouyer if (status & WDCS_ERR)
823 1.31 bouyer chp->ch_error = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh,
824 1.31 bouyer wd_error);
825 1.31 bouyer #ifdef WDCNDELAY_DEBUG
826 1.31 bouyer /* After autoconfig, there should be no long delays. */
827 1.31 bouyer if (!cold && time > WDCNDELAY_DEBUG) {
828 1.31 bouyer struct wdc_xfer *xfer = chp->ch_queue->sc_xfer.tqh_first;
829 1.31 bouyer if (xfer == NULL)
830 1.31 bouyer printf("%s channel %d: warning: busy-wait took %dus\n",
831 1.31 bouyer chp->wdc->sc_dev.dv_xname, chp->channel,
832 1.31 bouyer WDCDELAY * time);
833 1.31 bouyer else
834 1.31 bouyer printf("%s:%d:%d: warning: busy-wait took %dus\n",
835 1.49 bouyer chp->wdc->sc_dev.dv_xname, chp->channel,
836 1.31 bouyer xfer->drive,
837 1.31 bouyer WDCDELAY * time);
838 1.2 bouyer }
839 1.2 bouyer #endif
840 1.31 bouyer return 0;
841 1.2 bouyer }
842 1.2 bouyer
843 1.31 bouyer void
844 1.31 bouyer wdctimeout(arg)
845 1.31 bouyer void *arg;
846 1.2 bouyer {
847 1.31 bouyer struct channel_softc *chp = (struct channel_softc *)arg;
848 1.31 bouyer struct wdc_xfer *xfer = chp->ch_queue->sc_xfer.tqh_first;
849 1.31 bouyer int s;
850 1.2 bouyer
851 1.31 bouyer WDCDEBUG_PRINT(("wdctimeout\n"), DEBUG_FUNCS);
852 1.31 bouyer
853 1.31 bouyer s = splbio();
854 1.31 bouyer if ((chp->ch_flags & WDCF_IRQ_WAIT) != 0) {
855 1.31 bouyer __wdcerror(chp, "lost interrupt");
856 1.31 bouyer printf("\ttype: %s\n", (xfer->c_flags & C_ATAPI) ?
857 1.31 bouyer "atapi":"ata");
858 1.31 bouyer printf("\tc_bcount: %d\n", xfer->c_bcount);
859 1.31 bouyer printf("\tc_skip: %d\n", xfer->c_skip);
860 1.31 bouyer /*
861 1.31 bouyer * Call the interrupt routine. If we just missed and interrupt,
862 1.31 bouyer * it will do what's needed. Else, it will take the needed
863 1.31 bouyer * action (reset the device).
864 1.70 bouyer * Before that we need to reinstall the timeout callback,
865 1.70 bouyer * in case it will miss another irq while in this transfer
866 1.70 bouyer * We arbitray chose it to be 1s
867 1.31 bouyer */
868 1.70 bouyer timeout(wdctimeout, chp, hz);
869 1.31 bouyer xfer->c_flags |= C_TIMEOU;
870 1.31 bouyer chp->ch_flags &= ~WDCF_IRQ_WAIT;
871 1.66 bouyer xfer->c_intr(chp, xfer, 1);
872 1.31 bouyer } else
873 1.31 bouyer __wdcerror(chp, "missing untimeout");
874 1.31 bouyer splx(s);
875 1.2 bouyer }
876 1.2 bouyer
877 1.31 bouyer /*
878 1.31 bouyer * Probe drive's capabilites, for use by the controller later
879 1.31 bouyer * Assumes drvp points to an existing drive.
880 1.31 bouyer * XXX this should be a controller-indep function
881 1.31 bouyer */
882 1.2 bouyer void
883 1.31 bouyer wdc_probe_caps(drvp)
884 1.31 bouyer struct ata_drive_datas *drvp;
885 1.2 bouyer {
886 1.31 bouyer struct ataparams params, params2;
887 1.31 bouyer struct channel_softc *chp = drvp->chnl_softc;
888 1.31 bouyer struct device *drv_dev = drvp->drv_softc;
889 1.31 bouyer struct wdc_softc *wdc = chp->wdc;
890 1.31 bouyer int i, printed;
891 1.31 bouyer char *sep = "";
892 1.48 bouyer int cf_flags;
893 1.31 bouyer
894 1.31 bouyer if (ata_get_params(drvp, AT_POLL, ¶ms) != CMD_OK) {
895 1.31 bouyer /* IDENTIFY failed. Can't tell more about the device */
896 1.2 bouyer return;
897 1.2 bouyer }
898 1.31 bouyer if ((wdc->cap & (WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32)) ==
899 1.31 bouyer (WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32)) {
900 1.2 bouyer /*
901 1.39 bouyer * Controller claims 16 and 32 bit transfers.
902 1.39 bouyer * Re-do an IDENTIFY with 32-bit transfers,
903 1.31 bouyer * and compare results.
904 1.2 bouyer */
905 1.31 bouyer drvp->drive_flags |= DRIVE_CAP32;
906 1.31 bouyer ata_get_params(drvp, AT_POLL, ¶ms2);
907 1.31 bouyer if (memcmp(¶ms, ¶ms2, sizeof(struct ataparams)) != 0) {
908 1.31 bouyer /* Not good. fall back to 16bits */
909 1.31 bouyer drvp->drive_flags &= ~DRIVE_CAP32;
910 1.31 bouyer } else {
911 1.55 bouyer printf("%s: 32-bits data port", drv_dev->dv_xname);
912 1.2 bouyer }
913 1.2 bouyer }
914 1.55 bouyer #if 0 /* Some ultra-DMA drives claims to only support ATA-3. sigh */
915 1.55 bouyer if (params.atap_ata_major > 0x01 &&
916 1.55 bouyer params.atap_ata_major != 0xffff) {
917 1.55 bouyer for (i = 14; i > 0; i--) {
918 1.55 bouyer if (params.atap_ata_major & (1 << i)) {
919 1.55 bouyer if ((drvp->drive_flags & DRIVE_CAP32) == 0)
920 1.55 bouyer printf("%s: ", drv_dev->dv_xname);
921 1.55 bouyer else
922 1.55 bouyer printf(", ");
923 1.55 bouyer printf("ATA version %d\n", i);
924 1.55 bouyer drvp->ata_vers = i;
925 1.55 bouyer break;
926 1.55 bouyer }
927 1.55 bouyer }
928 1.58 bouyer } else
929 1.55 bouyer #endif
930 1.58 bouyer if (drvp->drive_flags & DRIVE_CAP32)
931 1.55 bouyer printf("\n");
932 1.2 bouyer
933 1.31 bouyer /* An ATAPI device is at last PIO mode 3 */
934 1.31 bouyer if (drvp->drive_flags & DRIVE_ATAPI)
935 1.31 bouyer drvp->PIO_mode = 3;
936 1.2 bouyer
937 1.2 bouyer /*
938 1.31 bouyer * It's not in the specs, but it seems that some drive
939 1.31 bouyer * returns 0xffff in atap_extensions when this field is invalid
940 1.2 bouyer */
941 1.31 bouyer if (params.atap_extensions != 0xffff &&
942 1.31 bouyer (params.atap_extensions & WDC_EXT_MODES)) {
943 1.31 bouyer printed = 0;
944 1.31 bouyer /*
945 1.31 bouyer * XXX some drives report something wrong here (they claim to
946 1.31 bouyer * support PIO mode 8 !). As mode is coded on 3 bits in
947 1.31 bouyer * SET FEATURE, limit it to 7 (so limit i to 4).
948 1.39 bouyer * If higther mode than 7 is found, abort.
949 1.31 bouyer */
950 1.39 bouyer for (i = 7; i >= 0; i--) {
951 1.31 bouyer if ((params.atap_piomode_supp & (1 << i)) == 0)
952 1.31 bouyer continue;
953 1.39 bouyer if (i > 4)
954 1.39 bouyer return;
955 1.31 bouyer /*
956 1.31 bouyer * See if mode is accepted.
957 1.31 bouyer * If the controller can't set its PIO mode,
958 1.31 bouyer * assume the defaults are good, so don't try
959 1.31 bouyer * to set it
960 1.31 bouyer */
961 1.31 bouyer if ((wdc->cap & WDC_CAPABILITY_MODE) != 0)
962 1.31 bouyer if (ata_set_mode(drvp, 0x08 | (i + 3),
963 1.31 bouyer AT_POLL) != CMD_OK)
964 1.2 bouyer continue;
965 1.31 bouyer if (!printed) {
966 1.39 bouyer printf("%s: drive supports PIO mode %d",
967 1.39 bouyer drv_dev->dv_xname, i + 3);
968 1.31 bouyer sep = ",";
969 1.31 bouyer printed = 1;
970 1.31 bouyer }
971 1.31 bouyer /*
972 1.31 bouyer * If controller's driver can't set its PIO mode,
973 1.31 bouyer * get the highter one for the drive.
974 1.31 bouyer */
975 1.31 bouyer if ((wdc->cap & WDC_CAPABILITY_MODE) == 0 ||
976 1.52 bouyer wdc->PIO_cap >= i + 3) {
977 1.31 bouyer drvp->PIO_mode = i + 3;
978 1.48 bouyer drvp->PIO_cap = i + 3;
979 1.2 bouyer break;
980 1.2 bouyer }
981 1.2 bouyer }
982 1.31 bouyer if (!printed) {
983 1.31 bouyer /*
984 1.31 bouyer * We didn't find a valid PIO mode.
985 1.31 bouyer * Assume the values returned for DMA are buggy too
986 1.31 bouyer */
987 1.31 bouyer return;
988 1.2 bouyer }
989 1.35 bouyer drvp->drive_flags |= DRIVE_MODE;
990 1.31 bouyer printed = 0;
991 1.31 bouyer for (i = 7; i >= 0; i--) {
992 1.31 bouyer if ((params.atap_dmamode_supp & (1 << i)) == 0)
993 1.31 bouyer continue;
994 1.31 bouyer if ((wdc->cap & WDC_CAPABILITY_DMA) &&
995 1.31 bouyer (wdc->cap & WDC_CAPABILITY_MODE))
996 1.31 bouyer if (ata_set_mode(drvp, 0x20 | i, AT_POLL)
997 1.31 bouyer != CMD_OK)
998 1.31 bouyer continue;
999 1.31 bouyer if (!printed) {
1000 1.31 bouyer printf("%s DMA mode %d", sep, i);
1001 1.31 bouyer sep = ",";
1002 1.31 bouyer printed = 1;
1003 1.31 bouyer }
1004 1.31 bouyer if (wdc->cap & WDC_CAPABILITY_DMA) {
1005 1.31 bouyer if ((wdc->cap & WDC_CAPABILITY_MODE) &&
1006 1.52 bouyer wdc->DMA_cap < i)
1007 1.31 bouyer continue;
1008 1.31 bouyer drvp->DMA_mode = i;
1009 1.48 bouyer drvp->DMA_cap = i;
1010 1.31 bouyer drvp->drive_flags |= DRIVE_DMA;
1011 1.31 bouyer }
1012 1.2 bouyer break;
1013 1.2 bouyer }
1014 1.31 bouyer if (params.atap_extensions & WDC_EXT_UDMA_MODES) {
1015 1.71 bouyer printed = 0;
1016 1.31 bouyer for (i = 7; i >= 0; i--) {
1017 1.31 bouyer if ((params.atap_udmamode_supp & (1 << i))
1018 1.31 bouyer == 0)
1019 1.31 bouyer continue;
1020 1.31 bouyer if ((wdc->cap & WDC_CAPABILITY_MODE) &&
1021 1.31 bouyer (wdc->cap & WDC_CAPABILITY_UDMA))
1022 1.31 bouyer if (ata_set_mode(drvp, 0x40 | i,
1023 1.31 bouyer AT_POLL) != CMD_OK)
1024 1.31 bouyer continue;
1025 1.71 bouyer if (!printed) {
1026 1.71 bouyer printf("%s Ultra-DMA mode %d", sep, i);
1027 1.71 bouyer sep = ",";
1028 1.71 bouyer printed = 1;
1029 1.71 bouyer }
1030 1.31 bouyer if (wdc->cap & WDC_CAPABILITY_UDMA) {
1031 1.50 bouyer if ((wdc->cap & WDC_CAPABILITY_MODE) &&
1032 1.52 bouyer wdc->UDMA_cap < i)
1033 1.50 bouyer continue;
1034 1.31 bouyer drvp->UDMA_mode = i;
1035 1.48 bouyer drvp->UDMA_cap = i;
1036 1.31 bouyer drvp->drive_flags |= DRIVE_UDMA;
1037 1.31 bouyer }
1038 1.31 bouyer break;
1039 1.31 bouyer }
1040 1.31 bouyer }
1041 1.31 bouyer printf("\n");
1042 1.55 bouyer }
1043 1.55 bouyer
1044 1.55 bouyer /* Try to guess ATA version here, if it didn't get reported */
1045 1.55 bouyer if (drvp->ata_vers == 0) {
1046 1.55 bouyer if (drvp->drive_flags & DRIVE_UDMA)
1047 1.55 bouyer drvp->ata_vers = 4; /* should be at last ATA-4 */
1048 1.55 bouyer else if (drvp->PIO_cap > 2)
1049 1.55 bouyer drvp->ata_vers = 2; /* should be at last ATA-2 */
1050 1.48 bouyer }
1051 1.48 bouyer cf_flags = drv_dev->dv_cfdata->cf_flags;
1052 1.48 bouyer if (cf_flags & ATA_CONFIG_PIO_SET) {
1053 1.48 bouyer drvp->PIO_mode =
1054 1.48 bouyer (cf_flags & ATA_CONFIG_PIO_MODES) >> ATA_CONFIG_PIO_OFF;
1055 1.48 bouyer drvp->drive_flags |= DRIVE_MODE;
1056 1.48 bouyer }
1057 1.48 bouyer if ((wdc->cap & WDC_CAPABILITY_DMA) == 0) {
1058 1.48 bouyer /* don't care about DMA modes */
1059 1.48 bouyer return;
1060 1.48 bouyer }
1061 1.48 bouyer if (cf_flags & ATA_CONFIG_DMA_SET) {
1062 1.48 bouyer if ((cf_flags & ATA_CONFIG_DMA_MODES) ==
1063 1.48 bouyer ATA_CONFIG_DMA_DISABLE) {
1064 1.48 bouyer drvp->drive_flags &= ~DRIVE_DMA;
1065 1.48 bouyer } else {
1066 1.48 bouyer drvp->DMA_mode = (cf_flags & ATA_CONFIG_DMA_MODES) >>
1067 1.48 bouyer ATA_CONFIG_DMA_OFF;
1068 1.48 bouyer drvp->drive_flags |= DRIVE_DMA | DRIVE_MODE;
1069 1.48 bouyer }
1070 1.48 bouyer }
1071 1.48 bouyer if (cf_flags & ATA_CONFIG_UDMA_SET) {
1072 1.48 bouyer if ((cf_flags & ATA_CONFIG_UDMA_MODES) ==
1073 1.48 bouyer ATA_CONFIG_UDMA_DISABLE) {
1074 1.48 bouyer drvp->drive_flags &= ~DRIVE_UDMA;
1075 1.48 bouyer } else {
1076 1.48 bouyer drvp->UDMA_mode = (cf_flags & ATA_CONFIG_UDMA_MODES) >>
1077 1.48 bouyer ATA_CONFIG_UDMA_OFF;
1078 1.48 bouyer drvp->drive_flags |= DRIVE_UDMA | DRIVE_MODE;
1079 1.48 bouyer }
1080 1.2 bouyer }
1081 1.54 bouyer }
1082 1.54 bouyer
1083 1.54 bouyer /*
1084 1.56 bouyer * downgrade the transfer mode of a drive after an error. return 1 if
1085 1.54 bouyer * downgrade was possible, 0 otherwise.
1086 1.54 bouyer */
1087 1.54 bouyer int
1088 1.54 bouyer wdc_downgrade_mode(drvp)
1089 1.54 bouyer struct ata_drive_datas *drvp;
1090 1.54 bouyer {
1091 1.54 bouyer struct channel_softc *chp = drvp->chnl_softc;
1092 1.54 bouyer struct device *drv_dev = drvp->drv_softc;
1093 1.54 bouyer struct wdc_softc *wdc = chp->wdc;
1094 1.54 bouyer int cf_flags = drv_dev->dv_cfdata->cf_flags;
1095 1.54 bouyer
1096 1.54 bouyer /* if drive or controller don't know its mode, we can't do much */
1097 1.54 bouyer if ((drvp->drive_flags & DRIVE_MODE) == 0 ||
1098 1.54 bouyer (wdc->cap & WDC_CAPABILITY_MODE) == 0)
1099 1.54 bouyer return 0;
1100 1.54 bouyer /* current drive mode was set by a config flag, let it this way */
1101 1.54 bouyer if ((cf_flags & ATA_CONFIG_PIO_SET) ||
1102 1.54 bouyer (cf_flags & ATA_CONFIG_DMA_SET) ||
1103 1.54 bouyer (cf_flags & ATA_CONFIG_UDMA_SET))
1104 1.54 bouyer return 0;
1105 1.54 bouyer
1106 1.61 bouyer /*
1107 1.73 bouyer * If we were using Ultra-DMA mode > 2, downgrade to mode 2 first.
1108 1.73 bouyer * Maybe we didn't properly notice the cable type
1109 1.73 bouyer */
1110 1.73 bouyer if ((drvp->drive_flags & DRIVE_UDMA) && drvp->UDMA_mode > 2) {
1111 1.73 bouyer drvp->UDMA_mode = 2;
1112 1.73 bouyer printf("%s: transfer error, downgrading to DMA mode %d\n",
1113 1.73 bouyer drv_dev->dv_xname, drvp->UDMA_mode);
1114 1.73 bouyer }
1115 1.73 bouyer
1116 1.73 bouyer /*
1117 1.61 bouyer * If we were using ultra-DMA, don't downgrade to multiword DMA
1118 1.61 bouyer * if we noticed a CRC error. It has been noticed that CRC errors
1119 1.61 bouyer * in ultra-DMA lead to silent data corruption in multiword DMA.
1120 1.61 bouyer * Data corruption is less likely to occur in PIO mode.
1121 1.61 bouyer */
1122 1.61 bouyer
1123 1.73 bouyer else if ((drvp->drive_flags & DRIVE_UDMA) &&
1124 1.61 bouyer (drvp->drive_flags & DRIVE_DMAERR) == 0) {
1125 1.54 bouyer drvp->drive_flags &= ~DRIVE_UDMA;
1126 1.54 bouyer drvp->drive_flags |= DRIVE_DMA;
1127 1.54 bouyer drvp->DMA_mode = drvp->DMA_cap;
1128 1.56 bouyer printf("%s: transfer error, downgrading to DMA mode %d\n",
1129 1.54 bouyer drv_dev->dv_xname, drvp->DMA_mode);
1130 1.61 bouyer } else if (drvp->drive_flags & (DRIVE_DMA | DRIVE_UDMA)) {
1131 1.61 bouyer drvp->drive_flags &= ~(DRIVE_DMA | DRIVE_UDMA);
1132 1.54 bouyer drvp->PIO_mode = drvp->PIO_cap;
1133 1.56 bouyer printf("%s: transfer error, downgrading to PIO mode %d\n",
1134 1.54 bouyer drv_dev->dv_xname, drvp->PIO_mode);
1135 1.54 bouyer } else /* already using PIO, can't downgrade */
1136 1.54 bouyer return 0;
1137 1.54 bouyer
1138 1.54 bouyer wdc->set_modes(chp);
1139 1.54 bouyer /* reset the channel, which will shedule all drives for setup */
1140 1.54 bouyer wdc_reset_channel(drvp);
1141 1.54 bouyer return 1;
1142 1.2 bouyer }
1143 1.2 bouyer
1144 1.2 bouyer int
1145 1.31 bouyer wdc_exec_command(drvp, wdc_c)
1146 1.31 bouyer struct ata_drive_datas *drvp;
1147 1.31 bouyer struct wdc_command *wdc_c;
1148 1.31 bouyer {
1149 1.31 bouyer struct channel_softc *chp = drvp->chnl_softc;
1150 1.2 bouyer struct wdc_xfer *xfer;
1151 1.31 bouyer int s, ret;
1152 1.2 bouyer
1153 1.34 bouyer WDCDEBUG_PRINT(("wdc_exec_command %s:%d:%d\n",
1154 1.34 bouyer chp->wdc->sc_dev.dv_xname, chp->channel, drvp->drive),
1155 1.34 bouyer DEBUG_FUNCS);
1156 1.2 bouyer
1157 1.31 bouyer /* set up an xfer and queue. Wait for completion */
1158 1.31 bouyer xfer = wdc_get_xfer(wdc_c->flags & AT_WAIT ? WDC_CANSLEEP :
1159 1.31 bouyer WDC_NOSLEEP);
1160 1.31 bouyer if (xfer == NULL) {
1161 1.31 bouyer return WDC_TRY_AGAIN;
1162 1.31 bouyer }
1163 1.2 bouyer
1164 1.31 bouyer if (wdc_c->flags & AT_POLL)
1165 1.31 bouyer xfer->c_flags |= C_POLL;
1166 1.31 bouyer xfer->drive = drvp->drive;
1167 1.31 bouyer xfer->databuf = wdc_c->data;
1168 1.31 bouyer xfer->c_bcount = wdc_c->bcount;
1169 1.31 bouyer xfer->cmd = wdc_c;
1170 1.31 bouyer xfer->c_start = __wdccommand_start;
1171 1.31 bouyer xfer->c_intr = __wdccommand_intr;
1172 1.2 bouyer
1173 1.31 bouyer s = splbio();
1174 1.31 bouyer wdc_exec_xfer(chp, xfer);
1175 1.31 bouyer #ifdef DIAGNOSTIC
1176 1.31 bouyer if ((wdc_c->flags & AT_POLL) != 0 &&
1177 1.31 bouyer (wdc_c->flags & AT_DONE) == 0)
1178 1.31 bouyer panic("wdc_exec_command: polled command not done\n");
1179 1.2 bouyer #endif
1180 1.31 bouyer if (wdc_c->flags & AT_DONE) {
1181 1.31 bouyer ret = WDC_COMPLETE;
1182 1.31 bouyer } else {
1183 1.31 bouyer if (wdc_c->flags & AT_WAIT) {
1184 1.69 bouyer while ((wdc_c->flags & AT_DONE) == 0) {
1185 1.69 bouyer tsleep(wdc_c, PRIBIO, "wdccmd", 0);
1186 1.69 bouyer }
1187 1.31 bouyer ret = WDC_COMPLETE;
1188 1.31 bouyer } else {
1189 1.31 bouyer ret = WDC_QUEUED;
1190 1.2 bouyer }
1191 1.2 bouyer }
1192 1.31 bouyer splx(s);
1193 1.31 bouyer return ret;
1194 1.2 bouyer }
1195 1.2 bouyer
1196 1.2 bouyer void
1197 1.31 bouyer __wdccommand_start(chp, xfer)
1198 1.31 bouyer struct channel_softc *chp;
1199 1.2 bouyer struct wdc_xfer *xfer;
1200 1.31 bouyer {
1201 1.31 bouyer int drive = xfer->drive;
1202 1.31 bouyer struct wdc_command *wdc_c = xfer->cmd;
1203 1.31 bouyer
1204 1.34 bouyer WDCDEBUG_PRINT(("__wdccommand_start %s:%d:%d\n",
1205 1.34 bouyer chp->wdc->sc_dev.dv_xname, chp->channel, xfer->drive),
1206 1.34 bouyer DEBUG_FUNCS);
1207 1.31 bouyer
1208 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
1209 1.31 bouyer WDSD_IBM | (drive << 4));
1210 1.31 bouyer if (wdcwait(chp, wdc_c->r_st_bmask, wdc_c->r_st_bmask,
1211 1.31 bouyer wdc_c->timeout) != 0) {
1212 1.31 bouyer wdc_c->flags |= AT_TIMEOU;
1213 1.31 bouyer __wdccommand_done(chp, xfer);
1214 1.53 bouyer return;
1215 1.31 bouyer }
1216 1.31 bouyer wdccommand(chp, drive, wdc_c->r_command, wdc_c->r_cyl, wdc_c->r_head,
1217 1.31 bouyer wdc_c->r_sector, wdc_c->r_count, wdc_c->r_precomp);
1218 1.31 bouyer if ((wdc_c->flags & AT_POLL) == 0) {
1219 1.31 bouyer chp->ch_flags |= WDCF_IRQ_WAIT; /* wait for interrupt */
1220 1.31 bouyer timeout(wdctimeout, chp, wdc_c->timeout / 1000 * hz);
1221 1.31 bouyer return;
1222 1.2 bouyer }
1223 1.2 bouyer /*
1224 1.31 bouyer * Polled command. Wait for drive ready or drq. Done in intr().
1225 1.31 bouyer * Wait for at last 400ns for status bit to be valid.
1226 1.2 bouyer */
1227 1.31 bouyer delay(10);
1228 1.66 bouyer __wdccommand_intr(chp, xfer, 0);
1229 1.2 bouyer }
1230 1.2 bouyer
1231 1.2 bouyer int
1232 1.66 bouyer __wdccommand_intr(chp, xfer, irq)
1233 1.31 bouyer struct channel_softc *chp;
1234 1.31 bouyer struct wdc_xfer *xfer;
1235 1.66 bouyer int irq;
1236 1.2 bouyer {
1237 1.31 bouyer struct wdc_command *wdc_c = xfer->cmd;
1238 1.31 bouyer int bcount = wdc_c->bcount;
1239 1.31 bouyer char *data = wdc_c->data;
1240 1.31 bouyer
1241 1.34 bouyer WDCDEBUG_PRINT(("__wdccommand_intr %s:%d:%d\n",
1242 1.34 bouyer chp->wdc->sc_dev.dv_xname, chp->channel, xfer->drive), DEBUG_INTR);
1243 1.31 bouyer if (wdcwait(chp, wdc_c->r_st_pmask, wdc_c->r_st_pmask,
1244 1.66 bouyer (irq == 0) ? wdc_c->timeout : 0)) {
1245 1.66 bouyer if (irq && (xfer->c_flags & C_TIMEOU) == 0)
1246 1.63 bouyer return 0; /* IRQ was not for us */
1247 1.63 bouyer wdc_c->flags |= AT_TIMEOU;
1248 1.31 bouyer __wdccommand_done(chp, xfer);
1249 1.2 bouyer return 1;
1250 1.2 bouyer }
1251 1.31 bouyer if (wdc_c->flags & AT_READ) {
1252 1.31 bouyer if (chp->ch_drive[xfer->drive].drive_flags & DRIVE_CAP32) {
1253 1.31 bouyer bus_space_read_multi_4(chp->data32iot, chp->data32ioh,
1254 1.31 bouyer 0, (u_int32_t*)data, bcount >> 2);
1255 1.31 bouyer data += bcount & 0xfffffffc;
1256 1.31 bouyer bcount = bcount & 0x03;
1257 1.31 bouyer }
1258 1.31 bouyer if (bcount > 0)
1259 1.31 bouyer bus_space_read_multi_2(chp->cmd_iot, chp->cmd_ioh,
1260 1.31 bouyer wd_data, (u_int16_t *)data, bcount >> 1);
1261 1.31 bouyer } else if (wdc_c->flags & AT_WRITE) {
1262 1.31 bouyer if (chp->ch_drive[xfer->drive].drive_flags & DRIVE_CAP32) {
1263 1.31 bouyer bus_space_write_multi_4(chp->data32iot, chp->data32ioh,
1264 1.31 bouyer 0, (u_int32_t*)data, bcount >> 2);
1265 1.31 bouyer data += bcount & 0xfffffffc;
1266 1.31 bouyer bcount = bcount & 0x03;
1267 1.31 bouyer }
1268 1.31 bouyer if (bcount > 0)
1269 1.31 bouyer bus_space_write_multi_2(chp->cmd_iot, chp->cmd_ioh,
1270 1.31 bouyer wd_data, (u_int16_t *)data, bcount >> 1);
1271 1.2 bouyer }
1272 1.31 bouyer __wdccommand_done(chp, xfer);
1273 1.31 bouyer return 1;
1274 1.2 bouyer }
1275 1.2 bouyer
1276 1.2 bouyer void
1277 1.31 bouyer __wdccommand_done(chp, xfer)
1278 1.31 bouyer struct channel_softc *chp;
1279 1.31 bouyer struct wdc_xfer *xfer;
1280 1.2 bouyer {
1281 1.31 bouyer struct wdc_command *wdc_c = xfer->cmd;
1282 1.2 bouyer
1283 1.34 bouyer WDCDEBUG_PRINT(("__wdccommand_done %s:%d:%d\n",
1284 1.34 bouyer chp->wdc->sc_dev.dv_xname, chp->channel, xfer->drive), DEBUG_FUNCS);
1285 1.70 bouyer
1286 1.70 bouyer untimeout(wdctimeout, chp);
1287 1.70 bouyer
1288 1.31 bouyer if (chp->ch_status & WDCS_DWF)
1289 1.31 bouyer wdc_c->flags |= AT_DF;
1290 1.31 bouyer if (chp->ch_status & WDCS_ERR) {
1291 1.31 bouyer wdc_c->flags |= AT_ERROR;
1292 1.31 bouyer wdc_c->r_error = chp->ch_error;
1293 1.31 bouyer }
1294 1.31 bouyer wdc_c->flags |= AT_DONE;
1295 1.46 kenh if (wdc_c->flags & AT_READREG && (wdc_c->flags & (AT_ERROR | AT_DF))
1296 1.46 kenh == 0) {
1297 1.46 kenh wdc_c->r_head = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh,
1298 1.46 kenh wd_sdh);
1299 1.46 kenh wdc_c->r_cyl = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh,
1300 1.46 kenh wd_cyl_hi) << 8;
1301 1.46 kenh wdc_c->r_cyl |= bus_space_read_1(chp->cmd_iot, chp->cmd_ioh,
1302 1.46 kenh wd_cyl_lo);
1303 1.46 kenh wdc_c->r_sector = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh,
1304 1.46 kenh wd_sector);
1305 1.46 kenh wdc_c->r_count = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh,
1306 1.46 kenh wd_seccnt);
1307 1.46 kenh wdc_c->r_error = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh,
1308 1.46 kenh wd_error);
1309 1.46 kenh wdc_c->r_precomp = bus_space_read_1(chp->cmd_iot, chp->cmd_ioh,
1310 1.46 kenh wd_precomp);
1311 1.46 kenh }
1312 1.31 bouyer wdc_free_xfer(chp, xfer);
1313 1.71 bouyer if (wdc_c->flags & AT_WAIT)
1314 1.71 bouyer wakeup(wdc_c);
1315 1.71 bouyer else if (wdc_c->callback)
1316 1.71 bouyer wdc_c->callback(wdc_c->callback_arg);
1317 1.45 drochner wdcstart(chp);
1318 1.31 bouyer return;
1319 1.2 bouyer }
1320 1.2 bouyer
1321 1.2 bouyer /*
1322 1.31 bouyer * Send a command. The drive should be ready.
1323 1.2 bouyer * Assumes interrupts are blocked.
1324 1.2 bouyer */
1325 1.31 bouyer void
1326 1.31 bouyer wdccommand(chp, drive, command, cylin, head, sector, count, precomp)
1327 1.31 bouyer struct channel_softc *chp;
1328 1.31 bouyer u_int8_t drive;
1329 1.31 bouyer u_int8_t command;
1330 1.31 bouyer u_int16_t cylin;
1331 1.31 bouyer u_int8_t head, sector, count, precomp;
1332 1.31 bouyer {
1333 1.31 bouyer WDCDEBUG_PRINT(("wdccommand %s:%d:%d: command=0x%x cylin=%d head=%d "
1334 1.31 bouyer "sector=%d count=%d precomp=%d\n", chp->wdc->sc_dev.dv_xname,
1335 1.31 bouyer chp->channel, drive, command, cylin, head, sector, count, precomp),
1336 1.31 bouyer DEBUG_FUNCS);
1337 1.31 bouyer
1338 1.31 bouyer /* Select drive, head, and addressing mode. */
1339 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
1340 1.31 bouyer WDSD_IBM | (drive << 4) | head);
1341 1.31 bouyer /* Load parameters. wd_features(ATA/ATAPI) = wd_precomp(ST506) */
1342 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_precomp,
1343 1.31 bouyer precomp);
1344 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_cyl_lo, cylin);
1345 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_cyl_hi, cylin >> 8);
1346 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sector, sector);
1347 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_seccnt, count);
1348 1.2 bouyer
1349 1.31 bouyer /* Send command. */
1350 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_command, command);
1351 1.31 bouyer return;
1352 1.2 bouyer }
1353 1.2 bouyer
1354 1.2 bouyer /*
1355 1.31 bouyer * Simplified version of wdccommand(). Unbusy/ready/drq must be
1356 1.31 bouyer * tested by the caller.
1357 1.2 bouyer */
1358 1.31 bouyer void
1359 1.31 bouyer wdccommandshort(chp, drive, command)
1360 1.31 bouyer struct channel_softc *chp;
1361 1.31 bouyer int drive;
1362 1.31 bouyer int command;
1363 1.2 bouyer {
1364 1.2 bouyer
1365 1.31 bouyer WDCDEBUG_PRINT(("wdccommandshort %s:%d:%d command 0x%x\n",
1366 1.31 bouyer chp->wdc->sc_dev.dv_xname, chp->channel, drive, command),
1367 1.31 bouyer DEBUG_FUNCS);
1368 1.2 bouyer
1369 1.31 bouyer /* Select drive. */
1370 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_sdh,
1371 1.31 bouyer WDSD_IBM | (drive << 4));
1372 1.2 bouyer
1373 1.31 bouyer bus_space_write_1(chp->cmd_iot, chp->cmd_ioh, wd_command, command);
1374 1.31 bouyer }
1375 1.2 bouyer
1376 1.31 bouyer /* Add a command to the queue and start controller. Must be called at splbio */
1377 1.2 bouyer
1378 1.2 bouyer void
1379 1.31 bouyer wdc_exec_xfer(chp, xfer)
1380 1.31 bouyer struct channel_softc *chp;
1381 1.2 bouyer struct wdc_xfer *xfer;
1382 1.2 bouyer {
1383 1.33 bouyer WDCDEBUG_PRINT(("wdc_exec_xfer %p channel %d drive %d\n", xfer,
1384 1.33 bouyer chp->channel, xfer->drive), DEBUG_XFERS);
1385 1.2 bouyer
1386 1.31 bouyer /* complete xfer setup */
1387 1.49 bouyer xfer->chp = chp;
1388 1.2 bouyer
1389 1.31 bouyer /*
1390 1.31 bouyer * If we are a polled command, and the list is not empty,
1391 1.31 bouyer * we are doing a dump. Drop the list to allow the polled command
1392 1.31 bouyer * to complete, we're going to reboot soon anyway.
1393 1.31 bouyer */
1394 1.31 bouyer if ((xfer->c_flags & C_POLL) != 0 &&
1395 1.31 bouyer chp->ch_queue->sc_xfer.tqh_first != NULL) {
1396 1.31 bouyer TAILQ_INIT(&chp->ch_queue->sc_xfer);
1397 1.31 bouyer }
1398 1.2 bouyer /* insert at the end of command list */
1399 1.31 bouyer TAILQ_INSERT_TAIL(&chp->ch_queue->sc_xfer,xfer , c_xferchain);
1400 1.31 bouyer WDCDEBUG_PRINT(("wdcstart from wdc_exec_xfer, flags 0x%x\n",
1401 1.33 bouyer chp->ch_flags), DEBUG_XFERS);
1402 1.45 drochner wdcstart(chp);
1403 1.31 bouyer }
1404 1.2 bouyer
1405 1.2 bouyer struct wdc_xfer *
1406 1.2 bouyer wdc_get_xfer(flags)
1407 1.2 bouyer int flags;
1408 1.2 bouyer {
1409 1.2 bouyer struct wdc_xfer *xfer;
1410 1.72 bouyer int s;
1411 1.2 bouyer
1412 1.72 bouyer s = splbio();
1413 1.71 bouyer xfer = pool_get(&wdc_xfer_pool,
1414 1.71 bouyer ((flags & WDC_NOSLEEP) != 0 ? PR_NOWAIT : PR_WAITOK));
1415 1.72 bouyer splx(s);
1416 1.31 bouyer memset(xfer, 0, sizeof(struct wdc_xfer));
1417 1.2 bouyer return xfer;
1418 1.2 bouyer }
1419 1.2 bouyer
1420 1.2 bouyer void
1421 1.31 bouyer wdc_free_xfer(chp, xfer)
1422 1.31 bouyer struct channel_softc *chp;
1423 1.2 bouyer struct wdc_xfer *xfer;
1424 1.2 bouyer {
1425 1.31 bouyer struct wdc_softc *wdc = chp->wdc;
1426 1.2 bouyer int s;
1427 1.2 bouyer
1428 1.31 bouyer if (wdc->cap & WDC_CAPABILITY_HWLOCK)
1429 1.31 bouyer (*wdc->free_hw)(chp);
1430 1.2 bouyer s = splbio();
1431 1.31 bouyer chp->ch_flags &= ~WDCF_ACTIVE;
1432 1.31 bouyer TAILQ_REMOVE(&chp->ch_queue->sc_xfer, xfer, c_xferchain);
1433 1.72 bouyer pool_put(&wdc_xfer_pool, xfer);
1434 1.2 bouyer splx(s);
1435 1.2 bouyer }
1436 1.2 bouyer
1437 1.31 bouyer static void
1438 1.31 bouyer __wdcerror(chp, msg)
1439 1.31 bouyer struct channel_softc *chp;
1440 1.2 bouyer char *msg;
1441 1.2 bouyer {
1442 1.31 bouyer struct wdc_xfer *xfer = chp->ch_queue->sc_xfer.tqh_first;
1443 1.2 bouyer if (xfer == NULL)
1444 1.31 bouyer printf("%s:%d: %s\n", chp->wdc->sc_dev.dv_xname, chp->channel,
1445 1.31 bouyer msg);
1446 1.2 bouyer else
1447 1.31 bouyer printf("%s:%d:%d: %s\n", chp->wdc->sc_dev.dv_xname,
1448 1.49 bouyer chp->channel, xfer->drive, msg);
1449 1.2 bouyer }
1450 1.2 bouyer
1451 1.2 bouyer /*
1452 1.2 bouyer * the bit bucket
1453 1.2 bouyer */
1454 1.2 bouyer void
1455 1.31 bouyer wdcbit_bucket(chp, size)
1456 1.31 bouyer struct channel_softc *chp;
1457 1.2 bouyer int size;
1458 1.2 bouyer {
1459 1.2 bouyer
1460 1.12 cgd for (; size >= 2; size -= 2)
1461 1.31 bouyer (void)bus_space_read_2(chp->cmd_iot, chp->cmd_ioh, wd_data);
1462 1.12 cgd if (size)
1463 1.31 bouyer (void)bus_space_read_1(chp->cmd_iot, chp->cmd_ioh, wd_data);
1464 1.44 thorpej }
1465 1.44 thorpej
1466 1.44 thorpej int
1467 1.44 thorpej wdc_addref(chp)
1468 1.44 thorpej struct channel_softc *chp;
1469 1.44 thorpej {
1470 1.44 thorpej struct wdc_softc *wdc = chp->wdc;
1471 1.44 thorpej struct scsipi_adapter *adapter = &wdc->sc_atapi_adapter;
1472 1.44 thorpej int s, error = 0;
1473 1.44 thorpej
1474 1.44 thorpej s = splbio();
1475 1.44 thorpej if (adapter->scsipi_refcnt++ == 0 &&
1476 1.44 thorpej adapter->scsipi_enable != NULL) {
1477 1.44 thorpej error = (*adapter->scsipi_enable)(wdc, 1);
1478 1.44 thorpej if (error)
1479 1.44 thorpej adapter->scsipi_refcnt--;
1480 1.44 thorpej }
1481 1.44 thorpej splx(s);
1482 1.44 thorpej return (error);
1483 1.44 thorpej }
1484 1.44 thorpej
1485 1.44 thorpej void
1486 1.44 thorpej wdc_delref(chp)
1487 1.44 thorpej struct channel_softc *chp;
1488 1.44 thorpej {
1489 1.44 thorpej struct wdc_softc *wdc = chp->wdc;
1490 1.44 thorpej struct scsipi_adapter *adapter = &wdc->sc_atapi_adapter;
1491 1.44 thorpej int s;
1492 1.44 thorpej
1493 1.44 thorpej s = splbio();
1494 1.44 thorpej if (adapter->scsipi_refcnt-- == 1 &&
1495 1.44 thorpej adapter->scsipi_enable != NULL)
1496 1.44 thorpej (void) (*adapter->scsipi_enable)(wdc, 0);
1497 1.44 thorpej splx(s);
1498 1.2 bouyer }
1499