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raidctl.c revision 1.66.2.1
      1  1.66.2.1  pgoyette /*      $NetBSD: raidctl.c,v 1.66.2.1 2018/03/30 06:20:10 pgoyette Exp $   */
      2      1.18   thorpej 
      3       1.1     oster /*-
      4       1.1     oster  * Copyright (c) 1996, 1997, 1998 The NetBSD Foundation, Inc.
      5       1.1     oster  * All rights reserved.
      6       1.1     oster  *
      7       1.1     oster  * This code is derived from software contributed to The NetBSD Foundation
      8       1.1     oster  * by Greg Oster
      9       1.1     oster  *
     10       1.1     oster  * Redistribution and use in source and binary forms, with or without
     11       1.1     oster  * modification, are permitted provided that the following conditions
     12       1.1     oster  * are met:
     13       1.1     oster  * 1. Redistributions of source code must retain the above copyright
     14       1.1     oster  *    notice, this list of conditions and the following disclaimer.
     15       1.1     oster  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.1     oster  *    notice, this list of conditions and the following disclaimer in the
     17       1.1     oster  *    documentation and/or other materials provided with the distribution.
     18       1.1     oster  *
     19       1.1     oster  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.1     oster  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.1     oster  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.1     oster  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.1     oster  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.1     oster  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.1     oster  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.1     oster  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.1     oster  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.1     oster  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.1     oster  * POSSIBILITY OF SUCH DAMAGE.
     30       1.1     oster  */
     31       1.1     oster 
     32       1.1     oster /*
     33      1.18   thorpej  * This program is a re-write of the original rf_ctrl program
     34      1.18   thorpej  * distributed by CMU with RAIDframe 1.1.
     35      1.18   thorpej  *
     36      1.18   thorpej  * This program is the user-land interface to the RAIDframe kernel
     37      1.18   thorpej  * driver in NetBSD.
     38       1.1     oster  */
     39      1.33       agc #include <sys/cdefs.h>
     40      1.33       agc 
     41      1.33       agc #ifndef lint
     42  1.66.2.1  pgoyette __RCSID("$NetBSD: raidctl.c,v 1.66.2.1 2018/03/30 06:20:10 pgoyette Exp $");
     43      1.33       agc #endif
     44      1.33       agc 
     45       1.1     oster 
     46       1.1     oster #include <sys/param.h>
     47       1.1     oster #include <sys/ioctl.h>
     48       1.1     oster #include <sys/stat.h>
     49      1.18   thorpej #include <sys/disklabel.h>
     50      1.18   thorpej 
     51       1.1     oster #include <ctype.h>
     52       1.1     oster #include <err.h>
     53       1.2    mjacob #include <errno.h>
     54      1.25     lukem #include <fcntl.h>
     55      1.25     lukem #include <stdio.h>
     56      1.25     lukem #include <stdlib.h>
     57       1.1     oster #include <string.h>
     58      1.59  christos #include <inttypes.h>
     59       1.3     oster #include <unistd.h>
     60      1.25     lukem #include <util.h>
     61       1.3     oster 
     62      1.29     oster #include <dev/raidframe/raidframevar.h>
     63      1.29     oster #include <dev/raidframe/raidframeio.h>
     64      1.29     oster #include "rf_configure.h"
     65      1.50     pooka #include "prog_ops.h"
     66       1.1     oster 
     67      1.36   xtraeme void	do_ioctl(int, u_long, void *, const char *);
     68      1.36   xtraeme static  void rf_configure(int, char*, int);
     69      1.36   xtraeme static  const char *device_status(RF_DiskStatus_t);
     70      1.36   xtraeme static  void rf_get_device_status(int);
     71      1.36   xtraeme static	void rf_output_configuration(int, const char *);
     72      1.36   xtraeme static  void get_component_number(int, char *, int *, int *);
     73      1.36   xtraeme static  void rf_fail_disk(int, char *, int);
     74      1.53     joerg __dead static  void usage(void);
     75      1.36   xtraeme static  void get_component_label(int, char *);
     76      1.36   xtraeme static  void set_component_label(int, char *);
     77      1.36   xtraeme static  void init_component_labels(int, int);
     78      1.36   xtraeme static  void set_autoconfig(int, int, char *);
     79      1.36   xtraeme static  void add_hot_spare(int, char *);
     80      1.36   xtraeme static  void remove_hot_spare(int, char *);
     81      1.36   xtraeme static  void rebuild_in_place(int, char *);
     82      1.36   xtraeme static  void check_status(int,int);
     83      1.36   xtraeme static  void check_parity(int,int, char *);
     84      1.36   xtraeme static  void do_meter(int, u_long);
     85      1.36   xtraeme static  void get_bar(char *, double, int);
     86      1.36   xtraeme static  void get_time_string(char *, int);
     87      1.42       jld static  void rf_output_pmstat(int, int);
     88      1.42       jld static  void rf_pm_configure(int, int, char *, int[]);
     89      1.59  christos static  unsigned int xstrtouint(const char *);
     90      1.10     oster 
     91      1.18   thorpej int verbose;
     92       1.1     oster 
     93      1.57  christos static const char *rootpart[] = { "No", "Force", "Soft", "*invalid*" };
     94      1.57  christos 
     95       1.1     oster int
     96      1.36   xtraeme main(int argc,char *argv[])
     97       1.1     oster {
     98      1.42       jld 	int ch, i;
     99       1.1     oster 	int num_options;
    100       1.1     oster 	unsigned long action;
    101       1.1     oster 	char config_filename[PATH_MAX];
    102       1.1     oster 	char dev_name[PATH_MAX];
    103       1.1     oster 	char name[PATH_MAX];
    104       1.5     oster 	char component[PATH_MAX];
    105      1.12     oster 	char autoconf[10];
    106      1.42       jld 	char *parityconf = NULL;
    107      1.42       jld 	int parityparams[3];
    108      1.27     lukem 	int do_output;
    109       1.1     oster 	int do_recon;
    110       1.7     oster 	int do_rewrite;
    111       1.1     oster 	int raidID;
    112       1.5     oster 	int serial_number;
    113       1.1     oster 	struct stat st;
    114       1.1     oster 	int fd;
    115       1.5     oster 	int force;
    116      1.30    simonb 	int openmode;
    117      1.64  christos 	int last_unit;
    118       1.1     oster 
    119       1.1     oster 	num_options = 0;
    120       1.1     oster 	action = 0;
    121      1.27     lukem 	do_output = 0;
    122       1.1     oster 	do_recon = 0;
    123       1.7     oster 	do_rewrite = 0;
    124      1.38     lukem 	serial_number = 0;
    125       1.5     oster 	force = 0;
    126      1.64  christos 	last_unit = 0;
    127      1.30    simonb 	openmode = O_RDWR;	/* default to read/write */
    128       1.1     oster 
    129      1.64  christos 	while ((ch = getopt(argc, argv, "a:A:Bc:C:f:F:g:GiI:l:mM:r:R:sSpPuU:v"))
    130      1.12     oster 	       != -1)
    131       1.1     oster 		switch(ch) {
    132       1.5     oster 		case 'a':
    133       1.5     oster 			action = RAIDFRAME_ADD_HOT_SPARE;
    134      1.32    itojun 			strlcpy(component, optarg, sizeof(component));
    135       1.5     oster 			num_options++;
    136       1.5     oster 			break;
    137      1.12     oster 		case 'A':
    138      1.12     oster 			action = RAIDFRAME_SET_AUTOCONFIG;
    139      1.32    itojun 			strlcpy(autoconf, optarg, sizeof(autoconf));
    140      1.12     oster 			num_options++;
    141      1.12     oster 			break;
    142       1.6     oster 		case 'B':
    143       1.6     oster 			action = RAIDFRAME_COPYBACK;
    144       1.6     oster 			num_options++;
    145       1.6     oster 			break;
    146       1.1     oster 		case 'c':
    147       1.6     oster 			action = RAIDFRAME_CONFIGURE;
    148      1.32    itojun 			strlcpy(config_filename, optarg,
    149      1.32    itojun 			    sizeof(config_filename));
    150       1.6     oster 			force = 0;
    151       1.1     oster 			num_options++;
    152       1.1     oster 			break;
    153       1.1     oster 		case 'C':
    154      1.32    itojun 			strlcpy(config_filename, optarg,
    155      1.32    itojun 			    sizeof(config_filename));
    156       1.6     oster 			action = RAIDFRAME_CONFIGURE;
    157       1.6     oster 			force = 1;
    158       1.1     oster 			num_options++;
    159       1.1     oster 			break;
    160       1.1     oster 		case 'f':
    161       1.1     oster 			action = RAIDFRAME_FAIL_DISK;
    162      1.32    itojun 			strlcpy(component, optarg, sizeof(component));
    163       1.1     oster 			do_recon = 0;
    164       1.1     oster 			num_options++;
    165       1.1     oster 			break;
    166       1.1     oster 		case 'F':
    167       1.1     oster 			action = RAIDFRAME_FAIL_DISK;
    168      1.32    itojun 			strlcpy(component, optarg, sizeof(component));
    169       1.1     oster 			do_recon = 1;
    170       1.5     oster 			num_options++;
    171       1.5     oster 			break;
    172       1.5     oster 		case 'g':
    173       1.5     oster 			action = RAIDFRAME_GET_COMPONENT_LABEL;
    174      1.32    itojun 			strlcpy(component, optarg, sizeof(component));
    175      1.30    simonb 			openmode = O_RDONLY;
    176       1.5     oster 			num_options++;
    177       1.5     oster 			break;
    178      1.27     lukem 		case 'G':
    179      1.27     lukem 			action = RAIDFRAME_GET_INFO;
    180      1.30    simonb 			openmode = O_RDONLY;
    181      1.27     lukem 			do_output = 1;
    182      1.27     lukem 			num_options++;
    183      1.27     lukem 			break;
    184       1.6     oster 		case 'i':
    185       1.6     oster 			action = RAIDFRAME_REWRITEPARITY;
    186       1.6     oster 			num_options++;
    187       1.6     oster 			break;
    188       1.5     oster 		case 'I':
    189       1.5     oster 			action = RAIDFRAME_INIT_LABELS;
    190      1.59  christos 			serial_number = xstrtouint(optarg);
    191       1.5     oster 			num_options++;
    192       1.5     oster 			break;
    193      1.42       jld 		case 'm':
    194      1.42       jld 			action = RAIDFRAME_PARITYMAP_STATUS;
    195      1.42       jld 			openmode = O_RDONLY;
    196      1.42       jld 			num_options++;
    197      1.42       jld 			break;
    198      1.42       jld 		case 'M':
    199      1.42       jld 			action = RAIDFRAME_PARITYMAP_SET_DISABLE;
    200      1.42       jld 			parityconf = strdup(optarg);
    201      1.42       jld 			num_options++;
    202      1.58      manu 			/* XXXjld: should rf_pm_configure do the strtol()s? */
    203      1.42       jld 			i = 0;
    204      1.42       jld 			while (i < 3 && optind < argc &&
    205      1.42       jld 			    isdigit((int)argv[optind][0]))
    206      1.59  christos 				parityparams[i++] = xstrtouint(argv[optind++]);
    207      1.42       jld 			while (i < 3)
    208      1.42       jld 				parityparams[i++] = 0;
    209      1.42       jld 			break;
    210       1.6     oster 		case 'l':
    211       1.5     oster 			action = RAIDFRAME_SET_COMPONENT_LABEL;
    212      1.32    itojun 			strlcpy(component, optarg, sizeof(component));
    213       1.1     oster 			num_options++;
    214       1.1     oster 			break;
    215       1.1     oster 		case 'r':
    216       1.6     oster 			action = RAIDFRAME_REMOVE_HOT_SPARE;
    217      1.32    itojun 			strlcpy(component, optarg, sizeof(component));
    218       1.1     oster 			num_options++;
    219       1.1     oster 			break;
    220       1.1     oster 		case 'R':
    221      1.32    itojun 			strlcpy(component, optarg, sizeof(component));
    222       1.6     oster 			action = RAIDFRAME_REBUILD_IN_PLACE;
    223       1.1     oster 			num_options++;
    224       1.1     oster 			break;
    225       1.1     oster 		case 's':
    226       1.1     oster 			action = RAIDFRAME_GET_INFO;
    227      1.30    simonb 			openmode = O_RDONLY;
    228       1.1     oster 			num_options++;
    229       1.1     oster 			break;
    230       1.6     oster 		case 'S':
    231      1.19     oster 			action = RAIDFRAME_CHECK_RECON_STATUS_EXT;
    232      1.30    simonb 			openmode = O_RDONLY;
    233       1.6     oster 			num_options++;
    234       1.6     oster 			break;
    235       1.7     oster 		case 'p':
    236       1.7     oster 			action = RAIDFRAME_CHECK_PARITY;
    237      1.30    simonb 			openmode = O_RDONLY;
    238       1.7     oster 			num_options++;
    239       1.7     oster 			break;
    240       1.7     oster 		case 'P':
    241       1.7     oster 			action = RAIDFRAME_CHECK_PARITY;
    242       1.7     oster 			do_rewrite = 1;
    243       1.7     oster 			num_options++;
    244       1.7     oster 			break;
    245       1.1     oster 		case 'u':
    246       1.1     oster 			action = RAIDFRAME_SHUTDOWN;
    247       1.1     oster 			num_options++;
    248       1.1     oster 			break;
    249      1.64  christos 		case 'U':
    250      1.64  christos 			action = RAIDFRAME_SET_LAST_UNIT;
    251      1.64  christos 			num_options++;
    252      1.64  christos 			last_unit = atoi(optarg);
    253      1.64  christos 			if (last_unit < 0)
    254      1.64  christos 				errx(1, "Bad last unit %s", optarg);
    255      1.64  christos 			break;
    256      1.10     oster 		case 'v':
    257      1.10     oster 			verbose = 1;
    258      1.10     oster 			/* Don't bump num_options, as '-v' is not
    259      1.10     oster 			   an option like the others */
    260      1.10     oster 			/* num_options++; */
    261      1.10     oster 			break;
    262       1.1     oster 		default:
    263       1.1     oster 			usage();
    264       1.1     oster 		}
    265       1.1     oster 	argc -= optind;
    266       1.1     oster 	argv += optind;
    267       1.1     oster 
    268      1.34      fvdl 	if ((num_options > 1) || (argc == 0))
    269       1.1     oster 		usage();
    270       1.1     oster 
    271      1.50     pooka 	if (prog_init && prog_init() == -1)
    272      1.50     pooka 		err(1, "init failed");
    273      1.50     pooka 
    274      1.32    itojun 	strlcpy(name, argv[0], sizeof(name));
    275      1.41     pooka 	fd = opendisk1(name, openmode, dev_name, sizeof(dev_name), 0,
    276      1.50     pooka 	    prog_open);
    277      1.45  christos 	if (fd == -1)
    278      1.45  christos 		err(1, "Unable to open device file: %s", name);
    279      1.51     pooka 	if (prog_fstat(fd, &st) == -1)
    280      1.45  christos 		err(1, "stat failure on: %s", dev_name);
    281      1.45  christos 	if (!S_ISBLK(st.st_mode) && !S_ISCHR(st.st_mode))
    282      1.45  christos 		err(1, "invalid device: %s", dev_name);
    283       1.1     oster 
    284      1.28     oster 	raidID = DISKUNIT(st.st_rdev);
    285       1.1     oster 
    286       1.1     oster 	switch(action) {
    287       1.5     oster 	case RAIDFRAME_ADD_HOT_SPARE:
    288      1.12     oster 		add_hot_spare(fd, component);
    289       1.5     oster 		break;
    290       1.6     oster 	case RAIDFRAME_REMOVE_HOT_SPARE:
    291      1.12     oster 		remove_hot_spare(fd, component);
    292       1.6     oster 		break;
    293       1.1     oster 	case RAIDFRAME_CONFIGURE:
    294      1.12     oster 		rf_configure(fd, config_filename, force);
    295      1.12     oster 		break;
    296      1.12     oster 	case RAIDFRAME_SET_AUTOCONFIG:
    297      1.12     oster 		set_autoconfig(fd, raidID, autoconf);
    298       1.1     oster 		break;
    299       1.1     oster 	case RAIDFRAME_COPYBACK:
    300       1.1     oster 		printf("Copyback.\n");
    301       1.1     oster 		do_ioctl(fd, RAIDFRAME_COPYBACK, NULL, "RAIDFRAME_COPYBACK");
    302      1.10     oster 		if (verbose) {
    303      1.10     oster 			sleep(3); /* XXX give the copyback a chance to start */
    304      1.10     oster 			printf("Copyback status:\n");
    305      1.19     oster 			do_meter(fd,RAIDFRAME_CHECK_COPYBACK_STATUS_EXT);
    306      1.10     oster 		}
    307       1.1     oster 		break;
    308       1.1     oster 	case RAIDFRAME_FAIL_DISK:
    309      1.12     oster 		rf_fail_disk(fd, component, do_recon);
    310       1.5     oster 		break;
    311       1.5     oster 	case RAIDFRAME_SET_COMPONENT_LABEL:
    312      1.12     oster 		set_component_label(fd, component);
    313       1.5     oster 		break;
    314       1.5     oster 	case RAIDFRAME_GET_COMPONENT_LABEL:
    315      1.12     oster 		get_component_label(fd, component);
    316       1.5     oster 		break;
    317       1.5     oster 	case RAIDFRAME_INIT_LABELS:
    318      1.12     oster 		init_component_labels(fd, serial_number);
    319       1.1     oster 		break;
    320       1.1     oster 	case RAIDFRAME_REWRITEPARITY:
    321       1.1     oster 		printf("Initiating re-write of parity\n");
    322       1.1     oster 		do_ioctl(fd, RAIDFRAME_REWRITEPARITY, NULL,
    323       1.1     oster 			 "RAIDFRAME_REWRITEPARITY");
    324      1.10     oster 		if (verbose) {
    325      1.10     oster 			sleep(3); /* XXX give it time to get started */
    326      1.10     oster 			printf("Parity Re-write status:\n");
    327      1.19     oster 			do_meter(fd, RAIDFRAME_CHECK_PARITYREWRITE_STATUS_EXT);
    328      1.10     oster 		}
    329       1.1     oster 		break;
    330      1.19     oster 	case RAIDFRAME_CHECK_RECON_STATUS_EXT:
    331      1.14     oster 		check_status(fd,1);
    332       1.1     oster 		break;
    333       1.1     oster 	case RAIDFRAME_GET_INFO:
    334      1.27     lukem 		if (do_output)
    335      1.27     lukem 			rf_output_configuration(fd, dev_name);
    336      1.27     lukem 		else
    337      1.27     lukem 			rf_get_device_status(fd);
    338       1.1     oster 		break;
    339      1.42       jld 	case RAIDFRAME_PARITYMAP_STATUS:
    340      1.42       jld 		rf_output_pmstat(fd, raidID);
    341      1.42       jld 		break;
    342      1.42       jld 	case RAIDFRAME_PARITYMAP_SET_DISABLE:
    343      1.42       jld 		rf_pm_configure(fd, raidID, parityconf, parityparams);
    344      1.42       jld 		break;
    345       1.6     oster 	case RAIDFRAME_REBUILD_IN_PLACE:
    346      1.12     oster 		rebuild_in_place(fd, component);
    347       1.6     oster 		break;
    348       1.7     oster 	case RAIDFRAME_CHECK_PARITY:
    349      1.12     oster 		check_parity(fd, do_rewrite, dev_name);
    350       1.7     oster 		break;
    351       1.1     oster 	case RAIDFRAME_SHUTDOWN:
    352       1.1     oster 		do_ioctl(fd, RAIDFRAME_SHUTDOWN, NULL, "RAIDFRAME_SHUTDOWN");
    353       1.1     oster 		break;
    354      1.64  christos 	case RAIDFRAME_SET_LAST_UNIT:
    355      1.64  christos 		do_ioctl(fd, RAIDFRAME_SET_LAST_UNIT, &last_unit,
    356      1.64  christos 		    "RAIDFRAME_SET_LAST_UNIT");
    357      1.64  christos 		break;
    358       1.1     oster 	default:
    359       1.1     oster 		break;
    360       1.1     oster 	}
    361       1.1     oster 
    362      1.50     pooka 	prog_close(fd);
    363       1.1     oster 	exit(0);
    364       1.1     oster }
    365       1.1     oster 
    366      1.10     oster void
    367      1.36   xtraeme do_ioctl(int fd, unsigned long command, void *arg, const char *ioctl_name)
    368       1.1     oster {
    369      1.50     pooka 	if (prog_ioctl(fd, command, arg) == -1)
    370      1.45  christos 		err(1, "ioctl (%s) failed", ioctl_name);
    371       1.1     oster }
    372       1.1     oster 
    373       1.1     oster 
    374       1.1     oster static void
    375      1.36   xtraeme rf_configure(int fd, char *config_file, int force)
    376       1.1     oster {
    377       1.1     oster 	void *generic;
    378       1.1     oster 	RF_Config_t cfg;
    379       1.1     oster 
    380      1.45  christos 	if (rf_MakeConfig( config_file, &cfg ) != 0)
    381      1.45  christos 		err(1, "Unable to create RAIDframe configuration structure");
    382       1.1     oster 
    383       1.6     oster 	cfg.force = force;
    384       1.6     oster 
    385       1.1     oster 	/*
    386      1.18   thorpej 	 * Note the extra level of redirection needed here, since
    387      1.18   thorpej 	 * what we really want to pass in is a pointer to the pointer to
    388      1.18   thorpej 	 * the configuration structure.
    389       1.1     oster 	 */
    390       1.1     oster 
    391      1.45  christos 	generic = &cfg;
    392       1.6     oster 	do_ioctl(fd, RAIDFRAME_CONFIGURE, &generic, "RAIDFRAME_CONFIGURE");
    393       1.1     oster }
    394       1.1     oster 
    395      1.18   thorpej static const char *
    396      1.36   xtraeme device_status(RF_DiskStatus_t status)
    397       1.1     oster {
    398       1.1     oster 
    399       1.1     oster 	switch (status) {
    400       1.1     oster 	case rf_ds_optimal:
    401      1.18   thorpej 		return ("optimal");
    402       1.1     oster 		break;
    403       1.1     oster 	case rf_ds_failed:
    404      1.18   thorpej 		return ("failed");
    405       1.1     oster 		break;
    406       1.1     oster 	case rf_ds_reconstructing:
    407      1.18   thorpej 		return ("reconstructing");
    408       1.1     oster 		break;
    409       1.1     oster 	case rf_ds_dist_spared:
    410      1.18   thorpej 		return ("dist_spared");
    411       1.1     oster 		break;
    412       1.1     oster 	case rf_ds_spared:
    413      1.18   thorpej 		return ("spared");
    414       1.1     oster 		break;
    415       1.1     oster 	case rf_ds_spare:
    416      1.18   thorpej 		return ("spare");
    417       1.1     oster 		break;
    418       1.1     oster 	case rf_ds_used_spare:
    419      1.18   thorpej 		return ("used_spare");
    420       1.1     oster 		break;
    421       1.1     oster 	default:
    422      1.18   thorpej 		return ("UNKNOWN");
    423       1.1     oster 	}
    424      1.18   thorpej 	/* NOTREACHED */
    425       1.1     oster }
    426       1.1     oster 
    427       1.1     oster static void
    428      1.36   xtraeme rf_get_device_status(int fd)
    429       1.1     oster {
    430       1.1     oster 	RF_DeviceConfig_t device_config;
    431       1.1     oster 	void *cfg_ptr;
    432       1.8     oster 	int is_clean;
    433       1.1     oster 	int i;
    434       1.1     oster 
    435       1.1     oster 	cfg_ptr = &device_config;
    436       1.1     oster 
    437       1.1     oster 	do_ioctl(fd, RAIDFRAME_GET_INFO, &cfg_ptr, "RAIDFRAME_GET_INFO");
    438       1.1     oster 
    439       1.1     oster 	printf("Components:\n");
    440       1.1     oster 	for(i=0; i < device_config.ndevs; i++) {
    441       1.1     oster 		printf("%20s: %s\n", device_config.devs[i].devname,
    442       1.1     oster 		       device_status(device_config.devs[i].status));
    443       1.1     oster 	}
    444       1.1     oster 	if (device_config.nspares > 0) {
    445       1.1     oster 		printf("Spares:\n");
    446       1.1     oster 		for(i=0; i < device_config.nspares; i++) {
    447       1.5     oster 			printf("%20s: %s\n",
    448       1.1     oster 			       device_config.spares[i].devname,
    449       1.1     oster 			       device_status(device_config.spares[i].status));
    450       1.1     oster 		}
    451       1.1     oster 	} else {
    452       1.1     oster 		printf("No spares.\n");
    453       1.8     oster 	}
    454      1.14     oster 	for(i=0; i < device_config.ndevs; i++) {
    455      1.14     oster 		if (device_config.devs[i].status == rf_ds_optimal) {
    456      1.14     oster 			get_component_label(fd, device_config.devs[i].devname);
    457      1.14     oster 		} else {
    458      1.14     oster 			printf("%s status is: %s.  Skipping label.\n",
    459      1.14     oster 			       device_config.devs[i].devname,
    460      1.14     oster 			       device_status(device_config.devs[i].status));
    461      1.14     oster 		}
    462      1.14     oster 	}
    463      1.23     oster 
    464      1.21     oster 	if (device_config.nspares > 0) {
    465      1.21     oster 		for(i=0; i < device_config.nspares; i++) {
    466      1.21     oster 			if ((device_config.spares[i].status ==
    467      1.21     oster 			     rf_ds_optimal) ||
    468      1.21     oster 			    (device_config.spares[i].status ==
    469      1.21     oster 			     rf_ds_used_spare)) {
    470      1.21     oster 				get_component_label(fd,
    471      1.21     oster 					    device_config.spares[i].devname);
    472      1.21     oster 			} else {
    473      1.21     oster 				printf("%s status is: %s.  Skipping label.\n",
    474      1.21     oster 				       device_config.spares[i].devname,
    475      1.21     oster 				       device_status(device_config.spares[i].status));
    476      1.21     oster 			}
    477      1.21     oster 		}
    478      1.21     oster 	}
    479      1.23     oster 
    480       1.8     oster 	do_ioctl(fd, RAIDFRAME_CHECK_PARITY, &is_clean,
    481       1.8     oster 		 "RAIDFRAME_CHECK_PARITY");
    482       1.8     oster 	if (is_clean) {
    483       1.8     oster 		printf("Parity status: clean\n");
    484       1.8     oster 	} else {
    485       1.8     oster 		printf("Parity status: DIRTY\n");
    486       1.1     oster 	}
    487      1.14     oster 	check_status(fd,0);
    488       1.1     oster }
    489       1.1     oster 
    490       1.1     oster static void
    491      1.42       jld rf_output_pmstat(int fd, int raidID)
    492      1.42       jld {
    493      1.42       jld 	char srs[7];
    494      1.47    plunky 	unsigned int i, j;
    495      1.47    plunky 	int dis, dr;
    496      1.42       jld 	struct rf_pmstat st;
    497      1.42       jld 
    498      1.50     pooka 	if (prog_ioctl(fd, RAIDFRAME_PARITYMAP_STATUS, &st) == -1) {
    499      1.48       jld 		if (errno == EINVAL) {
    500      1.48       jld 			printf("raid%d: has no parity; parity map disabled\n",
    501      1.48       jld 				raidID);
    502      1.48       jld 			return;
    503      1.48       jld 		}
    504      1.48       jld 		err(1, "ioctl (%s) failed", "RAIDFRAME_PARITYMAP_STATUS");
    505      1.48       jld 	}
    506      1.48       jld 
    507      1.42       jld 	if (st.enabled) {
    508      1.42       jld 		if (0 > humanize_number(srs, 7, st.region_size * DEV_BSIZE,
    509      1.42       jld 			"B", HN_AUTOSCALE, HN_NOSPACE))
    510      1.42       jld 			strlcpy(srs, "???", 7);
    511      1.42       jld 
    512      1.42       jld 		printf("raid%d: parity map enabled with %u regions of %s\n",
    513      1.42       jld 		    raidID, st.params.regions, srs);
    514      1.43       jld 		printf("raid%d: regions marked clean after %d intervals of"
    515      1.42       jld 		    " %d.%03ds\n", raidID, st.params.cooldown,
    516      1.42       jld 		    st.params.tickms / 1000, st.params.tickms % 1000);
    517      1.42       jld 		printf("raid%d: write/sync/clean counters "
    518      1.42       jld 		    "%"PRIu64"/%"PRIu64"/%"PRIu64"\n", raidID,
    519      1.42       jld 		    st.ctrs.nwrite, st.ctrs.ncachesync, st.ctrs.nclearing);
    520      1.42       jld 
    521      1.42       jld 		dr = 0;
    522      1.46       jld 		for (i = 0; i < st.params.regions; i++)
    523      1.42       jld 			if (isset(st.dirty, i))
    524      1.42       jld 				dr++;
    525      1.42       jld 		printf("raid%d: %d dirty region%s\n", raidID, dr,
    526      1.42       jld 		    dr == 1 ? "" : "s");
    527      1.42       jld 
    528      1.42       jld 		if (verbose > 0) {
    529      1.42       jld 			for (i = 0; i < RF_PARITYMAP_NBYTE; i += 32) {
    530      1.42       jld 				printf("    ");
    531      1.42       jld 				for (j = i; j < RF_PARITYMAP_NBYTE
    532      1.42       jld 					 && j < i + 32; j++)
    533      1.42       jld 					printf("%x%x", st.dirty[j] & 15,
    534      1.42       jld 					    (st.dirty[j] >> 4) & 15);
    535      1.42       jld 				printf("\n");
    536      1.42       jld 			}
    537      1.42       jld 		}
    538      1.42       jld 	} else {
    539      1.42       jld 		printf("raid%d: parity map disabled\n", raidID);
    540      1.42       jld 	}
    541      1.42       jld 
    542      1.42       jld 	do_ioctl(fd, RAIDFRAME_PARITYMAP_GET_DISABLE, &dis,
    543      1.42       jld 	    "RAIDFRAME_PARITYMAP_GET_DISABLE");
    544      1.42       jld 	printf("raid%d: parity map will %s %sabled on next configure\n",
    545      1.42       jld 	    raidID, dis == st.enabled ? "be" : "remain", dis ? "dis" : "en");
    546      1.42       jld }
    547      1.42       jld 
    548      1.42       jld static void
    549      1.42       jld rf_pm_configure(int fd, int raidID, char *parityconf, int parityparams[])
    550      1.42       jld {
    551      1.42       jld 	int dis;
    552      1.42       jld 	struct rf_pmparams params;
    553      1.42       jld 
    554      1.42       jld 	if (strcasecmp(parityconf, "yes") == 0)
    555      1.42       jld 		dis = 0;
    556      1.42       jld 	else if (strcasecmp(parityconf, "no") == 0)
    557      1.42       jld 		dis = 1;
    558      1.42       jld 	else if (strcasecmp(parityconf, "set") == 0) {
    559      1.42       jld 		params.cooldown = parityparams[0];
    560      1.42       jld 		params.tickms = parityparams[1];
    561      1.42       jld 		params.regions = parityparams[2];
    562      1.42       jld 
    563      1.42       jld 		do_ioctl(fd, RAIDFRAME_PARITYMAP_SET_PARAMS, &params,
    564      1.42       jld 		    "RAIDFRAME_PARITYMAP_SET_PARAMS");
    565      1.42       jld 
    566      1.42       jld 		if (params.cooldown != 0 || params.tickms != 0) {
    567      1.42       jld 			printf("raid%d: parity cleaned after", raidID);
    568      1.42       jld 			if (params.cooldown != 0)
    569      1.42       jld 				printf(" %d", params.cooldown);
    570      1.42       jld 			printf(" intervals");
    571      1.42       jld 			if (params.tickms != 0) {
    572      1.42       jld 				printf(" of %d.%03ds", params.tickms / 1000,
    573      1.42       jld 				    params.tickms % 1000);
    574      1.42       jld 			}
    575      1.42       jld 			printf("\n");
    576      1.42       jld 		}
    577      1.42       jld 		if (params.regions != 0)
    578      1.42       jld 			printf("raid%d: will use %d regions on next"
    579      1.42       jld 			    " configuration\n", raidID, params.regions);
    580      1.42       jld 
    581      1.42       jld 		return;
    582      1.42       jld 		/* XXX the control flow here could be prettier. */
    583      1.45  christos 	} else
    584      1.45  christos 		err(1, "`%s' is not a valid parity map command", parityconf);
    585      1.42       jld 
    586      1.42       jld 	do_ioctl(fd, RAIDFRAME_PARITYMAP_SET_DISABLE, &dis,
    587      1.42       jld 	    "RAIDFRAME_PARITYMAP_SET_DISABLE");
    588      1.42       jld 	printf("raid%d: parity map will be %sabled on next configure\n",
    589      1.42       jld 	    raidID, dis ? "dis" : "en");
    590      1.42       jld }
    591      1.42       jld 
    592      1.62       mrg /* convert "component0" into "absent" */
    593      1.63       bad static const char *rf_output_devname(const char *name)
    594      1.62       mrg {
    595      1.62       mrg 
    596      1.63       bad 	if (strncmp(name, "component", 9) == 0)
    597      1.62       mrg 		return "absent";
    598      1.63       bad 	return name;
    599      1.62       mrg }
    600      1.42       jld 
    601      1.42       jld static void
    602      1.36   xtraeme rf_output_configuration(int fd, const char *name)
    603      1.27     lukem {
    604      1.27     lukem 	RF_DeviceConfig_t device_config;
    605      1.27     lukem 	void *cfg_ptr;
    606      1.27     lukem 	int i;
    607      1.27     lukem 	RF_ComponentLabel_t component_label;
    608      1.27     lukem 	void *label_ptr;
    609      1.27     lukem 	int component_num;
    610      1.27     lukem 	int num_cols;
    611      1.27     lukem 
    612      1.27     lukem 	cfg_ptr = &device_config;
    613      1.27     lukem 
    614      1.27     lukem 	printf("# raidctl config file for %s\n", name);
    615      1.27     lukem 	printf("\n");
    616      1.27     lukem 	do_ioctl(fd, RAIDFRAME_GET_INFO, &cfg_ptr, "RAIDFRAME_GET_INFO");
    617      1.27     lukem 
    618      1.66       mrg 	/*
    619      1.66       mrg 	 * After NetBSD 9, convert this to not output the numRow's value,
    620      1.66       mrg 	 * which is no longer required or ever used.
    621      1.66       mrg 	 */
    622      1.27     lukem 	printf("START array\n");
    623      1.27     lukem 	printf("# numRow numCol numSpare\n");
    624      1.66       mrg 	printf("%d %d %d\n", 1, device_config.cols,
    625      1.27     lukem 	    device_config.nspares);
    626      1.27     lukem 	printf("\n");
    627      1.27     lukem 
    628      1.27     lukem 	printf("START disks\n");
    629      1.27     lukem 	for(i=0; i < device_config.ndevs; i++)
    630      1.62       mrg 		printf("%s\n",
    631      1.62       mrg 		    rf_output_devname(device_config.devs[i].devname));
    632      1.27     lukem 	printf("\n");
    633      1.27     lukem 
    634      1.27     lukem 	if (device_config.nspares > 0) {
    635      1.27     lukem 		printf("START spare\n");
    636      1.27     lukem 		for(i=0; i < device_config.nspares; i++)
    637      1.27     lukem 			printf("%s\n", device_config.spares[i].devname);
    638      1.27     lukem 		printf("\n");
    639      1.27     lukem 	}
    640      1.27     lukem 
    641      1.27     lukem 	for(i=0; i < device_config.ndevs; i++) {
    642      1.27     lukem 		if (device_config.devs[i].status == rf_ds_optimal)
    643      1.27     lukem 			break;
    644      1.27     lukem 	}
    645      1.27     lukem 	if (i == device_config.ndevs) {
    646      1.27     lukem 		printf("# WARNING: no optimal components; using %s\n",
    647      1.27     lukem 		    device_config.devs[0].devname);
    648      1.27     lukem 		i = 0;
    649      1.27     lukem 	}
    650      1.27     lukem 	get_component_number(fd, device_config.devs[i].devname,
    651      1.27     lukem 	    &component_num, &num_cols);
    652      1.27     lukem 	memset(&component_label, 0, sizeof(RF_ComponentLabel_t));
    653      1.27     lukem 	component_label.row = component_num / num_cols;
    654      1.27     lukem 	component_label.column = component_num % num_cols;
    655      1.27     lukem 	label_ptr = &component_label;
    656  1.66.2.1  pgoyette 	do_ioctl(fd, RAIDFRAME_GET_COMPONENT_LABEL, label_ptr,
    657      1.27     lukem 		  "RAIDFRAME_GET_COMPONENT_LABEL");
    658      1.27     lukem 
    659      1.27     lukem 	printf("START layout\n");
    660      1.27     lukem 	printf(
    661      1.27     lukem 	    "# sectPerSU SUsPerParityUnit SUsPerReconUnit RAID_level_%c\n",
    662      1.27     lukem 	    (char) component_label.parityConfig);
    663      1.27     lukem 	printf("%d %d %d %c\n",
    664      1.27     lukem 	    component_label.sectPerSU, component_label.SUsPerPU,
    665      1.27     lukem 	    component_label.SUsPerRU, (char) component_label.parityConfig);
    666      1.27     lukem 	printf("\n");
    667      1.27     lukem 
    668      1.27     lukem 	printf("START queue\n");
    669      1.27     lukem 	printf("fifo %d\n", device_config.maxqdepth);
    670      1.27     lukem }
    671      1.27     lukem 
    672      1.27     lukem static void
    673      1.36   xtraeme get_component_number(int fd, char *component_name, int *component_number,
    674      1.36   xtraeme 		     int *num_columns)
    675       1.1     oster {
    676       1.1     oster 	RF_DeviceConfig_t device_config;
    677       1.1     oster 	void *cfg_ptr;
    678       1.1     oster 	int i;
    679       1.1     oster 	int found;
    680       1.1     oster 
    681       1.6     oster 	*component_number = -1;
    682       1.1     oster 
    683       1.1     oster 	/* Assuming a full path spec... */
    684       1.1     oster 	cfg_ptr = &device_config;
    685       1.1     oster 	do_ioctl(fd, RAIDFRAME_GET_INFO, &cfg_ptr,
    686       1.1     oster 		 "RAIDFRAME_GET_INFO");
    687       1.6     oster 
    688       1.6     oster 	*num_columns = device_config.cols;
    689       1.6     oster 
    690       1.1     oster 	found = 0;
    691       1.1     oster 	for(i=0; i < device_config.ndevs; i++) {
    692       1.6     oster 		if (strncmp(component_name, device_config.devs[i].devname,
    693       1.1     oster 			    PATH_MAX)==0) {
    694       1.1     oster 			found = 1;
    695       1.6     oster 			*component_number = i;
    696       1.1     oster 		}
    697       1.1     oster 	}
    698      1.21     oster 	if (!found) { /* maybe it's a spare? */
    699      1.21     oster 		for(i=0; i < device_config.nspares; i++) {
    700      1.21     oster 			if (strncmp(component_name,
    701      1.21     oster 				    device_config.spares[i].devname,
    702      1.21     oster 				    PATH_MAX)==0) {
    703      1.21     oster 				found = 1;
    704      1.21     oster 				*component_number = i + device_config.ndevs;
    705      1.23     oster 				/* the way spares are done should
    706      1.23     oster 				   really change... */
    707      1.23     oster 				*num_columns = device_config.cols +
    708      1.23     oster 					device_config.nspares;
    709      1.21     oster 			}
    710      1.21     oster 		}
    711      1.21     oster 	}
    712      1.21     oster 
    713      1.45  christos 	if (!found)
    714      1.45  christos 		err(1,"%s is not a component of this device", component_name);
    715       1.6     oster }
    716       1.6     oster 
    717       1.6     oster static void
    718      1.36   xtraeme rf_fail_disk(int fd, char *component_to_fail, int do_recon)
    719       1.6     oster {
    720       1.6     oster 	struct rf_recon_req recon_request;
    721       1.6     oster 	int component_num;
    722       1.6     oster 	int num_cols;
    723       1.6     oster 
    724       1.6     oster 	get_component_number(fd, component_to_fail, &component_num, &num_cols);
    725       1.1     oster 
    726       1.6     oster 	recon_request.col = component_num % num_cols;
    727       1.1     oster 	if (do_recon) {
    728       1.1     oster 		recon_request.flags = RF_FDFLAGS_RECON;
    729       1.1     oster 	} else {
    730       1.1     oster 		recon_request.flags = RF_FDFLAGS_NONE;
    731       1.1     oster 	}
    732       1.1     oster 	do_ioctl(fd, RAIDFRAME_FAIL_DISK, &recon_request,
    733       1.1     oster 		 "RAIDFRAME_FAIL_DISK");
    734      1.10     oster 	if (do_recon && verbose) {
    735      1.10     oster 		printf("Reconstruction status:\n");
    736      1.10     oster 		sleep(3); /* XXX give reconstruction a chance to start */
    737      1.19     oster 		do_meter(fd,RAIDFRAME_CHECK_RECON_STATUS_EXT);
    738      1.10     oster 	}
    739       1.1     oster }
    740       1.1     oster 
    741       1.1     oster static void
    742      1.36   xtraeme get_component_label(int fd, char *component)
    743       1.5     oster {
    744       1.5     oster 	RF_ComponentLabel_t component_label;
    745       1.5     oster 	void *label_ptr;
    746       1.5     oster 	int component_num;
    747       1.6     oster 	int num_cols;
    748       1.5     oster 
    749       1.6     oster 	get_component_number(fd, component, &component_num, &num_cols);
    750       1.5     oster 
    751       1.5     oster 	memset( &component_label, 0, sizeof(RF_ComponentLabel_t));
    752       1.6     oster 	component_label.row = component_num / num_cols;
    753       1.6     oster 	component_label.column = component_num % num_cols;
    754       1.5     oster 
    755       1.5     oster 	label_ptr = &component_label;
    756  1.66.2.1  pgoyette 	do_ioctl( fd, RAIDFRAME_GET_COMPONENT_LABEL, label_ptr,
    757       1.5     oster 		  "RAIDFRAME_GET_COMPONENT_LABEL");
    758       1.5     oster 
    759       1.5     oster 	printf("Component label for %s:\n",component);
    760      1.12     oster 
    761      1.25     lukem 	printf("   Row: %d, Column: %d, Num Rows: %d, Num Columns: %d\n",
    762      1.12     oster 	       component_label.row, component_label.column,
    763      1.12     oster 	       component_label.num_rows, component_label.num_columns);
    764      1.54       mrg 	printf("   Version: %d, Serial Number: %u, Mod Counter: %d\n",
    765      1.12     oster 	       component_label.version, component_label.serial_number,
    766      1.12     oster 	       component_label.mod_counter);
    767      1.25     lukem 	printf("   Clean: %s, Status: %d\n",
    768      1.12     oster 	       component_label.clean ? "Yes" : "No",
    769      1.12     oster 	       component_label.status );
    770      1.25     lukem 	printf("   sectPerSU: %d, SUsPerPU: %d, SUsPerRU: %d\n",
    771      1.12     oster 	       component_label.sectPerSU, component_label.SUsPerPU,
    772      1.12     oster 	       component_label.SUsPerRU);
    773      1.52     enami 	printf("   Queue size: %d, blocksize: %d, numBlocks: %"PRIu64"\n",
    774      1.25     lukem 	       component_label.maxOutstanding, component_label.blockSize,
    775      1.52     enami 	       rf_component_label_numblocks(&component_label));
    776      1.25     lukem 	printf("   RAID Level: %c\n", (char) component_label.parityConfig);
    777      1.12     oster 	printf("   Autoconfig: %s\n",
    778      1.12     oster 	       component_label.autoconfigure ? "Yes" : "No" );
    779      1.15     oster 	printf("   Root partition: %s\n",
    780      1.57  christos 	       rootpart[component_label.root_partition & 3]);
    781      1.12     oster 	printf("   Last configured as: raid%d\n", component_label.last_unit );
    782       1.5     oster }
    783       1.5     oster 
    784       1.5     oster static void
    785      1.36   xtraeme set_component_label(int fd, char *component)
    786       1.5     oster {
    787       1.5     oster 	RF_ComponentLabel_t component_label;
    788       1.5     oster 	int component_num;
    789       1.6     oster 	int num_cols;
    790       1.5     oster 
    791       1.6     oster 	get_component_number(fd, component, &component_num, &num_cols);
    792       1.6     oster 
    793       1.6     oster 	/* XXX This is currently here for testing, and future expandability */
    794       1.5     oster 
    795       1.5     oster 	component_label.version = 1;
    796       1.5     oster 	component_label.serial_number = 123456;
    797       1.5     oster 	component_label.mod_counter = 0;
    798       1.6     oster 	component_label.row = component_num / num_cols;
    799       1.6     oster 	component_label.column = component_num % num_cols;
    800       1.5     oster 	component_label.num_rows = 0;
    801       1.5     oster 	component_label.num_columns = 5;
    802       1.5     oster 	component_label.clean = 0;
    803       1.5     oster 	component_label.status = 1;
    804       1.5     oster 
    805       1.5     oster 	do_ioctl( fd, RAIDFRAME_SET_COMPONENT_LABEL, &component_label,
    806       1.5     oster 		  "RAIDFRAME_SET_COMPONENT_LABEL");
    807       1.5     oster }
    808       1.5     oster 
    809       1.5     oster 
    810       1.5     oster static void
    811      1.36   xtraeme init_component_labels(int fd, int serial_number)
    812       1.5     oster {
    813       1.5     oster 	RF_ComponentLabel_t component_label;
    814       1.5     oster 
    815       1.5     oster 	component_label.version = 0;
    816       1.5     oster 	component_label.serial_number = serial_number;
    817       1.5     oster 	component_label.mod_counter = 0;
    818       1.5     oster 	component_label.row = 0;
    819       1.5     oster 	component_label.column = 0;
    820       1.5     oster 	component_label.num_rows = 0;
    821       1.5     oster 	component_label.num_columns = 0;
    822       1.5     oster 	component_label.clean = 0;
    823       1.5     oster 	component_label.status = 0;
    824       1.5     oster 
    825       1.5     oster 	do_ioctl( fd, RAIDFRAME_INIT_LABELS, &component_label,
    826       1.5     oster 		  "RAIDFRAME_SET_COMPONENT_LABEL");
    827      1.12     oster }
    828      1.12     oster 
    829      1.12     oster static void
    830      1.36   xtraeme set_autoconfig(int fd, int raidID, char *autoconf)
    831      1.12     oster {
    832      1.12     oster 	int auto_config;
    833      1.12     oster 	int root_config;
    834      1.12     oster 
    835      1.12     oster 	auto_config = 0;
    836      1.12     oster 	root_config = 0;
    837      1.12     oster 
    838      1.57  christos 	if (strncasecmp(autoconf, "root", 4) == 0 ||
    839      1.57  christos 	    strncasecmp(autoconf, "hard", 4) == 0 ||
    840      1.61  sborrill 	    strncasecmp(autoconf, "force", 5) == 0) {
    841      1.12     oster 		root_config = 1;
    842      1.57  christos 	} else if (strncasecmp(autoconf, "soft", 4) == 0) {
    843      1.57  christos 		root_config = 2;
    844      1.12     oster 	}
    845      1.12     oster 
    846      1.12     oster 	if ((strncasecmp(autoconf,"yes", 3) == 0) ||
    847      1.57  christos 	    root_config > 0) {
    848      1.12     oster 		auto_config = 1;
    849      1.12     oster 	}
    850      1.12     oster 
    851      1.12     oster 	do_ioctl(fd, RAIDFRAME_SET_AUTOCONFIG, &auto_config,
    852      1.12     oster 		 "RAIDFRAME_SET_AUTOCONFIG");
    853      1.12     oster 
    854      1.12     oster 	do_ioctl(fd, RAIDFRAME_SET_ROOT, &root_config,
    855      1.12     oster 		 "RAIDFRAME_SET_ROOT");
    856      1.12     oster 
    857      1.12     oster 	printf("raid%d: Autoconfigure: %s\n", raidID,
    858      1.12     oster 	       auto_config ? "Yes" : "No");
    859      1.12     oster 
    860      1.57  christos 	if (auto_config == 1) {
    861      1.57  christos 		printf("raid%d: Root: %s\n", raidID, rootpart[root_config]);
    862      1.12     oster 	}
    863       1.5     oster }
    864       1.5     oster 
    865       1.5     oster static void
    866      1.36   xtraeme add_hot_spare(int fd, char *component)
    867       1.5     oster {
    868       1.6     oster 	RF_SingleComponent_t hot_spare;
    869       1.5     oster 
    870       1.6     oster 	hot_spare.row = 0;
    871       1.6     oster 	hot_spare.column = 0;
    872       1.6     oster 	strncpy(hot_spare.component_name, component,
    873       1.6     oster 		sizeof(hot_spare.component_name));
    874       1.5     oster 
    875       1.5     oster 	do_ioctl( fd, RAIDFRAME_ADD_HOT_SPARE, &hot_spare,
    876       1.5     oster 		  "RAIDFRAME_ADD_HOT_SPARE");
    877       1.6     oster }
    878       1.6     oster 
    879       1.6     oster static void
    880      1.36   xtraeme remove_hot_spare(int fd, char *component)
    881       1.6     oster {
    882       1.6     oster 	RF_SingleComponent_t hot_spare;
    883       1.6     oster 	int component_num;
    884       1.6     oster 	int num_cols;
    885       1.5     oster 
    886       1.6     oster 	get_component_number(fd, component, &component_num, &num_cols);
    887       1.6     oster 
    888       1.6     oster 	hot_spare.row = component_num / num_cols;
    889       1.6     oster 	hot_spare.column = component_num % num_cols;
    890       1.6     oster 
    891       1.6     oster 	strncpy(hot_spare.component_name, component,
    892       1.6     oster 		sizeof(hot_spare.component_name));
    893       1.6     oster 
    894       1.6     oster 	do_ioctl( fd, RAIDFRAME_REMOVE_HOT_SPARE, &hot_spare,
    895       1.6     oster 		  "RAIDFRAME_REMOVE_HOT_SPARE");
    896       1.6     oster }
    897       1.6     oster 
    898       1.6     oster static void
    899      1.36   xtraeme rebuild_in_place(int fd, char *component)
    900       1.6     oster {
    901       1.6     oster 	RF_SingleComponent_t comp;
    902       1.6     oster 	int component_num;
    903       1.6     oster 	int num_cols;
    904       1.6     oster 
    905       1.6     oster 	get_component_number(fd, component, &component_num, &num_cols);
    906       1.6     oster 
    907       1.6     oster 	comp.row = 0;
    908       1.6     oster 	comp.column = component_num;
    909       1.6     oster 	strncpy(comp.component_name, component, sizeof(comp.component_name));
    910       1.6     oster 
    911       1.6     oster 	do_ioctl( fd, RAIDFRAME_REBUILD_IN_PLACE, &comp,
    912       1.6     oster 		  "RAIDFRAME_REBUILD_IN_PLACE");
    913      1.10     oster 
    914      1.10     oster 	if (verbose) {
    915      1.10     oster 		printf("Reconstruction status:\n");
    916      1.10     oster 		sleep(3); /* XXX give reconstruction a chance to start */
    917      1.19     oster 		do_meter(fd,RAIDFRAME_CHECK_RECON_STATUS_EXT);
    918      1.10     oster 	}
    919      1.10     oster 
    920      1.10     oster }
    921      1.10     oster 
    922      1.10     oster static void
    923      1.36   xtraeme check_parity(int fd, int do_rewrite, char *dev_name)
    924      1.10     oster {
    925      1.10     oster 	int is_clean;
    926      1.10     oster 	int percent_done;
    927      1.10     oster 
    928      1.10     oster 	is_clean = 0;
    929      1.10     oster 	percent_done = 0;
    930      1.10     oster 	do_ioctl(fd, RAIDFRAME_CHECK_PARITY, &is_clean,
    931      1.10     oster 		 "RAIDFRAME_CHECK_PARITY");
    932      1.10     oster 	if (is_clean) {
    933      1.10     oster 		printf("%s: Parity status: clean\n",dev_name);
    934      1.10     oster 	} else {
    935      1.10     oster 		printf("%s: Parity status: DIRTY\n",dev_name);
    936      1.10     oster 		if (do_rewrite) {
    937      1.10     oster 			printf("%s: Initiating re-write of parity\n",
    938      1.10     oster 			       dev_name);
    939      1.10     oster 			do_ioctl(fd, RAIDFRAME_REWRITEPARITY, NULL,
    940      1.10     oster 				 "RAIDFRAME_REWRITEPARITY");
    941      1.10     oster 			sleep(3); /* XXX give it time to
    942      1.10     oster 				     get started. */
    943      1.10     oster 			if (verbose) {
    944      1.10     oster 				printf("Parity Re-write status:\n");
    945      1.19     oster 				do_meter(fd, RAIDFRAME_CHECK_PARITYREWRITE_STATUS_EXT);
    946      1.10     oster 			} else {
    947      1.10     oster 				do_ioctl(fd,
    948      1.10     oster 					 RAIDFRAME_CHECK_PARITYREWRITE_STATUS,
    949      1.10     oster 					 &percent_done,
    950      1.10     oster 					 "RAIDFRAME_CHECK_PARITYREWRITE_STATUS"
    951      1.10     oster 					 );
    952      1.10     oster 				while( percent_done < 100 ) {
    953      1.24     oster 					sleep(3); /* wait a bit... */
    954      1.10     oster 					do_ioctl(fd, RAIDFRAME_CHECK_PARITYREWRITE_STATUS,
    955      1.10     oster 						 &percent_done, "RAIDFRAME_CHECK_PARITYREWRITE_STATUS");
    956      1.10     oster 				}
    957      1.10     oster 
    958      1.10     oster 			}
    959      1.10     oster 			       printf("%s: Parity Re-write complete\n",
    960      1.10     oster 				      dev_name);
    961      1.10     oster 		} else {
    962      1.10     oster 			/* parity is wrong, and is not being fixed.
    963      1.10     oster 			   Exit w/ an error. */
    964      1.10     oster 			exit(1);
    965      1.10     oster 		}
    966      1.10     oster 	}
    967      1.10     oster }
    968      1.10     oster 
    969      1.10     oster 
    970      1.10     oster static void
    971      1.36   xtraeme check_status(int fd, int meter)
    972      1.10     oster {
    973      1.10     oster 	int recon_percent_done = 0;
    974      1.10     oster 	int parity_percent_done = 0;
    975      1.10     oster 	int copyback_percent_done = 0;
    976      1.10     oster 
    977      1.10     oster 	do_ioctl(fd, RAIDFRAME_CHECK_RECON_STATUS, &recon_percent_done,
    978      1.10     oster 		 "RAIDFRAME_CHECK_RECON_STATUS");
    979      1.10     oster 	printf("Reconstruction is %d%% complete.\n", recon_percent_done);
    980      1.10     oster 	do_ioctl(fd, RAIDFRAME_CHECK_PARITYREWRITE_STATUS,
    981      1.10     oster 		 &parity_percent_done,
    982      1.10     oster 		 "RAIDFRAME_CHECK_PARITYREWRITE_STATUS");
    983      1.10     oster 	printf("Parity Re-write is %d%% complete.\n", parity_percent_done);
    984      1.10     oster 	do_ioctl(fd, RAIDFRAME_CHECK_COPYBACK_STATUS, &copyback_percent_done,
    985      1.10     oster 		 "RAIDFRAME_CHECK_COPYBACK_STATUS");
    986      1.10     oster 	printf("Copyback is %d%% complete.\n", copyback_percent_done);
    987      1.10     oster 
    988      1.14     oster 	if (meter) {
    989      1.14     oster 		/* These 3 should be mutually exclusive at this point */
    990      1.14     oster 		if (recon_percent_done < 100) {
    991      1.14     oster 			printf("Reconstruction status:\n");
    992      1.19     oster 			do_meter(fd,RAIDFRAME_CHECK_RECON_STATUS_EXT);
    993      1.14     oster 		} else if (parity_percent_done < 100) {
    994      1.14     oster 			printf("Parity Re-write status:\n");
    995      1.19     oster 			do_meter(fd,RAIDFRAME_CHECK_PARITYREWRITE_STATUS_EXT);
    996      1.14     oster 		} else if (copyback_percent_done < 100) {
    997      1.14     oster 			printf("Copyback status:\n");
    998      1.19     oster 			do_meter(fd,RAIDFRAME_CHECK_COPYBACK_STATUS_EXT);
    999      1.14     oster 		}
   1000      1.10     oster 	}
   1001      1.10     oster }
   1002      1.10     oster 
   1003      1.18   thorpej const char *tbits = "|/-\\";
   1004      1.10     oster 
   1005      1.10     oster static void
   1006      1.36   xtraeme do_meter(int fd, u_long option)
   1007      1.10     oster {
   1008      1.10     oster 	int percent_done;
   1009      1.37     oster 	RF_uint64 start_value;
   1010      1.19     oster 	RF_ProgressInfo_t progressInfo;
   1011      1.19     oster 	void *pInfoPtr;
   1012      1.10     oster 	struct timeval start_time;
   1013      1.10     oster 	struct timeval current_time;
   1014      1.10     oster 	double elapsed;
   1015      1.10     oster 	int elapsed_sec;
   1016      1.10     oster 	int elapsed_usec;
   1017      1.20     oster 	int simple_eta,last_eta;
   1018      1.10     oster 	double rate;
   1019      1.37     oster 	RF_uint64 amount;
   1020      1.10     oster 	int tbit_value;
   1021      1.10     oster 	char bar_buffer[1024];
   1022      1.10     oster 	char eta_buffer[1024];
   1023      1.10     oster 
   1024      1.45  christos 	if (gettimeofday(&start_time,NULL) == -1)
   1025      1.45  christos 		err(1, "gettimeofday failed!?!?");
   1026      1.19     oster 	memset(&progressInfo, 0, sizeof(RF_ProgressInfo_t));
   1027      1.19     oster 	pInfoPtr=&progressInfo;
   1028      1.19     oster 
   1029      1.10     oster 	percent_done = 0;
   1030  1.66.2.1  pgoyette 	do_ioctl(fd, option, pInfoPtr, "");
   1031      1.37     oster 	start_value = progressInfo.completed;
   1032      1.10     oster 	current_time = start_time;
   1033      1.38     lukem 	simple_eta = 0;
   1034      1.38     lukem 	last_eta = 0;
   1035      1.10     oster 
   1036      1.10     oster 	tbit_value = 0;
   1037      1.19     oster 	while(progressInfo.completed < progressInfo.total) {
   1038      1.10     oster 
   1039      1.19     oster 		percent_done = (progressInfo.completed * 100) /
   1040      1.19     oster 			progressInfo.total;
   1041      1.10     oster 
   1042      1.10     oster 		get_bar(bar_buffer, percent_done, 40);
   1043      1.10     oster 
   1044      1.20     oster 		elapsed_sec = current_time.tv_sec - start_time.tv_sec;
   1045      1.20     oster 		elapsed_usec = current_time.tv_usec - start_time.tv_usec;
   1046      1.10     oster 		if (elapsed_usec < 0) {
   1047      1.10     oster 			elapsed_usec-=1000000;
   1048      1.10     oster 			elapsed_sec++;
   1049      1.10     oster 		}
   1050      1.20     oster 
   1051      1.10     oster 		elapsed = (double) elapsed_sec +
   1052      1.10     oster 			(double) elapsed_usec / 1000000.0;
   1053      1.19     oster 
   1054      1.20     oster 		amount = progressInfo.completed - start_value;
   1055      1.19     oster 
   1056      1.10     oster 		if (amount <= 0) { /* we don't do negatives (yet?) */
   1057      1.10     oster 			amount = 0;
   1058      1.10     oster 		}
   1059      1.20     oster 
   1060      1.22     oster 		if (elapsed == 0)
   1061      1.22     oster 			rate = 0.0;
   1062      1.22     oster 		else
   1063      1.22     oster 			rate = amount / elapsed;
   1064      1.10     oster 
   1065      1.10     oster 		if (rate > 0.0) {
   1066      1.19     oster 			simple_eta = (int) (((double)progressInfo.total -
   1067      1.20     oster 					     (double) progressInfo.completed)
   1068      1.19     oster 					    / rate);
   1069      1.10     oster 		} else {
   1070      1.10     oster 			simple_eta = -1;
   1071      1.10     oster 		}
   1072      1.19     oster 
   1073      1.10     oster 		if (simple_eta <=0) {
   1074      1.10     oster 			simple_eta = last_eta;
   1075      1.10     oster 		} else {
   1076      1.10     oster 			last_eta = simple_eta;
   1077      1.10     oster 		}
   1078      1.10     oster 
   1079      1.20     oster 		get_time_string(eta_buffer, simple_eta);
   1080      1.10     oster 
   1081      1.55  christos 		fprintf(stdout,"\r%3d%% |%s| ETA: %s %c",
   1082      1.55  christos 			percent_done,bar_buffer,eta_buffer,tbits[tbit_value]);
   1083      1.10     oster 		fflush(stdout);
   1084      1.10     oster 
   1085      1.10     oster 		if (++tbit_value>3)
   1086      1.10     oster 			tbit_value = 0;
   1087      1.10     oster 
   1088      1.10     oster 		sleep(2);
   1089      1.10     oster 
   1090      1.45  christos 		if (gettimeofday(&current_time,NULL) == -1)
   1091      1.45  christos 			err(1, "gettimeofday failed!?!?");
   1092      1.10     oster 
   1093  1.66.2.1  pgoyette 		do_ioctl( fd, option, pInfoPtr, "");
   1094      1.10     oster 
   1095      1.10     oster 
   1096      1.10     oster 	}
   1097      1.10     oster 	printf("\n");
   1098      1.10     oster }
   1099      1.10     oster /* 40 '*''s per line, then 40 ' ''s line. */
   1100      1.10     oster /* If you've got a screen wider than 160 characters, "tough" */
   1101      1.10     oster 
   1102      1.10     oster #define STAR_MIDPOINT 4*40
   1103      1.10     oster const char stars[] = "****************************************"
   1104      1.10     oster                      "****************************************"
   1105      1.10     oster                      "****************************************"
   1106      1.10     oster                      "****************************************"
   1107      1.10     oster                      "                                        "
   1108      1.10     oster                      "                                        "
   1109      1.10     oster                      "                                        "
   1110      1.10     oster                      "                                        "
   1111      1.10     oster                      "                                        ";
   1112      1.10     oster 
   1113      1.10     oster static void
   1114      1.36   xtraeme get_bar(char *string, double percent, int max_strlen)
   1115      1.10     oster {
   1116      1.10     oster 	int offset;
   1117      1.10     oster 
   1118      1.10     oster 	if (max_strlen > STAR_MIDPOINT) {
   1119      1.10     oster 		max_strlen = STAR_MIDPOINT;
   1120      1.10     oster 	}
   1121      1.10     oster 	offset = STAR_MIDPOINT -
   1122      1.10     oster 		(int)((percent * max_strlen)/ 100);
   1123      1.10     oster 	if (offset < 0)
   1124      1.10     oster 		offset = 0;
   1125      1.60     pooka 	snprintf(string,max_strlen,"%s",stars+offset);
   1126      1.10     oster }
   1127      1.10     oster 
   1128      1.10     oster static void
   1129      1.36   xtraeme get_time_string(char *string, int simple_time)
   1130      1.10     oster {
   1131      1.10     oster 	int minutes, seconds, hours;
   1132      1.10     oster 	char hours_buffer[5];
   1133      1.10     oster 	char minutes_buffer[5];
   1134      1.10     oster 	char seconds_buffer[5];
   1135      1.10     oster 
   1136      1.10     oster 	if (simple_time >= 0) {
   1137      1.10     oster 
   1138      1.10     oster 		minutes = (int) simple_time / 60;
   1139      1.10     oster 		seconds = ((int)simple_time - 60*minutes);
   1140      1.10     oster 		hours = minutes / 60;
   1141      1.10     oster 		minutes = minutes - 60*hours;
   1142      1.10     oster 
   1143      1.10     oster 		if (hours > 0) {
   1144      1.10     oster 			snprintf(hours_buffer,5,"%02d:",hours);
   1145      1.10     oster 		} else {
   1146      1.10     oster 			snprintf(hours_buffer,5,"   ");
   1147      1.10     oster 		}
   1148      1.10     oster 
   1149      1.10     oster 		snprintf(minutes_buffer,5,"%02d:",minutes);
   1150      1.10     oster 		snprintf(seconds_buffer,5,"%02d",seconds);
   1151      1.10     oster 		snprintf(string,1024,"%s%s%s",
   1152      1.10     oster 			 hours_buffer, minutes_buffer, seconds_buffer);
   1153      1.10     oster 	} else {
   1154      1.10     oster 		snprintf(string,1024,"   --:--");
   1155      1.10     oster 	}
   1156      1.10     oster 
   1157       1.5     oster }
   1158       1.5     oster 
   1159       1.5     oster static void
   1160      1.36   xtraeme usage(void)
   1161       1.1     oster {
   1162      1.26       cgd 	const char *progname = getprogname();
   1163      1.26       cgd 
   1164      1.65       wiz 	fprintf(stderr, "usage: %s [-v] -A [yes | no | softroot | hardroot] dev\n", progname);
   1165      1.65       wiz 	fprintf(stderr, "       %s [-v] -a component dev\n", progname);
   1166      1.26       cgd 	fprintf(stderr, "       %s [-v] -B dev\n", progname);
   1167      1.65       wiz 	fprintf(stderr, "       %s [-v] -C config_file dev\n", progname);
   1168      1.26       cgd 	fprintf(stderr, "       %s [-v] -c config_file dev\n", progname);
   1169      1.65       wiz 	fprintf(stderr, "       %s [-v] -F component dev\n", progname);
   1170      1.26       cgd 	fprintf(stderr, "       %s [-v] -f component dev\n", progname);
   1171      1.65       wiz 	fprintf(stderr, "       %s [-v] -G dev\n", progname);
   1172      1.26       cgd 	fprintf(stderr, "       %s [-v] -g component dev\n", progname);
   1173      1.65       wiz 	fprintf(stderr, "       %s [-v] -I serial_number dev\n", progname);
   1174      1.26       cgd 	fprintf(stderr, "       %s [-v] -i dev\n", progname);
   1175      1.42       jld 	fprintf(stderr, "       %s [-v] -M [yes | no | set params] dev\n",
   1176      1.42       jld 	    progname);
   1177      1.65       wiz 	fprintf(stderr, "       %s [-v] -m dev\n", progname);
   1178      1.65       wiz 	fprintf(stderr, "       %s [-v] -P dev\n", progname);
   1179      1.31     oster 	fprintf(stderr, "       %s [-v] -p dev\n", progname);
   1180      1.65       wiz 	fprintf(stderr, "       %s [-v] -R component dev\n", progname);
   1181      1.26       cgd 	fprintf(stderr, "       %s [-v] -r component dev\n", progname);
   1182      1.65       wiz 	fprintf(stderr, "       %s [-v] -S dev\n", progname);
   1183      1.26       cgd 	fprintf(stderr, "       %s [-v] -s dev\n", progname);
   1184      1.65       wiz 	fprintf(stderr, "       %s [-v] -U unit dev\n", progname);
   1185      1.26       cgd 	fprintf(stderr, "       %s [-v] -u dev\n", progname);
   1186       1.1     oster 	exit(1);
   1187       1.1     oster 	/* NOTREACHED */
   1188       1.1     oster }
   1189      1.58      manu 
   1190      1.58      manu static unsigned int
   1191      1.59  christos xstrtouint(const char *str)
   1192      1.58      manu {
   1193      1.59  christos 	int e;
   1194      1.59  christos 	unsigned int num = (unsigned int)strtou(str, NULL, 10, 0, INT_MAX, &e);
   1195      1.59  christos 	if (e)
   1196      1.59  christos 		errc(EXIT_FAILURE, e, "Bad number `%s'", str);
   1197      1.59  christos 	return num;
   1198      1.58      manu }
   1199