atactl.c revision 1.72 1 1.72 drochner /* $NetBSD: atactl.c,v 1.72 2013/10/30 15:37:49 drochner Exp $ */
2 1.1 kenh
3 1.1 kenh /*-
4 1.1 kenh * Copyright (c) 1998 The NetBSD Foundation, Inc.
5 1.1 kenh * All rights reserved.
6 1.1 kenh *
7 1.1 kenh * This code is derived from software contributed to The NetBSD Foundation
8 1.1 kenh * by Ken Hornstein.
9 1.1 kenh *
10 1.1 kenh * Redistribution and use in source and binary forms, with or without
11 1.1 kenh * modification, are permitted provided that the following conditions
12 1.1 kenh * are met:
13 1.1 kenh * 1. Redistributions of source code must retain the above copyright
14 1.1 kenh * notice, this list of conditions and the following disclaimer.
15 1.1 kenh * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 kenh * notice, this list of conditions and the following disclaimer in the
17 1.1 kenh * documentation and/or other materials provided with the distribution.
18 1.1 kenh *
19 1.1 kenh * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 kenh * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 kenh * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 kenh * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 kenh * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 kenh * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 kenh * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 kenh * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 kenh * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 kenh * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 kenh * POSSIBILITY OF SUCH DAMAGE.
30 1.1 kenh */
31 1.1 kenh
32 1.1 kenh /*
33 1.4 jwise * atactl(8) - a program to control ATA devices.
34 1.1 kenh */
35 1.21 agc #include <sys/cdefs.h>
36 1.21 agc
37 1.21 agc #ifndef lint
38 1.72 drochner __RCSID("$NetBSD: atactl.c,v 1.72 2013/10/30 15:37:49 drochner Exp $");
39 1.21 agc #endif
40 1.21 agc
41 1.1 kenh
42 1.1 kenh #include <sys/param.h>
43 1.1 kenh #include <sys/ioctl.h>
44 1.1 kenh #include <err.h>
45 1.1 kenh #include <errno.h>
46 1.1 kenh #include <fcntl.h>
47 1.68 riastrad #include <pwd.h>
48 1.1 kenh #include <stdio.h>
49 1.1 kenh #include <stdlib.h>
50 1.1 kenh #include <string.h>
51 1.1 kenh #include <unistd.h>
52 1.1 kenh #include <util.h>
53 1.1 kenh
54 1.1 kenh #include <dev/ata/atareg.h>
55 1.1 kenh #include <sys/ataio.h>
56 1.1 kenh
57 1.33 mycroft struct ata_smart_error {
58 1.33 mycroft struct {
59 1.63 jakllsch uint8_t device_control;
60 1.63 jakllsch uint8_t features;
61 1.63 jakllsch uint8_t sector_count;
62 1.63 jakllsch uint8_t sector_number;
63 1.63 jakllsch uint8_t cylinder_low;
64 1.63 jakllsch uint8_t cylinder_high;
65 1.63 jakllsch uint8_t device_head;
66 1.63 jakllsch uint8_t command;
67 1.63 jakllsch uint8_t timestamp[4];
68 1.33 mycroft } command[5];
69 1.33 mycroft struct {
70 1.63 jakllsch uint8_t reserved;
71 1.63 jakllsch uint8_t error;
72 1.63 jakllsch uint8_t sector_count;
73 1.63 jakllsch uint8_t sector_number;
74 1.63 jakllsch uint8_t cylinder_low;
75 1.63 jakllsch uint8_t cylinder_high;
76 1.63 jakllsch uint8_t device_head;
77 1.63 jakllsch uint8_t status;
78 1.63 jakllsch uint8_t extended_error[19];
79 1.63 jakllsch uint8_t state;
80 1.63 jakllsch uint8_t lifetime[2];
81 1.33 mycroft } error_data;
82 1.49 perry } __packed;
83 1.33 mycroft
84 1.33 mycroft struct ata_smart_errorlog {
85 1.63 jakllsch uint8_t data_structure_revision;
86 1.63 jakllsch uint8_t mostrecenterror;
87 1.33 mycroft struct ata_smart_error log_entries[5];
88 1.63 jakllsch uint16_t device_error_count;
89 1.63 jakllsch uint8_t reserved[57];
90 1.63 jakllsch uint8_t checksum;
91 1.49 perry } __packed;
92 1.33 mycroft
93 1.1 kenh struct command {
94 1.1 kenh const char *cmd_name;
95 1.5 soren const char *arg_names;
96 1.13 simonb void (*cmd_func)(int, char *[]);
97 1.1 kenh };
98 1.1 kenh
99 1.1 kenh struct bitinfo {
100 1.1 kenh u_int bitmask;
101 1.1 kenh const char *string;
102 1.1 kenh };
103 1.1 kenh
104 1.60 joerg __dead static void usage(void);
105 1.60 joerg static void ata_command(struct atareq *);
106 1.64 jakllsch static void print_bitinfo(const char *, const char *, u_int,
107 1.64 jakllsch const struct bitinfo *);
108 1.64 jakllsch static void print_bitinfo2(const char *, const char *, u_int, u_int,
109 1.64 jakllsch const struct bitinfo *);
110 1.60 joerg static void print_smart_status(void *, void *);
111 1.62 jakllsch static void print_error_entry(int, const struct ata_smart_error *);
112 1.62 jakllsch static void print_selftest_entry(int, const struct ata_smart_selftest *);
113 1.60 joerg
114 1.62 jakllsch static void print_error(const void *);
115 1.62 jakllsch static void print_selftest(const void *);
116 1.60 joerg
117 1.66 jakllsch static const struct ataparams *getataparams(void);
118 1.60 joerg
119 1.60 joerg static int is_smart(void);
120 1.60 joerg
121 1.60 joerg static int fd; /* file descriptor for device */
122 1.60 joerg static const char *dvname; /* device name */
123 1.60 joerg static char dvname_store[MAXPATHLEN]; /* for opendisk(3) */
124 1.60 joerg static const char *cmdname; /* command user issued */
125 1.60 joerg
126 1.60 joerg static void device_identify(int, char *[]);
127 1.60 joerg static void device_setidle(int, char *[]);
128 1.60 joerg static void device_idle(int, char *[]);
129 1.60 joerg static void device_apm(int, char *[]);
130 1.60 joerg static void device_checkpower(int, char *[]);
131 1.60 joerg static void device_smart(int, char *[]);
132 1.60 joerg static void device_security(int, char *[]);
133 1.1 kenh
134 1.62 jakllsch static void device_smart_temp(const struct ata_smart_attr *, uint64_t);
135 1.24 lha
136 1.62 jakllsch static const struct command device_commands[] = {
137 1.5 soren { "identify", "", device_identify },
138 1.5 soren { "setidle", "idle-timer", device_setidle },
139 1.48 christos { "apm", "disable|set #", device_apm },
140 1.5 soren { "setstandby", "standby-timer", device_setidle },
141 1.5 soren { "idle", "", device_idle },
142 1.5 soren { "standby", "", device_idle },
143 1.5 soren { "sleep", "", device_idle },
144 1.5 soren { "checkpower", "", device_checkpower },
145 1.64 jakllsch { "smart",
146 1.64 jakllsch "enable|disable|status|offline #|error-log|selftest-log",
147 1.34 soren device_smart },
148 1.68 riastrad { "security",
149 1.68 riastrad "status|freeze|[setpass|unlock|disable|erase] [user|master]",
150 1.68 riastrad device_security },
151 1.5 soren { NULL, NULL, NULL },
152 1.1 kenh };
153 1.1 kenh
154 1.60 joerg static void bus_reset(int, char *[]);
155 1.30 bouyer
156 1.62 jakllsch static const struct command bus_commands[] = {
157 1.30 bouyer { "reset", "", bus_reset },
158 1.30 bouyer { NULL, NULL, NULL },
159 1.30 bouyer };
160 1.30 bouyer
161 1.1 kenh /*
162 1.1 kenh * Tables containing bitmasks used for error reporting and
163 1.1 kenh * device identification.
164 1.1 kenh */
165 1.1 kenh
166 1.62 jakllsch static const struct bitinfo ata_caps[] = {
167 1.23 yamt { WDC_CAP_DMA, "DMA" },
168 1.23 yamt { WDC_CAP_LBA, "LBA" },
169 1.1 kenh { ATA_CAP_STBY, "ATA standby timer values" },
170 1.1 kenh { WDC_CAP_IORDY, "IORDY operation" },
171 1.1 kenh { WDC_CAP_IORDY_DSBL, "IORDY disabling" },
172 1.22 fvdl { 0, NULL },
173 1.1 kenh };
174 1.1 kenh
175 1.62 jakllsch static const struct bitinfo ata_vers[] = {
176 1.1 kenh { WDC_VER_ATA1, "ATA-1" },
177 1.1 kenh { WDC_VER_ATA2, "ATA-2" },
178 1.1 kenh { WDC_VER_ATA3, "ATA-3" },
179 1.1 kenh { WDC_VER_ATA4, "ATA-4" },
180 1.23 yamt { WDC_VER_ATA5, "ATA-5" },
181 1.23 yamt { WDC_VER_ATA6, "ATA-6" },
182 1.23 yamt { WDC_VER_ATA7, "ATA-7" },
183 1.67 drochner { WDC_VER_ATA8, "ATA-8" },
184 1.22 fvdl { 0, NULL },
185 1.1 kenh };
186 1.1 kenh
187 1.62 jakllsch static const struct bitinfo ata_cmd_set1[] = {
188 1.1 kenh { WDC_CMD1_NOP, "NOP command" },
189 1.1 kenh { WDC_CMD1_RB, "READ BUFFER command" },
190 1.1 kenh { WDC_CMD1_WB, "WRITE BUFFER command" },
191 1.1 kenh { WDC_CMD1_HPA, "Host Protected Area feature set" },
192 1.1 kenh { WDC_CMD1_DVRST, "DEVICE RESET command" },
193 1.1 kenh { WDC_CMD1_SRV, "SERVICE interrupt" },
194 1.70 soren { WDC_CMD1_RLSE, "Release interrupt" },
195 1.70 soren { WDC_CMD1_AHEAD, "Look-ahead" },
196 1.70 soren { WDC_CMD1_CACHE, "Write cache" },
197 1.1 kenh { WDC_CMD1_PKT, "PACKET command feature set" },
198 1.1 kenh { WDC_CMD1_PM, "Power Management feature set" },
199 1.1 kenh { WDC_CMD1_REMOV, "Removable Media feature set" },
200 1.1 kenh { WDC_CMD1_SEC, "Security Mode feature set" },
201 1.1 kenh { WDC_CMD1_SMART, "SMART feature set" },
202 1.22 fvdl { 0, NULL },
203 1.1 kenh };
204 1.1 kenh
205 1.62 jakllsch static const struct bitinfo ata_cmd_set2[] = {
206 1.23 yamt { ATA_CMD2_FCE, "FLUSH CACHE EXT command" },
207 1.23 yamt { WDC_CMD2_FC, "FLUSH CACHE command" },
208 1.23 yamt { WDC_CMD2_DCO, "Device Configuration Overlay feature set" },
209 1.23 yamt { ATA_CMD2_LBA48, "48-bit Address feature set" },
210 1.23 yamt { WDC_CMD2_AAM, "Automatic Acoustic Management feature set" },
211 1.28 wiz { WDC_CMD2_SM, "SET MAX security extension" },
212 1.23 yamt { WDC_CMD2_SFREQ, "SET FEATURES required to spin-up after power-up" },
213 1.23 yamt { WDC_CMD2_PUIS, "Power-Up In Standby feature set" },
214 1.1 kenh { WDC_CMD2_RMSN, "Removable Media Status Notification feature set" },
215 1.1 kenh { ATA_CMD2_APM, "Advanced Power Management feature set" },
216 1.1 kenh { ATA_CMD2_CFA, "CFA feature set" },
217 1.6 soren { ATA_CMD2_RWQ, "READ/WRITE DMA QUEUED commands" },
218 1.1 kenh { WDC_CMD2_DM, "DOWNLOAD MICROCODE command" },
219 1.22 fvdl { 0, NULL },
220 1.1 kenh };
221 1.1 kenh
222 1.62 jakllsch static const struct bitinfo ata_cmd_ext[] = {
223 1.23 yamt { ATA_CMDE_TLCONT, "Time-limited R/W feature set R/W Continuous mode" },
224 1.23 yamt { ATA_CMDE_TL, "Time-limited Read/Write" },
225 1.23 yamt { ATA_CMDE_URGW, "URG bit for WRITE STREAM DMA/PIO" },
226 1.23 yamt { ATA_CMDE_URGR, "URG bit for READ STREAM DMA/PIO" },
227 1.55 jakllsch { ATA_CMDE_WWN, "World Wide Name" },
228 1.23 yamt { ATA_CMDE_WQFE, "WRITE DMA QUEUED FUA EXT command" },
229 1.23 yamt { ATA_CMDE_WFE, "WRITE DMA/MULTIPLE FUA EXT commands" },
230 1.23 yamt { ATA_CMDE_GPL, "General Purpose Logging feature set" },
231 1.23 yamt { ATA_CMDE_STREAM, "Streaming feature set" },
232 1.23 yamt { ATA_CMDE_MCPTC, "Media Card Pass Through Command feature set" },
233 1.23 yamt { ATA_CMDE_MS, "Media serial number" },
234 1.23 yamt { ATA_CMDE_SST, "SMART self-test" },
235 1.23 yamt { ATA_CMDE_SEL, "SMART error logging" },
236 1.23 yamt { 0, NULL },
237 1.23 yamt };
238 1.23 yamt
239 1.62 jakllsch static const struct bitinfo ata_sata_caps[] = {
240 1.46 bouyer { SATA_SIGNAL_GEN1, "1.5Gb/s signaling" },
241 1.46 bouyer { SATA_SIGNAL_GEN2, "3.0Gb/s signaling" },
242 1.69 jakllsch { SATA_SIGNAL_GEN3, "6.0Gb/s signaling" },
243 1.46 bouyer { SATA_NATIVE_CMDQ, "Native Command Queuing" },
244 1.46 bouyer { SATA_HOST_PWR_MGMT, "Host-Initiated Interface Power Management" },
245 1.46 bouyer { SATA_PHY_EVNT_CNT, "PHY Event Counters" },
246 1.46 bouyer { 0, NULL },
247 1.46 bouyer };
248 1.46 bouyer
249 1.62 jakllsch static const struct bitinfo ata_sata_feat[] = {
250 1.46 bouyer { SATA_NONZERO_OFFSETS, "Non-zero Offset DMA" },
251 1.46 bouyer { SATA_DMA_SETUP_AUTO, "DMA Setup Auto Activate" },
252 1.46 bouyer { SATA_DRIVE_PWR_MGMT, "Device-Initiated Interface Power Managment" },
253 1.46 bouyer { SATA_IN_ORDER_DATA, "In-order Data Delivery" },
254 1.47 xtraeme { SATA_SW_STTNGS_PRS, "Software Settings Preservation" },
255 1.46 bouyer { 0, NULL },
256 1.46 bouyer };
257 1.46 bouyer
258 1.17 soren static const struct {
259 1.17 soren const int id;
260 1.17 soren const char *name;
261 1.62 jakllsch void (*special)(const struct ata_smart_attr *, uint64_t);
262 1.17 soren } smart_attrs[] = {
263 1.45 christos { 1, "Raw read error rate", NULL },
264 1.45 christos { 2, "Throughput performance", NULL },
265 1.45 christos { 3, "Spin-up time", NULL },
266 1.45 christos { 4, "Start/stop count", NULL },
267 1.45 christos { 5, "Reallocated sector count", NULL },
268 1.45 christos { 6, "Read channel margin", NULL },
269 1.45 christos { 7, "Seek error rate", NULL },
270 1.45 christos { 8, "Seek time performance", NULL },
271 1.45 christos { 9, "Power-on hours count", NULL },
272 1.45 christos { 10, "Spin retry count", NULL },
273 1.45 christos { 11, "Calibration retry count", NULL },
274 1.45 christos { 12, "Device power cycle count", NULL },
275 1.52 dholland { 13, "Soft read error rate", NULL },
276 1.70 soren { 184, "End-to-end error", NULL },
277 1.57 mrg { 187, "Reported uncorrect", NULL },
278 1.52 dholland { 189, "High Fly Writes", NULL },
279 1.52 dholland { 190, "Airflow Temperature", device_smart_temp },
280 1.52 dholland { 191, "G-sense error rate", NULL },
281 1.45 christos { 192, "Power-off retract count", NULL },
282 1.45 christos { 193, "Load cycle count", NULL },
283 1.30 bouyer { 194, "Temperature", device_smart_temp},
284 1.45 christos { 195, "Hardware ECC Recovered", NULL },
285 1.45 christos { 196, "Reallocated event count", NULL },
286 1.45 christos { 197, "Current pending sector", NULL },
287 1.45 christos { 198, "Offline uncorrectable", NULL },
288 1.45 christos { 199, "Ultra DMA CRC error count", NULL },
289 1.45 christos { 200, "Write error rate", NULL },
290 1.45 christos { 201, "Soft read error rate", NULL },
291 1.45 christos { 202, "Data address mark errors", NULL },
292 1.45 christos { 203, "Run out cancel", NULL },
293 1.45 christos { 204, "Soft ECC correction", NULL },
294 1.45 christos { 205, "Thermal asperity check", NULL },
295 1.45 christos { 206, "Flying height", NULL },
296 1.45 christos { 207, "Spin high current", NULL },
297 1.45 christos { 208, "Spin buzz", NULL },
298 1.45 christos { 209, "Offline seek performance", NULL },
299 1.45 christos { 220, "Disk shift", NULL },
300 1.45 christos { 221, "G-Sense error rate", NULL },
301 1.45 christos { 222, "Loaded hours", NULL },
302 1.45 christos { 223, "Load/unload retry count", NULL },
303 1.45 christos { 224, "Load friction", NULL },
304 1.45 christos { 225, "Load/unload cycle count", NULL },
305 1.45 christos { 226, "Load-in time", NULL },
306 1.45 christos { 227, "Torque amplification count", NULL },
307 1.45 christos { 228, "Power-off retract count", NULL },
308 1.45 christos { 230, "GMR head amplitude", NULL },
309 1.32 atatat { 231, "Temperature", device_smart_temp },
310 1.70 soren { 232, "Available reserved space", NULL },
311 1.70 soren { 233, "Media wearout indicator", NULL },
312 1.45 christos { 240, "Head flying hours", NULL },
313 1.45 christos { 250, "Read error retry rate", NULL },
314 1.45 christos { 0, "Unknown", NULL },
315 1.17 soren };
316 1.17 soren
317 1.62 jakllsch static const struct bitinfo ata_sec_st[] = {
318 1.38 drochner { WDC_SEC_SUPP, "supported" },
319 1.38 drochner { WDC_SEC_EN, "enabled" },
320 1.38 drochner { WDC_SEC_LOCKED, "locked" },
321 1.38 drochner { WDC_SEC_FROZEN, "frozen" },
322 1.38 drochner { WDC_SEC_EXP, "expired" },
323 1.38 drochner { WDC_SEC_ESE_SUPP, "enhanced erase support" },
324 1.38 drochner { WDC_SEC_LEV_MAX, "maximum level" },
325 1.38 drochner { 0, NULL },
326 1.38 drochner };
327 1.38 drochner
328 1.1 kenh int
329 1.13 simonb main(int argc, char *argv[])
330 1.1 kenh {
331 1.1 kenh int i;
332 1.62 jakllsch const struct command *commands = NULL;
333 1.1 kenh
334 1.1 kenh /* Must have at least: device command */
335 1.1 kenh if (argc < 3)
336 1.1 kenh usage();
337 1.1 kenh
338 1.1 kenh /* Skip program name, get and skip device name and command. */
339 1.1 kenh dvname = argv[1];
340 1.1 kenh cmdname = argv[2];
341 1.1 kenh argv += 3;
342 1.1 kenh argc -= 3;
343 1.1 kenh
344 1.1 kenh /*
345 1.1 kenh * Open the device
346 1.1 kenh */
347 1.1 kenh fd = opendisk(dvname, O_RDWR, dvname_store, sizeof(dvname_store), 0);
348 1.1 kenh if (fd == -1) {
349 1.1 kenh if (errno == ENOENT) {
350 1.1 kenh /*
351 1.1 kenh * Device doesn't exist. Probably trying to open
352 1.1 kenh * a device which doesn't use disk semantics for
353 1.1 kenh * device name. Try again, specifying "cooked",
354 1.1 kenh * which leaves off the "r" in front of the device's
355 1.1 kenh * name.
356 1.1 kenh */
357 1.1 kenh fd = opendisk(dvname, O_RDWR, dvname_store,
358 1.1 kenh sizeof(dvname_store), 1);
359 1.1 kenh if (fd == -1)
360 1.1 kenh err(1, "%s", dvname);
361 1.4 jwise } else
362 1.4 jwise err(1, "%s", dvname);
363 1.1 kenh }
364 1.1 kenh
365 1.1 kenh /*
366 1.1 kenh * Point the dvname at the actual device name that opendisk() opened.
367 1.1 kenh */
368 1.1 kenh dvname = dvname_store;
369 1.1 kenh
370 1.1 kenh /* Look up and call the command. */
371 1.30 bouyer for (i = 0; device_commands[i].cmd_name != NULL; i++) {
372 1.30 bouyer if (strcmp(cmdname, device_commands[i].cmd_name) == 0) {
373 1.30 bouyer commands = &device_commands[i];
374 1.1 kenh break;
375 1.30 bouyer }
376 1.30 bouyer }
377 1.30 bouyer if (commands == NULL) {
378 1.30 bouyer for (i = 0; bus_commands[i].cmd_name != NULL; i++) {
379 1.30 bouyer if (strcmp(cmdname, bus_commands[i].cmd_name) == 0) {
380 1.30 bouyer commands = &bus_commands[i];
381 1.30 bouyer break;
382 1.30 bouyer }
383 1.30 bouyer }
384 1.30 bouyer }
385 1.30 bouyer if (commands == NULL)
386 1.12 ad errx(1, "unknown command: %s", cmdname);
387 1.1 kenh
388 1.30 bouyer (*commands->cmd_func)(argc, argv);
389 1.1 kenh exit(0);
390 1.1 kenh }
391 1.1 kenh
392 1.60 joerg static void
393 1.13 simonb usage(void)
394 1.1 kenh {
395 1.5 soren int i;
396 1.1 kenh
397 1.27 jmmv fprintf(stderr, "usage: %s device command [arg [...]]\n",
398 1.11 cgd getprogname());
399 1.5 soren
400 1.5 soren fprintf(stderr, " Available device commands:\n");
401 1.30 bouyer for (i=0; device_commands[i].cmd_name != NULL; i++)
402 1.30 bouyer fprintf(stderr, "\t%s %s\n", device_commands[i].cmd_name,
403 1.30 bouyer device_commands[i].arg_names);
404 1.30 bouyer
405 1.30 bouyer fprintf(stderr, " Available bus commands:\n");
406 1.30 bouyer for (i=0; bus_commands[i].cmd_name != NULL; i++)
407 1.30 bouyer fprintf(stderr, "\t%s %s\n", bus_commands[i].cmd_name,
408 1.30 bouyer bus_commands[i].arg_names);
409 1.5 soren
410 1.1 kenh exit(1);
411 1.1 kenh }
412 1.1 kenh
413 1.1 kenh /*
414 1.1 kenh * Wrapper that calls ATAIOCCOMMAND and checks for errors
415 1.1 kenh */
416 1.1 kenh
417 1.60 joerg static void
418 1.13 simonb ata_command(struct atareq *req)
419 1.1 kenh {
420 1.1 kenh int error;
421 1.1 kenh
422 1.1 kenh error = ioctl(fd, ATAIOCCOMMAND, req);
423 1.1 kenh
424 1.1 kenh if (error == -1)
425 1.1 kenh err(1, "ATAIOCCOMMAND failed");
426 1.1 kenh
427 1.1 kenh switch (req->retsts) {
428 1.1 kenh
429 1.1 kenh case ATACMD_OK:
430 1.1 kenh return;
431 1.1 kenh case ATACMD_TIMEOUT:
432 1.1 kenh fprintf(stderr, "ATA command timed out\n");
433 1.1 kenh exit(1);
434 1.1 kenh case ATACMD_DF:
435 1.1 kenh fprintf(stderr, "ATA device returned a Device Fault\n");
436 1.1 kenh exit(1);
437 1.1 kenh case ATACMD_ERROR:
438 1.1 kenh if (req->error & WDCE_ABRT)
439 1.1 kenh fprintf(stderr, "ATA device returned Aborted "
440 1.1 kenh "Command\n");
441 1.1 kenh else
442 1.1 kenh fprintf(stderr, "ATA device returned error register "
443 1.1 kenh "%0x\n", req->error);
444 1.1 kenh exit(1);
445 1.1 kenh default:
446 1.1 kenh fprintf(stderr, "ATAIOCCOMMAND returned unknown result code "
447 1.1 kenh "%d\n", req->retsts);
448 1.1 kenh exit(1);
449 1.1 kenh }
450 1.1 kenh }
451 1.1 kenh
452 1.1 kenh /*
453 1.1 kenh * Print out strings associated with particular bitmasks
454 1.1 kenh */
455 1.1 kenh
456 1.60 joerg static void
457 1.64 jakllsch print_bitinfo(const char *bf, const char *af, u_int bits,
458 1.64 jakllsch const struct bitinfo *binfo)
459 1.1 kenh {
460 1.1 kenh
461 1.22 fvdl for (; binfo->bitmask != 0; binfo++)
462 1.1 kenh if (bits & binfo->bitmask)
463 1.10 is printf("%s%s%s", bf, binfo->string, af);
464 1.1 kenh }
465 1.1 kenh
466 1.60 joerg static void
467 1.64 jakllsch print_bitinfo2(const char *bf, const char *af, u_int bits, u_int enables,
468 1.64 jakllsch const struct bitinfo *binfo)
469 1.33 mycroft {
470 1.33 mycroft
471 1.33 mycroft for (; binfo->bitmask != 0; binfo++)
472 1.33 mycroft if (bits & binfo->bitmask)
473 1.33 mycroft printf("%s%s (%s)%s", bf, binfo->string,
474 1.33 mycroft (enables & binfo->bitmask) ? "enabled" : "disabled",
475 1.33 mycroft af);
476 1.33 mycroft }
477 1.33 mycroft
478 1.24 lha
479 1.24 lha /*
480 1.24 lha * Try to print SMART temperature field
481 1.24 lha */
482 1.24 lha
483 1.60 joerg static void
484 1.62 jakllsch device_smart_temp(const struct ata_smart_attr *attr, uint64_t raw_value)
485 1.24 lha {
486 1.29 mycroft printf("%" PRIu8, attr->raw[0]);
487 1.24 lha if (attr->raw[0] != raw_value)
488 1.61 jakllsch printf(" Lifetime min/max %" PRIu8 "/%" PRIu8,
489 1.29 mycroft attr->raw[2], attr->raw[4]);
490 1.24 lha }
491 1.24 lha
492 1.24 lha
493 1.1 kenh /*
494 1.15 soren * Print out SMART attribute thresholds and values
495 1.15 soren */
496 1.15 soren
497 1.60 joerg static void
498 1.15 soren print_smart_status(void *vbuf, void *tbuf)
499 1.15 soren {
500 1.62 jakllsch const struct ata_smart_attributes *value_buf = vbuf;
501 1.62 jakllsch const struct ata_smart_thresholds *threshold_buf = tbuf;
502 1.62 jakllsch const struct ata_smart_attr *attr;
503 1.29 mycroft uint64_t raw_value;
504 1.24 lha int flags;
505 1.17 soren int i, j;
506 1.24 lha int aid;
507 1.63 jakllsch uint8_t checksum;
508 1.15 soren
509 1.33 mycroft for (i = checksum = 0; i < 512; i++)
510 1.63 jakllsch checksum += ((const uint8_t *) value_buf)[i];
511 1.33 mycroft if (checksum != 0) {
512 1.15 soren fprintf(stderr, "SMART attribute values checksum error\n");
513 1.15 soren return;
514 1.15 soren }
515 1.15 soren
516 1.33 mycroft for (i = checksum = 0; i < 512; i++)
517 1.63 jakllsch checksum += ((const uint8_t *) threshold_buf)[i];
518 1.33 mycroft if (checksum != 0) {
519 1.15 soren fprintf(stderr, "SMART attribute thresholds checksum error\n");
520 1.15 soren return;
521 1.15 soren }
522 1.15 soren
523 1.64 jakllsch printf("id value thresh crit collect reliability description"
524 1.70 soren " raw\n");
525 1.24 lha for (i = 0; i < 256; i++) {
526 1.24 lha int thresh = 0;
527 1.24 lha
528 1.24 lha attr = NULL;
529 1.24 lha
530 1.24 lha for (j = 0; j < 30; j++) {
531 1.24 lha if (value_buf->attributes[j].id == i)
532 1.24 lha attr = &value_buf->attributes[j];
533 1.24 lha if (threshold_buf->thresholds[j].id == i)
534 1.24 lha thresh = threshold_buf->thresholds[j].value;
535 1.31 atatat }
536 1.15 soren
537 1.24 lha if (thresh && attr == NULL)
538 1.24 lha errx(1, "threshold but not attr %d", i);
539 1.24 lha if (attr == NULL)
540 1.24 lha continue;
541 1.24 lha
542 1.24 lha if (attr->value == 0||attr->value == 0xFE||attr->value == 0xFF)
543 1.24 lha continue;
544 1.24 lha
545 1.61 jakllsch for (aid = 0;
546 1.61 jakllsch smart_attrs[aid].id != i && smart_attrs[aid].id != 0;
547 1.24 lha aid++)
548 1.24 lha ;
549 1.24 lha
550 1.35 fvdl flags = le16toh(attr->flags);
551 1.24 lha
552 1.70 soren printf("%3d %3d %3d %-3s %-7s %stive %-27s ",
553 1.24 lha i, attr->value, thresh,
554 1.24 lha flags & WDSM_ATTR_ADVISORY ? "yes" : "no",
555 1.24 lha flags & WDSM_ATTR_COLLECTIVE ? "online" : "offline",
556 1.24 lha attr->value > thresh ? "posi" : "nega",
557 1.24 lha smart_attrs[aid].name);
558 1.24 lha
559 1.24 lha for (j = 0, raw_value = 0; j < 6; j++)
560 1.29 mycroft raw_value += ((uint64_t)attr->raw[j]) << (8*j);
561 1.24 lha
562 1.24 lha if (smart_attrs[aid].special)
563 1.24 lha (*smart_attrs[aid].special)(attr, raw_value);
564 1.29 mycroft else
565 1.29 mycroft printf("%" PRIu64, raw_value);
566 1.24 lha printf("\n");
567 1.15 soren }
568 1.58 nisimura }
569 1.24 lha
570 1.62 jakllsch static const struct {
571 1.24 lha int number;
572 1.24 lha const char *name;
573 1.24 lha } selftest_name[] = {
574 1.24 lha { 0, "Off-line" },
575 1.24 lha { 1, "Short off-line" },
576 1.24 lha { 2, "Extended off-line" },
577 1.24 lha { 127, "Abort off-line test" },
578 1.24 lha { 129, "Short captive" },
579 1.24 lha { 130, "Extended captive" },
580 1.63 jakllsch { 256, "Unknown test" }, /* larger then uint8_t */
581 1.24 lha { 0, NULL }
582 1.24 lha };
583 1.24 lha
584 1.60 joerg static const char *selftest_status[] = {
585 1.24 lha "No error",
586 1.24 lha "Aborted by the host",
587 1.42 wiz "Interrupted by the host by reset",
588 1.24 lha "Fatal error or unknown test error",
589 1.24 lha "Unknown test element failed",
590 1.24 lha "Electrical test element failed",
591 1.24 lha "The Servo (and/or seek) test element failed",
592 1.24 lha "Read element of test failed",
593 1.24 lha "Reserved",
594 1.24 lha "Reserved",
595 1.24 lha "Reserved",
596 1.24 lha "Reserved",
597 1.24 lha "Reserved",
598 1.24 lha "Reserved",
599 1.24 lha "Reserved",
600 1.24 lha "Self-test in progress"
601 1.24 lha };
602 1.24 lha
603 1.60 joerg static void
604 1.62 jakllsch print_error_entry(int num, const struct ata_smart_error *le)
605 1.33 mycroft {
606 1.33 mycroft int i;
607 1.33 mycroft
608 1.33 mycroft printf("Log entry: %d\n", num);
609 1.33 mycroft
610 1.33 mycroft for (i = 0; i < 5; i++)
611 1.64 jakllsch printf("\tCommand %d: dc=%02x sf=%02x sc=%02x sn=%02x cl=%02x "
612 1.64 jakllsch "ch=%02x dh=%02x cmd=%02x time=%02x%02x%02x%02x\n", i,
613 1.33 mycroft le->command[i].device_control,
614 1.33 mycroft le->command[i].features,
615 1.33 mycroft le->command[i].sector_count,
616 1.33 mycroft le->command[i].sector_number,
617 1.33 mycroft le->command[i].cylinder_low,
618 1.33 mycroft le->command[i].cylinder_high,
619 1.33 mycroft le->command[i].device_head,
620 1.33 mycroft le->command[i].command,
621 1.33 mycroft le->command[i].timestamp[3],
622 1.33 mycroft le->command[i].timestamp[2],
623 1.33 mycroft le->command[i].timestamp[1],
624 1.33 mycroft le->command[i].timestamp[0]);
625 1.64 jakllsch printf("\tError: err=%02x sc=%02x sn=%02x cl=%02x ch=%02x dh=%02x "
626 1.64 jakllsch "status=%02x state=%02x lifetime=%02x%02x\n",
627 1.33 mycroft le->error_data.error,
628 1.33 mycroft le->error_data.sector_count,
629 1.33 mycroft le->error_data.sector_number,
630 1.33 mycroft le->error_data.cylinder_low,
631 1.33 mycroft le->error_data.cylinder_high,
632 1.33 mycroft le->error_data.device_head,
633 1.33 mycroft le->error_data.status,
634 1.33 mycroft le->error_data.state,
635 1.33 mycroft le->error_data.lifetime[1],
636 1.33 mycroft le->error_data.lifetime[0]);
637 1.64 jakllsch printf("\tExtended: %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x "
638 1.64 jakllsch "%02x %02x %02x %02x %02x %02x %02x %02x %02x\n",
639 1.33 mycroft le->error_data.extended_error[0],
640 1.33 mycroft le->error_data.extended_error[1],
641 1.33 mycroft le->error_data.extended_error[2],
642 1.33 mycroft le->error_data.extended_error[3],
643 1.33 mycroft le->error_data.extended_error[4],
644 1.33 mycroft le->error_data.extended_error[5],
645 1.33 mycroft le->error_data.extended_error[6],
646 1.33 mycroft le->error_data.extended_error[7],
647 1.33 mycroft le->error_data.extended_error[8],
648 1.33 mycroft le->error_data.extended_error[9],
649 1.33 mycroft le->error_data.extended_error[10],
650 1.33 mycroft le->error_data.extended_error[11],
651 1.33 mycroft le->error_data.extended_error[12],
652 1.33 mycroft le->error_data.extended_error[13],
653 1.33 mycroft le->error_data.extended_error[14],
654 1.33 mycroft le->error_data.extended_error[15],
655 1.33 mycroft le->error_data.extended_error[15],
656 1.33 mycroft le->error_data.extended_error[17],
657 1.33 mycroft le->error_data.extended_error[18]);
658 1.33 mycroft }
659 1.33 mycroft
660 1.60 joerg static void
661 1.62 jakllsch print_error(const void *buf)
662 1.33 mycroft {
663 1.62 jakllsch const struct ata_smart_errorlog *erlog = buf;
664 1.63 jakllsch uint8_t checksum;
665 1.33 mycroft int i;
666 1.33 mycroft
667 1.33 mycroft for (i = checksum = 0; i < 512; i++)
668 1.63 jakllsch checksum += ((const uint8_t *) buf)[i];
669 1.33 mycroft if (checksum != 0) {
670 1.33 mycroft fprintf(stderr, "SMART error log checksum error\n");
671 1.33 mycroft return;
672 1.33 mycroft }
673 1.33 mycroft
674 1.33 mycroft if (erlog->data_structure_revision != 1) {
675 1.41 dbj fprintf(stderr, "Error log revision not 1 (found 0x%04x)\n",
676 1.41 dbj erlog->data_structure_revision);
677 1.33 mycroft return;
678 1.33 mycroft }
679 1.33 mycroft
680 1.33 mycroft if (erlog->mostrecenterror == 0) {
681 1.33 mycroft printf("No errors have been logged\n");
682 1.33 mycroft return;
683 1.33 mycroft }
684 1.61 jakllsch
685 1.33 mycroft if (erlog->mostrecenterror > 5) {
686 1.33 mycroft fprintf(stderr, "Most recent error is too large\n");
687 1.33 mycroft return;
688 1.33 mycroft }
689 1.61 jakllsch
690 1.33 mycroft for (i = erlog->mostrecenterror; i < 5; i++)
691 1.33 mycroft print_error_entry(i, &erlog->log_entries[i]);
692 1.33 mycroft for (i = 0; i < erlog->mostrecenterror; i++)
693 1.33 mycroft print_error_entry(i, &erlog->log_entries[i]);
694 1.33 mycroft printf("device error count: %d\n", erlog->device_error_count);
695 1.33 mycroft }
696 1.33 mycroft
697 1.60 joerg static void
698 1.62 jakllsch print_selftest_entry(int num, const struct ata_smart_selftest *le)
699 1.24 lha {
700 1.62 jakllsch const unsigned char *p;
701 1.53 lukem size_t i;
702 1.24 lha
703 1.24 lha /* check if all zero */
704 1.62 jakllsch for (p = (const void *)le, i = 0; i < sizeof(*le); i++)
705 1.24 lha if (p[i] != 0)
706 1.24 lha break;
707 1.24 lha if (i == sizeof(*le))
708 1.24 lha return;
709 1.24 lha
710 1.24 lha printf("Log entry: %d\n", num);
711 1.24 lha
712 1.24 lha /* Get test name */
713 1.24 lha for (i = 0; selftest_name[i].name != NULL; i++)
714 1.24 lha if (selftest_name[i].number == le->number)
715 1.24 lha break;
716 1.24 lha
717 1.33 mycroft if (selftest_name[i].name == NULL)
718 1.33 mycroft printf("\tName: (%d)\n", le->number);
719 1.33 mycroft else
720 1.33 mycroft printf("\tName: %s\n", selftest_name[i].name);
721 1.24 lha printf("\tStatus: %s\n", selftest_status[le->status >> 4]);
722 1.33 mycroft /* XXX This generally should not be set when a self-test is completed,
723 1.33 mycroft and at any rate is useless. - mycroft */
724 1.24 lha if (le->status >> 4 == 15)
725 1.33 mycroft printf("\tPercent of test remaining: %1d0\n", le->status & 0xf);
726 1.33 mycroft else if (le->status >> 4 != 0)
727 1.35 fvdl printf("\tLBA first error: %d\n", le32toh(le->lba_first_error));
728 1.24 lha }
729 1.24 lha
730 1.60 joerg static void
731 1.62 jakllsch print_selftest(const void *buf)
732 1.24 lha {
733 1.62 jakllsch const struct ata_smart_selftestlog *stlog = buf;
734 1.63 jakllsch uint8_t checksum;
735 1.24 lha int i;
736 1.24 lha
737 1.33 mycroft for (i = checksum = 0; i < 512; i++)
738 1.63 jakllsch checksum += ((const uint8_t *) buf)[i];
739 1.33 mycroft if (checksum != 0) {
740 1.24 lha fprintf(stderr, "SMART selftest log checksum error\n");
741 1.24 lha return;
742 1.24 lha }
743 1.24 lha
744 1.41 dbj if (le16toh(stlog->data_structure_revision) != 1) {
745 1.41 dbj fprintf(stderr, "Self-test log revision not 1 (found 0x%04x)\n",
746 1.41 dbj le16toh(stlog->data_structure_revision));
747 1.24 lha return;
748 1.24 lha }
749 1.24 lha
750 1.24 lha if (stlog->mostrecenttest == 0) {
751 1.24 lha printf("No self-tests have been logged\n");
752 1.24 lha return;
753 1.24 lha }
754 1.61 jakllsch
755 1.24 lha if (stlog->mostrecenttest > 22) {
756 1.24 lha fprintf(stderr, "Most recent test is too large\n");
757 1.24 lha return;
758 1.24 lha }
759 1.61 jakllsch
760 1.24 lha for (i = stlog->mostrecenttest; i < 22; i++)
761 1.24 lha print_selftest_entry(i, &stlog->log_entries[i]);
762 1.24 lha for (i = 0; i < stlog->mostrecenttest; i++)
763 1.24 lha print_selftest_entry(i, &stlog->log_entries[i]);
764 1.15 soren }
765 1.15 soren
766 1.66 jakllsch static const struct ataparams *
767 1.60 joerg getataparams(void)
768 1.38 drochner {
769 1.38 drochner struct atareq req;
770 1.38 drochner static union {
771 1.38 drochner unsigned char inbuf[DEV_BSIZE];
772 1.38 drochner struct ataparams inqbuf;
773 1.38 drochner } inbuf;
774 1.38 drochner
775 1.38 drochner memset(&inbuf, 0, sizeof(inbuf));
776 1.38 drochner memset(&req, 0, sizeof(req));
777 1.38 drochner
778 1.38 drochner req.flags = ATACMD_READ;
779 1.38 drochner req.command = WDCC_IDENTIFY;
780 1.56 jakllsch req.databuf = &inbuf;
781 1.38 drochner req.datalen = sizeof(inbuf);
782 1.38 drochner req.timeout = 1000;
783 1.38 drochner
784 1.38 drochner ata_command(&req);
785 1.38 drochner
786 1.38 drochner return (&inbuf.inqbuf);
787 1.38 drochner }
788 1.38 drochner
789 1.15 soren /*
790 1.15 soren * is_smart:
791 1.15 soren *
792 1.15 soren * Detect whether device supports SMART and SMART is enabled.
793 1.15 soren */
794 1.15 soren
795 1.60 joerg static int
796 1.20 mycroft is_smart(void)
797 1.15 soren {
798 1.15 soren int retval = 0;
799 1.66 jakllsch const struct ataparams *inqbuf;
800 1.39 christos const char *status;
801 1.15 soren
802 1.38 drochner inqbuf = getataparams();
803 1.15 soren
804 1.15 soren if (inqbuf->atap_cmd_def != 0 && inqbuf->atap_cmd_def != 0xffff) {
805 1.15 soren if (!(inqbuf->atap_cmd_set1 & WDC_CMD1_SMART)) {
806 1.15 soren fprintf(stderr, "SMART unsupported\n");
807 1.15 soren } else {
808 1.15 soren if (inqbuf->atap_ata_major <= WDC_VER_ATA5 ||
809 1.15 soren inqbuf->atap_cmd_set2 == 0xffff ||
810 1.15 soren inqbuf->atap_cmd_set2 == 0x0000) {
811 1.15 soren status = "status unknown";
812 1.15 soren retval = 2;
813 1.15 soren } else {
814 1.18 mycroft if (inqbuf->atap_cmd1_en & WDC_CMD1_SMART) {
815 1.15 soren status = "enabled";
816 1.15 soren retval = 1;
817 1.15 soren } else {
818 1.15 soren status = "disabled";
819 1.43 xtraeme retval = 3;
820 1.15 soren }
821 1.15 soren }
822 1.20 mycroft printf("SMART supported, SMART %s\n", status);
823 1.15 soren }
824 1.15 soren }
825 1.15 soren return retval;
826 1.15 soren }
827 1.51 dholland
828 1.51 dholland /*
829 1.51 dholland * extract_string: copy a block of bytes out of ataparams and make
830 1.51 dholland * a proper string out of it, truncating trailing spaces and preserving
831 1.51 dholland * strict typing. And also, not doing unaligned accesses.
832 1.51 dholland */
833 1.51 dholland static void
834 1.51 dholland extract_string(char *buf, size_t bufmax,
835 1.66 jakllsch const uint8_t *bytes, size_t numbytes,
836 1.51 dholland int needswap)
837 1.51 dholland {
838 1.51 dholland unsigned i;
839 1.51 dholland size_t j;
840 1.51 dholland unsigned char ch1, ch2;
841 1.51 dholland
842 1.51 dholland for (i = 0, j = 0; i < numbytes; i += 2) {
843 1.51 dholland ch1 = bytes[i];
844 1.51 dholland ch2 = bytes[i+1];
845 1.51 dholland if (needswap && j < bufmax-1) {
846 1.51 dholland buf[j++] = ch2;
847 1.51 dholland }
848 1.51 dholland if (j < bufmax-1) {
849 1.51 dholland buf[j++] = ch1;
850 1.51 dholland }
851 1.51 dholland if (!needswap && j < bufmax-1) {
852 1.51 dholland buf[j++] = ch2;
853 1.51 dholland }
854 1.51 dholland }
855 1.51 dholland while (j > 0 && buf[j-1] == ' ') {
856 1.51 dholland j--;
857 1.51 dholland }
858 1.51 dholland buf[j] = '\0';
859 1.51 dholland }
860 1.51 dholland
861 1.68 riastrad static void
862 1.68 riastrad compute_capacity(const struct ataparams *inqbuf, uint64_t *capacityp,
863 1.68 riastrad uint64_t *sectorsp, uint32_t *secsizep)
864 1.68 riastrad {
865 1.68 riastrad uint64_t capacity;
866 1.68 riastrad uint64_t sectors;
867 1.68 riastrad uint32_t secsize;
868 1.68 riastrad
869 1.68 riastrad if (inqbuf->atap_cmd2_en != 0 && inqbuf->atap_cmd2_en != 0xffff &&
870 1.68 riastrad inqbuf->atap_cmd2_en & ATA_CMD2_LBA48) {
871 1.68 riastrad sectors =
872 1.68 riastrad ((uint64_t)inqbuf->atap_max_lba[3] << 48) |
873 1.68 riastrad ((uint64_t)inqbuf->atap_max_lba[2] << 32) |
874 1.68 riastrad ((uint64_t)inqbuf->atap_max_lba[1] << 16) |
875 1.68 riastrad ((uint64_t)inqbuf->atap_max_lba[0] << 0);
876 1.68 riastrad } else if (inqbuf->atap_capabilities1 & WDC_CAP_LBA) {
877 1.68 riastrad sectors = (inqbuf->atap_capacity[1] << 16) |
878 1.68 riastrad inqbuf->atap_capacity[0];
879 1.68 riastrad } else {
880 1.68 riastrad sectors = inqbuf->atap_cylinders *
881 1.68 riastrad inqbuf->atap_heads * inqbuf->atap_sectors;
882 1.68 riastrad }
883 1.68 riastrad
884 1.68 riastrad secsize = 512;
885 1.68 riastrad
886 1.68 riastrad if ((inqbuf->atap_secsz & ATA_SECSZ_VALID_MASK) == ATA_SECSZ_VALID) {
887 1.68 riastrad if (inqbuf->atap_secsz & ATA_SECSZ_LLS) {
888 1.68 riastrad secsize = 2 * /* words to bytes */
889 1.68 riastrad (inqbuf->atap_lls_secsz[1] << 16 |
890 1.68 riastrad inqbuf->atap_lls_secsz[0] << 0);
891 1.68 riastrad }
892 1.68 riastrad }
893 1.68 riastrad
894 1.68 riastrad capacity = sectors * secsize;
895 1.68 riastrad
896 1.68 riastrad if (capacityp)
897 1.68 riastrad *capacityp = capacity;
898 1.68 riastrad if (sectorsp)
899 1.68 riastrad *sectorsp = sectors;
900 1.68 riastrad if (secsizep)
901 1.68 riastrad *secsizep = secsize;
902 1.68 riastrad }
903 1.68 riastrad
904 1.15 soren /*
905 1.1 kenh * DEVICE COMMANDS
906 1.1 kenh */
907 1.1 kenh
908 1.1 kenh /*
909 1.1 kenh * device_identify:
910 1.1 kenh *
911 1.1 kenh * Display the identity of the device
912 1.1 kenh */
913 1.60 joerg static void
914 1.13 simonb device_identify(int argc, char *argv[])
915 1.1 kenh {
916 1.66 jakllsch const struct ataparams *inqbuf;
917 1.54 mlelstv char model[sizeof(inqbuf->atap_model)+1];
918 1.54 mlelstv char revision[sizeof(inqbuf->atap_revision)+1];
919 1.54 mlelstv char serial[sizeof(inqbuf->atap_serial)+1];
920 1.56 jakllsch char hnum[12];
921 1.55 jakllsch uint64_t capacity;
922 1.56 jakllsch uint64_t sectors;
923 1.56 jakllsch uint32_t secsize;
924 1.56 jakllsch int lb_per_pb;
925 1.51 dholland int needswap = 0;
926 1.56 jakllsch int i;
927 1.56 jakllsch uint8_t checksum;
928 1.1 kenh
929 1.1 kenh /* No arguments. */
930 1.1 kenh if (argc != 0)
931 1.5 soren usage();
932 1.1 kenh
933 1.38 drochner inqbuf = getataparams();
934 1.1 kenh
935 1.56 jakllsch if ((inqbuf->atap_integrity & WDC_INTEGRITY_MAGIC_MASK) ==
936 1.56 jakllsch WDC_INTEGRITY_MAGIC) {
937 1.56 jakllsch for (i = checksum = 0; i < 512; i++)
938 1.66 jakllsch checksum += ((const uint8_t *)inqbuf)[i];
939 1.56 jakllsch if (checksum != 0)
940 1.56 jakllsch puts("IDENTIFY DEVICE data checksum invalid\n");
941 1.56 jakllsch }
942 1.56 jakllsch
943 1.1 kenh #if BYTE_ORDER == LITTLE_ENDIAN
944 1.1 kenh /*
945 1.1 kenh * On little endian machines, we need to shuffle the string
946 1.1 kenh * byte order. However, we don't have to do this for NEC or
947 1.1 kenh * Mitsumi ATAPI devices
948 1.1 kenh */
949 1.1 kenh
950 1.72 drochner if (!(inqbuf->atap_config != WDC_CFG_CFA_MAGIC &&
951 1.72 drochner (inqbuf->atap_config & WDC_CFG_ATAPI) &&
952 1.1 kenh ((inqbuf->atap_model[0] == 'N' &&
953 1.1 kenh inqbuf->atap_model[1] == 'E') ||
954 1.1 kenh (inqbuf->atap_model[0] == 'F' &&
955 1.1 kenh inqbuf->atap_model[1] == 'X')))) {
956 1.51 dholland needswap = 1;
957 1.1 kenh }
958 1.1 kenh #endif
959 1.1 kenh
960 1.1 kenh /*
961 1.51 dholland * Copy the info strings out, stripping off blanks.
962 1.1 kenh */
963 1.51 dholland extract_string(model, sizeof(model),
964 1.51 dholland inqbuf->atap_model, sizeof(inqbuf->atap_model),
965 1.51 dholland needswap);
966 1.51 dholland extract_string(revision, sizeof(revision),
967 1.51 dholland inqbuf->atap_revision, sizeof(inqbuf->atap_revision),
968 1.51 dholland needswap);
969 1.51 dholland extract_string(serial, sizeof(serial),
970 1.51 dholland inqbuf->atap_serial, sizeof(inqbuf->atap_serial),
971 1.51 dholland needswap);
972 1.1 kenh
973 1.51 dholland printf("Model: %s, Rev: %s, Serial #: %s\n",
974 1.51 dholland model, revision, serial);
975 1.1 kenh
976 1.55 jakllsch if (inqbuf->atap_cmd_ext != 0 && inqbuf->atap_cmd_ext != 0xffff &&
977 1.55 jakllsch inqbuf->atap_cmd_ext & ATA_CMDE_WWN)
978 1.55 jakllsch printf("World Wide Name: %016" PRIX64 "\n",
979 1.55 jakllsch ((uint64_t)inqbuf->atap_wwn[0] << 48) |
980 1.55 jakllsch ((uint64_t)inqbuf->atap_wwn[1] << 32) |
981 1.55 jakllsch ((uint64_t)inqbuf->atap_wwn[2] << 16) |
982 1.55 jakllsch ((uint64_t)inqbuf->atap_wwn[3] << 0));
983 1.55 jakllsch
984 1.72 drochner printf("Device type: %s",
985 1.72 drochner inqbuf->atap_config == WDC_CFG_CFA_MAGIC ? "CF-ATA" :
986 1.72 drochner (inqbuf->atap_config & WDC_CFG_ATAPI ? "ATAPI" : "ATA"));
987 1.72 drochner if (inqbuf->atap_config != WDC_CFG_CFA_MAGIC)
988 1.72 drochner printf(", %s",
989 1.72 drochner inqbuf->atap_config & ATA_CFG_FIXED ? "fixed" : "removable");
990 1.72 drochner printf("\n");
991 1.1 kenh
992 1.68 riastrad compute_capacity(inqbuf, &capacity, §ors, &secsize);
993 1.56 jakllsch
994 1.56 jakllsch humanize_number(hnum, sizeof(hnum), capacity, "bytes",
995 1.56 jakllsch HN_AUTOSCALE, HN_DIVISOR_1000);
996 1.56 jakllsch
997 1.61 jakllsch printf("Capacity %s, %" PRIu64 " sectors, %" PRIu32 " bytes/sector\n",
998 1.56 jakllsch hnum, sectors, secsize);
999 1.56 jakllsch
1000 1.56 jakllsch printf("Cylinders: %d, heads: %d, sec/track: %d\n",
1001 1.56 jakllsch inqbuf->atap_cylinders, inqbuf->atap_heads,
1002 1.56 jakllsch inqbuf->atap_sectors);
1003 1.61 jakllsch
1004 1.56 jakllsch lb_per_pb = 1;
1005 1.56 jakllsch
1006 1.56 jakllsch if ((inqbuf->atap_secsz & ATA_SECSZ_VALID_MASK) == ATA_SECSZ_VALID) {
1007 1.56 jakllsch if (inqbuf->atap_secsz & ATA_SECSZ_LPS) {
1008 1.56 jakllsch lb_per_pb <<= inqbuf->atap_secsz & ATA_SECSZ_LPS_SZMSK;
1009 1.56 jakllsch printf("Physical sector size: %d bytes\n",
1010 1.56 jakllsch lb_per_pb * secsize);
1011 1.56 jakllsch if ((inqbuf->atap_logical_align &
1012 1.56 jakllsch ATA_LA_VALID_MASK) == ATA_LA_VALID) {
1013 1.56 jakllsch printf("First physically aligned sector: %d\n",
1014 1.56 jakllsch lb_per_pb - (inqbuf->atap_logical_align &
1015 1.56 jakllsch ATA_LA_MASK));
1016 1.56 jakllsch }
1017 1.56 jakllsch }
1018 1.55 jakllsch }
1019 1.1 kenh
1020 1.55 jakllsch if (((inqbuf->atap_sata_caps & SATA_NATIVE_CMDQ) ||
1021 1.55 jakllsch (inqbuf->atap_cmd_set2 & ATA_CMD2_RWQ)) &&
1022 1.55 jakllsch (inqbuf->atap_queuedepth & WDC_QUEUE_DEPTH_MASK))
1023 1.56 jakllsch printf("Command queue depth: %d\n",
1024 1.55 jakllsch (inqbuf->atap_queuedepth & WDC_QUEUE_DEPTH_MASK) + 1);
1025 1.1 kenh
1026 1.1 kenh printf("Device capabilities:\n");
1027 1.10 is print_bitinfo("\t", "\n", inqbuf->atap_capabilities1, ata_caps);
1028 1.1 kenh
1029 1.1 kenh if (inqbuf->atap_ata_major != 0 && inqbuf->atap_ata_major != 0xffff) {
1030 1.1 kenh printf("Device supports following standards:\n");
1031 1.10 is print_bitinfo("", " ", inqbuf->atap_ata_major, ata_vers);
1032 1.1 kenh printf("\n");
1033 1.1 kenh }
1034 1.1 kenh
1035 1.1 kenh if (inqbuf->atap_cmd_set1 != 0 && inqbuf->atap_cmd_set1 != 0xffff &&
1036 1.1 kenh inqbuf->atap_cmd_set2 != 0 && inqbuf->atap_cmd_set2 != 0xffff) {
1037 1.1 kenh printf("Command set support:\n");
1038 1.33 mycroft if (inqbuf->atap_cmd1_en != 0 && inqbuf->atap_cmd1_en != 0xffff)
1039 1.33 mycroft print_bitinfo2("\t", "\n", inqbuf->atap_cmd_set1,
1040 1.33 mycroft inqbuf->atap_cmd1_en, ata_cmd_set1);
1041 1.33 mycroft else
1042 1.33 mycroft print_bitinfo("\t", "\n", inqbuf->atap_cmd_set1,
1043 1.33 mycroft ata_cmd_set1);
1044 1.33 mycroft if (inqbuf->atap_cmd2_en != 0 && inqbuf->atap_cmd2_en != 0xffff)
1045 1.33 mycroft print_bitinfo2("\t", "\n", inqbuf->atap_cmd_set2,
1046 1.33 mycroft inqbuf->atap_cmd2_en, ata_cmd_set2);
1047 1.33 mycroft else
1048 1.33 mycroft print_bitinfo("\t", "\n", inqbuf->atap_cmd_set2,
1049 1.33 mycroft ata_cmd_set2);
1050 1.23 yamt if (inqbuf->atap_cmd_ext != 0 && inqbuf->atap_cmd_ext != 0xffff)
1051 1.23 yamt print_bitinfo("\t", "\n", inqbuf->atap_cmd_ext,
1052 1.23 yamt ata_cmd_ext);
1053 1.1 kenh }
1054 1.1 kenh
1055 1.46 bouyer if (inqbuf->atap_sata_caps != 0 && inqbuf->atap_sata_caps != 0xffff) {
1056 1.46 bouyer printf("Serial ATA capabilities:\n");
1057 1.55 jakllsch print_bitinfo("\t", "\n",
1058 1.55 jakllsch inqbuf->atap_sata_caps, ata_sata_caps);
1059 1.55 jakllsch
1060 1.46 bouyer }
1061 1.46 bouyer
1062 1.55 jakllsch if (inqbuf->atap_sata_features_supp != 0 &&
1063 1.55 jakllsch inqbuf->atap_sata_features_supp != 0xffff) {
1064 1.46 bouyer printf("Serial ATA features:\n");
1065 1.55 jakllsch if (inqbuf->atap_sata_features_en != 0 &&
1066 1.55 jakllsch inqbuf->atap_sata_features_en != 0xffff)
1067 1.55 jakllsch print_bitinfo2("\t", "\n",
1068 1.55 jakllsch inqbuf->atap_sata_features_supp,
1069 1.55 jakllsch inqbuf->atap_sata_features_en, ata_sata_feat);
1070 1.46 bouyer else
1071 1.55 jakllsch print_bitinfo("\t", "\n",
1072 1.55 jakllsch inqbuf->atap_sata_features_supp, ata_sata_feat);
1073 1.46 bouyer }
1074 1.46 bouyer
1075 1.71 soren if ((inqbuf->atap_ata_major & WDC_VER_ATA7) &&
1076 1.67 drochner (inqbuf->support_dsm & ATA_SUPPORT_DSM_TRIM))
1077 1.67 drochner printf("TRIM supported\n");
1078 1.67 drochner
1079 1.1 kenh return;
1080 1.1 kenh }
1081 1.1 kenh
1082 1.1 kenh /*
1083 1.1 kenh * device idle:
1084 1.1 kenh *
1085 1.1 kenh * issue the IDLE IMMEDIATE command to the drive
1086 1.1 kenh */
1087 1.60 joerg static void
1088 1.13 simonb device_idle(int argc, char *argv[])
1089 1.1 kenh {
1090 1.1 kenh struct atareq req;
1091 1.1 kenh
1092 1.1 kenh /* No arguments. */
1093 1.1 kenh if (argc != 0)
1094 1.5 soren usage();
1095 1.1 kenh
1096 1.1 kenh memset(&req, 0, sizeof(req));
1097 1.1 kenh
1098 1.1 kenh if (strcmp(cmdname, "idle") == 0)
1099 1.1 kenh req.command = WDCC_IDLE_IMMED;
1100 1.1 kenh else if (strcmp(cmdname, "standby") == 0)
1101 1.1 kenh req.command = WDCC_STANDBY_IMMED;
1102 1.1 kenh else
1103 1.1 kenh req.command = WDCC_SLEEP;
1104 1.1 kenh
1105 1.1 kenh req.timeout = 1000;
1106 1.1 kenh
1107 1.1 kenh ata_command(&req);
1108 1.1 kenh
1109 1.1 kenh return;
1110 1.1 kenh }
1111 1.1 kenh
1112 1.1 kenh /*
1113 1.48 christos * device apm:
1114 1.48 christos *
1115 1.48 christos * enable/disable/control the APM feature of the drive
1116 1.48 christos */
1117 1.60 joerg static void
1118 1.48 christos device_apm(int argc, char *argv[])
1119 1.48 christos {
1120 1.48 christos struct atareq req;
1121 1.48 christos long l;
1122 1.48 christos
1123 1.48 christos memset(&req, 0, sizeof(req));
1124 1.48 christos if (argc >= 1) {
1125 1.48 christos req.command = SET_FEATURES;
1126 1.48 christos req.timeout = 1000;
1127 1.61 jakllsch
1128 1.48 christos if (strcmp(argv[0], "disable") == 0)
1129 1.48 christos req.features = WDSF_APM_DS;
1130 1.48 christos else if (strcmp(argv[0], "set") == 0 && argc >= 2 &&
1131 1.48 christos (l = strtol(argv[1], NULL, 0)) >= 0 && l <= 253) {
1132 1.61 jakllsch
1133 1.48 christos req.features = WDSF_APM_EN;
1134 1.48 christos req.sec_count = l + 1;
1135 1.48 christos } else
1136 1.48 christos usage();
1137 1.48 christos } else
1138 1.48 christos usage();
1139 1.61 jakllsch
1140 1.48 christos ata_command(&req);
1141 1.48 christos }
1142 1.61 jakllsch
1143 1.48 christos
1144 1.48 christos /*
1145 1.1 kenh * Set the idle timer on the disk. Set it for either idle mode or
1146 1.1 kenh * standby mode, depending on how we were invoked.
1147 1.1 kenh */
1148 1.1 kenh
1149 1.60 joerg static void
1150 1.13 simonb device_setidle(int argc, char *argv[])
1151 1.1 kenh {
1152 1.1 kenh unsigned long idle;
1153 1.1 kenh struct atareq req;
1154 1.1 kenh char *end;
1155 1.1 kenh
1156 1.1 kenh /* Only one argument */
1157 1.1 kenh if (argc != 1)
1158 1.5 soren usage();
1159 1.1 kenh
1160 1.1 kenh idle = strtoul(argv[0], &end, 0);
1161 1.1 kenh
1162 1.1 kenh if (*end != '\0') {
1163 1.1 kenh fprintf(stderr, "Invalid idle time: \"%s\"\n", argv[0]);
1164 1.1 kenh exit(1);
1165 1.1 kenh }
1166 1.1 kenh
1167 1.1 kenh if (idle > 19800) {
1168 1.1 kenh fprintf(stderr, "Idle time has a maximum value of 5.5 "
1169 1.1 kenh "hours\n");
1170 1.1 kenh exit(1);
1171 1.1 kenh }
1172 1.1 kenh
1173 1.1 kenh if (idle != 0 && idle < 5) {
1174 1.1 kenh fprintf(stderr, "Idle timer must be at least 5 seconds\n");
1175 1.1 kenh exit(1);
1176 1.1 kenh }
1177 1.1 kenh
1178 1.1 kenh memset(&req, 0, sizeof(req));
1179 1.1 kenh
1180 1.1 kenh if (idle <= 240*5)
1181 1.1 kenh req.sec_count = idle / 5;
1182 1.1 kenh else
1183 1.1 kenh req.sec_count = idle / (30*60) + 240;
1184 1.1 kenh
1185 1.1 kenh req.command = cmdname[3] == 's' ? WDCC_STANDBY : WDCC_IDLE;
1186 1.1 kenh req.timeout = 1000;
1187 1.1 kenh
1188 1.1 kenh ata_command(&req);
1189 1.1 kenh
1190 1.1 kenh return;
1191 1.3 kenh }
1192 1.3 kenh
1193 1.3 kenh /*
1194 1.3 kenh * Query the device for the current power mode
1195 1.3 kenh */
1196 1.3 kenh
1197 1.60 joerg static void
1198 1.13 simonb device_checkpower(int argc, char *argv[])
1199 1.3 kenh {
1200 1.3 kenh struct atareq req;
1201 1.3 kenh
1202 1.3 kenh /* No arguments. */
1203 1.3 kenh if (argc != 0)
1204 1.5 soren usage();
1205 1.3 kenh
1206 1.3 kenh memset(&req, 0, sizeof(req));
1207 1.3 kenh
1208 1.3 kenh req.command = WDCC_CHECK_PWR;
1209 1.3 kenh req.timeout = 1000;
1210 1.3 kenh req.flags = ATACMD_READREG;
1211 1.3 kenh
1212 1.3 kenh ata_command(&req);
1213 1.3 kenh
1214 1.3 kenh printf("Current power status: ");
1215 1.3 kenh
1216 1.3 kenh switch (req.sec_count) {
1217 1.3 kenh case 0x00:
1218 1.3 kenh printf("Standby mode\n");
1219 1.3 kenh break;
1220 1.3 kenh case 0x80:
1221 1.3 kenh printf("Idle mode\n");
1222 1.3 kenh break;
1223 1.3 kenh case 0xff:
1224 1.3 kenh printf("Active mode\n");
1225 1.3 kenh break;
1226 1.3 kenh default:
1227 1.3 kenh printf("Unknown power code (%02x)\n", req.sec_count);
1228 1.3 kenh }
1229 1.3 kenh
1230 1.15 soren return;
1231 1.15 soren }
1232 1.15 soren
1233 1.15 soren /*
1234 1.15 soren * device_smart:
1235 1.15 soren *
1236 1.15 soren * Display SMART status
1237 1.15 soren */
1238 1.60 joerg static void
1239 1.15 soren device_smart(int argc, char *argv[])
1240 1.15 soren {
1241 1.15 soren struct atareq req;
1242 1.15 soren unsigned char inbuf[DEV_BSIZE];
1243 1.15 soren unsigned char inbuf2[DEV_BSIZE];
1244 1.15 soren
1245 1.33 mycroft if (argc < 1)
1246 1.15 soren usage();
1247 1.15 soren
1248 1.15 soren if (strcmp(argv[0], "enable") == 0) {
1249 1.20 mycroft memset(&req, 0, sizeof(req));
1250 1.15 soren
1251 1.20 mycroft req.features = WDSM_ENABLE_OPS;
1252 1.20 mycroft req.command = WDCC_SMART;
1253 1.35 fvdl req.cylinder = WDSMART_CYL;
1254 1.20 mycroft req.timeout = 1000;
1255 1.15 soren
1256 1.20 mycroft ata_command(&req);
1257 1.15 soren
1258 1.20 mycroft is_smart();
1259 1.15 soren } else if (strcmp(argv[0], "disable") == 0) {
1260 1.20 mycroft memset(&req, 0, sizeof(req));
1261 1.15 soren
1262 1.20 mycroft req.features = WDSM_DISABLE_OPS;
1263 1.20 mycroft req.command = WDCC_SMART;
1264 1.35 fvdl req.cylinder = WDSMART_CYL;
1265 1.20 mycroft req.timeout = 1000;
1266 1.15 soren
1267 1.20 mycroft ata_command(&req);
1268 1.15 soren
1269 1.20 mycroft is_smart();
1270 1.16 soren } else if (strcmp(argv[0], "status") == 0) {
1271 1.43 xtraeme int rv;
1272 1.43 xtraeme
1273 1.43 xtraeme rv = is_smart();
1274 1.43 xtraeme
1275 1.43 xtraeme if (!rv) {
1276 1.24 lha fprintf(stderr, "SMART not supported\n");
1277 1.24 lha return;
1278 1.43 xtraeme } else if (rv == 3)
1279 1.43 xtraeme return;
1280 1.24 lha
1281 1.43 xtraeme memset(&inbuf, 0, sizeof(inbuf));
1282 1.43 xtraeme memset(&req, 0, sizeof(req));
1283 1.15 soren
1284 1.43 xtraeme req.features = WDSM_STATUS;
1285 1.43 xtraeme req.command = WDCC_SMART;
1286 1.43 xtraeme req.cylinder = WDSMART_CYL;
1287 1.43 xtraeme req.timeout = 1000;
1288 1.61 jakllsch
1289 1.43 xtraeme ata_command(&req);
1290 1.15 soren
1291 1.43 xtraeme if (req.cylinder != WDSMART_CYL) {
1292 1.43 xtraeme fprintf(stderr, "Threshold exceeds condition\n");
1293 1.43 xtraeme }
1294 1.15 soren
1295 1.43 xtraeme /* WDSM_RD_DATA and WDSM_RD_THRESHOLDS are optional
1296 1.43 xtraeme * features, the following ata_command()'s may error
1297 1.43 xtraeme * and exit().
1298 1.43 xtraeme */
1299 1.15 soren
1300 1.43 xtraeme memset(&inbuf, 0, sizeof(inbuf));
1301 1.43 xtraeme memset(&req, 0, sizeof(req));
1302 1.15 soren
1303 1.43 xtraeme req.flags = ATACMD_READ;
1304 1.43 xtraeme req.features = WDSM_RD_DATA;
1305 1.43 xtraeme req.command = WDCC_SMART;
1306 1.43 xtraeme req.databuf = (caddr_t) inbuf;
1307 1.43 xtraeme req.datalen = sizeof(inbuf);
1308 1.43 xtraeme req.cylinder = WDSMART_CYL;
1309 1.43 xtraeme req.timeout = 1000;
1310 1.61 jakllsch
1311 1.43 xtraeme ata_command(&req);
1312 1.15 soren
1313 1.43 xtraeme memset(&inbuf2, 0, sizeof(inbuf2));
1314 1.43 xtraeme memset(&req, 0, sizeof(req));
1315 1.15 soren
1316 1.43 xtraeme req.flags = ATACMD_READ;
1317 1.43 xtraeme req.features = WDSM_RD_THRESHOLDS;
1318 1.43 xtraeme req.command = WDCC_SMART;
1319 1.43 xtraeme req.databuf = (caddr_t) inbuf2;
1320 1.43 xtraeme req.datalen = sizeof(inbuf2);
1321 1.43 xtraeme req.cylinder = WDSMART_CYL;
1322 1.43 xtraeme req.timeout = 1000;
1323 1.15 soren
1324 1.43 xtraeme ata_command(&req);
1325 1.15 soren
1326 1.43 xtraeme print_smart_status(inbuf, inbuf2);
1327 1.24 lha
1328 1.33 mycroft } else if (strcmp(argv[0], "offline") == 0) {
1329 1.34 soren if (argc != 2)
1330 1.34 soren usage();
1331 1.33 mycroft if (!is_smart()) {
1332 1.33 mycroft fprintf(stderr, "SMART not supported\n");
1333 1.33 mycroft return;
1334 1.33 mycroft }
1335 1.33 mycroft
1336 1.33 mycroft memset(&req, 0, sizeof(req));
1337 1.33 mycroft
1338 1.33 mycroft req.features = WDSM_EXEC_OFFL_IMM;
1339 1.33 mycroft req.command = WDCC_SMART;
1340 1.35 fvdl req.cylinder = WDSMART_CYL;
1341 1.33 mycroft req.sec_num = atol(argv[1]);
1342 1.33 mycroft req.timeout = 10000;
1343 1.33 mycroft
1344 1.33 mycroft ata_command(&req);
1345 1.33 mycroft } else if (strcmp(argv[0], "error-log") == 0) {
1346 1.33 mycroft if (!is_smart()) {
1347 1.33 mycroft fprintf(stderr, "SMART not supported\n");
1348 1.33 mycroft return;
1349 1.33 mycroft }
1350 1.33 mycroft
1351 1.33 mycroft memset(&inbuf, 0, sizeof(inbuf));
1352 1.33 mycroft memset(&req, 0, sizeof(req));
1353 1.61 jakllsch
1354 1.33 mycroft req.flags = ATACMD_READ;
1355 1.33 mycroft req.features = WDSM_RD_LOG;
1356 1.33 mycroft req.sec_count = 1;
1357 1.33 mycroft req.sec_num = 1;
1358 1.33 mycroft req.command = WDCC_SMART;
1359 1.33 mycroft req.databuf = (caddr_t) inbuf;
1360 1.33 mycroft req.datalen = sizeof(inbuf);
1361 1.35 fvdl req.cylinder = WDSMART_CYL;
1362 1.33 mycroft req.timeout = 1000;
1363 1.61 jakllsch
1364 1.33 mycroft ata_command(&req);
1365 1.61 jakllsch
1366 1.33 mycroft print_error(inbuf);
1367 1.24 lha } else if (strcmp(argv[0], "selftest-log") == 0) {
1368 1.24 lha if (!is_smart()) {
1369 1.15 soren fprintf(stderr, "SMART not supported\n");
1370 1.24 lha return;
1371 1.15 soren }
1372 1.24 lha
1373 1.24 lha memset(&inbuf, 0, sizeof(inbuf));
1374 1.24 lha memset(&req, 0, sizeof(req));
1375 1.61 jakllsch
1376 1.24 lha req.flags = ATACMD_READ;
1377 1.24 lha req.features = WDSM_RD_LOG;
1378 1.24 lha req.sec_count = 1;
1379 1.24 lha req.sec_num = 6;
1380 1.24 lha req.command = WDCC_SMART;
1381 1.24 lha req.databuf = (caddr_t) inbuf;
1382 1.24 lha req.datalen = sizeof(inbuf);
1383 1.35 fvdl req.cylinder = WDSMART_CYL;
1384 1.24 lha req.timeout = 1000;
1385 1.61 jakllsch
1386 1.24 lha ata_command(&req);
1387 1.61 jakllsch
1388 1.24 lha print_selftest(inbuf);
1389 1.24 lha
1390 1.15 soren } else {
1391 1.15 soren usage();
1392 1.15 soren }
1393 1.3 kenh return;
1394 1.1 kenh }
1395 1.30 bouyer
1396 1.60 joerg static void
1397 1.38 drochner device_security(int argc, char *argv[])
1398 1.38 drochner {
1399 1.38 drochner struct atareq req;
1400 1.66 jakllsch const struct ataparams *inqbuf;
1401 1.68 riastrad unsigned char data[DEV_BSIZE];
1402 1.68 riastrad char *pass;
1403 1.38 drochner
1404 1.38 drochner /* need subcommand */
1405 1.38 drochner if (argc < 1)
1406 1.38 drochner usage();
1407 1.38 drochner
1408 1.68 riastrad memset(&req, 0, sizeof(req));
1409 1.68 riastrad if (strcmp(argv[0], "status") == 0) {
1410 1.68 riastrad inqbuf = getataparams();
1411 1.68 riastrad print_bitinfo("\t", "\n", inqbuf->atap_sec_st, ata_sec_st);
1412 1.68 riastrad } else if (strcmp(argv[0], "freeze") == 0) {
1413 1.44 xtraeme req.command = WDCC_SECURITY_FREEZE;
1414 1.38 drochner req.timeout = 1000;
1415 1.38 drochner ata_command(&req);
1416 1.68 riastrad } else if ((strcmp(argv[0], "setpass") == 0) ||
1417 1.68 riastrad (strcmp(argv[0], "unlock") == 0) ||
1418 1.68 riastrad (strcmp(argv[0], "disable") == 0) ||
1419 1.68 riastrad (strcmp(argv[0], "erase") == 0)) {
1420 1.68 riastrad if (argc != 2)
1421 1.68 riastrad usage();
1422 1.68 riastrad if (strcmp(argv[1], "user") != 0) {
1423 1.68 riastrad if (strcmp(argv[1], "master") == 0) {
1424 1.68 riastrad fprintf(stderr,
1425 1.68 riastrad "Master passwords not supported\n");
1426 1.68 riastrad exit(1);
1427 1.68 riastrad } else {
1428 1.68 riastrad usage();
1429 1.68 riastrad }
1430 1.68 riastrad }
1431 1.68 riastrad
1432 1.68 riastrad pass = getpass("Password:");
1433 1.68 riastrad if (strlen(pass) > 32) {
1434 1.68 riastrad fprintf(stderr, "Password must be <=32 characters\n");
1435 1.68 riastrad exit(1);
1436 1.68 riastrad }
1437 1.68 riastrad
1438 1.68 riastrad req.flags |= ATACMD_WRITE;
1439 1.68 riastrad req.timeout = 1000;
1440 1.68 riastrad req.databuf = data;
1441 1.68 riastrad req.datalen = sizeof(data);
1442 1.68 riastrad memset(data, 0, sizeof(data));
1443 1.68 riastrad strlcpy((void *)&data[2], pass, 32 + 1);
1444 1.68 riastrad
1445 1.68 riastrad if (strcmp(argv[0], "setpass") == 0) {
1446 1.68 riastrad char orig[32 + 1];
1447 1.68 riastrad strlcpy(orig, pass, 32 + 1);
1448 1.68 riastrad pass = getpass("Confirm password:");
1449 1.68 riastrad if (0 != strcmp(orig, pass)) {
1450 1.68 riastrad fprintf(stderr, "Passwords do not match\n");
1451 1.68 riastrad exit(1);
1452 1.68 riastrad }
1453 1.68 riastrad req.command = WDCC_SECURITY_SET_PASSWORD;
1454 1.68 riastrad } else if (strcmp(argv[0], "unlock") == 0) {
1455 1.68 riastrad req.command = WDCC_SECURITY_UNLOCK;
1456 1.68 riastrad } else if (strcmp(argv[0], "disable") == 0) {
1457 1.68 riastrad req.command = WDCC_SECURITY_DISABLE_PASSWORD;
1458 1.68 riastrad } else if (strcmp(argv[0], "erase") == 0) {
1459 1.68 riastrad struct atareq prepare;
1460 1.68 riastrad
1461 1.68 riastrad inqbuf = getataparams();
1462 1.68 riastrad
1463 1.68 riastrad /*
1464 1.68 riastrad * XXX Any way to lock the device to make sure
1465 1.68 riastrad * this really is the command preceding the
1466 1.68 riastrad * SECURITY ERASE UNIT command? This would
1467 1.68 riastrad * probably have to be moved into the kernel to
1468 1.68 riastrad * do that.
1469 1.68 riastrad */
1470 1.68 riastrad memset(&prepare, 0, sizeof(prepare));
1471 1.68 riastrad prepare.command = WDCC_SECURITY_ERASE_PREPARE;
1472 1.68 riastrad prepare.timeout = 1000;
1473 1.68 riastrad ata_command(&prepare);
1474 1.68 riastrad
1475 1.68 riastrad req.command = WDCC_SECURITY_ERASE_UNIT;
1476 1.68 riastrad
1477 1.68 riastrad /*
1478 1.68 riastrad * Enable enhanced erase if it's supported.
1479 1.68 riastrad *
1480 1.68 riastrad * XXX should be a command-line option
1481 1.68 riastrad */
1482 1.68 riastrad if (inqbuf->atap_sec_st & WDC_SEC_ESE_SUPP) {
1483 1.68 riastrad data[0] |= 0x2;
1484 1.68 riastrad req.timeout = (inqbuf->atap_eseu_time & 0xff)
1485 1.68 riastrad * 2 * 60 * 1000;
1486 1.68 riastrad } else {
1487 1.68 riastrad req.timeout = (inqbuf->atap_seu_time & 0xff)
1488 1.68 riastrad * 2 * 60 * 1000;
1489 1.68 riastrad }
1490 1.68 riastrad
1491 1.68 riastrad /*
1492 1.68 riastrad * If the estimated time was 0xff (* 2 * 60 *
1493 1.68 riastrad * 1000 = 30600000), that means `>508 minutes'.
1494 1.68 riastrad * Estimate that we can handle 16 MB/sec, a
1495 1.68 riastrad * rate I just pulled out of my arse.
1496 1.68 riastrad */
1497 1.68 riastrad if (req.timeout == 30600000) {
1498 1.68 riastrad uint64_t bytes, timeout;
1499 1.68 riastrad compute_capacity(inqbuf, &bytes, NULL, NULL);
1500 1.68 riastrad timeout = (bytes / (16 * 1024 * 1024)) * 1000;
1501 1.68 riastrad if (timeout > (uint64_t)INT_MAX)
1502 1.68 riastrad req.timeout = INT_MAX;
1503 1.68 riastrad else
1504 1.68 riastrad req.timeout = timeout;
1505 1.68 riastrad }
1506 1.68 riastrad
1507 1.68 riastrad printf("Erasing may take up to %dh %dm %ds...\n",
1508 1.68 riastrad (req.timeout / 1000 / 60) / 60,
1509 1.68 riastrad (req.timeout / 1000 / 60) % 60,
1510 1.68 riastrad req.timeout % 60);
1511 1.68 riastrad } else {
1512 1.68 riastrad abort();
1513 1.68 riastrad }
1514 1.68 riastrad
1515 1.68 riastrad ata_command(&req);
1516 1.68 riastrad } else {
1517 1.38 drochner usage();
1518 1.68 riastrad }
1519 1.38 drochner }
1520 1.38 drochner
1521 1.30 bouyer /*
1522 1.30 bouyer * bus_reset:
1523 1.30 bouyer * Reset an ATA bus (will reset all devices on the bus)
1524 1.30 bouyer */
1525 1.60 joerg static void
1526 1.30 bouyer bus_reset(int argc, char *argv[])
1527 1.30 bouyer {
1528 1.30 bouyer int error;
1529 1.30 bouyer
1530 1.30 bouyer /* no args */
1531 1.30 bouyer if (argc != 0)
1532 1.30 bouyer usage();
1533 1.30 bouyer
1534 1.30 bouyer error = ioctl(fd, ATABUSIORESET, NULL);
1535 1.30 bouyer
1536 1.30 bouyer if (error == -1)
1537 1.30 bouyer err(1, "ATABUSIORESET failed");
1538 1.30 bouyer }
1539