xref: /freebsd/sys/cam/ata/ata_all.c (revision aa0a1e58)
1 /*-
2  * Copyright (c) 2009 Alexander Motin <mav@FreeBSD.org>
3  * All rights reserved.
4  *
5  * Redistribution and use in source and binary forms, with or without
6  * modification, are permitted provided that the following conditions
7  * are met:
8  * 1. Redistributions of source code must retain the above copyright
9  *    notice, this list of conditions and the following disclaimer,
10  *    without modification, immediately at the beginning of the file.
11  * 2. Redistributions in binary form must reproduce the above copyright
12  *    notice, this list of conditions and the following disclaimer in the
13  *    documentation and/or other materials provided with the distribution.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
20  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
22  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
23  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
24  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25  */
26 
27 #include <sys/cdefs.h>
28 __FBSDID("$FreeBSD$");
29 
30 #include <sys/param.h>
31 
32 #ifdef _KERNEL
33 #include <opt_scsi.h>
34 
35 #include <sys/systm.h>
36 #include <sys/libkern.h>
37 #include <sys/kernel.h>
38 #include <sys/sysctl.h>
39 #else
40 #include <errno.h>
41 #include <stdio.h>
42 #include <stdlib.h>
43 #include <string.h>
44 #ifndef min
45 #define min(a,b) (((a)<(b))?(a):(b))
46 #endif
47 #endif
48 
49 #include <cam/cam.h>
50 #include <cam/cam_ccb.h>
51 #include <cam/cam_queue.h>
52 #include <cam/cam_xpt.h>
53 #include <sys/ata.h>
54 #include <cam/ata/ata_all.h>
55 #include <sys/sbuf.h>
56 #include <sys/endian.h>
57 
58 int
59 ata_version(int ver)
60 {
61 	int bit;
62 
63 	if (ver == 0xffff)
64 		return 0;
65 	for (bit = 15; bit >= 0; bit--)
66 		if (ver & (1<<bit))
67 			return bit;
68 	return 0;
69 }
70 
71 char *
72 ata_op_string(struct ata_cmd *cmd)
73 {
74 
75 	switch (cmd->command) {
76 	case 0x00: return ("NOP");
77 	case 0x03: return ("CFA_REQUEST_EXTENDED_ERROR");
78 	case 0x06:
79 		switch (cmd->features) {
80 	        case 0x01: return ("DSM TRIM");
81 	        }
82 	        return "DSM";
83 	case 0x08: return ("DEVICE_RESET");
84 	case 0x20: return ("READ");
85 	case 0x24: return ("READ48");
86 	case 0x25: return ("READ_DMA48");
87 	case 0x26: return ("READ_DMA_QUEUED48");
88 	case 0x27: return ("READ_NATIVE_MAX_ADDRESS48");
89 	case 0x29: return ("READ_MUL48");
90 	case 0x2a: return ("READ_STREAM_DMA48");
91 	case 0x2b: return ("READ_STREAM48");
92 	case 0x2f: return ("READ_LOG_EXT");
93 	case 0x30: return ("WRITE");
94 	case 0x34: return ("WRITE48");
95 	case 0x35: return ("WRITE_DMA48");
96 	case 0x36: return ("WRITE_DMA_QUEUED48");
97 	case 0x37: return ("SET_MAX_ADDRESS48");
98 	case 0x39: return ("WRITE_MUL48");
99 	case 0x3a: return ("WRITE_STREAM_DMA48");
100 	case 0x3b: return ("WRITE_STREAM48");
101 	case 0x3d: return ("WRITE_DMA_FUA48");
102 	case 0x3e: return ("WRITE_DMA_QUEUED_FUA48");
103 	case 0x3f: return ("WRITE_LOG_EXT");
104 	case 0x40: return ("READ_VERIFY");
105 	case 0x42: return ("READ_VERIFY48");
106 	case 0x51: return ("CONFIGURE_STREAM");
107 	case 0x60: return ("READ_FPDMA_QUEUED");
108 	case 0x61: return ("WRITE_FPDMA_QUEUED");
109 	case 0x70: return ("SEEK");
110 	case 0x87: return ("CFA_TRANSLATE_SECTOR");
111 	case 0x90: return ("EXECUTE_DEVICE_DIAGNOSTIC");
112 	case 0x92: return ("DOWNLOAD_MICROCODE");
113 	case 0xa0: return ("PACKET");
114 	case 0xa1: return ("ATAPI_IDENTIFY");
115 	case 0xa2: return ("SERVICE");
116 	case 0xb0: return ("SMART");
117 	case 0xb1: return ("DEVICE CONFIGURATION");
118 	case 0xc0: return ("CFA_ERASE");
119 	case 0xc4: return ("READ_MUL");
120 	case 0xc5: return ("WRITE_MUL");
121 	case 0xc6: return ("SET_MULTI");
122 	case 0xc7: return ("READ_DMA_QUEUED");
123 	case 0xc8: return ("READ_DMA");
124 	case 0xca: return ("WRITE_DMA");
125 	case 0xcc: return ("WRITE_DMA_QUEUED");
126 	case 0xcd: return ("CFA_WRITE_MULTIPLE_WITHOUT_ERASE");
127 	case 0xce: return ("WRITE_MUL_FUA48");
128 	case 0xd1: return ("CHECK_MEDIA_CARD_TYPE");
129 	case 0xda: return ("GET_MEDIA_STATUS");
130 	case 0xde: return ("MEDIA_LOCK");
131 	case 0xdf: return ("MEDIA_UNLOCK");
132 	case 0xe0: return ("STANDBY_IMMEDIATE");
133 	case 0xe1: return ("IDLE_IMMEDIATE");
134 	case 0xe2: return ("STANDBY");
135 	case 0xe3: return ("IDLE");
136 	case 0xe4: return ("READ_BUFFER/PM");
137 	case 0xe5: return ("CHECK_POWER_MODE");
138 	case 0xe6: return ("SLEEP");
139 	case 0xe7: return ("FLUSHCACHE");
140 	case 0xe8: return ("WRITE_PM");
141 	case 0xea: return ("FLUSHCACHE48");
142 	case 0xec: return ("ATA_IDENTIFY");
143 	case 0xed: return ("MEDIA_EJECT");
144 	case 0xef:
145 		switch (cmd->features) {
146 	        case 0x03: return ("SETFEATURES SET TRANSFER MODE");
147 	        case 0x02: return ("SETFEATURES ENABLE WCACHE");
148 	        case 0x82: return ("SETFEATURES DISABLE WCACHE");
149 	        case 0x06: return ("SETFEATURES ENABLE PUIS");
150 	        case 0x86: return ("SETFEATURES DISABLE PUIS");
151 	        case 0x07: return ("SETFEATURES SPIN-UP");
152 	        case 0xaa: return ("SETFEATURES ENABLE RCACHE");
153 	        case 0x55: return ("SETFEATURES DISABLE RCACHE");
154 	        }
155 	        return "SETFEATURES";
156 	case 0xf1: return ("SECURITY_SET_PASSWORD");
157 	case 0xf2: return ("SECURITY_UNLOCK");
158 	case 0xf3: return ("SECURITY_ERASE_PREPARE");
159 	case 0xf4: return ("SECURITY_ERASE_UNIT");
160 	case 0xf5: return ("SECURITY_FREE_LOCK");
161 	case 0xf6: return ("SECURITY DISABLE PASSWORD");
162 	case 0xf8: return ("READ_NATIVE_MAX_ADDRESS");
163 	case 0xf9: return ("SET_MAX_ADDRESS");
164 	}
165 	return "UNKNOWN";
166 }
167 
168 char *
169 ata_cmd_string(struct ata_cmd *cmd, char *cmd_string, size_t len)
170 {
171 
172 	snprintf(cmd_string, len, "%02x %02x %02x %02x "
173 	    "%02x %02x %02x %02x %02x %02x %02x %02x",
174 	    cmd->command, cmd->features,
175 	    cmd->lba_low, cmd->lba_mid, cmd->lba_high, cmd->device,
176 	    cmd->lba_low_exp, cmd->lba_mid_exp, cmd->lba_high_exp,
177 	    cmd->features_exp, cmd->sector_count, cmd->sector_count_exp);
178 
179 	return(cmd_string);
180 }
181 
182 char *
183 ata_res_string(struct ata_res *res, char *res_string, size_t len)
184 {
185 
186 	snprintf(res_string, len, "%02x %02x %02x %02x "
187 	    "%02x %02x %02x %02x %02x %02x %02x",
188 	    res->status, res->error,
189 	    res->lba_low, res->lba_mid, res->lba_high, res->device,
190 	    res->lba_low_exp, res->lba_mid_exp, res->lba_high_exp,
191 	    res->sector_count, res->sector_count_exp);
192 
193 	return(res_string);
194 }
195 
196 /*
197  * ata_command_sbuf() returns 0 for success and -1 for failure.
198  */
199 int
200 ata_command_sbuf(struct ccb_ataio *ataio, struct sbuf *sb)
201 {
202 	char cmd_str[(12 * 3) + 1];
203 
204 	sbuf_printf(sb, "%s. ACB: %s",
205 	    ata_op_string(&ataio->cmd),
206 	    ata_cmd_string(&ataio->cmd, cmd_str, sizeof(cmd_str)));
207 
208 	return(0);
209 }
210 
211 /*
212  * ata_status_abuf() returns 0 for success and -1 for failure.
213  */
214 int
215 ata_status_sbuf(struct ccb_ataio *ataio, struct sbuf *sb)
216 {
217 
218 	sbuf_printf(sb, "ATA status: %02x (%s%s%s%s%s%s%s%s)",
219 	    ataio->res.status,
220 	    (ataio->res.status & 0x80) ? "BSY " : "",
221 	    (ataio->res.status & 0x40) ? "DRDY " : "",
222 	    (ataio->res.status & 0x20) ? "DF " : "",
223 	    (ataio->res.status & 0x10) ? "SERV " : "",
224 	    (ataio->res.status & 0x08) ? "DRQ " : "",
225 	    (ataio->res.status & 0x04) ? "CORR " : "",
226 	    (ataio->res.status & 0x02) ? "IDX " : "",
227 	    (ataio->res.status & 0x01) ? "ERR" : "");
228 	if (ataio->res.status & 1) {
229 	    sbuf_printf(sb, ", error: %02x (%s%s%s%s%s%s%s%s)",
230 		ataio->res.error,
231 		(ataio->res.error & 0x80) ? "ICRC " : "",
232 		(ataio->res.error & 0x40) ? "UNC " : "",
233 		(ataio->res.error & 0x20) ? "MC " : "",
234 		(ataio->res.error & 0x10) ? "IDNF " : "",
235 		(ataio->res.error & 0x08) ? "MCR " : "",
236 		(ataio->res.error & 0x04) ? "ABRT " : "",
237 		(ataio->res.error & 0x02) ? "NM " : "",
238 		(ataio->res.error & 0x01) ? "ILI" : "");
239 	}
240 
241 	return(0);
242 }
243 
244 /*
245  * ata_res_sbuf() returns 0 for success and -1 for failure.
246  */
247 int
248 ata_res_sbuf(struct ccb_ataio *ataio, struct sbuf *sb)
249 {
250 	char res_str[(11 * 3) + 1];
251 
252 	sbuf_printf(sb, "RES: %s",
253 	    ata_res_string(&ataio->res, res_str, sizeof(res_str)));
254 
255 	return(0);
256 }
257 
258 void
259 ata_print_ident(struct ata_params *ident_data)
260 {
261 	char product[48], revision[16];
262 
263 	cam_strvis(product, ident_data->model, sizeof(ident_data->model),
264 		   sizeof(product));
265 	cam_strvis(revision, ident_data->revision, sizeof(ident_data->revision),
266 		   sizeof(revision));
267 	printf("<%s %s> %s-%d",
268 	    product, revision,
269 	    (ident_data->config & ATA_PROTO_ATAPI) ? "ATAPI" : "ATA",
270 	    ata_version(ident_data->version_major));
271 	if (ident_data->satacapabilities && ident_data->satacapabilities != 0xffff) {
272 		if (ident_data->satacapabilities & ATA_SATA_GEN3)
273 			printf(" SATA 3.x");
274 		else if (ident_data->satacapabilities & ATA_SATA_GEN2)
275 			printf(" SATA 2.x");
276 		else if (ident_data->satacapabilities & ATA_SATA_GEN1)
277 			printf(" SATA 1.x");
278 		else
279 			printf(" SATA");
280 	}
281 	printf(" device\n");
282 }
283 
284 uint32_t
285 ata_logical_sector_size(struct ata_params *ident_data)
286 {
287 	if ((ident_data->pss & 0xc000) == 0x4000 &&
288 	    (ident_data->pss & ATA_PSS_LSSABOVE512)) {
289 		return ((u_int32_t)ident_data->lss_1 |
290 		    ((u_int32_t)ident_data->lss_2 << 16));
291 	}
292 	return (512);
293 }
294 
295 uint64_t
296 ata_physical_sector_size(struct ata_params *ident_data)
297 {
298 	if ((ident_data->pss & 0xc000) == 0x4000 &&
299 	    (ident_data->pss & ATA_PSS_MULTLS)) {
300 		return ((uint64_t)ata_logical_sector_size(ident_data) *
301 		    (1 << (ident_data->pss & ATA_PSS_LSPPS)));
302 	}
303 	return (512);
304 }
305 
306 uint64_t
307 ata_logical_sector_offset(struct ata_params *ident_data)
308 {
309 	if ((ident_data->lsalign & 0xc000) == 0x4000) {
310 		return ((uint64_t)ata_logical_sector_size(ident_data) *
311 		    (ident_data->lsalign & 0x3fff));
312 	}
313 	return (0);
314 }
315 
316 void
317 ata_28bit_cmd(struct ccb_ataio *ataio, uint8_t cmd, uint8_t features,
318     uint32_t lba, uint8_t sector_count)
319 {
320 	bzero(&ataio->cmd, sizeof(ataio->cmd));
321 	ataio->cmd.flags = 0;
322 	if (cmd == ATA_READ_DMA ||
323 	    cmd == ATA_READ_DMA_QUEUED ||
324 	    cmd == ATA_WRITE_DMA ||
325 	    cmd == ATA_WRITE_DMA_QUEUED)
326 		ataio->cmd.flags |= CAM_ATAIO_DMA;
327 	ataio->cmd.command = cmd;
328 	ataio->cmd.features = features;
329 	ataio->cmd.lba_low = lba;
330 	ataio->cmd.lba_mid = lba >> 8;
331 	ataio->cmd.lba_high = lba >> 16;
332 	ataio->cmd.device = 0x40 | ((lba >> 24) & 0x0f);
333 	ataio->cmd.sector_count = sector_count;
334 }
335 
336 void
337 ata_48bit_cmd(struct ccb_ataio *ataio, uint8_t cmd, uint16_t features,
338     uint64_t lba, uint16_t sector_count)
339 {
340 	bzero(&ataio->cmd, sizeof(ataio->cmd));
341 	ataio->cmd.flags = CAM_ATAIO_48BIT;
342 	if (cmd == ATA_READ_DMA48 ||
343 	    cmd == ATA_READ_DMA_QUEUED48 ||
344 	    cmd == ATA_READ_STREAM_DMA48 ||
345 	    cmd == ATA_WRITE_DMA48 ||
346 	    cmd == ATA_WRITE_DMA_FUA48 ||
347 	    cmd == ATA_WRITE_DMA_QUEUED48 ||
348 	    cmd == ATA_WRITE_DMA_QUEUED_FUA48 ||
349 	    cmd == ATA_WRITE_STREAM_DMA48 ||
350 	    cmd == ATA_DATA_SET_MANAGEMENT)
351 		ataio->cmd.flags |= CAM_ATAIO_DMA;
352 	ataio->cmd.command = cmd;
353 	ataio->cmd.features = features;
354 	ataio->cmd.lba_low = lba;
355 	ataio->cmd.lba_mid = lba >> 8;
356 	ataio->cmd.lba_high = lba >> 16;
357 	ataio->cmd.device = 0x40;
358 	ataio->cmd.lba_low_exp = lba >> 24;
359 	ataio->cmd.lba_mid_exp = lba >> 32;
360 	ataio->cmd.lba_high_exp = lba >> 40;
361 	ataio->cmd.features_exp = features >> 8;
362 	ataio->cmd.sector_count = sector_count;
363 	ataio->cmd.sector_count_exp = sector_count >> 8;
364 }
365 
366 void
367 ata_ncq_cmd(struct ccb_ataio *ataio, uint8_t cmd,
368     uint64_t lba, uint16_t sector_count)
369 {
370 	bzero(&ataio->cmd, sizeof(ataio->cmd));
371 	ataio->cmd.flags = CAM_ATAIO_48BIT | CAM_ATAIO_FPDMA;
372 	ataio->cmd.command = cmd;
373 	ataio->cmd.features = sector_count;
374 	ataio->cmd.lba_low = lba;
375 	ataio->cmd.lba_mid = lba >> 8;
376 	ataio->cmd.lba_high = lba >> 16;
377 	ataio->cmd.device = 0x40;
378 	ataio->cmd.lba_low_exp = lba >> 24;
379 	ataio->cmd.lba_mid_exp = lba >> 32;
380 	ataio->cmd.lba_high_exp = lba >> 40;
381 	ataio->cmd.features_exp = sector_count >> 8;
382 }
383 
384 void
385 ata_reset_cmd(struct ccb_ataio *ataio)
386 {
387 	bzero(&ataio->cmd, sizeof(ataio->cmd));
388 	ataio->cmd.flags = CAM_ATAIO_CONTROL | CAM_ATAIO_NEEDRESULT;
389 	ataio->cmd.control = 0x04;
390 }
391 
392 void
393 ata_pm_read_cmd(struct ccb_ataio *ataio, int reg, int port)
394 {
395 	bzero(&ataio->cmd, sizeof(ataio->cmd));
396 	ataio->cmd.flags = CAM_ATAIO_NEEDRESULT;
397 	ataio->cmd.command = ATA_READ_PM;
398 	ataio->cmd.features = reg;
399 	ataio->cmd.device = port & 0x0f;
400 }
401 
402 void
403 ata_pm_write_cmd(struct ccb_ataio *ataio, int reg, int port, uint32_t val)
404 {
405 	bzero(&ataio->cmd, sizeof(ataio->cmd));
406 	ataio->cmd.flags = 0;
407 	ataio->cmd.command = ATA_WRITE_PM;
408 	ataio->cmd.features = reg;
409 	ataio->cmd.sector_count = val;
410 	ataio->cmd.lba_low = val >> 8;
411 	ataio->cmd.lba_mid = val >> 16;
412 	ataio->cmd.lba_high = val >> 24;
413 	ataio->cmd.device = port & 0x0f;
414 }
415 
416 void
417 ata_bswap(int8_t *buf, int len)
418 {
419 	u_int16_t *ptr = (u_int16_t*)(buf + len);
420 
421 	while (--ptr >= (u_int16_t*)buf)
422 		*ptr = be16toh(*ptr);
423 }
424 
425 void
426 ata_btrim(int8_t *buf, int len)
427 {
428 	int8_t *ptr;
429 
430 	for (ptr = buf; ptr < buf+len; ++ptr)
431 		if (!*ptr || *ptr == '_')
432 			*ptr = ' ';
433 	for (ptr = buf + len - 1; ptr >= buf && *ptr == ' '; --ptr)
434 		*ptr = 0;
435 }
436 
437 void
438 ata_bpack(int8_t *src, int8_t *dst, int len)
439 {
440 	int i, j, blank;
441 
442 	for (i = j = blank = 0 ; i < len; i++) {
443 		if (blank && src[i] == ' ') continue;
444 		if (blank && src[i] != ' ') {
445 			dst[j++] = src[i];
446 			blank = 0;
447 			continue;
448 		}
449 		if (src[i] == ' ') {
450 			blank = 1;
451 			if (i == 0)
452 			continue;
453 		}
454 		dst[j++] = src[i];
455 	}
456 	while (j < len)
457 		dst[j++] = 0x00;
458 }
459 
460 int
461 ata_max_pmode(struct ata_params *ap)
462 {
463     if (ap->atavalid & ATA_FLAG_64_70) {
464 	if (ap->apiomodes & 0x02)
465 	    return ATA_PIO4;
466 	if (ap->apiomodes & 0x01)
467 	    return ATA_PIO3;
468     }
469     if (ap->mwdmamodes & 0x04)
470 	return ATA_PIO4;
471     if (ap->mwdmamodes & 0x02)
472 	return ATA_PIO3;
473     if (ap->mwdmamodes & 0x01)
474 	return ATA_PIO2;
475     if ((ap->retired_piomode & ATA_RETIRED_PIO_MASK) == 0x200)
476 	return ATA_PIO2;
477     if ((ap->retired_piomode & ATA_RETIRED_PIO_MASK) == 0x100)
478 	return ATA_PIO1;
479     if ((ap->retired_piomode & ATA_RETIRED_PIO_MASK) == 0x000)
480 	return ATA_PIO0;
481     return ATA_PIO0;
482 }
483 
484 int
485 ata_max_wmode(struct ata_params *ap)
486 {
487     if (ap->mwdmamodes & 0x04)
488 	return ATA_WDMA2;
489     if (ap->mwdmamodes & 0x02)
490 	return ATA_WDMA1;
491     if (ap->mwdmamodes & 0x01)
492 	return ATA_WDMA0;
493     return -1;
494 }
495 
496 int
497 ata_max_umode(struct ata_params *ap)
498 {
499     if (ap->atavalid & ATA_FLAG_88) {
500 	if (ap->udmamodes & 0x40)
501 	    return ATA_UDMA6;
502 	if (ap->udmamodes & 0x20)
503 	    return ATA_UDMA5;
504 	if (ap->udmamodes & 0x10)
505 	    return ATA_UDMA4;
506 	if (ap->udmamodes & 0x08)
507 	    return ATA_UDMA3;
508 	if (ap->udmamodes & 0x04)
509 	    return ATA_UDMA2;
510 	if (ap->udmamodes & 0x02)
511 	    return ATA_UDMA1;
512 	if (ap->udmamodes & 0x01)
513 	    return ATA_UDMA0;
514     }
515     return -1;
516 }
517 
518 int
519 ata_max_mode(struct ata_params *ap, int maxmode)
520 {
521 
522 	if (maxmode == 0)
523 		maxmode = ATA_DMA_MAX;
524 	if (maxmode >= ATA_UDMA0 && ata_max_umode(ap) > 0)
525 		return (min(maxmode, ata_max_umode(ap)));
526 	if (maxmode >= ATA_WDMA0 && ata_max_wmode(ap) > 0)
527 		return (min(maxmode, ata_max_wmode(ap)));
528 	return (min(maxmode, ata_max_pmode(ap)));
529 }
530 
531 char *
532 ata_mode2string(int mode)
533 {
534     switch (mode) {
535     case -1: return "UNSUPPORTED";
536     case 0: return "NONE";
537     case ATA_PIO0: return "PIO0";
538     case ATA_PIO1: return "PIO1";
539     case ATA_PIO2: return "PIO2";
540     case ATA_PIO3: return "PIO3";
541     case ATA_PIO4: return "PIO4";
542     case ATA_WDMA0: return "WDMA0";
543     case ATA_WDMA1: return "WDMA1";
544     case ATA_WDMA2: return "WDMA2";
545     case ATA_UDMA0: return "UDMA0";
546     case ATA_UDMA1: return "UDMA1";
547     case ATA_UDMA2: return "UDMA2";
548     case ATA_UDMA3: return "UDMA3";
549     case ATA_UDMA4: return "UDMA4";
550     case ATA_UDMA5: return "UDMA5";
551     case ATA_UDMA6: return "UDMA6";
552     default:
553 	if (mode & ATA_DMA_MASK)
554 	    return "BIOSDMA";
555 	else
556 	    return "BIOSPIO";
557     }
558 }
559 
560 int
561 ata_string2mode(char *str)
562 {
563 	if (!strcasecmp(str, "PIO0")) return (ATA_PIO0);
564 	if (!strcasecmp(str, "PIO1")) return (ATA_PIO1);
565 	if (!strcasecmp(str, "PIO2")) return (ATA_PIO2);
566 	if (!strcasecmp(str, "PIO3")) return (ATA_PIO3);
567 	if (!strcasecmp(str, "PIO4")) return (ATA_PIO4);
568 	if (!strcasecmp(str, "WDMA0")) return (ATA_WDMA0);
569 	if (!strcasecmp(str, "WDMA1")) return (ATA_WDMA1);
570 	if (!strcasecmp(str, "WDMA2")) return (ATA_WDMA2);
571 	if (!strcasecmp(str, "UDMA0")) return (ATA_UDMA0);
572 	if (!strcasecmp(str, "UDMA16")) return (ATA_UDMA0);
573 	if (!strcasecmp(str, "UDMA1")) return (ATA_UDMA1);
574 	if (!strcasecmp(str, "UDMA25")) return (ATA_UDMA1);
575 	if (!strcasecmp(str, "UDMA2")) return (ATA_UDMA2);
576 	if (!strcasecmp(str, "UDMA33")) return (ATA_UDMA2);
577 	if (!strcasecmp(str, "UDMA3")) return (ATA_UDMA3);
578 	if (!strcasecmp(str, "UDMA44")) return (ATA_UDMA3);
579 	if (!strcasecmp(str, "UDMA4")) return (ATA_UDMA4);
580 	if (!strcasecmp(str, "UDMA66")) return (ATA_UDMA4);
581 	if (!strcasecmp(str, "UDMA5")) return (ATA_UDMA5);
582 	if (!strcasecmp(str, "UDMA100")) return (ATA_UDMA5);
583 	if (!strcasecmp(str, "UDMA6")) return (ATA_UDMA6);
584 	if (!strcasecmp(str, "UDMA133")) return (ATA_UDMA6);
585 	return (-1);
586 }
587 
588 
589 u_int
590 ata_mode2speed(int mode)
591 {
592 	switch (mode) {
593 	case ATA_PIO0:
594 	default:
595 		return (3300);
596 	case ATA_PIO1:
597 		return (5200);
598 	case ATA_PIO2:
599 		return (8300);
600 	case ATA_PIO3:
601 		return (11100);
602 	case ATA_PIO4:
603 		return (16700);
604 	case ATA_WDMA0:
605 		return (4200);
606 	case ATA_WDMA1:
607 		return (13300);
608 	case ATA_WDMA2:
609 		return (16700);
610 	case ATA_UDMA0:
611 		return (16700);
612 	case ATA_UDMA1:
613 		return (25000);
614 	case ATA_UDMA2:
615 		return (33300);
616 	case ATA_UDMA3:
617 		return (44400);
618 	case ATA_UDMA4:
619 		return (66700);
620 	case ATA_UDMA5:
621 		return (100000);
622 	case ATA_UDMA6:
623 		return (133000);
624 	}
625 }
626 
627 u_int
628 ata_revision2speed(int revision)
629 {
630 	switch (revision) {
631 	case 1:
632 	default:
633 		return (150000);
634 	case 2:
635 		return (300000);
636 	case 3:
637 		return (600000);
638 	}
639 }
640 
641 int
642 ata_speed2revision(u_int speed)
643 {
644 	switch (speed) {
645 	case 0:
646 		return (0);
647 	case 150000:
648 		return (1);
649 	case 300000:
650 		return (2);
651 	case 600000:
652 		return (3);
653 	default:
654 		return (-1);
655 	}
656 }
657 
658 int
659 ata_identify_match(caddr_t identbuffer, caddr_t table_entry)
660 {
661 	struct scsi_inquiry_pattern *entry;
662 	struct ata_params *ident;
663 
664 	entry = (struct scsi_inquiry_pattern *)table_entry;
665 	ident = (struct ata_params *)identbuffer;
666 
667 	if ((cam_strmatch(ident->model, entry->product,
668 			  sizeof(ident->model)) == 0)
669 	 && (cam_strmatch(ident->revision, entry->revision,
670 			  sizeof(ident->revision)) == 0)) {
671 		return (0);
672 	}
673         return (-1);
674 }
675 
676 int
677 ata_static_identify_match(caddr_t identbuffer, caddr_t table_entry)
678 {
679 	struct scsi_static_inquiry_pattern *entry;
680 	struct ata_params *ident;
681 
682 	entry = (struct scsi_static_inquiry_pattern *)table_entry;
683 	ident = (struct ata_params *)identbuffer;
684 
685 	if ((cam_strmatch(ident->model, entry->product,
686 			  sizeof(ident->model)) == 0)
687 	 && (cam_strmatch(ident->revision, entry->revision,
688 			  sizeof(ident->revision)) == 0)) {
689 		return (0);
690 	}
691         return (-1);
692 }
693