wdc.c revision 1.14.28.1 1 1.14.28.1 pgoyette /* $NetBSD: wdc.c,v 1.14.28.1 2019/01/18 08:50:15 pgoyette Exp $ */
2 1.1 cdi
3 1.1 cdi /*-
4 1.1 cdi * Copyright (c) 2003 The NetBSD Foundation, Inc.
5 1.1 cdi * All rights reserved.
6 1.1 cdi *
7 1.1 cdi * This code is derived from software contributed to The NetBSD Foundation
8 1.1 cdi * by Manuel Bouyer.
9 1.1 cdi *
10 1.1 cdi * Redistribution and use in source and binary forms, with or without
11 1.1 cdi * modification, are permitted provided that the following conditions
12 1.1 cdi * are met:
13 1.1 cdi * 1. Redistributions of source code must retain the above copyright
14 1.1 cdi * notice, this list of conditions and the following disclaimer.
15 1.1 cdi * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 cdi * notice, this list of conditions and the following disclaimer in the
17 1.1 cdi * documentation and/or other materials provided with the distribution.
18 1.1 cdi *
19 1.1 cdi * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 cdi * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 cdi * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 cdi * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 cdi * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 cdi * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 cdi * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 cdi * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 cdi * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 cdi * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 cdi * POSSIBILITY OF SUCH DAMAGE.
30 1.1 cdi */
31 1.1 cdi
32 1.14.28.1 pgoyette #include <sys/param.h>
33 1.1 cdi #include <sys/types.h>
34 1.1 cdi #include <sys/disklabel.h>
35 1.2 lukem #include <sys/bootblock.h>
36 1.1 cdi
37 1.1 cdi #include <lib/libsa/stand.h>
38 1.13 tsutsui #include <lib/libkern/libkern.h>
39 1.1 cdi
40 1.1 cdi #include "boot.h"
41 1.1 cdi #include "wdvar.h"
42 1.1 cdi
43 1.1 cdi #define WDCDELAY 100
44 1.1 cdi #define WDCNDELAY_RST 31000 * 10
45 1.1 cdi
46 1.5 thorpej static int wdcprobe(struct wdc_channel *chp);
47 1.5 thorpej static int wdc_wait_for_ready(struct wdc_channel *chp);
48 1.1 cdi static int wdc_read_block(struct wd_softc *sc, struct wdc_command *wd_c);
49 1.5 thorpej static int __wdcwait_reset(struct wdc_channel *chp, int drv_mask);
50 1.1 cdi
51 1.1 cdi /*
52 1.1 cdi * Reset the controller.
53 1.1 cdi */
54 1.1 cdi static int
55 1.8 tsutsui __wdcwait_reset(struct wdc_channel *chp, int drv_mask)
56 1.1 cdi {
57 1.1 cdi int timeout;
58 1.8 tsutsui uint8_t st0, st1;
59 1.1 cdi
60 1.1 cdi /* wait for BSY to deassert */
61 1.1 cdi for (timeout = 0; timeout < WDCNDELAY_RST; timeout++) {
62 1.6 tsutsui WDC_WRITE_REG(chp, wd_sdh, WDSD_IBM); /* master */
63 1.1 cdi delay(10);
64 1.6 tsutsui st0 = WDC_READ_REG(chp, wd_status);
65 1.6 tsutsui WDC_WRITE_REG(chp, wd_sdh, WDSD_IBM | 0x10); /* slave */
66 1.1 cdi delay(10);
67 1.6 tsutsui st1 = WDC_READ_REG(chp, wd_status);
68 1.1 cdi
69 1.1 cdi if ((drv_mask & 0x01) == 0) {
70 1.1 cdi /* no master */
71 1.1 cdi if ((drv_mask & 0x02) != 0 && (st1 & WDCS_BSY) == 0) {
72 1.1 cdi /* No master, slave is ready, it's done */
73 1.1 cdi goto end;
74 1.1 cdi }
75 1.1 cdi } else if ((drv_mask & 0x02) == 0) {
76 1.1 cdi /* no slave */
77 1.1 cdi if ((drv_mask & 0x01) != 0 && (st0 & WDCS_BSY) == 0) {
78 1.1 cdi /* No slave, master is ready, it's done */
79 1.1 cdi goto end;
80 1.1 cdi }
81 1.1 cdi } else {
82 1.1 cdi /* Wait for both master and slave to be ready */
83 1.1 cdi if ((st0 & WDCS_BSY) == 0 && (st1 & WDCS_BSY) == 0) {
84 1.1 cdi goto end;
85 1.1 cdi }
86 1.1 cdi }
87 1.1 cdi
88 1.1 cdi delay(WDCDELAY);
89 1.1 cdi }
90 1.1 cdi
91 1.1 cdi /* Reset timed out. Maybe it's because drv_mask was not right */
92 1.1 cdi if (st0 & WDCS_BSY)
93 1.1 cdi drv_mask &= ~0x01;
94 1.1 cdi if (st1 & WDCS_BSY)
95 1.1 cdi drv_mask &= ~0x02;
96 1.1 cdi
97 1.8 tsutsui end:
98 1.8 tsutsui return drv_mask;
99 1.1 cdi }
100 1.1 cdi
101 1.1 cdi /* Test to see controller with at last one attached drive is there.
102 1.1 cdi * Returns a bit for each possible drive found (0x01 for drive 0,
103 1.1 cdi * 0x02 for drive 1).
104 1.1 cdi * Logic:
105 1.1 cdi * - If a status register is at 0xff, assume there is no drive here
106 1.1 cdi * (ISA has pull-up resistors). Similarly if the status register has
107 1.1 cdi * the value we last wrote to the bus (for IDE interfaces without pullups).
108 1.1 cdi * If no drive at all -> return.
109 1.1 cdi * - reset the controller, wait for it to complete (may take up to 31s !).
110 1.1 cdi * If timeout -> return.
111 1.1 cdi */
112 1.1 cdi static int
113 1.8 tsutsui wdcprobe(struct wdc_channel *chp)
114 1.1 cdi {
115 1.10 tsutsui uint8_t st0, st1;
116 1.8 tsutsui uint8_t ret_value = 0x03;
117 1.8 tsutsui uint8_t drive;
118 1.1 cdi
119 1.1 cdi /*
120 1.1 cdi * Sanity check to see if the wdc channel responds at all.
121 1.1 cdi */
122 1.6 tsutsui WDC_WRITE_REG(chp, wd_sdh, WDSD_IBM);
123 1.1 cdi delay(10);
124 1.6 tsutsui st0 = WDC_READ_REG(chp, wd_status);
125 1.6 tsutsui WDC_WRITE_REG(chp, wd_sdh, WDSD_IBM | 0x10);
126 1.1 cdi delay(10);
127 1.6 tsutsui st1 = WDC_READ_REG(chp, wd_status);
128 1.1 cdi
129 1.1 cdi if (st0 == 0xff || st0 == WDSD_IBM)
130 1.1 cdi ret_value &= ~0x01;
131 1.1 cdi if (st1 == 0xff || st1 == (WDSD_IBM | 0x10))
132 1.1 cdi ret_value &= ~0x02;
133 1.1 cdi if (ret_value == 0)
134 1.8 tsutsui return ENXIO;
135 1.1 cdi
136 1.1 cdi /* assert SRST, wait for reset to complete */
137 1.6 tsutsui WDC_WRITE_REG(chp, wd_sdh, WDSD_IBM);
138 1.1 cdi delay(10);
139 1.6 tsutsui WDC_WRITE_CTLREG(chp, wd_aux_ctlr, WDCTL_RST | WDCTL_IDS);
140 1.1 cdi delay(1000);
141 1.6 tsutsui WDC_WRITE_CTLREG(chp, wd_aux_ctlr, WDCTL_IDS);
142 1.1 cdi delay(1000);
143 1.6 tsutsui (void) WDC_READ_REG(chp, wd_error);
144 1.6 tsutsui WDC_WRITE_CTLREG(chp, wd_aux_ctlr, WDCTL_4BIT);
145 1.1 cdi delay(10);
146 1.1 cdi
147 1.1 cdi ret_value = __wdcwait_reset(chp, ret_value);
148 1.1 cdi
149 1.1 cdi /* if reset failed, there's nothing here */
150 1.1 cdi if (ret_value == 0)
151 1.8 tsutsui return ENXIO;
152 1.1 cdi
153 1.1 cdi /*
154 1.1 cdi * Test presence of drives. First test register signatures looking for
155 1.1 cdi * ATAPI devices. If it's not an ATAPI and reset said there may be
156 1.1 cdi * something here assume it's ATA or OLD. Ghost will be killed later in
157 1.1 cdi * attach routine.
158 1.1 cdi */
159 1.1 cdi for (drive = 0; drive < 2; drive++) {
160 1.1 cdi if ((ret_value & (0x01 << drive)) == 0)
161 1.1 cdi continue;
162 1.8 tsutsui return 0;
163 1.1 cdi }
164 1.8 tsutsui return ENXIO;
165 1.1 cdi }
166 1.1 cdi
167 1.1 cdi /*
168 1.1 cdi * Initialize the device.
169 1.1 cdi */
170 1.1 cdi int
171 1.8 tsutsui wdc_init(struct wd_softc *sc, u_int *unit)
172 1.1 cdi {
173 1.8 tsutsui
174 1.1 cdi if (pciide_init(&sc->sc_channel, unit) != 0)
175 1.8 tsutsui return ENXIO;
176 1.1 cdi if (wdcprobe(&sc->sc_channel) != 0)
177 1.8 tsutsui return ENXIO;
178 1.8 tsutsui return 0;
179 1.1 cdi }
180 1.1 cdi
181 1.1 cdi /*
182 1.1 cdi * Wait until the device is ready.
183 1.1 cdi */
184 1.1 cdi int
185 1.8 tsutsui wdc_wait_for_ready(struct wdc_channel *chp)
186 1.1 cdi {
187 1.1 cdi u_int timeout;
188 1.8 tsutsui
189 1.1 cdi for (timeout = WDC_TIMEOUT; timeout > 0; --timeout) {
190 1.6 tsutsui if ((WDC_READ_REG(chp, wd_status) & (WDCS_BSY | WDCS_DRDY))
191 1.1 cdi == WDCS_DRDY)
192 1.8 tsutsui return 0;
193 1.1 cdi }
194 1.8 tsutsui return ENXIO;
195 1.1 cdi }
196 1.1 cdi
197 1.1 cdi /*
198 1.1 cdi * Read one block off the device.
199 1.1 cdi */
200 1.1 cdi int
201 1.8 tsutsui wdc_read_block(struct wd_softc *sc, struct wdc_command *wd_c)
202 1.1 cdi {
203 1.1 cdi int i;
204 1.5 thorpej struct wdc_channel *chp = &sc->sc_channel;
205 1.8 tsutsui uint16_t *ptr = (uint16_t *)wd_c->data;
206 1.1 cdi
207 1.1 cdi if (ptr == NULL)
208 1.8 tsutsui return 0;
209 1.1 cdi
210 1.8 tsutsui for (i = wd_c->bcount; i > 0; i -= sizeof(uint16_t))
211 1.6 tsutsui *ptr++ = WDC_READ_DATA(chp);
212 1.1 cdi
213 1.8 tsutsui return 0;
214 1.1 cdi }
215 1.1 cdi
216 1.1 cdi /*
217 1.3 wiz * Send a command to the device (CHS and LBA addressing).
218 1.1 cdi */
219 1.1 cdi int
220 1.8 tsutsui wdccommand(struct wd_softc *sc, struct wdc_command *wd_c)
221 1.1 cdi {
222 1.5 thorpej struct wdc_channel *chp = &sc->sc_channel;
223 1.1 cdi
224 1.1 cdi #if 0
225 1.1 cdi DPRINTF(("wdccommand(%d, %d, %d, %d, %d, %d, %d)\n",
226 1.8 tsutsui wd_c->drive, wd_c->r_command, wd_c->r_cyl,
227 1.8 tsutsui wd_c->r_head, wd_c->r_sector, wd_c->bcount,
228 1.8 tsutsui wd_c->r_precomp));
229 1.1 cdi #endif
230 1.1 cdi
231 1.12 tsutsui WDC_WRITE_REG(chp, wd_features, wd_c->r_features);
232 1.6 tsutsui WDC_WRITE_REG(chp, wd_seccnt, wd_c->r_count);
233 1.6 tsutsui WDC_WRITE_REG(chp, wd_sector, wd_c->r_sector);
234 1.6 tsutsui WDC_WRITE_REG(chp, wd_cyl_lo, wd_c->r_cyl);
235 1.6 tsutsui WDC_WRITE_REG(chp, wd_cyl_hi, wd_c->r_cyl >> 8);
236 1.6 tsutsui WDC_WRITE_REG(chp, wd_sdh,
237 1.6 tsutsui WDSD_IBM | (wd_c->drive << 4) | wd_c->r_head);
238 1.6 tsutsui WDC_WRITE_REG(chp, wd_command, wd_c->r_command);
239 1.1 cdi
240 1.1 cdi if (wdc_wait_for_ready(chp) != 0)
241 1.8 tsutsui return ENXIO;
242 1.1 cdi
243 1.6 tsutsui if (WDC_READ_REG(chp, wd_status) & WDCS_ERR) {
244 1.1 cdi printf("wd%d: error %x\n", chp->compatchan,
245 1.8 tsutsui WDC_READ_REG(chp, wd_error));
246 1.8 tsutsui return ENXIO;
247 1.1 cdi }
248 1.1 cdi
249 1.8 tsutsui return 0;
250 1.1 cdi }
251 1.1 cdi
252 1.1 cdi /*
253 1.1 cdi * Send a command to the device (LBA48 addressing).
254 1.1 cdi */
255 1.1 cdi int
256 1.8 tsutsui wdccommandext(struct wd_softc *wd, struct wdc_command *wd_c)
257 1.1 cdi {
258 1.5 thorpej struct wdc_channel *chp = &wd->sc_channel;
259 1.1 cdi
260 1.12 tsutsui #if 0
261 1.13 tsutsui DPRINTF(("%s(%d, %x, %" PRId64 ", %d)\n", __func__,
262 1.12 tsutsui wd_c->drive, wd_c->r_command,
263 1.13 tsutsui wd_c->r_blkno, wd_c->r_count));
264 1.12 tsutsui #endif
265 1.12 tsutsui
266 1.1 cdi /* Select drive, head, and addressing mode. */
267 1.6 tsutsui WDC_WRITE_REG(chp, wd_sdh, (wd_c->drive << 4) | WDSD_LBA);
268 1.1 cdi
269 1.1 cdi /* previous */
270 1.6 tsutsui WDC_WRITE_REG(chp, wd_features, 0);
271 1.6 tsutsui WDC_WRITE_REG(chp, wd_seccnt, wd_c->r_count >> 8);
272 1.6 tsutsui WDC_WRITE_REG(chp, wd_lba_hi, wd_c->r_blkno >> 40);
273 1.6 tsutsui WDC_WRITE_REG(chp, wd_lba_mi, wd_c->r_blkno >> 32);
274 1.6 tsutsui WDC_WRITE_REG(chp, wd_lba_lo, wd_c->r_blkno >> 24);
275 1.1 cdi
276 1.1 cdi /* current */
277 1.6 tsutsui WDC_WRITE_REG(chp, wd_features, 0);
278 1.6 tsutsui WDC_WRITE_REG(chp, wd_seccnt, wd_c->r_count);
279 1.6 tsutsui WDC_WRITE_REG(chp, wd_lba_hi, wd_c->r_blkno >> 16);
280 1.6 tsutsui WDC_WRITE_REG(chp, wd_lba_mi, wd_c->r_blkno >> 8);
281 1.6 tsutsui WDC_WRITE_REG(chp, wd_lba_lo, wd_c->r_blkno);
282 1.1 cdi
283 1.1 cdi /* Send command. */
284 1.6 tsutsui WDC_WRITE_REG(chp, wd_command, wd_c->r_command);
285 1.1 cdi
286 1.1 cdi if (wdc_wait_for_ready(chp) != 0)
287 1.8 tsutsui return ENXIO;
288 1.1 cdi
289 1.6 tsutsui if (WDC_READ_REG(chp, wd_status) & WDCS_ERR) {
290 1.1 cdi printf("wd%d: error %x\n", chp->compatchan,
291 1.8 tsutsui WDC_READ_REG(chp, wd_error));
292 1.8 tsutsui return ENXIO;
293 1.1 cdi }
294 1.1 cdi
295 1.8 tsutsui return 0;
296 1.1 cdi }
297 1.1 cdi
298 1.1 cdi /*
299 1.1 cdi * Issue 'device identify' command.
300 1.1 cdi */
301 1.1 cdi int
302 1.8 tsutsui wdc_exec_identify(struct wd_softc *wd, void *data)
303 1.1 cdi {
304 1.1 cdi int error;
305 1.1 cdi struct wdc_command wd_c;
306 1.1 cdi
307 1.1 cdi memset(&wd_c, 0, sizeof(wd_c));
308 1.1 cdi
309 1.1 cdi wd_c.drive = wd->sc_unit;
310 1.1 cdi wd_c.r_command = WDCC_IDENTIFY;
311 1.1 cdi wd_c.bcount = DEV_BSIZE;
312 1.1 cdi wd_c.data = data;
313 1.1 cdi
314 1.8 tsutsui if ((error = wdccommand(wd, &wd_c)) != 0)
315 1.8 tsutsui return error;
316 1.1 cdi
317 1.1 cdi return wdc_read_block(wd, &wd_c);
318 1.1 cdi }
319 1.1 cdi
320 1.1 cdi /*
321 1.1 cdi * Issue 'read' command.
322 1.1 cdi */
323 1.1 cdi int
324 1.8 tsutsui wdc_exec_read(struct wd_softc *wd, uint8_t cmd, daddr_t blkno, void *data)
325 1.1 cdi {
326 1.1 cdi int error;
327 1.1 cdi struct wdc_command wd_c;
328 1.12 tsutsui bool lba, lba48;
329 1.1 cdi
330 1.1 cdi memset(&wd_c, 0, sizeof(wd_c));
331 1.12 tsutsui lba = false;
332 1.12 tsutsui lba48 = false;
333 1.12 tsutsui
334 1.12 tsutsui wd_c.data = data;
335 1.12 tsutsui wd_c.r_count = 1;
336 1.12 tsutsui wd_c.r_features = 0;
337 1.12 tsutsui wd_c.drive = wd->sc_unit;
338 1.12 tsutsui wd_c.bcount = wd->sc_label.d_secsize;
339 1.12 tsutsui
340 1.12 tsutsui if ((wd->sc_flags & WDF_LBA48) != 0 && blkno > wd->sc_capacity28)
341 1.12 tsutsui lba48 = true;
342 1.12 tsutsui else if ((wd->sc_flags & WDF_LBA) != 0)
343 1.12 tsutsui lba = true;
344 1.1 cdi
345 1.12 tsutsui if (lba48) {
346 1.1 cdi /* LBA48 */
347 1.12 tsutsui wd_c.r_command = atacmd_to48(cmd);
348 1.1 cdi wd_c.r_blkno = blkno;
349 1.12 tsutsui } else if (lba) {
350 1.1 cdi /* LBA */
351 1.12 tsutsui wd_c.r_command = cmd;
352 1.1 cdi wd_c.r_sector = (blkno >> 0) & 0xff;
353 1.1 cdi wd_c.r_cyl = (blkno >> 8) & 0xffff;
354 1.1 cdi wd_c.r_head = (blkno >> 24) & 0x0f;
355 1.1 cdi wd_c.r_head |= WDSD_LBA;
356 1.1 cdi } else {
357 1.12 tsutsui /* CHS */
358 1.12 tsutsui wd_c.r_command = cmd;
359 1.1 cdi wd_c.r_sector = blkno % wd->sc_label.d_nsectors;
360 1.1 cdi wd_c.r_sector++; /* Sectors begin with 1, not 0. */
361 1.1 cdi blkno /= wd->sc_label.d_nsectors;
362 1.1 cdi wd_c.r_head = blkno % wd->sc_label.d_ntracks;
363 1.1 cdi blkno /= wd->sc_label.d_ntracks;
364 1.1 cdi wd_c.r_cyl = blkno;
365 1.1 cdi wd_c.r_head |= WDSD_CHS;
366 1.1 cdi }
367 1.1 cdi
368 1.12 tsutsui if (lba48)
369 1.1 cdi error = wdccommandext(wd, &wd_c);
370 1.1 cdi else
371 1.1 cdi error = wdccommand(wd, &wd_c);
372 1.1 cdi
373 1.1 cdi if (error != 0)
374 1.1 cdi return error;
375 1.1 cdi
376 1.1 cdi return wdc_read_block(wd, &wd_c);
377 1.1 cdi }
378